ML19345E279
| ML19345E279 | |
| Person / Time | |
|---|---|
| Site: | McGuire |
| Issue date: | 12/03/1980 |
| From: | DUKE POWER CO. |
| To: | |
| Shared Package | |
| ML19345E268 | List: |
| References | |
| EP-1-A-5000-04, EP-1-A-5000-4, NUDOCS 8012230543 | |
| Download: ML19345E279 (22) | |
Text
,
O EP/1/A/5000/04 PAGE 1
0F _9_
DUKE PC'4ER COMPANY McGUIRE NUCLEAR STATICN STEAM GENERATCR TU3E RCP*CRE This procedure esvers the acticus necessar7 :o :aka is avant of a Steam Generature Tube Rup tura.
1.0 Svmo: cms 1.1 EMF-33 " Air Ej ec:cr Radiation" Alar =.
1.2 EMF-34 "S/G 31cwdcwn Radiacion" Alars.
1.3 Steam 71cv/Feedvatar Flcw Mis = acch Alars (en one S/G).
1.4
!screasi=g S/G 'Ja:ar level (on cue S/G).
1.3 Rapid decrease is ? essuri:er Pressura and Laval.
2.0
- ==ediata Ac:1cus
- .1 Pe.1fCM1.lt imedia:L Acti:ns af E7/1/A/5000/01 (ltrinedLLCL Acci:M ntd 04:gncs.ci:.s) if atat at,1zady ::::trplu;ted.
3.0 Subsecuen
Ac:1cus Ini:121 / N/A
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3.i ALL necessa.~y imedi=tz accians af EP/1/Al5000/01 (:.w edi1:z Actions and Di=gncs.L s) 11 ve been pe.tfa.=ed.
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3.2 If for any.tz son LL NC Pwps atz.ciipped, ensa.te d.1 ca.~.e de y F.e : is being.te.maved cy netwt:L :Lmnb bn. 7taczed :.2 A?/1lA-
/5500/09 (Piasc Operacians Du. ting Na.:w::.L Civnb icn) and pe.1fc.w 1 plicable s.:zps con:wsten.c i lt sabsequen: s.tws in 6.is procedurz.
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3.3 Nctify EP =c sa=pla cencain=ent at=csphere and S/Gs :o identify presence of abner =al radicac:1it:7
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3.4 '4h11a ide 2:1fying and iscla:ing :he faul:ed S/G ac: ceding :o Sceps 3.5, con:inua vi h subsequan: Staps 3.6 through 3.17.
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3.5 !dantif7 the f aultad S/G(s) by one or =cce of :he felicwing methods:
3.3.1 An unexpected rise is :he S/G water level wi:h auri'12:7 feedwacar flow reduced or s:cpped.
3.5.2 High radiation from :he S/G bicwdown 11:a radiacica =cni:c via IMF-34 3.3.3 High radia:ica f cm any S/G, as de:arnised by 2nalysis or a sa=cla.
3.5.4 Steam ?lcw/C7 Flow sis =a:ch on affac:ad S/G.
l 3.5 ? ::: d :: E?!C/Ai5000/06 (Alasc: :nd E?/C/A/?000/07 iSir E:ne.1-
- zncy) and ;
- etic.m :p LL::ble stws :.:n:wstent in cite stars :f this ;:. cced= z.
i 5
e 012 e 305e/3
IP/1/A/5000/04 PAGE 2
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!ai:121 / N/A
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3.7 Reset CA nodula:ing valves and secure CA flow :s faul:ed S/G.
3.7.1 Moni:or CA Condensa:e Storage Tank level and Upper Surge Tank. Verify CA Suc:1cn aut -swap := RN ac 2.0 psig suctica pressure.
3.7.2 Resec Turbine Driven CA Pump.
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3.3 Close che isolation valve in :he s:aam line :o the Turbine CA Pump associated wi:h :he faul:ed S/G. If :he faul:ed S/G is "3", unicek and close ISA-2 (Main Steam 13 :s Aux. FD%'?T No.1 Maintenance Isola:ica). If the faul:ed S/G is "C", unlock and close iSA-1 (Main Steam IC :s Aux. FDb'?* No. 1 Main:enance Iso-la: ion).
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3.9 7erify the affect S/G SM PCR7 is closed by Observing decrease in S/G Steam 71 w and Stacus indicacion on MC3.
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3.10 7erify that all pressuri ar ?CRVs are closed via closed sca:us en MC3 and ?RT pressure.
