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Clients/Tough/remarkable/CCSD/WWTP/RAS_control_Strategy_Final.pdf

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SCADA shall generate an alarm when there is a communication failure between the SCADA system and PLC.) /Dest [ 3 0 R /XYZ 52 248 null ] /Next 207 0 R /Parent 136 0 R >> endobj 207 0 obj << /Prev 208 0 R /Count 0 /Title (��\000c\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e\000 \000i\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 3 0 R /XYZ 52 208 null ] /Next 209 0 R /Parent 136 0 R >> endobj 209 0 obj << /Prev 204 0 R /Count 0 /Title (d. SCADA shall generate an alarm when there is a communication failure to a VFD.) /Dest [ 3 0 R /XYZ 52 169 null ] /Parent 136 0 R >> endobj 208 0 obj << /Parent 136 0 R >> endobj 206 0 obj << /Parent 136 0 R >> endobj 199 0 obj << /First 210 0 R /Parent 136 0 R >> endobj 210 0 obj << /Dest [ 3 0 R /XYZ 84 655 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 198 0 obj << /Dest [ 3 0 R /XYZ 84 506 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the pumps automatically. The HOA switch for the pumps must be in AUTO to enable control of the pumps from SCADA. The operator selects SCADA Automatic Mode for the system via the SCADA OIT. The op...) /Next 211 0 R /Parent 136 0 R >> endobj 211 0 obj << /Prev 212 0 R /Count 0 /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Dest [ 3 0 R /XYZ 84 412 null ] /Next 213 0 R /Parent 136 0 R >> endobj 213 0 obj << /Prev 214 0 R /Count 0 /Title (3. Total influent flow rate \(reported by FIT-2001\) \(GPM\) = FIT-2001) /Dest [ 3 0 R /XYZ 84 193 null ] /Next 215 0 R /Parent 136 0 R >> endobj 215 0 obj << /Prev 216 0 R /Count 0 /Title (4. Total MLR flow rate \(GPM\) = FIT-3201A \(GPM\) + FIT-3201B \(GPM\)) /Dest [ 3 0 R /XYZ 84 167 null ] /Next 217 0 R /Parent 136 0 R >> endobj 217 0 obj << /Prev 218 0 R /Count 0 /Title (��\0005\000.\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000M\000L\000E\000 \000b\000a\000s\000i\000n\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000,\000 \000a\000t\000 \000w\000h\000i\000c\000h\000 \000p\000o\000i\000n\000t\000 \000t\000h\000e\000 \000T\000o\000t\000a\000l\000 \000M\000L\000R\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000b\000e\000c\000o\000m\000e\000:) /Dest [ 3 0 R /XYZ 84 141 null ] /Next 219 0 R /Parent 136 0 R >> endobj 219 0 obj << /First 220 0 R /Count 2 /Prev 221 0 R /Last 222 0 R /Title (6. Total MLR flow rate \(GPM\) = FIT-3201A \(GPM\) or FIT-3201B \(GPM\)) /Next 223 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 101 null ] >> endobj 223 0 obj << /Prev 224 0 R /Count 0 /Title (7. When one ML pump is out of service, the program shall operate the service ML pump to deliver the entire ML flow rate.) /Dest [ 3 0 R /XYZ 52 446 null ] /Next 225 0 R /Parent 136 0 R >> endobj 225 0 obj << /Prev 226 0 R /Count 0 /Title (8. It may be necessary to supplement the ML pump with a temporary submersible pump and piping to achieve the required ML return rate when one basin is out of service.) /Dest [ 3 0 R /XYZ 52 406 null ] /Next 227 0 R /Parent 136 0 R >> endobj 227 0 obj << /Prev 228 0 R /Count 0 /Title (9. The MLR pumps DO NOT restart automatically after a power failure.) /Dest [ 3 0 R /XYZ 52 353 null ] /Next 229 0 R /Parent 136 0 R >> endobj 229 0 obj << /First 201 0 R /Count 4 /Prev 202 0 R /Last 203 0 R /Title (10. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 327 null ] >> endobj 228 0 obj << /Parent 136 0 R >> endobj 226 0 obj << /Parent 136 0 R >> endobj 224 0 obj << /First 220 0 R /Parent 136 0 R >> endobj 222 0 obj << /Prev 230 0 R /Count 0 /Title (��\000b\000.\000 \000A\000u\000t\000o\0002\000 \023\000 \000F\000l\000o\000w\000 \000P\000a\000c\000e\000d\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0002\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000t\000o\000t\000a\000l\000 \000M\000L\000E\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000\(\000E\000Q\000 \000p\000u\000m\000p\000 \000s\000t\000a\000t\000i\000o\000n\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000\)\000 \000i\000s\000 \000a\000t\000 \000o\000r\000 \000b\000e\000l\000o\000w\000 \000t\000h\000e\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000 \000m\000i\000n\000i\000m\000u\000m\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000s\000e\000t\000p\000o\000i\000n\000t\000.\000 \000T\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000M\000a\000x\000i\000m\000.\000.\000.) /Dest [ 3 0 R /XYZ 52 596 null ] /Parent 136 0 R >> endobj 230 0 obj << /Parent 136 0 R >> endobj 221 0 obj << /Parent 136 0 R >> endobj 220 0 obj << /Dest [ 3 0 R /XYZ 52 720 null ] /Count 0 /Title (��\000a\000.\000 \000A\000u\000t\000o\0001\000 \023\000 \000O\000R\000P\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0001\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000o\000p\000e\000r\000a\000t\000e\000 \000s\000i\000m\000u\000l\000t\000a\000n\000e\000o\000u\000s\000l\000y\000 \000a\000n\000d\000 \000e\000a\000c\000h\000 \000p\000u\000m\000p\000 \000w\000i\000l\000l\000 \000t\000u\000r\000n\000 \000o\000n\000 \000a\000n\000d\000 \000o\000f\000f\000 \000a\000u\000t\000o\000m\000a\000t\000i\000c\000a\000l\000l\000y\000 \000a\000n\000d\000 \000a\000d\000j\000u\000s\000t\000 \000s\000p\000e\000e\000d\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000a\000n\000d\000 \000M\000a\000x\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000t\000o\000 \000m\000a\000i\000n\000t\000a\000i\000n\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000O\000R\000P\000 \000s\000e\000t\000p\000o\000i\000n\000t\000 \000f\000o\000r\000 \000e\000a\000c\000h\000 \000b\000a\000s\000i\000n\000.\000 \000E\000a\000c\000h\000 \000p\000.\000.\000.) /Next 231 0 R /Parent 136 0 R >> endobj 231 0 obj << /Prev 230 0 R /Count 0 /Title (��\000b\000.\000 \000A\000u\000t\000o\0002\000 \023\000 \000F\000l\000o\000w\000 \000P\000a\000c\000e\000d\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0002\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000t\000o\000t\000a\000l\000 \000M\000L\000E\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000\(\000E\000Q\000 \000p\000u\000m\000p\000 \000s\000t\000a\000t\000i\000o\000n\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000\)\000 \000i\000s\000 \000a\000t\000 \000o\000r\000 \000b\000e\000l\000o\000w\000 \000t\000h\000e\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000 \000m\000i\000n\000i\000m\000u\000m\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000s\000e\000t\000p\000o\000i\000n\000t\000.\000 \000T\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000M\000a\000x\000i\000m\000.\000.\000.) /Dest [ 3 0 R /XYZ 52 596 null ] /Parent 136 0 R >> endobj 218 0 obj << /Parent 136 0 R >> endobj 216 0 obj << /Parent 136 0 R >> endobj 214 0 obj << /Parent 136 0 R >> endobj 212 0 obj << /Parent 136 0 R >> endobj 196 0 obj << /First 191 0 R /Parent 136 0 R >> endobj 195 0 obj << /Count 3 /First 232 0 R /Title (A. Local Manual Control) /Last 233 0 R /Next 234 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 169 null ] >> endobj 234 0 obj << /First 210 0 R /Count 1 /Prev 235 0 R /Last 236 0 R /Title (B. SCADA Manual Control) /Next 237 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 680 null ] >> endobj 237 0 obj << /First 198 0 R /Count 30 /Prev 199 0 R /Last 200 0 R /Title (C. SCADA Automatic Control) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 532 null ] >> endobj 236 0 obj << /Dest [ 3 0 R /XYZ 84 655 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 235 0 obj << /First 232 0 R /Parent 136 0 R >> endobj 233 0 obj << /Prev 238 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 238 0 obj << /Parent 136 0 R >> endobj 232 0 obj << /Dest [ 3 0 R /XYZ 52 143 null ] /Count 0 /Title (1. A pump runs continuously at the speed set via its VFD keypad when the Hand-Off-Auto \(HOA\) selector switch is in HAND and its Start pushbutton is pressed. The pump will turn off when its HOA switch is placed in the OFF position or its Stop pushbutto...) /Next 239 0 R /Parent 136 0 R >> endobj 239 0 obj << /Prev 240 0 R /Count 0 /Title (2. Hard-wired interlocks stop operation of the pump.) /Dest [ 3 0 R /XYZ 84 720 null ] /Next 241 0 R /Parent 136 0 R >> endobj 241 0 obj << /Prev 238 0 R /Count 0 /Title (3. 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The mixers run continuously at the speed set on the VFD when the Hand-Off selector switch located at the VFD is placed in the Hand position and one of the Start pushbuttons is pressed. The mixers will turn off when the Hand-Off switch is located in...) /Next 349 0 R /Parent 136 0 R >> endobj 349 0 obj << /Prev 350 0 R /Count 0 /Title (2. A hard-wired interlock shall stop operation of the mixer upon high temperature indication. The mixer shall not restart until the alarm condition is cleared and a reset push button at the local control station at the VFD location in the Blower Build...) /Dest [ 3 0 R /XYZ 84 534 null ] /Next 351 0 R /Parent 136 0 R >> endobj 351 0 obj << /Prev 348 0 R /Count 0 /Title (3. 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Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 84 409 null ] /Parent 136 0 R >> endobj 169 0 obj << /Dest [ 3 0 R /XYZ 84 591 null ] /Count 0 /Title (A. The mixers are submersible, propeller type. One mixer is located in the anoxic zone of each aeration basin. The anoxic zones are non-aerated zones, and the mixers in these zones will operate continuously when the aeration basin is in service.) /Parent 136 0 R >> endobj 168 0 obj << /Dest [ 3 0 R /XYZ 84 591 null ] /Count 0 /Title (A. The mixers are submersible, propeller type. One mixer is located in the anoxic zone of each aeration basin. 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EQUIPMENT, PIPING, AND MATERIALS DEMOLITION) /Dest [ 3 0 R /FitH 796 ] /Next 434 0 R /Parent 136 0 R >> endobj 434 0 obj << /Prev 435 0 R /Count 0 /Title (S030500 - GENERAL CONCRETE CONSTRUCTION) /Dest [ 3 0 R /FitH 796 ] /Next 436 0 R /Parent 136 0 R >> endobj 436 0 obj << /Prev 437 0 R /Count 0 /Title (032000 CONCRETE REINFORCING [MS - FL] ) /Dest [ 3 0 R /FitH 796 ] /Next 438 0 R /Parent 136 0 R >> endobj 438 0 obj << /Prev 439 0 R /Count 0 /Title (S050520 - BOLTS, WASHERS, ANCHORS, AND EYEBOLTS) /Dest [ 3 0 R /FitH 796 ] /Next 440 0 R /Parent 136 0 R >> endobj 440 0 obj << /First 441 0 R /Count 12 /Prev 442 0 R /Last 443 0 R /Title (051200 STRUCTURAL STEEL FRAMING) /Next 444 0 R /Parent 136 0 R /Dest [ 3 0 R /FitH 796 ] >> endobj 444 0 obj << /Prev 445 0 R /Count 0 /Title (S099000 - Painting and Coating) /Dest [ 3 0 R /FitH 796 ] /Next 446 0 R /Parent 136 0 R >> endobj 446 0 obj << /Prev 447 0 R /Count 0 /Title (S099672 \(recoating existing steel water tank revised\)) /Dest [ 3 0 R /FitH 796 ] /Next 448 0 R /Parent 136 0 R >> endobj 448 0 obj << /Prev 449 0 R /Count 0 /Title (S312316 - TRENCHING, BACKFILLING, AND COMPACTING) /Dest [ 3 0 R /FitH 796 ] /Next 450 0 R /Parent 136 0 R >> endobj 450 0 obj << /Prev 451 0 R /Count 0 /Title (S334715 - GEOMEMBRANE BAFFLE) /Dest [ 3 0 R /FitH 796 ] /Next 452 0 R /Parent 136 0 R >> endobj 452 0 obj << /Prev 453 0 R /Count 0 /Title (S400500 - GENERAL PIPING REQUIREMENTS) /Dest [ 3 0 R /FitH 796 ] /Next 454 0 R /Parent 136 0 R >> endobj 454 0 obj << /Prev 455 0 R /Count 0 /Title (S400515 - PRESSURE TESTING OF PIPING) /Dest [ 3 0 R /FitH 796 ] /Next 456 0 R /Parent 136 0 R >> endobj 456 0 obj << /Prev 457 0 R /Count 0 /Title (S400520 - MANUAL, CHECK, AND PROCESS VALVES) /Dest [ 3 0 R /FitH 796 ] /Next 458 0 R /Parent 136 0 R >> endobj 458 0 obj << /Prev 459 0 R /Count 0 /Title (S400764 - Pipe hangers and supports) /Dest [ 3 0 R /FitH 796 ] /Next 460 0 R /Parent 136 0 R >> endobj 460 0 obj << /Prev 461 0 R /Count 0 /Title (S400775 - EQUIPMENT, PIPING, DUCT, AND VALVE IDENTIFICATION) /Dest [ 3 0 R /FitH 796 ] /Next 462 0 R /Parent 136 0 R >> endobj 462 0 obj << /Prev 463 0 R /Count 0 /Title (S402001 - 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ROTARY POSITIVE DISPLACEMENT BLOWERS) /Dest [ 3 0 R /FitH 796 ] /Next 488 0 R /Parent 136 0 R >> endobj 488 0 obj << /Prev 489 0 R /Count 0 /Title (S432140 - SUBMERSIBLE RAW WASTEWATER PUMPS) /Dest [ 3 0 R /FitH 796 ] /Next 490 0 R /Parent 136 0 R >> endobj 490 0 obj << /Prev 491 0 R /Count 0 /Title (S432184 - ROTARY LOBE PUMPS) /Dest [ 3 0 R /FitH 796 ] /Next 492 0 R /Parent 136 0 R >> endobj 492 0 obj << /Prev 493 0 R /Count 0 /Title (S444212 - FINE BUBBLE AERATION SYSTEM) /Dest [ 3 0 R /FitH 796 ] /Next 494 0 R /Parent 136 0 R >> endobj 494 0 obj << /Prev 495 0 R /Count 0 /Title (S444213 - COARSE BUBBLE AERATION SYSTEM) /Dest [ 3 0 R /FitH 796 ] /Next 496 0 R /Parent 136 0 R >> endobj 496 0 obj << /Prev 497 0 R /Count 0 /Title (S444244 - SUBMERSIBLE MIXERS) /Dest [ 3 0 R /FitH 796 ] /Next 498 0 R /Parent 136 0 R >> endobj 498 0 obj << /Prev 499 0 R /Count 0 /Title (S444266 - ROTATING SCUM TROUGH EQUIPMENT) /Dest [ 3 0 R /FitH 796 ] /Next 500 0 R /Parent 136 0 R >> endobj 500 0 obj << /Prev 501 0 R /Count 0 /Title (Blank Page) /Dest [ 3 0 R /XYZ 0 792 null ] /Next 502 0 R /Parent 136 0 R >> endobj 502 0 obj << /First 503 0 R /Count 2 /Prev 504 0 R /Last 505 0 R /Title (control strategy EQ blower 012624_DSM JH.pdf) /Next 506 0 R /Parent 136 0 R >> endobj 506 0 obj << /First 507 0 R /Count 2 /Prev 508 0 R /Last 509 0 R /Title (ADPB8BF.tmp) /Next 510 0 R /Parent 136 0 R >> endobj 510 0 obj << /First 511 0 R /Count 2 /Prev 512 0 R /Last 513 0 R /Title (control strategy mixers and MLR pumps 030524.pdf) /Next 514 0 R /Parent 136 0 R >> endobj 514 0 obj << /First 515 0 R /Count 2 /Prev 516 0 R /Last 517 0 R /Title (control strategy MLE blower 012624_DSM JH.pdf) /Next 518 0 R /Parent 136 0 R >> endobj 518 0 obj << /First 519 0 R /Count 2 /Prev 520 0 R /Last 521 0 R /Title (control strategy RAS.pdf) /Next 522 0 R /Parent 136 0 R >> endobj 522 0 obj << /First 523 0 R /Count 2 /Prev 524 0 R /Last 525 0 R /Title (control strategy WAS.pdf) /Next 526 0 R /Parent 136 0 R >> endobj 526 0 obj << /First 165 0 R /Count 2 /Prev 527 0 R /Last 528 0 R /Title (control strategy mixers and MLR pumps 030524.pdf) /Next 529 0 R /Parent 136 0 R >> endobj 529 0 obj << /Prev 133 0 R /Last 134 0 R /First 135 0 R /Count 15 /Title (Division26.pdf) /Parent 136 0 R >> endobj 528 0 obj << /Last 166 0 R /Count 72 /First 167 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 668 null ] /Parent 136 0 R >> endobj 527 0 obj << /First 523 0 R /Parent 136 0 R >> endobj 525 0 obj << /Last 530 0 R /Count 30 /First 531 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 531 0 obj << /Count 2 /First 532 0 R /Title (1.01 General) /Last 533 0 R /Next 534 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 656 null ] >> endobj 534 0 obj << /First 535 0 R /Count 12 /Prev 536 0 R /Last 537 0 R /Title (1.02 Operator Controls) /Next 538 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 344 null ] >> endobj 538 0 obj << /First 539 0 R /Count 2 /Prev 540 0 R /Last 541 0 R /Title (1.03 Hardwired Interlocks) /Next 542 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 317 null ] >> endobj 542 0 obj << /First 543 0 R /Count 25 /Prev 544 0 R /Last 545 0 R /Title (1.04 Control Modes:) /Next 546 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 625 null ] >> endobj 546 0 obj << /First 547 0 R /Count 1 /Prev 548 0 R /Last 549 0 R /Title (1.05 Interlocks with Other Equipment:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 376 null ] >> endobj 549 0 obj << /Dest [ 3 0 R /XYZ 52 350 null ] /Count 0 /Title (A. None.) /Parent 136 0 R >> endobj 548 0 obj << /First 543 0 R /Parent 136 0 R >> endobj 547 0 obj << /Dest [ 3 0 R /XYZ 52 350 null ] /Count 0 /Title (A. None.) /Parent 136 0 R >> endobj 545 0 obj << /First 550 0 R /Count 4 /Prev 551 0 R /Last 552 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 546 null ] >> endobj 552 0 obj << /Prev 553 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 52 401 null ] /Parent 136 0 R >> endobj 553 0 obj << /Parent 136 0 R >> endobj 551 0 obj << /Parent 136 0 R >> endobj 550 0 obj << /Dest [ 3 0 R /XYZ 52 520 null ] /Count 0 /Title (1. SCADA shall generate an alarm when failure of key instrumentation is detected, such as the WAS flow transmitter \(FIT-5401\).) /Next 554 0 R /Parent 136 0 R >> endobj 554 0 obj << /Prev 555 0 R /Count 0 /Title (��\0002\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000S\000C\000A\000D\000A\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000P\000L\000C\000.) /Dest [ 3 0 R /XYZ 52 481 null ] /Next 556 0 R /Parent 136 0 R >> endobj 556 0 obj << /Prev 557 0 R /Count 0 /Title (��\0003\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 3 0 R /XYZ 52 441 null ] /Next 558 0 R /Parent 136 0 R >> endobj 558 0 obj << /Prev 553 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 52 401 null ] /Parent 136 0 R >> endobj 557 0 obj << /Parent 136 0 R >> endobj 555 0 obj << /Parent 136 0 R >> endobj 544 0 obj << /First 539 0 R /Parent 136 0 R >> endobj 543 0 obj << /Count 3 /First 559 0 R /Title (A. Local Manual Control:) /Last 560 0 R /Next 561 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 599 null ] >> endobj 561 0 obj << /First 562 0 R /Count 2 /Prev 563 0 R /Last 564 0 R /Title (B. SCADA Manual Control:) /Next 565 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 455 null ] >> endobj 565 0 obj << /First 566 0 R /Count 4 /Prev 567 0 R /Last 568 0 R /Title (C. SCADA Automatic Control:) /Next 569 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 253 null ] >> endobj 569 0 obj << /Prev 570 0 R /Count 0 /Title (D. The WAS pumps DO NOT restart automatically after a power failure.) /Dest [ 3 0 R /XYZ 52 572 null ] /Next 571 0 R /Parent 136 0 R >> endobj 571 0 obj << /First 550 0 R /Count 4 /Prev 551 0 R /Last 552 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 546 null ] >> endobj 570 0 obj << /First 566 0 R /Parent 136 0 R >> endobj 568 0 obj << /First 572 0 R /Count 4 /Prev 573 0 R /Last 574 0 R /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 133 null ] >> endobj 574 0 obj << /First 575 0 R /Count 5 /Prev 576 0 R /Last 577 0 R /Title (b. The PLC will display the hourly duration of pumping required for each WAS pump cycle by dividing the programmable WAS daily volume setpoint by two, and then by dividing by the WAS flow setpoint. It is expected that the operator will input the progr...) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 363 null ] >> endobj 577 0 obj << /Prev 578 0 R /Count 0 /Title (\(5\) It should be noted that when one RAS/WAS wetwell is out of service it may be necessary to utilize a temporary WAS pump to supplement the service WAS pump.) /Dest [ 3 0 R /XYZ 52 625 null ] /Parent 136 0 R >> endobj 578 0 obj << /Parent 136 0 R >> endobj 576 0 obj << /Parent 136 0 R >> endobj 575 0 obj << /Dest [ 3 0 R /XYZ 84 254 null ] /Count 0 /Title (\(1\) Basin 1 WAS Pumping Duration \(minutes per hour\) = Basin 2 WAS Pumping Duration \(minutes per hour\) = WAS daily volume setpoint \(gallons\) / 2 / WAS flow setpoint \(gpm\)) /Next 579 0 R /Parent 136 0 R >> endobj 579 0 obj << /Prev 580 0 R /Count 0 /Title (\(2\) The PLC shall display the calculated number of hours required to achieve the WAS daily volume setpoint, based on the inputs for flow setpoint and pumping duration. If the calculated number of hours required to meet the WAS daily volume setpoint, a...) /Dest [ 3 0 R /XYZ 84 201 null ] /Next 581 0 R /Parent 136 0 R >> endobj 581 0 obj << /Prev 582 0 R /Count 0 /Title (\(3\) The speed of each WAS pump shall be controlled through VFD to maintain the WAS flow setpoint as reported by FIT-5401. The first WAS pump cycle shall stop after the programmable hourly duration of pumping, at which time the second WAS pump cycle sh...) /Dest [ 3 0 R /XYZ 84 120 null ] /Next 583 0 R /Parent 136 0 R >> endobj 583 0 obj << /Prev 584 0 R /Count 0 /Title (��\000\(\0004\000\)\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000W\000A\000S\000 \000p\000u\000m\000p\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000.\000 \000W\000h\000e\000n\000 \000o\000n\000e\000 \000W\000A\000S\000 \000p\000u\000m\000p\000 \000i\000s\000 \000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e\000,\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000 \000s\000h\000a\000l\000l\000 \000o\000p\000e\000r\000a\000t\000e\000 \000t\000h\000e\000 \000s\000e\000r\000v\000i\000c\000e\000 \000W\000A\000S\000 \000p\000u\000m\000p\000 \000f\000o\000r\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000d\000u\000r\000a\000t\000i\000o\000n\000 \000e\000v\000e\000r\000y\000 \000�\000 \000h\000o\000u\000r\000.) /Dest [ 3 0 R /XYZ 52 692 null ] /Next 585 0 R /Parent 136 0 R >> endobj 585 0 obj << /Prev 578 0 R /Count 0 /Title (\(5\) It should be noted that when one RAS/WAS wetwell is out of service it may be necessary to utilize a temporary WAS pump to supplement the service WAS pump.) /Dest [ 3 0 R /XYZ 52 625 null ] /Parent 136 0 R >> endobj 584 0 obj << /Parent 136 0 R >> endobj 582 0 obj << /Parent 136 0 R >> endobj 580 0 obj << /Parent 136 0 R >> endobj 573 0 obj << /Parent 136 0 R >> endobj 572 0 obj << /Dest [ 3 0 R /XYZ 84 499 null ] /Count 0 /Title (a. Auto: When in Auto, the WAS pumps will operate separately based on a programmable flow rate and number of consecutive minutes of operation per hour. Only one WAS pump shall operate at a time, with the first pump commencing its programmable cycle at...) /Next 586 0 R /Parent 136 0 R >> endobj 586 0 obj << /First 575 0 R /Count 5 /Prev 576 0 R /Last 577 0 R /Title (b. The PLC will display the hourly duration of pumping required for each WAS pump cycle by dividing the programmable WAS daily volume setpoint by two, and then by dividing by the WAS flow setpoint. It is expected that the operator will input the progr...) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 363 null ] >> endobj 567 0 obj << /First 562 0 R /Parent 136 0 R >> endobj 566 0 obj << /Dest [ 3 0 R /XYZ 52 227 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the pumps automatically. The HOA switch for the pumps must be in AUTO to enable control of the pumps from SCADA. The operator selects SCADA Automatic Mode for the system via the SCADA OIT. The op...) /Next 587 0 R /Parent 136 0 R >> endobj 587 0 obj << /First 572 0 R /Count 4 /Prev 573 0 R /Last 574 0 R /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 133 null ] >> endobj 564 0 obj << /Prev 588 0 R /Count 0 /Title (2. When both pumps are operated simultaneously, they must operate at the same speed. In SCADA Manual mode, the operator enters one, common pump speed setpoint and the PLC automatically applies that setpoint to both pumps.) /Dest [ 3 0 R /XYZ 52 307 null ] /Parent 136 0 R >> endobj 588 0 obj << /Parent 136 0 R >> endobj 563 0 obj << /First 559 0 R /Parent 136 0 R >> endobj 562 0 obj << /Dest [ 3 0 R /XYZ 52 429 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Next 589 0 R /Parent 136 0 R >> endobj 589 0 obj << /Prev 588 0 R /Count 0 /Title (2. When both pumps are operated simultaneously, they must operate at the same speed. In SCADA Manual mode, the operator enters one, common pump speed setpoint and the PLC automatically applies that setpoint to both pumps.) /Dest [ 3 0 R /XYZ 52 307 null ] /Parent 136 0 R >> endobj 560 0 obj << /Prev 590 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 52 481 null ] /Parent 136 0 R >> endobj 590 0 obj << /Parent 136 0 R >> endobj 559 0 obj << /Dest [ 3 0 R /XYZ 52 574 null ] /Count 0 /Title (1. A pump runs continuously at the speed set via its VFD keypad when the Hand-Off-Auto \(HOA\) selector switch is in HAND and its Start pushbutton is pressed. The pump will turn off when its HOA switch is placed in the OFF position or its Stop pushbutto...) /Next 591 0 R /Parent 136 0 R >> endobj 591 0 obj << /Prev 592 0 R /Count 0 /Title (2. Hard-wired interlocks stop operation of the pump.) /Dest [ 3 0 R /XYZ 52 506 null ] /Next 593 0 R /Parent 136 0 R >> endobj 593 0 obj << /Prev 590 0 R /Count 0 /Title (3. 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SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Dest [ 3 0 R /XYZ 52 500 null ] /Parent 136 0 R >> endobj 668 0 obj << /Parent 136 0 R >> endobj 666 0 obj << /Parent 136 0 R >> endobj 664 0 obj << /Parent 136 0 R >> endobj 662 0 obj << /Parent 136 0 R >> endobj 660 0 obj << /Parent 136 0 R >> endobj 602 0 obj << /Count 2 /First 636 0 R /Title (1. Control) /Last 670 0 R /Next 671 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 293 null ] >> endobj 671 0 obj << /First 605 0 R /Count 2 /Prev 606 0 R /Last 607 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 137 null ] >> endobj 670 0 obj << /Last 637 0 R /Count 3 /First 638 0 R /Title (a. SCADA screens for the WAS pump system provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 268 null ] /Parent 136 0 R >> endobj 536 0 obj << /First 532 0 R /Parent 136 0 R >> endobj 535 0 obj << /Count 6 /First 672 0 R /Title (A. Field Location \(Near Equipment\)) /Last 673 0 R /Next 674 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 319 null ] >> endobj 674 0 obj << /First 643 0 R /Count 6 /Prev 675 0 R /Last 676 0 R /Title (B. Blower Building Electrical Room) /Next 677 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 706 null ] >> endobj 677 0 obj << /First 602 0 R /Count 6 /Prev 603 0 R /Last 604 0 R /Title (C. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 319 null ] >> endobj 676 0 obj << /First 647 0 R /Count 5 /Prev 648 0 R /Last 649 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 474 null ] >> endobj 675 0 obj << /First 672 0 R /Parent 136 0 R >> endobj 673 0 obj << /First 678 0 R /Count 4 /Prev 679 0 R /Last 680 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 190 null ] >> endobj 680 0 obj << /Prev 681 0 R /Count 0 /Title (d. Motor Hi Moisture Alarm LED \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 681 0 obj << /Parent 136 0 R >> endobj 679 0 obj << /First 682 0 R /Parent 136 0 R >> endobj 682 0 obj << /Dest [ 3 0 R /XYZ 84 267 null ] /Count 0 /Title (a. Start pushbutton) /Next 683 0 R /Parent 136 0 R >> endobj 683 0 obj << /Prev 684 0 R /Count 0 /Title (b. Lockout Stop pushbutton) /Dest [ 3 0 R /XYZ 84 241 null ] /Next 685 0 R /Parent 136 0 R >> endobj 685 0 obj << /Prev 686 0 R /Count 0 /Title (c. Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 84 215 null ] /Parent 136 0 R >> endobj 686 0 obj << /Parent 136 0 R >> endobj 684 0 obj << /Parent 136 0 R >> endobj 678 0 obj << /Dest [ 3 0 R /XYZ 84 164 null ] /Count 0 /Title (a. Pump run light) /Next 687 0 R /Parent 136 0 R >> endobj 687 0 obj << /Prev 688 0 R /Count 0 /Title (b. WAS pump station discharge flowrate via flow meter display) /Dest [ 3 0 R /XYZ 84 138 null ] /Next 689 0 R /Parent 136 0 R >> endobj 689 0 obj << /Prev 690 0 R /Count 0 /Title (c. Motor Hi Temp Alarm LED \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 84 112 null ] /Next 691 0 R /Parent 136 0 R >> endobj 691 0 obj << /Prev 681 0 R /Count 0 /Title (d. Motor Hi Moisture Alarm LED \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 690 0 obj << /Parent 136 0 R >> endobj 688 0 obj << /Parent 136 0 R >> endobj 672 0 obj << /Count 3 /First 682 0 R /Title (1. Control) /Last 692 0 R /Next 693 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 293 null ] >> endobj 693 0 obj << /First 678 0 R /Count 4 /Prev 679 0 R /Last 680 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 190 null ] >> endobj 692 0 obj << /Prev 686 0 R /Count 0 /Title (c. Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 84 215 null ] /Parent 136 0 R >> endobj 533 0 obj << /Prev 694 0 R /Count 0 /Title (B. Wasting is either manually initiated or is automatically initiated based on an adjustable schedule. The WAS pump in either wetwell shall run at the last selected speed \(manually adjustable\) or a programmable flow rate and number of consecutive minu...) /Dest [ 3 0 R /XYZ 84 494 null ] /Parent 136 0 R >> endobj 694 0 obj << /Parent 136 0 R >> endobj 532 0 obj << /Dest [ 3 0 R /XYZ 84 631 null ] /Count 0 /Title (A. One variable speed submersible pump is used to pump waste activated sludge \(WAS\) from each RAS/WAS wetwell to the sludge storage tank located adjacent to the equalization tank. The WAS pumps are used to control the inventory of solids in the aerati...) /Next 695 0 R /Parent 136 0 R >> endobj 695 0 obj << /Prev 694 0 R /Count 0 /Title (B. Wasting is either manually initiated or is automatically initiated based on an adjustable schedule. The WAS pump in either wetwell shall run at the last selected speed \(manually adjustable\) or a programmable flow rate and number of consecutive minu...) /Dest [ 3 0 R /XYZ 84 494 null ] /Parent 136 0 R >> endobj 530 0 obj << /First 547 0 R /Count 1 /Prev 548 0 R /Last 549 0 R /Title (1.05 Interlocks with Other Equipment:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 376 null ] >> endobj 524 0 obj << /First 519 0 R /Parent 136 0 R >> endobj 523 0 obj << /Last 530 0 R /Count 30 /First 531 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 521 0 obj << /Last 696 0 R /Count 30 /First 697 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 697 0 obj << /Count 4 /First 698 0 R /Title (1.01 General:) /Last 699 0 R /Next 700 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 656 null ] >> endobj 700 0 obj << /First 701 0 R /Count 12 /Prev 702 0 R /Last 703 0 R /Title (1.02 Operator Controls:) /Next 704 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 196 null ] >> endobj 704 0 obj << /First 705 0 R /Count 2 /Prev 706 0 R /Last 707 0 R /Title (1.03 Hardwired Interlocks) /Next 708 0 R /Parent 136 0 R /Dest [ 18 0 R /XYZ 84 161 null ] >> endobj 708 0 obj << /First 709 0 R /Count 25 /Prev 710 0 R /Last 711 0 R /Title (1.04 Control Modes:) /Next 712 0 R /Parent 136 0 R /Dest [ 21 0 R /XYZ 52 465 null ] >> endobj 712 0 obj << /First 713 0 R /Count 1 /Prev 714 0 R /Last 715 0 R /Title (1.05 Interlocks with Other Equipment:) /Parent 136 0 R /Dest [ 27 0 R /XYZ 52 548 null ] >> endobj 715 0 obj << /Dest [ 27 0 R /XYZ 52 522 null ] /Count 0 /Title (A. None.) /Parent 136 0 R >> endobj 714 0 obj << /First 709 0 R /Parent 136 0 R >> endobj 713 0 obj << /Dest [ 27 0 R /XYZ 52 522 null ] /Count 0 /Title (A. None.) /Parent 136 0 R >> endobj 711 0 obj << /First 716 0 R /Count 4 /Prev 717 0 R /Last 718 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 27 0 R /XYZ 52 720 null ] >> endobj 718 0 obj << /Prev 719 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 27 0 R /XYZ 52 574 null ] /Parent 136 0 R >> endobj 719 0 obj << /Parent 136 0 R >> endobj 717 0 obj << /Parent 136 0 R >> endobj 716 0 obj << /Dest [ 27 0 R /XYZ 52 706 null ] /Count 0 /Title (1. SCADA shall generate an alarm when failure of key instrumentation is detected, such as the RAS flow transmitters \(FIT-510 and FIT-511\), and the EQ pump station flow transmitter \(FIT-2001\).) /Next 720 0 R /Parent 136 0 R >> endobj 720 0 obj << /Prev 721 0 R /Count 0 /Title (��\0002\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000S\000C\000A\000D\000A\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000P\000L\000C\000.) /Dest [ 27 0 R /XYZ 52 653 null ] /Next 722 0 R /Parent 136 0 R >> endobj 722 0 obj << /Prev 723 0 R /Count 0 /Title (��\0003\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 27 0 R /XYZ 52 613 null ] /Next 724 0 R /Parent 136 0 R >> endobj 724 0 obj << /Prev 719 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 27 0 R /XYZ 52 574 null ] /Parent 136 0 R >> endobj 723 0 obj << /Parent 136 0 R >> endobj 721 0 obj << /Parent 136 0 R >> endobj 710 0 obj << /First 705 0 R /Parent 136 0 R >> endobj 709 0 obj << /Count 3 /First 725 0 R /Title (A. Local Manual Control:) /Last 726 0 R /Next 727 0 R /Parent 136 0 R /Dest [ 21 0 R /XYZ 52 439 null ] >> endobj 727 0 obj << /First 728 0 R /Count 1 /Prev 729 0 R /Last 730 0 R /Title (B. SCADA Manual Control:) /Next 731 0 R /Parent 136 0 R /Dest [ 21 0 R /XYZ 52 295 null ] >> endobj 731 0 obj << /First 732 0 R /Count 4 /Prev 733 0 R /Last 734 0 R /Title (C. SCADA Automatic Control:) /Next 735 0 R /Parent 136 0 R /Dest [ 21 0 R /XYZ 52 146 null ] >> endobj 735 0 obj << /Prev 736 0 R /Count 0 /Title (D. RAS pumps DO NOT restart automatically after a power failure.) /Dest [ 24 0 R /XYZ 84 108 null ] /Next 737 0 R /Parent 136 0 R >> endobj 737 0 obj << /First 716 0 R /Count 4 /Prev 717 0 R /Last 718 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 27 0 R /XYZ 52 720 null ] >> endobj 736 0 obj << /First 732 0 R /Parent 136 0 R >> endobj 734 0 obj << /First 738 0 R /Count 6 /Prev 739 0 R /Last 740 0 R /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Parent 136 0 R /Dest [ 24 0 R /XYZ 84 665 null ] >> endobj 740 0 obj << /First 741 0 R /Count 1 /Prev 742 0 R /Last 743 0 R /Title (b. When in Auto2, the pumps will turn on and off automatically and the PLC shall adjust speed between the Minimum speed and Maximum speed to maintain the programmable RAS flow setpoint for each pump, as reported by FIT-510 and FIT-511. Each RAS pump s...) /Parent 136 0 R /Dest [ 24 0 R /XYZ 84 229 null ] >> endobj 743 0 obj << /Dest [ 24 0 R /XYZ 84 148 null ] /Count 0 /Title (��\000\(\0001\000\)\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000.) /Parent 136 0 R >> endobj 742 0 obj << /First 744 0 R /Parent 136 0 R >> endobj 744 0 obj << /Dest [ 24 0 R /XYZ 84 296 null ] /Count 0 /Title (��\000\(\0001\000\)\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000.\000 \000W\000h\000e\000n\000 \000o\000n\000e\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000i\000s\000 \000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e\000,\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000 \000s\000h\000a\000l\000l\000 \000o\000p\000e\000r\000a\000t\000e\000 \000t\000h\000e\000 \000s\000e\000r\000v\000i\000c\000e\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000t\000o\000 \000d\000e\000l\000i\000v\000e\000r\000 \000t\000h\000e\000 \000e\000n\000t\000i\000r\000e\000 \000R\000A\000S\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000.) /Parent 136 0 R >> endobj 741 0 obj << /Dest [ 24 0 R /XYZ 84 148 null ] /Count 0 /Title (��\000\(\0001\000\)\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000.) /Parent 136 0 R >> endobj 739 0 obj << /Parent 136 0 R >> endobj 738 0 obj << /Count 1 /First 744 0 R /Title (a. When in Auto1, the pumps will operate simultaneously and will turn on and off automatically and adjust speed between the Minimum speed and Maximum speed to maintain RAS flow as a percentage of the total influent flow from the EQ pump station \(repor...) /Last 745 0 R /Next 746 0 R /Parent 136 0 R /Dest [ 24 0 R /XYZ 84 418 null ] >> endobj 746 0 obj << /First 741 0 R /Count 1 /Prev 742 0 R /Last 743 0 R /Title (b. When in Auto2, the pumps will turn on and off automatically and the PLC shall adjust speed between the Minimum speed and Maximum speed to maintain the programmable RAS flow setpoint for each pump, as reported by FIT-510 and FIT-511. Each RAS pump s...) /Parent 136 0 R /Dest [ 24 0 R /XYZ 84 229 null ] >> endobj 745 0 obj << /Dest [ 24 0 R /XYZ 84 296 null ] /Count 0 /Title (��\000\(\0001\000\)\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000.\000 \000W\000h\000e\000n\000 \000o\000n\000e\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000i\000s\000 \000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e\000,\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000 \000s\000h\000a\000l\000l\000 \000o\000p\000e\000r\000a\000t\000e\000 \000t\000h\000e\000 \000s\000e\000r\000v\000i\000c\000e\000 \000R\000A\000S\000 \000p\000u\000m\000p\000 \000t\000o\000 \000d\000e\000l\000i\000v\000e\000r\000 \000t\000h\000e\000 \000e\000n\000t\000i\000r\000e\000 \000R\000A\000S\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000.) /Parent 136 0 R >> endobj 733 0 obj << /First 728 0 R /Parent 136 0 R >> endobj 732 0 obj << /Dest [ 21 0 R /XYZ 52 121 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the RAS pumps automatically. The HOA switch for the pumps must be in AUTO to enable control of the pumps from SCADA. The operator selects SCADA Automatic Mode for the system via the SCADA OIT. Th...) /Next 747 0 R /Parent 136 0 R >> endobj 747 0 obj << /First 738 0 R /Count 6 /Prev 739 0 R /Last 740 0 R /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Parent 136 0 R /Dest [ 24 0 R /XYZ 84 665 null ] >> endobj 730 0 obj << /Dest [ 21 0 R /XYZ 52 269 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 729 0 obj << /First 725 0 R /Parent 136 0 R >> endobj 728 0 obj << /Dest [ 21 0 R /XYZ 52 269 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 726 0 obj << /Prev 748 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 21 0 R /XYZ 52 320 null ] /Parent 136 0 R >> endobj 748 0 obj << /Parent 136 0 R >> endobj 725 0 obj << /Dest [ 21 0 R /XYZ 52 413 null ] /Count 0 /Title (1. A pump runs continuously at the speed set via its VFD keypad when the Hand-Off-Auto \(HOA\) selector switch is in HAND and its Start pushbutton is pressed. The pump will turn off when its HOA switch is placed in the OFF position or its Stop pushbutto...) /Next 749 0 R /Parent 136 0 R >> endobj 749 0 obj << /Prev 750 0 R /Count 0 /Title (2. Hard-wired interlocks stop operation of the pump.) /Dest [ 21 0 R /XYZ 52 346 null ] /Next 751 0 R /Parent 136 0 R >> endobj 751 0 obj << /Prev 748 0 R /Count 0 /Title (3. 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Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 15 0 R /XYZ 52 706 null ] /Parent 136 0 R >> endobj 844 0 obj << /Parent 136 0 R >> endobj 842 0 obj << /Parent 136 0 R >> endobj 836 0 obj << /Dest [ 15 0 R /XYZ 52 655 null ] /Count 0 /Title (a. Pump run light) /Next 845 0 R /Parent 136 0 R >> endobj 845 0 obj << /Prev 846 0 R /Count 0 /Title (b. RAS pump discharge flowrate via flow meter display) /Dest [ 15 0 R /XYZ 52 629 null ] /Next 847 0 R /Parent 136 0 R >> endobj 847 0 obj << /Prev 848 0 R /Count 0 /Title (c. Motor Hi Temp Alarm LED \(on MiniCAS\)) /Dest [ 15 0 R /XYZ 52 603 null ] /Next 849 0 R /Parent 136 0 R >> endobj 849 0 obj << /Prev 839 0 R /Count 0 /Title (d. Motor Hi Moisture Alarm LED \(on MiniCAS\)) /Dest [ 15 0 R /XYZ 52 577 null ] /Parent 136 0 R >> endobj 848 0 obj << /Parent 136 0 R >> endobj 846 0 obj << /Parent 136 0 R >> endobj 830 0 obj << /Count 3 /First 840 0 R /Title (1. Control) /Last 850 0 R /Next 851 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 145 null ] >> endobj 851 0 obj << /First 836 0 R /Count 4 /Prev 837 0 R /Last 838 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 15 0 R /XYZ 52 680 null ] >> endobj 850 0 obj << /Prev 844 0 R /Count 0 /Title (c. Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 15 0 R /XYZ 52 706 null ] /Parent 136 0 R >> endobj 699 0 obj << /Prev 852 0 R /Count 0 /Title (D. When both secondary clarifiers are in service, total RAS flow is delivered equally to the two RAS/WAS wetwells\) and the slide gate between wetwells is expected to be closed. When one secondary clarifier is taken out of service,100% of RAS flows are...) /Dest [ 3 0 R /XYZ 84 388 null ] /Parent 136 0 R >> endobj 852 0 obj << /Parent 136 0 R >> endobj 698 0 obj << /Dest [ 3 0 R /XYZ 84 631 null ] /Count 0 /Title (A. One variable speed, submersible pump is used to pump return activated sludge \(RAS\) from each RAS/WAS wetwell to the head of each aeration basin. Each RAS/WAS wetwell has one RAS pump.) /Next 853 0 R /Parent 136 0 R >> endobj 853 0 obj << /Prev 854 0 R /Count 0 /Title (B. The pumps operate with speed controlled based on manual control, a percent of influent flow coming into the WWTP \(flow paced\), or at a set flow rate. Each RAS pump operates independently from the other. Flow rate for each pump is measured by RAS Fl...) /Dest [ 3 0 R /XYZ 84 577 null ] /Next 855 0 R /Parent 136 0 R >> endobj 855 0 obj << /Prev 856 0 R /Count 0 /Title (C. The plant is configured such that Aeration Basin #1 can supply Secondary Clarifer #1, or Secondary Clarifiers #1 and #2 combined. Aeration Basin #2 can supply Secondary Clarifer #2, or Secondary Clarifiers #1 and #2 combined. Each Secondary Clarifi...) /Dest [ 3 0 R /XYZ 84 510 null ] /Next 857 0 R /Parent 136 0 R >> endobj 857 0 obj << /Prev 852 0 R /Count 0 /Title (D. When both secondary clarifiers are in service, total RAS flow is delivered equally to the two RAS/WAS wetwells\) and the slide gate between wetwells is expected to be closed. When one secondary clarifier is taken out of service,100% of RAS flows are...) /Dest [ 3 0 R /XYZ 84 388 null ] /Parent 136 0 R >> endobj 856 0 obj << /Parent 136 0 R >> endobj 854 0 obj << /Parent 136 0 R >> endobj 696 0 obj << /First 713 0 R /Count 1 /Prev 714 0 R /Last 715 0 R /Title (1.05 Interlocks with Other Equipment:) /Parent 136 0 R /Dest [ 27 0 R /XYZ 52 548 null ] >> endobj 520 0 obj << /First 515 0 R /Parent 136 0 R >> endobj 519 0 obj << /Last 696 0 R /Count 30 /First 697 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 517 0 obj << /Last 858 0 R /Count 20 /First 859 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 859 0 obj << /Count 4 /First 860 0 R /Title (1.01 General) /Last 861 0 R /Next 862 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 656 null ] >> endobj 862 0 obj << /First 863 0 R /Count 20 /Prev 864 0 R /Last 865 0 R /Title (1.02 Operator Controls) /Next 866 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 308 null ] >> endobj 866 0 obj << /First 867 0 R /Count 2 /Prev 868 0 R /Last 869 0 R /Title (1.03 Hardwired Interlocks) /Next 870 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 185 null ] >> endobj 870 0 obj << /First 871 0 R /Count 20 /Prev 872 0 R /Last 873 0 R /Title (1.04 Control Modes) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 536 null ] >> endobj 873 0 obj << /First 874 0 R /Count 4 /Prev 875 0 R /Last 876 0 R /Title (D. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 542 null ] >> endobj 876 0 obj << /Prev 877 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000t\000h\000e\000 \000A\000E\000R\000t\000r\000o\000n\000i\000c\000 \000o\000r\000 \000b\000l\000o\000w\000e\000r\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 84 398 null ] /Parent 136 0 R >> endobj 877 0 obj << /Parent 136 0 R >> endobj 875 0 obj << /First 878 0 R /Parent 136 0 R >> endobj 878 0 obj << /Last 879 0 R /Count 11 /First 880 0 R /Title (1. This mode permits the PLC control program to control the blower automatically. The Hand-Off-Remote setting in the AERtronic must be set to REMOTE \(Auto\) to enable control of the blower from SCADA. The operator selects SCADA Automatic Control for th...) /Dest [ 3 0 R /XYZ 84 162 null ] /Parent 136 0 R >> endobj 880 0 obj << /Dest [ 3 0 R /XYZ 52 665 null ] /Count 0 /Title (a. DO setpoints shall be user defined.) /Next 881 0 R /Parent 136 0 R >> endobj 881 0 obj << /Prev 882 0 R /Count 0 /Title (b. Control Action shall occur on a user adjustable defined time cycle.) /Dest [ 3 0 R /XYZ 52 639 null ] /Next 883 0 R /Parent 136 0 R >> endobj 883 0 obj << /Prev 884 0 R /Count 0 /Title (c. Airflow balancing to individual zones shall be the responsibility of the operators through the manual manipulation of drop leg local isolation valves. It is anticipated that the air valves in zones 1 will remain fully open, and the air valves is zo...) /Dest [ 3 0 R /XYZ 52 613 null ] /Next 885 0 R /Parent 136 0 R >> endobj 885 0 obj << /Prev 886 0 R /Count 0 /Title (d. If the blower is running and the DO is lower than the DO setpoint for longer than the Low DO timer, an alarm shall be sent.) /Dest [ 3 0 R /XYZ 52 505 null ] /Next 887 0 R /Parent 136 0 R >> endobj 887 0 obj << /Prev 888 0 R /Count 0 /Title (��\000e\000.\000 \000S\000h\000o\000u\000l\000d\000 \000a\000 \000D\000O\000 \000i\000n\000p\000u\000t\000 \000s\000i\000g\000n\000a\000l\000 \000b\000e\000 \000l\000o\000s\000t\000 \000o\000r\000 \000b\000e\000 \000d\000e\000e\000m\000e\000d\000 \034\000o\000u\000t\000 \000o\000f\000 \000r\000a\000n\000g\000e \035\000 \000t\000h\000e\000 \000D\000O\000C\000S\000 \000s\000h\000a\000l\000l\000 \000i\000g\000n\000o\000r\000e\000 \000t\000h\000a\000t\000 \000i\000n\000p\000u\000t\000 \000a\000n\000d\000 \000m\000a\000i\000n\000t\000a\000i\000n\000 \000a\000i\000r\000f\000l\000o\000w\000 \000b\000a\000s\000e\000d\000 \000t\000h\000e\000 \000a\000v\000e\000r\000a\000g\000e\000 \000o\000f\000 \000t\000h\000e\000 \000r\000e\000m\000a\000i\000n\000i\000n\000g\000 \000p\000r\000o\000b\000e\000s\000.\000 \000A\000n\000 \000a\000l\000a\000r\000m\000 \000s\000h\000a\000l\000l\000 \000b\000e\000 \000s\000e\000n\000t\000.) /Dest [ 3 0 R /XYZ 52 465 null ] /Next 889 0 R /Parent 136 0 R >> endobj 889 0 obj << /Prev 890 0 R /Count 0 /Title (f. The blower shall be limited to six \(6\) starts per hour, irrespective of system demands. This is typically accomplished by adjusting minimum run times and minimum off times.) /Dest [ 3 0 R /XYZ 52 412 null ] /Next 891 0 R /Parent 136 0 R >> endobj 891 0 obj << /Prev 892 0 R /Count 0 /Title (g. The PLC control program shall have minimum and maximum blower speed limits that are coordinated with the values configured in the AERtronic controller/VFD. During normal operation, the blower shall not be commanded to operate at a speed less than t...) /Dest [ 3 0 R /XYZ 52 358 null ] /Next 893 0 R /Parent 136 0 R >> endobj 893 0 obj << /Prev 894 0 R /Count 0 /Title (h. The control program shall utilize adjustable minimum blower speed setpoints corresponding with minimum mixing air flowrates in the basins. The minimum blower speed for one basin operation is 22.0Hz. 