ML17212A406: Difference between revisions

From kanterella
Jump to navigation Jump to search
(Created page by program invented by StriderTol)
(Created page by program invented by StriderTol)
Line 17: Line 17:


=Text=
=Text=
{{#Wiki_filter:REGULATORYORMATIONDISTRIBUTIONSYSi(RIDS)ACCESSIONNBR!8107280254DOCDDATE:"81/07/20NOTARIZED::NOFACILi:50335StsLuciePlant~Unit1<.FloridaPower8LightCo~AUTH'AME'UTHORAFFILIATIONUHRIGPR0E~FloridaPower8LightCo~RECIP~NAMElREC'IPIENTAFFILIA'TIONCIARKipR~ADOperating,ReactorsBranch3DOCKEiT&#xb9;05000335SUBJECTForwardsresponsestoNRC810521requestfor.addiinforeIauxiliaryfeedwaterisysautomatic-initiationLflowindication;Fouroversizedrawingsencl~Aperturecards'ill~beava.ilableinPDR,DISTRIBUTIONCODE1ADOISCOPIESRECEIVED;LTR'NCLA'IZE::gJTITLE':GeneralDistributionforafterIssuanceofOperatingLicenseNOTES:-RECIPIENTID'ODE/NAMEIACTION!ORB&#xb9;3BC'4INTERNAL'/DIREHUMFAC08ILEi06'ELD11TRAD'ASMTBRCOPIES"LTTRENCLL'3131122101~1RECIPIENTIDCODE'/NAME<<DIRgDIVOF.LIC.NRC-PDR02BR10G*FILE01COPIESLTTR'NCL<111=-.10,11EXTERNALt:=ACRSNSIC0905ie1611LPDRNTIS031111-TOTAL"NUMBER'FCOPIESREQUIRED:LTTR41ENCL"39 N'1a~1ca1't$IPEtf P.O.BOX529100MIAMI,FL33152Qilljj~FLORIDAPOWER&LIGHTCOMPANYJuly20,1981L-81-302OfficeofNuclearReactorRegulationAttention:Mr.RobertA.Clark,ChiefOperatingReactorsBranchIIl3DivisionofLicensingU.S.NuclearRegulatoryCommissionWashington,D.C.20555
{{#Wiki_filter:REGULATORY ORMATIONDISTRIBUTION SYSi(RIDS)ACCESSION NBR!8107280254 DOCDDATE:"
81/07/20NOTARIZED::
NOFACILi:50 335StsLuciePlant~Unit1<.FloridaPower8LightCo~AUTH'AME'UTHOR AFFILIATION UHRIGPR0E~FloridaPower8LightCo~RECIP~NAMElREC'IPIENTAFFILIA'TION CIARKipR~ADOperating, ReactorsBranch3DOCKEiT&#xb9;05000335SUBJECTForwardsresponses toNRC810521requestfor.addiinforeIauxiliary feedwateri sysautomatic-initiation Lflowindication;Four oversizedrawingsencl~Aperturecards'ill~
beava.ilable inPDR,DISTRIBUTION CODE1ADOISCOPIESRECEIVED;LTR
'NCLA'IZE::gJTITLE':GeneralDistributionforafterIssuanceofOperatingLicense NOTES:-RECIPIENT ID'ODE/NAMEI ACTION!ORB&#xb9;3BC'4INTERNAL'/DIREHUM FAC08ILEi06'ELD11TRAD'ASMTBRCOPIES"LTTRENCLL'3131122101~1RECIPIENT IDCODE'/NAME<<
DIRgDIVOF.LIC.NRC-PDR02BR10G*FILE01COPIESLTTR'NCL<
111=-.10,11EXTERNALt:=
ACRSNSIC0905ie1611LPDRNTIS031111-TOTAL"NUMBER'FCOPIESREQUIRED:
LTTR41ENCL"39 N'1a~1ca1't$IPEtf P.O.BOX529100MIAMI,FL33152Qilljj~FLORIDAPOWER&LIGHTCOMPANYJuly20,1981L-81-302OfficeofNuclearReactorRegulation Attention:
Mr.RobertA.Clark,ChiefOperating ReactorsBranchIIl3DivisionofLicensing U.S.NuclearRegulatory Commission Washington, D.C.20555


