ML17331A783: 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 19: Line 19:
{{#Wiki_filter:~~~~~0~I~~~~~~0~~~~~~SIlo~j~~I~0~~~~~~0~~~0~~~~~~l~~~~~~  
{{#Wiki_filter:~~~~~0~I~~~~~~0~~~~~~SIlo~j~~I~0~~~~~~0~~~0~~~~~~l~~~~~~  
~~t~~~tt~~~~t~~~I~~~~t~~~~~~~t~~~~~t~t~~~~~~~t~tI~~~~~t~~~t~~~~~~~~~~~4~~~~~~~~~~~~~~~~~~~~~~~~~~t~~~Il~l~~t~)~I~~~~~~~~~~~at~~~~~t~t~~~~t~t~~~~~~~~t~t~t~~~~~~~It~~t~~~~~~-I~t~t~~t~~~~~t~tt~~~ttt~~t~~t~t~~I~~~~t~t~~t~~tt~~~
~~t~~~tt~~~~t~~~I~~~~t~~~~~~~t~~~~~t~t~~~~~~~t~tI~~~~~t~~~t~~~~~~~~~~~4~~~~~~~~~~~~~~~~~~~~~~~~~~t~~~Il~l~~t~)~I~~~~~~~~~~~at~~~~~t~t~~~~t~t~~~~~~~~t~t~t~~~~~~~It~~t~~~~~~-I~t~t~~t~~~~~t~tt~~~ttt~~t~~t~t~~I~~~~t~t~~t~~tt~~~
REACTORCOOLANTSYSTEMSHUTDOWNLiMITINGCONDITIONFOROPERATiON3.4.1.3a.Atleasttwoo<thecoolantloopslistedbelowshallbeOPERABLE:1.ReactorCoolantLoop1anditsassociatedsteamgeneratorandreactorcoolantpump,*2.ReactorCoolantLoop2anditsassociatedsteamgeneratorandreactorcoolantpump,*3.ReactorCo'olantLoop3anditsassociatedsteamgeneratorandreactorcoolantpump,*4.ReactorCoolantLoop4andi.tsassociatedsteamgeneratorandreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval.-Hest,**b.Atleastoneoftheabovecoolantloopsshallbeinoperation.***APPLICABILITY:MODES4and5ACTION:a.WithlessthantheaboverequiredloopsOPERABLE,immediatelyinitiatecorrectiveactiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible;beinCOLDSHUTDOWNwith-in20hours.b.Withnocoolant'locpin.operation,suspendalloperationsin-volvingareductioninboronconcentrationoftheReactorCool-'nt'ystemandimmediatelyinitiatecorrectiveactiontoreturntherequiredcoolantlooptooperation.+AreactorcoolantpumpshallnotbestartedwithoneormoreoftheRCScoldlegtemperatureslessthanorequalto188oFunless1)thepressurizerwatervolumeislessthan52.00%ofspanor2)thesecondarywatertemperatureofeachsteamgeneratorislessthan50oFaboveeachoftheRCScoldlegtemper-atures.Operabilityofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliaryfeedwatersystem.**ThenormaloremergencypowersourcemaybeinoperableinMODE5.***Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energizedforupto1hourprovided1)nooperationsarepermittedthatwouldcausedilutionofthereactorcoolantsystemboronconcentration,and2)coreout-lettemperatureismaintainedatleast10oFbelowsaturationtemperature.D.C.Cook-Unit13/44-3 REACTORCOOLANTSYSTEMSURYEILLANCEREUIREMENTS4.4.1.3.1Therequiredresidualheatremovalloop(s)shallbedeterminedOPERABLEperSpecification4.0.5.4.4.1.3.2Therequiredreactorcoolantpump(s),ifnotinoperation,shallbedeterminedtobeOPERABLEonceper7daysbyverifyingcorrectbreakeralignmentsandindicatedpoweravailability.4.4.1.3.3Therequiredsteamgenerator(s)shallbedeterminedOPERABLEbyverifyingsecondarysideleveltobegreaterthanorequalto25>ofwiderangeinstrumentspanatleastonceper12hours.4.4.1.3.4Atleastonecoolantloopshallbeverifiedtobeinoperationandcirculatingreactorcoolantatleastonceper12hours.g,lr1~ID.C.COOK-UNIT13/44-3a REFUELINGOPERATIONS3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATIONLIMITINGCONDITIONFOROPERATION3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.APPLICABILITY:MODE6.ACTION:a.Withlessthanoneresidualheatremovalloopinoperation,exceptasprovidedinb.below,suspendalloperationsinvolvinganincreaseinthereactordecayheatloadorareductioninboronconcentrationoftheReactorCoolantSystem.Closeallcontainmentpenetrationsprovidingdirectaccessfromthecontainmentatmospheretotheoutsideatmospherewithin4hours.b.Theresidualheatremovalloopmayberemovedfromoperationforupto1hourper8hourperiodduringtheperformanceofCOREALTERATIONSinthevicinityofthereactorpressurevesselhotlegs.c.TheprovisionsofSpecification3.0..3arenotapplicable.SURVEILLANCEREQUIREi~lENTS4~~4.9.8.1Aresidualheatremovalloopshallbedeterminedtobeinoperationandcirculatingreactorcoolanataflowrateof>3000gpmatleastonceper24hours.D.C.COOK-UNIT13j49-9 REFUELINGOPERATIONSLOWWATERLEVELLIMITINGCONOITIONFOROPERATION3.9.8.2TwoindependentResidualHeatRemoval(RHR)loopsshallbeOPERABLE.*APPLICABILITY:MOOE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternalsremoved.ACTION:a.WithlessthantherequiredRHRloopsOPERABLE,immediatelyinitiatecorrectiveactiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.b.TheprovisionsofSpecification3.0.3arenotapplicable.SURVEILLANCEREUIREMENTS4.9.8.2TherequiredResidualHeatRemovalloopsshallbedeterminedOPERABLEperSpecification4.0.5.*ThenormaloremergencypowersourcemaybeinoperableforeachRHRloop.D.C.COOK-UNIT13/49-9a REFUELINGOPERATIONS3/4.9.10MATERLEYEL-REACTORYESSELLIHITIHGCOHDITIOHFOROPERATION3.9.10Atleast23feetofwater,shallbemaintainedoverthetopofthereactorpressurevesselflange.APPLICABILITY:DuringmovementoffuelassembliesorcontrolrodswithinthereactorpressurevesselwhileinMODE6.withtheupperinternalsremoved.ACTION:Miththerequirementsoftheabovespecificationnotsatisfied,suspendalloperationsinvolvingmovementoffuelassembliesorcontrolrodswithinthepressurevessel.TheprovisionsofSpecification3.0.3arenotapplicable.SURVEILLANCEREUIREHEHTS4.9.10Thewaterlevelsha')1bedeterminedtobeat,leastitsminimum"requireddepthwithin2hourspriortothestartofandatleastonceper24hoursthereafterduringmovementoffuelassembliesorcontrolrods.~~D.C.Cook-Unit13/49-11 3/4.4REACTORCOOLANTSY<BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATIONTheplantisdesignedtooperatewithallreactorcoolantloopsinoperation,andmaintainONBRabove1.30duringallnormaloperationsandanticipatedtransients.Inl100ES1and2withonereactorcoolantloopnotinoperationthisspecificationrequiresthatt'eplantbei.natleastHOTSTN'DBYwithin1hour.InNODE3,'singlereactorcoolantloopprovidessufficientheatremovalcapabilityforremovingdecayheat;however,singlefailurecons~rationsrequirethattwoloopsbeOPERABLE.Int<ODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficientheatremovalcapabilityforremovingdecayheat;butsinglefailureconsiderationsrequirethatatleasttwoloopsbeOPERABLE.ThusifthereactorcoolantloopsarenotOPERABLE,thisspecificationrequirestwoRHRloopstobeOPERABLE.TheoperationofoneReactorCoolantPumporoneRHRpumpprovidesadequateflowtoensuremixing;preventstratificationandproducegradualreactivitychangesduringboronconcentrationreductionsintheReactorCoolantSystem.Thereactivitychanoerateassociatedwithboronreductionwill,therefore,bewithinthecapabilityofoperatorrecognitionandcontrol.TherestrictionsonstartingaReactorCoolantPumpwithoneormoreRCScoldlegsl,essthanorequalto188FareprovidedtopreventRCSpress~retransients,-causedbyenergyadditionsfromthesecondlysystem,whichcouldexcedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeprotectedagainstoverpressuretransientsandwillnotexceedhelimitsofAppendixGbyeither(1)restrictingthewatervolumeinthepressurizerandtherebyprovidingavolumefortheprimarycoolanttoexpandinto,or(2)byrestrictingstartingoftheRCPstowhenthesecondarywatertrapratureofeachsteamgeneratorislessthan50FaboveeachoftheRCScoldlegtemperatures.0.C.Cook-Unit183/44-1 3/4.4REACTORCOOLANTSYSTe.l8ASES3/4.4.2and3/<.4.3SAFETYVAL'/ESThepressurizercodesafetyvalvesoperatetopreventtheRCSfrombeingpressurizedaboveitsSafetyLimitof2735psia.Eachsaetyvalveisdesignedtorelieve420,000lbsperhourofsaturatedsteamatthevalvesetpoint.Thereliefcapacityofasinglesafetyvalveisadeauatetorelieveanyoveroressureconditionuhichcouldoccurduringshutdown.IntheeventthatnosafetyvalvesareOPERABLE,anooeratingRHRlooo,connectedtotheRCS,providesoverpressurereliefcapabilityandwillpteventRCSoverpressurization.Ouringoperation,a11pressurizercodesafetyvalvesmustbeOPERA8LEtopreventtheRCSfrombeingoressurizedaboveitssafetyIimitof2735psig.Thecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgeraterosultinafromacomoletelossofloadassumingnoreactortripuntilthefirs~ReactorProtectiveSystemtripsetpoint:sreached(i.e.,nocreditistaken,oradirectroactortriponthelossorload)andalsoassuminanoooerationafthepoweroperaedreliefvalves.orsteamdumpvalves.Oemonstrationofthe'afetyvalves'i,tsettinasui11occuronlyduringshudownandwillbeperformedinaccordanceuiththe"rovisicnsofSectionXIoftheASl1EBoilerandPressureCode,1974Edition.0.C.COOK-Ui'(ITI83/44-Ia REFUELINGOPERATIONSBASES3/4.9.6MANIPULATORCRANEOPERABILITYTheOPERABILITYrequirementsforthemanipulatorcranesensurethat:1)manipulatorcraneswillbeusedformovementofcontrolrodsandfuelassemblies2)eachcranehassufficientloadcapacitytoliftacontrolrodorfuelassemblyand3)thecoreinternalsandpressurevesselareprotectedfromexcessiveliftingforceintheeventtheyareinadvertentlyengageddur-ingliftiingoperations.'I3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestrictiononmovementofloadsinexcessofthenominalweightofafuelassemblyoverotherfuelassembliesensuresthatnomorethanthecontentsofonefuelassemblywillberupturedintheeventofafuelhandlingaccident.Thisassumptionisconsistentwiththeactivityreleaseassumedintheaccidentanalyses.3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATIONTherequirementthatatleastoneresidualheatremoval(RHR)loopbeinoperationensuresthat(1)sufficientcoolingcapacityisavailabletoremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELINGMODE,and(2)sufficientcoolantcirculationismaintainedthroughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.TherequirementtohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperatingRHRloopwillnotresultinacompletelossofresidualheatremovalcapability.Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailableforcorecooling.Thus,intheeventofafailureoftheoperatingRHRloop,adequatetimeisprovidedtoinitiateemergencyprocedurestocoolthecore.3/4.9.9CONTAINMENTPURGEANDEXHAUSTISOLATIONSYSTEMTheOPERABILITYofthissystemensuresthatthecontainmentventandpurgepenetrationswillbeautomaticallyisolatedupondetectionofhighradiationlevelswithinthecontainment.TheOPERABILITYofthissystemisrequiredtorestrictthereleaseofradioactivematerialfromthecontain-mentatmospheretotheenvironment.D.C.COOK-UNIT1B3/49-3 REFUELINGOPERATIONSBASES3/4.9.10and3/4.9.11lriATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictionsonminimumwaterlevelensurethatsufficientwaterdepthisavailabletoremove99KoftheassumedlOXiodinegapactivityreleasedfrom.theruptureofanirradiatedfuelassembly.Theminimumwaterdepthisconsistentwiththeassumptionsoftheaccidentanalysis.3/4.9.12STORAGEPOOLVENTILATIONSYSTEMThelimitationsonthestoragepoolventilationsystemensurethatallradioactivematerialreleasedfromanirradiatedfuelassembly'willbefilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodischargetotheatmosphere.TheOPERABILITYofthissystemandtheresultingiodineremovalcapacityareconsistentwiththeassumptionsoftheaccidentanalyses.3/4.9.13SPENTFUELCASKMOVEMENTThelimitationsofthisspecificationensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrainedtothepathandliftheightassumedintheCaskDropProtectionSystemsafetyanalysis.Restrict-ingthespentfuelcaskmovementwithintheserequirementsprovidesprotectionforthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.3/4.9.14SPENTFUELCASKDROPPROTECTIONSYSTEMThelimitationsontheuseofspentfuelcasksweighinginexcessof110tons(nominal)-providesassurancethatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistentwiththeassumptionsusedinthesafetyanalysisfortheperformanceoftheCaskDropProtectionSystem.D.C.COOK-UNIT1IB3/49-4 AttachmentNo.3toAEP:NRC:00420ADonaldC.CookNuclearPlantUnitNos.1and2DecayHeatRemovalTechnicalSpecifications
REACTORCOOLANTSYSTEMSHUTDOWNLiMITINGCONDITION FOROPERATiON 3.4.1.3a.Atleasttwoo<thecoolantloopslistedbelowshallbeOPERABLE:
1.ReactorCoolantLoop1anditsassociated steamgenerator andreactorcoolantpump,*2.ReactorCoolantLoop2anditsassociated steamgenerator andreactorcoolantpump,*3.ReactorCo'olantLoop3anditsassociated steamgenerator andreactorcoolantpump,*4.ReactorCoolantLoop4andi.tsassociated steamgenerator andreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval.-Hest,**b.Atleastoneoftheabovecoolantloopsshallbeinoperation.***
APPLICABILITY:
MODES4and5ACTION:a.WithlessthantheaboverequiredloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible; beinCOLDSHUTDOWNwith-in20hours.b.Withnocoolant'locp in.operation, suspendalloperations in-volvingareduction inboronconcentration oftheReactorCool-'nt'ystem andimmediately initiatecorrective actiontoreturntherequiredcoolantlooptooperation.
+AreactorcoolantpumpshallnotbestartedwithoneormoreoftheRCScoldlegtemperatures lessthanorequalto188oFunless1)thepressurizer watervolumeislessthan52.00%ofspanor2)thesecondary watertemperature ofeachsteamgenerator islessthan50oFaboveeachoftheRCScoldlegtemper-atures.Operability ofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliary feedwater system.**Thenormaloremergency powersourcemaybeinoperable inMODE5.***Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energized forupto1hourprovided1)nooperations arepermitted thatwouldcausedilutionofthereactorcoolantsystemboronconcentration, and2)coreout-lettemperature ismaintained atleast10oFbelowsaturation temperature.
D.C.Cook-Unit13/44-3 REACTORCOOLANTSYSTEMSURYEILLANCE REUIREMENTS 4.4.1.3.1Therequiredresidualheatremovalloop(s)shallbedetermined OPERABLEperSpecification 4.0.5.4.4.1.3.2 Therequiredreactorcoolantpump(s),ifnotinoperation, shallbedetermined tobeOPERABLEonceper7daysbyverifying correctbreakeralignments andindicated poweravailability.
4.4.1.3.3 Therequiredsteamgenerator(s) shallbedetermined OPERABLEbyverifying secondary sideleveltobegreaterthanorequalto25>ofwiderangeinstrument spanatleastonceper12hours.4.4.1.3.4 Atleastonecoolantloopshallbeverifiedtobeinoperation andcirculating reactorcoolantatleastonceper12hours.g,lr1~ID.C.COOK-UNIT13/44-3a REFUELING OPERATIONS 3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION LIMITINGCONDITION FOROPERATION 3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.
APPLICABILITY:
MODE6.ACTION:a.Withlessthanoneresidualheatremovalloopinoperation, exceptasprovidedinb.below,suspendalloperations involving anincreaseinthereactordecayheatloadorareduction inboronconcentration oftheReactorCoolantSystem.Closeallcontainment penetrations providing directaccessfromthecontainment atmosphere totheoutsideatmosphere within4hours.b.Theresidualheatremovalloopmayberemovedfromoperation forupto1hourper8hourperiodduringtheperformance ofCOREALTERATIONS inthevicinityofthereactorpressurevesselhotlegs.c.Theprovisions ofSpecification 3.0..3arenotapplicable.
SURVEILLANCE REQUIREi~lENTS 4~~4.9.8.1Aresidualheatremovalloopshallbedetermined tobeinoperation andcirculating reactorcoolanataflowrateof>3000gpmatleastonceper24hours.D.C.COOK-UNIT13j49-9 REFUELING OPERATIONS LOWWATERLEVELLIMITINGCONOITION FOROPERATION 3.9.8.2Twoindependent ResidualHeatRemoval(RHR)loopsshallbeOPERABLE.*
APPLICABILITY:
MOOE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternals removed.ACTION:a.WithlessthantherequiredRHRloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.
b.Theprovisions ofSpecification 3.0.3arenotapplicable.
SURVEILLANCE REUIREMENTS 4.9.8.2TherequiredResidualHeatRemovalloopsshallbedetermined OPERABLEperSpecification 4.0.5.*Thenormaloremergency powersourcemaybeinoperable foreachRHRloop.D.C.COOK-UNIT13/49-9a REFUELING OPERATIONS 3/4.9.10MATERLEYEL-REACTORYESSELLIHITIHGCOHDITIOH FOROPERATION 3.9.10Atleast23feetofwater,shallbemaintained overthetopofthereactorpressurevesselflange.APPLICABILITY:
Duringmovementoffuelassemblies orcontrolrodswithinthereactorpressurevesselwhileinMODE6.withtheupperinternals removed.ACTION:Miththerequirements oftheabovespecification notsatisfied, suspendalloperations involving movementoffuelassemblies orcontrolrodswithinthepressurevessel.Theprovisions ofSpecification 3.0.3arenotapplicable.
SURVEILLANCE REUIREHEHTS 4.9.10Thewaterlevelsha')1bedetermined tobeat,leastitsminimum"required depthwithin2hourspriortothestartofandatleastonceper24hoursthereafter duringmovementoffuelassemblies orcontrolrods.~~D.C.Cook-Unit13/49-11 3/4.4REACTORCOOLANTSY<BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATION Theplantisdesignedtooperatewithallreactorcoolantloopsinoperation, andmaintainONBRabove1.30duringallnormaloperations andanticipated transients.
Inl100ES1and2withonereactorcoolantloopnotinoperation thisspecification requiresthatt'eplantbei.natleastHOTSTN'DBYwithin1hour.InNODE3,'singlereactorcoolantloopprovidessufficient heatremovalcapability forremovingdecayheat;however,singlefailurecons~rationsrequirethattwoloopsbeOPERABLE.
Int<ODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficient heatremovalcapability forremovingdecayheat;butsinglefailureconsiderations requirethatatleasttwoloopsbeOPERABLE.
ThusifthereactorcoolantloopsarenotOPERABLE, thisspecification requirestwoRHRloopstobeOPERABLE.
Theoperation ofoneReactorCoolantPumporoneRHRpumpprovidesadequateflowtoensuremixing;preventstratification andproducegradualreactivity changesduringboronconcentration reductions intheReactorCoolantSystem.Thereactivity chanoerateassociated withboronreduction will,therefore, bewithinthecapability ofoperatorrecognition andcontrol.Therestrictions onstartingaReactorCoolantPumpwithoneormoreRCScoldlegsl,essthanorequalto188FareprovidedtopreventRCSpress~retransients,-
causedbyenergyadditions fromthesecondlysystem,whichcouldexcedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeprotected againstoverpressure transients andwillnotexceedhelimitsofAppendixGbyeither(1)restricting thewatervolumeinthepressurizer andtherebyproviding avolumefortheprimarycoolanttoexpandinto,or(2)byrestricting startingoftheRCPstowhenthesecondary watertrapratureofeachsteamgenerator islessthan50FaboveeachoftheRCScoldlegtemperatures.0.C.Cook-Unit183/44-1 3/4.4REACTORCOOLANTSYSTe.l8ASES3/4.4.2and3/<.4.3SAFETYVAL'/ESThepressurizer codesafetyvalvesoperatetopreventtheRCSfrombeingpressurized aboveitsSafetyLimitof2735psia.Eachsaetyvalveisdesignedtorelieve420,000lbsperhourofsaturated steamatthevalvesetpoint.Thereliefcapacityofasinglesafetyvalveisadeauatetorelieveanyoveroressure condition uhichcouldoccurduringshutdown.
