ML19345E276

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Public Version of Revised Emergency Procedure EP/1/A/5000/02, Loss of Reactor Coolant
ML19345E276
Person / Time
Site: McGuire 
Issue date: 12/03/1980
From:
DUKE POWER CO.
To:
Shared Package
ML19345E268 List:
References
EP-1-A-5000-02, EP-1-A-5000-2, NUDOCS 8012230541
Download: ML19345E276 (27)


Text

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EP/1/A/9000/02 PAGE 1

0F 13 DUEZ ? OWE 3. COMP.uiT McGU!1E NUC1 EAR STA!!CN LOS5 0F REACTCR C00Lurr This procedura covers the felicving plant evolu:1 cue:

4.0 Alignmen

for Cold Lag Racirculation 5.0 Alignment for Hot Lag Rac1:culation 6.0 Racovery f:cm Loss of Offsite Power '4h11e in Recirculacion 1.0 Svmocoms 1.1 Rapid decrassa in pressurizar pressure and/or laval.

1.2 "!ca Condensar Doors Cpan" alarm.

1.3 Cone 21=nc sump level increase.

1.4 Ccnesd-nc camparatura increase.

1.5 Conc 3' = nc prassura increase.

1.6 Cone =d anc humidi:7 increase.

1.7 EMF-38 " Con-ad -=": Ei Par: Rad" ala:n.

1.3 EMF-39 "Conesd-mant 31 Gas Rad" alarm.

i 1.9 EMF-40 "Ccucainmen: Ei Iod Rad" alar =.

t 1.10 EMF-9 "Rasc:or 3"d wnZ Score Inst:.=nant Room #1" alarm.

1.11 EMF-16 "Raf-midna 3 ridge Unit 1 Reactor Su11 ding" ala:=.

1.12 EMF-51 " Annulus Moni:or" ala:m.

2.0

?==diaca Ac:1cus 2.1 P.tacezd L7. imedi:.cz Ac:Lau of EP/1/A/5000/01 (ime:Lic.cz Actions and Qic.g-nortiz.s) if no: :.f tza,du :::.:molaited.

3.0 subsequane Acticus In1:121 / N/A

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3.1 Al.L.tzqu.itzd imo'I"*' acticns af EP/1/A/5000/01 (TmedL:.CL Actions aatd Ciagncs.Cic.s) ha.ve beest pe:fc. med.

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3.2 Inaccurata ?:assur1:ar and S/G Laval readings say occur during accidant c:nditicus involving breaks inside contain-nant.

(This is caused by depressurizaticu and/or rafarance lag haatup). Raf ar :o McGuira Data 3cok Tabla 2.6 for cr:act c..nversions for ac:ual laval. Osa backup inst:-aa-

acien (i.e.:

CA Flev, SM ?:assura, NC ? assura and '41de Range Th, Tc).

/

3.3 Meni:cr T4ST laval closely. If TJST laval decrasses rapidly such thac.he T45T lov laval ala:s appears iminen: go :s Sac:1cn 1.0 of :his precedura.

so122no5fI l

IP/1/A/5000/02 PAGE 2

0F 13 Ini:ial I N/A

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3.4 7erify.ha:.he Post Accidenc Moni:oring (?AM) inst.=nants are operating and escording, these include: 'J/R NC Pressure and sampera:ura, SM pressure, S/G va:ar level, cone m manc pressure, F'4ST level Upper Surge Tank level, Aux. Feed-water CST and Pressurizar level.

/

3.5 ?.toceed c EPICIAl5000/06 (Alz,zc), EPICIAl5000/07 iSitz Eastgency) and EPICIAl5000108 (Gene,ut Eme.,tgency) u :coli:1-kl.z and pe,tfans :p.&"W s:.zes caneu,sa.n.c M de s zps in his p.tacedwte.

/

5.5 As he. RST Lzvel dec.tenu due :: safety kjec.cian ft:w, :iteck l

tha: de cont Lame.n.c sump tzvel u inc. teasing.

If de sump Livet u not inctza.,u.ng.te-evni-ncian af de symp=ms in

=?lllA/5000/01 (immedian Ac.tions and Cizgncs.cias) must be done.