==DearMr.Clark:==
==DearMr.Clark:==
Re:St.LucieUnitglDocketNo.50-335AuxiliaryFeedwaterSystemAutomaticInitiationandFlowIndicationFloridaPower8LighthasreviewedtheNRCletterdatedMay21,1981concerningtheabovesubjectandourresponseisattached.Verytrulyyours,RobertE.UhrigVicePresidentAdvancedSystems8TechnologyREU/PLP/rascc:Mr.J.P.O'Reilly,RegionIIHaroldF.Reis,Esquireyg,(gQgc,K~giA(8107280254810720PDRADOCK05000335PPDRPEOPI.E.~.SERVINGPEOPLE 0>,y'Pr.~a~J*4~s'P''',pIl1,J'Fajttl REUESTFORADDITIONALINFOIQfATIONuestion1ST.LUCIE1AUXILIARYFEEDWATER(AFWAUTOMATICINITIATIONAND'FLOWINDICATIONPleaseprovidethefollowingdrawings:a)DetailedP&XD(PipingandInstrumentationDiagram)oftheSt.Lucie1auxiliaryfeedwatersystem(AFWS).b)Electricalschematics,,andlogicdiagramsfortheAFWSinitiationandannunciationcircuits,andAFWpumpandvalvecontrolcircuits.c)ElectricalschematicsforthevalvesinthesteamsupplylinetotheturbinedrivenAFWpump.Resonse1Thedrawingsrequestedbythestaffthatareattachedtothisletterarepreliminary.Thefinalizeddxawingsalongwiththeinformationthatisnotyetavailablewillbesenttoyouwhenthedesignisfinalized.DrawingsNumbersareasfollows:a)EbascoDwgNo.8770-G-080b)CombustionEngineeringDwgNo.E-00000-41l-801Rev01,AFASSimplifiedFunctionalDiagramE-00000-411-803RevOl,AFASTestingSystemDiagramE-00000-411-'04Rev01,AFASMiscellaneousDiagramSchematics>foractuatedcomponentswithchangesforAuxFeedwatexAutomaticInitiationSystem(CE)notavailableasofyet.c)Notavailableasofyet.uestion2AssumingalossofpowertotheAB-DCtiebus("A"batteryfailure),describethemanualactionsrequiredtotransferthisbustothe"B"battery-includingthetimerequiredtomakethistransfer.Resonse2Sincethe"AB"busisnormallyalignedtothe"B"batteryatSt.LuiceUnit1,theproceduretotransferthe"AB"busfromthe"B"batterytothe"A"batterywillbedescxibed.Theonlydifferencetotransferthe"AB"busfromthe"A"batterytothe"B"batterywouldbeachangeinthebreakernumbers.1.Checkthe1Achargeronthe1A125VDCbus,thelBchargeronthelB125VDCbus,andtheABchargeri.sinHotStandby.
Re:St.LucieUnitglDocketNo.50-335Auxiliary Feedwater SystemAutomatic Initiation andFlowIndication FloridaPower8LighthasreviewedtheNRCletterdatedMay21,1981concerning theabovesubjectandourresponseisattached.
2.CloseBreaker60317("AB"BatteryChargerOutput).3.OpenBreaker60316,tieto125VDCbus1Bon125VDCbus1ABfromthecontrolroom.OpenBreaker60230,tieto125VDCbus1ABon125VDCbus1Bfromthecontrolroom.5.CloseBreaker60130,tieto125VDCbuslABon125VDCbus1Afromthe'controlroom.6.CloseBreaker60315,tieto125VDCbus1Aon125VDCbus1ABfromthecontxolroom.Thetimerequiredtocarryoutthisprocedureisapproximatelytwo'togiyeminutes.uestion3ByFloridaPowerandLight(FP&L)letterdatedJanuary2,198l(L-81-4),,Enclosure2,itisstatedthat"TheASSwillautomaticallyterminateauxiliaryfeedwaterflowtoafaultedsteamgeneratorandautomaticallyprovideauxiliaryfeedwaterflowtotheintactsteamgenerator."Provideadetaileddescriptionofthisfeature(i.e.,automaticterminationofAFWtothefaultedsteamgenerator)includinglogicandschematicelectricaldiagrams.Resonse3Theauxiliaryfeedwateractuationsystemautomaticallyinitiatesauxiliaryfeedwatertotheintactsteamgeneratorupondemandandterminatesorpreventsauxiliaryfeedwatertothesteamgeneratoridentifiedasbeingruptured.TheAPASisafourchannelIEsystemthatprovidesseparatefeedwaterinitiationsignalsforeachsteamgenerator(identifiedasAFAS-1andAPAS-2).Bothsignalsareprovidedineachchanneltointerfacewiththeindividualcomponents(pumps,valves).Thelogicwhichisusedwithineachchanneltodefinefeedwaterinitiationorterminationisshowninfigure1.AFASisinitiatedwithineachchanneluponreceiptofalowS.G.waterlevelsignalprovidedthesteamgeneratororassociatedfeedwaterheaderisnotidentifiedasbeingruptured.Arupturesignalisgenerateduponthefollowingcondi.tions:S.G.pressureisapproximately100psibelowtheotherS.G.;orFeedwatersupplyheaderpressureisapproximately100psibelowtheotherfeedwatersupplyheaderpressure;andItsassociatedS.G.isidentifiedashavingalowwaterlevel,andTheotherS.G.orfeedwaterheaderisnotidentifiedasbeingruptured.Thelogicdiscussedaboveproducesadigital(on/off)signa1withineachchannelforAPAS1and2.Thesesignalsarecombinedacrossthefourchannelstoformatwo-out-offourlogic.ThislogicproducesanAFAS1or2actuationsignalwithineachchanneltocontrolthepumpsorvalvesassociatedwiththat.signal.Therefore,initiationofAPAS1or2willcausethefinalAFASactuationrelaystodeenergizetherebyenergizing lt I'rV;II'igurc1hl'ASLO(~ICIFIYII2I'SG1P1(P2PSG2,I,)fP2(P1P1~iP2LSG1LSG2P2<P1+f+]ORLOV(EVEI.LO'LYLEVEIOR)()I<07NOTnflDII~ti2/4~Off'JCMnfiUAL~OBf~l,$2/ilCOlfJCMANUALOllABBREVIATIONSP.PRESSURELLEVELSGSTEAI"IGENERATORF'tYIIFEED'VIATERHEAQFRAFASAUXILIARY~FEEDS'IATERACTUATIONSYSTI:iiAFAS1AFAS2',~~'l~\~~~t'I theassociatedpumpsandvalvestoprovidefeedwaterto-thhappropriateS.G.ShouldtheS.G.beidentifiedasbeingruptured,theAFASactuationrelayswouldreenergize(exceptpumpactuationrelays)andclosetheassociatedvalves.Forfurtherdetailoftheabovepxoject,seeCEdrawingE-00000-411-801(attached).uestion4ArethereanyoperatingbypassesassociatedwiththeAFWautomaticinitiationlogic/circuitryduringstart-uporoperationofthereactor?Ifso,howarethesebypassesremoved(automatically,procedurally,etc)?~Resense4TheAFAScontainstwotypesofbypasses,1)txipchannelbypassand2)batteryfailurebypass.Thetripchannelbypassisprovidedforperiodictestingofthesystemandtoremoveachannelfromsezviceduetoacomponentfailure.Thisbypassismanuallyinitiatedandmanuallyremoved.2)Thebatteryfailurebypassisanautomaticbypassinitiateduponlossofbatterypower.ThebypasseffectsonlychannelsAandB.LossofbatteryAwillautomaticallybypasschannelAonlyandsimilarlylossofbatteryBwillautomaticaliybypasschannelBonly.Individualmanualbypassswi.tcheswillbeprovidedonafunctiona1level(AFAS1andAFAS2)whichwillpreventtheindividualautomaticactuationoutputsfromoperatingAPWsystemcomponents(i.e.APAS1Abypass(S.G.1A,channelA),AFAS2B(bypass(S.G.1B,channelB)etc.).Acontrolroomannunciatorwillbeactuatedwhenanyoftheavailablebypassswitchesisputinthebypassposition.Thesebypasseswillberemovedmanuallyunderthedizectionofwrittenprocedures.uestion5DiscussthecapabilityfortestingandcalibrationoftheAPWautomaticinitiationchannelsincludingintervalsbetweentests.Resonse5Testingoftheauxiliaryfeedwatezactuationsystemisaccomplishedinfivesegments:1)SensorTest2)BistableTest3)LogicMatrixTest4)InitiationCircuitTest5)ActuationTestEachtestisdiscussedbelow:1)SensorTestDuringxeactoroperation,themeasurementchannelsprovidinganinputtotheAFASazecheckedbycomparingtheoutputsofsimilarchannelsandcross-checkingwithrelatedmeasurements.
Verytrulyyours,RobertE.UhrigVicePresident AdvancedSystems8Technology REU/PLP/ras cc:Mr.J.P.O'Reilly, RegionIIHaroldF.Reis,Esquireyg,(gQgc,K~giA(8107280254 810720PDRADOCK05000335PPDRPEOPI.E.~.SERVINGPEOPLE 0>,y'Pr.~a~J*4~s'P''',pIl1,J'Fajttl REUESTFORADDITIONAL INFOIQfATION uestion1ST.LUCIE1AUXILIARY FEEDWATER (AFWAUTOMATIC INITIATION AND'FLOWINDICATION Pleaseprovidethefollowing drawings:
Duringextendedshutdownperiodsorrefueling,thesemeasurementchannelsarecheckedandwherepossiblecalibratedagainstknownstandards.2)BistableTestTestingofthebistableisaccomplishedbymanuallyvaryingtheinputsignaluptoordowntothetripsetpointlevelononebistableatatimeandobservingthetripaction.Varyingtheinputsignalisaccomplishedbymeansofatriptestcircuitconsistipgofadigita1voltmeterandatestcircuitusedtovarythemagnitudeofthesignalsuppliedbythemeasurementchanneltothetripinput.Thetriptestcircuitisinterlockedelectricallysothatitcanbeusedinonlyonechannelatatime.Aswitchisprovidedtoselectthe.measurementchannel,andapush-buttonisprovidedtoapplythetestsignal.Thedigitalvoltmeterindicatesthevalueofthetestsignal.Tripaction(deenergizing)ofeachofthebistablerelaysisindicatedbyindividual1ightsonthefrontofthecabinet,indicatingthattheserelaysoperateasrequiredforabistabletripcondition.WhenoneofthebistablesoftheAFASisinthetrippedcondition,achanneltripexistsandisannunciated.Inthiscondition,auxiliaryfeedwouldtakeplaceonlyuponreceiptofaAFAS1orAFAS2tripsigna1inoneoftheotherliketripchannels.TheAFAS1orAFAS2tripchannelundertestisthereforebypassedforthistest.Fu11protectionismaintained.3)LoicMatrixTestThetestiscarriedouttoverifyproperoperationofthesix1ogicmatrices,anyofwhichcaninitiateasystemactuation.Onlythematrixrelaysinoneofthesixlogicmatricescanbeheldintheenergizedpositionduringtests.If,forexample,theAB1ogicmatrixholdpushbuttonisdepressed,actuationoftheothermatrixholdpush-buttonscanhavenoeffectupontheirrespectivelogicmatrices.Actuationofthepushbutton,appliesatestvoltagetothetestsystemholdcoilsoftheselecteddoublecoilmatrixrelays.Thisvoltageprovidesthepowernecessarytoholdtherelaysintheirenergizedpositionwhendeactuationofthebistablerelaycontactsinthematrixladderbeingtestedcausesdeenergizationoftheprimarymatrixrelaycoils.Thelogicmatrixtobe.testedisselectedusingtheSystemSelectswitch.WhileholdingthematrixHoldpushbuttoninitsactuatedposition,rotationoftheSystemSelectswitchreleasesonlythosebistablerelaysthathaveoperatingcontactsinthelogicmatrixundertest.TheSystemSelectswitchappliesatestvoltageofoppositepolaritytothebistablerelaytestcoils,sothatthemagneticfluxgeneratedbythesecoilsopposesthatoftheprimarycoiloftherelay.Theresultingfluxwillbezero,andtherelayswillrelease.AsimplifieddiagramofthistestingsystemisshownonC-EdrawingE-00000-411-803,(attached).TripactioncanbeobservedbyilluminationofthebistablerelayindicatorslocatedonthefrontpaneloftheAFAScabinetandbylossofvoltageto