IntheeventthatnosafetyvalvesareOPERABLE, anooerating RHRlooo,connected totheRCS,providesoverpressure reliefcapability andwillpteventRCSoverpressurization.
Ouringoperation, a11pressurizer codesafetyvalvesmustbeOPERA8LEtopreventtheRCSfrombeingoressurized aboveitssafetyIimitof2735psig.Thecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgeraterosultina fromacomoletelossofloadassumingnoreactortripuntilthefirs~ReactorProtective Systemtripsetpoint:sreached(i.e.,nocreditistaken,oradirectroactortriponthelossorload)andalsoassuminanoooeration afthepoweroperaedreliefvalves.orsteamdumpvalves.Oemonstration ofthe'afety valves'i, tsettinasui11occuronlyduringshudownandwillbeperformed inaccordance uiththe"rovisicns ofSectionXIoftheASl1EBoilerandPressureCode,1974Edition.0.C.COOK-Ui'(IT I83/44-Ia REFUELING OPERATIONS BASES3/4.9.6MANIPULATOR CRANEOPERABILITY TheOPERABILITY requirements forthemanipulator cranesensurethat:1)manipulator craneswillbeusedformovementofcontrolrodsandfuelassemblies 2)eachcranehassufficient loadcapacitytoliftacontrolrodorfuelassemblyand3)thecoreinternals andpressurevesselareprotected fromexcessive liftingforceintheeventtheyareinadvertently engageddur-ingliftiingoperations.
'I3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestriction onmovementofloadsinexcessofthenominalweightofafuelassemblyoverotherfuelassemblies ensuresthatnomorethanthecontentsofonefuelassemblywillberupturedintheeventofafuelhandlingaccident.
Thisassumption isconsistent withtheactivityreleaseassumedintheaccidentanalyses.
3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION Therequirementthat atleastoneresidualheatremoval(RHR)loopbeinoperation ensuresthat(1)sufficient coolingcapacityisavailable toremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELING MODE,and(2)sufficient coolantcirculation ismaintained throughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.
Therequirement tohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperating RHRloopwillnotresultinacompletelossofresidualheatremovalcapability.
Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailable forcorecooling.Thus,intheeventofafailureoftheoperating RHRloop,adequatetimeisprovidedtoinitiateemergency procedures tocoolthecore.3/4.9.9CONTAINMENT PURGEANDEXHAUSTISOLATION SYSTEMTheOPERABILITY ofthissystemensuresthatthecontainment ventandpurgepenetrations willbeautomatically isolatedupondetection ofhighradiation levelswithinthecontainment.
TheOPERABILITY ofthissystemisrequiredtorestrictthereleaseofradioactive materialfromthecontain-mentatmosphere totheenvironment.
D.C.COOK-UNIT 1B3/49-3 REFUELING OPERATIONS BASES3/4.9.10and3/4.9.11lriATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictions onminimumwaterlevelensurethatsufficient waterdepthisavailable toremove99KoftheassumedlOXiodinegapactivityreleasedfrom.theruptureofanirradiated fuelassembly.
Theminimumwaterdepthisconsistent withtheassumptions oftheaccidentanalysis.
3/4.9.12STORAGEPOOLVENTILATION SYSTEMThelimitations onthestoragepoolventilation systemensurethatallradioactive materialreleasedfromanirradiated fuelassembly'will befilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodischarge totheatmosphere.
TheOPERABILITY ofthissystemandtheresulting iodineremovalcapacityareconsistent withtheassumptions oftheaccidentanalyses.
3/4.9.13SPENTFUELCASKMOVEMENTThelimitations ofthisspecification ensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrained tothepathandliftheightassumedintheCaskDropProtection Systemsafetyanalysis.
Restrict-ingthespentfuelcaskmovementwithintheserequirements providesprotection forthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.
3/4.9.14SPENTFUELCASKDROPPROTECTION SYSTEMThelimitations ontheuseofspentfuelcasksweighinginexcessof110tons(nominal)
-provides assurance thatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistent withtheassumptions usedinthesafetyanalysisfortheperformance oftheCaskDropProtection System.D.C.COOK-UNIT 1IB3/49-4 Attachment No.3toAEP:NRC:00420A DonaldC.CookNuclearPlantUnitNos.1and2DecayHeatRemovalTechnical Specifications
~~I~~~I~]~~~IIII''~~~~~s~~ss~~~I.st--s-s-.r~~~s~~s~~~~~s~~~~s~~~~~i~~~~
~~I~~~I~]~~~IIII''~~~~~s~~ss~~~I.st--s-s-.r~~~s~~s~~~~~s~~~~s~~~~~i~~~~
I~~g~~~~~~~~~~~~~~~~~~e~~I~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I0~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I'~~~~~~aI'~III~~~~0~Ie~~~~f~~~~~I~~~~~I~~~0~~~~~~~0~~~~~~~~~~a-I''a4I,~~0~~S~l~~~~IOt~~~~~0~~~~~0~0~~f~~~l~e-~~~~t~~
I~~g~~~~~~~~~~~~~~~~~~e~~I~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I0~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I'~~~~~~aI'~III~~~~0~Ie~~~~f~~~~~I~~~~~I~~~0~~~~~~~0~~~~~~~~~~a-I''a4I,~~0~~S~l~~~~IOt~~~~~0~~~~~0~0~~f~~~l~e-~~~~t~~
REACTOR'".GOLANTSYSTEMSHUTDOWNLIMITINGCONDITIONFOROPERATION3.4.1.3a.AtleasttwoofthecoolantloopslistedbelowshallJ1.ReactorCoolantLoop1anditsassociatedsteamreactorcoolantpump,*beOPERABLE:generatorand2.ReactorCoolantLoop2anditsassociatedsteamgeneratorandreactorcoolantpump,*3.ReactorCoolantLoop'anditsassociatedsteamgeneratorandreactorcoolantpump,*4.ReactorCoolantLoop4anditsassociatedsteamgeneratorandreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval-West"'.Atleastoneoftheabovecoolantloopsshallbeinoperation.**"APPLICABILITY:MODES4and5ACTION:a.Withlessthantheaboverequired,loopsOPERABLE,immediatelyinitiatecorrectiveactiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible;beinCOL'DSHUTDOWNwith-in20hours.b.Withnocoolantloopinoperation,suspendalloperatiorsin-volvingareductioninboronconcentrationoftheReactorCool-antSystemandimmediatelyinitiatecorrectiveactiontoreturntherequiredcoolantlooptooperation.'AreactorcoolantpumpshallnotbestartedwithoneormoreoftheRCSco!dlegtemperatureslessthanorequalto152oFunless1)thepressu~izerwatervolumeislessthan62.00Kofspanor2)thesecondarywatertemperatureofeachsteamgeneratorislessthan50FaboveeachoftheRCScoldlegtemper-atures.Operabilityofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliaryfeedwatersystem.**ThenormaloremergencypowersourcemaybeinoperableinMODE5.-""Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energizedforuoto1hourprovided1)nooperationsarepermittedthatwouldcausedilutionofthereactorcoolantsystemboronconcentration,and2)coreout-lettemperatureismaintainedatleast10oFbelowsaturationtempera;ure.D.C.Cook-Unit23/44-3 REACTORCOOLANTSYSTEMSURVEILLANCEREUIREtlENTS4.4.1.3.1Therequiredresidualheatremovalloop(s)shallbedeterminedOPERABLEperSpecification4.0.5.4.4.1.3.2Therequiredreactorcoolantpump(s),ifnotinoperation,shallbedeterminedtobeOPERABLEonceper7daysbyverifyingcorrectbreakeralignmentsandindicatedpoweravailability.4.4.1.3.3Therequiredsteamgenerator(s)shallbedeterminedOPERABLEbyverifyingsecondarysideleveltobegreaterthanorequalto255ofwiderangeinstrumentspanatleastonceper12hours.4.4.1.3.4Atleastonecoolantloopshallbeverifiedtobeinop'erationandcirculatingreactorcoolantatleastonceper12hours.D.C,COOK-UNIT23/44-3a REFUELINGOPERATIONS.3/4.9.8RESIDUALHEATREHOYALANDCOOLANTCIRCULATIONLIt'IITI<<GCONDITIONFOROPERATION3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.APPLIABILITY:YiODE6.ACTION:a.b.C.<lithlessthanoneresidualheatremovalloopinoperation,exceptasprovidedinb,below,suspendalloperationsinvolvinganinc~easeinthereactordecayheatloadorareductioninboronconcntrationoftheReactorCoolantSystem.Closeallcontainmntpenetrationsprovidirgdirectaccessfromthecontain:~;entatmospheretotheoutsideatmospherewithin4hours.Theresidualheatremovalloopmayberemovedfromoperationforupto1hourper8hour.periodduringtheperformanceofCOREALTERATIONSinthevicinityofthereactorpressurevesselhotlegs.TheprovisionsofSpecification3.0..3arenotapplicable.SUR".EILANCEREQUIREi'iENTS4.9.8.1Aresidualheatremovalloopshallbedeterm',nedtobeinoperationandcirculatingreactorcoolantataflowrateof>3000gpmatleastonceper24hours.0.C.COO"''>NIT23/49-8  
REACTOR'".GOLANT SYSTEMSHUTDOWNLIMITINGCONDITION FOROPERATION 3.4.1.3a.AtleasttwoofthecoolantloopslistedbelowshallJ1.ReactorCoolantLoop1anditsassociated steamreactorcoolantpump,*beOPERABLE:
'REFUELINGOPERATIONSLOll<IATERLEi/ELLIMITINGCONDITIONFOROPERATION3.9.8.2TwoindependentResidualHeatRemoval(RHR)loopsshallbeOPERABLE.+APPLICABILITY:NODE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternalsremoved.ACTION:a.>lithlessthantherequiredRHRloopsOPERABLE,immediatelyinitiatecorrectiveactiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.b.TheprovisionsofSpecification3.0.3arenotapplicable.SURYEILLANCEREUIREjlENTS4.9.8.2TherequiredResidualHeatRemovalloopsshall-bedeterminedOPERABLEperSpecification4.0,5.*ThenormaloremergencypowersourcemaybeinoperableforeachRHRloop.D.C.COOK-UNIT23/49-8a REFUELINGOPERATIONS3/4.9.10MATERLEVEL-REACTORVESSELLIMITINGCONDITIONFOROPERATION~~~3.9.10Atleast23feetofwater.shallbemaintainedoverthetopofthereactorpressurevesselflange.APPLICABILITY:Duringmovementoffuelassembliesorcontrolrodswithinthe,reactorpressurevesselwhileinMODE6withtheupperinternalsremoved.ACTION:kiththerequirementsoftheabovespecificationnotsatisfied,suspendalloperationsinvolvingmovementoffuelassembliesorcontrolrodswithinthepressurevessel.TheprovisionsofSpecification3.0.3arenotapplicable.SURVEILLANCEREUIREHENTS4.9.10Thewaterlevelshallbedeterminedtobeatleastitsminimumrequireddepthwithin2hourspriortothestartofandatleastonceper24hoursthereafterduringmovementoffuelassembliesorcontrolrods.D.C.COOK-UNIT23/49-10 3/4.4REACTORCOOLANTSY"1BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATIONTheplantisdesignedtooperatewithallreactorcoolant1oopsinoperation,andmaintainDNBRabove1.30duringallnormaloperationsandanticipatedtransients.InMODES1and2withonereactorcoolantloopnotinoperationthisspecificationrequiresthattheplantbeinaileastHOTSTAJ.DBYwithinIhour.InMODE3,asinglereactorcoolant1oopprovidessufficientheatremovalcapabilityforremovingdecayheat;however,singlefailureconstrationsrequirethattwoloopsbeOPERABLE.InMODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficientheatremovalcapabilityforremovingdecayheat,;butsinglefailureconsiderationsrequirethatatleasttwoloopsbeOPERABLE.ThusifthereactorcoolantloopsarenotOPERABLE,ihisspecificationrequirestwoRHRloopstobeOPERABLE.TheoperationofoneReactorCoolantPumporoneRHRpumpprovidesadequa.eflowtoensuremixing,preventstratificationandproducegradua1reactivitychangesduringboronconcentrationreductionsintheReactorCoolantSystem..hereactivitychangerateassociaiedwithboronrductionwill,therefore,bewithinthecapabilityofoperatorrecognitionandcontrol.TherestrictionsonstartingaReactorCoolantPumpwith.oneormoreRCScoldlegsl.essthanorequalto152OFareprovidedtopreventRCSpressuretransients,-causedbyenergyadditionsfromthesecondssystem,whichcouldexceedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeproiectedagainstoverpressureiransientsandwillnotexceed=helimiiso7AppendixGbyeither(1)restrictingthewatervolumeinthepressurizerandtherebyprovidingavolumefortheprimarycoolanttoexpandinto.or(2)byrestrictingstartingofthePCPstowhenthesecondarywatert~ratureofeachsteamgeneratorislessthan50ofaboveeachoftheRCScoldlegtemperatures.D.C.Cook-Unit2B3/44-1 3/4.4REACTORCOOLANTSYSTEMBASES3/4.4.2and3/4.4.3SAFETYVALVESThepressurizercodesafetyvalvesoperatetopreventtheRCSfrombeingpressurizedaboveitsSafetyLimitof2735psig.Eachsafetyvalveisdesignedtorelieve420,000lbsperhourofsaturatedsteamatthevalvesetpoint..Thereliefcapacityofasinglesafetyvalveisadequatetorelieveanyoverpressureconditionwhichcouldoccurduringshutdown.IntheeventthatnosafetyvalvesareOPERABLE,anoperatingRHRloop,connectedtotheRCS,providesoverpressurereliefcapabilityandwillpreventRCSoverpressurization.Duringoperation,allpressurizercodesafetyvalvesmustbeOPERABLEtopreventtheRCSfrombeingpressurizedaboveitssafetylimitof2735psig.ThecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgerateresultingfromacompletelossofloadassumingnoreactortripuntilthefirstReactorProtectiveSystemtripsetpointisreached(i.e.,nocreditistakenforadirectreactortriponthelossofload)andalsoassumingnooperationofthepoweroperatedreliefvalvesorsteamdumpvalves.D.C.COOK-UNIT2B3/44-la REFUELINGOPERATIONSBASES3/4.9.6MANIPULATORCRANEOPERABILITYTheOPERABILITYrequirementsforthemanipulatorcranesensurethat:1)manipulatorcraneswillbeusedformovementofcontrolrodsandfuel.assemblies,2)eachcranehassufficientloadcapacitytoliftacontrolrodorfuelassembly,and3)thecoreinternalsandpressurevesselareprotectedfromexcessiveliftingforceintheeventtheyareinadvertentlyengagedduringliftingoperations.3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestrictiononmovementofloadsinexcessofthenominalweightofafuelandcontrolrodassemblyandassociatedhandlingtooloverotherfuelassembliesinthestoragepoolensuresthatintheeventthisloadisdropped1)theactivityreleasewillbelimitedtothatcontainedinasinglefuelassembly,and2)anypossibledistortionoffuelinthestoragerockswillnotresultinacriticalarray.Thisassumptionisconsistentwiththeactivityreleaseassumedintheaccidentanalyses.3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATIONTherequirementthatatleastoneresidualheatremoval(RHR)loopbeinoperationensuresthat(1)sufficientcoolingcapacityisavailabletoremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELINGMODE,and{2)sufficientcoolantcir-culationismaintainedthroughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.TherequirementtohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperatingRHRloopwillnotresultinacompletelossofresidualheatremovalcapability.Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailableforcorecooling.Thus,intheeventofafailureoftheoperatingRHRloop,adequatetimeisprovidedtoinitiateemergencyproce-durestocoolthecore.D.C.COOK-UNIT2B3/49-2 REFUELINGOPERATIONSBASES3/4.9.9"ONTAINMENTPURGEANDXHAUSTISOLATIONSYSTEMTheOPERABILITYofthissystemensuresthatthecontainmentventandpurgepenetrationswillbeautomaticallyisolatedupondetectionofhighradiationlevelswithinthecontainment.TheOPERABILITYofthissystemisrequiredtorestrictthereleaseofradioactivematerialfromthecontainmentatmospheretotheenvironment.3/4.9.10and3/4.9.11MATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictionsonminimumwaterlevelensurethatsufficientwaterdepthisavailabletoremove99%oftheassumed10%iodinegapactivityreleasedfromtheruptureofanirradiatedfuelassemble.Theminimumwaterdepthisconsistentwiththeassumptionsoftheaccidentanalysis.3/4.9.12STORAGEPOOLVENTILATIONSYSTEMThelimitationsonthestoragepoolventilationsystemensurethatallradioactivemaerialreleasedfromanirradiatedfuelassemblywillbefilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodis-chargetotheatmosphere.TheOPERABILITYofthissystemandtheresult-ingiodineremovalcapacityareconsistentwiththeassumptionsoftheaccidentanalyses.3/4.9.13SPENTFUELCASKMOVEMENTThelimitationsofthisspecificationensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrainedtothepathandliftheightassumedintheCaskDropProtectionSystemsafetyanalysis.Restrict-ingthespentfuelcaskmovementwithinthese,requirementsprovidesprotectionforthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.3/4.9.14SPENTFUELCASKDROPPROTECTIONSYSTEMThelimitationsontheuseofspentfuelcasksweighinginexcessof110tons(nominal)providesassurancethatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistentwiththeassumptionsusedinthesafetyanalysisfortheperformanceoftheCaskDropProtectio.sSystem.D.C.COOK.-UNIT2B3/49-3}}
generator and2.ReactorCoolantLoop2anditsassociated steamgenerator andreactorcoolantpump,*3.ReactorCoolantLoop'anditsassociated steamgenerator andreactorcoolantpump,*4.ReactorCoolantLoop4anditsassociated steamgenerator andreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval-West"'.Atleastoneoftheabovecoolantloopsshallbeinoperation.**"
APPLICABILITY:
MODES4and5ACTION:a.Withlessthantheaboverequired, loopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible; beinCOL'DSHUTDOWNwith-in20hours.b.Withnocoolantloopinoperation, suspendalloperatiors in-volvingareduction inboronconcentration oftheReactorCool-antSystemandimmediately initiatecorrective actiontoreturntherequiredcoolantlooptooperation.'A reactorcoolantpumpshallnotbestartedwithoneormoreoftheRCSco!dlegtemperatures lessthanorequalto152oFunless1)thepressu~izer watervolumeislessthan62.00Kofspanor2)thesecondary watertemperature ofeachsteamgenerator islessthan50FaboveeachoftheRCScoldlegtemper-atures.Operability ofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliary feedwater system.**Thenormaloremergency powersourcemaybeinoperable inMODE5.-""Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energized foruoto1hourprovided1)nooperations arepermitted thatwouldcausedilutionofthereactorcoolantsystemboronconcentration, and2)coreout-lettemperature ismaintained atleast10oFbelowsaturation tempera;ure.
D.C.Cook-Unit23/44-3 REACTORCOOLANTSYSTEMSURVEILLANCE REUIREtlENTS 4.4.1.3.1 Therequiredresidualheatremovalloop(s)shallbedetermined OPERABLEperSpecification 4.0.5.4.4.1.3.2 Therequiredreactorcoolantpump(s),ifnotinoperation, shallbedetermined tobeOPERABLEonceper7daysbyverifying correctbreakeralignments andindicated poweravailability.
4.4.1.3.3 Therequiredsteamgenerator(s) shallbedetermined OPERABLEbyverifying secondary sideleveltobegreaterthanorequalto255ofwiderangeinstrument spanatleastonceper12hours.4.4.1.3.4Atleastonecoolantloopshallbeverifiedtobeinop'eration andcirculating reactorcoolantatleastonceper12hours.D.C,COOK-UNIT23/44-3a REFUELING OPERATIONS
