ML20198J532

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Forwards Summary of Parsons Power Group,Inc & NRC 971003 Meeting Re Sys Boundaries for Two Addl Systems Selected for Review as Part of Independent Corrective Action Verification Program.Listing of Attendees & Presentation Matls,Also Encl
ML20198J532
Person / Time
Site: Millstone Dominion icon.png
Issue date: 10/14/1997
From: Curry D
AFFILIATION NOT ASSIGNED
To:
NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM)
References
NUM2-PPNR-0676, NUM2-PPNR-676, NUDOCS 9710210123
Download: ML20198J532 (53)


Text

{{#Wiki_filter:- --- t ) PARSOND Daniel L. Curry, w4 fwoont law hes Pawis Pow Group inv. 2675 thg:n%n Floss e Rc*a PenntAanta 19G07 * (010) 855 ?%6

  • Fat (610) f35$ M02 October 14,1997 Dxtet No. 50-336 Parsons NUM2 PPNR-0676-L U.S. Nuclear Regulatory Commission Attentiort Documes,t Control Desk Wrdington, D.C. 20555 Millstone Nuclear Power Station Unit No. 2 ladspsndatforrective Action Verification Program (ICAVP)

Gentlemen: On October 3,1997, Parsons Power Group Inc. (PPGI) and the U. S. Nuclear Regulatory Commission (NRC) discussed the system boundaries for the two additional systems selected for review as part of the Millstone Unit 2 ICAVP. %c Emergency Diesel Generator and support systems and the Radiological Release Control Systems were selected by the Nuclear Energy Advisory Council (NEAC) at their meeting on September 18,1997. %c primary purpose of the meeting was to provide an oveniew of the selected system interface and review applicable portions of system diagrams relating to the scope of review. Interface boundaries were established on a functional basis. System / component interface drawings were developed ard unique numbers were used to identify each type ofinterface. Ec attributes to be verified for each interface type was provided on a review boundary matrix. Inspection scope for cach of the systems was shown on system boundary diagrams. Enclosure I provides a listing of primary participants at the meeting. Enclosurc 2 provides the handout used by Parsons turing the presentation. Sincerely, p ffj Daniel L Curry d Parsons ICAVP Project Director g Attachment ec: E. Imbro (2)- USNRC ,, m 3 p, f

11. Eichenholz - USNRC

.,L") R. Laudenat NNECo J. Fougere - NNECo Rep. Terry Cor. cannon' NEAC - g Proicct Files 9710210121 971014 I PDR ADOCil 05000336 ITNR0676. doe P PDR ~ C L'

i i Enclosure I List of Primary Participants US Nucicar_ Rcaulatory Commissim Gene Imbro l Steve Reynolds Ralph Archittel Richard Milntyre Michael Shlyamberg i Andy Du Douchet Jim Leivo.. Ray Cooney - tgspns Power GroupJs Dan Curry l Eric Blocher Wayne Dobson Michael Akins - John flilbish Ron Smith Greg Cranston Ken Maycrs Rich Glasiano William Clemenson Tom Kline Samir Serhan John loannidi Dom Ramos PPNR0676 doc : 1 l I. .x

l'resentation llandout l i 1 ITNR0676. doc ~


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MILLSTONE UNIT 2 ICAVP SYSTEM BOUNDARY REVIEW MEETING OCTOBER 3,1997 PARSONS POWER - READING, PA C .M. EETING AGENDA

1. Introductions & Meeting Objectives:

Eric Blocher

11. HVAC Systems:

Dom Ramos Greg Cranston - Overview System Interfaces - P&lD Walkthrough - Summary ofInterfaces 111. EDG Systems: Ken Mayers Ron Smith - Overview System Interfaces - P&lD Walkthrough - Summary ofInterfaces IV. Meeting Closure: Eric Blocher F3' PARSONS

SYSTEM HOUNDARY PROCESS All equiprnent, piping, components, instrumentation, etc., within the system will be + reviewcF!aspected per PP-01, Pl.01. interface boundaries established on a functionality basia. That is, if a supporting function in an + irm iacing system is required for the selected system to perform its design base function, that is included in the boundary. System / Component interface type drawings developed and uniquely numbered to identify each + type ofinterface. Mechanical - 10 types ofinterfaces c 1&C - 4 types ofinterfaces Electrical /1&C - 5 types ofinterfaces Attributes to be verified ani inspected for each interface type summarized on review boundary + matrix. Inspection scope shown on system boundary diagrams: + Project sys.cm boundary diagram used to show entire system boundary, major flow path, critical inspection items, control and logic signals "Ilig Picture" Consistent with Tier 2 diagrams Enclosure Building IIVAC: 1 dwg. illustrating 5 P&ID's

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4 dwgs. illustrating 6 P&lD's Applicable plant P&lD's highlighted to show system boundary Each type ofinterface point and associated system identified on highlighted P&lD Each interface point tracked on system interface list to uniquely identify interface point and tie it to drawing location -!!!2 PARSONS

TOTAL SYSTEM INTERFACES BY TYPE TYPE DESCRIPTION IIVAC EDG l M-1 RELIEF VALVE - OPEN 10 DISCil ARGE INTERFACE M-2 RELIEF V U.VE - CLOSED DISCilARt>E INTERFACE M-3 VENT OR DRAIN - OPEN 7 56 DISCIIARGE INTERFACE M-4 DRAIN CLOSED DISCIIARGE INTERFACE 4 M-5 IIEAT EXCIIANGER INTERFACE M-6 DOUBLE ISOLATION VALVE 4 INTERFACE M-7 ROOM OR COMPARTMENT 1 COOLING INTERFACE M-8 INTERFACE BOUNDAP t' VALVE-8 11 CllECK, MANUAL, OR M.O. M-9 BEARING OR SEAL COOLING INTERFACE M-10 CONTAINMENT INTERFACE I-l RPS OR ESFAS INTERFACE WITil SYSTFpt 1-2 ANOTIlER SYSTEM INTERFACE 26 55 JVITil SYSTEM I-3 SYSTEM INTERFACE WITII AN$;jtf SYSTEM l-4 SA)XT; ',2 'iEISMIC AIR 4 SUPPLt El-1 SYSTEM MOTOR INTERFACE 13 19 El-2 SYSTEM SOLENOID INTERFACE 15 9 El-2 IIEAT TRACING INTERFACE El-4 SYSTEM IIEATER INTERFACE 4 El-5 SYSTEI.; BREAKER 48 INTER' ACES TOTAL 78 216 !!D' PARSONS