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3.11 7erify the open s:a::s and ava114 bill:7 of power :o all pressurizer POR7 isola:ica valves.
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3.12 Af ter NV Pump Operation has been verif:.=d ri :he vide range NC pressure < 1500 psig, step all NC Pumas.
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3.12.1 Close :he N Pump niniflow isolacien valves 1N7-151A CN Pumps Recirculaci:n) and 1N7-1503 (NV Pu=ps Recirculacica).
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3.12.2 Should vide range NC pressure subsequently rise :s gresce than 2000 psig, reopen 1:N-151A CN ? umps Recircula:1on) and 1:N-1503 (IN Pumps Recircula:icn).
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3.12 If NC Pumps are scapped, seal injection ficw of =8 gpm per pump should be naistained.
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3.14 7erify all ISF ::mpenen:s have assumed : heir safeguards sca:us.
? "'mity align any : hat did not.
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3.14.1 During Upper Head Injec:ica Gr:ups 3 and 4 (if spray ac:u-a:ed) ::cpletely ligh:ed, G::ups 1, 2, 5, 6 and 7 complece--
ly dark.
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3.14.2 Af:e Upper Head Injec:ica Groups 3,
- l. (if spray ac:uated) and 6 cc::pletely ligh:sd, Groups 1, 2, 5 and 7 :omple:ely dark.
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3.14.3 If ei:her ::ain of the 30? ISF C =:cnents noni::: lights in G up 1 and Gr:up 4 are cut of sequence wi:h :he c:her ligh:s in :hei respec:1ve g :cp, the CAC nus; be in:errogated :s c' : sin a prin: cut of _isaligned 3C? ISF c
Cenponents.
EP/1/A/5000/04
? AGE 3
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Ini:ial / N/A
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3.14.4 If tha Phase A Containment Isolacion Monitor Ligh:s are also out of sequence, nanually ini:iace Phase A Containnent Isolation.
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3.14.5 If the CAC is inoperable, perforn 30P ESF Components aligmnant checklist, Enclosura 4.1.
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3.14.6 Perfors ?ost Accident Checklist, Enclosure 4.2.
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3.15 Open the SM Isolation 3ypass, then close :he SM !sola:ica valve on the faul:ad S/G. Slowly close :he SM ! solation 3ypass on
- he faul:ad S/G. If :he faul:ad S/G pressure increases :o =1150 psig and the condansar is availabla, open :he Isolacion 3ypass and dump staam :o condenser to preclude S/G ?ORY actuation.
/
3.16 If.he SM !sola: ion or SM Isolation 3ypass on :he faul:ad S/G cannot be closad, close the SM !aolacion and SM !sola:1on 3y-passes on the non-faultad S/Gs as described in Scap 3.15.
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3.17 Rasac :he Safa 7 Injectica, and Con:sinmanc Phase A Isolacion, Diesel Generator Load Sequencars and Main Steam Isolacion Rasets.
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3.17.1 Automacic raini:iation of safa:7 injection will noc occur since ha reactor trip braakars are not rasac.
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3.13 Subsequent to :his Scap, should loss of offsi:a power occur, nanual ac: ion (e.g., nanual safecy injec:1on ini:iacion) will be required to load the safaguards equipman: onto the diesel powered emergency busses.
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3.19 Align Inscruman: Air to Cour21-mn: by opening:
171-1293 (A ESS Header Cont. Isol. CTSD) 17I-1603 (3 ISS Header Cont. Isol. OTSD) 17I-362A (VI cc Annulus Vent Cont. Isol.)
17!-1503 (Lwr. Cont. Non Ess Edr. C/I OTSD) 17I-1483 (Upp. Conc. Non Ess Edr. C/I OTSD)
/
3.20.U:ar the faul:ad S/G has been identified and isola:ad, begin a rapid cooldown of :he NC Syscas :o 507'T by use of :he s:aa=
dump by procseding :o Stap 3.20.1, or 3.20.2.
CAU""CN If all NC Pumps ara stopped. _oni:or Upper Vessel head :hornoccupla :o assure subcooling in head area is not lost.
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i EP/1/A/S000/04 PAGE 4
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Initial / N/A
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3.20.1 If offsite power and the condenser (C-9) are available and the faulted S/G is isolated, dump steam to the main j
condenser from the non-faulted S/Gs by manual control of -de steam header pressure controller.
