ML23062A612

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Revision OL-26 to Final Safety Analysis Report, Chapter 15, Figures
ML23062A612
Person / Time
Site: Callaway Ameren icon.png
Issue date: 12/29/2022
From:
Ameren Missouri, Union Electric Co
To:
Office of Nuclear Reactor Regulation
Shared Package
ML23067A139 List: ... further results
References
ULNRC-06782
Download: ML23062A612 (1)


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570 580 590 600 610 620 630 Tavg (Deg-F) pl n1 '°nfi oo1ig .

I ind CALLAWAY PLANT FIGURE 15.0-1 ILLUSTRA TIOH OF OVERPOWER AHO OVERTEMPERA TURE PROTECTIOH Rev. 17 11/13

0 NOTE I - *UPPER CURVE* LEJ.ST NE61TIVE DOPPLER ONLY POWER DEFECT:: -0.78%.0.P(O TO 1ooi P'OWER)

-2 NOTE 2 - *LOWER CURVE" MOST IEBATIVE DOPPLER ONLY POWER DEFECT :: -I

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--20 0 20 IIO &O 100 PERCEKT POWER REV. OL-7 5/94 CALLAWAY PLANT Figure 15.0-2 Doppler Power Coefficient Used in Accident Analysis

1.2 FUUY IISElTED I.I eo.2 0.1 0

0 0.1 0.2 0,3 0.ti 0.5 0.6 0.7 0.8 0.9 .1 .0 1.1 1.2 1.3 I.ti 1.5 1.6 IIORMlll ZED DROP TUE (TUE AFTER DROP IE61NS/DROP TUE TO TOP OF DlSltPOT}

Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 16.0-3 RCCA POSITION VERSUS TIME TO DASHPOT

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REV. OL-7 5/94 CALLAWAY PLANT FIGURE 15.o.4 NORMALIZED ROD WORTH VERSUS PERCENT INSERTED

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0 0.1 0.2 0.3 0.~ 0.5 0.6 0.7 0,8 0.9 1.0 I.I 1.2 1.3 l.ij IIORMALIZED ROD DROP TUE TUE AFTER DROP IEGI NS TUE TO TOP OF DASHPOT Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 15.0-o NORMALIZED RCCA BANK REACTIVITY WORTH VERSUS NORMALIZED DROP TIME

CALLAWAY - SP Figure 15.0-6 Deleted REV. OL-~15 5/06

ABBREVIATIONS USED:

AFWS - AUXILIARY FEEDWATER SYSTEM ECCS - EMERGENCY CORE COOLING SYSTEM eves - CHEMICAL ANO VOLUME CONTROL HL - HOT LEG SYSTEM CL - COLD LEG ESFAS - ENGINEERED SAFETY FEATURES CCWS - COMPONENT COOLING WATER ACTUATION SYSTEM SYSTEM ..

FW - FEEDWAfER RCS - REACTOR COOLANT SYSTEM RTS - REACTOR TRIP SYSTEM SWS - SERVICE WATER SYSTEM SIS - SAFETY INJECTION SYSTEM HPI - HIGH PRESSURE INJECTIO~

SI - SAFETY INJECTION LPI - LOW PRESSURE INJECTION RT - REACTOR TRIP Cl - CONTAINMENT ISOLATION CS - CONTAINMENT SPRAY SG - STEAM GENERATOR NOTES:

I. FOR "TRIP INITIATION AND SAFETY SYSTEM ACTUATION, MULTIPLE SIGNALS ARE SHOWN BUT ONLY A SINGLE SIGNAL IS REQUIRED. THE OTHER SIGNALS ARE BACKUPS.

2. NO TIMING SEQUENCE IS IMPLIED BY POSITION OF VARIOUS BRANCHES.

REFER TO EVENT TIMING SEQUENCES PRESENTED IN TABULAR FORM IN PERTINENl ACCIDENT ANALYSIS SECTION OF CHAPTER 15.0 OF THE FSAR.

3. WHEN OVERTEMPERATURE AND OVERPOWER ARE USED IT REFERS TO OT-DELTA T AND OP-DELTA T.

DIAGRAM SYMBOLS:

(..__ _ _ _) - EVENT TITLE

- BRANCH POINT FOR DIFFERENT PLANT CONDITIONS I____ I- SAFETY SYSTEM

<~----> - SAFETY ACTION (f) - SYSTEM REQUIRED To MEET SINGLE-FAILURE CRITERIA

(-;) - MANUAL ACT I ON REQUIRED DUR I NG SYSTEM OPERATION CALLAWAY PLANT FIGURE 15.0-7 ABBREVIATIONS AND SYMBOLS USED IN SEQUENCE DIAGRAMS Rev. OL-4 6/90

EXCESSIVE HEAT REMOVAL OUE TO HIGH NEUTRON FLUX '/2 FEEOWATER SYSTEM MALFUNCTIONS SOUl!CE RANGE' HIGH NEUTRON FLUX '/2 INTERMEDIATE RANGE HIGH NEUTRON FLUX 2/14 POWER< PIO POWER > PIO HIGH NEUTRON FLUX POWER RANGE POWER RANGE OVERPOWER AT 2/14 OVERPOWER AT RTS RTS OVERTEMPERATURE AT LOW-LOW SG LEVEL 2/4

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REACTOR REACTOR TRIP TRIP BREAKERS BREAKERS

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CONTROL ROOS CONTROL ROOS GRAVITY GRAVITY INSERTION INSERTION PASSiVE PASS IYE CONTROL ROO CONTROL ROD REACTiVITY REACTIVITY

'FOR POWER < P6 CONTROL CONTROL CALLAWAY PLANT FIGURE 15.0-8 EXCESSIVE HEAT REMOVAL DUE TO FEEDWATER SYSTEMS MALFUNCTION REVOL-8 11/95

li+,111+-2 EXCESSIVE LOAO INCREASE FULL POWER OVERPOWER t.T 2/1+

OVERTEMPERATURE t.T 2/1+

HIGH NEUTRON FLUX 2/1+

POWER RANGE RTS PRESSURIZER SG SAFETY SAFETY VALVES VALVES Is

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PASS l VE REACTOR TRIP BREAKERS SAFETY VALVES SAFETY VALVES OPEN TO RELIEVE OPEN TO RELi EVE

,, . RCS PRESSURE SECONDARY SYSTEM PRESSURE I s F'

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... ,, I CONTROL ROOS GRAVITY INSERTION NOTES: I. THIS DIAGRAM APPLIES TO BOTH MANUAL PASSIVE AND AUTOMATIC CONTROL MODES.

2. FOR THIS TRANSIENT. REACTOR PROTECTION SYSTEM FUNCTIONS ARE ASSUMED TO BE OPERATIVE. BUT A RT IS NOT EXPECTED.

CONTROL ROD REACTIVITY 3. NO SAFETY VALVE SET PRESSURES CONTROL ARE APPROACHED IN THE SECTION lS.1.3 ANALYSIS.

CALLAWAY PLANT FIGURE 15.0*9 EXCESSIVE LOAD INCREASE REVOL-8 11/95

DEPIICSSURIZUION Of MAIN STUM SYSIT:H NIGH IICUTRON HUX 2/q Po,,{R RANG[

OV(RPC)W{R SI SIGNll LOW PRES SUR I Z(A 2/q LOW PRESSURIZER ns PRESSURE HIGM-2 COMIAINIDI 2/3 SI SIGNll PRESSURE PRESSURE 2/4 HIGH-I CONTAINMtHT 2/3 LOW STW4 llNE 2/3 HI-HI SG LEVEL PRtSSURE [SflS ESfl! ESflS PRESSURE IN ANY SG OTtiT 2/4 LOW STEAM lll!E 2/3 PRESSURE IN ONE LOOP

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HIGH ll{G,lf!Y[ STUM 2/3 PRESSURE Al TE IN ONE LOOP REACTOR TRt, BAUKERS

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HlNUll 1/2 SIS SltlM llNE MAIN ISOLATION fW VALVES ISOllllON CONTROL ROOS GRlV*TY INSERT ION INJECTION or BORATED WATER ClOSE FAST CLOSE MA IN fW PASSIVE TO PREV{NT ACIING STE!>! ISOlUION VALV[S RETURN TO tlNE ISOUIIOII CRITICALITY' VALVES COIITROL ROD [SFAS AtlCTIVITY SI SIGNAL CONTROL

'OPERATOR ll'RMINATES SAFETY INJECTION LOW-LOW SG LEVEL now TO LIMIT RCS PRESSURE AND IN ONE SG PRESSURIZER l[YEL. SEE SECTION 7 .~

FOR INDICATORS ANO R(COROERS IYIILlBlE MANUAL 1/2 TO l1IE OPERA !OR FOLLOWING !HE {VENT.