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Tuning Parameters Logic in the system software shall provide adjustable loop tuning parameters and timing intervals to enable tuning of the controls for stable system operation. 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Local Manual Mode) /Last 907 0 R /Next 908 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 510 null ] >> endobj 908 0 obj << /First 909 0 R /Count 1 /Prev 910 0 R /Last 911 0 R /Title (B. SCADA Manual Mode) /Next 912 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 336 null ] >> endobj 912 0 obj << /First 878 0 R /Count 2 /Prev 913 0 R /Last 914 0 R /Title (C. SCADA Automatic Mode) /Next 915 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 188 null ] >> endobj 915 0 obj << /First 874 0 R /Count 4 /Prev 875 0 R /Last 876 0 R /Title (D. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 542 null ] >> endobj 914 0 obj << /Last 879 0 R /Count 11 /First 880 0 R /Title (1. This mode permits the PLC control program to control the blower automatically. The Hand-Off-Remote setting in the AERtronic must be set to REMOTE \(Auto\) to enable control of the blower from SCADA. The operator selects SCADA Automatic Control for th...) /Dest [ 3 0 R /XYZ 84 162 null ] /Parent 136 0 R >> endobj 913 0 obj << /First 909 0 R /Parent 136 0 R >> endobj 911 0 obj << /Dest [ 3 0 R /XYZ 84 310 null ] /Count 0 /Title (1. This mode permits the plant operator to control new blower B-3501 manually from SCADA. The Hand-Off-Remote setting in the AERtronic must be set to REMOTE \(Auto\) to enable control of the blower from SCADA. The operator selects SCADA Manual Control f...) /Parent 136 0 R >> endobj 910 0 obj << /First 906 0 R /Parent 136 0 R >> endobj 909 0 obj << /Dest [ 3 0 R /XYZ 84 310 null ] /Count 0 /Title (1. This mode permits the plant operator to control new blower B-3501 manually from SCADA. The Hand-Off-Remote setting in the AERtronic must be set to REMOTE \(Auto\) to enable control of the blower from SCADA. The operator selects SCADA Manual Control f...) /Parent 136 0 R >> endobj 907 0 obj << /Last 916 0 R /Count 1 /First 917 0 R /Title (��\0001\000.\000 \000T\000h\000i\000s\000 \000m\000o\000d\000e\000 \000i\000s\000 \000e\000n\000a\000b\000l\000e\000d\000 \000f\000o\000r\000 \000n\000e\000w\000 \000b\000l\000o\000w\000e\000r\000 \000B\000-\0003\0005\0000\0001\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000A\000E\000R\000t\000o\000n\000i\000c\000 \000c\000o\000n\000t\000r\000o\000l\000l\000e\000r\000 \000i\000s\000 \000s\000e\000t\000 \000t\000o\000 \000H\000A\000N\000D\000 \000m\000o\000d\000e\000.\000 \000T\000h\000e\000 \000p\000l\000a\000n\000t\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000s\000t\000a\000r\000t\000s\000 \000a\000n\000d\000 \000s\000t\000o\000p\000s\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000a\000n\000d\000 \000c\000o\000n\000t\000r\000o\000l\000s\000 \000i\000t\000s\000 \000s\000p\000e\000e\000d\000 \000v\000i\000a\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r \031\000s\000 \000A\000E\000R\000t\000r\000o\000n\000i\000c\000 \000H\000M\000I\000.\000 \000T\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000r\000e\000g\000a\000r\000d\000l\000e\000s\000s\000 \000o\000f\000 \000P\000L\000C\000 \000i\000n\000t\000e\000r\000l\000o\000c\000k\000s\000 \000o\000r\000 \000S\000.\000.\000.) /Dest [ 3 0 R /XYZ 84 484 null ] /Parent 136 0 R >> endobj 917 0 obj << /Dest [ 3 0 R /XYZ 84 376 null ] /Count 0 /Title (a. Existing blowers B-7 and B-5: These blowers are standby and will be operated via their existing MCC controls and control panel in the blower room.) /Parent 136 0 R >> endobj 916 0 obj << /Dest [ 3 0 R /XYZ 84 376 null ] /Count 0 /Title (a. Existing blowers B-7 and B-5: These blowers are standby and will be operated via their existing MCC controls and control panel in the blower room.) /Parent 136 0 R >> endobj 906 0 obj << /Last 916 0 R /Count 1 /First 917 0 R /Title (��\0001\000.\000 \000T\000h\000i\000s\000 \000m\000o\000d\000e\000 \000i\000s\000 \000e\000n\000a\000b\000l\000e\000d\000 \000f\000o\000r\000 \000n\000e\000w\000 \000b\000l\000o\000w\000e\000r\000 \000B\000-\0003\0005\0000\0001\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000A\000E\000R\000t\000o\000n\000i\000c\000 \000c\000o\000n\000t\000r\000o\000l\000l\000e\000r\000 \000i\000s\000 \000s\000e\000t\000 \000t\000o\000 \000H\000A\000N\000D\000 \000m\000o\000d\000e\000.\000 \000T\000h\000e\000 \000p\000l\000a\000n\000t\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000s\000t\000a\000r\000t\000s\000 \000a\000n\000d\000 \000s\000t\000o\000p\000s\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000a\000n\000d\000 \000c\000o\000n\000t\000r\000o\000l\000s\000 \000i\000t\000s\000 \000s\000p\000e\000e\000d\000 \000v\000i\000a\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r \031\000s\000 \000A\000E\000R\000t\000r\000o\000n\000i\000c\000 \000H\000M\000I\000.\000 \000T\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000r\000e\000g\000a\000r\000d\000l\000e\000s\000s\000 \000o\000f\000 \000P\000L\000C\000 \000i\000n\000t\000e\000r\000l\000o\000c\000k\000s\000 \000o\000r\000 \000S\000.\000.\000.) /Dest [ 3 0 R /XYZ 84 484 null ] /Parent 136 0 R >> endobj 869 0 obj << /Last 918 0 R /Count 12 /First 919 0 R /Title (A. These conditions will prevent the blower from starting and will stop \(trip\) an operating blower in all modes. Each of these conditions is executed by hardwired controls. Each fault/trip energizes the Trip indicating light at the control panel in th...) /Dest [ 3 0 R /XYZ 52 159 null ] /Parent 136 0 R >> endobj 919 0 obj << /Count 1 /First 920 0 R /Title (1. Blower Fault) /Last 921 0 R /Next 922 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 720 null ] >> endobj 922 0 obj << /First 923 0 R /Count 1 /Prev 924 0 R /Last 925 0 R /Title (2. Emergency Stop \(E-Stop\)) /Next 926 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 667 null ] >> endobj 926 0 obj << /First 927 0 R /Count 1 /Prev 928 0 R /Last 929 0 R /Title (3. Loss of 120V Control Power) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 601 null ] >> endobj 929 0 obj << /Dest [ 3 0 R /XYZ 84 575 null ] /Count 0 /Title (a. Loss of the 120V control power for the external blower controls initiates a blower trip. This trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 928 0 obj << /First 923 0 R /Parent 136 0 R >> endobj 927 0 obj << /Dest [ 3 0 R /XYZ 84 575 null ] /Count 0 /Title (a. Loss of the 120V control power for the external blower controls initiates a blower trip. This trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 925 0 obj << /Dest [ 3 0 R /XYZ 84 641 null ] /Count 0 /Title (a. An E-Stop blower trip is initiated by pressing the E-Stop pushbutton in the blower room. This trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 924 0 obj << /First 920 0 R /Parent 136 0 R >> endobj 923 0 obj << /Dest [ 3 0 R /XYZ 84 641 null ] /Count 0 /Title (a. An E-Stop blower trip is initiated by pressing the E-Stop pushbutton in the blower room. This trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 921 0 obj << /Dest [ 3 0 R /XYZ 84 706 null ] /Count 0 /Title (a. The AERtronic controller signals that a fault has occurred and initiates a blower trip. The blower fault trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 920 0 obj << /Dest [ 3 0 R /XYZ 84 706 null ] /Count 0 /Title (a. The AERtronic controller signals that a fault has occurred and initiates a blower trip. The blower fault trip must be reset manually in the blower room.) /Parent 136 0 R >> endobj 918 0 obj << /First 927 0 R /Count 1 /Prev 928 0 R /Last 929 0 R /Title (3. Loss of 120V Control Power) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 601 null ] >> endobj 868 0 obj << /First 863 0 R /Parent 136 0 R >> endobj 867 0 obj << /Last 918 0 R /Count 12 /First 919 0 R /Title (A. These conditions will prevent the blower from starting and will stop \(trip\) an operating blower in all modes. Each of these conditions is executed by hardwired controls. Each fault/trip energizes the Trip indicating light at the control panel in th...) /Dest [ 3 0 R /XYZ 52 159 null ] /Parent 136 0 R >> endobj 865 0 obj << /First 930 0 R /Count 6 /Prev 931 0 R /Last 932 0 R /Title (D. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 720 null ] >> endobj 932 0 obj << /First 933 0 R /Count 2 /Prev 934 0 R /Last 935 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 550 null ] >> endobj 935 0 obj << /Last 936 0 R /Count 10 /First 937 0 R /Title (a. SCADA screens for the MLE Blower system display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 524 null ] /Parent 136 0 R >> endobj 937 0 obj << /Dest [ 3 0 R /XYZ 52 470 null ] /Count 0 /Title (\(1\) Operator adjustable setpoints and control parameters) /Next 938 0 R /Parent 136 0 R >> endobj 938 0 obj << /Prev 939 0 R /Count 0 /Title (\(2\) Blower Running status) /Dest [ 3 0 R /XYZ 52 445 null ] /Next 940 0 R /Parent 136 0 R >> endobj 940 0 obj << /Prev 941 0 R /Count 0 /Title (\(3\) Blower in REMOTE \(Auto\) status) /Dest [ 3 0 R /XYZ 52 419 null ] /Next 942 0 R /Parent 136 0 R >> endobj 942 0 obj << /Prev 943 0 R /Count 0 /Title (\(4\) SCADA mode status) /Dest [ 3 0 R /XYZ 52 393 null ] /Next 944 0 R /Parent 136 0 R >> endobj 944 0 obj << /Prev 945 0 R /Count 0 /Title (\(5\) Blower VFD Speed feedback) /Dest [ 3 0 R /XYZ 52 367 null ] /Next 946 0 R /Parent 136 0 R >> endobj 946 0 obj << /Prev 947 0 R /Count 0 /Title (\(6\) Blower trip status) /Dest [ 3 0 R /XYZ 52 341 null ] /Next 948 0 R /Parent 136 0 R >> endobj 948 0 obj << /Prev 949 0 R /Count 0 /Title (\(7\) Basin #1 ORP, DO for Zone 2, and DO for Zone 3 via Analyzer AIT-3001A) /Dest [ 3 0 R /XYZ 52 316 null ] /Next 950 0 R /Parent 136 0 R >> endobj 950 0 obj << /Prev 951 0 R /Count 0 /Title (\(8\) Basin #2 ORP, DO for Zone 2, and DO for Zone 3 via Analyzer AIT-3001B) /Dest [ 3 0 R /XYZ 52 276 null ] /Next 952 0 R /Parent 136 0 R >> endobj 952 0 obj << /Prev 953 0 R /Count 0 /Title (\(9\) Fail to run alarm) /Dest [ 3 0 R /XYZ 52 236 null ] /Next 954 0 R /Parent 136 0 R >> endobj 954 0 obj << /Prev 955 0 R /Count 0 /Title (\(10\) Fail to stop alarm) /Dest [ 3 0 R /XYZ 52 211 null ] /Parent 136 0 R >> endobj 955 0 obj << /Parent 136 0 R >> endobj 953 0 obj << /Parent 136 0 R >> endobj 951 0 obj << /Parent 136 0 R >> endobj 949 0 obj << /Parent 136 0 R >> endobj 947 0 obj << /Parent 136 0 R >> endobj 945 0 obj << /Parent 136 0 R >> endobj 943 0 obj << /Parent 136 0 R >> endobj 941 0 obj << /Parent 136 0 R >> endobj 939 0 obj << /Parent 136 0 R >> endobj 936 0 obj << /Prev 955 0 R /Count 0 /Title (\(10\) Fail to stop alarm) /Dest [ 3 0 R /XYZ 52 211 null ] /Parent 136 0 R >> endobj 934 0 obj << /First 956 0 R /Parent 136 0 R >> endobj 956 0 obj << /Last 957 0 R /Count 3 /First 958 0 R /Title (a. SCADA screens for the MLE Blower system provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 680 null ] /Parent 136 0 R >> endobj 958 0 obj << /Dest [ 3 0 R /XYZ 52 627 null ] /Count 0 /Title (\(1\) Selection of SCADA Manual, SCADA Automatic mode) /Next 959 0 R /Parent 136 0 R >> endobj 959 0 obj << /Prev 960 0 R /Count 0 /Title (\(2\) Input of operator adjustable setpoints and control parameters) /Dest [ 3 0 R /XYZ 52 601 null ] /Next 961 0 R /Parent 136 0 R >> endobj 961 0 obj << /Prev 962 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 52 575 null ] /Parent 136 0 R >> endobj 962 0 obj << /Parent 136 0 R >> endobj 960 0 obj << /Parent 136 0 R >> endobj 957 0 obj << /Prev 962 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 52 575 null ] /Parent 136 0 R >> endobj 933 0 obj << /Last 936 0 R /Count 10 /First 937 0 R /Title (a. SCADA screens for the MLE Blower system display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 524 null ] /Parent 136 0 R >> endobj 931 0 obj << /First 963 0 R /Parent 136 0 R >> endobj 963 0 obj << /Count 1 /First 964 0 R /Title (1. Control) /Last 965 0 R /Next 966 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 200 null ] >> endobj 966 0 obj << /First 967 0 R /Count 1 /Prev 968 0 R /Last 969 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 149 null ] >> endobj 969 0 obj << /Dest [ 3 0 R /XYZ 84 123 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Parent 136 0 R >> endobj 968 0 obj << /First 964 0 R /Parent 136 0 R >> endobj 967 0 obj << /Dest [ 3 0 R /XYZ 84 123 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Parent 136 0 R >> endobj 965 0 obj << /Dest [ 3 0 R /XYZ 84 175 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Parent 136 0 R >> endobj 964 0 obj << /Dest [ 3 0 R /XYZ 84 175 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Parent 136 0 R >> endobj 930 0 obj << /Count 2 /First 956 0 R /Title (1. Control) /Last 970 0 R /Next 971 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 706 null ] >> endobj 971 0 obj << /First 933 0 R /Count 2 /Prev 934 0 R /Last 935 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 550 null ] >> endobj 970 0 obj << /Last 957 0 R /Count 3 /First 958 0 R /Title (a. SCADA screens for the MLE Blower system provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 680 null ] /Parent 136 0 R >> endobj 864 0 obj << /First 860 0 R /Parent 136 0 R >> endobj 863 0 obj << /Count 6 /First 972 0 R /Title (A. Field Location \(Blower Room\)) /Last 973 0 R /Next 974 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 283 null ] >> endobj 974 0 obj << /First 975 0 R /Count 6 /Prev 976 0 R /Last 977 0 R /Title (B. Field Location \(MLE Basins\)) /Next 978 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 381 null ] >> endobj 978 0 obj << /First 963 0 R /Count 6 /Prev 979 0 R /Last 980 0 R /Title (C. Blower Building Electrical Room) /Next 981 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 226 null ] >> endobj 981 0 obj << /First 930 0 R /Count 6 /Prev 931 0 R /Last 932 0 R /Title (D. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 720 null ] >> endobj 980 0 obj << /First 967 0 R /Count 1 /Prev 968 0 R /Last 969 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 149 null ] >> endobj 979 0 obj << /First 975 0 R /Parent 136 0 R >> endobj 977 0 obj << /First 982 0 R /Count 2 /Prev 983 0 R /Last 984 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 304 null ] >> endobj 984 0 obj << /Prev 985 0 R /Count 0 /Title (b. Basin #2 ORP, DO for Zone 2, and DO for Zone 3 via Analyzer AIT-3001B) /Dest [ 3 0 R /XYZ 84 252 null ] /Parent 136 0 R >> endobj 985 0 obj << /Parent 136 0 R >> endobj 983 0 obj << /First 986 0 R /Parent 136 0 R >> endobj 986 0 obj << /Dest [ 3 0 R /XYZ 84 329 null ] /Count 0 /Title (a. Butterfly valves \(manual\)) /Parent 136 0 R >> endobj 982 0 obj << /Dest [ 3 0 R /XYZ 84 278 null ] /Count 0 /Title (a. Basin #1 ORP, DO for Zone 2, and DO for Zone 3 via Analyzer AIT-3001A) /Next 987 0 R /Parent 136 0 R >> endobj 987 0 obj << /Prev 985 0 R /Count 0 /Title (b. Basin #2 ORP, DO for Zone 2, and DO for Zone 3 via Analyzer AIT-3001B) /Dest [ 3 0 R /XYZ 84 252 null ] /Parent 136 0 R >> endobj 976 0 obj << /First 972 0 R /Parent 136 0 R >> endobj 975 0 obj << /Count 1 /First 986 0 R /Title (1. Control) /Last 988 0 R /Next 989 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 355 null ] >> endobj 989 0 obj << /First 982 0 R /Count 2 /Prev 983 0 R /Last 984 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 304 null ] >> endobj 988 0 obj << /Dest [ 3 0 R /XYZ 84 329 null ] /Count 0 /Title (a. Butterfly valves \(manual\)) /Parent 136 0 R >> endobj 973 0 obj << /First 990 0 R /Count 2 /Prev 991 0 R /Last 992 0 R /Title (��\0002\000.\000 \000B\000l\000o\000w\000e\000r\000 \000M\000a\000n\000u\000f\000a\000c\000t\000u\000r\000e\000r \031\000s\000 \000C\000o\000n\000t\000r\000o\000l\000 \000P\000a\000n\000e\000l\000 \000\(\000A\000E\000R\000t\000r\000o\000n\000i\000c\000\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 720 null ] >> endobj 992 0 obj << /Last 993 0 R /Count 6 /First 994 0 R /Title (��\000a\000.\000 \000T\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000i\000s\000 \000e\000q\000u\000i\000p\000p\000e\000d\000 \000w\000i\000t\000h\000 \000t\000h\000e\000 \000m\000a\000n\000u\000f\000a\000c\000t\000u\000r\000e\000r \031\000s\000 \000A\000E\000R\000t\000r\000o\000n\000i\000c\000 \000e\000l\000e\000c\000t\000r\000o\000n\000i\000c\000 \000b\000l\000o\000w\000e\000r\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000H\000M\000I\000.\000 \000I\000t\000 \000p\000r\000o\000v\000i\000d\000e\000s\000 \000t\000h\000e\000 \000f\000o\000l\000l\000o\000w\000i\000n\000g\000 \000c\000o\000n\000t\000r\000o\000l\000 \000a\000n\000d\000 \000m\000o\000n\000i\000t\000o\000r\000i\000n\000g\000 \000f\000e\000a\000t\000u\000r\000e\000s\000:) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 994 0 obj << /Count 4 /First 995 0 R /Title (\(1\) Control) /Last 996 0 R /Next 997 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 653 null ] >> endobj 997 0 obj << /First 998 0 R /Count 4 /Prev 999 0 R /Last 1000 0 R /Title (\(2\) Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 524 null ] >> endobj 1000 0 obj << /Prev 1001 0 R /Count 0 /Title (\(d\) Blower alarms and faults) /Dest [ 3 0 R /XYZ 84 407 null ] /Parent 136 0 R >> endobj 1001 0 obj << /Parent 136 0 R >> endobj 999 0 obj << /First 995 0 R /Parent 136 0 R >> endobj 998 0 obj << /Dest [ 3 0 R /XYZ 84 498 null ] /Count 0 /Title (\(a\) Run status) /Next 1002 0 R /Parent 136 0 R >> endobj 1002 0 obj << /Prev 1003 0 R /Count 0 /Title (\(b\) Internal blower operating parameters including suction and discharge air pressures and temperatures.) /Dest [ 3 0 R /XYZ 84 472 null ] /Next 1004 0 R /Parent 136 0 R >> endobj 1004 0 obj << /Prev 1005 0 R /Count 0 /Title (\(c\) VFD operating parameters including speed) /Dest [ 3 0 R /XYZ 84 433 null ] /Next 1006 0 R /Parent 136 0 R >> endobj 1006 0 obj << /Prev 1001 0 R /Count 0 /Title (\(d\) Blower alarms and faults) /Dest [ 3 0 R /XYZ 84 407 null ] /Parent 136 0 R >> endobj 1005 0 obj << /Parent 136 0 R >> endobj 1003 0 obj << /Parent 136 0 R >> endobj 996 0 obj << /Prev 1007 0 R /Count 0 /Title (\(d\) Reset blower generated alarms and faults) /Dest [ 3 0 R /XYZ 84 550 null ] /Parent 136 0 R >> endobj 1007 0 obj << /Parent 136 0 R >> endobj 995 0 obj << /Dest [ 3 0 R /XYZ 84 627 null ] /Count 0 /Title (\(a\) HAND, OFF, or AUTO \(Remote\) setting selection) /Next 1008 0 R /Parent 136 0 R >> endobj 1008 0 obj << /Prev 1009 0 R /Count 0 /Title (\(b\) Start and stop of the blower in HAND mode) /Dest [ 3 0 R /XYZ 84 601 null ] /Next 1010 0 R /Parent 136 0 R >> endobj 1010 0 obj << /Prev 1011 0 R /Count 0 /Title (\(c\) Blower speed control in HAND) /Dest [ 3 0 R /XYZ 84 575 null ] /Next 1012 0 R /Parent 136 0 R >> endobj 1012 0 obj << /Prev 1007 0 R /Count 0 /Title (\(d\) Reset blower generated alarms and faults) /Dest [ 3 0 R /XYZ 84 550 null ] /Parent 136 0 R >> endobj 1011 0 obj << /Parent 136 0 R >> endobj 1009 0 obj << /Parent 136 0 R >> endobj 993 0 obj << /First 998 0 R /Count 4 /Prev 999 0 R /Last 1000 0 R /Title (\(2\) Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 524 null ] >> endobj 991 0 obj << /First 1013 0 R /Parent 136 0 R >> endobj 1013 0 obj << /Count 2 /First 1014 0 R /Title (a. Control) /Last 1015 0 R /Next 1016 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 231 null ] >> endobj 1016 0 obj << /First 1017 0 R /Count 2 /Prev 1018 0 R /Last 1019 0 R /Title (b. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 154 null ] >> endobj 1019 0 obj << /Prev 1020 0 R /Count 0 /Title (\(2\) Blower trip light) /Dest [ 3 0 R /XYZ 52 102 null ] /Parent 136 0 R >> endobj 1020 0 obj << /Parent 136 0 R >> endobj 1018 0 obj << /First 1014 0 R /Parent 136 0 R >> endobj 1017 0 obj << /Dest [ 3 0 R /XYZ 52 128 null ] /Count 0 /Title (\(1\) 120V control power light) /Next 1021 0 R /Parent 136 0 R >> endobj 1021 0 obj << /Prev 1020 0 R /Count 0 /Title (\(2\) Blower trip light) /Dest [ 3 0 R /XYZ 52 102 null ] /Parent 136 0 R >> endobj 1015 0 obj << /Prev 1022 0 R /Count 0 /Title (\(2\) Trip Reset pushbutton) /Dest [ 3 0 R /XYZ 52 179 null ] /Parent 136 0 R >> endobj 1022 0 obj << /Parent 136 0 R >> endobj 1014 0 obj << /Dest [ 3 0 R /XYZ 52 205 null ] /Count 0 /Title (\(1\) Emergency stop pushbutton) /Next 1023 0 R /Parent 136 0 R >> endobj 1023 0 obj << /Prev 1022 0 R /Count 0 /Title (\(2\) Trip Reset pushbutton) /Dest [ 3 0 R /XYZ 52 179 null ] /Parent 136 0 R >> endobj 990 0 obj << /Last 993 0 R /Count 6 /First 994 0 R /Title (��\000a\000.\000 \000T\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000i\000s\000 \000e\000q\000u\000i\000p\000p\000e\000d\000 \000w\000i\000t\000h\000 \000t\000h\000e\000 \000m\000a\000n\000u\000f\000a\000c\000t\000u\000r\000e\000r \031\000s\000 \000A\000E\000R\000t\000r\000o\000n\000i\000c\000 \000e\000l\000e\000c\000t\000r\000o\000n\000i\000c\000 \000b\000l\000o\000w\000e\000r\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000H\000M\000I\000.\000 \000I\000t\000 \000p\000r\000o\000v\000i\000d\000e\000s\000 \000t\000h\000e\000 \000f\000o\000l\000l\000o\000w\000i\000n\000g\000 \000c\000o\000n\000t\000r\000o\000l\000 \000a\000n\000d\000 \000m\000o\000n\000i\000t\000o\000r\000i\000n\000g\000 \000f\000e\000a\000t\000u\000r\000e\000s\000:) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 972 0 obj << /Count 6 /First 1013 0 R /Title (1. Field Installed Devices) /Last 1024 0 R /Next 1025 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 257 null ] >> endobj 1025 0 obj << /First 990 0 R /Count 2 /Prev 991 0 R /Last 992 0 R /Title (��\0002\000.\000 \000B\000l\000o\000w\000e\000r\000 \000M\000a\000n\000u\000f\000a\000c\000t\000u\000r\000e\000r \031\000s\000 \000C\000o\000n\000t\000r\000o\000l\000 \000P\000a\000n\000e\000l\000 \000\(\000A\000E\000R\000t\000r\000o\000n\000i\000c\000\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 720 null ] >> endobj 1024 0 obj << /First 1017 0 R /Count 2 /Prev 1018 0 R /Last 1019 0 R /Title (b. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 154 null ] >> endobj 861 0 obj << /First 1026 0 R /Count 36 /Prev 1027 0 R /Last 1028 0 R /Title (B. The Dissolved Oxygen Control System \(DOCS\) shall have the following general features, capabilities, components, and accessories:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 563 null ] >> endobj 1028 0 obj << /First 1029 0 R /Count 2 /Prev 1030 0 R /Last 1031 0 R /Title (9. System Operating Constraints) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 455 null ] >> endobj 1031 0 obj << /Prev 1032 0 R /Count 0 /Title (b. Basin Diffuser System Minimum Air Flowrate: The minimum air flowrate required by the diffuser system in each basin \(for mixing\) is 380 SCFM. When both basins are operating, the minimum total air flowrate required by the diffuser systems is 760 scfm.) /Dest [ 3 0 R /XYZ 52 376 null ] /Parent 136 0 R >> endobj 1032 0 obj << /Parent 136 0 R >> endobj 1030 0 obj << /Parent 136 0 R >> endobj 1029 0 obj << /Dest [ 3 0 R /XYZ 52 429 null ] /Count 0 /Title (��\000a\000.