.3/4.9.8RESIDUALHEATREHOYALANDCOOLANTCIRCULATION LIt'IITI<<G CONDITION FOROPERATION 3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.
APPLIABILITY:YiODE6.ACTION:a.b.C.<lithlessthanoneresidualheatremovalloopinoperation, exceptasprovidedinb,below,suspendalloperations involving aninc~easeinthereactordecayheatloadorareduction inboronconcntrationoftheReactorCoolantSystem.Closeallcontainmntpenetrations providirg directaccessfromthecontain:~;ent atmosphere totheoutsideatmosphere within4hours.Theresidualheatremovalloopmayberemovedfromoperation forupto1hourper8hour.periodduringtheperformance ofCOREALTERATIONS inthevicinityofthereactorpressurevesselhotlegs.Theprovisions ofSpecification 3.0..3arenotapplicable.
SUR".EILANCEREQUIREi'iENTS 4.9.8.1Aresidualheatremovalloopshallbedeterm',ned tobeinoperation andcirculating reactorcoolantataflowrateof>3000gpmatleastonceper24hours.0.C.COO"''>NIT23/49-8  
'REFUELING OPERATIONS LOll<IATERLEi/ELLIMITINGCONDITION FOROPERATION 3.9.8.2Twoindependent ResidualHeatRemoval(RHR)loopsshallbeOPERABLE.+
APPLICABILITY:
NODE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternals removed.ACTION:a.>lithlessthantherequiredRHRloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.
b.Theprovisions ofSpecification 3.0.3arenotapplicable.
SURYEILLANCEREUIREjlENTS 4.9.8.2TherequiredResidualHeatRemovalloopsshall-bedetermined OPERABLEperSpecification 4.0,5.*Thenormaloremergency powersourcemaybeinoperable foreachRHRloop.D.C.COOK-UNIT23/49-8a REFUELING OPERATIONS 3/4.9.10MATERLEVEL-REACTORVESSELLIMITINGCONDITION FOROPERATION
~~~3.9.10Atleast23feetofwater.shallbemaintained overthetopofthereactorpressurevesselflange.APPLICABILITY:
Duringmovementoffuelassemblies orcontrolrodswithinthe,reactorpressurevesselwhileinMODE6withtheupperinternals removed.ACTION:kiththerequirements oftheabovespecification notsatisfied, suspendalloperations involving movementoffuelassemblies orcontrolrodswithinthepressurevessel.Theprovisions ofSpecification 3.0.3arenotapplicable.
SURVEILLANCE REUIREHENTS 4.9.10Thewaterlevelshallbedetermined tobeatleastitsminimumrequireddepthwithin2hourspriortothestartofandatleastonceper24hoursthereafter duringmovementoffuelassemblies orcontrolrods.D.C.COOK-UNIT23/49-10 3/4.4REACTORCOOLANTSY"1BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATION Theplantisdesignedtooperatewithallreactorcoolant1oopsinoperation, andmaintainDNBRabove1.30duringallnormaloperations andanticipated transients.
InMODES1and2withonereactorcoolantloopnotinoperation thisspecification requiresthattheplantbeinaileastHOTSTAJ.DBYwithinIhour.InMODE3,asinglereactorcoolant1oopprovidessufficient heatremovalcapability forremovingdecayheat;however,singlefailureconstrationsrequirethattwoloopsbeOPERABLE.
InMODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficient heatremovalcapability forremovingdecayheat,;butsinglefailureconsiderations requirethatatleasttwoloopsbeOPERABLE.
ThusifthereactorcoolantloopsarenotOPERABLE, ihisspecification requirestwoRHRloopstobeOPERABLE.
Theoperation ofoneReactorCoolantPumporoneRHRpumpprovidesadequa.eflowtoensuremixing,preventstratification andproducegradua1reactivity changesduringboronconcentration reductions intheReactorCoolantSystem..hereactivity changerateassociaiedwithboronrductionwill,therefore, bewithinthecapability ofoperatorrecognition andcontrol.Therestrictions onstartingaReactorCoolantPumpwith.oneormoreRCScoldlegsl.essthanorequalto152OFareprovidedtopreventRCSpressuretransients,-
causedbyenergyadditions fromthesecondssystem,whichcouldexceedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeproiected againstoverpressure iransients andwillnotexceed=helimiiso7AppendixGbyeither(1)restricting thewatervolumeinthepressurizer andtherebyproviding avolumefortheprimarycoolanttoexpandinto.or(2)byrestricting startingofthePCPstowhenthesecondary watert~rature ofeachsteamgenerator islessthan50ofaboveeachoftheRCScoldlegtemperatures.D.C.Cook-Unit2B3/44-1 3/4.4REACTORCOOLANTSYSTEMBASES3/4.4.2and3/4.4.3SAFETYVALVESThepressurizer codesafetyvalvesoperatetopreventtheRCSfrombeingpressurized aboveitsSafetyLimitof2735psig.Eachsafetyvalveisdesignedtorelieve420,000lbsperhourofsaturated steamatthevalvesetpoint..Thereliefcapacityofasinglesafetyvalveisadequatetorelieveanyoverpressure condition whichcouldoccurduringshutdown.
IntheeventthatnosafetyvalvesareOPERABLE, anoperating RHRloop,connected totheRCS,providesoverpressure reliefcapability andwillpreventRCSoverpressurization.
Duringoperation, allpressurizer codesafetyvalvesmustbeOPERABLEtopreventtheRCSfrombeingpressurized aboveitssafetylimitof2735psig.Thecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgerateresulting fromacompletelossofloadassumingnoreactortripuntilthefirstReactorProtective Systemtripsetpointisreached(i.e.,nocreditistakenforadirectreactortriponthelossofload)andalsoassumingnooperation ofthepoweroperatedreliefvalvesorsteamdumpvalves.D.C.COOK-UNIT2B3/44-la REFUELING OPERATIONS BASES3/4.9.6MANIPULATOR CRANEOPERABILITY TheOPERABILITY requirements forthemanipulator cranesensurethat:1)manipulator craneswillbeusedformovementofcontrolrodsandfuel.assemblies, 2)eachcranehassufficient loadcapacitytoliftacontrolrodorfuelassembly, and3)thecoreinternals andpressurevesselareprotected fromexcessive liftingforceintheeventtheyareinadvertently engagedduringliftingoperations.
3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestriction onmovementofloadsinexcessofthenominalweightofafuelandcontrolrodassemblyandassociated handlingtooloverotherfuelassemblies inthestoragepoolensuresthatintheeventthisloadisdropped1)theactivityreleasewillbelimitedtothatcontained inasinglefuelassembly, and2)anypossibledistortion offuelinthestoragerockswillnotresultinacriticalarray.Thisassumption isconsistent withtheactivityreleaseassumedintheaccidentanalyses.
3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION Therequirement thatatleastoneresidualheatremoval(RHR)loopbeinoperation ensuresthat(1)sufficient coolingcapacityisavailable toremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELING MODE,and{2)sufficient coolantcir-culationismaintained throughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.
Therequirement tohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperating RHRloopwillnotresultinacompletelossofresidualheatremovalcapability.
Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailable forcorecooling.Thus,intheeventofafailureoftheoperating RHRloop,adequatetimeisprovidedtoinitiateemergency proce-durestocoolthecore.D.C.COOK-UNIT2B3/49-2 REFUELING OPERATIONS BASES3/4.9.9"ONTAINMENT PURGEANDXHAUSTISOLATION SYSTEMTheOPERABILITY ofthissystemensuresthatthecontainment ventandpurgepenetrations willbeautomatically isolatedupondetection ofhighradiation levelswithinthecontainment.
TheOPERABILITY ofthissystemisrequiredtorestrictthereleaseofradioactive materialfromthecontainment atmosphere totheenvironment.
3/4.9.10and3/4.9.11MATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictions onminimumwaterlevelensurethatsufficient waterdepthisavailable toremove99%oftheassumed10%iodinegapactivityreleasedfromtheruptureofanirradiated fuelassemble.
Theminimumwaterdepthisconsistent withtheassumptions oftheaccidentanalysis.
3/4.9.12STORAGEPOOLVENTILATION SYSTEMThelimitations onthestoragepoolventilation systemensurethatallradioactive maerialreleasedfromanirradiated fuelassemblywillbefilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodis-chargetotheatmosphere.
TheOPERABILITY ofthissystemandtheresult-ingiodineremovalcapacityareconsistent withtheassumptions oftheaccidentanalyses.
3/4.9.13SPENTFUELCASKMOVEMENTThelimitations ofthisspecification ensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrained tothepathandliftheightassumedintheCaskDropProtection Systemsafetyanalysis.
Restrict-ingthespentfuelcaskmovementwithinthese,requirements providesprotection forthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.
3/4.9.14SPENTFUELCASKDROPPROTECTION SYSTEMThelimitations ontheuseofspentfuelcasksweighinginexcessof110tons(nominal) providesassurance thatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistent withtheassumptions usedinthesafetyanalysisfortheperformance oftheCaskDropProtectio.s System.D.C.COOK.-UNIT2B3/49-3}}

Revision as of 08:20, 29 June 2018

Tech Specs 3.4.1.1,4.4.1.1,3.4.1.2,4.4.1.2.1,4.4.1.2.2, 3.4.1.3,4.4.1.3.1,4.4.1.3.2,4.4.1.3.3,4.4.1.3.4,3.9.8.1, 4.9.8.1,3.9.8.2,4.9.8.2,3.9.10,4.9.10,3/4.4.1,3/4.4.2, 3/4.4.3,3/4.9.6,3/4.9.7,3/4.9.8,3/4.9.9 & 3/4.9.10
ML17331A783
Person / Time
Site: Cook  American Electric Power icon.png
Issue date: 08/14/1981
From:
INDIANA MICHIGAN POWER CO. (FORMERLY INDIANA & MICHIG
To:
Shared Package
ML17331A782 List:
References
NUDOCS 8108250265
Download: ML17331A783 (23)


Text