TIER 1 - SYSTEM BOUNDARY PROCESS Electrical Develop 1&c System /Componerit Interface Mechanilai 1 iterface Type Types Diagrams (19) if Develop iac A tes Mechanical if Review Selected PIs s V Modify Types / Develop New Types For Selected Systems V If If Identify Ilighlight Interface Types P& ids on P&lDs II livAc -78 System Interface List goa. 2i6

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1 RPS OR ESFAS'- ~ INTERFACEWITHSYSTEM t _' VITAL'120 VAC__ _ _ l y; e l I sensor PROCESS. + (RPS) (ESF) RPS OR ESFAS _ _l CONTAINMENT l I Y O h ' RPS LVTERLOCKS TO SYSTEM OR ESF NOTE- ,- (1). For ONE actussing channel of RPS or ESFAN ' verify loop from sensor to actussed eqmpment. Attentive check remaining channels. (2). Insemsi cab logic will not be verified. - L.

.\\ i m I-2 ANOTHER SYS'IEM INERFACEWITHSYSTEM 1 ? ' VITAL 120 VAC , pj _. _ -. - l i l f- ' SENSOR-l- +e PROCESS - - - - + IAC 3-t I . OTHER SYSTEM y .I l. t l y If,A'OTHER IN1ERLOCKS TO SYSTEM - 4 SYSTEM 4 .t NOTE: (1) For all interfece loop from another system ' verify loop from sensor to actussed, equipment. (2) Internal cab logic will not be verified. i e ..n ' .;g -,

[. I-3 [ SYSTEM INERFACE ' i - WTITI ANOTHERSYSTEA!- I. i. + 1 i. j PROCESS IAC I 1 t I Y INTERLOCK TO ANOTHER SYSTEM i F t -i , NOTE: r (1) For each output to another system verify alw_ -1 output to the actuated device. [ f f r h 6 t i ---e-=_ _4 __ .4.. .,e ..2_.. _j_..

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EI-I SYSTEMMOTORINTERFACE A OTIER c-g 'A fgj'._ _ _ _ _ y 4 - - - - - MAIN CONROI. INIIRLOCKS BOARD c ESFAS OR RPS My ' y 'T INTERLOCKS (1) O4 FlhE SIIUIDOWN - FSAR 7.6.4.2.1 OR iIOT SHUTDOWN - FSAR 7.6.5.2.2 OR BOTHE UP PANELS - FSAR 7.6.5.2.1 ] f . sy+% VITAL 480 V(MCC) ____y VITAL 4160 V (SWGR) MCC/SWGR A VITAL 125 VDC(SWGR) hy ~ l l l ! SPACEIEATER LIMIT AND TORQUE SWrrCIIES (MOV's ONLY) NOTE: For every component in the system each interface point, if applicable, will be verified. (1) If Applicable N

EI-2 SYSTEM SOLENOID INTERFACE - -

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EI-3 IEAT TRACUJG INTERFACE 4 Y IEAT TRACKING PANEL p-I I 1 l - ~ ~ s -s ~ f 1,e ,_ + -, - s- -- s e --s ~- ~- ~- ~- ~- PROCESS OR INSTRUhENT LINE 9 4 m * .n .1

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MILLSTONE UNIT 2 ICAVP MECHANICAL INTERFACE REVIEW MATRIX ITEM ATTRIBUTE M-1 M-2 M-3 M-4 M-5 M4 M-7 M4 M-9 M-10 1 x x x x x 1 Venfy vatve is in accordance with code requirements x x 2 Venfy vahre size /capocrty meet code requiremerts x x 3 Ven*y stze of inlet ptpe x 4 Venfy stro of discharge pipe x x x x x 5 Venfy correct configuration was used for pipe stress anatysis x x 6 Venfy correct set pressure for vahre is used for IST procedure x x x x x x 7 Ven*y valve pressure / temperature rattng is correct 8 Venfy heat load from system compocent/ room is correctly l x incorporated in HVAC system sizing x x 9 Venfy pressure / temperature rating of components providing system side boundary integnty of heat sclianger x x 10 Venfy that piping nozzle loads are correctty incorporated in Heat Exchanger support loads & containment penetration loads. x x 11 Venfy that the cooling or heating load for the system have been correctly incorporated into the sizing calculations for the interfacing i support system x '42 Venfy that the isolation valves meet code requirements x 13 Venfy that GL 89-10 MOV program requirements have been met x x 14 Verify correct position for pneumatic isolatio1 valves on att failure x 15 Venfy that system calculations include the flow of fluid to a non-safety interface for operating conditions that do not initiate isolation x x x x x x 16 Venfy supports are instatied as designed by walkdown. x x x x x x 17 Review pipe support calculations for piping x x x 18 Does the Operating Procedure checkfist indicate the correct varve position 7 x 19 Venfy that the deaign calculations for the interfacing system use the correct value for the design flow to or from the system x 20 For interfaces with the Containment Sump, the available NPSH for pump operation and the sump screen mesh size will be reviewed. The screen mesh will be compared to maximum particle size limits for pumps, throttle valves, orifices, etc. i July 24,1997 x = DEFINES EXTENT OF REVIEW Rev.O I meci* m n