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LOSS OF EXTERNAL ELECTRICAL LOAD FULL POWER HIGH PRESSURIZER 2/1+ RTS PRESSURE OVERTEMPERATURE ~T 2/1+ , .,

s FII HIGH PRESSURIZER 2/3 '

PRESSURIZER SG WATER LEVEL SAFETY SAFETY WW-WW SO LEVEL 2/4 REACTOR VALVES TRIP VALVES INONESG BREAKERS PASS I-VE PASSIVE I

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IS F, I CONTROL ROOS SAFETY VALVES SAFETY VALVES GRAVITY OPEN TO RELIEVE OPEN TO RELIEVE INSERTION RCS PRESSURE SECONDARY SYSTEM PASS I VE PRESSURE CONTROL ROO REACTIVITY CONTROL LOW-LOW SG LEVEL 2/1+ ESFAS IN ONE SG MANUAL 1/2

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'FOR CASE WHERE TURBINE TRIP OCCURS, A REACTOR TRIP SIGNAL ON TURBINE TRIP

!S ANTICIPATED {FOR POWER> P9)

DELI VER TURBINE TRIP SIGNAL DUE TO: AUXILIARY 2/3 LOW TRIP FLUID PRESSURE FW TO CONTROL CORE

~,~ TURBINE STOP VALVE CLOSURE HEAT REMOVAL CALLAWAY PLANT FIGURE 15.0*11 LOSS OF EXTERNAL LOAD REVOL-8 11195

LOSS OF OFFSITE POWER TO STATION AUXILIARIES LOW-LOW SG LEVEL 2/11 FULL POWER IN ANY LOOP ANTIGIPATED RT ON RTS PRESSURIZER SG ESFAS TURBINE TRIP SAFETY SAFETY LOW-LOW SG LEVEL 2/11 VALVES VALVES LOW REACTOR COOLANT FLOW IN ONE LOOP 2/3 PASSIVE PASSIVE IN ONE SG LOSS OF OFFS ITE POWER

-,'F I REACTOR MANUAL 1/2 AFWS TRIP SAFETY VALVES SAFETY VALVES BREAKERS OPEN TO RELi EVE LOtl-LOW SG LEVEL 2/11 OPEN TO SECONDARY RELIEVE RCS SYSTEM IN 2/11 SG (TURBINE DRIVEN PUMPS)

PRESSURE PRESSURE I

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LOSS OF NORMAL FEEDWATER FULL POWER OVERTEMPERATURE AT 2/14 RTS PRESSURIZER SG LOW-LOW SG LEVEL 2/q ESFAS SAFETY SAFETY VALVES VALVES IN ONE SG, LOW-LOW SG LEVEL 2N ,

LOSS Of OFFS I TE POWER '\

IN ANY LOOP PASSIVE PASSI VE ~s f' MANUAL I /2 REACTOR AFWS TRIP BREAKERS

  • SAFETY VALVES SAFETY VALVES LOW-LOW SG LEVEL 2/q OPEii TO RELIEVE IN 2/q SG (TURBINE ORIVEN PUMPS)

OPEN TO RE LI EYE RCS PRESSURE SECONDARY SYSTEM PRESSURE

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SI SIGNAL REACTOR MANUAL 1/2 TRIP ,, -

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I S F' I LOSS OF OFFS I TE POWER PRESSURIZER SIS AFWS SAFETY VALVES CONTROL ROOS PASS IVE GRAVITY INSERTION Is Fl PASS IVE

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OPERATOR TURNS OFF HIGH HEAD SAFETY INJECTION PUMPS INJECT BORATED DELI VER SUBSEQUENT TO RECOVERY OF LEVEL SAFETY VAL YES WATER INTO RCS AUXILIARY CONTROL ROD IN THE INTACT ,SGs REACTIVITY OPEN TO TO PREVENT FW TO RELIEVE RETURN CONTROL CORE SH SECTION 7.S FOR INDICATORS CONTROL RCS PRESSURE TO POWER HEAT REl<<lVAL ANO RECOROERS AVAILABLE TO THE OPERATOR FOLLOWING THE EVENT 3::

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POWER < P8 SHAFT BREAK ( FULL POWER)

UNOERYOlTAGE 2/q LOW RCS FLOW 2/3 LOW RCS FLOW 2/3 LOW RCS FLOW 2/3 RTS RTS RTS RTS IN ONE LOOP IN 2/q LOOPS IN ONE LOOP UNDERFREQUENCY 2 /q

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REACTOR REACTOR REACTOR REACTOR TRIP TRIP TRIP PRESSURIZER TRIP BREAKERS BREAKERS BREAKERS SAFETY BREAKERS VALVES I

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UNCONTROLLED ROO CLUSTER CONTROL ASSEMBLY BANK WI TlfORAWAL HIGH NEUTRON FLUX 1/2 SOURCE, RANGE SUBCR I TI CAL AT PCTwER HIGH NEUTRON FLUX I /2 INTERMEDIATE RANGE HIGH NEUTRON FLUX LCTw 2/q POWER RANGE HIGH NEUTRON FLUX HIGH)

PMR RANGE PRESSURIZER SG RTS SAFETY SAfETY RTS HIGH NEUTRON FLUX RA TE VALVES VALVES POWER RANGE PASSIVE PASS I VE HIGH NEUTRON FLUX (HIGH) 2/q POWER RANGE REACTOR REACTOR SAFETY VALVES TR!P TRIP SAFETY VALVES OVERTEMPERATURE ~T 2/q OPEN TO RELIEVE BREAKERS BREAKERS OPEN TO RELi EVE RCS PRESSURE SECONDARY SYSTEM PRESSURE C OVERPOWER ~T 2/q , -,

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... ,, I ASSEMBLY" REACTOR TRIP BREAKERS ROD CONTROL SYSTEM AND/OR REACTIVITY FEEDBACK ESTABLISH NEW REACTOR CONDITIONS CONTROL RODS OPERATOR GRAVITY USES MANUAL IHS ERTi OH ROD CONTROL TO RETRIEVE RCCA(s)

PASS I VE CONTROL ROD REACTIVITY CONTROL

  • TRIP SEQUENCE MAY OCCUR IF ROD WORTH IS LOW AND AUTOMATIC ROD WITHDRAWAL IS RAPID.

TRIP IS NOT MODELED IN THE SAFETY ANALYSIS.

CALLAWAY PLANT FIGURE 15.0-17 DROPPED ROD CLUSTER CONTROL ASSEMBLY REV. OL-5 6/91

I 4, 114-11 SiNGLE ROD CLUSTER CONTROL ASSEMBLY WITHDRAWAL AT FULL POWER OVERTEMPERATURE AT 2/ij RTS

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'\ S F II REACTOR TRIP BREAKERS CONTROL RODS GRAVITY INSERTION PASSIVE CONTROL ROD REACTIVITY CONTROL CALLAWAY PLANT FIGURE 15.0-18 SINGLE ROD CLUSTER CONTROL ASSEMBLY WITHDRAWAL AT FULL POWER REVOL-8 11/95

STARTUP OF AN INACTIVE REACTOR COOLANT LOOP MAXIMJM PERMISSIBLE POWER FOR OPERATION WITH ONE LOOP OUT OF SERVICE HIGH NEUTRON FLUX (HIGH) 2/~

RTS POWER RANGE WITII LOW FLOW ABOVEP-8 REACTOR TRIP BREAKERS I '

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' ... _, I CONTROL ROOS GRAVITY INSERTION PASSIVE CONTROL ROD REACTIVITY CONTROL CALLAWAY PLANT FIGURE 15.0-19 STARTUP OF AN INACTIVE REACTOR COOLANT LOOP REVOL-8 11/95

BORON DILUTION SUBCRITICAL AT POWER AUTOMATIC CONTROL MANUAL CONTROL ROD INSERTION*

LIMIT ALARMS AUDIBLE COUNT RATE eves ROD POSITION eves ROD INSERTION STEP COUNTER** LIMIT ALARMS* PRESSURIZER FROM BF, DETECTOR eves SG ROD POSITION SAFETY VALVES SAFETY VALVES STEP COUNTER**

RT ALARM PASSIVE PASSIVE TERMINATE TERMINATE DILUTION DILUTION SAFETY VALVES TERMINATE SAFETY VALVES

( NOTE A) ~----J DILUTION OPEN TO RELIEVE RCS PRESSURE OPEN TO RELIEVE SECONDARY SYSTEM PRESSURE HIGH NEUTRON FLUX HIGH 2/4 ( NOTE A)

POWER RANGE RTS eves OVERTEMPERATURE ,H 2/4 AUDIBLE COUNT RATE FROM BF, DETECTOR OVER POWER t>T 214 HIGH NEUTRON FLUX TERMINATE HIGH PRESSURIZER 2/4 REACTOR NOTE:

SOURCE RANGE PRESSURE TRIP - NOT A SAFETY SYSTEM.

FLUX MULTIPLICATION DILUTION BREAKERS BDMS AUTO SUCTION HIGH PRESSURIZER 2/3 SWAPOVER ( NOTE A) NOTE A CLOSE MAKEUP WATER CONTROL VALVES.

WATER LEVEL CLOSE CHARGING LINECONTROL VALVES FROM VCT.

TERMINATECHARGING PUMP FLOW.