/

5.7 Rue.c CA McM"&g vat.vu and CA Pump Turbinz and nt ct CA ft:w c de S/Gs ta maa:::in na,ze:w.tange Lzvel. If na,st:w.tange livel inc.:zasu in an unowhhed unne,z in one S/G, den ptacted c E?1llAl5000/04 (s.czam Gene.ta.can. Tube tuo.cwte).

/

3.3 Monitor CA Condensata S:orage Tack level and Upper Surge Tank Laval. 7erif7 CA sue:1on auto swap :s RN at 2.0 psig suction pressure.

/

3.9 verif7 all pressurizer PCR7s are closed via MC3 indicators. Verif7 open status and power status to all PCR7 isolation valves.

CAUTICN If the pressurizar PCR7s open at any :1:aa during this

ansient, verify : hat :he valves raciose when the pressur-l izar pressure drops below 2315 psig.

/

3.9.1 If any ?ORY fails to close, closa its associated block valve.

3.10 7e 1f7 all IS7 components have assumed. heir safaguards status.

Manually align any : hat did not.

/

3.10.1 During Upper Head Injec_1on Groups 3 and a (if spray actua:ad; completaly lighead, Groupe 1, 2, 5, 6 and 7 complacaly dark.

/

3.10.2 Af:ar Uppsr Head ~njec: ion Groups 3, 4 (if spray ac:ua:ad) and 6 completaly ligh:ad, Groups 1, 2, 5 and 7 :cmplessly darh

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3.10.3 If ai:har ::ain of ha 30? IS7 Ccaponents :noni:or lish:s in Group 1 and 4 are ou: of sequenca vi:h :he other 11gh:s in hair :sspec:ive g cups, :he CAC sus: be in:ar cga:sd :o

IP/1/A/5000/02 PAGE 3

0F 13 Initial / N/A

o obtain a printout of sisa11gned 30P ESF Components.

/

3.10.4 Ti che Phase "A" Concainmenc Isolation Monitor lights are out of sequence, MANUALLY INITIATE PHASE A ISO-LATION.

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3.10.5 If the OAC is inoperable, perforn 3CP IST Componen:s aligmnants checklist, Inclosure 7.1.

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3.10.6 Perform the Post Accident Chark!!st, Inclosura 7.2.

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3.n

  • 4 hen the fonoving condizions exist, :ssac Safec7 Injectica by proceeding to scap 3.12.

If the condicions cannot be nec, proceed to step 3.31.

NOTE The condi. ions given below for :erminacing Safety Injection should be concinuously =cnitored through-out this procedura.

/

3. H.1 NC Pressure is graatar han 2000 psig and increasing, psig (record for futura rafarence).

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3.n.2 Frassurizar level is grescar than 50%.

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3.H.3 The NC indicated subcooling >50*?.

/

3.11.4 CA flew is isolated to an depressurized S/Ge and ac least 865 gym is injected into the non-faultad j

S/Gs g indicated narrow range level in at least one S/G is 25% and increasing.

/

3.12 Rasec Safety Injection, Phase "A" Isolation and he 3/G load sequencer and stop the NI, ND and N7 pumps not required for normal charging and NC pump seal injec:1on flow.

/

3.13 If NC PM.sswte. itops below 1845 psL $ f p.tesswti:2.t level 3

i dtops bel:w 20%, MANUALL' REINTTTATE SAFET/ INJECTTCN to l

es t-hh A NC p.tesswte and p.1zsswti:ez Level. Go :a s. cap 3.1 in EP/1/A/5000/01 (immodier Ac.cians and QL1gnosticsl.

/

3.14 If safety injection is rainiciated after :a:mination,.he N7 pumps cannot be secured until.he NC pressure >2000 psig or NC subccoling >65'?.

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3.15 Automatic re1=1:12 tion of safety injec:1on vill not accur since

.he reac:or rip breakers are soc resec.

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3.16 Sutocquent to :his step should loss of offsi:e power occur nanual safety injec:1on will be required :o load :he I/S equipment onto the 3/G busses.

O EP/1/A/9000/02 PAGE 4

0F 13 Ini:ial / N/A

/

3.17 Throc.le 137-238 (Charging line Flow control) as necessary :o supply 'S gpm seal injec:1on flow to each pump and naintain pressurizar level ac =25%.

/

3.13 Isolace the 3IT by closing:

INI-4A (3IT Inlac Isol.)

INI-53 (3IT !alet Isol.)