ICAVP ELECTRICAUl&C REVIEW BOUNDARY MATRIX INTERFACE 1 BOUNDARY TYPICALS ITEM ATTRIBUTE l-1 I-2 1-3 14 El-1 El-2 El-3 EI4 El-5 l t i 1 X X X 1. Nenfy sensor range i X X X 2-Venfy sensor as desg,ed to as but!! I X X 3 Venty field cahbrabon procedure metuding f;eid zero/ suppression X 4. Venfy independent of process taps X X X 5. Venfy physical ints.hanical sepafEron X J X X X X X l 6. Venfy physical electncat secaraten f X 7. Ven9 electncal EQ seal (s) 8. Venfy equipment is qualif ed for environmental condcons including X X X ) X l potential flooding / submergence X X X 9. Venfy equipment !s quairfied for seesmic condcons X 10 Venfy mechanical contamment penebaton X X X_ 11. Venfy electncal et,ntamment penetraton X X X X X_ X l v 12. Venfy ind pe-dence and secaration of wtnng X 13. Venfy wr.nng from sensor to safety related process ca5 nets / racks X X 14. Venty termmatens to safety related process cabmettrack terminals X 15. Venty independence of safety related process cabinets / racks power feeds [ X 16. Venfy adequr-cy of process cabmet power supply X X X X X 17. Venfy tnp se: pomts, alarm pomts - X X X X 18, Venfy safety related process cabmets/ racks outputs and termmation X X. X 19. Venfy the output function and winng from the safety related process cabinets / racks to the iriterface device / equipment / cabinet and that ther is r o other interlock that impacts safety function X X X j 20. Venfy equipment utumate pcwsr source adequecy and timing X X X l 21. Venfy adequacy of ratngs and protectrve devices X X X X l l 22. Venfy appitcabitsty of programs (t e SBO, APP R) on equipment X X i X X l [ 23. Venfy applicability of setsmic 2 over 1 X 24. Venfy quatification of safety related air system vatves and valves / tubing installation and support X X X l l f 25. Venty the safety related air system accumuiator sizmg 26. Venfy the adecuacy of the heat including power supply X 1 l + 27. Venfy heat traemg supervisorytmon!*onng crreutts and sct pomt X = DEFPES EXrEffrCF PEVEN f PCEX M6 ARE CEFosED AS THAT tAA'EstiAL ThAT s PART CF ThE PLANTS COPmtCLLED COPFOJR ATION MANA cost EXAMPLE. To REVfW THE OUTPUT Coc ACT FROM THE ESF AS CA91 NET To A PUMP SWWCMGE.AR. (Y) M EhF AS LOG W1RNG OtAGRAa4 APC g) TM APPEtCPStlA E CONTROL WytNG DtAGRAM WouLC BE #EYEWED T i HC'E LOGC REVEW G *CT CcNSCERED AS A PART OF M NSPEcTiOre THE NSPEcTICN Wu CPLV NCLuCE l (1) REYEW TM V ARAR.E S NPUr Pfro TW CCRREc7 LoGC WE PRCPER REDU@NCY Ns m - THE FwAL ou'PUT CONTArt To *HE ACTb4TED DEv1CEIS) OCSTPWrSICAL ATTR:ErJTES OF NENTS wmed M CA8 NET e [ (M M1 INVCLVE3 SeptemDer.1997 EStC BND DOC PAGE 1 Rev.1 l

o ENCLOSURE BUILDING FILTRATION SYSTEM (EBFS) CONTAINMENT AND ENCLOSURE BUILDING PURGE SYSTEM (CEBPS) SYSTEM BOUNDARY AND INTERFACE MEZTING SYSTEM FUNCTIONS A. EBFS 1. Contain and remove fission products from enclosure building atmosphere following a LOCA. 2. Minimize leakage of radioactive materials to the environment by providing an enclosure building, maintaining the enclosure building at a negative pressure and processing the effluent through HEPNCharcoal filters. Serve as standby emergency ventilation system for the Fuel Handling Ventilation System for exhausting air from the spent fuel 3. pool area in the event of a high radiation condition following a fuel handling accident. Provide initial purging and processing of the containment building atmosphere (containment cleanup) during Mode 6 operations 4. to reduce radioactivity level prior to a continuous purging of the building by the Main Exhaust System 5. Provide an alternative method for hydrogen reduc

  • ion in containment building following a LOCA.

6. Provide method to process potential airborne radioactive material through HEPNCharcoal filter when venting the containment to reduce containment pressure through the hydrogen purge valves during normal plant operations. i B. CEBPS Maintain a suitable environment for personnel access into the containment or the enclosure building by providing fresh air for ventilation and heating whenever required. Rev.O 10/6/97 intrface doc 9 ... N

SYSTEM BOUNDARY AND INTERFACE MEETING - EBFS & CEBPS INTEI! FACING SYSTEMS FOR SYSTEM REVIEW-EBFS and CEBPS 1. Fuel Handling Ventilation System and Radiation Monitors Hydrogen Purge System (also used for venting containment pressure) 2. 3. Instrument Air 4. Containment Radiation Monitodng 5. Unit 1 Stack Monitoring System 6. Condenser Air Removal 7. 125 Volt DC 8. 480 Volt AC 9. Auxiliary Steam System

10. -

Main Exhaust System 11. Gaseous Radwaste System (utilizes same exhaust duct to Unit I stack) 12.. Engineered Safeguards Actuation System (ESAS) 13. Fire Protection??? MODIFICATIONS FOR SYSTEM - EBFS and CEBPS = 42 Enclosure Building Filtration System = 19 Containment & EB Purge System = S Enclosure Building = 15 INTERFACE QUANTITIES Interface Type Quantity - EI-I 13 El-2 15 I-2 21 I-4 M-3 7 M-6 4 M-7 1 M-8 8 Rev.0 10/6/97 intifacc. doc s s. M--