BORATE IF NECESSARY CONTROL RODS GRAVITY INSERTION PASSIVE CONTROL ROD REACTIVITY CONTROL REV. OL-15 5/06 CALLAWAY PLANT FIGURE 15.0-20 BORON DILUTION

RUPHJRE Of A CONTROL ROO ORIVE MECHANISM HOUSING HIGH NEUTRON fLUX (HIGH) 2/~ ZERO PuWER fUll P<<MER POWER RANGE HIGH NEUTRON HUX 1 lOW 2/q HIGH NEUTRON FLUX :HIGH) 2/q POW£R RANGE POWER RANGE ATS PRESSURIZER PRESSURIZER RTS HI GIi NEUTRON HUX RA TE 2/~ SAFETY SAFETY HI GIi NEUTRON HUX : lOW) 2 /q l'OW£R RANGE VALVES VALVES POWER RANGE HI GIi NEUTRON HUX I /2

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I S F~ 's HIGII NEUTRON FlUX RA TE 2/q INTUMEOIATE HIGH NEUTRON RANGE HUX 1/2 PASS I YE PASS I VE \

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NOTE I: SEql.lENCE fOllOWING ESFAS ACTUATION IS SIMILAR TO THAT FOR A SH.Ill lOSS Of CONTROL ROOS CONTROL ROOS COOUNT EVENT :LOCA) SEE FIWRE /5 .<1-U GRAVITY GRAY I TY INSERTION INSERIION PASSIVE PASS I YE COIHROL ROO CONTROL ROD REACII YI TY RUCTIYI TY CONTROL CONTROL

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ACCIDENTAL DEPRESSURIZATION OF REACTOR COOLANT SYSTEM 1---- FULL POWER LOW PRESSURIZER OVERT£MPERATURE LOW PRESSURIZER PRESSURE AT 2/q 2/q '----'

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  • OPEJIATOR ACTlOIIS rou.owt!IG UOU.TJOII or TIii: rAIILT'CO SG

-I IIICWOE OPERATlOII or 111TACT SC ATKOSPHEJIIC RELIEF VALVES C: AHO 'l'IIEH PRESSURllEII l'C>RYe TO COOLOOWII AHi> 0£PR£SSIIRtU:

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' OPERA IOR (CI -PHASE A)

!SIAS OPfRAlOK (CS)

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ITS (RI SIGNAl)

PRESSURE (SI SIGNAL)

OPCRAIOR {CS) 1© SIGIIAL) HHHill-3 COIIIAUM:111 2/q


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HIGH-3 CONIAINIOI 2/* PRESSURE OTHlR

s- ;,, , sf' PRESSURE 1 1 COIIIAINIUl cs RUCTOR UIP HI.Ill FW DIESEL CON U IIU( II 1 ATMOSPHERE STSIEIC 11Uk£RS ISOUIION G£11£RAIOR ISOUIION Rf Cl acuu I ION I IIIJEC I ION)

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  • *AFTER I \

IS f ,'

~--'-.....:.1....,3::..., .,._.R,._s.......,....___ 1 CONJ. PR(S.

COIIIROL 100 CONIROL HUI ROllVAL r IUCIIVI ll S[CONOARY ccws ECCS Hl REC I RCUU I ION AIIO ACJIVIIY 0 CONIROL HUI 1£MOYAL COlllllOl fa n

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  • I "QP[RATOR ACIIOII IIIClUOES VALVE Allf.lMlll AIIO PUHi' COIIIROL 0 REQUIRED fOR RECIRCUUIIOII 8 :a ~

r "OPUAIOR ALIGNS SPRAY l'UMP SUCIIOII FOR RECIRCUUIIOII 10 COIIUIIMNl SUMI' ON lO*lO RWSI LEvH AUl!M SUPPORI SYSIEIIS COil COOL I KG

)> m )> fOOIIIOIE: SH SfCIIOII 7.!; FOR IIIO!CAIORS ANO R[COROUS OPUAIIOIIAL z-4 en hAILAILE 10 IHl OPlMAIOII fOLLOWIN(i [YfNI b

,;0 N 6

en

~

m 2

-t

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.f'!

I 00

eves LETDOWN LINE RUPTURE REACTOR COOLANT ACTIVITY RELEASE TO AUXILIARY BLDG ATMOSPHERE UNFILTERED RELEASE TO ATMOSPHERE AUXILIARY BLDG DUCT RADIATION MONITOR OPERATOR CLOSES LETDOWN ISOLATION VALVE AFTER RECEIPT OF THE ALARM WITHIN 30 MINUTES CALLAWAY PLANT FIGURE 15.0-26 eves LETDOWN LINE RUPTURE Rev. OL-0 6/86

GWPS GAS DECAY TANK RUPTURE RELEASE TO BUILDING ATMOSPHERE UNFIL TEAED RELEASE TO ATMOSPHERE VENTILATION VENT RADIATION MONITOR

,';;\ OPERATOR

~ TERMINATES PROCESS GAS INFLUENT ISOLATION TIME 2 HRS CALLAWAY PLANT FIGURE 15.0-27 GWPS GAS DECAY TANK RUPTURE Rev. OL-0 6/86

RECYCLE HOLDUP TANK FAILURE (56,000 GAL)

LIQUID GASES RELEASE TO RELEASE TO GROUND BUILDING ATMOSPHERE UNFILTERED RELEASE ENTERS TO GROUNDWATER ATMOSPHERE I

  • See Section 2.4.13 of the Site Addendum CALLAWAY PLANT FIGURE 15.0-28 FLOOR DRAIN TANK FAILURE Rev. OL-0 6/86

FUEL HANDLING ACCIDENT IN FUEL BUILDING GASES RELEASED FROM FUEL POOL WATER

/ '

I SF \

' /

FIL TE RED BY ESF EMERGENCY VENTILATION SYSTEM IODINE ADSORBER TO ATMOSPHERE RADIOLOGICAL CONTROL CALLAWAY PLANT FIGURE 15.0-29 FUEL HANDLING ACCIDENT IN FUEL BUILDING Rev. OL-0 6/86

FUEL HANDLING ACCIDENT INSIDE CONTAINMENT ACTIVITY RELEASED FROM REFUELING POOL (0-2HRS)

CONTAINMENT RADIATION MONITORS DETECT HIGH ACTIVITY AND ISOLATE CONTAINMENT RADIOACTIVITY CONTAINED Rev. OL-0 6/86 CALLAWAY PLANT FIGURE 15.0-30 FUEL HANDLING ACCIDENT INSIDE CONTAINMENT

CALLAWAY - SP Figure 15.0-31 has been deleted.

Rev. 1 05/15

0 7 X

1--

~6

cu...

w 0

C.>

0 T 225 3

- - - Si le-l<la Co .. e t~u '-lo p q

/I 0 5 225 3 TIM CALLAWAY PLANT FIGURE 15.1-1 NUCLEAR POWER, CORE HEAT FLUX AND PRESSURIZER PRESSURE TRANSIENTS FOR HFP FEEDWATER MALFUNCTION FLOW INCREASE CASE Rev. 17 11/13

1., ....

- - - - - - - - - - - - - - -- - - - -- ~ ~ ~ ~

0--------..----.

o,

. . . .ffl. . . .

~ ---~lf------......._---'=........---t-60

..........""""""'.............~

rJ.!- ~L......:.,...,,....,.,J,_.4-,,, * ......1.-....1.....~~~~=:=::::::::c:i:::=:i:::::J==i 0 20 60 &l 2400,--.1- - - - - - - -- - - - - - - - - - -- - - - -

l,<<J.O-t--.............-1.aaaaa..-e--------=----J-...

. .,,,,,,,,,;,,~1--=---...;,,,.,....:.,,-+,""""""'"""""'~,.,;,..,.............................._.

0 4-0 fill TIME (stc} .

~ s111e~*"S* , 1hat 1n-ooucied the

  • bove
  • 1,gur-es oolils:e:rviliiv.ely oo nds lhe a.ctuaJ! pl nt oonf:ls~liJoQ. Thi :iiirnaly-.s1s uses diffl m elp011n coeffio.ients in die OP~T rt\loluttlr- tlimp sctp i l'.!t wm *w~:at i:s cuITTntty !!:.or.figured. The eifie:a *fth ,df t'e.l'llc:es be.:twoeQJ 11he a.11 m}'si! b *puts. nd Iii * [Pl tU oonfmg,uF11tiomb rtfou *~ ranalys:is iopul5i ll'U'Ult lin d my~d prorer::tio:1'1 ncll n'liOfe lim~tilflg rcsufH..

CALLAWAY PLANT FIGURE 15.1-1 A NUCLEAR POWER, CORE HEAT FLUX AND PRESSURIZER PRESSURE TRANSIENTS FOR HFP FEEDWATER TEMPERATURE REDUCTION INCIDENT RBI.ti tNI

0 5 0 150 20 E+O X

...J LL 0.6£-01

~z LLJ

x:::t....

LLJ a:::

0 0 0 10 20 0

Tit.it CALLAWAY PLANT FIGURE 15.1-1B NUCLEAR POWER, CORE HEAT FLUX AND CORE REACTIVITY TRANSIENTS FOR HZP FEEDWATER MALFUNCTION -

FLOW INCREASE, M ULTl-LOOP CASE Rev. 0 11/13

- - - /.ff d ui Ca.,

- - - - noft C eel op O'"C

'T --- ----* All Loop:;,

!::i w


, \

I I

I I

J 5

w

'\

\ ,. .....

..(

....J w

V,

~ 0 T 15 25 3 6

5 I',,-

oc *1 z

J

-- - -- - - J 2

7 2r j TIM~ -ifsec)

CALLAWAY PLANT FIGURE 15.1-2 REACTOR COOLANT LOOP DB.TA-T, VESSB.

AVERAGE TEMP AND DNBR TRANSIENTS FOR HFP FEEDWATER MALFUNCTION -

FLOW INCREASE CASE Rev. 17 11/13

~

w CL.