\000 \000B\000l\000o\000w\000e\000r\000 \000M\000i\000n\000i\000m\000u\000m\000 \000A\000i\000r\000 \000F\000l\000o\000w\000r\000a\000t\000e\000:\000 \000T\000h\000e\000 \000m\000a\000n\000u\000f\000a\000c\000t\000u\000r\000e\000r \031\000s\000 \000r\000a\000t\000e\000d\000 \000m\000i\000n\000i\000m\000u\000m\000 \000a\000i\000r\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000f\000o\000r\000 \000n\000e\000w\000 \000b\000l\000o\000w\000e\000r\000 \000B\000-\0003\0005\0000\0001\000 \000i\000s\000 \0003\0006\0009\000 \000s\000c\000f\000m\000,\000 \000w\000h\000i\000c\000h\000 \000o\000c\000c\000u\000r\000s\000 \000a\000t\000 \000t\000h\000e\000 \000m\000i\000n\000i\000m\000u\000m\000 \000m\000o\000t\000o\000r\000/\000V\000F\000D\000 \000s\000p\000e\000e\000d\000 \000o\000f\000 \0002\0001\000 \000H\000z\000.) /Next 1033 0 R /Parent 136 0 R >> endobj 1033 0 obj << /Prev 1032 0 R /Count 0 /Title (b. Basin Diffuser System Minimum Air Flowrate: The minimum air flowrate required by the diffuser system in each basin \(for mixing\) is 380 SCFM. When both basins are operating, the minimum total air flowrate required by the diffuser systems is 760 scfm.) /Dest [ 3 0 R /XYZ 52 376 null ] /Parent 136 0 R >> endobj 1027 0 obj << /Parent 136 0 R >> endobj 1026 0 obj << /Dest [ 3 0 R /XYZ 84 524 null ] /Count 0 /Title (��\0001\000.\000 \000O\000n\000e\000 \000r\000o\000t\000a\000r\000y\000 \000p\000o\000s\000i\000t\000i\000v\000e\000 \000d\000i\000s\000p\000l\000a\000c\000e\000m\000e\000n\000t\000 \000b\000l\000o\000w\000e\000r\000 \000i\000s\000 \000p\000r\000o\000v\000i\000d\000e\000d\000 \000f\000o\000r\000 \000d\000u\000t\000y\000 \000s\000e\000r\000v\000i\000c\000e\000.\000 \000T\000w\000o\000 \000e\000x\000i\000s\000t\000i\000n\000g\000 \000c\000e\000n\000t\000r\000i\000f\000u\000g\000a\000l\000 \000b\000l\000o\000w\000e\000r\000s\000 \000a\000r\000e\000 \000a\000v\000a\000i\000l\000a\000b\000l\000e\000 \000a\000s\000 \000s\000t\000a\000n\000d\000b\000y\000 \000u\000n\000i\000t\000s\000,\000 \000a\000n\000d\000 \000w\000o\000u\000l\000d\000 \000b\000e\000 \000o\000p\000e\000r\000a\000t\000e\000d\000 \000m\000a\000n\000u\000a\000l\000l\000y\000 \034\000i\000n\000 \000h\000a\000n\000d \035\000 \000i\000f\000 \000p\000l\000a\000c\000e\000d\000 \000i\000n\000 \000s\000e\000r\000v\000i\000c\000e\000.\000 \000C\000o\000n\000t\000r\000o\000l\000 \000o\000f\000 \000t\000h\000e\000 \000s\000t\000a\000n\000d\000b\000y\000 \000b\000l\000o\000w\000e\000r\000s\000 \000i\000s\000 \000n\000o\000t\000 \000i\000n\000c\000l\000u\000d\000e\000d\000 \000i\000n\000 \000.\000.\000.) /Next 1034 0 R /Parent 136 0 R >> endobj 1034 0 obj << /Prev 1035 0 R /Count 0 /Title (2. There are two parallel aeration basins \(Basin #1 and Basin #2\). Each of the two basins is divided into one anoxic zone, and three aerated zones \(aerated zones 1,2, and 3\). A fine bubble diffuser system is installed in each aerated zone.) /Dest [ 3 0 R /XYZ 84 429 null ] /Next 1036 0 R /Parent 136 0 R >> endobj 1036 0 obj << /Prev 1037 0 R /Count 0 /Title (3. The control system in each aeration basin includes: one \(1\) ORP probe in the anoxic zone; one \(1\) DO probe in aerated zone 2; and one \(1\) DO probe in aerated Zone 3. Each aerated zone air supply pipe is equipped with an existing manually operated b...) /Dest [ 3 0 R /XYZ 84 376 null ] /Next 1038 0 R /Parent 136 0 R >> endobj 1038 0 obj << /First 1039 0 R /Count 3 /Prev 1040 0 R /Last 1041 0 R /Title (4. The purpose of the DO control system is to provide the appropriate amount of dissolved oxygen to support the aeration process under the anticipated operating conditions. The system shall continuously monitor the average of the two dissolved oxygen ...) /Next 1042 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 267 null ] >> endobj 1042 0 obj << /Prev 1043 0 R /Count 0 /Title (5. The independent DO value from each probe shall be visible to the operator.) /Dest [ 3 0 R /XYZ 52 692 null ] /Next 1044 0 R /Parent 136 0 R >> endobj 1044 0 obj << /Prev 1045 0 R /Count 0 /Title (��\0006\000.\000 \000T\000h\000e\000 \000p\000l\000a\000n\000t \031\000s\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000l\000o\000g\000i\000c\000 \000c\000o\000n\000t\000r\000o\000l\000l\000e\000r\000 \000\(\000P\000L\000C\000\)\000 \000\(\000l\000o\000c\000a\000t\000e\000d\000 \000i\000n\000 \000t\000h\000e\000 \000B\000l\000o\000w\000e\000r\000 \000B\000u\000i\000l\000d\000i\000n\000g\000\)\000 \000a\000n\000d\000 \000S\000C\000A\000D\000A\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000p\000e\000r\000f\000o\000r\000m\000 \000t\000h\000e\000 \000m\000o\000n\000i\000t\000o\000r\000i\000n\000g\000,\000 \000l\000o\000g\000i\000c\000,\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000i\000n\000t\000e\000r\000f\000a\000c\000e\000 \000a\000n\000d\000 \000c\000o\000n\000t\000r\000o\000l\000 \000f\000u\000n\000c\000t\000i\000o\000n\000s\000 \000f\000o\000r\000 \000t\000h\000e\000 \000D\000O\000 \000C\000o\000n\000t\000r\000o\000l\000 \000S\000y\000s\000t\000e\000m\000 \000\(\000D\000O\000C\000S\000\)\000.) /Dest [ 3 0 R /XYZ 52 667 null ] /Next 1046 0 R /Parent 136 0 R >> endobj 1046 0 obj << /First 1047 0 R /Count 2 /Prev 1048 0 R /Last 1049 0 R /Title (7. When the PLC determines there is sufficient deviation of DO from target levels, it shall automatically adjust the blower speed to maintain the DO setpoint:) /Next 1050 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 613 null ] >> endobj 1050 0 obj << /Prev 1051 0 R /Count 0 /Title (8. The DOCS shall restrict the operating range of the blower to keep it within the acceptable efficiency range.) /Dest [ 3 0 R /XYZ 52 494 null ] /Next 1052 0 R /Parent 136 0 R >> endobj 1052 0 obj << /First 1029 0 R /Count 2 /Prev 1030 0 R /Last 1031 0 R /Title (9. System Operating Constraints) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 455 null ] >> endobj 1051 0 obj << /First 1047 0 R /Parent 136 0 R >> endobj 1049 0 obj << /Prev 1053 0 R /Count 0 /Title (b. In addition to continuous aeration, the system shall be capable of pulsed aeration to control DO when the system is lightly loaded, limited to six \(6\) starts per hour.) /Dest [ 3 0 R /XYZ 52 548 null ] /Parent 136 0 R >> endobj 1053 0 obj << /Parent 136 0 R >> endobj 1048 0 obj << /Parent 136 0 R >> endobj 1047 0 obj << /Dest [ 3 0 R /XYZ 52 574 null ] /Count 0 /Title (a. Blower speed shall be adjusted utilizing the variable frequency drive \(VFD\)) /Next 1054 0 R /Parent 136 0 R >> endobj 1054 0 obj << /Prev 1053 0 R /Count 0 /Title (b. In addition to continuous aeration, the system shall be capable of pulsed aeration to control DO when the system is lightly loaded, limited to six \(6\) starts per hour.) /Dest [ 3 0 R /XYZ 52 548 null ] /Parent 136 0 R >> endobj 1045 0 obj << /Parent 136 0 R >> endobj 1043 0 obj << /First 1039 0 R /Parent 136 0 R >> endobj 1041 0 obj << /Prev 1055 0 R /Count 0 /Title (c. An independent value from either DO probe in Zone 3 \(this value would be used when one MLE basin is out of service\).) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 1055 0 obj << /Parent 136 0 R >> endobj 1040 0 obj << /Parent 136 0 R >> endobj 1039 0 obj << /Dest [ 3 0 R /XYZ 84 158 null ] /Count 0 /Title (a. An averaged value from the two DO probes in zones 3.) /Next 1056 0 R /Parent 136 0 R >> endobj 1056 0 obj << /Prev 1057 0 R /Count 0 /Title (b. An averaged value from the four DO probes in zones 2 and 3.) /Dest [ 3 0 R /XYZ 84 133 null ] /Next 1058 0 R /Parent 136 0 R >> endobj 1058 0 obj << /Prev 1055 0 R /Count 0 /Title (c. An independent value from either DO probe in Zone 3 \(this value would be used when one MLE basin is out of service\).) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 1057 0 obj << /Parent 136 0 R >> endobj 1037 0 obj << /Parent 136 0 R >> endobj 1035 0 obj << /Parent 136 0 R >> endobj 860 0 obj << /Dest [ 3 0 R /XYZ 84 631 null ] /Count 0 /Title (A. One rotary positive displacement blower is provided for duty service. This section describes the functional requirements for monitoring and control of the MLE blower system and MLE dissolved oxygen system to be implemented in and executed by the pl...) /Next 1059 0 R /Parent 136 0 R >> endobj 1059 0 obj << /First 1026 0 R /Count 36 /Prev 1027 0 R /Last 1028 0 R /Title (B. The Dissolved Oxygen Control System \(DOCS\) shall have the following general features, capabilities, components, and accessories:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 563 null ] >> endobj 858 0 obj << /First 871 0 R /Count 20 /Prev 872 0 R /Last 873 0 R /Title (1.04 Control Modes) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 536 null ] >> endobj 516 0 obj << /First 511 0 R /Parent 136 0 R >> endobj 515 0 obj << /Last 858 0 R /Count 20 /First 859 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 513 0 obj << /Last 1060 0 R /Count 72 /First 1061 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 668 null ] /Parent 136 0 R >> endobj 1061 0 obj << /Count 1 /First 1062 0 R /Title (1.01 General:) /Last 1063 0 R /Next 1064 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 617 null ] >> endobj 1064 0 obj << /First 1065 0 R /Count 12 /Prev 1066 0 R /Last 1067 0 R /Title (1.02 Operator Controls) /Next 1068 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 538 null ] >> endobj 1068 0 obj << /First 1069 0 R /Count 2 /Prev 1070 0 R /Last 1071 0 R /Title (1.03 Hardwired Interlocks) /Next 1072 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 292 null ] >> endobj 1072 0 obj << /First 1073 0 R /Count 6 /Prev 1074 0 R /Last 1075 0 R /Title (1.04 Control Modes:) /Next 1076 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 653 null ] >> endobj 1076 0 obj << /First 1077 0 R /Count 2 /Prev 1078 0 R /Last 1079 0 R /Title (1.05 General:) /Next 1080 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 717 null ] >> endobj 1080 0 obj << /First 1081 0 R /Count 6 /Prev 1082 0 R /Last 1083 0 R /Title (1.06 Operator Controls:) /Next 1084 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 464 null ] >> endobj 1084 0 obj << /First 1085 0 R /Count 2 /Prev 1086 0 R /Last 1087 0 R /Title (1.07 Hardwired Interlocks) /Next 1088 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 548 null ] >> endobj 1088 0 obj << /First 1089 0 R /Count 12 /Prev 1090 0 R /Last 1091 0 R /Title (1.08 Control Modes:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 310 null ] >> endobj 1091 0 obj << /First 1092 0 R /Count 30 /Prev 1093 0 R /Last 1094 0 R /Title (C. SCADA Automatic Control) /Parent 136 0 R /Dest [ 3 0 R /XYZ 46 687 null ] >> endobj 1094 0 obj << /First 1095 0 R /Count 4 /Prev 1096 0 R /Last 1097 0 R /Title (10. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 582 null ] >> endobj 1097 0 obj << /Prev 1098 0 R /Count 0 /Title (d. SCADA shall generate an alarm when there is a communication failure to a VFD.) /Dest [ 3 0 R /XYZ 39 424 null ] /Parent 136 0 R >> endobj 1098 0 obj << /Parent 136 0 R >> endobj 1096 0 obj << /Parent 136 0 R >> endobj 1095 0 obj << /Dest [ 3 0 R /XYZ 39 556 null ] /Count 0 /Title (a. SCADA shall generate an alarm when failure of key instrumentation is detected, such as the MLR flow transmitters \(FIT-3201A and FIT-3201B\), and the EQ pump station flow transmitter \(FIT-2001\).) /Next 1099 0 R /Parent 136 0 R >> endobj 1099 0 obj << /Prev 1100 0 R /Count 0 /Title (b. SCADA shall generate an alarm when there is a communication failure between the SCADA system and PLC.) /Dest [ 3 0 R /XYZ 39 503 null ] /Next 1101 0 R /Parent 136 0 R >> endobj 1101 0 obj << /Prev 1102 0 R /Count 0 /Title (��\000c\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e\000 \000i\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 3 0 R /XYZ 39 463 null ] /Next 1103 0 R /Parent 136 0 R >> endobj 1103 0 obj << /Prev 1098 0 R /Count 0 /Title (d. SCADA shall generate an alarm when there is a communication failure to a VFD.) /Dest [ 3 0 R /XYZ 39 424 null ] /Parent 136 0 R >> endobj 1102 0 obj << /Parent 136 0 R >> endobj 1100 0 obj << /Parent 136 0 R >> endobj 1093 0 obj << /First 1104 0 R /Parent 136 0 R >> endobj 1104 0 obj << /Dest [ 3 0 R /XYZ 39 128 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 1092 0 obj << /Dest [ 3 0 R /XYZ 46 661 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the pumps automatically. The HOA switch for the pumps must be in AUTO to enable control of the pumps from SCADA. The operator selects SCADA Automatic Mode for the system via the SCADA OIT. The op...) /Next 1105 0 R /Parent 136 0 R >> endobj 1105 0 obj << /Prev 1106 0 R /Count 0 /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between 30 Hz to 60 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pumps shall not ...) /Dest [ 3 0 R /XYZ 46 580 null ] /Next 1107 0 R /Parent 136 0 R >> endobj 1107 0 obj << /Prev 1108 0 R /Count 0 /Title (3. Total influent flow rate \(reported by FIT-2001\) \(GPM\) = FIT-2001) /Dest [ 3 0 R /XYZ 46 389 null ] /Next 1109 0 R /Parent 136 0 R >> endobj 1109 0 obj << /Prev 1110 0 R /Count 0 /Title (4. Total MLR flow rate \(GPM\) = FIT-3201A \(GPM\) + FIT-3201B \(GPM\)) /Dest [ 3 0 R /XYZ 46 363 null ] /Next 1111 0 R /Parent 136 0 R >> endobj 1111 0 obj << /Prev 1112 0 R /Count 0 /Title (��\0005\000.\000 \000P\000r\000o\000v\000i\000d\000e\000 \000s\000e\000l\000e\000c\000t\000a\000b\000l\000e\000 \000f\000u\000n\000c\000t\000i\000o\000n\000a\000l\000i\000t\000y\000 \000t\000o\000 \000a\000l\000l\000o\000w\000 \000o\000p\000e\000r\000a\000t\000o\000r\000 \000t\000o\000 \000d\000e\000f\000i\000n\000e\000 \000e\000i\000t\000h\000e\000r\000 \000M\000L\000E\000 \000b\000a\000s\000i\000n\000 \000a\000s\000 \034\000o\000u\000t\000 \000o\000f\000 \000s\000e\000r\000v\000i\000c\000e \035\000,\000 \000a\000t\000 \000w\000h\000i\000c\000h\000 \000p\000o\000i\000n\000t\000 \000t\000h\000e\000 \000T\000o\000t\000a\000l\000 \000M\000L\000R\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000b\000e\000c\000o\000m\000e\000:) /Dest [ 3 0 R /XYZ 46 337 null ] /Next 1113 0 R /Parent 136 0 R >> endobj 1113 0 obj << /First 1114 0 R /Count 2 /Prev 1115 0 R /Last 1116 0 R /Title (6. Total MLR flow rate \(GPM\) = FIT-3201A \(GPM\) or FIT-3201B \(GPM\)) /Next 1117 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 46 298 null ] >> endobj 1117 0 obj << /Prev 1118 0 R /Count 0 /Title (7. When one ML pump is out of service, the program shall operate the service ML pump to deliver the entire ML flow rate.) /Dest [ 3 0 R /XYZ 39 687 null ] /Next 1119 0 R /Parent 136 0 R >> endobj 1119 0 obj << /Prev 1120 0 R /Count 0 /Title (8. It may be necessary to supplement the ML pump with a temporary submersible pump and piping to achieve the required ML return rate when one basin is out of service.) /Dest [ 3 0 R /XYZ 39 648 null ] /Next 1121 0 R /Parent 136 0 R >> endobj 1121 0 obj << /Prev 1122 0 R /Count 0 /Title (9. The MLR pumps DO NOT restart automatically after a power failure.) /Dest [ 3 0 R /XYZ 39 608 null ] /Next 1123 0 R /Parent 136 0 R >> endobj 1123 0 obj << /First 1095 0 R /Count 4 /Prev 1096 0 R /Last 1097 0 R /Title (10. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 582 null ] >> endobj 1122 0 obj << /Parent 136 0 R >> endobj 1120 0 obj << /Parent 136 0 R >> endobj 1118 0 obj << /First 1114 0 R /Parent 136 0 R >> endobj 1116 0 obj << /Prev 1124 0 R /Count 0 /Title (��\000b\000.\000 \000A\000u\000t\000o\0002\000 \023\000 \000F\000l\000o\000w\000 \000P\000a\000c\000e\000d\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0002\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000t\000o\000t\000a\000l\000 \000M\000L\000E\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000\(\000E\000Q\000 \000p\000u\000m\000p\000 \000s\000t\000a\000t\000i\000o\000n\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000\)\000 \000i\000s\000 \000a\000t\000 \000o\000r\000 \000b\000e\000l\000o\000w\000 \000t\000h\000e\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000 \000m\000i\000n\000i\000m\000u\000m\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000s\000e\000t\000p\000o\000i\000n\000t\000.\000 \000T\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000M\000a\000x\000i\000m\000.\000.\000.) /Dest [ 3 0 R /XYZ 46 150 null ] /Parent 136 0 R >> endobj 1124 0 obj << /Parent 136 0 R >> endobj 1115 0 obj << /Parent 136 0 R >> endobj 1114 0 obj << /Dest [ 3 0 R /XYZ 46 272 null ] /Count 0 /Title (��\000a\000.\000 \000A\000u\000t\000o\0001\000 \023\000 \000O\000R\000P\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0001\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000o\000p\000e\000r\000a\000t\000e\000 \000s\000i\000m\000u\000l\000t\000a\000n\000e\000o\000u\000s\000l\000y\000 \000a\000n\000d\000 \000e\000a\000c\000h\000 \000p\000u\000m\000p\000 \000w\000i\000l\000l\000 \000t\000u\000r\000n\000 \000o\000n\000 \000a\000n\000d\000 \000o\000f\000f\000 \000a\000u\000t\000o\000m\000a\000t\000i\000c\000a\000l\000l\000y\000 \000a\000n\000d\000 \000a\000d\000j\000u\000s\000t\000 \000s\000p\000e\000e\000d\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000a\000n\000d\000 \000M\000a\000x\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000t\000o\000 \000m\000a\000i\000n\000t\000a\000i\000n\000 \000t\000h\000e\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000O\000R\000P\000 \000s\000e\000t\000p\000o\000i\000n\000t\000 \000f\000o\000r\000 \000e\000a\000c\000h\000 \000b\000a\000s\000i\000n\000.\000 \000E\000a\000c\000h\000 \000p\000.\000.\000.) /Next 1125 0 R /Parent 136 0 R >> endobj 1125 0 obj << /Prev 1124 0 R /Count 0 /Title (��\000b\000.\000 \000A\000u\000t\000o\0002\000 \023\000 \000F\000l\000o\000w\000 \000P\000a\000c\000e\000d\000 \000C\000o\000n\000t\000r\000o\000l\000:\000 \000W\000h\000e\000n\000 \000i\000n\000 \000A\000u\000t\000o\0002\000,\000 \000t\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000t\000h\000e\000 \000M\000i\000n\000i\000m\000u\000m\000 \000s\000p\000e\000e\000d\000 \000w\000h\000e\000n\000 \000t\000h\000e\000 \000t\000o\000t\000a\000l\000 \000M\000L\000E\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000\(\000E\000Q\000 \000p\000u\000m\000p\000 \000s\000t\000a\000t\000i\000o\000n\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000\)\000 \000i\000s\000 \000a\000t\000 \000o\000r\000 \000b\000e\000l\000o\000w\000 \000t\000h\000e\000 \000i\000n\000f\000l\000u\000e\000n\000t\000 \000f\000l\000o\000w\000 \000m\000i\000n\000i\000m\000u\000m\000 \000f\000l\000o\000w\000r\000a\000t\000e\000 \000s\000e\000t\000p\000o\000i\000n\000t\000.\000 \000T\000h\000e\000 \000p\000u\000m\000p\000s\000 \000w\000i\000l\000l\000 \000r\000u\000n\000 \000a\000t\000 \000M\000a\000x\000i\000m\000.\000.\000.) /Dest [ 3 0 R /XYZ 46 150 null ] /Parent 136 0 R >> endobj 1112 0 obj << /Parent 136 0 R >> endobj 1110 0 obj << /Parent 136 0 R >> endobj 1108 0 obj << /Parent 136 0 R >> endobj 1106 0 obj << /Parent 136 0 R >> endobj 1090 0 obj << /First 1085 0 R /Parent 136 0 R >> endobj 1089 0 obj << /Count 3 /First 1126 0 R /Title (A. Local Manual Control) /Last 1127 0 R /Next 1128 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 285 null ] >> endobj 1128 0 obj << /First 1104 0 R /Count 1 /Prev 1129 0 R /Last 1130 0 R /Title (B. SCADA Manual Control) /Next 1131 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 154 null ] >> endobj 1131 0 obj << /First 1092 0 R /Count 30 /Prev 1093 0 R /Last 1094 0 R /Title (C. SCADA Automatic Control) /Parent 136 0 R /Dest [ 3 0 R /XYZ 46 687 null ] >> endobj 1130 0 obj << /Dest [ 3 0 R /XYZ 39 128 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 1129 0 obj << /First 1126 0 R /Parent 136 0 R >> endobj 1127 0 obj << /Prev 1132 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 39 180 null ] /Parent 136 0 R >> endobj 1132 0 obj << /Parent 136 0 R >> endobj 1126 0 obj << /Dest [ 3 0 R /XYZ 39 259 null ] /Count 0 /Title (1. A pump runs continuously at the speed set via its VFD keypad when the Hand-Off-Auto \(HOA\) selector switch is in HAND and its Start pushbutton is pressed. The pump will turn off when its HOA switch is placed in the OFF position or its Stop pushbutto...) /Next 1133 0 R /Parent 136 0 R >> endobj 1133 0 obj << /Prev 1134 0 R /Count 0 /Title (2. Hard-wired interlocks stop operation of the pump.) /Dest [ 3 0 R /XYZ 39 205 null ] /Next 1135 0 R /Parent 136 0 R >> endobj 1135 0 obj << /Prev 1132 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 39 180 null ] /Parent 136 0 R >> endobj 1134 0 obj << /Parent 136 0 R >> endobj 1087 0 obj << /Last 1136 0 R /Count 6 /First 1137 0 R /Title (��\000A\000.\000 \000T\000h\000e\000s\000e\000 \000c\000o\000n\000d\000i\000t\000i\000o\000n\000s\000 \000w\000i\000l\000l\000 \000p\000r\000e\000v\000e\000n\000t\000 \000t\000h\000e\000 \000p\000u\000m\000p\000 \000f\000r\000o\000m\000 \000s\000t\000a\000r\000t\000i\000n\000g\000 \000a\000n\000d\000 \000w\000i\000l\000l\000 \000s\000t\000o\000p\000 \000\(\000t\000r\000i\000p\000\)\000 \000a\000n\000 \000o\000p\000e\000r\000a\000t\000i\000n\000g\000 \000p\000u\000m\000p\000 \000i\000n\000 \000a\000l\000l\000 \000m\000o\000d\000e\000s\000.\000 \000E\000a\000c\000h\000 \000o\000f\000 \000t\000h\000e\000s\000e\000 \000c\000o\000n\000d\000i\000t\000i\000o\000n\000s\000 \000i\000s\000 \000e\000x\000e\000c\000u\000t\000e\000d\000 \000b\000y\000 \000h\000a\000r\000d\000w\000i\000r\000e\000d\000 \000c\000o\000n\000t\000r\000o\000l\000s\000.\000 \000E\000a\000c\000h\000 \000f\000a\000u\000l\000t\000/\000t\000r\000i\000p\000 \000e\000n\000e\000r\000g\000i\000z\000e\000s\000 \000t\000h\000e\000 \000T\000r\000i\000p\000 \000i\000n\000d\000i\000c\000a\000t\000i\000n\000g\000 \000l\000i\000g\000h\000t\000 \000a\000t\000 \000t\000h\000e\000 \000p\000u\000m\000p \031\000s\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000t\000a\000t\000i\000o\000n\000 \000.\000.\000.) /Dest [ 3 0 R /XYZ 39 522 null ] /Parent 136 0 R >> endobj 1137 0 obj << /Count 1 /First 1138 0 R /Title (1. 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The mixers run continuously at the speed set on the VFD when the Hand-Off selector switch located at the VFD is placed in the Hand position and one of the Start pushbuttons is pressed. The mixers will turn off when the Hand-Off switch is located in...) /Next 1243 0 R /Parent 136 0 R >> endobj 1243 0 obj << /Prev 1244 0 R /Count 0 /Title (2. A hard-wired interlock shall stop operation of the mixer upon high temperature indication. The mixer shall not restart until the alarm condition is cleared and a reset push button at the local control station at the VFD location in the Blower Build...) /Dest [ 3 0 R /XYZ 84 534 null ] /Next 1245 0 R /Parent 136 0 R >> endobj 1245 0 obj << /Prev 1242 0 R /Count 0 /Title (3. 