MILLSTONE UNIT 2 ICAVP CONTAINMENT / ENCLOSURE BUILDING PURGE AND ENCLOSURE BUILDING FILTRATION SYSTEMS Interface Type Device Description Dwg. Location I-2 2-AC-4 Ctmt Purge Supply Outbd Isolation Damper 26028 Sh 1 E-3 I-2 2-AC-5 Ctmt Purge Supply Inbd kolation Damper 26028 Sh 1 E-5 I-2 2-AC-6 Ctmt Purge Exhaust Inbd Isolation D:mper 26028 Sh 1 B-11 I-2 2-AC-7 Ctmt Purge Exhaust Outbd Isolation Damper 26028 Sh 1 B-13 I-2 2-AC-8 EB Purge Exhaust Damper 26028 Sh 2 D-1 1-2 2-EB-100 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3 G-5 I-2 2-EB-40M Motor for 2-EB-40 EBFS Suction Damper 26028 Sh 5 F-12 I-2 2-EB-41 EBFS Header "B" Isolation Damper 26028 Sh 5 F-11 I-2 2-EB-42 EBFS Fan F-25B Outlet Isolation Damper 26028 Sh 5 F-7 I-2 2-EB-50M Motor for 2-EB-50 EBFS Suction Damper 26028 Sh 5 J-13 I-2 2-EB-51 EBFS Header "A" Isolation 26028 Sh 5 J-l1 I-2 2-EB-52 EBFS Fan F-25A Outlet Isolation Damper 26028 Sh 5 J-8 I-2 2-EB-55M Motor for 2-EB-55 Cond Air Removal Dis To Unit 1 Stacic 26028 Sh 5 H-6 I-2 2-EB-56M Motor for 2-EB-56 Cond Air Removal Dis To Unit 1 Stack 26028 Sh 5 J-6 I-2 2-EB-60M Motor for 2-EB-60 Fuel Area Suction Damper 26028 Sh 5 G-11 I-2 2-EB-61M Motor for 2-EB-61 Fuel Area Suction Damper 26028 Sh 5 F-11 I-2 2-EB-72M Motor for 2-EB-72 Ctmt Clean Up to EBFS 26028 Sh 5 F-12 I-2 2-EB-73M Motor fr 2-EB-73 Ctmt Clean Up to EBFS -26028 Sh 5 J-13 I-2 2-EB-91 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3 F-5 I-2 F-23 Motor Containment Purge Supply H & V Unit Fan Motor F-23 26028 Sh 1 B-2 I-2 F-25A Motor for Enclosure Buildin ; Recirculation Fan "A" 26028 Sh 5 J-8 I-2 F-25B Motor for Enclosure Building Recirculation Fan "B" 26028 Sh 5 F-7 I-2 PDIC-8128 Purge Exh Filter DP Controller 26028 Sh 2 E-3 I-4 2-IA-688 Instrument Air Supply Valve to 2-EB-91 26028 Sh 3 F-5 I-4 2-IA-689 Instrument Air Supply Vahe to 2-EB-100 26028 Sh 3 G-5 I-4 2-IA-724 Instrument Air Supply Valve to 2-EB-92 26028 Sh 3 F-3 26028 Sh 3 G-3 I-4 2-IA-725 Insuument Air Supply Valve to 2-EB-99 M-3 2-AC-21 Contamment and Enclosure Building Ventilation Sys Line Vent 26028 Sh 1 E-3 M-3 2-AC-31 Containment and Enclosure Building Ventilation Svs Line Vent 26028 Sh I B-12 M-3 2-EB-120 H2 Vent Line Drain 26028 Sh 3 G-3 M-3 2-EB-121 H2 Vent Line Drain 26028 Sh 3 F-3 Rev. 0 2 10/6/97 EllFSilDRY.XLS n

MILIETONE UNIT 2 ICAVP CONTAINMENT / ENCLOSURE BUILDING PURGE AND ENCLOSURE BUILDING FILTRATION SYSTEMS Interface Type Device Description . Dwg. Location EI-l 2-EB-40M Motor for 2-EB-40 EBFS Suction Damper 26028 Sh 5 F-12 26028 Sh 5 J-13 El-1 2-EB-50M Motor for 2-EB-50 EBFS Suction Damper EI-I 2-EB-55M Motor for 2-EB-55 Cond Air Removal D;s To Unit 1 Stack 26028 Sh 5 H-6 EI-l 2-EB-56M Motor for 2-EB-56 Cond Air Removal Dis To Unit 1 Stack 26028 Sh 5 J-6 El-1 2-EB-60M Motor for 2-EB-60 Fuel Area Suction Damper 26028 Sh 5 G-11 EI-l 2-EB-61M Motor for 2-EB-61 Fuel Area Suction Damper 26028 Sh 5 F-11 EI-l 2-EB-72M Motor for 2-EB-72 Ctmt Clean Up to EBFS 26028 Sh 5 F-12 EI-I 2-EB-73M Motor for 2-EB-73 Ctmt Clean Up to EBFS 26028 Sh 5 J-13 EI-l 2-EB-76M Motor for 2-EB-76 EBFS "A" Suction X-Tie Damper 26028 Sh 5 G-9 p EI-1 2-EB-77M Motor for 2-EB-77 EBFS "B" Suction X-Tie Damper 26028 Sh 5 G-9 EI-l F-23, Motor Containment Purge Supply H & V Unit Fan Motor F-23 26028 Sh I B-2 EI-I F-25A Motor for Enclosure Building Recirculation Fan "A" 26028 Sh 5 J-S EI-l F-25B Motor for Enclosure Buildmg Recirculation Fan "B" 26028 Sh 5 F-7 EI-2 2-AC-1 Supply Fan Discharge Damper 26028 Sh 1 C-2 EI-2 2-AC-11 EB Purge Exhaust Damper With Positioner 26028 Sh 2 D-3 EI-2 2-AC-3 EB Purge Supply Damper 26028 Sh 1 G-2 i El-2 2-AC-4 Ctmt Purge Supply Outbd Isolation Damper 26028 Sh 1 E-3 [ EI-2 2-AC-5 Ctmt Purge Supply Inbd Isolation Damper 26028 Sh 1 E-5 EI-2 2-AC-57 Ctmt Purge Exhaust Damper 26028 Sh 2 D-1 EI-2 2-AC-6 Ctmt Purge Exhaust Inbd Isolation Damper 26028 Sh 1 B-11 EI-2 2-AC-7 Ctmt Purge Exhaust Outbd Isolation Damper 26023 Sh 1 B-13 El-2 2-AC-8 EB Purge Exhaust Damper 26028 Sh 2 D-1 ' t EI-2 2-EB-100 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3 G-5 EI-2 2-EB-41 EBFS Header"B" Isolation Damper 26028 Sh 5 F-11 EI-2 2-EB-42 EBFS Fan F-25B Outlet Isolation Damper 26028 Sh 5 F-7 EI-2 2-EB-51 EBFS Header "A" Isolation 26028 Sh 5 J-l1 EI-2 2-EB-52 EBFS Fan F-25A Odlet Isolation Damper 26028 Sh 5 J-8 El-2 2-EB-91 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3-F-5 I-2 2-AC-1 Supply Fan Discharge Damper 26028 Sh I C-2 I-2 2-AC-11 EB Purge Exhaust Damper With Positioner 26028 Sh 2 D-3 I-2 2-AC-3 EB Purge Supply Damper 26028 Sh 1 G-2 Rev.0 1 10/6/97 ~ EBFSBDRY.XLS f