2 l='C'

- I wffl 516ra

~e I

,,;a; i:

ci

~

~ 5;ro--11-.........!.................- 4 ----b---=1-------'-==t-...,........:,,........!._..___+--_...............---+-.....i.....----1.._____:_----1

,i) 20 40 00 100

z Q

IIJ produ.ced Iii * :M*c flgures ,co,n ~itiVGty boumds lhe _ nafysfs 1/lSeS. dlvfli r mt 1 -- * , ,c1cJ)ts il!li it'h _OPt..,T reactor tli.~.P. ~int frorn whirl Ls. <:un:e:n.tt

  • cc.131figt1fed_ 'llu:: ,df ~c* of mh
  • diffa-enc:es lb ~

Im: *

  • ts; end! l hl! ,ioo is tmru. the nal_y iSi fnpuJs 1r.Mt!llt ~ii del'a~*cd prot<<tian afi'l d more itm~ting ~ u],

. 0 20 w

0:::

(/)

=>

(/)

w 0:::

0

~ ec 0

llM~

CALLAWAY PLANT FIGURE 15.1-2B VESSB. AVERAGE TEMP, PRESSURIZER PRESSURE AND WATER VOLUME TRANSIENTS FOR HZP FEEDWATER MALFUNCTION -

FLOW INCREASE, M ULTl-LOOP CASE Rev. 0 11/13

I .20 I I I I I 0::: ,-.. I. 15 -

w*

3:L 00 o._Z I. 10 -

0::: LL I .05

<( 0 Wu I .00

_J <(

u 0:::

J LL Z...__. .95 -

.90 2400 2300 0:::

Ww 2200 N 0:::---.

1-1 :::) <(

0::: (.f) 1-1

) (.f) (.f) 2100

(.f) w ll.

(.f) 0::: ...__.

Wo._ 2000 0:::

ll.

1900 1800 1400 1300 0::: w 1200 WL N ::J---.

1-1 _J I- 1100 0::: 0 LL

) > 1000

(.f) 0::: :::)

(.f) wu w I-...__. 900 0::: <( 800 ll. 3:

700 600 0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-3 NUCLEAR POWER, PRESSURIZER PRES-SURE AND WATER VOLUME TRANSIENTS FOR TEN PERSCENT STEP LOAD INCREASE, MINIMUM REACTIVITY FEEDBACK, MANUAL REACTOR CONTROL 014-A-20766-7

3.00 I I I I I 2.75 -

2.50 -

2.25 -

0:::

co z 2.00 -

0 I. 75 -

I .50 I .25 -

I .00 620.

lL I 610.

WU

(_I) w

<{o 600.

0::: -----

Ww

<{

0:::

)

590.

w f-0::: <{ 580.

0 0:::

uW o_

L 570.

w f-560.

550.

0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-4 DNBR AND VESSEL AVERAGE TEMPERATURE TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MINIMUM REACTIVITY FEEDBACK, MANUAL REACTOR CONTROL 014-A-20766-8

I. 20 0:: ..-.. I. 15 w*

3:L 00 rr_Z I. 10 0:: LL I .05

<(o Wu I .00

_J <(

u 0::

) LL .95 z .._,

.90 2400 0::

Ww 2300 --

N 0::---. 2200

<(

1-i ::)

0:: (J) 1-i

) (J) (J) 2100 (J) w Q_

(J) 0:: .._, 2000 -

w Q_

0::

Q_

1900 -

1800 1400 1300 0:: w 1200 WL N :::>.,.......,

1--i _JI-- I 100 0:: 0 LL

)> 1000 (J) 0:: ::)

(J)wU 900 WI--.._,

0:: <( 800 CL3 700 600 0 50 I 00 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-5 NUCLEAR POWER, PRESSURIZER PRES-SURE AND WATER VOLUME TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MAXIMUM REACTIVITY FEEDBACK, MANUAL REACTOR CONTROL 014-A-20766-9

3.00 I l I I I 2.75 -

2.50 -

2.25 ,__

0::

ro ...._

z 2.00 0

I. 75 -

I .50 ,__

I .25 I---

I .00 620.

LL I 610. ,--

wU C9w

<{ 0 0:: '--'

600. -

Ww -.....

> 0:: 590.

<{ ::)

wl-0:: <{ 580. -

0 0::

uW [L

~ 570.

w I-560. -

550. I I I I I 0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-6 DNBR AND VESSEL AVERAGE TEMPERATURE TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MAXIMUM REACTIVITY FEEDBACK, MANUAL REACTOR CONTROL 014-A-20766-10

I .20 0:: .....--.. I. 15 w*

3 L 00 I. I 0 o....Z 0:: LL I .05

<r:o Wu I .00

_J <(

u 0::

=:J LL .95 z'-'

.90 2400 2300 0::

Ww 2200 N 0::.....--..

1---1 =:J <(

0:: t.n 1---1 2100

=:J t.n t.n t.n w 0....

(.f) 0:: '-'

Wo.... 2000 0::

0....

1900 1800 1400 1300 0:: w 1200 WL N =:J.....--..

1---1 _J~ 1100 0:: 0 LL

=:)> 1000

(.f) 0:: =:J t.nwU 900 W~'-'

0:: <( 800 0....3 700 600 0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-7 NUCLEAR POWER, PRESSURIZER PRES-SURE AND WATER VOLUME TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MINIMUM REACTIVITY FEEDBACK, AUTOMATIC REACTOR CONTROL 014-A-20766-11

3.00 2.75 2.50 2.25 er OJ z 2.00 0

I. 75 I .50 I. 25 I .00 620.

LL I 610.

WU c.9W er..,_____, 600.

<t: 0 Ww

> er 590.

<t: :=J w I-er <t: 580.

o er uW ()_

L 570.

w I-560.

550.

0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-8 DNBR AND VESSEL AVERAGE TEMPERA-TURE TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MINIMUM REACTIVITY FEEDBACK, AUTO MA TIC REACTOR CONTROL 014-A-20766-12

I .20 0::..----. I. 15 w*

3L 00 I. 10 D... z 0:: LL I .05

<t: 0 Wu I .00

_J <t:

u 0::

=:J LL .95 z .._,,

.90 2400 2300 0:: ~

Ww N 0::..----. 2200 -

1-l =:J <t:

0:: U1 1-l 2100 -

=:J U1 U1 U1 w D...

U1 0:: .._,, 2000 -

w D...

0::

D...

1900 -

1800 1400 1300 0:: w WL 1200 N =:J..----.

1-l - 1100 0::0LL

=:)> 1000 U1 0:: =:J U1 w u 900 w I-.._,,

0:: <t: 800 D... 3 700 600 0 50 I 00 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1*9 NUCLEAR POWER, PRESSURIZER PRESSURE AND WATER VOLUME TRAN*

~ENTSFORTENPERCENTSTEPLOAD INCREASE, MAXIMUM REACTIVITY FEED*

BACK, AUTOMATIC REACTOR CONTROL 014-A-20766-13

3.00 I l l l I 2.75 2.50 I-2.25 I----

er:

co [l__

z 2.00 0

l. 75 I .50 ,__

I .25 -

I .00 620.

lL I 610.

wU (9w

<( 0 er: -.. . . , 600. ,,..,.

Ww

> er: 590.

<(::::::)

wl-er: <( 580. -

ocr:

uW 0..

E 570.

w I-560.

550. I I I I I 0 50 100 150 200 250 300 TIME (SEC)

Rev. OL-1 6/87 CALLAWAY PLANT FIGURE 15.1-10 DNBR AND VESSEL AVERAGE TEMPERATURE TRANSIENTS FOR TEN PERCENT STEP LOAD INCREASE, MAXIMUM REACTIVITY FEEDBACK, AU TOMA TIC REACTOR CONTROL 014-A-20766-14

1.07 - - - - -~ - ~ - - - -- - - -- - - -- -

1.06 0.99 O..M +----,.-- -,---.......,- - ~- - ~ ---.----,,---- _,

200 .250 300 350 450 500 550 6 00 Et.CL-1, 5.111 CN..LAWAY PLANT FIGUC JL1-11 I\., tUSW JEIIPBM.TIIE

CALLAWAY - SP Figure 15.1-12 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.1-13 Deleted REV. OL-~15 5/06

I 1400

<lli'N"IO, .

u "'~"'-

1 10001

~ : *BOO

~.

iQ 10 1 000

'S 400 i~

!P.! 200 0 ~ - - - - - -.......- ........- -.---------......,.-----

0 5 10 20 25 35

. rc:em)

Et.CL-1, 5.111 CN..LAWAY PLANT FIGUC JL1-14 DDt'Pl..81. ramR A I 1-.CK

CALLAWAY - SP Figure 15.1-15 Deleted REV. OL-~15 5/06

.t6

.00 100 KQ 7 11111; [SI~)

Et.CL-1, 5.111 CN..LAWAY PLANT FltuE 11.1-1M.

N.ICLE'AR.PGWBI.AMl COIE tEAT R.LII TRAl l!!IIT8 11111 A l'IBUI LN! ll!!lt.,

DnVl'E PCMBI.AVAJL.All.E

IC a.

Et.CL-1, 5.111 CN..LAWAY PLANT FltuE 11.1-11B FN ntttlP PN II.IE AN> Piil@tHi?--fi:

IMTl!R VDL.Lal l!TMNllll!!NT'S P'DRA ST'MII UEEER. G+SILPOMR.AVAL !5

CALLAWAY - SP Figure 15.1-16 Deleted REV. OL-~15 5/06

- - f,:,..ne.l IADJ,l L!'.IQP!I ldil J.

- - - L!:t:,p>

z g

i t

ffil 11))

0 Ill I

"' " .. . 111 rl.

I 1* .. I I

  • MO

'lilMl!! (ileC:,,

  • w Et.CL-1, 5.111 CN..LAWAY PLANT FltuE 11.1-1*

EACTIVITY AN> CGE BCllml

'TMN!lll!!!NT8 P'ORA STMII LIM! D1!!!R.

G+SILIPt#a.AV.AL F

CALLAWAY - SP Figure 15.1-17 Deleted REV. OL-~15 5/06

- - l rfi' rlll

- - - fcu l d IL FEW Fl

~2.Ja ,_ .