~~~~~0~I~~~~~~0~~~~~~SIlo~j~~I~0~~~~~~0~~~0~~~~~~l~~~~~~

~~t~~~tt~~~~t~~~I~~~~t~~~~~~~t~~~~~t~t~~~~~~~t~tI~~~~~t~~~t~~~~~~~~~~~4~~~~~~~~~~~~~~~~~~~~~~~~~~t~~~Il~l~~t~)~I~~~~~~~~~~~at~~~~~t~t~~~~t~t~~~~~~~~t~t~t~~~~~~~It~~t~~~~~~-I~t~t~~t~~~~~t~tt~~~ttt~~t~~t~t~~I~~~~t~t~~t~~tt~~~

REACTORCOOLANTSYSTEMSHUTDOWNLiMITINGCONDITION FOROPERATiON 3.4.1.3a.Atleasttwoo<thecoolantloopslistedbelowshallbeOPERABLE:

1.ReactorCoolantLoop1anditsassociated steamgenerator andreactorcoolantpump,*2.ReactorCoolantLoop2anditsassociated steamgenerator andreactorcoolantpump,*3.ReactorCo'olantLoop3anditsassociated steamgenerator andreactorcoolantpump,*4.ReactorCoolantLoop4andi.tsassociated steamgenerator andreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval.-Hest,**b.Atleastoneoftheabovecoolantloopsshallbeinoperation.***

APPLICABILITY:

MODES4and5ACTION:a.WithlessthantheaboverequiredloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible; beinCOLDSHUTDOWNwith-in20hours.b.Withnocoolant'locp in.operation, suspendalloperations in-volvingareduction inboronconcentration oftheReactorCool-'nt'ystem andimmediately initiatecorrective actiontoreturntherequiredcoolantlooptooperation.

+AreactorcoolantpumpshallnotbestartedwithoneormoreoftheRCScoldlegtemperatures lessthanorequalto188oFunless1)thepressurizer watervolumeislessthan52.00%ofspanor2)thesecondary watertemperature ofeachsteamgenerator islessthan50oFaboveeachoftheRCScoldlegtemper-atures.Operability ofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliary feedwater system.**Thenormaloremergency powersourcemaybeinoperable inMODE5.***Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energized forupto1hourprovided1)nooperations arepermitted thatwouldcausedilutionofthereactorcoolantsystemboronconcentration, and2)coreout-lettemperature ismaintained atleast10oFbelowsaturation temperature.

D.C.Cook-Unit13/44-3 REACTORCOOLANTSYSTEMSURYEILLANCE REUIREMENTS 4.4.1.3.1Therequiredresidualheatremovalloop(s)shallbedetermined OPERABLEperSpecification 4.0.5.4.4.1.3.2 Therequiredreactorcoolantpump(s),ifnotinoperation, shallbedetermined tobeOPERABLEonceper7daysbyverifying correctbreakeralignments andindicated poweravailability.

4.4.1.3.3 Therequiredsteamgenerator(s) shallbedetermined OPERABLEbyverifying secondary sideleveltobegreaterthanorequalto25>ofwiderangeinstrument spanatleastonceper12hours.4.4.1.3.4 Atleastonecoolantloopshallbeverifiedtobeinoperation andcirculating reactorcoolantatleastonceper12hours.g,lr1~ID.C.COOK-UNIT13/44-3a REFUELING OPERATIONS 3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION LIMITINGCONDITION FOROPERATION 3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.

APPLICABILITY:

MODE6.ACTION:a.Withlessthanoneresidualheatremovalloopinoperation, exceptasprovidedinb.below,suspendalloperations involving anincreaseinthereactordecayheatloadorareduction inboronconcentration oftheReactorCoolantSystem.Closeallcontainment penetrations providing directaccessfromthecontainment atmosphere totheoutsideatmosphere within4hours.b.Theresidualheatremovalloopmayberemovedfromoperation forupto1hourper8hourperiodduringtheperformance ofCOREALTERATIONS inthevicinityofthereactorpressurevesselhotlegs.c.Theprovisions ofSpecification 3.0..3arenotapplicable.

SURVEILLANCE REQUIREi~lENTS 4~~4.9.8.1Aresidualheatremovalloopshallbedetermined tobeinoperation andcirculating reactorcoolanataflowrateof>3000gpmatleastonceper24hours.D.C.COOK-UNIT13j49-9 REFUELING OPERATIONS LOWWATERLEVELLIMITINGCONOITION FOROPERATION 3.9.8.2Twoindependent ResidualHeatRemoval(RHR)loopsshallbeOPERABLE.*

APPLICABILITY:

MOOE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternals removed.ACTION:a.WithlessthantherequiredRHRloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.

b.Theprovisions ofSpecification 3.0.3arenotapplicable.

SURVEILLANCE REUIREMENTS 4.9.8.2TherequiredResidualHeatRemovalloopsshallbedetermined OPERABLEperSpecification 4.0.5.*Thenormaloremergency powersourcemaybeinoperable foreachRHRloop.D.C.COOK-UNIT13/49-9a REFUELING OPERATIONS 3/4.9.10MATERLEYEL-REACTORYESSELLIHITIHGCOHDITIOH FOROPERATION 3.9.10Atleast23feetofwater,shallbemaintained overthetopofthereactorpressurevesselflange.APPLICABILITY:

Duringmovementoffuelassemblies orcontrolrodswithinthereactorpressurevesselwhileinMODE6.withtheupperinternals removed.ACTION:Miththerequirements oftheabovespecification notsatisfied, suspendalloperations involving movementoffuelassemblies orcontrolrodswithinthepressurevessel.Theprovisions ofSpecification 3.0.3arenotapplicable.

SURVEILLANCE REUIREHEHTS 4.9.10Thewaterlevelsha')1bedetermined tobeat,leastitsminimum"required depthwithin2hourspriortothestartofandatleastonceper24hoursthereafter duringmovementoffuelassemblies orcontrolrods.~~D.C.Cook-Unit13/49-11 3/4.4REACTORCOOLANTSY<BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATION Theplantisdesignedtooperatewithallreactorcoolantloopsinoperation, andmaintainONBRabove1.30duringallnormaloperations andanticipated transients.

Inl100ES1and2withonereactorcoolantloopnotinoperation thisspecification requiresthatt'eplantbei.natleastHOTSTN'DBYwithin1hour.InNODE3,'singlereactorcoolantloopprovidessufficient heatremovalcapability forremovingdecayheat;however,singlefailurecons~rationsrequirethattwoloopsbeOPERABLE.

Int<ODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficient heatremovalcapability forremovingdecayheat;butsinglefailureconsiderations requirethatatleasttwoloopsbeOPERABLE.

ThusifthereactorcoolantloopsarenotOPERABLE, thisspecification requirestwoRHRloopstobeOPERABLE.