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Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 383 null ] >> endobj 1316 0 obj << /Prev 1312 0 R /Count 0 /Title (c. Motor Hi Temp Alarm Reset Pushbutton \(on MiniCAS\)) /Dest [ 3 0 R /XYZ 84 409 null ] /Parent 136 0 R >> endobj 1063 0 obj << /Dest [ 3 0 R /XYZ 84 591 null ] /Count 0 /Title (A. The mixers are submersible, propeller type. One mixer is located in the anoxic zone of each aeration basin. The anoxic zones are non-aerated zones, and the mixers in these zones will operate continuously when the aeration basin is in service.) /Parent 136 0 R >> endobj 1062 0 obj << /Dest [ 3 0 R /XYZ 84 591 null ] /Count 0 /Title (A. The mixers are submersible, propeller type. One mixer is located in the anoxic zone of each aeration basin. The anoxic zones are non-aerated zones, and the mixers in these zones will operate continuously when the aeration basin is in service.) /Parent 136 0 R >> endobj 1060 0 obj << /First 1089 0 R /Count 12 /Prev 1090 0 R /Last 1091 0 R /Title (1.08 Control Modes:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 39 310 null ] >> endobj 512 0 obj << /First 507 0 R /Parent 136 0 R >> endobj 511 0 obj << /Last 1060 0 R /Count 72 /First 1061 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 668 null ] /Parent 136 0 R >> endobj 509 0 obj << /Last 1318 0 R /Count 12 /First 1319 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 1319 0 obj << /Count 5 /First 1320 0 R /Title (1.01 General:) /Last 1321 0 R /Next 1322 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 656 null ] >> endobj 1322 0 obj << /First 1323 0 R /Count 12 /Prev 1324 0 R /Last 1325 0 R /Title (1.02 Operator Controls) /Next 1326 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 598 null ] >> endobj 1326 0 obj << /First 1327 0 R /Count 30 /Prev 1328 0 R /Last 1329 0 R /Title (1.03 Control Modes:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 242 null ] >> endobj 1329 0 obj << /First 1330 0 R /Count 4 /Prev 1331 0 R /Last 1332 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 390 null ] >> endobj 1332 0 obj << /Prev 1333 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 84 231 null ] /Parent 136 0 R >> endobj 1333 0 obj << /Parent 136 0 R >> endobj 1331 0 obj << /First 1334 0 R /Parent 136 0 R >> endobj 1334 0 obj << /Dest [ 3 0 R /XYZ 84 348 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the pumps automatically. The HOA switch for the pumps must be in AUTO to enable control of the pumps from SCADA. The operator selects SCADA Automatic Mode for the system via the SCADA OIT. The op...) /Next 1335 0 R /Parent 136 0 R >> endobj 1335 0 obj << /Prev 1336 0 R /Count 0 /Title (2. VFD minimum and maximum speed shall be exposed in SCADA in all Auto operating modes and shall be adjustable between approximately 10 Hz to 54 Hz. It shall not be possible to set the minimum speed higher than the maximum speed, or vice versa. The pu...) /Dest [ 3 0 R /XYZ 84 253 null ] /Next 1337 0 R /Parent 136 0 R >> endobj 1337 0 obj << /Prev 1338 0 R /Count 0 /Title (3. In all Auto modes of operation, two pumps will turn on if the level in the EQ basin reaches the High-High level setpoint and/or switch. The pumps will continue to run at a higher flow setpoint until the level in the EQ basin is lower than a High-Hi...) /Dest [ 3 0 R /XYZ 84 145 null ] /Next 1339 0 R /Parent 136 0 R >> endobj 1339 0 obj << /Prev 1340 0 R /Count 0 /Title (4. In all Auto modes of operation, lead pump will ramp up to maximum output if the level in the EQ basin reaches the programmable High level set point. The pump will continue to run at a higher flow setpoint until the level in the EQ basin is lower th...) /Dest [ 3 0 R /XYZ 52 679 null ] /Next 1341 0 R /Parent 136 0 R >> endobj 1341 0 obj << /Prev 1342 0 R /Count 0 /Title (5. In all Auto modes of operation, if the EQ basin level is less than Low level setpoint, the PLC will adjust the flow setpoint to run at the minimum until the EQ basin level becomes greater than the Low level reset setpoint, at which time operation w...) /Dest [ 3 0 R /XYZ 52 570 null ] /Next 1343 0 R /Parent 136 0 R >> endobj 1343 0 obj << /Prev 1344 0 R /Count 0 /Title (6. In all Auto modes of operation, if the EQ basin level is less than the programmable Low-Low level setpoint, the PLC will turn off the pump until the EQ basin level becomes greater than the Low-Low level reset setpoint, at which time operation will ...) /Dest [ 3 0 R /XYZ 52 489 null ] /Next 1345 0 R /Parent 136 0 R >> endobj 1345 0 obj << /Prev 1346 0 R /Count 0 /Title (7. When in Auto, the pumps will turn on and off automatically and adjust in flow according to the operator-selected flow rate.) /Dest [ 3 0 R /XYZ 52 380 null ] /Next 1347 0 R /Parent 136 0 R >> endobj 1347 0 obj << /Prev 1348 0 R /Count 0 /Title (8. If the EQ pump station flow meter \(FIT-2001\) fails, the PLC shall continue to automatically control the pump speed using similar logic to the flow control logic. However, the pump speed setpoint is determined directly from the operator input values...) /Dest [ 3 0 R /XYZ 52 341 null ] /Next 1349 0 R /Parent 136 0 R >> endobj 1349 0 obj << /First 1350 0 R /Count 1 /Prev 1351 0 R /Last 1352 0 R /Title (9. The PLC shall calculate the total inflow to the EQ basin from the influent flowmeter data from the previous day \(in gallons\), and divide by 1440 minutes to calculate a suggested initial flow setpoint in gpm. The operator would use this initial flow...) /Next 1353 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 246 null ] >> endobj 1353 0 obj << /First 1354 0 R /Count 1 /Prev 1355 0 R /Last 1356 0 R /Title (��\0001\0000\000.\000 \000T\000h\000e\000 \000P\000L\000C\000 \000s\000h\000a\000l\000l\000 \000d\000i\000s\000p\000l\000a\000y\000 \000t\000h\000e\000 \000c\000u\000r\000r\000e\000n\000t\000 \000E\000Q\000 \000b\000a\000s\000i\000n\000 \000l\000e\000v\000e\000l\000 \000a\000n\000d\000 \000m\000a\000x\000i\000m\000u\000m\000 \000a\000n\000d\000 \000m\000i\000n\000i\000m\000u\000m\000 \000E\000Q\000 \000b\000a\000s\000i\000n\000 \000l\000e\000v\000e\000l\000 \000f\000r\000o\000m\000 \000t\000h\000e\000 \000p\000r\000e\000v\000i\000o\000u\000s\000 \0002\0004\000 \000h\000o\000u\000r\000s\000.\000 \000T\000h\000e\000 \000P\000L\000C\000 \000s\000h\000a\000l\000l\000 \000s\000t\000o\000r\000e\000 \000m\000a\000x\000i\000m\000u\000m\000 \000a\000n\000d\000 \000m\000i\000n\000i\000m\000u\000m\000 \000l\000e\000v\000e\000l\000s\000 \000a\000t\000 \000m\000i\000d\000n\000i\000g\000h\000t\000 \000f\000o\000r\000 \000t\000h\000e\000 \000s\000e\000v\000e\000n\000 \000p\000r\000e\000v\000i\000o\000u\000s\000 \000d\000a\000y\000s\000.\000 \000T\000h\000i\000s\000 \000w\000i\000l\000l\000 \000a\000i\000d\000 \000i\000n\000 \000t\000h\000e\000 \000o\000p\000e\000r\000a\000t\000o\000r \031\000s\000 \000d\000e\000c\000i\000s\000i\000o\000n\000 \000t\000o\000.\000.\000.) /Next 1357 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 125 null ] >> endobj 1357 0 obj << /First 1358 0 R /Count 1 /Prev 1359 0 R /Last 1360 0 R /Title (��\0001\0001\000.\000 \000T\000h\000e\000 \000P\000L\000C\000 \000s\000h\000a\000l\000l\000 \000c\000a\000l\000c\000u\000l\000a\000t\000e\000 \000t\000h\000e\000 \000E\000Q\000 \000b\000a\000s\000i\000n\000 \000v\000o\000l\000u\000m\000e\000 \000b\000y\000 \000m\000u\000l\000t\000i\000p\000l\000y\000i\000n\000g\000 \000t\000h\000e\000 \000E\000Q\000 \000b\000a\000s\000i\000n\000 \000l\000e\000v\000e\000l\000 \000b\000y\000 \000t\000h\000e\000 \000v\000o\000l\000u\000m\000e\000 \000c\000o\000e\000f\000f\000i\000c\000i\000e\000n\000t\000.\000 \000T\000h\000e\000 \000P\000L\000C\000 \000s\000h\000a\000l\000l\000 \000s\000t\000o\000r\000e\000 \000t\000h\000e\000 \000d\000a\000i\000l\000y\000 \000v\000o\000l\000u\000m\000e\000s\000 \000a\000t\000 \000m\000i\000d\000n\000i\000g\000h\000t\000 \000f\000o\000r\000 \000t\000h\000e\000 \000s\000e\000v\000e\000n\000 \000p\000r\000e\000v\000i\000o\000u\000s\000 \000d\000a\000y\000s\000.\000 \000T\000h\000i\000s\000 \000w\000i\000l\000l\000 \000a\000i\000d\000 \000i\000n\000 \000t\000h\000e\000 \000o\000p\000e\000r\000a\000t\000o\000r \031\000s\000 \000d\000e\000c\000i\000s\000i\000o\000n\000 \000t\000o\000 \000i\000n\000c\000r\000e\000a\000s\000e\000 \000o\000r\000 \000d\000e\000c\000r\000e\000a\000s\000.\000.\000.) /Next 1361 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 522 null ] >> endobj 1361 0 obj << /Prev 1362 0 R /Count 0 /Title (12. In SCADA Automatic mode the PLC shall automatically attempt to restart the EQ pump system after a power failure.) /Dest [ 3 0 R /XYZ 84 429 null ] /Parent 136 0 R >> endobj 1362 0 obj << /First 1358 0 R /Parent 136 0 R >> endobj 1360 0 obj << /Dest [ 3 0 R /XYZ 84 455 null ] /Count 0 /Title (a. Tank Current Volume \(gallons\) = tank level \(ft\) * 10,823 gal/ft) /Parent 136 0 R >> endobj 1359 0 obj << /First 1354 0 R /Parent 136 0 R >> endobj 1358 0 obj << /Dest [ 3 0 R /XYZ 84 455 null ] /Count 0 /Title (a. Tank Current Volume \(gallons\) = tank level \(ft\) * 10,823 gal/ft) /Parent 136 0 R >> endobj 1356 0 obj << /Dest [ 3 0 R /XYZ 84 692 null ] /Count 0 /Title (��\000a\000.\000 \000C\000a\000l\000c\000u\000l\000a\000t\000e\000d\000 \000o\000p\000e\000r\000a\000t\000i\000n\000g\000 \000v\000o\000l\000u\000m\000e\000s\000,\000 \000c\000o\000r\000r\000e\000s\000p\000o\000n\000d\000i\000n\000g\000 \000p\000u\000m\000p\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000,\000 \000a\000n\000d\000 \000r\000e\000l\000a\000t\000e\000d\000 \000l\000e\000v\000e\000l\000 \000h\000e\000i\000g\000h\000t\000 \000r\000a\000n\000g\000e\000 \000a\000r\000e\000 \000p\000r\000o\000v\000i\000d\000e\000d\000 \000b\000e\000l\000o\000w\000 \000f\000o\000r\000 \000o\000p\000e\000r\000a\000t\000o\000r \031\000s\000 \000r\000e\000f\000e\000r\000e\000n\000c\000e\000 \000f\000o\000r\000 \000b\000o\000t\000h\000 \000A\000v\000e\000r\000a\000g\000e\000 \000A\000n\000n\000u\000a\000l\000 \000F\000l\000o\000w\000 \000\(\000A\000A\000F\000\)\000 \000a\000n\000d\000 \000M\000a\000x\000i\000m\000u\000m\000 \000M\000o\000n\000t\000h\000 \000F\000l\000o\000w\000 \000\(\000M\000M\000F\000\)\000 \000c\000o\000n\000d\000i\000t\000i\000o\000n\000s\000.) /Parent 136 0 R >> endobj 1355 0 obj << /First 1350 0 R /Parent 136 0 R >> endobj 1354 0 obj << /Dest [ 3 0 R /XYZ 84 692 null ] /Count 0 /Title (��\000a\000.\000 \000C\000a\000l\000c\000u\000l\000a\000t\000e\000d\000 \000o\000p\000e\000r\000a\000t\000i\000n\000g\000 \000v\000o\000l\000u\000m\000e\000s\000,\000 \000c\000o\000r\000r\000e\000s\000p\000o\000n\000d\000i\000n\000g\000 \000p\000u\000m\000p\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000,\000 \000a\000n\000d\000 \000r\000e\000l\000a\000t\000e\000d\000 \000l\000e\000v\000e\000l\000 \000h\000e\000i\000g\000h\000t\000 \000r\000a\000n\000g\000e\000 \000a\000r\000e\000 \000p\000r\000o\000v\000i\000d\000e\000d\000 \000b\000e\000l\000o\000w\000 \000f\000o\000r\000 \000o\000p\000e\000r\000a\000t\000o\000r \031\000s\000 \000r\000e\000f\000e\000r\000e\000n\000c\000e\000 \000f\000o\000r\000 \000b\000o\000t\000h\000 \000A\000v\000e\000r\000a\000g\000e\000 \000A\000n\000n\000u\000a\000l\000 \000F\000l\000o\000w\000 \000\(\000A\000A\000F\000\)\000 \000a\000n\000d\000 \000M\000a\000x\000i\000m\000u\000m\000 \000M\000o\000n\000t\000h\000 \000F\000l\000o\000w\000 \000\(\000M\000M\000F\000\)\000 \000c\000o\000n\000d\000i\000t\000i\000o\000n\000s\000.) /Parent 136 0 R >> endobj 1352 0 obj << /Dest [ 3 0 R /XYZ 52 151 null ] /Count 0 /Title (a. Initial Flow Setpoint \(gpm\) = previous day total inflow \(gallons\)/1440 min) /Parent 136 0 R >> endobj 1351 0 obj << /Parent 136 0 R >> endobj 1350 0 obj << /Dest [ 3 0 R /XYZ 52 151 null ] /Count 0 /Title (a. Initial Flow Setpoint \(gpm\) = previous day total inflow \(gallons\)/1440 min) /Parent 136 0 R >> endobj 1348 0 obj << /Parent 136 0 R >> endobj 1346 0 obj << /Parent 136 0 R >> endobj 1344 0 obj << /Parent 136 0 R >> endobj 1342 0 obj << /Parent 136 0 R >> endobj 1340 0 obj << /Parent 136 0 R >> endobj 1338 0 obj << /Parent 136 0 R >> endobj 1336 0 obj << /Parent 136 0 R >> endobj 1330 0 obj << /Dest [ 3 0 R /XYZ 84 364 null ] /Count 0 /Title (1. SCADA shall generate an alarm when failure of key instrumentation is detected, such as the EQ tank level transmitters \(LIT-2001 and LIT-2002\) and the EQ flow transmitter \(FIT-2001\).) /Next 1363 0 R /Parent 136 0 R >> endobj 1363 0 obj << /Prev 1364 0 R /Count 0 /Title (��\0002\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000S\000C\000A\000D\000A\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000P\000L\000C\000.) /Dest [ 3 0 R /XYZ 84 311 null ] /Next 1365 0 R /Parent 136 0 R >> endobj 1365 0 obj << /Prev 1366 0 R /Count 0 /Title (��\0003\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 3 0 R /XYZ 84 271 null ] /Next 1367 0 R /Parent 136 0 R >> endobj 1367 0 obj << /Prev 1333 0 R /Count 0 /Title (��\0004\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 84 231 null ] /Parent 136 0 R >> endobj 1366 0 obj << /Parent 136 0 R >> endobj 1364 0 obj << /Parent 136 0 R >> endobj 1328 0 obj << /First 1323 0 R /Parent 136 0 R >> endobj 1327 0 obj << /Count 2 /First 1368 0 R /Title (A. Hardwired Interlocks) /Last 1369 0 R /Next 1370 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 216 null ] >> endobj 1370 0 obj << /First 1371 0 R /Count 3 /Prev 1372 0 R /Last 1373 0 R /Title (B. Local Manual Control:) /Next 1374 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 667 null ] >> endobj 1374 0 obj << /First 1375 0 R /Count 1 /Prev 1376 0 R /Last 1377 0 R /Title (C. SCADA Manual Mode:) /Next 1378 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 522 null ] >> endobj 1378 0 obj << /First 1334 0 R /Count 48 /Prev 1379 0 R /Last 1380 0 R /Title (D. SCADA Automatic Mode:) /Next 1381 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 374 null ] >> endobj 1381 0 obj << /First 1330 0 R /Count 4 /Prev 1331 0 R /Last 1332 0 R /Title (E. Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 390 null ] >> endobj 1380 0 obj << /Prev 1362 0 R /Count 0 /Title (12. In SCADA Automatic mode the PLC shall automatically attempt to restart the EQ pump system after a power failure.) /Dest [ 3 0 R /XYZ 84 429 null ] /Parent 136 0 R >> endobj 1379 0 obj << /First 1375 0 R /Parent 136 0 R >> endobj 1377 0 obj << /Dest [ 3 0 R /XYZ 84 496 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 1376 0 obj << /First 1371 0 R /Parent 136 0 R >> endobj 1375 0 obj << /Dest [ 3 0 R /XYZ 84 496 null ] /Count 0 /Title (1. This mode permits the plant operator to control the pumps manually from SCADA. The HOA switch for a pump must be in AUTO to enable control in SCADA Manual mode. The operator selects SCADA Manual control for the system via the SCADA OIT and manually...) /Parent 136 0 R >> endobj 1373 0 obj << /Prev 1382 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 84 548 null ] /Parent 136 0 R >> endobj 1382 0 obj << /Parent 136 0 R >> endobj 1372 0 obj << /First 1368 0 R /Parent 136 0 R >> endobj 1371 0 obj << /Dest [ 3 0 R /XYZ 84 641 null ] /Count 0 /Title (1. A pump runs continuously at the speed set via its VFD keypad when the Hand-Off-Auto \(HOA\) selector switch is in HAND and its Start pushbutton is pressed. The pump will turn off when its HOA switch is placed in the OFF position or its Stop pushbutto...) /Next 1383 0 R /Parent 136 0 R >> endobj 1383 0 obj << /Prev 1384 0 R /Count 0 /Title (2. Hard-wired interlocks stop operation of the pump.) /Dest [ 3 0 R /XYZ 84 574 null ] /Next 1385 0 R /Parent 136 0 R >> endobj 1385 0 obj << /Prev 1382 0 R /Count 0 /Title (3. SCADA and PLC commands are not in effect.) /Dest [ 3 0 R /XYZ 84 548 null ] /Parent 136 0 R >> endobj 1384 0 obj << /Parent 136 0 R >> endobj 1369 0 obj << /Last 1386 0 R /Count 4 /First 1387 0 R /Title (1. These conditions will prevent a pump from starting and will stop \(trip\) an operating pump in all control modes. Each of these conditions is executed by hardwired controls and requires a manual reset at a field device before a pump can run again.) /Dest [ 3 0 R /XYZ 52 190 null ] /Parent 136 0 R >> endobj 1387 0 obj << /Dest [ 3 0 R /XYZ 52 137 null ] /Count 0 /Title (a. Pump High Discharge Pressure Trip \(PSH-2001, PSH-2002\)) /Next 1388 0 R /Parent 136 0 R >> endobj 1388 0 obj << /Prev 1389 0 R /Count 0 /Title (b. Pump Motor High Temperature Trip \(TSH-2001, TSH-2002\)) /Dest [ 3 0 R /XYZ 52 111 null ] /Next 1390 0 R /Parent 136 0 R >> endobj 1390 0 obj << /Prev 1391 0 R /Count 0 /Title (c. VFD Fault) /Dest [ 3 0 R /XYZ 84 720 null ] /Next 1392 0 R /Parent 136 0 R >> endobj 1392 0 obj << /Prev 1393 0 R /Count 0 /Title (d. EQ Tank Low Water Cut Out \(LSL-2001\). This trip affects both pumps simultaneously.) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1393 0 obj << /Parent 136 0 R >> endobj 1391 0 obj << /Parent 136 0 R >> endobj 1389 0 obj << /Parent 136 0 R >> endobj 1386 0 obj << /Prev 1393 0 R /Count 0 /Title (d. EQ Tank Low Water Cut Out \(LSL-2001\). This trip affects both pumps simultaneously.) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1368 0 obj << /Last 1386 0 R /Count 4 /First 1387 0 R /Title (1. These conditions will prevent a pump from starting and will stop \(trip\) an operating pump in all control modes. Each of these conditions is executed by hardwired controls and requires a manual reset at a field device before a pump can run again.) /Dest [ 3 0 R /XYZ 52 190 null ] /Parent 136 0 R >> endobj 1325 0 obj << /First 1394 0 R /Count 6 /Prev 1395 0 R /Last 1396 0 R /Title (C. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 526 null ] >> endobj 1396 0 obj << /First 1397 0 R /Count 2 /Prev 1398 0 R /Last 1399 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 343 null ] >> endobj 1399 0 obj << /Last 1400 0 R /Count 26 /First 1401 0 R /Title (a. SCADA screens for the EQ tank and EQ pump systems display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 317 null ] /Parent 136 0 R >> endobj 1401 0 obj << /Dest [ 3 0 R /XYZ 84 264 null ] /Count 0 /Title (\(1\) Operator adjustable setpoints and control parameters) /Next 1402 0 R /Parent 136 0 R >> endobj 1402 0 obj << /Prev 1403 0 R /Count 0 /Title (\(2\) Pump Running status) /Dest [ 3 0 R /XYZ 84 238 null ] /Next 1404 0 R /Parent 136 0 R >> endobj 1404 0 obj << /Prev 1405 0 R /Count 0 /Title (\(3\) HOA in HAND status) /Dest [ 3 0 R /XYZ 84 212 null ] /Next 1406 0 R /Parent 136 0 R >> endobj 1406 0 obj << /Prev 1407 0 R /Count 0 /Title (\(4\) HOA in AUTO status) /Dest [ 3 0 R /XYZ 84 187 null ] /Next 1408 0 R /Parent 136 0 R >> endobj 1408 0 obj << /Prev 1409 0 R /Count 0 /Title (\(5\) SCADA mode status) /Dest [ 3 0 R /XYZ 84 161 null ] /Next 1410 0 R /Parent 136 0 R >> endobj 1410 0 obj << /Prev 1411 0 R /Count 0 /Title (\(6\) VFD Speed feedback) /Dest [ 3 0 R /XYZ 84 135 null ] /Next 1412 0 R /Parent 136 0 R >> endobj 1412 0 obj << /Prev 1413 0 R /Count 0 /Title (\(7\) VFD Fault status) /Dest [ 3 0 R /XYZ 84 109 null ] /Next 1414 0 R /Parent 136 0 R >> endobj 1414 0 obj << /Prev 1415 0 R /Count 0 /Title (\(8\) Pump Motor High Temp Trip status) /Dest [ 3 0 R /XYZ 52 720 null ] /Next 1416 0 R /Parent 136 0 R >> endobj 1416 0 obj << /Prev 1417 0 R /Count 0 /Title (\(9\) Pump high discharge pressure trip status) /Dest [ 3 0 R /XYZ 52 706 null ] /Next 1418 0 R /Parent 136 0 R >> endobj 1418 0 obj << /Prev 1419 0 R /Count 0 /Title (\(10\) EQ pump station flowrate) /Dest [ 3 0 R /XYZ 52 680 null ] /Next 1420 0 R /Parent 136 0 R >> endobj 1420 0 obj << /Prev 1421 0 R /Count 0 /Title (\(11\) EQ tank level) /Dest [ 3 0 R /XYZ 52 655 null ] /Next 1422 0 R /Parent 136 0 R >> endobj 1422 0 obj << /Prev 1423 0 R /Count 0 /Title (\(12\) EQ tank low water cut out trip status \(LSL-2001\)) /Dest [ 3 0 R /XYZ 52 629 null ] /Next 1424 0 R /Parent 136 0 R >> endobj 1424 0 obj << /Prev 1425 0 R /Count 0 /Title (\(13\) EQ tank hi level switch status \(LSH-2001\)) /Dest [ 3 0 R /XYZ 52 603 null ] /Next 1426 0 R /Parent 136 0 R >> endobj 1426 0 obj << /Prev 1427 0 R /Count 0 /Title (\(14\) EQ tank level alarms \(Low-Low, Low, Hi and Hi-Hi\)) /Dest [ 3 0 R /XYZ 52 577 null ] /Next 1428 0 R /Parent 136 0 R >> endobj 1428 0 obj << /Prev 1429 0 R /Count 0 /Title (\(15\) High level flow setpoint \(gpm\)) /Dest [ 3 0 R /XYZ 52 551 null ] /Next 1430 0 R /Parent 136 0 R >> endobj 1430 0 obj << /Prev 1431 0 R /Count 0 /Title (\(16\) Low level flow setpoint \(gpm\)) /Dest [ 3 0 R /XYZ 52 526 null ] /Next 1432 0 R /Parent 136 0 R >> endobj 1432 0 obj << /Prev 1433 0 R /Count 0 /Title (\(17\) Desired flow setpoint \(gpm\)) /Dest [ 3 0 R /XYZ 52 500 null ] /Next 1434 0 R /Parent 136 0 R >> endobj 1434 0 obj << /Prev 1435 0 R /Count 0 /Title (\(18\) Current flow setpoint \(gpm\)) /Dest [ 3 0 R /XYZ 52 474 null ] /Next 1436 0 R /Parent 136 0 R >> endobj 1436 0 obj << /Prev 1437 0 R /Count 0 /Title (\(19\) Current flow \(gpm\)) /Dest [ 3 0 R /XYZ 52 448 null ] /Next 1438 0 R /Parent 136 0 R >> endobj 1438 0 obj << /Prev 1439 0 R /Count 0 /Title (��\000\(\0002\0000\000\)\000 \000Y\000e\000s\000t\000e\000r\000d\000a\000y \031\000s\000 \000I\000n\000f\000l\000o\000w\000 \000\(\000g\000a\000l\000\)) /Dest [ 3 0 R /XYZ 52 422 null ] /Next 1440 0 R /Parent 136 0 R >> endobj 1440 0 obj << /Prev 1441 0 R /Count 0 /Title (��\000\(\0002\0001\000\)\000 \000Y\000e\000s\000t\000e\000r\000d\000a\000y \031\000s\000 \000o\000u\000t\000f\000l\000o\000w\000 \000\(\000g\000a\000l\000\)) /Dest [ 3 0 R /XYZ 52 397 null ] /Next 1442 0 R /Parent 136 0 R >> endobj 1442 0 obj << /Prev 1443 0 R /Count 0 /Title (��\000\(\0002\0002\000\)\000 \000Y\000e\000s\000t\000e\000r\000d\000a\000y \031\000s\000 \000E\000Q\000 \000b\000a\000s\000i\000n\000 \000v\000o\000l\000u\000m\000e\000 \000\(\000g\000a\000l\000\)) /Dest [ 3 0 R /XYZ 52 371 null ] /Next 1444 0 R /Parent 136 0 R >> endobj 1444 0 obj << /Prev 1445 0 R /Count 0 /Title (\(23\) Day before EQ basin volume \(gal\)) /Dest [ 3 0 R /XYZ 52 345 null ] /Next 1446 0 R /Parent 136 0 R >> endobj 1446 0 obj << /Prev 1447 0 R /Count 0 /Title (\(24\) Current EQ basin volume \(gal\)) /Dest [ 3 0 R /XYZ 52 319 null ] /Next 1448 0 R /Parent 136 0 R >> endobj 1448 0 obj << /Prev 1449 0 R /Count 0 /Title (\(25\) Current EQ basin level \(ft\)) /Dest [ 3 0 R /XYZ 52 293 null ] /Next 1450 0 R /Parent 136 0 R >> endobj 1450 0 obj << /Prev 1451 0 R /Count 0 /Title (\(26\) Pump total run time) /Dest [ 3 0 R /XYZ 52 268 null ] /Parent 136 0 R >> endobj 1451 0 obj << /Parent 136 0 R >> endobj 1449 0 obj << /Parent 136 0 R >> endobj 1447 0 obj << /Parent 136 0 R >> endobj 1445 0 obj << /Parent 136 0 R >> endobj 1443 0 obj << /Parent 136 0 R >> endobj 1441 0 obj << /Parent 136 0 R >> endobj 1439 0 obj << /Parent 136 0 R >> endobj 1437 0 obj << /Parent 136 0 R >> endobj 1435 0 obj << /Parent 136 0 R >> endobj 1433 0 obj << /Parent 136 0 R >> endobj 1431 0 obj << /Parent 136 0 R >> endobj 1429 0 obj << /Parent 136 0 R >> endobj 1427 0 obj << /Parent 136 0 R >> endobj 1425 0 obj << /Parent 136 0 R >> endobj 1423 0 obj << /Parent 136 0 R >> endobj 1421 0 obj << /Parent 136 0 R >> endobj 1419 0 obj << /Parent 136 0 R >> endobj 1417 0 obj << /Parent 136 0 R >> endobj 1415 0 obj << /Parent 136 0 R >> endobj 1413 0 obj << /Parent 136 0 R >> endobj 1411 0 obj << /Parent 136 0 R >> endobj 1409 0 obj << /Parent 136 0 R >> endobj 1407 0 obj << /Parent 136 0 R >> endobj 1405 0 obj << /Parent 136 0 R >> endobj 1403 0 obj << /Parent 136 0 R >> endobj 1400 0 obj << /Prev 1451 0 R /Count 0 /Title (\(26\) Pump total run time) /Dest [ 3 0 R /XYZ 52 268 null ] /Parent 136 0 R >> endobj 1398 0 obj << /First 1452 0 R /Parent 136 0 R >> endobj 1452 0 obj << /Last 1453 0 R /Count 3 /First 1454 0 R /Title (a. SCADA screens for the EQ tank and EQ pump systems provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 474 null ] /Parent 136 0 R >> endobj 1454 0 obj << /Dest [ 3 0 R /XYZ 84 421 null ] /Count 0 /Title (\(1\) Selection of SCADA Manual, SCADA Automatic mode) /Next 1455 0 R /Parent 136 0 R >> endobj 1455 0 obj << /Prev 1456 0 R /Count 0 /Title (\(2\) Input of operator adjustable setpoints and control parameters) /Dest [ 3 0 R /XYZ 84 395 null ] /Next 1457 0 R /Parent 136 0 R >> endobj 1457 0 obj << /Prev 1458 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 84 369 null ] /Parent 136 0 R >> endobj 1458 0 obj << /Parent 136 0 R >> endobj 1456 0 obj << /Parent 136 0 R >> endobj 1453 0 obj << /Prev 1458 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 84 369 null ] /Parent 136 0 R >> endobj 1397 0 obj << /Last 1400 0 R /Count 26 /First 1401 0 R /Title (a. SCADA screens for the EQ tank and EQ pump systems display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 317 null ] /Parent 136 0 R >> endobj 1395 0 obj << /First 1459 0 R /Parent 136 0 R >> endobj 1459 0 obj << /Count 7 /First 1460 0 R /Title (1. Control) /Last 1461 0 R /Next 1462 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 236 null ] >> endobj 1462 0 obj << /First 1463 0 R /Count 5 /Prev 1464 0 R /Last 1465 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 680 null ] >> endobj 1465 0 obj << /Prev 1466 0 R /Count 0 /Title (e. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Dest [ 3 0 R /XYZ 84 551 null ] /Parent 136 0 R >> endobj 1466 0 obj << /Parent 136 0 R >> endobj 1464 0 obj << /First 1460 0 R /Parent 136 0 R >> endobj 1463 0 obj << /Dest [ 3 0 R /XYZ 84 655 null ] /Count 0 /Title (a. Run light) /Next 1467 0 R /Parent 136 0 R >> endobj 1467 0 obj << /Prev 1468 0 R /Count 0 /Title (b. Trip light) /Dest [ 3 0 R /XYZ 84 629 null ] /Next 1469 0 R /Parent 136 0 R >> endobj 1469 0 obj << /Prev 1470 0 R /Count 0 /Title (c. VFD speed feedback \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 84 603 null ] /Next 1471 0 R /Parent 136 0 R >> endobj 1471 0 obj << /Prev 1472 0 R /Count 0 /Title (d. VFD Fault status \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 84 577 null ] /Next 1473 0 R /Parent 136 0 R >> endobj 1473 0 obj << /Prev 1466 0 R /Count 0 /Title (e. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Dest [ 3 0 R /XYZ 84 551 null ] /Parent 136 0 R >> endobj 1472 0 obj << /Parent 136 0 R >> endobj 1470 0 obj << /Parent 136 0 R >> endobj 1468 0 obj << /Parent 136 0 R >> endobj 1461 0 obj << /Prev 1474 0 R /Count 0 /Title (g. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1474 0 obj << /Parent 136 0 R >> endobj 1460 0 obj << /Dest [ 3 0 R /XYZ 52 211 null ] /Count 0 /Title (a. Hand-Off-Auto selector switch) /Next 1475 0 R /Parent 136 0 R >> endobj 1475 0 obj << /Prev 1476 0 R /Count 0 /Title (b. Start pushbutton) /Dest [ 3 0 R /XYZ 52 185 null ] /Next 1477 0 R /Parent 136 0 R >> endobj 1477 0 obj << /Prev 1478 0 R /Count 0 /Title (c. Stop pushbutton) /Dest [ 3 0 R /XYZ 52 159 null ] /Next 1479 0 R /Parent 136 0 R >> endobj 1479 0 obj << /Prev 1480 0 R /Count 0 /Title (d. Trip Reset pushbutton) /Dest [ 3 0 R /XYZ 52 133 null ] /Next 1481 0 R /Parent 136 0 R >> endobj 1481 0 obj << /Prev 1482 0 R /Count 0 /Title (e. VFD speed command \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 107 null ] /Next 1483 0 R /Parent 136 0 R >> endobj 1483 0 obj << /Prev 1484 0 R /Count 0 /Title (f. VFD Fault Reset \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 84 720 null ] /Next 1485 0 R /Parent 136 0 R >> endobj 1485 0 obj << /Prev 1474 0 R /Count 0 /Title (g. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1484 0 obj << /Parent 136 0 R >> endobj 1482 0 obj << /Parent 136 0 R >> endobj 1480 0 obj << /Parent 136 0 R >> endobj 1478 0 obj << /Parent 136 0 R >> endobj 1476 0 obj << /Parent 136 0 R >> endobj 1394 0 obj << /Count 2 /First 1452 0 R /Title (1. Control) /Last 1486 0 R /Next 1487 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 500 null ] >> endobj 1487 0 obj << /First 1397 0 R /Count 2 /Prev 1398 0 R /Last 1399 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 343 null ] >> endobj 1486 0 obj << /Last 1453 0 R /Count 3 /First 1454 0 R /Title (a. SCADA screens for the EQ tank and EQ pump systems provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 474 null ] /Parent 136 0 R >> endobj 1324 0 obj << /First 1320 0 R /Parent 136 0 R >> endobj 1323 0 obj << /Count 6 /First 1488 0 R /Title (A. Field Location \(Near Equipment\)) /Last 1489 0 R /Next 1490 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 572 null ] >> endobj 1490 0 obj << /First 1459 0 R /Count 6 /Prev 1491 0 R /Last 1492 0 R /Title (B. Control Building Electrical Room) /Next 1493 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 262 null ] >> endobj 1493 0 obj << /First 1394 0 R /Count 6 /Prev 1395 0 R /Last 1396 0 R /Title (C. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 526 null ] >> endobj 1492 0 obj << /First 1463 0 R /Count 5 /Prev 1464 0 R /Last 1465 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 680 null ] >> endobj 1491 0 obj << /First 1488 0 R /Parent 136 0 R >> endobj 1489 0 obj << /First 1494 0 R /Count 6 /Prev 1495 0 R /Last 1496 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 443 null ] >> endobj 1496 0 obj << /Prev 1497 0 R /Count 0 /Title (f. EQ tank level via level transmitter display) /Dest [ 3 0 R /XYZ 52 288 null ] /Parent 136 0 R >> endobj 1497 0 obj << /Parent 136 0 R >> endobj 1495 0 obj << /First 1498 0 R /Parent 136 0 R >> endobj 1498 0 obj << /Dest [ 3 0 R /XYZ 52 520 null ] /Count 0 /Title (a. Start pushbutton) /Next 1499 0 R /Parent 136 0 R >> endobj 1499 0 obj << /Prev 1500 0 R /Count 0 /Title (b. Lockout Stop pushbutton) /Dest [ 3 0 R /XYZ 52 494 null ] /Next 1501 0 R /Parent 136 0 R >> endobj 1501 0 obj << /Prev 1502 0 R /Count 0 /Title (c. EQ tank low water cut out \(LWCO\) trip Reset Pushbutton) /Dest [ 3 0 R /XYZ 52 469 null ] /Parent 136 0 R >> endobj 1502 0 obj << /Parent 136 0 R >> endobj 1500 0 obj << /Parent 136 0 R >> endobj 1494 0 obj << /Dest [ 3 0 R /XYZ 52 417 null ] /Count 0 /Title (a. Pump run light) /Next 1503 0 R /Parent 136 0 R >> endobj 1503 0 obj << /Prev 1504 0 R /Count 0 /Title (b. Pump discharge pressure gauge) /Dest [ 3 0 R /XYZ 52 391 null ] /Next 1505 0 R /Parent 136 0 R >> endobj 1505 0 obj << /Prev 1506 0 R /Count 0 /Title (c. Pump station discharge pressure via pressure transmitter display) /Dest [ 3 0 R /XYZ 52 365 null ] /Next 1507 0 R /Parent 136 0 R >> endobj 1507 0 obj << /Prev 1508 0 R /Count 0 /Title (d. EQ pump station discharge flowrate via flow meter display) /Dest [ 3 0 R /XYZ 52 340 null ] /Next 1509 0 R /Parent 136 0 R >> endobj 1509 0 obj << /Prev 1510 0 R /Count 0 /Title (e. EQ tank low water cut out trip light) /Dest [ 3 0 R /XYZ 52 314 null ] /Next 1511 0 R /Parent 136 0 R >> endobj 1511 0 obj << /Prev 1497 0 R /Count 0 /Title (f. EQ tank level via level transmitter display) /Dest [ 3 0 R /XYZ 52 288 null ] /Parent 136 0 R >> endobj 1510 0 obj << /Parent 136 0 R >> endobj 1508 0 obj << /Parent 136 0 R >> endobj 1506 0 obj << /Parent 136 0 R >> endobj 1504 0 obj << /Parent 136 0 R >> endobj 1488 0 obj << /Count 3 /First 1498 0 R /Title (1. Control) /Last 1512 0 R /Next 1513 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 546 null ] >> endobj 1513 0 obj << /First 1494 0 R /Count 6 /Prev 1495 0 R /Last 1496 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 443 null ] >> endobj 1512 0 obj << /Prev 1502 0 R /Count 0 /Title (c. EQ tank low water cut out \(LWCO\) trip Reset Pushbutton) /Dest [ 3 0 R /XYZ 52 469 null ] /Parent 136 0 R >> endobj 1321 0 obj << /Prev 1514 0 R /Count 0 /Title (��\000E\000.\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000c\000o\000n\000t\000i\000n\000u\000o\000u\000s\000l\000y\000 \000m\000o\000n\000i\000t\000o\000r\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000 \000t\000o\000 \000d\000e\000t\000e\000r\000m\000i\000n\000e\000 \034\000L\000o\000w\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000a\000l\000a\000r\000m\000. \035\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000a\000l\000s\000o\000 \000m\000o\000n\000i\000t\000o\000r\000 \000p\000u\000m\000p\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000s\000t\000a\000t\000u\000s\000 \000f\000o\000r\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000l\000a\000r\000m\000 \000f\000o\000r\000 \000e\000a\000c\000h\000 \000p\000u\000m\000p\000 \000t\000h\000a\000t\000 \000i\000s\000 \000c\000a\000l\000l\000e\000d\000.\000 \000I\000f\000 \000t\000h\000e\000 \000P\000L\000C\000 \000c\000a\000l\000l\000s\000 \000f\000o\000r\000 \000t\000h\000e\000 \000p\000u\000m\000p\000.\000.\000.) /Dest [ 3 0 R /XYZ 52 692 null ] /Parent 136 0 R >> endobj 1514 0 obj << /Parent 136 0 R >> endobj 1320 0 obj << /Dest [ 3 0 R /XYZ 84 631 null ] /Count 0 /Title (A. Two variable speed, positive displacement rotary lobe pumps are used to pump from the equalization \(EQ\) tank to the MLE basins. The Equalization pumps operate in a 1+1 \(Lead/Lag\) configuration. Each pump has a minimum flow of 150 gpm, and a maximum...) /Next 1515 0 R /Parent 136 0 R >> endobj 1515 0 obj << /Prev 1516 0 R /Count 0 /Title (B. It is anticipated that a single pump is sufficient to handle the design maximum month flow. If one pump is operating at the operator-selected setpoint and the level in the EQ tank exceeds the programmable High setpoint \(initially set at 14.5 feet\),...) /Dest [ 3 0 R /XYZ 84 536 null ] /Next 1517 0 R /Parent 136 0 R >> endobj 1517 0 obj << /Prev 1518 0 R /Count 0 /Title (C. If one pump is operating at the operator-selected flow setpoint and the level in the EQ tank falls below the programmable Low set point \(initially set at 3 feet\), the lead pump slows down to the pump minimum output \(150 gpm\). If the level in the EQ...) /Dest [ 3 0 R /XYZ 84 386 null ] /Next 1519 0 R /Parent 136 0 R >> endobj 1519 0 obj << /Prev 1520 0 R /Count 0 /Title (D. Exceeding High or High-High set points, or falling below Low or Low-Low set points, and/or two pumps operating shall trigger SCADA alarms.) /Dest [ 3 0 R /XYZ 52 720 null ] /Next 1521 0 R /Parent 136 0 R >> endobj 1521 0 obj << /Prev 1514 0 R /Count 0 /Title (��\000E\000.\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000c\000o\000n\000t\000i\000n\000u\000o\000u\000s\000l\000y\000 \000m\000o\000n\000i\000t\000o\000r\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000f\000r\000o\000m\000 \000F\000I\000T\000-\0002\0000\0000\0001\000 \000t\000o\000 \000d\000e\000t\000e\000r\000m\000i\000n\000e\000 \034\000L\000o\000w\000 \000f\000l\000o\000w\000 \000r\000a\000t\000e\000 \000a\000l\000a\000r\000m\000. \035\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000a\000l\000s\000o\000 \000m\000o\000n\000i\000t\000o\000r\000 \000p\000u\000m\000p\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000s\000t\000a\000t\000u\000s\000 \000f\000o\000r\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000l\000a\000r\000m\000 \000f\000o\000r\000 \000e\000a\000c\000h\000 \000p\000u\000m\000p\000 \000t\000h\000a\000t\000 \000i\000s\000 \000c\000a\000l\000l\000e\000d\000.\000 \000I\000f\000 \000t\000h\000e\000 \000P\000L\000C\000 \000c\000a\000l\000l\000s\000 \000f\000o\000r\000 \000t\000h\000e\000 \000p\000u\000m\000p\000.\000.\000.) /Dest [ 3 0 R /XYZ 52 692 null ] /Parent 136 0 R >> endobj 1520 0 obj << /Parent 136 0 R >> endobj 1518 0 obj << /Parent 136 0 R >> endobj 1516 0 obj << /Parent 136 0 R >> endobj 1318 0 obj << /First 1327 0 R /Count 30 /Prev 1328 0 R /Last 1329 0 R /Title (1.03 Control Modes:) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 242 null ] >> endobj 508 0 obj << /First 503 0 R /Parent 136 0 R >> endobj 507 0 obj << /Last 1318 0 R /Count 12 /First 1319 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 505 0 obj << /Last 1522 0 R /Count 30 /First 1523 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 1523 0 obj << /Count 5 /First 1524 0 R /Title (1.01 General) /Last 1525 0 R /Next 1526 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 656 null ] >> endobj 1526 0 obj << /First 1527 0 R /Count 12 /Prev 1528 0 R /Last 1529 0 R /Title (1.02 Operator Controls) /Next 1530 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 295 null ] >> endobj 1530 0 obj << /First 1531 0 R /Count 2 /Prev 1532 0 R /Last 1533 0 R /Title (1.03 Hardwired Interlocks) /Next 1534 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 369 null ] >> endobj 1534 0 obj << /First 1535 0 R /Count 75 /Prev 1536 0 R /Last 1537 0 R /Title (1.04 Control Modes) /Next 1538 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 613 null ] >> endobj 1538 0 obj << /First 1539 0 R /Count 4 /Prev 1540 0 R /Last 1541 0 R /Title (1.05 Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 720 null ] >> endobj 1541 0 obj << /Prev 1542 0 R /Count 0 /Title (��\000D\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 52 574 null ] /Parent 136 0 R >> endobj 1542 0 obj << /Parent 136 0 R >> endobj 1540 0 obj << /First 1535 0 R /Parent 136 0 R >> endobj 1539 0 obj << /Dest [ 3 0 R /XYZ 52 706 null ] /Count 0 /Title (A. SCADA shall generate an alarm when failure of key instrumentation is detected, such as the air flow transmitter \(FIT-2501\), and the EQ tank level transmitters \(LIT-2001, LIT-2002\).) /Next 1543 0 R /Parent 136 0 R >> endobj 1543 0 obj << /Prev 1544 0 R /Count 0 /Title (��\000B\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000S\000C\000A\000D\000A\000 \000s\000y\000s\000t\000e\000m\000 \000a\000n\000d\000 \000P\000L\000C\000.) /Dest [ 3 0 R /XYZ 52 653 null ] /Next 1545 0 R /Parent 136 0 R >> endobj 1545 0 obj << /Prev 1546 0 R /Count 0 /Title (��\000C\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000b\000e\000t\000w\000e\000e\000n\000 \000t\000h\000e\000 \000P\000L\000C\000 \000a\000n\000d\000 \000t\000h\000e\000 \000P\000L\000C \031\000s\000 \000r\000e\000m\000o\000t\000e\000 \000I\000/\000O\000.) /Dest [ 3 0 R /XYZ 52 613 null ] /Next 1547 0 R /Parent 136 0 R >> endobj 1547 0 obj << /Prev 1542 0 R /Count 0 /Title (��\000D\000.\000 \000S\000C\000A\000D\000A\000 \000s\000h\000a\000l\000l\000 \000g\000e\000n\000e\000r\000a\000t\000e\000 \000a\000n\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000t\000h\000e\000r\000e \031\000s\000 \000a\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000i\000o\000n\000 \000f\000a\000i\000l\000u\000r\000e\000 \000t\000o\000 \000a\000 \000V\000F\000D\000.) /Dest [ 3 0 R /XYZ 52 574 null ] /Parent 136 0 R >> endobj 1546 0 obj << /Parent 136 0 R >> endobj 1544 0 obj << /Parent 136 0 R >> endobj 1537 0 obj << /Prev 1548 0 R /Count 0 /Title (��\000O\000.\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000a\000l\000s\000o\000 \000m\000o\000n\000i\000t\000o\000r\000 \000b\000l\000o\000w\000e\000r\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000s\000t\000a\000t\000u\000s\000 \000f\000o\000r\000 \000a\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000a\000 \000b\000l\000o\000w\000e\000r\000 \000i\000s\000 \000c\000a\000l\000l\000e\000d\000.\000 \000I\000f\000 \000t\000h\000e\000 \000P\000L\000C\000 \000c\000a\000l\000l\000s\000 \000f\000o\000r\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000b\000u\000t\000 \000d\000o\000e\000s\000 \000n\000o\000t\000 \000r\000e\000c\000e\000i\000v\000e\000 \000r\000u\000n\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000a\000f\000t\000e\000r\000 \000a\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000p\000e\000r\000i\000o\000d\000 \000o\000f\000 \000t\000i\000m\000e\000,\000 \000i\000t\000 \000w\000i\000l\000l\000 \000t\000r\000i\000g\000g\000e\000r\000 \000a\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000.\000.\000.) /Dest [ 3 0 R /XYZ 84 214 null ] /Parent 136 0 R >> endobj 1548 0 obj << /Parent 136 0 R >> endobj 1536 0 obj << /First 1531 0 R /Parent 136 0 R >> endobj 1535 0 obj << /Count 1 /First 1549 0 R /Title (A. Local Manual Mode) /Last 1550 0 R /Next 1551 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 587 null ] >> endobj 1551 0 obj << /First 1552 0 R /Count 1 /Prev 1553 0 R /Last 1554 0 R /Title (B. SCADA Manual Mode) /Next 1555 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 481 null ] >> endobj 1555 0 obj << /First 1556 0 R /Count 1 /Prev 1557 0 R /Last 1558 0 R /Title (C. SCADA Automatic Mode) /Next 1559 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 346 null ] >> endobj 1559 0 obj << /Prev 1560 0 R /Count 0 /Title (D. The PLC shall restrict the operating range of the blower to keep it within the acceptable efficiency range.) /Dest [ 3 0 R /XYZ 52 226 null ] /Next 1561 0 R /Parent 136 0 R >> endobj 1561 0 obj << /First 1562 0 R /Count 4 /Prev 1563 0 R /Last 1564 0 R /Title (E. The Lead and Standby blower shall be adjustable in SCADA. User defined selection criteria shall include:) /Next 1565 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 186 null ] >> endobj 1565 0 obj << /Prev 1566 0 R /Count 0 /Title (F. The PLC automatically stops the lead blower and starts the standby blower \(new lead\) when the conditions are met to switch the lead. When the operator manually switches the lead/standby order in user defined mode, the PLC switches operation to the ...) /Dest [ 3 0 R /XYZ 84 680 null ] /Next 1567 0 R /Parent 136 0 R >> endobj 1567 0 obj << /Prev 1568 0 R /Count 0 /Title (G. The air flow setpoint to the EQ tank shall be calculated by the PLC using a programmable air flowrate coefficient. The initial setting for flowrate coefficient shall be 14.5 scfm/ft of tank level.) /Dest [ 3 0 R /XYZ 84 613 null ] /Next 1569 0 R /Parent 136 0 R >> endobj 1569 0 obj << /Prev 1570 0 R /Count 0 /Title (H. Provide operator control interface for all operator commands and adjustable setpoints and parameters required for control of the blowers through SCADA, including, but not limited to: EQ tank operating level \(ft\); Air flow to EQ basin \(scfm, FIT-250...) /Dest [ 3 0 R /XYZ 84 560 null ] /Next 1571 0 R /Parent 136 0 R >> endobj 1571 0 obj << /Prev 1572 0 R /Count 0 /Title (I. Should the airflow signal be lost or be deemed invalid, the PLC shall ignore that input and maintain blower speed based on the last acceptable signal received from the flowmeter.) /Dest [ 3 0 R /XYZ 84 493 null ] /Next 1573 0 R /Parent 136 0 R >> endobj 1573 0 obj << /Prev 1574 0 R /Count 0 /Title (J. Should the LEAD blower fail \(i.e. trip, fail to run, etc.\), standby blower shall be automatically selected and started.) /Dest [ 3 0 R /XYZ 84 453 null ] /Next 1575 0 R /Parent 136 0 R >> endobj 1575 0 obj << /Prev 1576 0 R /Count 0 /Title (K. Airflow balancing to the sludge tanks shall be the responsibility of the operators through the manual manipulation of local drop leg isolation valves. Operators shall be responsible for ensuring that adequate mixing is maintained to each tank.) /Dest [ 3 0 R /XYZ 84 413 null ] /Next 1577 0 R /Parent 136 0 R >> endobj 1577 0 obj << /Prev 1578 0 R /Count 0 /Title (L. Should the airflow available from the blower be deemed insufficient to achieve the calculated target air flowrate to the EQ tank, an alarm shall be sent.) /Dest [ 3 0 R /XYZ 84 360 null ] /Next 1579 0 R /Parent 136 0 R >> endobj 1579 0 obj << /Prev 1580 0 R /Count 0 /Title (M. Logic in the system software shall provide loop tuning parameters and timing intervals to provide stability within the system. Proof of demand, delay, minimum change values, and sampling timing are some examples of stabilization features to be adju...) /Dest [ 3 0 R /XYZ 84 320 null ] /Next 1581 0 R /Parent 136 0 R >> endobj 1581 0 obj << /Prev 1582 0 R /Count 0 /Title (N. In SCADA Auto mode, blower shall be limited to six \(6\) starts per hour, irrespective of system demands.) /Dest [ 3 0 R /XYZ 84 253 null ] /Next 1583 0 R /Parent 136 0 R >> endobj 1583 0 obj << /Prev 1548 0 R /Count 0 /Title (��\000O\000.\000 \000T\000h\000e\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000s\000h\000a\000l\000l\000 \000a\000l\000s\000o\000 \000m\000o\000n\000i\000t\000o\000r\000 \000b\000l\000o\000w\000e\000r\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000s\000t\000a\000t\000u\000s\000 \000f\000o\000r\000 \000a\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000l\000a\000r\000m\000 \000w\000h\000e\000n\000 \000a\000 \000b\000l\000o\000w\000e\000r\000 \000i\000s\000 \000c\000a\000l\000l\000e\000d\000.\000 \000I\000f\000 \000t\000h\000e\000 \000P\000L\000C\000 \000c\000a\000l\000l\000s\000 \000f\000o\000r\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000b\000u\000t\000 \000d\000o\000e\000s\000 \000n\000o\000t\000 \000r\000e\000c\000e\000i\000v\000e\000 \000r\000u\000n\000 \000f\000e\000e\000d\000b\000a\000c\000k\000 \000a\000f\000t\000e\000r\000 \000a\000 \000p\000r\000o\000g\000r\000a\000m\000m\000a\000b\000l\000e\000 \000p\000e\000r\000i\000o\000d\000 \000o\000f\000 \000t\000i\000m\000e\000,\000 \000i\000t\000 \000w\000i\000l\000l\000 \000t\000r\000i\000g\000g\000e\000r\000 \000a\000 \034\000f\000a\000i\000l\000 \000t\000o\000 \000r\000u\000n \035\000 \000a\000.\000.