  • ,g~

Kil 1£ 5 I * *~

~

r-- i(l;I -

!;IQ

- - - *- - - - - - - - - - - liiiiiiiiiiiiiiiiiiiiiiiii. ,iliiiiiiiiiio.liiiiiiiii -

Q ' '

- - flRllled L..icr*

LOOfl!l ' 11'.:d 4

~

, l I

fl -

~-'2 *llltil * .,

I 400

-6400 .I

.. *, I

  • tQII ;IDQ p(1 <<(I ~((I Et.CL-1, 5.111 CN..LAWAY PLANT FIIL& 1Lt-17A A I HATBI H..0W All> l1liUI Pl.GW TRANl!lll!!!NT'S l"'IRA STMII LI~ D1!!!R.

wwwatlPtMl:RAV,M& F

oop 1 v-~--._

I-~---

--~ ~------

- " ! l ~ ~. "!11

~ *

- - - - - .---.............._ ._J A.,....

~ '

~g II..

IE -

J ...

'1

,II - ,-

I-I . I I ~ " I II I I *

[I I*>> 200 ~00 Et.CL-1, 5.111 CN..LAWAY PLANT FltuE 11.1-179 STE'AII PFDllllll:ANJ CGfiER.GW

'TMN!lll!!!NT8 lllllA STMII LIM! D1!!!R.

G+SILIPt#a.AV.AL F

CALLAWAY - SP Figure 15.1-18 Deleted REV. OL-~15 5/06

IM IDQ Wl 8

REV. OL-15 5/06 CALLAWAY PLANT Flll2E11.1-11A IUCI..FAR POI&. All> CCII: tBT Fl.II(

'1'11.t.1 1111'8 PCll l'l'IMII LIi! ll!R.,

rLWWWILPOMRAVAL F

--_ I

  • I I'

111 I I ii I i *

  • 11 ,. I II II I J_
  • L____

0

  • I 11 ----,I! I I

CM.LA.WAY Pl.ANT' Pl&lli HZ. . _- * * - PftEllli RZFR. \11\T--=--

  • vm 1111!!'

1 I__ , -- , l1MII 1Ul!!!D 4 IIJ1 - -.-* ,&VAL1 IF

CALLAWAY - SP Figure 15.1-19 Deleted REV. OL-~15 5/06

w I

I I I

~~'----------'----

,CALLAWAYPI..ANT td - lLILEl'AIDLGCIIAvdbGE 1'1!!11 Pl!IMnlllTMNlll91T8 P'IRA STMII II.IE- till1 , , I PCINERA'V&IUl!I.E

!! 1:(1 I

g 1--

JC(!

IC -

I iQl;I - ~

If.ii i -

  • I~

~

. 1

  • ii 1' ml Et.CL-1, 5.111 CN..LAWAY PLANT IB.CTIVITY Nil COIEBDRDN TRAl l!!IIT8 11111 A l'IBUI LN! ll!!lt.,

N0 OFRITE PCll'4ERAVAJUJI..E

CALLAWAY - SP Figure 15.1-20 Deleted REV. OL-~15 5/06

--- r

1 (1 . . .-- --~---------------.........,

- - ---- ~-- - - - .i i i i i ---*- .-

a +,,l......,!........!.....j,,,,...1---1---L.aaa-!---la==l.....i.-f-...a.........!----'--t----'"------"--'-----t-'. - - ~

fl og ~

Et.CL-1, 5.111 CN..LAWAY PLANT FIG\IE 1L1-nA A I t :ATBI A.OIi Aii> l1l:AII A.OIi TRANl!lll!!!NTS llal.A aTMII LIM! D1!!R.

_, i>>HIILPC#alRAVAL F

" 4ro :S(i],

!I:

,1;1

~f II ~

..s Q*

Iii

,II TllilE 42c;j1 Et.CL-1, 5.111 CN..LAWAY PLANT STS\111 PRDIIJIIEAJll COIER.CM TMN!lll!NTS l'CRA aTMII LIM! D1!!R.

-.,u+&ILPOMRAVAL F

1.4 1.2 0

0.£ 0.8

~g o.s 0

z Q.4 0.2 0

0 10 20 30 40 TIME (SEC) u 1.2

)(

~

0.8

~z~

c_

LL.I 0.6 a:::

0 0

0.4 0.2 10 20 JO 40 TIME (SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-21 STEAMLINE RUPTURE FULL POWER CORE RESPONSE REV.12 1/10

~

2300

~

a:::

o..s ffif N-2200 D:

~

o.. 2100 2000 ........................_ ......._,_-+-____.,_......__,__.,_--+_.._....,_........___._~I--......_.......___._____...........,

0 10 20 40 TIME (SEC)

....::IE

~ 1100 1-3:e ,ooo ffi-N it:

i f3 a:::

900 il..

800~__.__..__...,____.__+--_.____.__..___._---+_..___.____.__..__-+-.......-..__...__._-----c 0 10 20 JO 40 TIME (SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-22 STEAMUNE RUPTURE FULL POWER CORE RESPONSE REV.12 1/10

- - - INTACT LOOPS FAULTID LOOP 580-r---------------------------,

...J - - ....

m 530 520...,_........___.,_.....__._-+-___.,_..._....____--1_ _...._........___._+--.......__._---'______--f 0 10 20 30 40 TIME (SEC) 520--r---------------------------.

550-+----'------...............---1_....._........___..._....._-+-........-----_.__._----f___.......___..._...,_~

0 10 20 30 40 TIME (SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-23 STEAMLINE RUPTURE FULL POWER CORE RESPONSE REY. D 1/10

lntoct Loop


Faulted Loop 2500

~ 2000

[is ,,, ---, ....

o::~ 1500

~'

I~ 1000 c_

~ 500 10 JO 40 llME 2fSEc) 2500 2000 3-

~f;3 1500

~

~ ! 1000 500 0

0 10 30 40 TIME 2fsEC) 1200 1100

~

ens 1000

~Cl) ....

o::a.

a.-

()

en /

900 ______ ,._ /

.... ---....,,-- I 800 0 10 30 11ME~SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-24 STEAMLINE RUPTURE FULL POWER CORE RESPONSE REY. D 1/10

2000 500 04-....1,,_.,__...,__....1._1--...,__....1._ _ _ __..,,_ _ _ _....l._.__-+-....1.-------....1.---1 0 10 20 JO TIME (SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-25 STEAMLINE RUPTURE FULL POWER CORE RESPONSE REY. D 1/10

4 2

1-+----'--..__........____.___-+-......__ ..___.___._.,.__..__.__...,______.__+-........___._..._......_~

0 10 20 30 40 TIME (SEC)

The analysis that produced the above figures conservatively bounds the actual plant configuration. This analysis uses different setpoint coefficients in the OPll.T reactor trip setpoint from what is currently configured. The effect of the differences between the analysis inputs and the plant configuration is that the analysis inputs result in delayed protection and more limiting results.

CALLAWAY PLANT FIGURE 15.1-26 STEAMLINE RUPTURE FULL POWER CORE RESPONSE REY. D 1/10

  • .2- r - - - - - - - - - - - - - - - - - - - - - - - - - - - - ,

.2 4

TIME EC)

CALLAWAY PLANT FIGURE 15.2-1 TURBIHE TRIP EVEHT WITH PRESSURIZER SPRA V AHO POWER OPERA TED RELIEF VALVES Rev. 17 11/13

w 2600 ll

=i l/l l/l w

ll Q_ ~

2400

<(

ll -

w lfl l'cl ~

ll

=i 2200 l/l l/l w

ll Q_

2000 1800 __........._______________........______________........___________________...__________

0 20 40 60 80 100 TI ME (S EC) 1800 1700 w

2

=i 1600

_J 0

> 1500 ll w

n 1400 3
f----

Li_

5 '-../ 1300 l'cl ll

=i l/l 1200 l/l w

Ct' Q_

1100 1000 900 0 20 40 60 80 100 TI ME (S EC)

CALLAWAY PLANT FIGURE 15.2-2 TURBINE TRIP EVENT WITH PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 17 11/13

w oc

~

f5

...J w

~

w TIME (SEC)

...J w

(/)

(/)

w 0

TIME (SEC)

CALLAWAY PLANT FIGURE 15.2-3 TURBINE TRIP EVENT WITH PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 17 11/13

TIME SE )

5 2 60 0 TIME EC)

CALLAWAY PLANT FIGURE 15.2-4 TURBINE TRIP EVENT WITH PRESSURIZER SPRAY AND POWER OPERATED RB.IEFVALVES Rev. 17 11/13

-4 0 2 4 6 TIME SE )

CALLAWAY PLANT FIGURE 15.2-5 TURBINE TRIP EVENT WITHOUT PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 16 11/13

20~ - - - - - - - - - - - - - - - - - - - - - - ~

en Ci:.

20 -~~~--~~~-~-~~-~~-~-~~~-

o TIME SEC) o~ - - - - - - - - - - - - - - - - - - - - - - ~

00 0 ') 4 TIME SEC)

CALLAWAY PLANT FIGURE 15.2-6 TURBINE TRIP EVENT WITHOUT PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 16 11/13

....J w

Cl)

~

0 TIME (SEC TIME ( EC CALLAWAY PLANT FIGURE 15.2-7 TURBINE TRIP EVENT WITHOUT PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 16 11/13

6 0 10 TIME E)

CALLAWAY PLANT FIGURE 15.2-8 TURBINE TRIP EVENT WITHOUT PRESSURIZER SPRAY AND POWER OPERATED RB.IS: VALVES Rev. 16 11/13

_J o:: Z W:z

~a O z u...