MILLSTONE UNIT 2 ICAVP CONTAINMENT / ENCLOSURE BUILDING PURGE AND ENCLOSURE BUILDING FILTRATION SYSTFMS Interface Type Device - Description Dwg. Location - J M-3 2-EB-140A EBFS "A" Train Filter Inlet Plenum Common Drain Isolatico Manual Viv 26028 Sh 5 H-9 M-3 2-EB-140D EBFS "B" Train Filter Inlet Plenum Common Drain Isolation Manual Viv 26028 Sh 5 F-9 M-3 2-EB-142 EBFS DischargeTest Connection 26028 Sh 5 D-6 M-6 2-AC-5 Ctmt Purge Supply Inbd Isolation Damper 26028 S51 E-5 M-6 2-AC-57 Ctmt Purge Exhaust Dar.; er 26028 Sh 2 D-1 M-6 2-AC-6 Ctmt Purge Exhaust Inbd Isolation. Damper 26028 Sh 1 B-11 M-6 2-AC-8 EB Purge Exhaust Damper 26028 Sh 2 D-I M-7 X-43 Fan / Filter Unit Steam Heating Coil 26028 Sh 1 B-2 M-8 2-EB-100 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3 G-5 M-8 2-EB-60 Fuel Area Suctionion Damper 26028 Sh 5 G-11 M-8 2-EB-72 Ctmt Clean Up to EBFS 26028 Sh 5 F-12 M-8 2-EB-73 Ctmt Clean Up to EBFS 26028 Sh 5 J-13 M-8 2-EB-86 Manuallocked Closed Valve 26028 Sh 3 E M-8 2-EB-91 Hydrogen Purge Ctmt Isolation Valve 26028 Sh 3-F-5 M-8 2-GR-10 Gaseous Radwaste Discharge to Unit 1 Check Valve 26028 Sh 5 F-6 M-8 Intake leuver Intake Louver for F-23 26028 Sh I B-1 Rev.0 10/6/97 3 EBFSBDRY.XLS

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EMERGENCY DIESEL GENERATOR AND SUPPORT SYSTEMS SYSTEM BOUNDARY AND INTERFACE MEETING SYSTEM FUNCTIONS A. Emnergency Diesel Generator Provide reliable 4160 volt on site power to supply power through the e%gs.cy 4160 Volt Buses to the actuated equipsw.at of the protective system if the 4160 Volt off site power source is lost. B. Emergency Diesr.' Generator Feel Oil Provide reliable fuel oil supply for operation to each of the emergency diesel generators. C. Emergeng Diesel Generator Room Ventilation Maintain suitable environment for equipment and personnel during normal operation and shutdown conditions Maintain a suitable environrnent for equipment during emergency conditions D. 4160 Volt AC and Fast Bus Trrasfer Provide 4163 Volt AC power to the emergency 4160 Volt buses under normal operating conditions and to fast transfer,less than 8 cycles, from the normal station senice transformer to the resent station senice transformer upon loss ofoffsite power. E. Engineend Safegnards Features Actuation System (Emergency Diesel Generator Lead Sequence Only) Provides automatic diesel system load sequencing for the protection sytem equipment upon receipt ofen actuation si nal SIAS and loss of voltage from the 4160 Volt AC emergency bus. E w edgpres. doc 10/2/97 s O 9

ll INTERFACING SYSTEMS FOR SYSTEM REVIEW

1. 4160 Volt AC.
2. 125 Volt DC
3. 480 Voit System
4. ; Fire Protection 5.' ServiceWater

... Instrument Air L Er.girwed Safeguard Actuation System (ESAS)

8. 120 VAC
9. EmergencyLighting
10. Computers UPS 1I. Computer Room A/C
12. Containmer.t Sampfmg
13. Post Accident Radiation Monitoring
14. Reactor Coolant

.15. Fuel Handling Building H/V

16. Boric Acid SEQUENCER OUTPUTINTERFACES TO:
1. ServiceWater
2. High Pressure SafetyInjection.
3. Containment AirRecirculation
4. Reactor Building Closed Cooling Water
5. Charging (CVCS)
6. LowPressureSafetyInjection
7. Containment Spray
8. EnclosureBuildingFiltration
9. AuxiliaryFeeduser
10. Safety Related HVAC ESF Room Air Recirculation Control Room Air Conditioning ano edgpreldoc

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EDG Room Ventilation Battery Room Exhaust DC SwitchgearRoom Coormg AC SwitchgearRoom Coormg Vital ChiHed Water MODIFICATIONS LISTED FORTHE SYSTEM- ~130 Diesci Generator-67 Diesel Generator Fuel Oil-13 Diesel Generator Vemilation-3 Station 4160 Volt AC ESFAS-3I i Total-130 r . INTERFACE QUAN 11an.S TYPE QUANTITY M1 ' 10 M3 '56 i MS 4 M8 II 4 Ell 19 9 EI2 1 EI4 4 I s EIS 48 I2 4 55 t edgresh 10.'2/97 ,N L ' - O