INI-9A (3IT Disch. Isol.)

INI-103 (3IT Disch. Isol.)

/

3.19 Establish VI :o.he concstn==nc by opening:

l CACION I

Afcar opening each valve listed, allow the VI header pressure to stabilize before cpening the next valve.

i

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3.19.1 17I-1295 (A Ess. Header Conc. Isol. OTSD)

/

3.19.2 IVI-160B (3 Ess. Header Con:. Isol. OTSD)

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3.19.3 17I-1483 (Upp. Cont. Non-Esa. 3dr. C/I OTSD)

/

3.19.4 17!-150B (Lwr. Conc. Non-Ess. Edr. C/I OTSD)

/

3.19.5 17!-362A (VI :o Acnulus venc. Conc. Isol.)

3.20 Establish IC flow to the Auxiliar7 3nwhE Non-Esaancial header as follows:

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3.20.1 Open the following valves:

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3.20.1.1 lIC-1A (Trn.1A :o A3 Non-Ess Rec. Isol.)

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3.20.1.2 1KC-23 (Trn.13 :o A3 Non-Esa Rec. Isol.)

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3.20.2 Close :he following valves:

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3.20.2.1 1XC-56A (KC :o A ND HI)

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3.20.2.2 1XC-813 (KC to 3 ND HI)

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3.20.3 As flow decreases, open:

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/

3.20.3.1 1KC-50A (Trn. lA to AB Non-Ess Sup. Isol.)

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3.20.3.2 1KC-533 (Trn.13 to A3 Non-Ess Sup. Isol.)

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3.21 Energize the pressurizar hee:ars to naintain a steam bubble and pressurizar pressure ac > pressure at which safety injec-tion :erninated, recorded on step 3.11.1.

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3.22 'Jhan pressuriser pressure is verified to be :=mmining constant, establish sornal lecdown and charging by proceeding to Scep 3.23.

/

3.23 Sec VCT Makeup Control System at a baron concentration equal

o : hat of NC System.

EP/1/A/5000/02 PAGE 5

0F 13 Initial / N/A

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3.24 Align the NV Pump to take a suction fro:a the VCT:

/,

3.24.1 Open: INV-141A (VCT Cutlet Isolatica)

LW-1423 (VCT Cutlet Isolation)

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3.24.2 Close: 1N7-2211 CN Pumps Succ. Fr:a FWST)

LW-2223 (NV Pumpe Suc;, From FWST)

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3.25 Establish seal wette return by opening:

INV-94A (NC Pumps Seal 2et. C/I Inside)

LW-953 (NC Pumps Seal Rec. C/I OTSD)

/

3.26 Establish sor:nal charging as followa-Close 157-241 (Regn. EI Tube Side Init. Cat:1.)

Open LW-244A (Charging Line Cont. Isol. OTSD)

Open LW-2453 (Charging Line Cont. Isol. OTSD)

Slowly throccia open 1N7-241, as le is opened adjust LW-238 as necessary to : maintain seal injection flow.

/

3.27 Istablish letdown by opening:

INV-1A (NC L/D Isol. to legen. HI)

INV-2A (NC L/D ! sol. to Regen. HI)

LW-73 (Lecdown Cont. Isol. Outside)

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3.27.1 Slowly throccle open LW-459A (A L/D Orif. OTLT Cont.

Isol.) to 13% open for 5 minutes to ~4"4=4 e charmal shock.

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3.27.2 Open 1NV-458A (3 L/D Orif. OTLT Cont. Isol.) and/or LW-457A (C L/D orif. CL"T.T Cont. Isol.) and close 1

LW-459A.

j l

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3.23 Verify LW-124 (Lacdown Press Control) is :nodulating to naintain 1

letdown pre sure at 350 psig.

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3.29 After level in the S/Gs has been restored in the sar:cw cange regulate flow to the S/Cs to :naintain indicated sar:cv canga l

1evel at =25%.

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3.30 Monitor the core exic charmocouples (CAC and/or Incore Panel) or wide range 3 to verify that 50 camperature is at least 50*? subcooled at present NC pressure.

i

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3.30.1 If 50*? subcooling is not present, 2ttempt to i

establish 50*? subecoling by use of condenser dumps.

i l

EP/1/A/5000/02 FACE 6

0F 13 Initial / N/A

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3.30.2 If sceam dump is necessary, reduce S/G pressure :o maintain a NC systam cooldown rate of no more :han 50*7/Hr., consistant with makeup capability, until 50*7 subcooling is established.