\000.) /Dest [ 3 0 R /XYZ 84 214 null ] /Parent 136 0 R >> endobj 1582 0 obj << /Parent 136 0 R >> endobj 1580 0 obj << /Parent 136 0 R >> endobj 1578 0 obj << /Parent 136 0 R >> endobj 1576 0 obj << /Parent 136 0 R >> endobj 1574 0 obj << /Parent 136 0 R >> endobj 1572 0 obj << /Parent 136 0 R >> endobj 1570 0 obj << /Parent 136 0 R >> endobj 1568 0 obj << /Parent 136 0 R >> endobj 1566 0 obj << /First 1562 0 R /Parent 136 0 R >> endobj 1564 0 obj << /Prev 1584 0 R /Count 0 /Title (4. Programmable time between switch Lead/LAG \(days\)) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1584 0 obj << /Parent 136 0 R >> endobj 1563 0 obj << /Parent 136 0 R >> endobj 1562 0 obj << /Dest [ 3 0 R /XYZ 52 146 null ] /Count 0 /Title (1. User defined \(preferred\) lead/standby order) /Next 1585 0 R /Parent 136 0 R >> endobj 1585 0 obj << /Prev 1586 0 R /Count 0 /Title (2. Lowest runtime is LEAD) /Dest [ 3 0 R /XYZ 52 121 null ] /Next 1587 0 R /Parent 136 0 R >> endobj 1587 0 obj << /Prev 1588 0 R /Count 0 /Title (3. Lowest number of starts is LEAD) /Dest [ 3 0 R /XYZ 84 720 null ] /Next 1589 0 R /Parent 136 0 R >> endobj 1589 0 obj << /Prev 1584 0 R /Count 0 /Title (4. Programmable time between switch Lead/LAG \(days\)) /Dest [ 3 0 R /XYZ 84 706 null ] /Parent 136 0 R >> endobj 1588 0 obj << /Parent 136 0 R >> endobj 1586 0 obj << /Parent 136 0 R >> endobj 1560 0 obj << /First 1556 0 R /Parent 136 0 R >> endobj 1558 0 obj << /Dest [ 3 0 R /XYZ 52 320 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the blower automatically based on tank level of the EQ tank. The HOA switch at the blower control panel must be in AUTO to enable control of the blowers from SCADA. The operator selects SCADA Aut...) /Parent 136 0 R >> endobj 1557 0 obj << /First 1552 0 R /Parent 136 0 R >> endobj 1556 0 obj << /Dest [ 3 0 R /XYZ 52 320 null ] /Count 0 /Title (1. This mode permits the PLC control program to control the blower automatically based on tank level of the EQ tank. The HOA switch at the blower control panel must be in AUTO to enable control of the blowers from SCADA. The operator selects SCADA Aut...) /Parent 136 0 R >> endobj 1554 0 obj << /Dest [ 3 0 R /XYZ 52 455 null ] /Count 0 /Title (1. This mode permits the plant operator to control the blowers manually from SCADA. The HOA switch at the blower control panel must be in AUTO to enable control of the blowers from SCADA. The operator selects SCADA Manual Control for the system via th...) /Parent 136 0 R >> endobj 1553 0 obj << /First 1549 0 R /Parent 136 0 R >> endobj 1552 0 obj << /Dest [ 3 0 R /XYZ 52 455 null ] /Count 0 /Title (1. This mode permits the plant operator to control the blowers manually from SCADA. The HOA switch at the blower control panel must be in AUTO to enable control of the blowers from SCADA. The operator selects SCADA Manual Control for the system via th...) /Parent 136 0 R >> endobj 1550 0 obj << /Dest [ 3 0 R /XYZ 52 562 null ] /Count 0 /Title (1. This mode is enabled for a blower when its HOA is in the HAND position. The plant operator starts and stops the blower with the pushbuttons at the blower control panel and controls the blower speed via the VFD keypad/HMI Both blowers can be run sim...) /Parent 136 0 R >> endobj 1549 0 obj << /Dest [ 3 0 R /XYZ 52 562 null ] /Count 0 /Title (1. This mode is enabled for a blower when its HOA is in the HAND position. The plant operator starts and stops the blower with the pushbuttons at the blower control panel and controls the blower speed via the VFD keypad/HMI Both blowers can be run sim...) /Parent 136 0 R >> endobj 1533 0 obj << /Last 1590 0 R /Count 20 /First 1591 0 R /Title (A. These conditions will prevent the blower from starting and will stop \(trip\) an operating blower in all modes. Each of these conditions is executed by hardwired controls. Each fault/trip energizes the Trip indicating light at the blower control pane...) /Dest [ 3 0 R /XYZ 84 343 null ] /Parent 136 0 R >> endobj 1591 0 obj << /Count 1 /First 1592 0 R /Title (1. Motor Hi Temp Trip) /Last 1593 0 R /Next 1594 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 276 null ] >> endobj 1594 0 obj << /First 1595 0 R /Count 1 /Prev 1596 0 R /Last 1597 0 R /Title (2. Blower Discharge Air High Temp Trip) /Next 1598 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 197 null ] >> endobj 1598 0 obj << /First 1599 0 R /Count 1 /Prev 1600 0 R /Last 1601 0 R /Title (3. VFD Fault) /Next 1602 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 118 null ] >> endobj 1602 0 obj << /First 1603 0 R /Count 1 /Prev 1604 0 R /Last 1605 0 R /Title (4. Emergency Stop \(E-Stop\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 679 null ] >> endobj 1605 0 obj << /Dest [ 3 0 R /XYZ 52 653 null ] /Count 0 /Title (a. An emergency stop is initiated by the E-Stop pushbutton at the blower control panel. This trip must be reset manually at the blower control panel.) /Parent 136 0 R >> endobj 1604 0 obj << /First 1599 0 R /Parent 136 0 R >> endobj 1603 0 obj << /Dest [ 3 0 R /XYZ 52 653 null ] /Count 0 /Title (a. An emergency stop is initiated by the E-Stop pushbutton at the blower control panel. This trip must be reset manually at the blower control panel.) /Parent 136 0 R >> endobj 1601 0 obj << /Dest [ 3 0 R /XYZ 52 720 null ] /Count 0 /Title (��\000a\000.\000 \000A\000 \000V\000F\000D\000 \000f\000a\000u\000l\000t\000 \000i\000s\000 \000d\000e\000t\000e\000r\000m\000i\000n\000e\000d\000 \000b\000y\000 \000t\000h\000e\000 \000V\000F\000D\000 \000a\000n\000d\000 \000i\000s\000 \000c\000o\000m\000m\000u\000n\000i\000c\000a\000t\000e\000d\000 \000t\000o\000 \000t\000h\000e\000 \000p\000l\000a\000n\000t \031\000s\000 \000c\000o\000n\000t\000r\000o\000l\000 \000s\000y\000s\000t\000e\000m\000 \000v\000i\000a\000 \000a\000 \000r\000e\000l\000a\000y\000 \000o\000u\000t\000p\000u\000t\000 \000f\000r\000o\000m\000 \000t\000h\000e\000 \000V\000F\000D\000.\000 \000T\000h\000e\000 \000V\000F\000D\000 \000f\000a\000u\000l\000t\000 \000m\000u\000s\000t\000 \000b\000e\000 \000r\000e\000s\000e\000t\000 \000v\000i\000a\000 \000t\000h\000e\000 \000V\000F\000D\000 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/Count 0 /Title (��\000a\000.\000 \000A\000 \000m\000o\000t\000o\000r\000 \000h\000i\000 \000t\000e\000m\000p\000 \000t\000r\000i\000p\000 \000i\000s\000 \000d\000e\000t\000e\000r\000m\000i\000n\000e\000d\000 \000b\000y\000 \000a\000 \000h\000i\000 \000t\000e\000m\000p\000e\000r\000a\000t\000u\000r\000e\000 \000s\000w\000i\000t\000c\000h\000 \000i\000n\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r\000 \000m\000o\000t\000o\000r\000 \000a\000n\000d\000 \000t\000h\000e\000 \000b\000l\000o\000w\000e\000r \031\000s\000 \000V\000F\000D\000.\000 \000T\000h\000i\000s\000 \000t\000r\000i\000p\000 \000i\000s\000 \000i\000n\000d\000i\000c\000a\000t\000e\000d\000 \000b\000y\000 \000t\000h\000e\000 \000V\000F\000D\000 \000a\000s\000 \000a\000 \000V\000F\000D\000 \000f\000a\000u\000l\000t\000.\000 \000T\000h\000e\000 \000m\000o\000t\000o\000r\000 \000h\000i\000 \000t\000e\000m\000p\000 \000t\000r\000i\000p\000 \000m\000u\000s\000t\000 \000b\000e\000 \000r\000e\000s\000e\000t\000 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Emergency Stop \(E-Stop\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 679 null ] >> endobj 1532 0 obj << /First 1527 0 R /Parent 136 0 R >> endobj 1531 0 obj << /Last 1590 0 R /Count 20 /First 1591 0 R /Title (A. These conditions will prevent the blower from starting and will stop \(trip\) an operating blower in all modes. Each of these conditions is executed by hardwired controls. Each fault/trip energizes the Trip indicating light at the blower control pane...) /Dest [ 3 0 R /XYZ 84 343 null ] /Parent 136 0 R >> endobj 1529 0 obj << /First 1606 0 R /Count 6 /Prev 1607 0 R /Last 1608 0 R /Title (C. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 293 null ] >> endobj 1608 0 obj << /First 1609 0 R /Count 2 /Prev 1610 0 R /Last 1611 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 111 null ] >> endobj 1611 0 obj << /Last 1612 0 R /Count 12 /First 1613 0 R /Title (a. SCADA screens for the Yard Blower system display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 720 null ] /Parent 136 0 R >> endobj 1613 0 obj << /Dest [ 3 0 R /XYZ 84 679 null ] /Count 0 /Title (\(1\) Operator adjustable setpoints and control parameters) /Next 1614 0 R /Parent 136 0 R >> endobj 1614 0 obj << /Prev 1615 0 R /Count 0 /Title (\(2\) Blower Running status) /Dest [ 3 0 R /XYZ 84 653 null ] /Next 1616 0 R /Parent 136 0 R >> endobj 1616 0 obj << /Prev 1617 0 R /Count 0 /Title (\(3\) HOA in HAND status) /Dest [ 3 0 R /XYZ 84 627 null ] /Next 1618 0 R /Parent 136 0 R >> endobj 1618 0 obj << /Prev 1619 0 R /Count 0 /Title (\(4\) HOA in AUTO status) /Dest [ 3 0 R /XYZ 84 601 null ] /Next 1620 0 R /Parent 136 0 R >> endobj 1620 0 obj << /Prev 1621 0 R /Count 0 /Title (\(5\) SCADA mode status) /Dest [ 3 0 R /XYZ 84 575 null ] /Next 1622 0 R /Parent 136 0 R >> endobj 1622 0 obj << /Prev 1623 0 R /Count 0 /Title (\(6\) Lead and lag blower status) /Dest [ 3 0 R /XYZ 84 550 null ] /Next 1624 0 R /Parent 136 0 R >> endobj 1624 0 obj << /Prev 1625 0 R /Count 0 /Title (\(7\) VFD Speed feedback) /Dest [ 3 0 R /XYZ 84 524 null ] /Next 1626 0 R /Parent 136 0 R >> endobj 1626 0 obj << /Prev 1627 0 R /Count 0 /Title (\(8\) VFD Fault status) /Dest [ 3 0 R /XYZ 84 498 null ] /Next 1628 0 R /Parent 136 0 R >> endobj 1628 0 obj << /Prev 1629 0 R /Count 0 /Title (\(9\) Blower trip status) /Dest [ 3 0 R /XYZ 84 472 null ] /Next 1630 0 R /Parent 136 0 R >> endobj 1630 0 obj << /Prev 1631 0 R /Count 0 /Title (\(10\) Air flowrate to EQ tank \(FIT-2501\)) /Dest [ 3 0 R /XYZ 84 446 null ] /Next 1632 0 R /Parent 136 0 R >> endobj 1632 0 obj << /Prev 1633 0 R /Count 0 /Title (\(11\) Fail to run alarm) /Dest [ 3 0 R /XYZ 84 421 null ] /Next 1634 0 R /Parent 136 0 R >> endobj 1634 0 obj << /Prev 1635 0 R /Count 0 /Title (\(12\) Fail to stop alarm) /Dest [ 3 0 R /XYZ 84 395 null ] /Parent 136 0 R >> endobj 1635 0 obj << /Parent 136 0 R >> endobj 1633 0 obj << /Parent 136 0 R >> endobj 1631 0 obj << /Parent 136 0 R >> endobj 1629 0 obj << /Parent 136 0 R >> endobj 1627 0 obj << /Parent 136 0 R >> endobj 1625 0 obj << /Parent 136 0 R >> endobj 1623 0 obj << /Parent 136 0 R >> endobj 1621 0 obj << /Parent 136 0 R >> endobj 1619 0 obj << /Parent 136 0 R >> endobj 1617 0 obj << /Parent 136 0 R >> endobj 1615 0 obj << /Parent 136 0 R >> endobj 1612 0 obj << /Prev 1635 0 R /Count 0 /Title (\(12\) Fail to stop alarm) /Dest [ 3 0 R /XYZ 84 395 null ] /Parent 136 0 R >> endobj 1610 0 obj << /First 1636 0 R /Parent 136 0 R >> endobj 1636 0 obj << /Last 1637 0 R /Count 3 /First 1638 0 R /Title (a. SCADA screens for the Yard Blower system provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 242 null ] /Parent 136 0 R >> endobj 1638 0 obj << /Dest [ 3 0 R /XYZ 52 188 null ] /Count 0 /Title (\(1\) Selection of SCADA Manual, SCADA Automatic mode) /Next 1639 0 R /Parent 136 0 R >> endobj 1639 0 obj << /Prev 1640 0 R /Count 0 /Title (\(2\) Input of operator adjustable setpoints and control parameters) /Dest [ 3 0 R /XYZ 52 163 null ] /Next 1641 0 R /Parent 136 0 R >> endobj 1641 0 obj << /Prev 1642 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 52 137 null ] /Parent 136 0 R >> endobj 1642 0 obj << /Parent 136 0 R >> endobj 1640 0 obj << /Parent 136 0 R >> endobj 1637 0 obj << /Prev 1642 0 R /Count 0 /Title (\(3\) Interaction with PLC/SCADA generated alarms) /Dest [ 3 0 R /XYZ 52 137 null ] /Parent 136 0 R >> endobj 1609 0 obj << /Last 1612 0 R /Count 12 /First 1613 0 R /Title (a. SCADA screens for the Yard Blower system display statuses, data, setpoints, parameters and alarms for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 84 720 null ] /Parent 136 0 R >> endobj 1607 0 obj << /First 1643 0 R /Parent 136 0 R >> endobj 1643 0 obj << /Count 1 /First 1644 0 R /Title (1. Control) /Last 1645 0 R /Next 1646 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 397 null ] >> endobj 1646 0 obj << /First 1647 0 R /Count 1 /Prev 1648 0 R /Last 1649 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 345 null ] >> endobj 1649 0 obj << /Dest [ 3 0 R /XYZ 52 319 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Parent 136 0 R >> endobj 1648 0 obj << /First 1644 0 R /Parent 136 0 R >> endobj 1647 0 obj << /Dest [ 3 0 R /XYZ 52 319 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for monitoring features\)) /Parent 136 0 R >> endobj 1645 0 obj << /Dest [ 3 0 R /XYZ 52 371 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Parent 136 0 R >> endobj 1644 0 obj << /Dest [ 3 0 R /XYZ 52 371 null ] /Count 0 /Title (a. SCADA OIT/HMI \(See SCADA/PLC section for control features\)) /Parent 136 0 R >> endobj 1606 0 obj << /Count 2 /First 1636 0 R /Title (1. Control) /Last 1650 0 R /Next 1651 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 268 null ] >> endobj 1651 0 obj << /First 1609 0 R /Count 2 /Prev 1610 0 R /Last 1611 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 111 null ] >> endobj 1650 0 obj << /Last 1637 0 R /Count 3 /First 1638 0 R /Title (a. SCADA screens for the Yard Blower system provide the plant operator with interface features that allow entering commands and setpoints for the systems including, but not limited to the following:) /Dest [ 3 0 R /XYZ 52 242 null ] /Parent 136 0 R >> endobj 1528 0 obj << /First 1524 0 R /Parent 136 0 R >> endobj 1527 0 obj << /Count 6 /First 1652 0 R /Title (A. Field Location \(Near Equipment\)) /Last 1653 0 R /Next 1654 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 269 null ] >> endobj 1654 0 obj << /First 1643 0 R /Count 6 /Prev 1655 0 R /Last 1656 0 R /Title (B. Control Building Electrical Room) /Next 1657 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 422 null ] >> endobj 1657 0 obj << /First 1606 0 R /Count 6 /Prev 1607 0 R /Last 1608 0 R /Title (C. SCADA/PLC \(Control and monitoring via SCADA screens\)) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 293 null ] >> endobj 1656 0 obj << /First 1647 0 R /Count 1 /Prev 1648 0 R /Last 1649 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 345 null ] >> endobj 1655 0 obj << /First 1652 0 R /Parent 136 0 R >> endobj 1653 0 obj << /First 1658 0 R /Count 9 /Prev 1659 0 R /Last 1660 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 680 null ] >> endobj 1660 0 obj << /Prev 1661 0 R /Count 0 /Title (i. VFD Fault Reset \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 448 null ] /Parent 136 0 R >> endobj 1661 0 obj << /Parent 136 0 R >> endobj 1659 0 obj << /First 1662 0 R /Parent 136 0 R >> endobj 1662 0 obj << /Dest [ 3 0 R /XYZ 84 217 null ] /Count 0 /Title (a. Hand-Off-Auto selector switch) /Next 1663 0 R /Parent 136 0 R >> endobj 1663 0 obj << /Prev 1664 0 R /Count 0 /Title (b. Start pushbutton) /Dest [ 3 0 R /XYZ 84 191 null ] /Next 1665 0 R /Parent 136 0 R >> endobj 1665 0 obj << /Prev 1666 0 R /Count 0 /Title (c. Stop pushbutton) /Dest [ 3 0 R /XYZ 84 166 null ] /Next 1667 0 R /Parent 136 0 R >> endobj 1667 0 obj << /Prev 1668 0 R /Count 0 /Title (d. Emergency stop pushbutton) /Dest [ 3 0 R /XYZ 84 140 null ] /Next 1669 0 R /Parent 136 0 R >> endobj 1669 0 obj << /Prev 1670 0 R /Count 0 /Title (e. Trip Reset pushbutton) /Dest [ 3 0 R /XYZ 84 114 null ] /Next 1671 0 R /Parent 136 0 R >> endobj 1671 0 obj << /Prev 1672 0 R /Count 0 /Title (f. VFD speed command \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 720 null ] /Next 1673 0 R /Parent 136 0 R >> endobj 1673 0 obj << /Prev 1674 0 R /Count 0 /Title (g. VFD Fault Reset \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 706 null ] /Parent 136 0 R >> endobj 1674 0 obj << /Parent 136 0 R >> endobj 1672 0 obj << /Parent 136 0 R >> endobj 1670 0 obj << /Parent 136 0 R >> endobj 1668 0 obj << /Parent 136 0 R >> endobj 1666 0 obj << /Parent 136 0 R >> endobj 1664 0 obj << /Parent 136 0 R >> endobj 1658 0 obj << /Dest [ 3 0 R /XYZ 52 655 null ] /Count 0 /Title (a. Blower discharge air pressure gauge) /Next 1675 0 R /Parent 136 0 R >> endobj 1675 0 obj << /Prev 1676 0 R /Count 0 /Title (b. Blower discharge air temperature gauge) /Dest [ 3 0 R /XYZ 52 629 null ] /Next 1677 0 R /Parent 136 0 R >> endobj 1677 0 obj << /Prev 1678 0 R /Count 0 /Title (c. Blower run light) /Dest [ 3 0 R /XYZ 52 603 null ] /Next 1679 0 R /Parent 136 0 R >> endobj 1679 0 obj << /Prev 1680 0 R /Count 0 /Title (d. Blower trip light) /Dest [ 3 0 R /XYZ 52 577 null ] /Next 1681 0 R /Parent 136 0 R >> endobj 1681 0 obj << /Prev 1682 0 R /Count 0 /Title (e. Air flowrate to EQ tank via flow meter display \(on tank catwalk\)) /Dest [ 3 0 R /XYZ 52 551 null ] /Next 1683 0 R /Parent 136 0 R >> endobj 1683 0 obj << /Prev 1684 0 R /Count 0 /Title (f. Motor Hi Temp Alarm status \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 526 null ] /Next 1685 0 R /Parent 136 0 R >> endobj 1685 0 obj << /Prev 1686 0 R /Count 0 /Title (g. Blower discharge air Hi Temp Alarm status \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 500 null ] /Next 1687 0 R /Parent 136 0 R >> endobj 1687 0 obj << /Prev 1688 0 R /Count 0 /Title (h. VFD speed command \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 474 null ] /Next 1689 0 R /Parent 136 0 R >> endobj 1689 0 obj << /Prev 1661 0 R /Count 0 /Title (i. VFD Fault Reset \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 448 null ] /Parent 136 0 R >> endobj 1688 0 obj << /Parent 136 0 R >> endobj 1686 0 obj << /Parent 136 0 R >> endobj 1684 0 obj << /Parent 136 0 R >> endobj 1682 0 obj << /Parent 136 0 R >> endobj 1680 0 obj << /Parent 136 0 R >> endobj 1678 0 obj << /Parent 136 0 R >> endobj 1676 0 obj << /Parent 136 0 R >> endobj 1652 0 obj << /Count 7 /First 1662 0 R /Title (1. Control) /Last 1690 0 R /Next 1691 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 243 null ] >> endobj 1691 0 obj << /First 1658 0 R /Count 9 /Prev 1659 0 R /Last 1660 0 R /Title (2. Monitoring) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 680 null ] >> endobj 1690 0 obj << /Prev 1674 0 R /Count 0 /Title (g. VFD Fault Reset \(via VFD keypad/HMI\)) /Dest [ 3 0 R /XYZ 52 706 null ] /Parent 136 0 R >> endobj 1525 0 obj << /Prev 1692 0 R /Count 0 /Title (E. In all operating modes, the amount of air delivered to the sludge tank and thickened sludge tank will be determined by operators through visual observation and manual adjustment of the butterfly valves on the air supply lines to the sludge holding ...) /Dest [ 3 0 R /XYZ 84 403 null ] /Parent 136 0 R >> endobj 1692 0 obj << /Parent 136 0 R >> endobj 1524 0 obj << /Dest [ 3 0 R /XYZ 84 631 null ] /Count 0 /Title (A. The blower system consists of two variable-speed rotary lobe blowers, one duty and one standby. Each blower is rated for 700 SCFM.) /Next 1693 0 R /Parent 136 0 R >> endobj 1693 0 obj << /Prev 1694 0 R /Count 0 /Title (B. There are three aerated tanks that receive air from the blower: the equalization tank; the sludge tank; and the thickened sludge tank. The design maximum air flowrate for the EQ tank is 300 SCFM. The design maximum air flowrate for each sludge tank...) /Dest [ 3 0 R /XYZ 84 591 null ] /Next 1695 0 R /Parent 136 0 R >> endobj 1695 0 obj << /Prev 1696 0 R /Count 0 /Title (C. The control system in each aeration basin includes: one \(1\) manually operated butterfly valve on the drop tubes for each tank; and one \(1\) mass air flow meter on the air line feeding the equalization tank.) /Dest [ 3 0 R /XYZ 84 538 null ] /Next 1697 0 R /Parent 136 0 R >> endobj 1697 0 obj << /Prev 1698 0 R /Count 0 /Title (D. In general, demand for air in the tanks decreases as the volume \(level\) of the contents decreases. The control system shall include a programable target volumetric air flowrate per foot of EQ tank level. The PLC shall monitor FIT-2501 and adjust bl...) /Dest [ 3 0 R /XYZ 84 484 null ] /Next 1699 0 R /Parent 136 0 R >> endobj 1699 0 obj << /Prev 1692 0 R /Count 0 /Title (E. In all operating modes, the amount of air delivered to the sludge tank and thickened sludge tank will be determined by operators through visual observation and manual adjustment of the butterfly valves on the air supply lines to the sludge holding ...) /Dest [ 3 0 R /XYZ 84 403 null ] /Parent 136 0 R >> endobj 1698 0 obj << /Parent 136 0 R >> endobj 1696 0 obj << /Parent 136 0 R >> endobj 1694 0 obj << /Parent 136 0 R >> endobj 1522 0 obj << /First 1539 0 R /Count 4 /Prev 1540 0 R /Last 1541 0 R /Title (1.05 Miscellaneous Alarms) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 720 null ] >> endobj 504 0 obj << /Parent 136 0 R >> endobj 503 0 obj << /Last 1522 0 R /Count 30 /First 1523 0 R /Title (PART 1 - General) /Dest [ 3 0 R /XYZ 84 682 null ] /Parent 136 0 R >> endobj 501 0 obj << /Parent 136 0 R >> endobj 499 0 obj << /Parent 136 0 R >> endobj 497 0 obj << /Parent 136 0 R >> endobj 495 0 obj << /Parent 136 0 R >> endobj 493 0 obj << /Parent 136 0 R >> endobj 491 0 obj << /Parent 136 0 R >> endobj 489 0 obj << /Parent 136 0 R >> endobj 487 0 obj << /Parent 136 0 R >> endobj 485 0 obj << /Parent 136 0 R >> endobj 483 0 obj << /Parent 136 0 R >> endobj 481 0 obj << /Parent 136 0 R >> endobj 479 0 obj << /Parent 136 0 R >> endobj 477 0 obj << /Parent 136 0 R >> endobj 475 0 obj << /Parent 136 0 R >> endobj 473 0 obj << /Parent 136 0 R >> endobj 471 0 obj << /Parent 136 0 R >> endobj 469 0 obj << /Parent 136 0 R >> endobj 467 0 obj << /Parent 136 0 R >> endobj 465 0 obj << /Parent 136 0 R >> endobj 463 0 obj << /Parent 136 0 R >> endobj 461 0 obj << /Parent 136 0 R >> endobj 459 0 obj << /Parent 136 0 R >> endobj 457 0 obj << /Parent 136 0 R >> endobj 455 0 obj << /Parent 136 0 R >> endobj 453 0 obj << /Parent 136 0 R >> endobj 451 0 obj << /Parent 136 0 R >> endobj 449 0 obj << /Parent 136 0 R >> endobj 447 0 obj << /Parent 136 0 R >> endobj 445 0 obj << /First 441 0 R /Parent 136 0 R >> endobj 443 0 obj << /First 1700 0 R /Count 30 /Prev 1701 0 R /Last 1702 0 R /Title (PART 3 - EXECUTION) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 377 null ] >> endobj 1702 0 obj << /First 1703 0 R /Count 6 /Prev 1704 0 R /Last 1705 0 R /Title (3.05 FIELD QUALITY CONTROL) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 310 null ] >> endobj 1705 0 obj << /First 1706 0 R /Count 2 /Prev 1707 0 R /Last 1708 0 R /Title (B. Testing Agency: Owner will engage a qualified testing agency to perform tests and inspections.