EMERGENCY DIESEL GENERATOR SYSTEM INTERFACES 1j LNTERFACE DEVICE DESCRIPTION DRAM LNG SCOPE S.R I LOCADOy prx N'D ARY SYSTEMS D'f_E IDE%~TTFICATION 4 l2601%. Sheet 5. F-10 $ at ima. 1 EIM E. -4 A:t AC Motor LL u. Art Cw#um El-1 F-10A 2fCI A, Sheet 5. A-10 I st bmay IlXiStrter A:r El F-10H - AC Max Dn=en AzrC%- w 26011. Sheet 5. F-6 at tw.darv EDGStarmr Arr El F-10C DC Motor Dmm Ar Cu. cum DC Motor Dr:ven A:rCw.eum 26013, Sheet 5. A4 at termiarv EIX} Stag A:r G1 F-10D 26027, 3heet 1. G-5 att isrv HVAC j El-1 F-27 - DG Heatmg and Vert Fan 26027, Sheet I. W2 atSousian HVAC El F-3RA Rm A Ve=t Fan HVAC 2fo27, Sheet I. S2 atte c darv l D-1 F-35B Rm B Ve:t Fan 26018. Sheet 2. B-7 ! at1+1-in-v Dewsc _ u A al i P-120A Elac w Motor Da.w Pre-Lube Fw 2M18. Sheet 3. B-7 I at bourxian Deet ceeuw B D-I P-120B Dectne Motor Dmm Pre-Lube Pur o al P-128A Fwrs Cican Ot1 Shi is Ta.k 26010, Sheet I. H-13 ati c 4=mr I DG Fuel Od El P-12EB Twcr Cican Otl Od Storare Tank 26310. Sheet I, E11 att+ = *=cr -1 DG Fuel Oil 26010. Sheet 1. D-13 at tv_+tm IXi Fuel Oil EI-1 P-128C Transfer Tw 26010. Sheet I. D-13 at tmcdan DG Fuel Od G-1 P-12ED Tran=fer Pteep ' 26010. Sheet 1. Et at ixc.isn IXi Fuel O:I El P47A D.esel Od TmMer Le 26010. Sheet 1. H-2 at tvudarv DG Fuel Otl D-1 P 4'Ts Dd Od T 'er L.g 26015. Sheet 2.F4 at tv iev Deetc_avA B-1 P-RRA Dectne Motor Dnven Jacket Coota=t Fw at trenda:v IDeet ceer=w B S1 P-8%B Electne Motcr Dnven Jacket Coolant Fw ' @S. Sheet 3. F4 at bor omv Deet ceersw A G1 P49A Standbv Lube Od Crre Pump j@ r, Sheet 2. C-5 at torndarv D eciceer=w B El-1 P49B

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_gff ~J. Sheet 3.C-5 at boundarv EDG Sta:tne Arr EI-2 2-DG-27A Sta:tmg Air Vent Valve ?,,~# 8, Sheet 5. K-13 at tvudarv EIXiSta-t::t Ar 43;18. Sheet 5. E-12 G2 2-DG-27B Vent Valw 126013. Sheet 5. J-8 at tamdarv EIX} hi.s Air EI-2 2-DG-95A Solds,4 Valve 2toi8. Sheet 5. E 9 at t-ma ;. EDG h ai Ar E2 2-DG-95B Sck..,4 Valve 26018. Sheet 5. J-10 st im in EDG La g A:r EI-2 2-DG-96A Soluwd Valve '26018. Sheet 5 E-li t art L. EDG h a# Ar EI-2 2-DG-96B - SolesM VaIve 26027,Sh1,H 4 att-w darv D2e;G werNB j B-2 2-HV-253A.B DG RM AAB Exhaust D.4c 26027,ShI,J-I at t+r imv Die vi C m c stor A B-2 2-HV-255A DG RM A EGa D ,c 26027. Sb 1. H-1 at tv - ' -. Die el C&Ttv A j D-2 2-HV-255B DG RM B ILust D%u 26018. SNet 2. F4 atI m a-- thewi c~ a w A l DJ X-54A l Simniby Jaciet Coolant Heater

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' Deet c__..a B D4 X-54B Standby Jacket Coolant Hester 2fC13. Sheet 2. A 6 at Ism.i.iy uDeet cm..w A Lu e Oil Hester 5 E14 X-55A 2601R, Sheet 3, A4 at tw-ag

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B4 X-55B Lube Od Hester - 20003 H-II at t, A- - 430V SuNt Fzner EI-5 22El-2 4A0V Brkr Bus 22E to MCC 22-1E 2001 H-1 I at ima. 4*0V Sutt Emer E5 ??F1-2 430V Brkr Bus 22E to PRESS HTRS PROPORT B-5 7?n-2 480V Brkr Bus 22E to MAG-JACK M-G SET 30n08 H-JO at1, = 4= v 480V Sabe Erner 30tX28 H-10 at tvudan 4x0V Sute Emer j E5 22E4-2 480V Brkr Bus 22E to DCI ' 30003 H-9

at1, "arv 14%CV Scte Emer E5 22E5-2 480V Brkr Bus 22E to MCC 22 Md H 9 at 1,ma.

titov sun Emer i l D-5 22E6-2 480V Brkr Bus 22E to F14A i rare i et

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EMERGENCY DIESEL GENERATOR SYSTEM INTERFACES LNTERFACE DEVICE DESCRIPTION DIL4W LNG SCOPE SUB E IDENTIFICATION LOCATION BO N ARY SYSTEMS i El-5 22E7-2 430V Brb Bus 22E to F 14C NxX:8 H-8 at t,w.darv i4s0V sum Em El 5 22E8-2 4 ROV Brh Bus 22E to DC3 3000% H-7 ati m a 7