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3.30.3 If 50 F subcocLbtg woto.: be zanh/lAlted 21 main.c.tbted, t.itot MANUALLY REINITTATE SAFETY INJECTTCH a.nd go :.2 S::p 3.1 in EPl1/Al5000/01 (Inw'iats Ac:.icns.:nd Qi.:gnostd:.s ). Refeat.a AF/1/A/5500/05 (inadequa.CL Ca.1e CacLing).

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3.31 If the condicions for terminating safety injec:ica in Scap 3.11 are not set, maintain necessary NV, NI and ND pumps in operacion.

If any I/S equipment is not operating, at:empt to operate :he equipment from the Control Room or locally. Initiaca repairs if necessary.

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3.32 Af:ar NV pump operation has been verifiad g when the vide range NC pressure is <1500 psig,';STCE ALL NC PUMPS.

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3.32.1 Close the NV Pump siniflow isolation valves INV-151A (37 ? umps Escirculation) and 1N7-1503 (NV Pumps 1scire-ulacion).

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3.32.2 Should vide range NC Syscam pressure rise >2000 psig reopen 1NV-151A (NV P saps Recirculation) and 1N7-1508 NV ? umps Racirculation).

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3.33 If IC or IN flow to the NC pumps is isolated on a containmenc pressure signal, all NC pumps are :o be scopped sithin 5 minucas because of loss of socor and bearing cooling.

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3.34 If NC pumps are stopped, seal injection flow or =8 gym per pump should be maintained.

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3.35 If the NC Pressure quickly decreases below the S/G' pressure, go I

o Step 3.28.

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3.36 If the NC Pressura slowly decreases or stabili:es above S/G pressure, proceed to Scep 3.37 to begin plant cooldown.

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3.37 Verify -J2a MS!7 3ypass Valve manual loaders are closed prior to rasetting :he MSI7 3ypass Valves.

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3.37.1 If :he sain c=udenser is available (C-9), reset nain i

staan isolation, MS17 Sypass and SM PCRVs (if re-quired due to Phase "3").

1

IP/1/A/5000/02 PAGE 7

0F 13 Ini:121 / N/A

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3.37.1.1 Slowly open the F.S:7 bypass valve (s) (if

equired due :s Phase "3").

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3.37.1.2 If NC pressure is below 1955 psig (?-11) block the steam line safety injec.1on in order to prevent main steam isolation during cooldown when S/G pressure decreases below 585 psig.

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3.37.1.3 open the.v.5:7s (if required due :o Phase "3") and place.he steam dump control in pressure mode and lower.he NC :omparature and pressure.

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3.37.2 !! che main condenser is not available (loss of C-9),

reset SM PCRVs (if required due :o Phase "3") and dump steam :o at:nosphere to lower :he NC temperature and pressure.

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3.37.3 Reduce the S/G pressure to 970 psig, and maintain a NC system cocidown rata of no more than 50*y/Hr.,

consistent wi.h makaup capability.

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3.38 If logic test on F'4ST level is in progress.as indicated 1.4 bypass panel, notify I&E Depart:nent :s place circuit back to normal.

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3.39 verify Phase "3" isolation and actuation of conc =dn==at spray 3 psig containment pressure if not done previously.

at

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3.40 If Phase 3 isolation occurs, the 17 pumps must be stopped.

The NC pumps must be : ripped vi.hin 5 minutes if not previously

ripped.

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3.41 Verify both trains of the Annulus 7ent11ation System in operation.

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3.42 7erify Upper head Injec:1ou Acc.nnulator Tank have discharged at <1000 psig and discharge isolation valves automatically close and gas after cank contents are discharged.

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3.43 verify all four Cold Lag Accumulators have discharge at

(

<400 psig.

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3.44 Proceed :o Section 4.0.

l l

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O I?/1/A/5000/02 PAGE 8

0F 13 Initial / N/A 4.0 Alignment for Cold Las Recirculation

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4.1 When the WST level decreases :o the low level alarm point (150")

reset the Safety Injection Signal, the D/G Load Sequencer, Phase 3 Isolation signal and Contal:unant Spray. Then perform :he following to establish conc =4n==nc sump, cold lag recirculation:

/

4.1.1 Change ND Pumps suction from the FWST :o the Containment Racire. Sump:

NOTE If manual swap of ND pumps suction is soc accomplished prior :o 96" WST Lvl., insure automatic swap occurs prior to esaching 34" WST Lv1.