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 167 null ] >> endobj 1708 0 obj << /Last 1709 0 R /Count 2 /First 1710 0 R /Title (1. Welded Connections: Visually inspect field welds in accordance with AWS D1.1/D1.1M.) /Dest [ 3 0 R /XYZ 84 128 null ] /Parent 136 0 R >> endobj 1710 0 obj << /Last 1711 0 R /Count 1 /First 1712 0 R /Title (a. In addition to visual inspection, test and inspect field welds in accordance with AWS D1.1/D1.1M and the following inspection procedures, at testing agency's option:) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 1712 0 obj << /Dest [ 3 0 R /XYZ 52 679 null ] /Count 0 /Title (1\) Radiographic Inspection: ASTM E94/E94M.) /Parent 136 0 R >> endobj 1711 0 obj << /Dest [ 3 0 R /XYZ 52 679 null ] /Count 0 /Title (1\) Radiographic Inspection: ASTM E94/E94M.) /Parent 136 0 R >> endobj 1709 0 obj << /Last 1711 0 R /Count 1 /First 1712 0 R /Title (a. In addition to visual inspection, test and inspect field welds in accordance with AWS D1.1/D1.1M and the following inspection procedures, at testing agency's option:) /Dest [ 3 0 R /XYZ 52 720 null ] /Parent 136 0 R >> endobj 1707 0 obj << /First 1713 0 R /Parent 136 0 R >> endobj 1713 0 obj << /Dest [ 3 0 R /XYZ 84 245 null ] /Count 0 /Title (1. Verify structural-steel materials and inspect steel frame joint details.) /Next 1714 0 R /Parent 136 0 R >> endobj 1714 0 obj << /Prev 1715 0 R /Count 0 /Title (2. Verify weld materials and inspect welds.) /Dest [ 3 0 R /XYZ 84 219 null ] /Next 1716 0 R /Parent 136 0 R >> endobj 1716 0 obj << /Prev 1717 0 R /Count 0 /Title (3. Verify connection materials and inspect high-strength bolted connections.) /Dest [ 3 0 R /XYZ 84 193 null ] /Parent 136 0 R >> endobj 1717 0 obj << /Parent 136 0 R >> endobj 1715 0 obj << /Parent 136 0 R >> endobj 1706 0 obj << /Last 1709 0 R /Count 2 /First 1710 0 R /Title (1. Welded Connections: Visually inspect field welds in accordance with AWS D1.1/D1.1M.) /Dest [ 3 0 R /XYZ 84 128 null ] /Parent 136 0 R >> endobj 1704 0 obj << /First 1718 0 R /Parent 136 0 R >> endobj 1718 0 obj << /Last 1719 0 R /Count 1 /First 1720 0 R /Title (A. Weld Connections: Comply with AWS D1.1/D1.1M for tolerances, appearances, welding procedure specifications, weld quality, and methods used in correcting welding work.) /Dest [ 3 0 R /XYZ 84 417 null ] /Parent 136 0 R >> endobj 1720 0 obj << /Dest [ 3 0 R /XYZ 84 364 null ] /Count 0 /Title (1. Comply with ANSI/AISC 303 and ANSI/AISC 360 for bearing, alignment, adequacy of temporary connections, and removal of paint on surfaces adjacent to field welds.) /Parent 136 0 R >> endobj 1719 0 obj << /Dest [ 3 0 R /XYZ 84 364 null ] /Count 0 /Title (1. Comply with ANSI/AISC 303 and ANSI/AISC 360 for bearing, alignment, adequacy of temporary connections, and removal of paint on surfaces adjacent to field welds.) /Parent 136 0 R >> endobj 1703 0 obj << /Count 3 /First 1713 0 R /Title (A. Special Inspections: Owner will engage a special inspector to perform the following special inspections:) /Last 1721 0 R /Next 1722 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 284 null ] >> endobj 1722 0 obj << /First 1706 0 R /Count 2 /Prev 1707 0 R /Last 1708 0 R /Title (B. Testing Agency: Owner will engage a qualified testing agency to perform tests and inspections.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 167 null ] >> endobj 1721 0 obj << /Prev 1717 0 R /Count 0 /Title (3. Verify connection materials and inspect high-strength bolted connections.) /Dest [ 3 0 R /XYZ 84 193 null ] /Parent 136 0 R >> endobj 1701 0 obj << /First 1723 0 R /Parent 136 0 R >> endobj 1723 0 obj << /Count 2 /First 1724 0 R /Title (2.01 PERFORMANCE REQUIREMENTS) /Last 1725 0 R /Next 1726 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 706 null ] >> endobj 1726 0 obj << /First 1727 0 R /Count 3 /Prev 1728 0 R /Last 1729 0 R /Title (2.02 STRUCTURAL-STEEL MATERIALS) /Next 1730 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 603 null ] >> endobj 1730 0 obj << /First 1731 0 R /Count 20 /Prev 1732 0 R /Last 1733 0 R /Title (2.03 FABRICATION) /Next 1734 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 500 null ] >> endobj 1734 0 obj << /First 1735 0 R /Count 2 /Prev 1736 0 R /Last 1737 0 R /Title (2.04 SOURCE QUALITY CONTROL) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 627 null ] >> endobj 1737 0 obj << /Last 1738 0 R /Count 8 /First 1739 0 R /Title (A. Testing Agency: Owner will engage a qualified testing agency to perform shop tests and inspections.) /Dest [ 3 0 R /XYZ 52 601 null ] /Parent 136 0 R >> endobj 1739 0 obj << /Dest [ 3 0 R /XYZ 52 562 null ] /Count 0 /Title (1. Allow testing agency access to places where structural-steel work is being fabricated or produced to perform tests and inspections.) /Next 1740 0 R /Parent 136 0 R >> endobj 1740 0 obj << /Prev 1741 0 R /Count 0 /Title (2. Bolted Connections: Inspect and test shop-bolted connections in accordance with RCSC's "Specification for Structural Joints Using High-Strength Bolts.") /Dest [ 3 0 R /XYZ 52 522 null ] /Next 1742 0 R /Parent 136 0 R >> endobj 1742 0 obj << /First 1743 0 R /Count 1 /Prev 1744 0 R /Last 1745 0 R /Title (3. Welded Connections: Visually inspect shop-welded connections in accordance with AWS D1.1/D1.1M and the following inspection procedures, at testing agency's option:) /Next 1746 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 482 null ] >> endobj 1746 0 obj << /Prev 1747 0 R /Count 0 /Title (4. Prepare test and inspection reports.) /Dest [ 3 0 R /XYZ 52 403 null ] /Parent 136 0 R >> endobj 1747 0 obj << /First 1743 0 R /Parent 136 0 R >> endobj 1745 0 obj << /Dest [ 3 0 R /XYZ 52 429 null ] /Count 0 /Title (a. Radiographic Inspection: ASTM E94/E94M.) /Parent 136 0 R >> endobj 1744 0 obj << /Parent 136 0 R >> endobj 1743 0 obj << /Dest [ 3 0 R /XYZ 52 429 null ] /Count 0 /Title (a. Radiographic Inspection: ASTM E94/E94M.) /Parent 136 0 R >> endobj 1741 0 obj << /Parent 136 0 R >> endobj 1738 0 obj << /Prev 1747 0 R /Count 0 /Title (4. Prepare test and inspection reports.) /Dest [ 3 0 R /XYZ 52 403 null ] /Parent 136 0 R >> endobj 1736 0 obj << /First 1731 0 R /Parent 136 0 R >> endobj 1735 0 obj << /Last 1738 0 R /Count 8 /First 1739 0 R /Title (A. Testing Agency: Owner will engage a qualified testing agency to perform shop tests and inspections.) /Dest [ 3 0 R /XYZ 52 601 null ] /Parent 136 0 R >> endobj 1733 0 obj << /First 1748 0 R /Count 3 /Prev 1749 0 R /Last 1750 0 R /Title (E. Holes: Provide holes required for securing other work to structural steel and for other work to pass through steel members.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 133 null ] >> endobj 1750 0 obj << /Prev 1751 0 R /Count 0 /Title (3. Weld threaded nuts to framing and other specialty items indicated to receive other work.) /Dest [ 3 0 R /XYZ 52 667 null ] /Parent 136 0 R >> endobj 1751 0 obj << /Parent 136 0 R >> endobj 1749 0 obj << /Parent 136 0 R >> endobj 1748 0 obj << /Dest [ 3 0 R /XYZ 52 720 null ] /Count 0 /Title (1. Cut, drill, or punch holes perpendicular to steel surfaces.) /Next 1752 0 R /Parent 136 0 R >> endobj 1752 0 obj << /Prev 1753 0 R /Count 0 /Title (2. Baseplate Holes: Cut, drill, mechanically thermal cut, or punch holes perpendicular to steel surfaces.) /Dest [ 3 0 R /XYZ 52 706 null ] /Next 1754 0 R /Parent 136 0 R >> endobj 1754 0 obj << /Prev 1751 0 R /Count 0 /Title (3. Weld threaded nuts to framing and other specialty items indicated to receive other work.) /Dest [ 3 0 R /XYZ 52 667 null ] /Parent 136 0 R >> endobj 1753 0 obj << /Parent 136 0 R >> endobj 1732 0 obj << /First 1727 0 R /Parent 136 0 R >> endobj 1731 0 obj << /Count 5 /First 1755 0 R /Title (A. Structural Steel: Fabricate and assemble in shop to greatest extent possible. Fabricate in accordance with ANSI/AISC 303 and to ANSI/AISC 360.) /Last 1756 0 R /Next 1757 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 474 null ] >> endobj 1757 0 obj << /First 1758 0 R /Count 1 /Prev 1759 0 R /Last 1760 0 R /Title (B. Thermal Cutting: Perform thermal cutting by machine to greatest extent possible.) /Next 1761 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 278 null ] >> endobj 1761 0 obj << /Prev 1762 0 R /Count 0 /Title (C. Bolt Holes: Cut, drill, mechanically thermal cut, or punch standard bolt holes perpendicular to metal surfaces.) /Dest [ 3 0 R /XYZ 84 212 null ] /Next 1763 0 R /Parent 136 0 R >> endobj 1763 0 obj << /Prev 1764 0 R /Count 0 /Title (D. Finishing: Accurately finish ends of columns and other members transmitting bearing loads.) /Dest [ 3 0 R /XYZ 84 173 null ] /Next 1765 0 R /Parent 136 0 R >> endobj 1765 0 obj << /First 1748 0 R /Count 3 /Prev 1749 0 R /Last 1750 0 R /Title (E. Holes: Provide holes required for securing other work to structural steel and for other work to pass through steel members.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 133 null ] >> endobj 1764 0 obj << /Parent 136 0 R >> endobj 1762 0 obj << /First 1758 0 R /Parent 136 0 R >> endobj 1760 0 obj << /Dest [ 3 0 R /XYZ 84 252 null ] /Count 0 /Title (1. Plane thermally cut edges to be welded to comply with requirements in AWS D1.1/D1.1M.) /Parent 136 0 R >> endobj 1759 0 obj << /First 1755 0 R /Parent 136 0 R >> endobj 1758 0 obj << /Dest [ 3 0 R /XYZ 84 252 null ] /Count 0 /Title (1. Plane thermally cut edges to be welded to comply with requirements in AWS D1.1/D1.1M.) /Parent 136 0 R >> endobj 1756 0 obj << /Prev 1766 0 R /Count 0 /Title (5. Complete structural-steel assemblies, including welding of units, before starting shop-priming operations.) /Dest [ 3 0 R /XYZ 84 317 null ] /Parent 136 0 R >> endobj 1766 0 obj << /Parent 136 0 R >> endobj 1755 0 obj << /Dest [ 3 0 R /XYZ 84 434 null ] /Count 0 /Title (1. Camber structural-steel members where indicated.) /Next 1767 0 R /Parent 136 0 R >> endobj 1767 0 obj << /Prev 1768 0 R /Count 0 /Title (2. Fabricate beams with rolling camber up.) /Dest [ 3 0 R /XYZ 84 409 null ] /Next 1769 0 R /Parent 136 0 R >> endobj 1769 0 obj << /Prev 1770 0 R /Count 0 /Title (3. Identify high-strength structural steel in accordance with ASTM A6/A6M and maintain markings until structural-steel framing has been erected.) /Dest [ 3 0 R /XYZ 84 383 null ] /Next 1771 0 R /Parent 136 0 R >> endobj 1771 0 obj << /Prev 1772 0 R /Count 0 /Title (4. Mark and match-mark materials for field assembly.) /Dest [ 3 0 R /XYZ 84 343 null ] /Next 1773 0 R /Parent 136 0 R >> endobj 1773 0 obj << /Prev 1766 0 R /Count 0 /Title (5. Complete structural-steel assemblies, including welding of units, before starting shop-priming operations.) /Dest [ 3 0 R /XYZ 84 317 null ] /Parent 136 0 R >> endobj 1772 0 obj << /Parent 136 0 R >> endobj 1770 0 obj << /Parent 136 0 R >> endobj 1768 0 obj << /Parent 136 0 R >> endobj 1729 0 obj << /Prev 1774 0 R /Count 0 /Title (C. Welding Electrodes: Comply with AWS requirements.) /Dest [ 3 0 R /XYZ 84 526 null ] /Parent 136 0 R >> endobj 1774 0 obj << /Parent 136 0 R >> endobj 1728 0 obj << /First 1724 0 R /Parent 136 0 R >> endobj 1727 0 obj << /Dest [ 3 0 R /XYZ 84 577 null ] /Count 0 /Title (A. Plate and Bar: ASTM A36/A36M, ASTM A573/A573M, Grade 58.) /Next 1775 0 R /Parent 136 0 R >> endobj 1775 0 obj << /Prev 1776 0 R /Count 0 /Title (B. Channel and Angle: ASTM A36/A36M) /Dest [ 3 0 R /XYZ 84 551 null ] /Next 1777 0 R /Parent 136 0 R >> endobj 1777 0 obj << /Prev 1774 0 R /Count 0 /Title (C. Welding Electrodes: Comply with AWS requirements.) /Dest [ 3 0 R /XYZ 84 526 null ] /Parent 136 0 R >> endobj 1776 0 obj << /Parent 136 0 R >> endobj 1725 0 obj << /Last 1778 0 R /Count 2 /First 1779 0 R /Title (A. Comply with applicable provisions of the following specifications and documents:) /Dest [ 3 0 R /XYZ 84 680 null ] /Parent 136 0 R >> endobj 1779 0 obj << /Dest [ 3 0 R /XYZ 84 655 null ] /Count 0 /Title (1. ANSI/AISC 303.) /Next 1780 0 R /Parent 136 0 R >> endobj 1780 0 obj << /Prev 1781 0 R /Count 0 /Title (2. ANSI/AISC 360.) /Dest [ 3 0 R /XYZ 84 629 null ] /Parent 136 0 R >> endobj 1781 0 obj << /Parent 136 0 R >> endobj 1778 0 obj << /Prev 1781 0 R /Count 0 /Title (2. ANSI/AISC 360.) /Dest [ 3 0 R /XYZ 84 629 null ] /Parent 136 0 R >> endobj 1724 0 obj << /Last 1778 0 R /Count 2 /First 1779 0 R /Title (A. Comply with applicable provisions of the following specifications and documents:) /Dest [ 3 0 R /XYZ 84 680 null ] /Parent 136 0 R >> endobj 1700 0 obj << /Count 1 /First 1782 0 R /Title (3.01 EXAMINATION) /Last 1783 0 R /Next 1784 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 352 null ] >> endobj 1784 0 obj << /First 1785 0 R /Count 1 /Prev 1786 0 R /Last 1787 0 R /Title (3.02 PREPARATION) /Next 1788 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 300 null ] >> endobj 1788 0 obj << /First 1789 0 R /Count 21 /Prev 1790 0 R /Last 1791 0 R /Title (3.03 ERECTION) /Next 1792 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 193 null ] >> endobj 1792 0 obj << /First 1718 0 R /Count 2 /Prev 1793 0 R /Last 1794 0 R /Title (3.04 FIELD CONNECTIONS) /Next 1795 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 443 null ] >> endobj 1795 0 obj << /First 1703 0 R /Count 6 /Prev 1704 0 R /Last 1705 0 R /Title (3.05 FIELD QUALITY CONTROL) /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 310 null ] >> endobj 1794 0 obj << /Last 1719 0 R /Count 1 /First 1720 0 R /Title (A. Weld Connections: Comply with AWS D1.1/D1.1M for tolerances, appearances, welding procedure specifications, weld quality, and methods used in correcting welding work.) /Dest [ 3 0 R /XYZ 84 417 null ] /Parent 136 0 R >> endobj 1793 0 obj << /First 1789 0 R /Parent 136 0 R >> endobj 1791 0 obj << /Prev 1796 0 R /Count 0 /Title (G. Do not enlarge unfair holes in members by burning or using drift pins. Ream holes that must be enlarged to admit bolts.) /Dest [ 3 0 R /XYZ 84 482 null ] /Parent 136 0 R >> endobj 1796 0 obj << /Parent 136 0 R >> endobj 1790 0 obj << /First 1785 0 R /Parent 136 0 R >> endobj 1789 0 obj << /Dest [ 3 0 R /XYZ 52 167 null ] /Count 0 /Title (A. Set structural steel accurately in locations and to elevations indicated and in accordance with ANSI/AISC 303 and ANSI/AISC 360.) /Next 1797 0 R /Parent 136 0 R >> endobj 1797 0 obj << /First 1798 0 R /Count 1 /Prev 1799 0 R /Last 1800 0 R /Title (B. Baseplates, Bearing Plates, and Leveling Plates: Clean concrete- and masonry-bearing surfaces of bond-reducing materials, and roughen surfaces prior to setting plates. Clean bottom surface of plates.) /Next 1801 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 128 null ] >> endobj 1801 0 obj << /Prev 1802 0 R /Count 0 /Title (C. Maintain erection tolerances of structural steel within ANSI/AISC 303.) /Dest [ 3 0 R /XYZ 84 706 null ] /Next 1803 0 R /Parent 136 0 R >> endobj 1803 0 obj << /First 1804 0 R /Count 2 /Prev 1805 0 R /Last 1806 0 R /Title (D. Align and adjust various members that form part of complete frame or structure before permanently fastening. Before assembly, clean bearing surfaces and other surfaces that are in permanent contact with members. Perform necessary adjustments to com...) /Next 1807 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 680 null ] >> endobj 1807 0 obj << /Prev 1808 0 R /Count 0 /Title (E. Splice members only where indicated.) /Dest [ 3 0 R /XYZ 84 534 null ] /Next 1809 0 R /Parent 136 0 R >> endobj 1809 0 obj << /Prev 1810 0 R /Count 0 /Title (F. Do not use thermal cutting during erection.) /Dest [ 3 0 R /XYZ 84 508 null ] /Next 1811 0 R /Parent 136 0 R >> endobj 1811 0 obj << /Prev 1796 0 R /Count 0 /Title (G. Do not enlarge unfair holes in members by burning or using drift pins. Ream holes that must be enlarged to admit bolts.) /Dest [ 3 0 R /XYZ 84 482 null ] /Parent 136 0 R >> endobj 1810 0 obj << /Parent 136 0 R >> endobj 1808 0 obj << /First 1804 0 R /Parent 136 0 R >> endobj 1806 0 obj << /Prev 1812 0 R /Count 0 /Title (2. Make allowances for difference between temperature at time of erection and mean temperature when structure is completed and in service.) /Dest [ 3 0 R /XYZ 84 574 null ] /Parent 136 0 R >> endobj 1812 0 obj << /Parent 136 0 R >> endobj 1805 0 obj << /Parent 136 0 R >> endobj 1804 0 obj << /Dest [ 3 0 R /XYZ 84 613 null ] /Count 0 /Title (1. Level and plumb individual members of structure. Slope roof framing members to slopes indicated on Drawings.) /Next 1813 0 R /Parent 136 0 R >> endobj 1813 0 obj << /Prev 1812 0 R /Count 0 /Title (2. Make allowances for difference between temperature at time of erection and mean temperature when structure is completed and in service.) /Dest [ 3 0 R /XYZ 84 574 null ] /Parent 136 0 R >> endobj 1802 0 obj << /First 1798 0 R /Parent 136 0 R >> endobj 1800 0 obj << /Dest [ 3 0 R /XYZ 84 720 null ] /Count 0 /Title (1. Set plates for structural members on wedges, shims, or setting nuts as required.) /Parent 136 0 R >> endobj 1799 0 obj << /Parent 136 0 R >> endobj 1798 0 obj << /Dest [ 3 0 R /XYZ 84 720 null ] /Count 0 /Title (1. Set plates for structural members on wedges, shims, or setting nuts as required.) /Parent 136 0 R >> endobj 1787 0 obj << /Dest [ 3 0 R /XYZ 52 274 null ] /Count 0 /Title (A. Provide temporary shores, guys, braces, and other supports during erection to keep structural steel secure, plumb, and in alignment against temporary construction loads and loads equal in intensity to design loads. Remove temporary supports when pe...) /Parent 136 0 R >> endobj 1786 0 obj << /First 1782 0 R /Parent 136 0 R >> endobj 1785 0 obj << /Dest [ 3 0 R /XYZ 52 274 null ] /Count 0 /Title (A. Provide temporary shores, guys, braces, and other supports during erection to keep structural steel secure, plumb, and in alignment against temporary construction loads and loads equal in intensity to design loads. Remove temporary supports when pe...) /Parent 136 0 R >> endobj 1783 0 obj << /Dest [ 3 0 R /XYZ 52 326 null ] /Count 0 /Title (A. Proceed with installation only after unsatisfactory conditions have been corrected.) /Parent 136 0 R >> endobj 1782 0 obj << /Dest [ 3 0 R /XYZ 52 326 null ] /Count 0 /Title (A. Proceed with installation only after unsatisfactory conditions have been corrected.) /Parent 136 0 R >> endobj 442 0 obj << /Parent 136 0 R >> endobj 441 0 obj << /Count 72 /First 1814 0 R /Title (PART 1 - GENERAL) /Last 1815 0 R /Next 1816 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 682 null ] >> endobj 1816 0 obj << /First 1723 0 R /Count 20 /Prev 1817 0 R /Last 1818 0 R /Title (PART 2 - PRODUCTS) /Next 1819 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 84 720 null ] >> endobj 1819 0 obj << /First 1700 0 R /Count 30 /Prev 1701 0 R /Last 1702 0 R /Title (PART 3 - EXECUTION) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 377 null ] >> endobj 1818 0 obj << /First 1735 0 R /Count 2 /Prev 1736 0 R /Last 1737 0 R /Title (2.04 SOURCE QUALITY CONTROL) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 627 null ] >> endobj 1817 0 obj << /First 1814 0 R /Parent 136 0 R >> endobj 1815 0 obj << /First 1820 0 R /Count 6 /Prev 1821 0 R /Last 1822 0 R /Title (1.08 DELIVERY, STORAGE, AND HANDLING) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 395 null ] >> endobj 1822 0 obj << /First 1823 0 R /Count 3 /Prev 1824 0 R /Last 1825 0 R /Title (B. Store fasteners in a protected place in sealed containers with manufacturer's labels intact.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 262 null ] >> endobj 1825 0 obj << /Prev 1826 0 R /Count 0 /Title (3. Comply with manufacturers' written recommendations for cleaning and lubricating ASTM F3125/F3125M, Grade F1852 bolt assemblies and for retesting bolt assemblies after lubrication.) /Dest [ 3 0 R /XYZ 52 171 null ] /Parent 136 0 R >> endobj 1826 0 obj << /Parent 136 0 R >> endobj 1824 0 obj << /First 1827 0 R /Parent 136 0 R >> endobj 1827 0 obj << /Dest [ 3 0 R /XYZ 52 316 null ] /Count 0 /Title (1. Do not store materials on structure in a manner that might cause distortion, damage, or overload to members or supporting structures. Repair or replace damaged materials or structures as directed.) /Parent 136 0 R >> endobj 1823 0 obj << /Dest [ 3 0 R /XYZ 52 236 null ] /Count 0 /Title (1. Fasteners may be repackaged provided Owner's testing and inspecting agency observes repackaging and seals containers.) /Next 1828 0 R /Parent 136 0 R >> endobj 1828 0 obj << /Prev 1829 0 R /Count 0 /Title (2. Clean and relubricate bolts and nuts that become dry or rusty before use.) /Dest [ 3 0 R /XYZ 52 197 null ] /Next 1830 0 R /Parent 136 0 R >> endobj 1830 0 obj << /Prev 1826 0 R /Count 0 /Title (3. Comply with manufacturers' written recommendations for cleaning and lubricating ASTM F3125/F3125M, Grade F1852 bolt assemblies and for retesting bolt assemblies after lubrication.) /Dest [ 3 0 R /XYZ 52 171 null ] /Parent 136 0 R >> endobj 1829 0 obj << /Parent 136 0 R >> endobj 1821 0 obj << /First 1831 0 R /Parent 136 0 R >> endobj 1831 0 obj << /Dest [ 3 0 R /XYZ 52 434 null ] /Count 0 /Title (A. Welding Qualifications: Qualify procedures and personnel in accordance with AWS D1.1/D1.1M.) /Parent 136 0 R >> endobj 1820 0 obj << /Count 1 /First 1827 0 R /Title (A. Store materials to permit easy access for inspection and identification. Keep steel members off ground and spaced by using pallets, dunnage, or other supports and spacers. Protect steel members and packaged materials from corrosion and deterioration.) /Last 1832 0 R /Next 1833 0 R /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 369 null ] >> endobj 1833 0 obj << /First 1823 0 R /Count 3 /Prev 1824 0 R /Last 1825 0 R /Title (B. Store fasteners in a protected place in sealed containers with manufacturer's labels intact.) /Parent 136 0 R /Dest [ 3 0 R /XYZ 52 262 null ] >> endobj 1832 0 obj << /Dest [ 3 0 R /XYZ 52 316 null ] /Count 0 /Title (1. Do not store materials on structure in a manner that might cause distortion, damage, or overload to members or supporting structures. 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Welding Qualifications: Qualify procedures and personnel in accordance with AWS D1.1/D1.1M.) /Parent 136 0 R >> endobj 1857 0 obj << /First 1853 0 R /Parent 136 0 R >> endobj 1855 0 obj << /Prev 1860 0 R /Count 0 /Title (F. Field quality-control reports.) /Dest [ 3 0 R /XYZ 52 486 null ] /Parent 136 0 R >> endobj 1860 0 obj << /Parent 136 0 R >> endobj 1854 0 obj << /First 1849 0 R /Parent 136 0 R >> endobj 1853 0 obj << /Dest [ 3 0 R /XYZ 52 655 null ] /Count 0 /Title (A. Qualification Data: For Installer fabricator professional engineer testing agency.) /Next 1861 0 R /Parent 136 0 R >> endobj 1861 0 obj << /Prev 1862 0 R /Count 0 /Title (B. Welding certificates.) /Dest [ 3 0 R /XYZ 52 629 null ] /Next 1863 0 R /Parent 136 0 R >> endobj 1863 0 obj << /Prev 1864 0 R /Count 0 /Title (C. 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Extracted Entities

TypeKeyValueConfidenceEvidence
server Flow Meter FIT-510 FIT-510 100% RAS pump 1 flowrate (FIT-510)
server Flow Meter FIT-2001 FIT-2001 100% total influent flow from the EQ pump station (reported by FIT-2001)
server Flow Meter FIT-511 FIT-511 100% RAS pump 2 flowrate (FIT-511)
site plant name Cambria CSD 100% Cambria CSD PGE SST Project – WWTP Upgrade - 10 May 2024
site plant location WWTP 90% Cambria CSD PGE SST Project – WWTP Upgrade - 10 May 2024
system MiniCAS MiniCAS 100% Motor Hi Temp Alarm Reset Pushbutton (on MiniCAS)
system VFD Variable Frequency Drive 100% VFD speed command (via VFD keypad/HMI)
system PLC system PLC 100% The PLC automatically controls the pumps and their speed
system SCADA system SCADA 100% SCADA screens for the RAS pump system provide the plant operator
File: Clients/Tough/remarkable/CCSD/WWTP/RAS_control_Strategy_Final.pdf
Updated: 2026-02-24 05:30:31.851227