0:::

~z 1-z ~

u...

TIME ( SEC)

CALLAWAY PLANT FIGURE 15.2-9 NUCLEAR POWER AND STEAM GENERATOR PRESSURE TRANSIENTS FOR LOSS OF AC POWER Rev. 17 11/13

HOT LEG

- - - - COLD LEG

.,,,.. ---- -- -------- - ~.

I I

2 3 4 I

2 l 10' TIME ( EC)

  • All loop**

CALLAWAY PLANT FIGURE 15.2-10 REACTOR COOLANT TEMPERATURE AND MASS FLOW RATE TRANSIENTS FOR LOSS OF AC POWER Rev. 17 11/13

(/)

~

0::

CL 0

_J 0:::

w 1- _

~ I')

o:: t w

N 0::

V)

(/)

w 0:::

TI ME ( SEC)

CALLAWAY PLANT FIGURE 15.2-11 PRESSURIZER PRESSURE AND WATER VOLUME TRANSIENTS FOR LOSS OF AC POWER Rev. 17 11/13

w

~

(/)

~

~

a..

~

g t/)

Q_

w . . ._, ,

z w

c.,

2

~

TI ME (SEC)

CALLAWAY PLANT FIGURE 15.2-12 NUCLEAR POWER AND STEAM GENERATOR PRESSURE TRANSIENTS FOR LOSS OF NORMAL FEEDWATER TO ALL STEAM GENERATORS Rev. 17 11/13

- - - HOT L LD LEG I

0 2

0 3

1*

2 10 TIME ( EC)

  • All loop**

CALLAWAY PLANT FIGURE 15.2-13 REACTOR COOLANT TEMPERATURE AND MASS FLOW RATE TRANSIENTS FOR LOSS OF NORMAL FEEDWATER TO ALL STEAM GENERATORS Rev. 17 11/13

w

~

(/1

(/)

w 0::

a:

w Cl1

-~

N -.,

0:: 2

(/1

~

a::: r a..

0 4 w

~

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w JD I- ---

- t')

a::: t;:

w N

a:::

(/)

(/1 w

a:::

a..

TIME (SEC)

CALLAWAY PLANT FIGURE 15.2-14 PRESSURIZER PRESSURE AND WATER VOLUME TRANSIENTS FOR LOSS OF NORMAL FEEDWATER TO ALL STEAM GENERATORS Rev. 17 11/13

u...

10 I 2 10 1

~

5 i::::: _

~~ -. .

~f W <t

-. 2 g§ ~ - . 3 0 W

_J

~

r-EC)

CALLAWAY PLANT FIGURE 15.2-15 NUCLEAR POWER, CORE HEAT FLUX AND TOTAL CORE REACTIVITY TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

w

=>

(/)

(/)

LJ.J

~

a..

0

....J 0

=>

(/)

(/)

LJ.J TIME (SE )

CALLAWAY PLANT FIGURE 15.2-16 PRESSURIZER PRESSURE AND WATER VOLUME TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

I-

~

oc 0 I 2 10 1 10 0

....J LL 0 ~

....J~

u...

~

~ w oc W LL wl-

z:Z -0.5

....J 5 a...

_J TIME ( E )

CALLAWAY PLANT FIGURE 15.2-17 REACTOR COLLANT MASS FLOW FATE AND REEDWATER LINE BREAK TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

7 RAll N H TL£


-- - -I OLD LE

, I I 2 1 1 10 TIME ( EC CALLAWAY PLANT FIGURE 15.2-18 TEMPERATURE TRANSIENT IN FAULTED LOOP FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

50 H T LEG

~ -- 6 0

SQ_ ,/

\

\ I 0

COL LEG ,- - '\ I 0 ....J


-- /

I 0

1-u \ I

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L5 0:::

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0 I 2 10 1 10 7 0 1- r;::' JURATION o::: I 50 w t!>

w

-:; O w

i-v

~z 6

s<(

8 0(1) COLO LEJ Q...

0 50

~..:.J

~

0:::

0 1 1 1 10 TIME ( EC CALLAWAY PLANT FIGURE 15.2-19 TEMPERATURE TRANSIENT IN INTACT LOOPS FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

w

~

, LOO

(/)

(/)

I UJ

~

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I ,-..

.=I

(/) ~

(/)

0 0...

t-: -

w

z:

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UJ

~

L p - F ULTE LOO TIME EC)

CALLAWAY PLANT FIGURE 15.2-20 STEAM GENERATOR SHELL PRESSURE TRANSIENT FOR MAIN FEEDLINE RUPTURE WITH OFFSITE POWER AVAILABLE Rev. 17 11/13

....J

~z l.&.J~

oz LL

~o

~z

...J o

<J i=

z 1 2 1 1 10 1 2 10 1

~

5 i= .......

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~~ -. 3 0 W

....J t--'

t-EC)

CALLAWAY PLANT FIGURE 15.2-21 NUCLEAR POWER CORE HEAT FLUX AND TOTAL CORE REACTIVITY TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

0 4

....J 0

(/)

(/)

w 0

TIME ( E )

CALLAWAY PLANT FIGURE 15.2-22 PRESSURIZER PRESSURE AND WATER VOLUME TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

w t-

~

- ':j'

....J <i' i....._

(/') I-(/) z

<( I.

~ ......

0 I 10 10 0

TIME { E )

CALLAWAY PLANT FIGURE 15.2-23 REACTOR COOLANT MASS FLOW RATE AND FEEDWATER LINE BREAK TRANSIENTS FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

70 N

HOT L£ __ ..,

I

/

- /

/

/

I OLD LE 0

I 2 1 1 10 TIME ( EC CALLAWAY PLANT FIGURE 15.2-24 TEMPERATURE TRANSIENT IN FAULTED LOOP FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

H T LE I

~ -- 6 0 I -

'.Sa... /

0 ... _... - - .

u ....J COL LE ,

0 \ ,

l-o \ ,'

\ I L5 a::

\

\ I I

0 I 2 10 1 10 7 0

  • JURATION H T LEG I

I I

0 I 2 1 1 10 nt~E ( EC CALLAWAY PLANT FIGURE 15.2-25 TEMPERATURE TRANSIENT IN INTACT LOOPS FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

w 0:::

(/)

(/)

UJ 0:::

....J

....J w

r- LOO I -

(/) <(

o a...

1-: -

w

z UJ
s UJ L p -F LTE LOO TIME EC)

CALLAWAY PLANT FIGURE 15.2-26 STEAM GENERATOR SHELL PRESSURE TRANSIENT FOR MAIN FEEDLINE RUPTURE WITHOUT OFFSITE POWER Rev. 17 11/13

CALLAWAY - SP Figure 15.2-27 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-28 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-29 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-30 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-31 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-32 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-33 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-34 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-35 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-36 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-37 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15,2-38 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-39 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-40 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-41 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-42 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-43 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-44 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-45 Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.2-46 Deleted REV. OL-~15 5/06

. I U,

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Et.CL-1, 5.111 CN..LAWAY PLANT FltAIE1u4 l>>8R. TRANIIBIT FOR FCKR LODPII IN OP!RATIGN.

nlDFUIPI COAl'l'N!: Dlll\11

CALLAWAY - SP Figure 15.3-4A Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.3-4B Deleted Rev. OL-15 5/06

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RIii Plll P9 CGUTINB DCMN

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2 r-1 D 2 8 Et.CL-1, 5.111 CN..LAWAY PLANT FltlilE11.1-1J mlllTIUI RIJILODI* 'IXII, RIii Plll P9 CGUTIN8 _._...__,

CALLAWAY - SP Figure 15.3-BA Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.3-88 Deleted REV. OL-~15 5/06

I' H

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Et.CL-1, 5.111 CN..LAWAY PLANT FIGIA&lu-1 FLGWTMNIIENT8 FOR l'Dlll. LOGP9 IN OPIR\TION.

CIE LOCtlD ROl'CR

WJITH OITTll[' POWER WITHOUT orrsrrr [R ffllO

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  • Flier MIAL-Gl4, a 45 pal penalty Ila bMn added t-o the calcuiat.d PMk RCS p.-...u,.

folknflng

  • klokff rt:lblr UGfdenL -Tole 11.14.

CN..LAWAY PLANT FIGUE1Ll-10 P6\K liEACTOR CGGLANT PREIIII.R:

RII ROI LCDI I a IJM'IIDII, OIE LOCICED ADTOR IEY.11 tNe

- - - Willi OHSITE PO'M::R

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Et.CL-1, 5.111 CN..LAWAY PLANT FICiUE11.a-11 MJCLE'ARIIOIJ~ COfiEAVBI\ENE Im CHUIII. IBT 11.lJX TRAl l!!IITI IIIDR:

RIii LODPll II QI" IN.'IDI, DIE LOCtm FOl'DR

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  • _ 'II. . . . . RDliil!R

CALLAWAY - SP Figures 15.3-13 thru 15.3-24 have been deleted.

Rev. OL-4 6/90

10 2 i-

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~i 1o- l 10- 2 L-------.1-.----------""""---

0. 5. 10. l S. 20. 25 . 30.

TIME ISEC J REV. OL-5 6/91 CALLAWAY PLANT FIQU"E 11A-1 CO"E AVE9'AOE NUCLEU nANSJENT FO" UNC0NT"OLLE0 "00

'°"'"

WITH0111AWAL FROM A IUIC"ITICAL CONDITIOH

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TIM£ t5£CJ REV. OL-5 6/91 CALLAWAY PLANT FIGURE 15.C-2 THERMAL FLUX TRANSIENT FOR UNCONTROLLED ROD WITHDRAWAL FROM A IUBCRJTICAL CONDITION

U-2000.