thefourmatrixrelays,whichisindicatedbyextinguishingindicatorlightsconnectedacrosseachmatrixrelaycoil.Duringthistest,thematrixrelay"hold"lightsremainon,indicatingthatatestvoltagehasbeenappliedtotheholdingcoilsofthematrixrelaysofthelogicmatrixmoduleundertest.Thetestisrepeatedforallsixmatrices.Thistestverifiesthatthe'bistablerelaycontactsoperatecorrectlyandthatthelogicmatrixrelayswilldeenergizeifthematrixcontinuityisviolated.Theopeningofthematrixrelaycontactistestedintheinitiationcircuittest.4)InitiationCircuitTestEachinitiationcircuitistestedindividuallybydepressingamatrixHoldpushbutton(holdingmatrixrelays),selectingeithersystempositionontheSystemSelectswitch(openingthematrix),andselectingamatrixrelayontheMatrixRelaySelectSwitch(deenergizingoneofthematrixrelays).Thiscausesone,andonlyone,oftheinitiationcircuitstodeenergize,causingonecurrentlegoftheselectivetwo-out,-of-fourineachchanneltoopen.LossofcurrentthroughthislegisindicatedontheAFAScabinet.TheMatrixRelaySelectSwitchisturnedtothenextposition,reenergizingthetestedmatrixrelay,allowingtheinitiationcircuittoxeenergize.Thissequenceisrepeatedfortheremainingthreeinitiationcircuitsfromtheselectedmatrix.Followingthis,theentiresequenceisrepeatedfortheremainingfivematrices.5)ActuationTestProperoperationoftheAFASrelaysintheAFASCabinet,isverifiedbydeenergizingtherelaysoneatatimeviaatestrelaycontactandnotingtheproperoperationofallactuatedcomponentsinthattripfunction(ASAS-1orAFAS-2).Therelaywillautomaticallyreenergizeandreturnitscomponentstothepretestconditionwhenthetestpushbuttonisreleased.Thedesignofthetestsystemisatatime.Thetestswitchmust(AFAS1orAFAS2)tobetested,impossible.ThetestcircuitisofaparticularAFASfunction.suchthatonlyonerelaymaybedeenergizedbepositionedtothefunctionrelaysselectionofmorethanonefunctioniselectricallylockedoutuponactuationTestingofsegments2thru5oftheAFASshouldbeaccomplishedatintervalssimilartotheRPS.uestion6AddressthephysicalseparationprovidedbetweentheredundantAFWautomaticinitiationinstrumentchannels.
a)DetailedP&XD(PipingandInstrumentation Diagram)oftheSt.Lucie1auxiliary feedwater system(AFWS).b)Electrical schematics,,
Resonse6TheAFAScabinetisdividedintofrontandbackcompartmentsseparatedbyamechanicalbarrieratthe30"depthpoint.Additionalthermalandmechanicalbarriersinthehorizontalandvertica1planesatthecabinetcenterlinedividethecabinetintoeightseparatecompartments.Thefrontfourcompartmentscontaintheinitiationcircuitry(bistables,logic,andtestcircuitry)forchannelsA,B,CandDrespectivelyaswe11astheinterchannelisolationdevicestoanother.Accesstoeachfrontcompartmentiscontrolledbyaseparatetransparentdoorwithakeyswitch.M>erecablesofonecompartmentmustpassthroughtoanotheranenclosedcableduct(qualifiedasafirebarrier)isutilized.'ThefourrearcompartmentscontaintheactuationcircuitryanddevicesthatarerequiiedforcontroloftheAFASSystem.Hachcompartmenthasaseparatedoorforaccess.Mhereexistingplantinstrumentationsignals(e.g.,SteamGenerator'levelandpressure)aretobeusedbytheAFASinitiationsystem,theextensionofthese1oopstotheAFAScabinetwillbeinstalledwithappropriateseparationconsistentwiththeexisting1oopinstallations.Newdedicatedinstrumentationsignals(e.g.,Feedwaterheaderpressure)willbeinstalledwithseparationconsistentwithexistingplantseparationcriteria.Systemoutputsandoperatorinterfacedevices(switches)willalsobeinstalledinaccordancewithexistingplantseparationcriteria.uestion7DescribetheauxiliaryfeedwaterflowindicationinstrumentationattheSt.Lucieplant.Thisdescriptionshouldinclude:a.Typeandnumberofflowchannels.b.Thespecificsource(vitalbus)fromwhichthesechannelsarepowered.c.Capabilityfortestingandcalibrationincludingtheintervalbetweentests.d.Thetypeofindicationavailableinthecontrolroomforeachchannel(indicator,recorder,etc.)e.Safetygradequalificationoftheflowchannels.f.Accuracyoftheflowchannels.a.St.Lucie1hasthreeauxiliaryfeedwaterpumps.Eachpumpwithitsassociatedflowpathcontrolsandinstrumentationrepresentsseparatechannel.HeaderdischargeflowforeachchannelisindicatedonReactor-Turbine-GeneratorBoard(RTGB)andrecordedonPostAccidentPanelsAandB(PAP).ThechannelsaredesignatedasXA,XB,XAB(importantA,BorAB).Eachchannelrunsinseparatetraysystem.
andlogicdiagramsfortheAFWSinitiation andannunciation
b.Eachflowinstrumentationchannelispoweredfromsafetyrelatedsource.ChannelIAispoweredfromvitalbusSA,channelIBfromSBandchannelXA3fromSAB.VitalbusSA,SBtakespowerfromoffsitesourceandisbacked-upbyEmergencyDieselGenerator.VitalbusSABtakespowereitherfxomvitalbusSAorSB.c.Onepointpressurecheckisconductedonceamonthandresponseoftheinstrumentsisobserved.Instrumentsarecalibratedduringeachscheduledrefuelingoutage.Scheduled.outagesoccuratintervalsoftwelvetoeighteenmonths.Allinstrumentsintheloop;,arealsoxecalibratedeverytimethereisamalfunctionoraproblemintheloop.d.OneflowindicatorpereachchannelismountedonRTGB.AlsoeachchannelhasflowrecordermountedofPAP.ChannelIAandXABaremountedonPAP"A"andChannelMismountedonPAP".B";e.Flowinstrumentationchannelsareseismicallyqualified.ThisincludestransmittersaswellasequipmentmountedonRTGBandPAP.FlowinstrumentationequipmentmountedonRTGBorPAPislocatedonnon-safetyportionoftheboard.Thereisnotracabilityofmaterialsfoxauxiliaryfeedwaterflowinstrumentation.f~Flowtransmittersaccuracyis.5%atambienttemperatures.Accuracyofeachcomponentintheloopexceptprecisionresistorsis.5%.Accuracyofprecisionresistoris0.01%.Thecomponentoftheloopwhichhasaccuracyhigherthan0.5%isrejected.Overallaccuracyofeachflowloopistypically0.7%.uestion8DescribethesteamgeneratorlevelinstrumentationattheSt.Lucieplant.Thisdescriptionshouldinclude:a.Typeandnumberoflevelchannelspexsteamgeneratorincludingtherangefoxeachchannel.b.Thespecificsource(vitalbus)fromwhicheachofthesechannelsispowered.c.Capabilityfortestingandcalibrationincludingtheintervalbetweentests.d.Thespecificindicationavailableinthecontrolroomforeachchannel(indicator,recorder,etc.).Resonse8SteamGenexatorLevelInstrumentationisusedtoeffectreactortrip,automaticallyinitiateAuxiliaryFeedwatexSystemtotheintactsteamgeneratorandtomonitorsteamgeneratorlevelduringthecourseofanaccident.Steamgeneratorlevelinstrumentationisclassifiedintosafety relatedandnon-safetyinstrumentation.a.Thesafetyrelatedinstrumentationisdividedintofoursafetyrelatedprotectivechannels.Thechannelsaredesignated>fA,MB,MCandMD.Eachsteamgeneratorhasfourleveltransmittersrepresentingfourprotectivechannels.Protectivechannelsarenarrowrangetypeandareprimarilyusedtoinitiatereactortripandinitiateauxiliaryfeedwatertotheintactsteamgenerator.Lowsteamgeneratorlevelsignalwilltxipthexeactorwhenmeasuredsteamgeneratorlevelfallstoalowpresetva1iie.Thelogicissuchthatthecoincidenceoftwooutoffourlowlevelsignalsineithersteamgeneratorwilleffectreactortrip.ThesameleveltransmitterswhichtxipthereactorprovideaninputtoAuxiliaryFeedwaterInitiationSystem.Thelogicissuchthatthecoincidenceoftwooutoffourlowlevelsignalsineithersteamgeneratorwillinitiateauxiliaryfeedwaterflowtotheintactsteamgenerator.AllcomponentsofprotectivechannelsareClasslE.Eachprotectivechannelisindependentandseparatefromeachother.Cablesofthesamemeasuredparameterxuninseparateconduitortraysystem.InstrumentationofthesameprotectivechannelmountedonRTGBorPAPisisolatedfromotherchannelsandnon-safetyequipmentbyfireproofbarrier.Transmitterrangesforprotectivechannelsareasfollows:SG~TaNo.TransmRane1112222LT-9013ALT-9013BLT-9013CLT-9013DLT-9023ALT-9023BLT-9023CLT-9023D0-131.8"MC0-132.1"MC0-1318"MC0-131.7"MC0-131.7"MC0-131.8"MC0-131.8"MC0-131.8"MCInadditiontofourprotectivechannelseachsteamgeneratorisequippedwithonewiderangenon-safetychannelforindicationandrecording.ThesetransmittersareSeismicClassl.Transmitterrangesfoxwiderangetransmittersareasfollows:~TaNo.~RaaeLT-9012LT-9022483.8"QC-21.2"MC482.6"MC-20.1"MCThirdgroupofSGleveltransmittersarepartofFeedwaterRegulatingSystem.Twonon-safetySeismicClass1transmittersaxeprovidedforeachSG.ThesenarrowrangetransmittersprovideinputtothefeedwaterregulatingsystemsanddriveindicatingcontrollersandrecordersmountedonRTGB.
: circuits, andAFWpumpandvalvecontrolcircuits.
Thesetransmitterrangesareasfollows:SG~TaNo.~Rane212LT-9005LT-9006LT-9011LT-902161.2"WC63.7"WC1934"WC198.7"WC-192.9"WC-195.5"WC61.6"WC61.7"WCb.Eachprotectivechannelispoweredfrom120VACclass1Euninterxuptib16,''=powersupplyofthesamechannel.PowersuppliesofchannelsMAandHCarepoweredfromBatteryAwhilechannelHBandMDaxepoweredfromBatteryB.Eachchannelispoweredthroughaninverter.Powersupplyofthesamechannelisisolatedfxomnon-safetyandsafetyrelatedequipmentofanotherchannel.c.Safetyxelatedinstrumentationiscalibratedduring:1-Sh'utd6wn2-Scheduledrefuelingoutage3-Whenmalfunctionorapxoblemoccursintheloop.Eachscheduledoutageoccursattimeintervalsoftwelvetoeighteenmonths.Asmentionedearlieraccuracyofeachcomponentintheloopexceptprecisionresistoris0.5%.Precisionresistoraccuracyis.01%.Componentisrejectedifitsaccuracyexceeds.5%duringcalibration.OverallaccuracyofeachSGsafetyrelatedinstrumentationloopistypically...7%.,Similarilycalibrationandaccuracyrequirementswillalsoapplytonon-safetyinstrumentation.Overallaccuracywillvaryslightlydependinghowmanycomponentsaxeintheloop.Typicallythereaxebetweenfouroxfivecomponentsinthe1oop.OverallaccuracyiscomputedusingSquareRootoftheSumoftheSquaxes(SRSS)method.d.FornarrowrangesafetyrelatedinstrumentationfourchannelsofindicatingcontrollersperSGaxemountedonRTGB(totalof8).AlsochannelIfA,foxSG1andSG2isrecordedonPAPA.Foxnon-safetywiderangelevelinstrumentationoneindicatorpera"".-SGislocatedonRTGBandHSCP.Onetwo-penrecordermountedonPA'P,recordschannelHAofSGlandSG2level.Fornon-safetynarrowrangeSGlevelinstrumentationusedforFeedwaterRegulatingSystemsonelevelindicatingcontrollerperSGisprovidedonRTGB.Alsoonetwo-penxecorderforrecordingSG1andSG2levelislocatedonPAP)att}}