/
3.20.2 If offsite power is not available or the main condenser i
is not available or faulted S/G cannot be isolated, dump steam from the con-faulted S/Gs through.he S/Gs PORVS.
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3.21 After the NC System temperature has been reduced to 507'F, begin a depressurization of -Je NC System to <l100 psig while saintaining
>50 7 subcooling by proceeding to Step 3.23.
/
3.22 When F-11 pressure is illuminated, =1900 psig, block Low Steam Line Pressure Safety Injection.
/
3.23 During subsequent controlled NC Syscam dspressurisation, the NC System pressure criterion for tripping the NC Pumps established in Step 3.12 DOES NOT APSLY.
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3.24 If NC Pumpe are running, use pressurizer spray va17es for depressurization.
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3.25 If NC Pumpe are not : mM,g, pressurizar PORVs may be used for depressuri:ation.
/
3.26 If neither Step 3.24 or 3.25 are available for depressurization, pressuri=er and1'=ry spray, via 15V-21A, may be utilized, but a=d m spray valve cycling must be "4=4 ed to prevent hermal shock of pressurizer spray cozzle.
/
3.27 While depressurizing, isolate all UHI discharge valves at 1900 psig.
/
3.23 Monitor ennttinmen.C inGm*lons b verifu ba.C 11. ass of.teacto.t cool 1nt a.ther uan de S/G t.de.tunt.ute is no.c 1.n ptogtess.
if contz,utment sump Lt. vet or 1 ton.c:inment sample (if c.unknh c.:
dis time) aate not in de normL pte-even.:.tange, funciter widon.:
.tecover:] ms.c ce di.tec.ted wtu.ng o E?!1/A/5000/02 (Lass of Re1chr CocL1nt).
/
3.29 After.he depressurization operation has been terminated, courinue a monitor and maintain the NC Syscam pressure at 1100 peig and the pressuri=er water level >20%.
(
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3.20 ~f the pressuri=er water level continues to rise or remains cearly constant concurrent with a NC Syscam pressure decrease, suspect leakage from.he pressuri:ar steam space.
EP/1/A/5000/04 PAGE 5
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Inizial / N/A
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3.31 Moni:or :he pressuri:e reliaf :ank (PRT) pressure, ta=peracure and level :o identify con:inuously increasing cendi: ions.
/
3.31.1 Close :he POR7 isolacion valves if a NC leak :o the PRT is idencified.
/
3.31.2 Moni:or PRT condi: ions :o verify ?RT in:egri:y.
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3.32 if p.tessuasi:z.t tetief ::nk in.tegri.cy is Las., abnc.sma.l. canta.inmen.c candLtians eculd ex.is.t and may no.c be stue 4tdi:2.Cians af 1 can.Clitue.d loss af. tea,cta.t :.acL:n.C.
If stese candLClans pe., sht a.ftz,t ziashte ute p. essa. size.t PCRV bola. Clan values, fu.~titct
.tecove.ty musC be dLte.cced accan. ding Ca E?l1/A/5000/X iLass af Reacca.t CocL:n.l.
/
3.33 The conditions of Step 3.34 nus be satisfied before proceeding to Step 3.35.
/
3.34 If the pressurizar water level subsequently concinues :o increase couer. ant vich a NC system pressure increase, :he safety injec-
- 1on flow is g:sater :han the leak. Then, stop all opera:ing ECOS Pumps noc needed for normal charging and NC Pu=p Seal Injection flow, =8 gym per pump, when:
/
3.34.1 NC System pressure has increased by ac laast 200 psi (af:e shutting :he spray valves or verified closure of :he pressuri:ar PCRVs).
/
3.34.2 An indicacad water lavel has returned in :he pressuri:er.
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3.34.3 The NC System indicated subcooling 3ASD CN "D E RANGE TEMPERATURE IN TE NCN-FAUL*D LCOPS OR THE CCE EXIT TI:ELMCCCUPLES is 2. 5.0,*?.
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3.35 Following termination of safety injec:1ca, NC System pressure should equali:e with the faul:ed S/G pressure.
/
3.36 If, during subsequenc recovery acticas, pressurizer vacer level cannot be u S cained above 20 percen indicated ' eval c :he a
NC System indicated subcooling 3ASD CN ~4DE 3ANGE 74PERA~URE IN *HE NCN-FAUL*D LCCPS CR TE CCRE EXIT TE3P.CCCUPLES cannot be saan ained at a value greace: chan f0*? cperate ICCS puses as required to re-escablish pressurizar vacar level and subcooling.