~ 1800.

1600.

1400.

I

~

1200.

1000.

800.

~ 600.

~ 400.

0. s. l0. JS. 20. 25. 30.

U-800.

~ 750.

I 700.

650.

~ 600.

~ 550.

~

500.

0. 5. 10. 15. 20. 25. 30.

TlME ISECl REV. OL-5 6/91 CALLAWAY PLANT FIGURE 1&.,-3 FUEL AND CLAD TEMPERATURE TRANSIENTS FOR UNCONTROLLED 1100 WITHDRAWAL FROM A SUB*

CRITICAL CONDITION

Ct:

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CN..LAWAY PLANT FltlilE1M-4 LWCONTRDLLED RCCA MN<'WITI-IRAWIJ..

FICIII RLL PCM&lwmt MINMLII laC11YITY I finCIC (111 PCIIIIEC MTIIIIAWAL RATl:t IEY.111111

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=i 0

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CN..LAWAY PLANT

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CN..LAWAY PLANT FIGIA&IM-41 LK:ONTFD.Lm RCCA MN<

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CN..LAWAY PLANT FltlilE 11.4-7 lN:QIIITl'I I m RCCA BAIi(

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CN..LAWAY PLANT FIGIA& 11.4-t LN:ONTRDLLED RCCA BAN<

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CN..LAWAY PLANT FIGUE11.4-11 MINM Lall [NII VBTIUI REi\.CTIVITY INl!IBfflGN MT!. ADD 'Wl'T1DI\WAL FRDII I& FBlitCBII' POMR RBI. ti tltl

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,:" -_ ffi 'Iii Ne111ro.111 Plrui: 'f.cip I I

~ I -~

10 1~ 10 REACTMT'lf ~DDmON RATE (PCM/SEC} 1 CN..LAWAY PLANT FIGUE11.4-1Z MINM Lall [NII VBTIUI REi\.CTIVITY INl!IBfflGN MT!. ADD 'Wl'T1IR\WAL IIIDII '10 FIRCBII' POWa RE.V.111'11

l. I

__J

<( 1.0 z

0::: 1-1

~es oz 0.9 0...

I.J..

0::: Q

<(

wz

.JO 0.8 U1-1

H-ZU

<(

0:::

I.J.. 0.7 0.6 0.5------------------

1. 2 . . . - - - - - - - - - - - - - - - - - -....

I. I

__J

<(

xZ

) 1-1

__J~ 1.0 I.J..Q z

.... I.J..

<Co w 0.9 Iz WO 0::: 1-1 al-uU <(

0.8 0:::

I.J..

0.7 0.6 ,___ _ _.....___ _ __.__ _ _ _...__ _ _...,

0 50 100 150 200 TIME (SEC)

REV. 16 10/06 CALLAWAY PLANT FIGURE 15.4-12a NUCLEAR POWER TRANSIENT AND CORE HEAT FLUX TRANSIENT FOR DROPPED ROD CLUSTER CONTROL ASSEMBLY

580 w u...

(.!) *

<( .........

0::

WW

>O::

<( ::J I- 560

...J <(

WO:

UlW l/) [l..

WL

>W I-540 520--------------------

2400.-------------------

2300 w

0::

J

(.f) w..--. 2200 l/J 0: <(

[l.. 1-4 U)

>- [l..

~- 2100 L

1-4 0:

[l..

2000 1900 .,__ _ __.__ _ _ _....,__ _ ____.______,

0 50 100 150 200 TIME (SEC)

REV. 16 10/06 CALLAWAY PLANT FIGURE 15.4-12b PRESSURIZER PRESSURE TRANSIENT AND CORE AVERAGE TEMPERATURE TRANSIENT FOR DROPPED ROD CLUSTER CONTROL ASSEMBLY

-I C

z 1.2 1*

  • 8
o. L---================:__-

"* s. !:?. 1s. .?a. 25. ~- 55. "~- .is. s:.

TIME (SEC)

Rev. 0L-2 6/88 CALLAWAY PLANT FIGURE 15.4-13 NUCLEAR POWER TRANSIENT FOR STARTUP OF AN INACTIVE REACTOR COOLANT LOOP

l.4 1.2 I*

.9

~ HOT AVERAGE \ CHANNEL CHANNEL ',..._

0. L..~~=:::::=============-
o. s. ID. I~
  • 2a . 2'S . 30 . ss.

TIME (SEC)

Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 15.4-14 HEAT FLUX TRANSIENT FOR STARTUP OF AN INACTIVE REACTOR COOLANT LOOP

2.2 2.

~

C: I *8

-z L t-0 1 .6 1.,

z 0

u C:

1. 2 1.

e:

-=- .9 0 .6 rt

....cc *'

0 u .2 3.

c.

TIME (SEC)

Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 15.4-15 CORE FLOW TRANSIENT FOR STARTUP OF AN INACTIVE REACTOR COOLANT LOOP

2l:)2.

~-

~-

C f;

2~.

I 22-00

  • f II:

21s.a.

-.... .nro.

w

~

f .?~.

~- c. s. .,~. ~

5. n. 25
  • 5-.J
  • 5"S. .t;:?. *S. sa.

7U:.

6-9,J.

i 0

w 662.

~

C 6-'2.

K w 6-2~.

t

~

w 6CJ.

u C

II:

w S963.

C g

u

~-

5-'C.

sn.

S~l.

C. s. *~. .,.  : s. n.

TIME 25.

CSCC>

sz. ~- "~- -'S. _., .

C. ...

Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 15.4-16 CORE AVERAGE TEMPERATURE AND PRESSURIZER PRESSURE TRANSIENTS FOR ST ART UP OF AN INACTIVE REACTOR COOLANT LOOP

u -

1:, ~

1:.,

I.~

-. J i.,

2.3

u I.J ii
  • x
  • Q 1.,

LI t..,

.U I . '

~JS

21.,,

Ji.1

,.:z I '

.m 2' I I n u u 11 Et.CL-1, 5.111 CN..LAWAY PLANT FUiUE 11.4-17 mlll'IRU Bff RII ITMIUI Cl' M INAC1IVI!!!

WCTt.R CODI INT LOOP

CALLAWAY - SP Figure 15.4-17A Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.4-178 Deleted REV. OL-~15 5/06

40 26-385 R P H M L K J H G F E . D C B A

-8.9 --7.4 S.6 -9. I -8.s 2

-8.2 -6.8 -4. I 0.2 3

-7.9 8.2 -7, 7

-8.4 -6.0 - 3. 8 - I ,8 5

-e.5 -8.4 -7.4 -5.5 0.3 6

-7. 7 -5.0 -1. 2 -1.0 7

,-7. 7 -7.3 -5.9 .-3. 2 1.5 3.2 3.4 3.6 8

... 6. 9 2.7 5.9 6.0 9

-3.4 0.7 10.6 10

-5.3 -1.8 5.9 17. I II. 4 II I. 3 I 2. 3 24. 6 12 O. I 0.7 7.7 3/4 23.6 13

~ 17, 6 I

2. 5 4.7 II.I I~

2.1 6.5 15 CASE A Rev. OL-0 6/86 CALLAWAY PLANT FIGURE ,s.4-is REPRESENTATIVE PERCENT CHANGE IN LOCAL ASSEMBLY AVERAGE POWER FOR AN INTERCHANGE BETWEEN A REGION i AND A REGION 3 ASSEMBLY

18094-1 R P N M L t< J H G F E D C B A

-4.8 -4.5 1

-0.4 -4.8 -4.8 2

-4.8 -4.4 -2.6 1.4 3

-2.8 -3.1 -4.5 4

-3.9 -4.3 -4.6 -1.5 5

-3.8 -3.8 -3.6 -2.9 0.5 6

-3.6 -2.0 -2.3/ 2.2 7

~\

I

~ 11.3

\

-3.5 -3.4 -2.6 -0.7 11.4 5.8 4.4 8

-3.2 5.2 16.7 5.4 9

-1.7 0.5 8.8 10

-2.2 -1.0 2.2 6.9 6.6 - -11 0.0 2.9 6.5 12 1.2 0.0 1.6 10.3 13 3.2 0.8 3.2 6.0 14 0.3 1.5 15 CASE B-1 Rev. OL-0 6/86 CALLAWAY PLANT FIGURE 15.4-19 REPRESENTATIVE PERCENT CHANGE IN LOCAL ASSBL Y. AVG. POWER FOR AN INTERCHANGE BETWEEN A REGION 1 AND A REGION 2 ASSBLY. WITH THE BURN. POISON RODS BEING RETAINED BY THE REGION 2 ASSEMBLY

4026-387 R P N M L K J H G F E D C B A 1.0 I. I 5, I 1.0 1.0 2 1.1 I. I 1.9 4.9 3 I. 7 I, 7 1.4 ij I. I 1.8 I. I 0,7 5 0.0 0.2 1.8 3.9 4.0 6 0.0 5,2 2.2 -0.3 7

-0.1 -0.E 0.3 5. I I 3/4, I. 5 -0.3 -0.6 -0.7 8

~ -1.1

\ ,I

-1.0 1-0. 8 -0.9 9

- I. 4 -3. I -1. 3 10

-0.9 -1. 7 >-1. 7 -0.9 II 1-2. 5 -2.9 -I.I 12 0.7 -1.9 -2.9 2,5 13 2.3 -2.8 -2,4 -0.8 I ij

-2. I -2.8 15 CASE B-2 Rev. OL-0 6/86 CALLAWAY PLANT FIGURE 15.4-20 REPRESENTATIVE PERCENT CHANGE IN LOCAL ASSBL Y. AVG. POWER FOR AN INTERCHANGE BETWEEN A REGION 1 AND A REGION 2 ASSBLY. WITH THE BURN. POISON RODS BEING TRANSFERRED TO THE REGION 1 ASSEMBLY.