c)Electrical schematics forthevalvesinthesteamsupplylinetotheturbinedrivenAFWpump.Resonse1Thedrawingsrequested bythestaffthatareattachedtothisletterarepreliminary.
Thefinalized dxawingsalongwiththeinformation thatisnotyetavailable willbesenttoyouwhenthedesignisfinalized.
DrawingsNumbersareasfollows:a)EbascoDwgNo.8770-G-080 b)Combustion Engineering DwgNo.E-00000-41l-801 Rev01,AFASSimplified Functional DiagramE-00000-411-803 RevOl,AFASTestingSystemDiagramE-00000-411-'04 Rev01,AFASMiscellaneous DiagramSchematics>
foractuatedcomponents withchangesforAuxFeedwatex Automatic Initiation System(CE)notavailable asofyet.c)Notavailable asofyet.uestion2AssumingalossofpowertotheAB-DCtiebus("A"batteryfailure),
describethemanualactionsrequiredtotransferthisbustothe"B"battery-including thetimerequiredtomakethistransfer.
Resonse2Sincethe"AB"busisnormallyalignedtothe"B"batteryatSt.LuiceUnit1,theprocedure totransferthe"AB"busfromthe"B"batterytothe"A"batterywillbedescxibed.
Theonlydifference totransferthe"AB"busfromthe"A"batterytothe"B"batterywouldbeachangeinthebreakernumbers.1.Checkthe1Achargeronthe1A125VDCbus,thelBchargeronthelB125VDCbus,andtheABchargeri.sinHotStandby.
2.CloseBreaker60317("AB"BatteryChargerOutput).3.OpenBreaker60316,tieto125VDCbus1Bon125VDCbus1ABfromthecontrolroom.OpenBreaker60230,tieto125VDCbus1ABon125VDCbus1Bfromthecontrolroom.5.CloseBreaker60130,tieto125VDCbuslABon125VDCbus1Afromthe'controlroom.6.CloseBreaker60315,tieto125VDCbus1Aon125VDCbus1ABfromthecontxolroom.Thetimerequiredtocarryoutthisprocedure isapproximately two'togiyeminutes.uestion3ByFloridaPowerandLight(FP&L)letterdatedJanuary2,198l(L-81-4),,
Enclosure 2,itisstatedthat"TheASSwillautomatically terminate auxiliary feedwater flowtoafaultedsteamgenerator andautomatically provideauxiliary feedwater flowtotheintactsteamgenerator."
Provideadetaileddescription ofthisfeature(i.e.,automatic termination ofAFWtothefaultedsteamgenerator) including logicandschematic electrical diagrams.
Resonse3Theauxiliary feedwater actuation systemautomatically initiates auxiliary feedwater totheintactsteamgenerator upondemandandterminates orpreventsauxiliary feedwater tothesteamgenerator identified asbeingruptured.
TheAPASisafourchannelIEsystemthatprovidesseparatefeedwater initiation signalsforeachsteamgenerator (identified asAFAS-1andAPAS-2).Bothsignalsareprovidedineachchanneltointerface withtheindividual components (pumps,valves).Thelogicwhichisusedwithineachchanneltodefinefeedwater initiation ortermination isshowninfigure1.AFASisinitiated withineachchanneluponreceiptofalowS.G.waterlevelsignalprovidedthesteamgenerator orassociated feedwater headerisnotidentified asbeingruptured.
Arupturesignalisgenerated uponthefollowing condi.tions:
S.G.pressureisapproximately 100psibelowtheotherS.G.;orFeedwater supplyheaderpressureisapproximately 100psibelowtheotherfeedwater supplyheaderpressure; andItsassociated S.G.isidentified ashavingalowwaterlevel,andTheotherS.G.orfeedwater headerisnotidentified asbeingruptured.
Thelogicdiscussed aboveproducesadigital(on/off)signa1withineachchannelforAPAS1and2.Thesesignalsarecombinedacrossthefourchannelstoformatwo-out-of fourlogic.ThislogicproducesanAFAS1or2actuation signalwithineachchanneltocontrolthepumpsorvalvesassociated withthat.signal.Therefore, initiation ofAPAS1or2willcausethefinalAFASactuation relaystodeenergize therebyenergizing lt I'rV;II'igurc 1hl'ASLO(~ICIFIYII2I'SG1P1(P2PSG2,I,)fP2(P1P1~iP2LSG1LSG2P2<P1+f+]ORLOV(EVEI.LO'LYLEVEIOR)()I<07NOTnflDII~ti2/4~Off'JCMnfiUAL~OBf~l,$2/ilCOlfJCMANUALOllABBREVIATIONS P.PRESSURELLEVELSGSTEAI"IGENERATOR F'tYIIFEED'VIATER HEAQFRAFASAUXILIARY
~FEEDS'IATER ACTUATION SYSTI:iiAFAS1AFAS2',~~'l~\~~~t'I theassociated pumpsandvalvestoprovidefeedwater to-thhappropriate S.G.ShouldtheS.G.beidentified asbeingruptured, theAFASactuation relayswouldreenergize (exceptpumpactuation relays)andclosetheassociated valves.Forfurtherdetailoftheabovepxoject,seeCEdrawingE-00000-411-801 (attached).
uestion4Arethereanyoperating bypassesassociated withtheAFWautomatic initiation logic/circuitry duringstart-uporoperation ofthereactor?Ifso,howarethesebypassesremoved(automatically, procedurally, etc)?~Resense4TheAFAScontainstwotypesofbypasses, 1)txipchannelbypassand2)batteryfailurebypass.Thetripchannelbypassisprovidedforperiodictestingofthesystemandtoremoveachannelfromsezviceduetoacomponent failure.Thisbypassismanuallyinitiated andmanuallyremoved.2)Thebatteryfailurebypassisanautomatic bypassinitiated uponlossofbatterypower.ThebypasseffectsonlychannelsAandB.LossofbatteryAwillautomatically bypasschannelAonlyandsimilarly lossofbatteryBwillautomaticaliy bypasschannelBonly.Individual manualbypassswi.tches willbeprovidedonafunctiona1 level(AFAS1andAFAS2)whichwillpreventtheindividual automatic actuation outputsfromoperating APWsystemcomponents (i.e.APAS1Abypass(S.G.1A,channelA),AFAS2B(bypass(S.G.1B,channelB)etc.).Acontrolroomannunciator willbeactuatedwhenanyoftheavailable bypassswitchesisputinthebypassposition.
Thesebypasseswillberemovedmanuallyunderthedizection ofwrittenprocedures.
uestion5Discussthecapability fortestingandcalibration oftheAPWautomatic initiation channelsincluding intervals betweentests.Resonse5Testingoftheauxiliary feedwatez actuation systemisaccomplished infivesegments:
1)SensorTest2)BistableTest3)LogicMatrixTest4)Initiation CircuitTest5)Actuation TestEachtestisdiscussed below:1)SensorTestDuringxeactoroperation, themeasurement channelsproviding aninputtotheAFASazecheckedbycomparing theoutputsofsimilarchannelsandcross-checking withrelatedmeasurements.
Duringextendedshutdownperiodsorrefueling, thesemeasurement channelsarecheckedandwherepossiblecalibrated againstknownstandards.
2)BistableTestTestingofthebistableisaccomplished bymanuallyvaryingtheinputsignaluptoordowntothetripsetpointlevelononebistableatatimeandobserving thetripaction.Varyingtheinputsignalisaccomplished bymeansofatriptestcircuitconsistipg ofadigita1voltmeter andatestcircuitusedtovarythemagnitude ofthesignalsuppliedbythemeasurement channeltothetripinput.Thetriptestcircuitisinterlocked electrically sothatitcanbeusedinonlyonechannelatatime.Aswitchisprovidedtoselectthe.measurement channel,andapush-button isprovidedtoapplythetestsignal.Thedigitalvoltmeter indicates thevalueofthetestsignal.Tripaction(deenergizing) ofeachofthebistablerelaysisindicated byindividual 1ightsonthefrontofthecabinet,indicating thattheserelaysoperateasrequiredforabistabletripcondition.
Whenoneofthebistables oftheAFASisinthetrippedcondition, achanneltripexistsandisannunciated.
Inthiscondition, auxiliary feedwouldtakeplaceonlyuponreceiptofaAFAS1orAFAS2tripsigna1inoneoftheotherliketripchannels.
TheAFAS1orAFAS2tripchannelundertestistherefore bypassedforthistest.Fu11protection ismaintained.
3)LoicMatrixTestThetestiscarriedouttoverifyproperoperation ofthesix1ogicmatrices, anyofwhichcaninitiateasystemactuation.
Onlythematrixrelaysinoneofthesixlogicmatricescanbeheldintheenergized positionduringtests.If,forexample,theAB1ogicmatrixholdpushbutton isdepressed, actuation oftheothermatrixholdpush-buttonscanhavenoeffectupontheirrespective logicmatrices.
Actuation ofthepushbutton, appliesatestvoltagetothetestsystemholdcoilsoftheselecteddoublecoilmatrixrelays.Thisvoltageprovidesthepowernecessary toholdtherelaysintheirenergized positionwhendeactuation ofthebistablerelaycontactsinthematrixladderbeingtestedcausesdeenergization oftheprimarymatrixrelaycoils.Thelogicmatrixtobe.testedisselectedusingtheSystemSelectswitch.WhileholdingthematrixHoldpushbutton initsactuatedposition, rotationoftheSystemSelectswitchreleasesonlythosebistablerelaysthathaveoperating contactsinthelogicmatrixundertest.TheSystemSelectswitchappliesatestvoltageofoppositepolaritytothebistablerelaytestcoils,sothatthemagneticfluxgenerated bythesecoilsopposesthatoftheprimarycoiloftherelay.Theresulting fluxwillbezero,andtherelayswillrelease.Asimplified diagramofthistestingsystemisshownonC-EdrawingE-00000-411-803, (attached).
Tripactioncanbeobservedbyillumination ofthebistablerelayindicators locatedonthefrontpaneloftheAFAScabinetandbylossofvoltageto thefourmatrixrelays,whichisindicated byextinguishing indicator lightsconnected acrosseachmatrixrelaycoil.Duringthistest,thematrixrelay"hold"lightsremainon,indicating thatatestvoltagehasbeenappliedtotheholdingcoilsofthematrixrelaysofthelogicmatrixmoduleundertest.Thetestisrepeatedforallsixmatrices.
Thistestverifiesthatthe'bistable relaycontactsoperatecorrectly andthatthelogicmatrixrelayswilldeenergize ifthematrixcontinuity isviolated.