/
3.37 If pressuriner water level and subcooling cannot be as:ablished by this nachod, MANUALLY RE D I!! ATE SAFE ~Y OUICT!CN recurs :o Step 3.21 and proceed vi:h :he instrue:1on fron : hat point.
EF/1/A/5000/04 P.WZ 6
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Ini.ial / N/A
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3.38 nroc:la UN-238 (Charging Line Flow Control) as necessarf :o supply ~3 gpm seal injection flow.
/
3.39 Isolace :he 3C by closing:
1NI-4A (3IT Inlac ! sol.)
13I-53 (3C Inlet Isol.)
INI-9A (3C Disch. Isol.)
13!-103 (3C Disch. Isol.)
/
3.40 Align :he NV ? ump :s :ake a suction f:cm :he 7CT:
Open:
LW-141A (VCT Qu:la: Isolacion)
LW-1423 (VC"' Cu:le: Isolation)
Close:
UN-221A (NV Pumps Suc:. From ?"4ST)
LW-2223 (NV ?u=ps Suct. From F'4ST)
/
3.41 Establish normal charging as follows:
Close UN-241 (Regen. EI Tube Side Inle Cne:1.)
Open:
1.W-244A (Charging Line Conc. Isol. OTSD)
INV-2453 (Chargi=g Line Cont. Isol. OTSD).
/ '
3.42 Slowly :hroc:le open LW-241 (2egen. HI Tube Side Inle: Cat:1.; as it is opened adjust LW-233 (Charging Line Flow Control) as necessar/
- o naintain seal injection flow.
/
3.43 Re-establish IC flov =c :he Auxiliary 3cilding Non-Essential Header as follows:
Open: IIC-1A (T n. lA to A3 Non Ess Rec Isol.)
IIC-23 (T:n. 13 cc A3 Non Ess Ret Isol.)
NOTE: Verif7 both ND Pumps are secured prio: :o closing IIC-56A and LE-813.
Close: IIC-36A (KC :o A :D HI)
IIC-al3 (KC :o 3 ND EX)
As flow decreases, open:
IIC-30A (Trn. lA :o A3 Non Ess Sys ! sol.)
IIC-533 (!=.13 :o A3 Non Ess Sys Isol.)
/
3.44 Establish Seal 'Ja:e: Re:u n by opening:
INV-94A (NC Pumps Seal Rec C/I L aide)
UN-953 (NC Pumps Seal Re: C/! OTSD)
/
3.45 Establish le:down as follows:
/
3.45.1 Open:
UN-1A (NC L/D ! sol. :o Regen HX)
INV-2A (NC L/D Isol. :o Regen HZ)
INV-73 (La:down Con:. Isol. Cu: side)
EP/1/A/5000/04
? AGE 7
CF 9
Initial / N/A i
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3.45.2 Close:
IN7-459A if soc already closed.
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/
3.45.3 Slowly throc:le open LNV-459A (A L/D Orif. OTLT Cone.
Isol.) :o 13 open for '5 minutes :s prevent :hermal shock :s lecdown line.
/
3.45.4 Af:er.he lecdown line is warmed, open 1NV-458A (3 L/D Orif. OTLT 01nc. Isol.) and/or 1N7-4571 (C L/D Orif.
OTLT Cont. Isol.), close 1NV-459A.
/
3.46 Verify INV-124 (Lecdown ?:ess. Control) is nodula:ing :o saintain lecdown pressure an '350 psig.
/
3.47 Re-establish :he use of :he pressurizer heaters to naintain the NC Syster pressure.
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3.48 Secure 211 NC Pumps except 3 or A in =rder :o begin cocidown. If no NC Pumps are ru=ning, scar: 3 or A (if in non-faul:ed loop) per 0?/1/A/6150/02 (NC Pump Operacion).
/
3.49 Perform a shutdcun margin calcu.lacion :s verify NC 3cron Concen-
- acion is adequate to maintain 1.6% AK/K at 200*? prior :s proceeding :o Step 3.50 or 3.51.
/
3.50 If offsi:e power is available, begin a controlled cooldown of the NC System at a ra:e of abouc 50*7/hr by use of the steam dump :o che nain condensers from the non-faul:ed S/Ga. Control the water levels in :he S/Gs :o maintain S/G wecer level in the narrow range
>0%
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3.51 If offsite power is noc available, dump staan from :he non-faul:ed S/G through the S/Gs POR7s to provide a controlled cooldown of :he NC System ac a race of about 50*?/hr.