*sov set se Emer F15 22E9-2 4 ROV Brkr Bus 22E to C33A 20008 H-8 atI M arv

' 450V sum Frna F15 22F1-2 480V Brh Bus 22F to C33B 30008 D-9 at tw,darv 480V Sute Emn EI-5 22F2-2 - 4 ROV Brkr Bus 22F to 14D 30008 D-9 at twaw 4MOV Subst Emer B-5 22F3-2 480V Brkr Bus 22F to I4B 20003 D-8 at tw.darv 4E0V sum Emer EL5 22F4-2 480V Brtr Bus 22F to 14B 10008 D-7 at ime < 420VSuM Fm El-5 22F5-2 430V Brkr Bus 22F to 14B 3000R D-7 at tw-a _. 450V Subst. Emer El-5 22F6-2 4 ROV Brkr Bus 22F to 14B 30008 D-7 at ima-_. 450V Sut* Emer. B-5 22F7-2 480V Brkr Bus 22F to 14B 30n03 D4 at Im.dsrv 4ReV Subst Fner El-5 22FB-2 480V Brkr Bus 22F to 14B 30008 D-5 at h w a. 450V Subst Fmn El-5 52-A102 4KV Brkr Bus 24A X Tie to 24B 30004 J-10 at imdarv 416KV Buses EI-5 52-A206 4KV Brkr Bus 24B X Tie to 24A 30n4: D-5 at t,,u ec< 4 I6KV Buses El-5 52-A302 4KV Brkr Eam14 Bus 24C X 1se to 24D 30005 J-1I at tvendars 4160V Emer Buses s Eb5 52-A303 4KV Brkr to XRMR 24 C1-1X 30005 3-10 at t-.darv 4160V Emer Buses El-5 52-A304 4KV Brkr Bus Feed to 24A 30005 J-10 at boundarv 4160V Emer. Buses B-5 52-A305 4KV Brkr Bus Feed to 24E 30005 J-9 at txs-a. 4160V Emer Huses El-5 52-A306 4KV Brkr Bus 24C to Semce Water Pump P-5A 30005 J-8 ativm.darv 4160V Emer Huses EI-5 52-A307 4KV Brkr Bus 24C to Aux Feeduliter Pump P 9A 30005 J-8 at tomdarv JI60V Emer. Buses El-5 52-A308 4KV Brkr Bus 24C to HPSI Pume P-41 A 3000$ I-7 at bnundarv 4160V Emer. Buses El-5 52-A309 4KV Brkr Bus 24C to LPSI Pump P42A 10005 J-6 at 1 a. 4160V Emer. Buws El-5 52-A310 4KV Brkr Bus 24C to CS Pump P43A 30005 J-5 at Imma v 4160V bner. Buws EI-5 52-A311 4KV Brkr Bus 24C to RBCCW Pump P-11A 30005 J-5 att w.darv 4160V Bner. Huses EI-5 52-A312 4KV Brkr Bm 24C From C.m; Generator *A* 30005J-2 at tv.d.c4 4160V Emer. Buses El-5 52-A401 4KV Brkr Bus 24D From Diesel Generatet'B-30001 G4 at tvma7 Mam Lee El-5 52-A402 4KV Brkr Bus 24D to RBCCW Pump P-11C 30005 D-10 at tvi.darv 4160V Fmn. Buses El-5 52-A403 4KV Brkr Bus 24D to HPSI Pump P-41C 30005 D-9 at tvundarv 4160V Emer. Buses El-5 52-A404 4KV Brkr Bus 24D to LPSI Pump P42B 30005 D-8 atte m darv 4160 Vim Buses l El-5 52-A405 4KV Brkr Bus 24D to CS Pump P-43B 30005 D-8 at tuma7< 4160V Lac Buses El-5 52-A406 4KV Brkr Bus 24D to Aux Feedsmer Pm, P-9B 30005 D-7 at iv.- -. 4160V Emer. Buses El-5 52-A407 4KV Brkr Bus 24D to Semce Water Pump P-5C 30005 D 4 at te-a. 4160V Emer. Um EI-5 52-A408 4KV Brkr Bus 24D Feed to Bus 24E 30005 D4 at tvma < 4160V Dner Buses El-5 52-A409 4KV Brkr to XRMR 24 D7-1X 30005 D-5 at tum.asf 4160V Emer. Buses El-5 52-A410 4KV Brkr Bus 24D Feext to Bus 24B 30005 D 4 at twa7< 4160V Emer. Buses EI-5 52-A411 4KV Brkr Eumgecf Bus 24D X Tie to 24C 30005 D-} at Iuma74 4160V rra Buses El-5 52-A505 21S3-24E-2 30001 G-1I at boundary Mam Lee El-5 B0502 4KV Brtr Bus 24C to 24C1 30001 E-5 at1 -.darv Mam Lme El-5 B0503 4KV Brkr Bus 24C to MCC 22-1E 30001 D-4 at ima, Mam Lme i P=ce 2 et s on-redreds xk a n. o

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EMERGENCY DIESEL GENERATOR SYSTEM INTERFACES LNTERFACE DEVICE DESCRIPTIO.N D R 4'A LN G SCOPC SUB l M IDENTIFICATION LOCATION BOl'ND utY WSTEMS l-2 P-18H CVCS Charemg Pump No 2 at boundan 1-2 P-18C CVCS Chargmg Pun p No. 3 at boundary I-2 P-18D CVCS Chargmg Pump No. 4 at boundary 1-2 PAIA High Pressure Infectron Pump at boundarv

-2 P4iB High Pressure Injection Pump at boundanr I-2 PAIC High Pressure In3cetion Ptzmp at temdary I-2 P42A Low Pressure Infection Pumn at boundarv I

I-2 P42B lew Pressure injection Pmp at tumdan I-2 P43A Contamment Sprav Pizmp at ta:ndan ' I-2 P43B Cor:tamment Sprav Pump at boundan I-2 P47A Diesel Oil Transfer Pump 26010 Sh I,11-1 at boundarv DG Fuel Oil j I-2 P47B Diesel Oil Transfer Pump 26010, Sh 1,1I-2 at boundary DG Fuel Oil I-2 P-5A Semce Water Pumo at boundan l-2 P-5B !Semce Water Pump at lumdan I-2 P-5C Service Water Pumo at tumdan I-2 P-9A Aux 2harv Feedwater Pump at tamdan 1-2 P-9B Auxiliary Feedwater Pump at boundan I-2 X-169A Cluller at tvandarv I-2 X-169B Cluller at boundary I-2 X-61 A Enclosure Buildmg Filtration Hester at boundary 1-2 X41B Enclosure Buildmg Filtrat2on Heater at boundan M-1 2-DG-54 Rehef Valve PSV-8950 26018 Sheet 5 H-9 at boundary EDG Startmg A:r M-1 2-DG-55 Rehef Valve PSV-8951 26018, Sheet 5, H-7 at boundarv EDG Startmg Air M-1 2-DG-56 Rehef Valve PSV R952 26018, Sheet 5. B-9 at boundarv EIXiStartmg Arr M-1 2-DG-57 Rehef Valve PSV-8953 26018, Sheet 5, C-7 at boundary EDG Startmg Art i M-1 2-DG-59 Rehef Valve PSV-8819 26018, sheet 5. F-12 at boundarv EDG Startmg Air l M-1 2-DG40 Rehef Valve PSV4821 26018, Sheet 5, F-5 at tomdary EDG Startmg Air i M-1 2-DG41 Rehef Valve PSV-R820 26018, Sheet 5 A-12 at temdan ELXiStartmg Arr M-1 2-DG42 Rehef Valve PSV-E822 26018 Sheat 5. A4 at inmdarv EIXiStar*mg Air M-l 2-DG47 Electne Motor Drtten Pre-Lube Pump Rehef Vaire 26018, Sheet 2. B-7 at boundan Dee=d Generaw A M-1 2-DG48 Electnc Motor Dnven Pre-Lube Pump Rehef Valve 26018, Sheet 3 B-7 at tamdan Diemel Gewavv B M-3 2-D6-99A L-701 Vent Valve 26018. Sheet 2, B-A at boundarv Diege! Gmerah A M-3 2-DG-104A Dratn Valve 26018. Sheet 5, G4 at turndarv Etx} Startmg Air M-3 2-DG-104B Dram 26018, Sheet 5, G4 at boundarv EIXiStartmg Arr M-3 2-DG-108A Dram Valve 26018, Sheet 5, F-11 at boundarv E1Xi Startmg Air M-3 2-DG-108B Dram 26018, Sheet 5 F4 at boundan EIXiStartmg Art M-3 2-DG-109A Drain Valve 26018, Sheet 5 A-11 at boundan EDG Startmg Air M-3 2-IXi-109B Dram Valve 26018, Sheet 5. A-5 at tamdarv EIX)Startmg Art i ter-Iedg edgdsle Fase 4 of 4 ^ ^