Theopeningofthematrixrelaycontactistestedintheinitiation circuittest.4)Initiation CircuitTestEachinitiation circuitistestedindividually bydepressing amatrixHoldpushbutton (holdingmatrixrelays),selecting eithersystempositionontheSystemSelectswitch(openingthematrix),andselecting amatrixrelayontheMatrixRelaySelectSwitch(deenergizing oneofthematrixrelays).Thiscausesone,andonlyone,oftheinitiation circuitstodeenergize, causingonecurrentlegoftheselective two-out,-of-four ineachchanneltoopen.Lossofcurrentthroughthislegisindicated ontheAFAScabinet.TheMatrixRelaySelectSwitchisturnedtothenextposition, reenergizing thetestedmatrixrelay,allowingtheinitiation circuittoxeenergize.
Thissequenceisrepeatedfortheremaining threeinitiation circuitsfromtheselectedmatrix.Following this,theentiresequenceisrepeatedfortheremaining fivematrices.
5)Actuation TestProperoperation oftheAFASrelaysintheAFASCabinet,isverifiedbydeenergizing therelaysoneatatimeviaatestrelaycontactandnotingtheproperoperation ofallactuatedcomponents inthattripfunction(ASAS-1orAFAS-2).Therelaywillautomatically reenergize andreturnitscomponents tothepretestcondition whenthetestpushbutton isreleased.
Thedesignofthetestsystemisatatime.Thetestswitchmust(AFAS1orAFAS2)tobetested,impossible.
Thetestcircuitisofaparticular AFASfunction.
suchthatonlyonerelaymaybedeenergized bepositioned tothefunctionrelaysselection ofmorethanonefunctioniselectrically lockedoutuponactuation Testingofsegments2thru5oftheAFASshouldbeaccomplished atintervals similartotheRPS.uestion6Addressthephysicalseparation providedbetweentheredundant AFWautomatic initiation instrument channels.
Resonse6TheAFAScabinetisdividedintofrontandbackcompartments separated byamechanical barrieratthe30"depthpoint.Additional thermalandmechanical barriersinthehorizontal andvertica1planesatthecabinetcenterline dividethecabinetintoeightseparatecompartments.
Thefrontfourcompartments containtheinitiation circuitry (bistables, logic,andtestcircuitry) forchannelsA,B,CandDrespectively aswe11astheinterchannel isolation devicestoanother.Accesstoeachfrontcompartment iscontrolled byaseparatetransparent doorwithakeyswitch.M>erecablesofonecompartment mustpassthroughtoanotheranenclosedcableduct(qualified asafirebarrier)isutilized.
'Thefourrearcompartments containtheactuation circuitry anddevicesthatarerequiiedforcontroloftheAFASSystem.Hachcompartment hasaseparatedoorforaccess.Mhereexistingplantinstrumentation signals(e.g.,SteamGenerator
'levelandpressure) aretobeusedbytheAFASinitiation system,theextension ofthese1oopstotheAFAScabinetwillbeinstalled withappropriate separation consistent withtheexisting1oopinstallations.
Newdedicated instrumentation signals(e.g.,Feedwater headerpressure) willbeinstalled withseparation consistent withexistingplantseparation criteria.
Systemoutputsandoperatorinterface devices(switches) willalsobeinstalled inaccordance withexistingplantseparation criteria.
uestion7Describetheauxiliary feedwater flowindication instrumentation attheSt.Lucieplant.Thisdescription shouldinclude:a.Typeandnumberofflowchannels.
b.Thespecificsource(vitalbus)fromwhichthesechannelsarepowered.c.Capability fortestingandcalibration including theintervalbetweentests.d.Thetypeofindication available inthecontrolroomforeachchannel(indicator,
: recorder, etc.)e.Safetygradequalification oftheflowchannels.
f.Accuracyoftheflowchannels.
a.St.Lucie1hasthreeauxiliary feedwater pumps.Eachpumpwithitsassociated flowpathcontrolsandinstrumentation represents separatechannel.Headerdischarge flowforeachchannelisindicated onReactor-Turbine-Generator Board(RTGB)andrecordedonPostAccidentPanelsAandB(PAP).Thechannelsaredesignated asXA,XB,XAB(important A,BorAB).Eachchannelrunsinseparatetraysystem.
b.Eachflowinstrumentation channelispoweredfromsafetyrelatedsource.ChannelIAispoweredfromvitalbusSA,channelIBfromSBandchannelXA3fromSAB.VitalbusSA,SBtakespowerfromoffsitesourceandisbacked-up byEmergency DieselGenerator.
VitalbusSABtakespowereitherfxomvitalbusSAorSB.c.Onepointpressurecheckisconducted onceamonthandresponseoftheinstruments isobserved.
Instruments arecalibrated duringeachscheduled refueling outage.Scheduled
.outagesoccuratintervals oftwelvetoeighteenmonths.Allinstruments intheloop;,are alsoxecalibrated everytimethereisamalfunction oraproblemintheloop.d.Oneflowindicator pereachchannelismountedonRTGB.AlsoeachchannelhasflowrecordermountedofPAP.ChannelIAandXABaremountedonPAP"A"andChannelMismountedonPAP".B";e.Flowinstrumentation channelsareseismically qualified.
Thisincludestransmitters aswellasequipment mountedonRTGBandPAP.Flowinstrumentation equipment mountedonRTGBorPAPislocatedonnon-safetyportionoftheboard.Thereisnotracability ofmaterials foxauxiliary feedwater flowinstrumentation.
f~Flowtransmitters accuracyis.5%atambienttemperatures.
Accuracyofeachcomponent intheloopexceptprecision resistors is.5%.Accuracyofprecision resistoris0.01%.Thecomponent oftheloopwhichhasaccuracyhigherthan0.5%isrejected.
Overallaccuracyofeachflowloopistypically 0.7%.uestion8Describethesteamgenerator levelinstrumentation attheSt.Lucieplant.Thisdescription shouldinclude:a.Typeandnumberoflevelchannelspexsteamgenerator including therangefoxeachchannel.b.Thespecificsource(vitalbus)fromwhicheachofthesechannelsispowered.c.Capability fortestingandcalibration including theintervalbetweentests.d.Thespecificindication available inthecontrolroomforeachchannel(indicator,
: recorder, etc.).Resonse8SteamGenexator LevelInstrumentation isusedtoeffectreactortrip,automatically initiateAuxiliary Feedwatex Systemtotheintactsteamgenerator andtomonitorsteamgenerator levelduringthecourseofanaccident.
Steamgenerator levelinstrumentation isclassified intosafety relatedandnon-safety instrumentation.
a.Thesafetyrelatedinstrumentation isdividedintofoursafetyrelatedprotective channels.
Thechannelsaredesignated
>fA,MB,MCandMD.Eachsteamgenerator hasfourleveltransmitters representing fourprotective channels.
Protective channelsarenarrowrangetypeandareprimarily usedtoinitiatereactortripandinitiateauxiliary feedwater totheintactsteamgenerator.
Lowsteamgenerator levelsignalwilltxipthexeactorwhenmeasuredsteamgenerator levelfallstoalowpresetva1iie.Thelogicissuchthatthecoincidence oftwooutoffourlowlevelsignalsineithersteamgenerator willeffectreactortrip.Thesameleveltransmitters whichtxipthereactorprovideaninputtoAuxiliary Feedwater Initiation System.Thelogicissuchthatthecoincidence oftwooutoffourlowlevelsignalsineithersteamgenerator willinitiateauxiliary feedwater flowtotheintactsteamgenerator.
Allcomponents ofprotective channelsareClasslE.Eachprotective channelisindependent andseparatefromeachother.Cablesofthesamemeasuredparameter xuninseparateconduitortraysystem.Instrumentation ofthesameprotective channelmountedonRTGBorPAPisisolatedfromotherchannelsandnon-safety equipment byfireproof barrier.Transmitter rangesforprotective channelsareasfollows:SG~TaNo.TransmRane1112222LT-9013ALT-9013BLT-9013CLT-9013DLT-9023ALT-9023BLT-9023CLT-9023D0-131.8"MC0-132.1"MC0-1318"MC0-131.7"MC0-131.7"MC0-131.8"MC0-131.8"MC0-131.8"MCInadditiontofourprotective channelseachsteamgenerator isequippedwithonewiderangenon-safety channelforindication andrecording.
Thesetransmitters areSeismicClassl.Transmitter rangesfoxwiderangetransmitters areasfollows:~TaNo.~RaaeLT-9012LT-9022483.8"QC-21.2"MC482.6"MC-20.1"MCThirdgroupofSGleveltransmitters arepartofFeedwater Regulating System.Twonon-safety SeismicClass1transmitters axeprovidedforeachSG.Thesenarrowrangetransmitters provideinputtothefeedwater regulating systemsanddriveindicating controllers andrecorders mountedonRTGB.
Thesetransmitter rangesareasfollows:SG~TaNo.~Rane212LT-9005LT-9006LT-9011LT-902161.2"WC63.7"WC1934"WC198.7"WC-192.9"WC-195.5"WC61.6"WC61.7"WCb.Eachprotective channelispoweredfrom120VACclass1Euninterxuptib16
,''=powersupplyofthesamechannel.PowersuppliesofchannelsMAandHCarepoweredfromBatteryAwhilechannelHBandMDaxepoweredfromBatteryB.Eachchannelispoweredthroughaninverter.
Powersupplyofthesamechannelisisolatedfxomnon-safety andsafetyrelatedequipment ofanotherchannel.c.Safetyxelatedinstrumentation iscalibrated during:1-Sh'utd6wn 2-Scheduled refueling outage3-Whenmalfunction orapxoblemoccursintheloop.Eachscheduled outageoccursattimeintervals oftwelvetoeighteenmonths.Asmentioned earlieraccuracyofeachcomponent intheloopexceptprecision resistoris0.5%.Precision resistoraccuracyis.01%.Component isrejectedifitsaccuracyexceeds.5%duringcalibration.
OverallaccuracyofeachSGsafetyrelatedinstrumentation loopistypically
...7%.,Similarily calibration andaccuracyrequirements willalsoapplytonon-safety instrumentation.
Overallaccuracywillvaryslightlydepending howmanycomponents axeintheloop.Typically thereaxebetweenfouroxfivecomponents inthe1oop.OverallaccuracyiscomputedusingSquareRootoftheSumoftheSquaxes(SRSS)method.d.Fornarrowrangesafetyrelatedinstrumentation fourchannelsofindicating controllers perSGaxemountedonRTGB(totalof8).AlsochannelIfA,foxSG1andSG2isrecordedonPAPA.Foxnon-safety widerangelevelinstrumentation oneindicator pera"".-SGislocatedonRTGBandHSCP.Onetwo-penrecordermountedonPA'P,recordschannelHAofSGlandSG2level.Fornon-safety narrowrangeSGlevelinstrumentation usedforFeedwater Regulating Systemsonelevelindicating controller perSGisprovidedonRTGB.Alsoonetwo-penxecorderforrecording SG1andSG2levelislocatedonPAP)att}}