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4.1.1.1 Open DI-1843 (13 Sump to Train 13 ND & NS).

As it opens, verify :he closing of IND-43 (3 ND ?mp Suct. From WST on NC).

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4.1.1.2 open 1NI-185 (R3 Sump to Train lA ND & NS).

As it opens, verify the closing of IND-19A (A ND ?mp Suct. f:ca FWST on NC).

NOTE If TWST emergency La Level (=10") is reached before change over to che rect:culacion sump is completed, secure all pumps taking sue:1on on :he WST.

/

4.1.2 Rainstate control power :o IW-27A (WST Supply :o ND).

[

/

4.1.3 Close

17W-27A (7WST Supply to ND)

DD-30A (Train la ND :o Hot Lag Racirc.)

IND-153 (Train 13 ND :s Hot Lag Isol.)

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4.1.4 Stop NS Pumps la and 13.

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4.1.5 Close INS-20A (A NS Pump Suct. 7:ca FWST).

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4.1.6 Open INS-ISA (A NS Pump Suct. From Conc. Sump).

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4.1.7 Open 12N-134A (A NS HI Supply Isol.) (Cord I-1).

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4.1.3 Star: NS Pump 1A.

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4.1.9 Close INS-33 (3 NS Pump Suct. 7:ca 3",'ST).

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4.1.10 Open 135-13 (3 NS Pump Suc:. 7:ca Conc. Sump).

IP/1/A/5000/02 PAGE 9

0F 13 Initial / N/A

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4.1.11 Open 13N-2253 (3 NS HI Supply Isol.) (Cord. M-1).

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4.1.12 Scar: US Pump 13.

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4.1.13 Close:

1NI-1153 (A NI Pump Miniflow) i 13I-1443 (3 NI Pump Miniflow)

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4.1.14 Rainstata control power to INI-147A (NI Pumpe Miniflow Edr. Isol.).

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4.1.15 Close 1NI-147A (NI Pumpe Miniflow Edr. Isol.)

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4.1.16 Open 1NI-1263 (3 NI Pump Suction from ND)

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4.1.17 3minstata contro. power to 1NI-LCO (RWST to Safety Inj.

Pumps).

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4.1.18 Close 1NI-1003 (WST to NI Pumps).

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4.2 Wait until the "WST Lo-Lo Lvi" alarm ( 10") is received before proceeding to step 4.2.1.

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4.2.1 Open IND-SSA (Train IA ND to NV & NI Pumps)

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4.2.2 Open 1NI-3321 and 1NI-3333 (W & NI Pumps Suct. I-Over)

Open 1NI-3343 (NV i NI Pumps Suct. I-Over Block)

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4.2.3 Close 1NV-221A and 1NV-2223 (NV Ptsspe Suct. from IVST)

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4.2.4 Star: Hydrogen Recombiners in accordance with OP/0/A/6450/10 (Hydrogen Ski:ener, Cont. Air Return, Hydrogen Recombiner and Hydrogen Purge System) when Hydrogen concentration reaches 2*..

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4.3 Notify Chemistry Department and HP Depart:nent to obtain ph sample of cont =4-c sump water and to begin periodic sampling of con-

~

esi"==nt for hydrogen concentration.

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4.4 Cold Lag Racirculation Phase Monitor Light Configuration.

Group 2 and 4 completaly lighted. Groups 1, 3, 5, 6 and 7 completely dark.

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4.5 Group 6 should be lighted during recirculation : node if Upper Head Injection has actuated and secured.

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4.6 Af ter one hour, if offsite power has not been interrupted, stop he Imargency Diesel Generators per OP/1/A/6350/02 (Diesel Generator).

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4.7

!! a loss of offsite power occurs while in the Cold Leg Recirc-ulation node, refer to section 6.0 of this procedure.

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4.3 One hour after SI Initiation and cont 2fn==nc pressure is greater

.han 5 psig, initiata ND Contsinment Spray as follows:

EP/1/A/5000/02 PAGE 10 0F 13 Inicial / N/A

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4.3.1 7erify chac IND-30A (Train la ND to Hot Lag Recire) and 1ND-153 (*:ain 13 ND :o Hot Lag Isol.) are :losed.