Theoperation ofoneReactorCoolantPumporoneRHRpumpprovidesadequateflowtoensuremixing;preventstratification andproducegradualreactivity changesduringboronconcentration reductions intheReactorCoolantSystem.Thereactivity chanoerateassociated withboronreduction will,therefore, bewithinthecapability ofoperatorrecognition andcontrol.Therestrictions onstartingaReactorCoolantPumpwithoneormoreRCScoldlegsl,essthanorequalto188FareprovidedtopreventRCSpress~retransients,-

causedbyenergyadditions fromthesecondlysystem,whichcouldexcedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeprotected againstoverpressure transients andwillnotexceedhelimitsofAppendixGbyeither(1)restricting thewatervolumeinthepressurizer andtherebyproviding avolumefortheprimarycoolanttoexpandinto,or(2)byrestricting startingoftheRCPstowhenthesecondary watertrapratureofeachsteamgenerator islessthan50FaboveeachoftheRCScoldlegtemperatures.0.C.Cook-Unit183/44-1 3/4.4REACTORCOOLANTSYSTe.l8ASES3/4.4.2and3/<.4.3SAFETYVAL'/ESThepressurizer codesafetyvalvesoperatetopreventtheRCSfrombeingpressurized aboveitsSafetyLimitof2735psia.Eachsaetyvalveisdesignedtorelieve420,000lbsperhourofsaturated steamatthevalvesetpoint.Thereliefcapacityofasinglesafetyvalveisadeauatetorelieveanyoveroressure condition uhichcouldoccurduringshutdown.

IntheeventthatnosafetyvalvesareOPERABLE, anooerating RHRlooo,connected totheRCS,providesoverpressure reliefcapability andwillpteventRCSoverpressurization.

Ouringoperation, a11pressurizer codesafetyvalvesmustbeOPERA8LEtopreventtheRCSfrombeingoressurized aboveitssafetyIimitof2735psig.Thecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgeraterosultina fromacomoletelossofloadassumingnoreactortripuntilthefirs~ReactorProtective Systemtripsetpoint:sreached(i.e.,nocreditistaken,oradirectroactortriponthelossorload)andalsoassuminanoooeration afthepoweroperaedreliefvalves.orsteamdumpvalves.Oemonstration ofthe'afety valves'i, tsettinasui11occuronlyduringshudownandwillbeperformed inaccordance uiththe"rovisicns ofSectionXIoftheASl1EBoilerandPressureCode,1974Edition.0.C.COOK-Ui'(IT I83/44-Ia REFUELING OPERATIONS BASES3/4.9.6MANIPULATOR CRANEOPERABILITY TheOPERABILITY requirements forthemanipulator cranesensurethat:1)manipulator craneswillbeusedformovementofcontrolrodsandfuelassemblies 2)eachcranehassufficient loadcapacitytoliftacontrolrodorfuelassemblyand3)thecoreinternals andpressurevesselareprotected fromexcessive liftingforceintheeventtheyareinadvertently engageddur-ingliftiingoperations.

'I3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestriction onmovementofloadsinexcessofthenominalweightofafuelassemblyoverotherfuelassemblies ensuresthatnomorethanthecontentsofonefuelassemblywillberupturedintheeventofafuelhandlingaccident.

Thisassumption isconsistent withtheactivityreleaseassumedintheaccidentanalyses.

3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION Therequirementthat atleastoneresidualheatremoval(RHR)loopbeinoperation ensuresthat(1)sufficient coolingcapacityisavailable toremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELING MODE,and(2)sufficient coolantcirculation ismaintained throughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.

Therequirement tohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperating RHRloopwillnotresultinacompletelossofresidualheatremovalcapability.

Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailable forcorecooling.Thus,intheeventofafailureoftheoperating RHRloop,adequatetimeisprovidedtoinitiateemergency procedures tocoolthecore.3/4.9.9CONTAINMENT PURGEANDEXHAUSTISOLATION SYSTEMTheOPERABILITY ofthissystemensuresthatthecontainment ventandpurgepenetrations willbeautomatically isolatedupondetection ofhighradiation levelswithinthecontainment.

TheOPERABILITY ofthissystemisrequiredtorestrictthereleaseofradioactive materialfromthecontain-mentatmosphere totheenvironment.

D.C.COOK-UNIT 1B3/49-3 REFUELING OPERATIONS BASES3/4.9.10and3/4.9.11lriATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictions onminimumwaterlevelensurethatsufficient waterdepthisavailable toremove99KoftheassumedlOXiodinegapactivityreleasedfrom.theruptureofanirradiated fuelassembly.

Theminimumwaterdepthisconsistent withtheassumptions oftheaccidentanalysis.

3/4.9.12STORAGEPOOLVENTILATION SYSTEMThelimitations onthestoragepoolventilation systemensurethatallradioactive materialreleasedfromanirradiated fuelassembly'will befilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodischarge totheatmosphere.

TheOPERABILITY ofthissystemandtheresulting iodineremovalcapacityareconsistent withtheassumptions oftheaccidentanalyses.

3/4.9.13SPENTFUELCASKMOVEMENTThelimitations ofthisspecification ensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrained tothepathandliftheightassumedintheCaskDropProtection Systemsafetyanalysis.

Restrict-ingthespentfuelcaskmovementwithintheserequirements providesprotection forthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.

3/4.9.14SPENTFUELCASKDROPPROTECTION SYSTEMThelimitations ontheuseofspentfuelcasksweighinginexcessof110tons(nominal)

-provides assurance thatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistent withtheassumptions usedinthesafetyanalysisfortheperformance oftheCaskDropProtection System.D.C.COOK-UNIT 1IB3/49-4 Attachment No.3toAEP:NRC:00420A DonaldC.CookNuclearPlantUnitNos.1and2DecayHeatRemovalTechnical Specifications

~~I~~~I~]~~~IIII~~~~~s~~ss~~~I.st--s-s-.r~~~s~~s~~~~~s~~~~s~~~~~i~~~~

I~~g~~~~~~~~~~~~~~~~~~e~~I~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I0~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~I'~~~~~~aI'~III~~~~0~Ie~~~~f~~~~~I~~~~~I~~~0~~~~~~~0~~~~~~~~~~a-Ia4I,~~0~~S~l~~~~IOt~~~~~0~~~~~0~0~~f~~~l~e-~~~~t~~

REACTOR'".GOLANT SYSTEMSHUTDOWNLIMITINGCONDITION FOROPERATION 3.4.1.3a.AtleasttwoofthecoolantloopslistedbelowshallJ1.ReactorCoolantLoop1anditsassociated steamreactorcoolantpump,*beOPERABLE:

generator and2.ReactorCoolantLoop2anditsassociated steamgenerator andreactorcoolantpump,*3.ReactorCoolantLoop'anditsassociated steamgenerator andreactorcoolantpump,*4.ReactorCoolantLoop4anditsassociated steamgenerator andreactorcoolantpump,*5.ResidualHeatRemoval-East,**6.ResidualHeatRemoval-West"'.Atleastoneoftheabovecoolantloopsshallbeinoperation.**"

APPLICABILITY:

MODES4and5ACTION:a.Withlessthantheaboverequired, loopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredloopstoOPERABLEstatusassoonaspossible; beinCOL'DSHUTDOWNwith-in20hours.b.Withnocoolantloopinoperation, suspendalloperatiors in-volvingareduction inboronconcentration oftheReactorCool-antSystemandimmediately initiatecorrective actiontoreturntherequiredcoolantlooptooperation.'A reactorcoolantpumpshallnotbestartedwithoneormoreoftheRCSco!dlegtemperatures lessthanorequalto152oFunless1)thepressu~izer watervolumeislessthan62.00Kofspanor2)thesecondary watertemperature ofeachsteamgenerator islessthan50FaboveeachoftheRCScoldlegtemper-atures.Operability ofareactorcoolantloop(s)doesnotrequireanOPERABLEauxiliary feedwater system.**Thenormaloremergency powersourcemaybeinoperable inMODE5.-""Allreactorcoolantpumpsandresidualheatremovalpumpsmaybede-energized foruoto1hourprovided1)nooperations arepermitted thatwouldcausedilutionofthereactorcoolantsystemboronconcentration, and2)coreout-lettemperature ismaintained atleast10oFbelowsaturation tempera;ure.

D.C.Cook-Unit23/44-3 REACTORCOOLANTSYSTEMSURVEILLANCE REUIREtlENTS 4.4.1.3.1 Therequiredresidualheatremovalloop(s)shallbedetermined OPERABLEperSpecification 4.0.5.4.4.1.3.2 Therequiredreactorcoolantpump(s),ifnotinoperation, shallbedetermined tobeOPERABLEonceper7daysbyverifying correctbreakeralignments andindicated poweravailability.

4.4.1.3.3 Therequiredsteamgenerator(s) shallbedetermined OPERABLEbyverifying secondary sideleveltobegreaterthanorequalto255ofwiderangeinstrument spanatleastonceper12hours.4.4.1.3.4Atleastonecoolantloopshallbeverifiedtobeinop'eration andcirculating reactorcoolantatleastonceper12hours.D.C,COOK-UNIT23/44-3a REFUELING OPERATIONS

.3/4.9.8RESIDUALHEATREHOYALANDCOOLANTCIRCULATION LIt'IITI<<G CONDITION FOROPERATION 3.9.8.1Atleastoneresidualheatremovalloopshallbeinoperation.

APPLIABILITY:YiODE6.ACTION:a.b.C.<lithlessthanoneresidualheatremovalloopinoperation, exceptasprovidedinb,below,suspendalloperations involving aninc~easeinthereactordecayheatloadorareduction inboronconcntrationoftheReactorCoolantSystem.Closeallcontainmntpenetrations providirg directaccessfromthecontain:~;ent atmosphere totheoutsideatmosphere within4hours.Theresidualheatremovalloopmayberemovedfromoperation forupto1hourper8hour.periodduringtheperformance ofCOREALTERATIONS inthevicinityofthereactorpressurevesselhotlegs.Theprovisions ofSpecification 3.0..3arenotapplicable.