Revision as of 17:55, 29 June 2018

Forwards Responses to NRC 810521 Request for Addl Info Re Auxiliary Feedwater Sys Automatic Initiation & Flow Indication.Four Oversize Drawings Encl.Aperture Cards Are Avaialable in PDR
ML17212A406
Person / Time
Site: Saint Lucie NextEra Energy icon.png
Issue date: 07/20/1981
From: UHRIG R E
FLORIDA POWER & LIGHT CO.
To: CLARK R A
Office of Nuclear Reactor Regulation
Shared Package
ML17212A408 List:
References
L-81-302, NUDOCS 8107280254
Download: ML17212A406 (15)


Text

REGULATORY ORMATIONDISTRIBUTION SYSi(RIDS)ACCESSION NBR!8107280254 DOCDDATE:"

81/07/20NOTARIZED::

NOFACILi:50 335StsLuciePlant~Unit1<.FloridaPower8LightCo~AUTH'AME'UTHOR AFFILIATION UHRIGPR0E~FloridaPower8LightCo~RECIP~NAMElREC'IPIENTAFFILIA'TION CIARKipR~ADOperating, ReactorsBranch3DOCKEiT¹05000335SUBJECTForwardsresponses toNRC810521requestfor.addiinforeIauxiliary feedwateri sysautomatic-initiation Lflowindication;Four oversizedrawingsencl~Aperturecards'ill~

beava.ilable inPDR,DISTRIBUTION CODE1ADOISCOPIESRECEIVED;LTR

'NCLA'IZE::gJTITLE':GeneralDistributionforafterIssuanceofOperatingLicense NOTES:-RECIPIENT ID'ODE/NAMEI ACTION!ORB¹3BC'4INTERNAL'/DIREHUM FAC08ILEi06'ELD11TRAD'ASMTBRCOPIES"LTTRENCLL'3131122101~1RECIPIENT IDCODE'/NAME<<

DIRgDIVOF.LIC.NRC-PDR02BR10G*FILE01COPIESLTTR'NCL<

111=-.10,11EXTERNALt:=

ACRSNSIC0905ie1611LPDRNTIS031111-TOTAL"NUMBER'FCOPIESREQUIRED:

LTTR41ENCL"39 N'1a~1ca1't$IPEtf P.O.BOX529100MIAMI,FL33152Qilljj~FLORIDAPOWER&LIGHTCOMPANYJuly20,1981L-81-302OfficeofNuclearReactorRegulation Attention:

Mr.RobertA.Clark,ChiefOperating ReactorsBranchIIl3DivisionofLicensing U.S.NuclearRegulatory Commission Washington, D.C.20555

DearMr.Clark:

Re:St.LucieUnitglDocketNo.50-335Auxiliary Feedwater SystemAutomatic Initiation andFlowIndication FloridaPower8LighthasreviewedtheNRCletterdatedMay21,1981concerning theabovesubjectandourresponseisattached.

Verytrulyyours,RobertE.UhrigVicePresident AdvancedSystems8Technology REU/PLP/ras cc:Mr.J.P.O'Reilly, RegionIIHaroldF.Reis,Esquireyg,(gQgc,K~giA(8107280254 810720PDRADOCK05000335PPDRPEOPI.E.~.SERVINGPEOPLE 0>,y'Pr.~a~J*4~s'P,pIl1,J'Fajttl REUESTFORADDITIONAL INFOIQfATION uestion1ST.LUCIE1AUXILIARY FEEDWATER (AFWAUTOMATIC INITIATION AND'FLOWINDICATION Pleaseprovidethefollowing drawings:

a)DetailedP&XD(PipingandInstrumentation Diagram)oftheSt.Lucie1auxiliary feedwater system(AFWS).b)Electrical schematics,,

andlogicdiagramsfortheAFWSinitiation andannunciation

circuits, andAFWpumpandvalvecontrolcircuits.

c)Electrical schematics forthevalvesinthesteamsupplylinetotheturbinedrivenAFWpump.Resonse1Thedrawingsrequested bythestaffthatareattachedtothisletterarepreliminary.

Thefinalized dxawingsalongwiththeinformation thatisnotyetavailable willbesenttoyouwhenthedesignisfinalized.

DrawingsNumbersareasfollows:a)EbascoDwgNo.8770-G-080 b)Combustion Engineering DwgNo.E-00000-41l-801 Rev01,AFASSimplified Functional DiagramE-00000-411-803 RevOl,AFASTestingSystemDiagramE-00000-411-'04 Rev01,AFASMiscellaneous DiagramSchematics>

foractuatedcomponents withchangesforAuxFeedwatex Automatic Initiation System(CE)notavailable asofyet.c)Notavailable asofyet.uestion2AssumingalossofpowertotheAB-DCtiebus("A"batteryfailure),

describethemanualactionsrequiredtotransferthisbustothe"B"battery-including thetimerequiredtomakethistransfer.

Resonse2Sincethe"AB"busisnormallyalignedtothe"B"batteryatSt.LuiceUnit1,theprocedure totransferthe"AB"busfromthe"B"batterytothe"A"batterywillbedescxibed.

Theonlydifference totransferthe"AB"busfromthe"A"batterytothe"B"batterywouldbeachangeinthebreakernumbers.1.Checkthe1Achargeronthe1A125VDCbus,thelBchargeronthelB125VDCbus,andtheABchargeri.sinHotStandby.

2.CloseBreaker60317("AB"BatteryChargerOutput).3.OpenBreaker60316,tieto125VDCbus1Bon125VDCbus1ABfromthecontrolroom.OpenBreaker60230,tieto125VDCbus1ABon125VDCbus1Bfromthecontrolroom.5.CloseBreaker60130,tieto125VDCbuslABon125VDCbus1Afromthe'controlroom.6.CloseBreaker60315,tieto125VDCbus1Aon125VDCbus1ABfromthecontxolroom.Thetimerequiredtocarryoutthisprocedure isapproximately two'togiyeminutes.uestion3ByFloridaPowerandLight(FP&L)letterdatedJanuary2,198l(L-81-4),,

Enclosure 2,itisstatedthat"TheASSwillautomatically terminate auxiliary feedwater flowtoafaultedsteamgenerator andautomatically provideauxiliary feedwater flowtotheintactsteamgenerator."

Provideadetaileddescription ofthisfeature(i.e.,automatic termination ofAFWtothefaultedsteamgenerator) including logicandschematic electrical diagrams.