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4.3.2 Reinacace power to :he following valves:

1NI-173A (Train LA ND :o A & 3 C/L) 1NI-178B (Train 13 ND :s C & D C/L)

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4.3.3 Close 1NI-173A (*:ain 1A ND to A & 3 C/L)

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4.3.4 kten 1NI-173A is fully closed, open INS-43A (A ND em NS Conc. Isol. OTSD).

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4.3.5 Close 1NI-178B (*:ain 13 ND :o C & D C/L)

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4.3.6 kten 1NI-1783 is fully closed, open 1NS-383 (3 ND :s NS Conc. Isol. OTSD).

  • ten concen=anc pressure has decreased :s <5 psig as indi-

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4.9 cated on conc =4n==nc pressure transmiccars, the ND Pumps dis-charge may be realigned to the NC System Cold legs as follows:

/

4.9.1 Close INS-43A (A ND to NS Conc. Isol. OTSD).

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4.9.2 kten 1NS-43A is fully closed, open 1NI-173A (Train LA ND :o A & 3 C/L).

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4.9.3 Close INS-383 (3 ND to NS Conc. Isol. OTSD).

/

4.9.4 a

ND to C & D C/L).

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4.10 Scar: Hydrogen Purge System per CP/0/A/6450/10 (Hydrogen Ski:mmer Conc. Air Recurs, Hydrogen Recombiner and Hydrogen Purge Syscam) if Hydrogen Concentracion increases :o 3.5%.

i Raduce concancracion to <3% and realign.

/

4.11 After approxinacely 15 hours1.736111e-4 days <br />0.00417 hours <br />2.480159e-5 weeks <br />5.7075e-6 months <br />, proceed to scep 5.0.

l 5.0 Alimmenc For Hoc Lag Recirculacion 5.1 Approxinacely 15 hours1.736111e-4 days <br />0.00417 hours <br />2.480159e-5 weeks <br />5.7075e-6 months <br /> af ter the accident, realign :he Safecy Injec:1on 1

System for Hoc Lag recirculation as follows:

/

5.1.1 Rainscace power :o :he following valves:

1NI-173A (Train LA ND :o A & 3 C/L)

IN!-173B (Train 13 ND =c C & D C/L)

INI-162A (NI Pumps Cold Lag Isol.)

INI-1833 (ND :o 3 & C Hoc Legs Isol.)

INI-121A (Train 1A N :o 3 & C Hoc lags) 13I-1523 (Train 13 NI :s A & D HL)

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5.1.2 Close 1NI-173A (Train LA ND :s A & 3 C/L).

EP/1/A/5000/02 PAGE 11 0F 13 Ini:121 / N/A

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5.1.3 Open 1ND-30A (Irain 1A ND :o Hot Lag Isol.).

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5.1.4 Cpen 1NI-1333 (ND :o 3 & C Hot Lag Isol.).

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5.1.5 Close 1NI-1783 (Train 13 ND :o C & D C/L).

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5.1.6 Open IND-153 (Train 13 ND to Hot Lag Isol.).

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5.1.7 Stop NI Pump 1A.

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5.1.3 Close INI-11SA (Irain IA NI to Cold Lag Isol.).

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5.1.9 open INI-121A (Train 1A NI :o 3 & C Hot Legs).

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5.1.10 Scar: NI Pump 1A and verify flow :o the NC System chrough

he Hot Leg Header via Control 3oard indicators.

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5.1.11 Stop NI Pump 13.

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5.1.12 Close:

1NI-162A (NI Pumps Cold Lag Iaol.).

1NI-1503 (Train 13 NI :o Cold Lag Isol.).

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5.1.13 open 1NI-1523 (Train 13 NI to A & D H/L).

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5.1.14 Start NI Pump 13 and verify flow to the NC System chrough the Hot Leg Header, via Control 3c a d Indicators.

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5.2 Ihe ND and NI Pump are now aligned for Hot Les recirculation.

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5.3 Nonitor Light Configuration during Hot Lag Recirculation.

Groups 2, 4, 5 and 6 completely lighted. Group 1, 3 and 7 completely dark.