SUR".EILANCEREQUIREi'iENTS 4.9.8.1Aresidualheatremovalloopshallbedeterm',ned tobeinoperation andcirculating reactorcoolantataflowrateof>3000gpmatleastonceper24hours.0.C.COO">NIT23/49-8

'REFUELING OPERATIONS LOll<IATERLEi/ELLIMITINGCONDITION FOROPERATION 3.9.8.2Twoindependent ResidualHeatRemoval(RHR)loopsshallbeOPERABLE.+

APPLICABILITY:

NODE6whenthewaterlevelabovethetopofthereactorpressurevesselflangeislessthan23feetwiththeupperinternals removed.ACTION:a.>lithlessthantherequiredRHRloopsOPERABLE, immediately initiatecorrective actiontoreturntherequiredRHRloopstoOPERABLEstatusassoonaspossible.

b.Theprovisions ofSpecification 3.0.3arenotapplicable.

SURYEILLANCEREUIREjlENTS 4.9.8.2TherequiredResidualHeatRemovalloopsshall-bedetermined OPERABLEperSpecification 4.0,5.*Thenormaloremergency powersourcemaybeinoperable foreachRHRloop.D.C.COOK-UNIT23/49-8a REFUELING OPERATIONS 3/4.9.10MATERLEVEL-REACTORVESSELLIMITINGCONDITION FOROPERATION

~~~3.9.10Atleast23feetofwater.shallbemaintained overthetopofthereactorpressurevesselflange.APPLICABILITY:

Duringmovementoffuelassemblies orcontrolrodswithinthe,reactorpressurevesselwhileinMODE6withtheupperinternals removed.ACTION:kiththerequirements oftheabovespecification notsatisfied, suspendalloperations involving movementoffuelassemblies orcontrolrodswithinthepressurevessel.Theprovisions ofSpecification 3.0.3arenotapplicable.

SURVEILLANCE REUIREHENTS 4.9.10Thewaterlevelshallbedetermined tobeatleastitsminimumrequireddepthwithin2hourspriortothestartofandatleastonceper24hoursthereafter duringmovementoffuelassemblies orcontrolrods.D.C.COOK-UNIT23/49-10 3/4.4REACTORCOOLANTSY"1BASES3/4.4.1REACTORCOOLANTLOOPSANDCOOLANTCIRCULATION Theplantisdesignedtooperatewithallreactorcoolant1oopsinoperation, andmaintainDNBRabove1.30duringallnormaloperations andanticipated transients.

InMODES1and2withonereactorcoolantloopnotinoperation thisspecification requiresthattheplantbeinaileastHOTSTAJ.DBYwithinIhour.InMODE3,asinglereactorcoolant1oopprovidessufficient heatremovalcapability forremovingdecayheat;however,singlefailureconstrationsrequirethattwoloopsbeOPERABLE.

InMODES4and5,asinglereactorcoolantlooporRHRloopprovidessufficient heatremovalcapability forremovingdecayheat,;butsinglefailureconsiderations requirethatatleasttwoloopsbeOPERABLE.

ThusifthereactorcoolantloopsarenotOPERABLE, ihisspecification requirestwoRHRloopstobeOPERABLE.

Theoperation ofoneReactorCoolantPumporoneRHRpumpprovidesadequa.eflowtoensuremixing,preventstratification andproducegradua1reactivity changesduringboronconcentration reductions intheReactorCoolantSystem..hereactivity changerateassociaiedwithboronrductionwill,therefore, bewithinthecapability ofoperatorrecognition andcontrol.Therestrictions onstartingaReactorCoolantPumpwith.oneormoreRCScoldlegsl.essthanorequalto152OFareprovidedtopreventRCSpressuretransients,-

causedbyenergyadditions fromthesecondssystem,whichcouldexceedthelimitsofAppendixGto10CFRPart50.TheRCSwillbeproiected againstoverpressure iransients andwillnotexceed=helimiiso7AppendixGbyeither(1)restricting thewatervolumeinthepressurizer andtherebyproviding avolumefortheprimarycoolanttoexpandinto.or(2)byrestricting startingofthePCPstowhenthesecondary watert~rature ofeachsteamgenerator islessthan50ofaboveeachoftheRCScoldlegtemperatures.D.C.Cook-Unit2B3/44-1 3/4.4REACTORCOOLANTSYSTEMBASES3/4.4.2and3/4.4.3SAFETYVALVESThepressurizer codesafetyvalvesoperatetopreventtheRCSfrombeingpressurized aboveitsSafetyLimitof2735psig.Eachsafetyvalveisdesignedtorelieve420,000lbsperhourofsaturated steamatthevalvesetpoint..Thereliefcapacityofasinglesafetyvalveisadequatetorelieveanyoverpressure condition whichcouldoccurduringshutdown.

IntheeventthatnosafetyvalvesareOPERABLE, anoperating RHRloop,connected totheRCS,providesoverpressure reliefcapability andwillpreventRCSoverpressurization.

Duringoperation, allpressurizer codesafetyvalvesmustbeOPERABLEtopreventtheRCSfrombeingpressurized aboveitssafetylimitof2735psig.Thecombinedreliefcapacityofallofthesevalvesisgreaterthanthemaximumsurgerateresulting fromacompletelossofloadassumingnoreactortripuntilthefirstReactorProtective Systemtripsetpointisreached(i.e.,nocreditistakenforadirectreactortriponthelossofload)andalsoassumingnooperation ofthepoweroperatedreliefvalvesorsteamdumpvalves.D.C.COOK-UNIT2B3/44-la REFUELING OPERATIONS BASES3/4.9.6MANIPULATOR CRANEOPERABILITY TheOPERABILITY requirements forthemanipulator cranesensurethat:1)manipulator craneswillbeusedformovementofcontrolrodsandfuel.assemblies, 2)eachcranehassufficient loadcapacitytoliftacontrolrodorfuelassembly, and3)thecoreinternals andpressurevesselareprotected fromexcessive liftingforceintheeventtheyareinadvertently engagedduringliftingoperations.

3/4.9.7CRANETRAVEL-SPENTFUELSTORAGEBUILDINGTherestriction onmovementofloadsinexcessofthenominalweightofafuelandcontrolrodassemblyandassociated handlingtooloverotherfuelassemblies inthestoragepoolensuresthatintheeventthisloadisdropped1)theactivityreleasewillbelimitedtothatcontained inasinglefuelassembly, and2)anypossibledistortion offuelinthestoragerockswillnotresultinacriticalarray.Thisassumption isconsistent withtheactivityreleaseassumedintheaccidentanalyses.

3/4.9.8RESIDUALHEATREMOVALANDCOOLANTCIRCULATION Therequirement thatatleastoneresidualheatremoval(RHR)loopbeinoperation ensuresthat(1)sufficient coolingcapacityisavailable toremovedecayheatandmaintainthewaterinthereactorpressurevesselbelow140oFasrequiredduringtheREFUELING MODE,and{2)sufficient coolantcir-culationismaintained throughthereactorcoretominimizetheeffectofaborondilutionincidentandpreventboronstratification.

Therequirement tohavetwoRHRloopsOPERABLEwhenthereislessthan23feetofwaterabovethereactorpressurevesselflangeensuresthatasinglefailureoftheoperating RHRloopwillnotresultinacompletelossofresidualheatremovalcapability.

Withthereactorvesselheadremovedand23feetofwaterabovethereactorpressurevesselflange,alargeheatsinkisavailable forcorecooling.Thus,intheeventofafailureoftheoperating RHRloop,adequatetimeisprovidedtoinitiateemergency proce-durestocoolthecore.D.C.COOK-UNIT2B3/49-2 REFUELING OPERATIONS BASES3/4.9.9"ONTAINMENT PURGEANDXHAUSTISOLATION SYSTEMTheOPERABILITY ofthissystemensuresthatthecontainment ventandpurgepenetrations willbeautomatically isolatedupondetection ofhighradiation levelswithinthecontainment.

TheOPERABILITY ofthissystemisrequiredtorestrictthereleaseofradioactive materialfromthecontainment atmosphere totheenvironment.

3/4.9.10and3/4.9.11MATERLEVEL-REACTORVESSELANDSTORAGEPOOLTherestrictions onminimumwaterlevelensurethatsufficient waterdepthisavailable toremove99%oftheassumed10%iodinegapactivityreleasedfromtheruptureofanirradiated fuelassemble.

Theminimumwaterdepthisconsistent withtheassumptions oftheaccidentanalysis.

3/4.9.12STORAGEPOOLVENTILATION SYSTEMThelimitations onthestoragepoolventilation systemensurethatallradioactive maerialreleasedfromanirradiated fuelassemblywillbefilteredthroughtheHEPAfiltersandcharcoaladsorberpriortodis-chargetotheatmosphere.

TheOPERABILITY ofthissystemandtheresult-ingiodineremovalcapacityareconsistent withtheassumptions oftheaccidentanalyses.

3/4.9.13SPENTFUELCASKMOVEMENTThelimitations ofthisspecification ensuresthat,duringin-sertionorremovalofspentfuelcasksfromthespentfuelpool,fuelcaskmovementwillbeconstrained tothepathandliftheightassumedintheCaskDropProtection Systemsafetyanalysis.

Restrict-ingthespentfuelcaskmovementwithinthese,requirements providesprotection forthespentfuelpoolandstoredfuelfromtheeffectsofafuelcaskdropaccident.

3/4.9.14SPENTFUELCASKDROPPROTECTION SYSTEMThelimitations ontheuseofspentfuelcasksweighinginexcessof110tons(nominal) providesassurance thatthespentfuelpoolwouldnotbedamagedbyadroppedfuelcasksincethisweightisconsistent withtheassumptions usedinthesafetyanalysisfortheperformance oftheCaskDropProtectio.s System.D.C.COOK.-UNIT2B3/49-3