Resonse3Theauxiliary feedwater actuation systemautomatically initiates auxiliary feedwater totheintactsteamgenerator upondemandandterminates orpreventsauxiliary feedwater tothesteamgenerator identified asbeingruptured.

TheAPASisafourchannelIEsystemthatprovidesseparatefeedwater initiation signalsforeachsteamgenerator (identified asAFAS-1andAPAS-2).Bothsignalsareprovidedineachchanneltointerface withtheindividual components (pumps,valves).Thelogicwhichisusedwithineachchanneltodefinefeedwater initiation ortermination isshowninfigure1.AFASisinitiated withineachchanneluponreceiptofalowS.G.waterlevelsignalprovidedthesteamgenerator orassociated feedwater headerisnotidentified asbeingruptured.

Arupturesignalisgenerated uponthefollowing condi.tions:

S.G.pressureisapproximately 100psibelowtheotherS.G.;orFeedwater supplyheaderpressureisapproximately 100psibelowtheotherfeedwater supplyheaderpressure; andItsassociated S.G.isidentified ashavingalowwaterlevel,andTheotherS.G.orfeedwater headerisnotidentified asbeingruptured.

Thelogicdiscussed aboveproducesadigital(on/off)signa1withineachchannelforAPAS1and2.Thesesignalsarecombinedacrossthefourchannelstoformatwo-out-of fourlogic.ThislogicproducesanAFAS1or2actuation signalwithineachchanneltocontrolthepumpsorvalvesassociated withthat.signal.Therefore, initiation ofAPAS1or2willcausethefinalAFASactuation relaystodeenergize therebyenergizing lt I'rV;II'igurc 1hl'ASLO(~ICIFIYII2I'SG1P1(P2PSG2,I,)fP2(P1P1~iP2LSG1LSG2P2<P1+f+]ORLOV(EVEI.LO'LYLEVEIOR)()I<07NOTnflDII~ti2/4~Off'JCMnfiUAL~OBf~l,$2/ilCOlfJCMANUALOllABBREVIATIONS P.PRESSURELLEVELSGSTEAI"IGENERATOR F'tYIIFEED'VIATER HEAQFRAFASAUXILIARY

~FEEDS'IATER ACTUATION SYSTI:iiAFAS1AFAS2',~~'l~\~~~t'I theassociated pumpsandvalvestoprovidefeedwater to-thhappropriate S.G.ShouldtheS.G.beidentified asbeingruptured, theAFASactuation relayswouldreenergize (exceptpumpactuation relays)andclosetheassociated valves.Forfurtherdetailoftheabovepxoject,seeCEdrawingE-00000-411-801 (attached).

uestion4Arethereanyoperating bypassesassociated withtheAFWautomatic initiation logic/circuitry duringstart-uporoperation ofthereactor?Ifso,howarethesebypassesremoved(automatically, procedurally, etc)?~Resense4TheAFAScontainstwotypesofbypasses, 1)txipchannelbypassand2)batteryfailurebypass.Thetripchannelbypassisprovidedforperiodictestingofthesystemandtoremoveachannelfromsezviceduetoacomponent failure.Thisbypassismanuallyinitiated andmanuallyremoved.2)Thebatteryfailurebypassisanautomatic bypassinitiated uponlossofbatterypower.ThebypasseffectsonlychannelsAandB.LossofbatteryAwillautomatically bypasschannelAonlyandsimilarly lossofbatteryBwillautomaticaliy bypasschannelBonly.Individual manualbypassswi.tches willbeprovidedonafunctiona1 level(AFAS1andAFAS2)whichwillpreventtheindividual automatic actuation outputsfromoperating APWsystemcomponents (i.e.APAS1Abypass(S.G.1A,channelA),AFAS2B(bypass(S.G.1B,channelB)etc.).Acontrolroomannunciator willbeactuatedwhenanyoftheavailable bypassswitchesisputinthebypassposition.

Thesebypasseswillberemovedmanuallyunderthedizection ofwrittenprocedures.

uestion5Discussthecapability fortestingandcalibration oftheAPWautomatic initiation channelsincluding intervals betweentests.Resonse5Testingoftheauxiliary feedwatez actuation systemisaccomplished infivesegments:

1)SensorTest2)BistableTest3)LogicMatrixTest4)Initiation CircuitTest5)Actuation TestEachtestisdiscussed below:1)SensorTestDuringxeactoroperation, themeasurement channelsproviding aninputtotheAFASazecheckedbycomparing theoutputsofsimilarchannelsandcross-checking withrelatedmeasurements.

Duringextendedshutdownperiodsorrefueling, thesemeasurement channelsarecheckedandwherepossiblecalibrated againstknownstandards.

2)BistableTestTestingofthebistableisaccomplished bymanuallyvaryingtheinputsignaluptoordowntothetripsetpointlevelononebistableatatimeandobserving thetripaction.Varyingtheinputsignalisaccomplished bymeansofatriptestcircuitconsistipg ofadigita1voltmeter andatestcircuitusedtovarythemagnitude ofthesignalsuppliedbythemeasurement channeltothetripinput.Thetriptestcircuitisinterlocked electrically sothatitcanbeusedinonlyonechannelatatime.Aswitchisprovidedtoselectthe.measurement channel,andapush-button isprovidedtoapplythetestsignal.Thedigitalvoltmeter indicates thevalueofthetestsignal.Tripaction(deenergizing) ofeachofthebistablerelaysisindicated byindividual 1ightsonthefrontofthecabinet,indicating thattheserelaysoperateasrequiredforabistabletripcondition.

Whenoneofthebistables oftheAFASisinthetrippedcondition, achanneltripexistsandisannunciated.

Inthiscondition, auxiliary feedwouldtakeplaceonlyuponreceiptofaAFAS1orAFAS2tripsigna1inoneoftheotherliketripchannels.

TheAFAS1orAFAS2tripchannelundertestistherefore bypassedforthistest.Fu11protection ismaintained.

3)LoicMatrixTestThetestiscarriedouttoverifyproperoperation ofthesix1ogicmatrices, anyofwhichcaninitiateasystemactuation.

Onlythematrixrelaysinoneofthesixlogicmatricescanbeheldintheenergized positionduringtests.If,forexample,theAB1ogicmatrixholdpushbutton isdepressed, actuation oftheothermatrixholdpush-buttonscanhavenoeffectupontheirrespective logicmatrices.

Actuation ofthepushbutton, appliesatestvoltagetothetestsystemholdcoilsoftheselecteddoublecoilmatrixrelays.Thisvoltageprovidesthepowernecessary toholdtherelaysintheirenergized positionwhendeactuation ofthebistablerelaycontactsinthematrixladderbeingtestedcausesdeenergization oftheprimarymatrixrelaycoils.Thelogicmatrixtobe.testedisselectedusingtheSystemSelectswitch.WhileholdingthematrixHoldpushbutton initsactuatedposition, rotationoftheSystemSelectswitchreleasesonlythosebistablerelaysthathaveoperating contactsinthelogicmatrixundertest.TheSystemSelectswitchappliesatestvoltageofoppositepolaritytothebistablerelaytestcoils,sothatthemagneticfluxgenerated bythesecoilsopposesthatoftheprimarycoiloftherelay.Theresulting fluxwillbezero,andtherelayswillrelease.Asimplified diagramofthistestingsystemisshownonC-EdrawingE-00000-411-803, (attached).

Tripactioncanbeobservedbyillumination ofthebistablerelayindicators locatedonthefrontpaneloftheAFAScabinetandbylossofvoltageto thefourmatrixrelays,whichisindicated byextinguishing indicator lightsconnected acrosseachmatrixrelaycoil.Duringthistest,thematrixrelay"hold"lightsremainon,indicating thatatestvoltagehasbeenappliedtotheholdingcoilsofthematrixrelaysofthelogicmatrixmoduleundertest.Thetestisrepeatedforallsixmatrices.

Thistestverifiesthatthe'bistable relaycontactsoperatecorrectly andthatthelogicmatrixrelayswilldeenergize ifthematrixcontinuity isviolated.

Theopeningofthematrixrelaycontactistestedintheinitiation circuittest.4)Initiation CircuitTestEachinitiation circuitistestedindividually bydepressing amatrixHoldpushbutton (holdingmatrixrelays),selecting eithersystempositionontheSystemSelectswitch(openingthematrix),andselecting amatrixrelayontheMatrixRelaySelectSwitch(deenergizing oneofthematrixrelays).Thiscausesone,andonlyone,oftheinitiation circuitstodeenergize, causingonecurrentlegoftheselective two-out,-of-four ineachchanneltoopen.Lossofcurrentthroughthislegisindicated ontheAFAScabinet.TheMatrixRelaySelectSwitchisturnedtothenextposition, reenergizing thetestedmatrixrelay,allowingtheinitiation circuittoxeenergize.

Thissequenceisrepeatedfortheremaining threeinitiation circuitsfromtheselectedmatrix.Following this,theentiresequenceisrepeatedfortheremaining fivematrices.

5)Actuation TestProperoperation oftheAFASrelaysintheAFASCabinet,isverifiedbydeenergizing therelaysoneatatimeviaatestrelaycontactandnotingtheproperoperation ofallactuatedcomponents inthattripfunction(ASAS-1orAFAS-2).Therelaywillautomatically reenergize andreturnitscomponents tothepretestcondition whenthetestpushbutton isreleased.

Thedesignofthetestsystemisatatime.Thetestswitchmust(AFAS1orAFAS2)tobetested,impossible.