1 EMERGENCY DIESEL GENERATOR SYSTEM INTERFACES l 1 i INTERFACE DEVICE DESCRIPTIO.N DRA% LNG SCOPE 53 1 DH IDENTTFICATION LOCATION BOOTMRY SYSTEMS f M-3 2-DG-112A Dram Valve 260I 8, Sheet 5, G-5 at toundary EIX) Startmg Arr M-3 2-DG-112B Dram Valve 26018. Sheet 5. B-5 at teundarv EIU Starter A:r I M-3 2-DG-114A Dram Valve 26018, Sheet 2, D.6 at torn 5ev Deewi C.~.w A M-3 2-DG-114B Dram Valve 26018. Sheet 2, D-6 at teundan Du,elC~ ~.w A M-3 24E115A Dram Valve 260!$. Sheet 3, D.6 at Iwntwv Deel C_.w B M-3 24 Ell 5B ' Dram Valve 26018, Sheet 3. D-6 at toundan Deer C.~.w a M-3 2-DG-127A Vent Valve 26018. Sheet 5, F4 at boundarv EDG Startme A:r M-3 2-DG-130A Dram Valve 26018, Sheet 2. D-9 at tuh Deel C,-~.w A M-3 2-DG-130B Dram Valve 260I8, b eet 3 D-9 attoundarv Deet C_.w B l 4 M-3 2-DG-16A Jacket Water Dram Valve 26018. Sheet 2. E-1I at tWm . DeelCa.av A o M-3 24E16B Jacket Water Dram Valve 26018. Sheet 3 E-11 at turni-v Deel C~~.= B M-3 2-DG-I A Air Coolmg Heat Exchanger Dram Valve 26018, Sheet 2. K-12 at ter-nd-v Deet C_.w A M-3 2 24 ElB Air Coolmg Heat Exchanger Dram Valve 26018. Sheet 3. K-12 at terniev Deet C-~.w B M-3 ~ 24E22A DG Lube Od Inlet Valve 26018, Sheet 2, D-6 at termdan DeetC_ ,A M-3 24E22B DG Lube Od Dram Valve 26018, Sheet 3, D-6 at tmundarv Die-,1 C_.., B M-3 2-DG-25A Lube Otl Stramer Dram Valve 26n18, Sheet 2. A-8 at toundarv Deel C-w A M-3 24Xi-25B Lube Od Stramer Dram Valve 26018, Sheet 3. A-8 at tmundarv Deel C-.w B M-3 24 E2A Air Coolmg Heat Exchanger Vent Valve 26018, Sheet 2, K-12 at boundary DeelCw.w A M-3 2-IE2B Art Coolmg Heat Exchanter Vent Valve 26018, Sheet 3. K-12 at tmundarv Deet C~~.w B M-3 24E34A Dram Valw 26018, Sheet 5. G-10 at tvandary EIX) Startmg Air M-3 2-DG-34B Dram Valve 2601R, Sheet 5. G4 withm toundan EDG Str*r.2 Arr i M-3 24 E t4D Dram Valve 26018. Sheet 5. IM at borniwr EIM Startmg Arr M-3 2-DG-34L Dram Valve 26018, Sheet 5. B-10 at teundarv i FDG Startmg Azr M-3 2-DG-5 A JW HX Vent Valve 26018, Sheet 2, G-12 at % o lary DeelGenernw A l M-3 24 E7A JW HX Dram Valve 26018. Sheet 2, F-12 at teundary DeelGmeretnr A h M-3 24Xi44A !xbe Od Vent Valve 26018 Sheet ?,C-I at boundarv l Deel Genersw A i M-3 24Xi44B Lube Od Vent Valve 26015, sheet 3 C-7 at tandarv ' Deet Generaw B ( M-3 2-DG-89A Dram Valve 26018, Sheet 5,3-6 at toundary EDG Startmg Arr I M-3 2-DG-89B Dram Valve 26018, Sheet 5. D-6 at bounderv EDG Startmg Azr f d M-3 2-DG-8B JW Dram VaIve 26018, Sheet 3. E-4 at bounderv Deel Generow B { j M-3 2-DG-90A Dram Valve 26018, Sheet 5, J-10 at tcanderv EDG Startmg Arr M-3 2-DG-90B Dram Valve 26018, Sheet 5, D-10 at boundary EIXi Startmg An l M-3 24E98B L-704 Lube Od Filter Vcat 26018, Sheet 2. C-9 at bosni-v Deet Gmernov A M-3 2-DG-98D L-704 Lute OG Fdter Vent 26018, Sheet 3. C-9 at toundarv Deel Generew B M-3 2-FO-10 Nantiv Closed Gute Valve 26010, Sheet 1, H-4 at toundarv DG Fuel Od i M-3 2-FO-103 A Gate Valve (normally closed) 26010, Sheet 1, K-3 at toundan DG Fuel Od l M-3 2-FO-103B Normally Closed Gate Valve 26010, Sheet I, H-3 at txm d=v DG Fuel Od l M-3 2-FO-26 . T-4SB Dram Valve 26010 Sheet 1. D-5 at bonnaarv DG Fuel Od e i [ i mer i.de capixb rase 5.t6 l f

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