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5.4 Verify hat shen cone =4-t pressure decreases :o less :han.25 psig, contmi - c spray pumps shutdown.

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5.5 If a loss of offs 1:a power occurs while in the Hot Lag Recirculation

node, refer to section 6.0 of this procedure.

5.0 Recoverv from Loss of Offsite Power '4hile in Recirculation NOTZ

'Jait one ninute before resetting :o allow all loads to be sequenced on.

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6.1 Que ninute after the loss of power occurred, reset the Diesel Generator Load Sequencers.

CAUTICN Da not % btLCian Safe.:.y inju21.on.

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6.2 Secure -le following loads.

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5.2.1 N7 ? umps A and 3.

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6.2.2 Pressurizer 3ackup Hea:ers, Group A & 3.

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6.2.3 3IT Heaters A and 3.

l IP/1/A/9000/03 PAGE. 12 0F 13 l

dicial / N/A

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6.2.9 7U Units A, 3, C and 3.

/

6.2.10 A and 3 7pper Cont. Return Air Fans.

/

6.2.11 Incore Instrument Room Air Handling Uni:3.

6.3 Restar :he following. loads in :he sequence listed, if operating prior to loss of power.

NOTE 6 order not to overload the Diesel Generator, star: one load, then wait ~5 sec., check voltage, amparate and load on the Diesel Generator, then starr the next load.

/

6.3.1 ND Pumpe A and 3.

/

6.3.2 NI Pumps A and 3.

/

6.3.3 N7 Pumps A and 3.

/

6.3.4 7E Tans A and 3, and rerify proper operation per OP/1/A/6450/02 (Annulus 7entilation System).

/

6.3.5 VE Praheaters A and 3.

/

6.3.6 Containment Air Return Fans A and 3.

/

6.3.7 NS Pumps A and 3.

/

6.3.3 Hydrogen Recombiners A and 3.

/

6.3.9 Hydrogen Skimmer Tans A and 3.

/

6.3.10 Scar: IF Pump A or 3 is desired.

6.4 7erify the proper operation of the following loads.

/

6.4.1 Vital Battery Chargers E7CA, E7C3, E7CO and E7CD.

/

6.4.2 Load Cancers ELIA, ELI3, EUC and rL'O.

/

6.4.3 ?over Panalboards IIA and II3.

/

6.4.4 ND and NS Room Sump ? umps.

/

6.4.5 A/C System Sw1:chgear Room 7ans SGR-AEU-A, 3, C and 3.

/

6.4.6 3/G A and 3 Mnd'dsries.

/

6.4.7 31owers for the following EMF Moni: ors.

/

6.4.7.1 EMF-33 (Condenser AirEjector).

/

6.4.7.2 EMF-35, 36, 37 (Uni: 7ent Particulace, Gas and Iodine).

/

6.4.7.3 IMF-38, 39 and 40 (conci nant Particulace, d

Gas and Iodine).

/

6.4.7.4 EMF-41 (Auxiliary Su11 ding 7encilation).

/

6.4.7.5 IMF-42 (?usi 3u11 ding 7entilation).

IP/1/A/3000/02 PAGE 13 0F 13 hitial / N/A

/

6.4.7.6 IMF-43A (Control Room Air Staka A).

/

6.4.7.7 EMF-433 (Control loca Air 1staka 3).

/

6.4.3 Aur*"ary Su11 ding Filcared Exhause Fans A and 3.

/

6.4.9 KC Pumps A1, A2, 31 and 32.

/

6.4,10 3N 'Jacer Pumps A and 3.

/

6.4.11 CA Pumps A and 3.

/

6.4.12 7C Chillers /AHU A or 3.

/

6.4.13 34ttery Roca Exhaust Fans 1 and 2.

/

6.4.14 Ground *Jacer Drainage Systas ? mps.

/

6.5 Return to last step complaced in Section 4.0 or 5.0 whichever applicable.

7.0 Enclosures 7.1 3CP ESF Componats Alignment Checklist.

7.2 Post Accident Valre Checklist.

s.

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PAGE 2

0F 2

I EP/1/A/5000/02 - LOSS OF REACTOR COOLANT NRC COMMENTS DUKE'S RESPONSE Old Step New Step General Comment -

Listing manual Loading sequence Loading of ESF Components consistent vi:h FSAR.1 Valve arrangements i

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i 4