Thetestcircuitisofaparticular AFASfunction.

suchthatonlyonerelaymaybedeenergized bepositioned tothefunctionrelaysselection ofmorethanonefunctioniselectrically lockedoutuponactuation Testingofsegments2thru5oftheAFASshouldbeaccomplished atintervals similartotheRPS.uestion6Addressthephysicalseparation providedbetweentheredundant AFWautomatic initiation instrument channels.

Resonse6TheAFAScabinetisdividedintofrontandbackcompartments separated byamechanical barrieratthe30"depthpoint.Additional thermalandmechanical barriersinthehorizontal andvertica1planesatthecabinetcenterline dividethecabinetintoeightseparatecompartments.

Thefrontfourcompartments containtheinitiation circuitry (bistables, logic,andtestcircuitry) forchannelsA,B,CandDrespectively aswe11astheinterchannel isolation devicestoanother.Accesstoeachfrontcompartment iscontrolled byaseparatetransparent doorwithakeyswitch.M>erecablesofonecompartment mustpassthroughtoanotheranenclosedcableduct(qualified asafirebarrier)isutilized.

'Thefourrearcompartments containtheactuation circuitry anddevicesthatarerequiiedforcontroloftheAFASSystem.Hachcompartment hasaseparatedoorforaccess.Mhereexistingplantinstrumentation signals(e.g.,SteamGenerator

'levelandpressure) aretobeusedbytheAFASinitiation system,theextension ofthese1oopstotheAFAScabinetwillbeinstalled withappropriate separation consistent withtheexisting1oopinstallations.

Newdedicated instrumentation signals(e.g.,Feedwater headerpressure) willbeinstalled withseparation consistent withexistingplantseparation criteria.

Systemoutputsandoperatorinterface devices(switches) willalsobeinstalled inaccordance withexistingplantseparation criteria.

uestion7Describetheauxiliary feedwater flowindication instrumentation attheSt.Lucieplant.Thisdescription shouldinclude:a.Typeandnumberofflowchannels.

b.Thespecificsource(vitalbus)fromwhichthesechannelsarepowered.c.Capability fortestingandcalibration including theintervalbetweentests.d.Thetypeofindication available inthecontrolroomforeachchannel(indicator,

recorder, etc.)e.Safetygradequalification oftheflowchannels.

f.Accuracyoftheflowchannels.

a.St.Lucie1hasthreeauxiliary feedwater pumps.Eachpumpwithitsassociated flowpathcontrolsandinstrumentation represents separatechannel.Headerdischarge flowforeachchannelisindicated onReactor-Turbine-Generator Board(RTGB)andrecordedonPostAccidentPanelsAandB(PAP).Thechannelsaredesignated asXA,XB,XAB(important A,BorAB).Eachchannelrunsinseparatetraysystem.

b.Eachflowinstrumentation channelispoweredfromsafetyrelatedsource.ChannelIAispoweredfromvitalbusSA,channelIBfromSBandchannelXA3fromSAB.VitalbusSA,SBtakespowerfromoffsitesourceandisbacked-up byEmergency DieselGenerator.

VitalbusSABtakespowereitherfxomvitalbusSAorSB.c.Onepointpressurecheckisconducted onceamonthandresponseoftheinstruments isobserved.

Instruments arecalibrated duringeachscheduled refueling outage.Scheduled

.outagesoccuratintervals oftwelvetoeighteenmonths.Allinstruments intheloop;,are alsoxecalibrated everytimethereisamalfunction oraproblemintheloop.d.Oneflowindicator pereachchannelismountedonRTGB.AlsoeachchannelhasflowrecordermountedofPAP.ChannelIAandXABaremountedonPAP"A"andChannelMismountedonPAP".B";e.Flowinstrumentation channelsareseismically qualified.

Thisincludestransmitters aswellasequipment mountedonRTGBandPAP.Flowinstrumentation equipment mountedonRTGBorPAPislocatedonnon-safetyportionoftheboard.Thereisnotracability ofmaterials foxauxiliary feedwater flowinstrumentation.

f~Flowtransmitters accuracyis.5%atambienttemperatures.

Accuracyofeachcomponent intheloopexceptprecision resistors is.5%.Accuracyofprecision resistoris0.01%.Thecomponent oftheloopwhichhasaccuracyhigherthan0.5%isrejected.

Overallaccuracyofeachflowloopistypically 0.7%.uestion8Describethesteamgenerator levelinstrumentation attheSt.Lucieplant.Thisdescription shouldinclude:a.Typeandnumberoflevelchannelspexsteamgenerator including therangefoxeachchannel.b.Thespecificsource(vitalbus)fromwhicheachofthesechannelsispowered.c.Capability fortestingandcalibration including theintervalbetweentests.d.Thespecificindication available inthecontrolroomforeachchannel(indicator,

recorder, etc.).Resonse8SteamGenexator LevelInstrumentation isusedtoeffectreactortrip,automatically initiateAuxiliary Feedwatex Systemtotheintactsteamgenerator andtomonitorsteamgenerator levelduringthecourseofanaccident.

Steamgenerator levelinstrumentation isclassified intosafety relatedandnon-safety instrumentation.

a.Thesafetyrelatedinstrumentation isdividedintofoursafetyrelatedprotective channels.

Thechannelsaredesignated

>fA,MB,MCandMD.Eachsteamgenerator hasfourleveltransmitters representing fourprotective channels.

Protective channelsarenarrowrangetypeandareprimarily usedtoinitiatereactortripandinitiateauxiliary feedwater totheintactsteamgenerator.

Lowsteamgenerator levelsignalwilltxipthexeactorwhenmeasuredsteamgenerator levelfallstoalowpresetva1iie.Thelogicissuchthatthecoincidence oftwooutoffourlowlevelsignalsineithersteamgenerator willeffectreactortrip.Thesameleveltransmitters whichtxipthereactorprovideaninputtoAuxiliary Feedwater Initiation System.Thelogicissuchthatthecoincidence oftwooutoffourlowlevelsignalsineithersteamgenerator willinitiateauxiliary feedwater flowtotheintactsteamgenerator.

Allcomponents ofprotective channelsareClasslE.Eachprotective channelisindependent andseparatefromeachother.Cablesofthesamemeasuredparameter xuninseparateconduitortraysystem.Instrumentation ofthesameprotective channelmountedonRTGBorPAPisisolatedfromotherchannelsandnon-safety equipment byfireproof barrier.Transmitter rangesforprotective channelsareasfollows:SG~TaNo.TransmRane1112222LT-9013ALT-9013BLT-9013CLT-9013DLT-9023ALT-9023BLT-9023CLT-9023D0-131.8"MC0-132.1"MC0-1318"MC0-131.7"MC0-131.7"MC0-131.8"MC0-131.8"MC0-131.8"MCInadditiontofourprotective channelseachsteamgenerator isequippedwithonewiderangenon-safety channelforindication andrecording.

Thesetransmitters areSeismicClassl.Transmitter rangesfoxwiderangetransmitters areasfollows:~TaNo.~RaaeLT-9012LT-9022483.8"QC-21.2"MC482.6"MC-20.1"MCThirdgroupofSGleveltransmitters arepartofFeedwater Regulating System.Twonon-safety SeismicClass1transmitters axeprovidedforeachSG.Thesenarrowrangetransmitters provideinputtothefeedwater regulating systemsanddriveindicating controllers andrecorders mountedonRTGB.

Thesetransmitter rangesareasfollows:SG~TaNo.~Rane212LT-9005LT-9006LT-9011LT-902161.2"WC63.7"WC1934"WC198.7"WC-192.9"WC-195.5"WC61.6"WC61.7"WCb.Eachprotective channelispoweredfrom120VACclass1Euninterxuptib16

,=powersupplyofthesamechannel.PowersuppliesofchannelsMAandHCarepoweredfromBatteryAwhilechannelHBandMDaxepoweredfromBatteryB.Eachchannelispoweredthroughaninverter.

Powersupplyofthesamechannelisisolatedfxomnon-safety andsafetyrelatedequipment ofanotherchannel.c.Safetyxelatedinstrumentation iscalibrated during:1-Sh'utd6wn 2-Scheduled refueling outage3-Whenmalfunction orapxoblemoccursintheloop.Eachscheduled outageoccursattimeintervals oftwelvetoeighteenmonths.Asmentioned earlieraccuracyofeachcomponent intheloopexceptprecision resistoris0.5%.Precision resistoraccuracyis.01%.Component isrejectedifitsaccuracyexceeds.5%duringcalibration.

OverallaccuracyofeachSGsafetyrelatedinstrumentation loopistypically

...7%.,Similarily calibration andaccuracyrequirements willalsoapplytonon-safety instrumentation.

Overallaccuracywillvaryslightlydepending howmanycomponents axeintheloop.Typically thereaxebetweenfouroxfivecomponents inthe1oop.OverallaccuracyiscomputedusingSquareRootoftheSumoftheSquaxes(SRSS)method.d.Fornarrowrangesafetyrelatedinstrumentation fourchannelsofindicating controllers perSGaxemountedonRTGB(totalof8).AlsochannelIfA,foxSG1andSG2isrecordedonPAPA.Foxnon-safety widerangelevelinstrumentation oneindicator pera"".-SGislocatedonRTGBandHSCP.Onetwo-penrecordermountedonPA'P,recordschannelHAofSGlandSG2level.Fornon-safety narrowrangeSGlevelinstrumentation usedforFeedwater Regulating Systemsonelevelindicating controller perSGisprovidedonRTGB.Alsoonetwo-penxecorderforrecording SG1andSG2levelislocatedonPAP)att