/
3.52 Simultaneous with the cooldown using :he non-faul:ed S/Gs, slowly 1
decrease the faulted S/G pressure by opening :he bypass valve :s i
the cendensar (if available), or using :he s:aam generacor power operated relief valve.
/
3.53 As pressure is reduced in :he faul:ed S/G, control :he NC ?: essure at a value approx 1=acely equal :o the s:eam pressure in :he faul:ed S/G :s $4ndm4 e :he leakage flow. NC Pressure control should be f
accamplished by use of :he pressurize: heaters and action of one i
of the follewing:
/
3.'53.1 Nor=al pressurizar spray (if an NC? is in se rice), or
/
3.53.2 Use of pressurizar auxiliary spray NY-21A (NV Spray :o
?::. ! sol.) (if spray is heated by la:down through :ne regenerative heat exchanger), or L
EP/1/A/5000/04
? AGE 3
0F 9
Initial / N/A
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3.53.3 3rief in:arsi::ent opening of one pressuri:er ?CRV.
/
3.54 Maintal: NC Sys:em tempera:ure and pressure vi:hin :he 11=1:s of :he c oldown cur te 1.6 in the Data 3ccic.
/
5.55 :f an uncontalizd NC Sustz:n izntessel-t*n o.t an uncontaLL:d
- d. top bt ptessard.:2.1 m.tst level ac:11s dwting t.ite ecolicwn ptacess, manuaLL.y ad.Ci.1C: safsty btjea.C.ian and.tefst t.2 ii?/1/A/5000/01 (Im ch ite Ac,0 ion and Disgnost.Les).
/
3.56 If NC Pressure control is accomplished by use of :he pressurizer PCRV, continuously soni:or :he ?RT pressure, :emperature and water level and take appr:priate ac: ions :o verify and maintain
?RT in:egrity. Verify pressuri:ar PORY closure using :he PCRV stem-counted position indica: ors and ?RT condi:icus.
If a NC leak :o :he ?RT is iden:iiied, close :he ?CRV isola:1on valves.
/
3.57 When.he NC Sys:em Pressure is 500 psig, close.he Cold I.eg accumula:or isolation valves.
/
3.53 Star: three upper and icwer con:ainmen: ven ila:ica uni:s.
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3.59 Rese: the con:rol permissive for recirculatica mode 13I-1343 and 1NI-185A (R3 Sump :o ND and NS).
/
3.60 Notify Heal:h Physics :o de: ermine ac:1vi:7 released fr:m :he air ejectors and/or staam relief ac:uation.
/
3.61 Notify Chemis:ry to determine :he extent of centamina:ica to :he secondary sys:em. Refer to Technical Specifica:icas (3.7.1.4).
/
3.62 Notify Chemis:ry :s periodically sample NC System bar:n concen-tratica to ensure hat dilution does not occur due :o S/G j
draining in:o NC System.
(
/
3.63 Continue :o cocidown and depressurize :he NC System and faul:ed l
S/G until the NC hot leg :emperatures are below 350*7 in :he t
I non-faul:ed loops and the NC wide range pressure is less than 385 psig (do not collapse :he pressurizar steam bubble).
I
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3.64 Throughouc :his cooldown procedure, maintain a 3:eam bubble in the pressuri:ar. Solid watar pressure centrol say not be effec:ive.
l
/
3.65 Place :he ND Sys:em in opera:1cn using 0?/1/A/6200/04 (Residual Hea: Removal System).
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3.66 Cantinue :he plan cooldewn in a nor=al node excep: :ha: after :he NC? opera:ica '..as been :ermina:ed, cen:inue to s4-"'1:aneously control :he faul:ad S/G s aan pressure and NC prassure :o ninimi:e
- he leakage flew.
l l
_ _..,.,. _ _. -. =. _,,_... _,
EP/1/A/5000/04
? AGE 9 _ 0F 9
dicial / N/A
/
3.67 When :he NC System hot lag :emperatures are reduced balcw 200*F, :he pressura in :he pressurirar say be reduced by using auxiliary spray until NC System pressure and :he faul:ed 3/G pressura equilibrace.
4.0 Enclosures 4.1 30P ESF Components Checklist.
4.2 Post Accident Valte Checklist.
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