4026-388 R p N M L K J H G F E D C B A

-2. 2 -2.1 2.0 -2.0 -2. I 2

-1.5 -1.6 -1.0 2.0 3

-0.9 -1.0 -0.4 l+

-0.4 1.2 -o. 5 -1. 4 5

-2.1 -1.6 2.3 5.7 -2.0 6

-3.2 9.7 4.4 -1. 7 7

-2.3 -1.6 1.8 13.6 X 5.6 -0.4 - I. 6 -2. I 8

-2. 2 9.7 I. I -2. 2 9 0.3 4.5 -0.9 10

-1.9 -0.4 1.8 -0,5 -1. 9 11

-0.9 -0.6 -I.I 12 0.4 -1.4 -I. 5 2.0 13 2.0 -2.1 -2.0 -0.9 I l+

-1.9 -2.2 15 CASE C Rev. OL-0 6/86 CALLAWAY PLANT FIGURE 15.4-21 REPRESENTATIVE PERCENT CHANGE IN LOCAL ASSEMBLY AVERAGE POWER FOR AN ENRICHMENT ERROR (A REGION 2 ASSEMBLY LOADED INTO THE CORE CENTRAL POSITION)

4026-389 R P N M L K J H G F E D C B A

-1 l -14 0.4 -9.2 -12 2

-12 -14 -15 -13 3 3.2 l. 2 -11 ij

-I. 5 -12 -15 -16 5 9.8 7. I -L6 -8.0 -16 6 9.2 -2.3 -12 -14 7 20.0 17.8 10. 8 0.8 -10 15 -16 8

27. 2 -5.5 - II -15 9 20.7 5.8 -12 10 42.0 [X 23. 6 I. 9 -8.6 - 13 II 14.0 -1. 7 8.9 12 38 .6 20.4 2,8 -7.0 13 35.9 7.0 -3. 3 -6.3 I If
15. 3 2,9 15 CASED Rev. OL-0 6/86 CALLAWAY PLANT FIGURE 15.4-22 REPRESENTATIVE PERCENT CHANGE IN LOCAL ASSEMBLY AVERAGE POWER FOR LOADING A REGION 2 ASSEMBLY INTO A REGION 1 POSITION NEAR THE CORE PERIPHERY

z<

~

2 0

z I..,_ 1-5 0

z 0

~

~

LL

~

1

~

a... 0.5

~_,

c:...>

=::>

z 0 0 2 4 6 8 0 2 IME (SECO OS)

CALLAWAY PLANT FIGURE 15.4-23 NUCLEAR POWER TRANSIENT, BOL, HFP, ROD EJECTION ACCIDENT Rev. 12 11/13

FU L CE RT MERA - URE FUEL E GE TE MPE TUE CLA l.111:.R 11:.tA P LR I E.

MC L I G 4900 Oeg r c 6000 w

e sooo

  • - -----ir=__. . . ,______________ _

LU a::

=>

ffi a.

4000 3000 -

C) 2000 u

C

~ 000

_,J uJ

=>

LI..

0 0 2 6 8 0 TIME (SECO DS)

CALLAWAY PLANT FIGURE 15.4-24 HOT SPOT FUEL AND CLAD TEMPERATURES VERSUS TIME, BOL, HFP, ROD EJECTION ACCIDENT Rev. 12 11/13

,:J- 25

~

~

0

z 20 LL..

0 z

0 t- 15

~

-8:

a::: 10 w

~

a..

a::: 5 u

~

0 0 2 4 6 8 0 TIME (SECO DS)

CALLAWAY PLANT FIGURE 15.4-25 NUCLEAR POWER TRANSIENT, EOL, HZP, ROD EJECTION ACCIDENT Rev. 12 11/13

CE TR T MP A- URE V R G~ T P R TURF TE T tAP E AT R L80 Deg F u.J 0::::

~ 4000 a:::

w a..

u.J F-300)

Cl

5 2cm

~ ~- --------.. ......... _, ___ _

-. ~ - - - ....

(..)

0 l (XX)

GJ u..

0 0 2 4 6 8 10 TI E (SECO DS)

CALLAWAY PLANT FIGURE 15.4-26 HOT SPOT FUEL AND CLAD TEMPERATURES VERSUS TIME, EOL, HZP, ROD EJECTION ACCIDENT Rev. 12 11/13

10.0 t.O I

0 9.0 8.0

)C a:>

-l

] I:

0

...J 7.0 6.0 I.I.

lllC 5.0 1.1,J Cle: LLO a:>

0 1.1,J I-3.0 er a:

c.:,

uJ 2.0 I-z I. 0 0

0 0.5 1.0 1.5 2.0 2.5 3.0 3.S TIME (SECONDS x 10-3)

Rev. OL-2 6/88 CALLAWAY PLANT FIGURE 15.4-27 REACTOR COOLANT SYSTEM INTEGRATED BREAK FLOW ROO. EJECTION ACCIDENT

r surizcr Filli g tl R w

0 z

0 Lfi LL..

...J

(.)

z:

100 200 TIME (SEC) 0 00 TIME (SEC)

CALLAWAY PLANT FIGURE 15.5-1 INADVERTENT OPERATION OF ECCS DURING POWER OPERATION Rev. 16 11/13

Pr uriz r Filli '9 DNBR s

- -- --- -* 'I Se71>oint s1.tned I

I I

I I

I

\ I I

0 2 Pr urizvr Filll 9 N8R w

....J 0

~

w

~- 1

=---~

ffi- .,, ,,,

N

~ ,,, ,,, .,,

(/)

(/)

w

~ \ -

0 CALLAWAY PLANT FIGURE 15.5-2 INADVERTENT OPERATION OF ECCS DURING POWER OPERATION Rev. 16 11/13

Pr uriz r Fillin<J

- - - - ONBR s 200 00 TIME (SEC a::

z 0

00 4 5 CALLAWAY PLANT FIGURE 15.5-3 INADVERTENT OPERATION OF EGGS DURING POWER OPERATION Rev 16 11/13

2,000 w

~

J

-1 0 1,800 a: I='

Ww I- w 1,600

~ u_

a: 0 W CD N ::, 1,400

-o a:

J -

(J)

(J) w 1,200 a:

a..

1,000 0 300 600 900 1,200 1,500 TIME (Sec.)

2,600 w

a:

J

~ 2,400 -

~ /,------------------------'

a..

a: -<(

W (J) 2,200 -

Na..

a: -

J (J)

(J)

~ 2,000 ~

a..

I I I I 1,800 0 300 600 900 1,200 1,500 TIME (Sec.) REV. OL-7 5/94 CALI.AWAY PLANT FIGURE 15.5-4 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MINIMUM REACTIVITY FEEDBACK, WITHOUT PRESSURIZER SPRAY

1.2 er:

-z

....J

<{

1.0 ,...

w -

$ ~ 0.8 ...

0 0z a..

er: 0LL 0.6 ,_

<{

w z

....J 0 0

, f- 0.4 I-z 0

<{

er:

LL 0.2 -

I I I I 0

0 300 600 900 1,200 1,500 TIME (Sec.)

700 w

Ci

<{

LL O} 650 ,_

er: CD w 0

<{ w er: :::,er:

w f-600 -

f- <{

<{

$ er:

w w a..

er: ~ 550 ...

0 w 0 f-I I I 500 '

0 300 600 900 1,200 1,500 TIME (Sec.) REV. OL-7 5 /94 CALLAWAY PLANT FIGURE 15.5*5 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MINIMUM REACTIVITY FEEDBACK, WITHOUT PRESSURIZER SPRAY

2,000 w

~

....I 1,800 0

a:

w Iw-I- w

- 1,600

<( LL..

~ (.)

a: m w  ::, 1,400 N

a:

(f)

(.)

(f) 1,200 w

0:

a..

1,000 0 300 600 900 1,200

  • 1,500 TIME (Sec.)

2,600 w

a:

(f) 2,400 ....

(f) w 0:

a..

0: (f)

<(

w a..

N a:

- 2,200 -

(f)

(f) w 2,000 ....

a:

a..

I I I I 1,800 0 300 600 900 1,200 1,500 REV. OL-7 TIME (Sec.) 5/94 CALLAWAY PLANT FIGURE 15.5-6 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MINIMUM REACTIVITY FEEDBACK, WITH PRESSURIZER SPRAY

1.2 , - - - - - - - - - - - - - - - - - - - - - - - - ~

J' 1.0 ...

<(

a: z w

~~ 0.8 ...

00 Cl. z CI: LL

<x:o 0.6 ....

wz

__J 0

() I- 0.4 ....

> ()

z <(

a:

LL 0.2 -

0 '----'-------L'--~--.!...-'---'------L'--~--.!...-'---'--__J 0 300 600 900 1,200 1,500 TIME (Sec.)

700 . - - - - - - - - - - - - - - - - - - - - - - - - - - .

w U::-

~

<( O> 650 -

a: Cl)

WO

~~

a: a:

W  ::> 600 ....

I- ~

<( a:

r--------------------------1

~w w Cl.

a: ~

0 W 550 ...

() I-500 ..__.....___ ___._,_ _ ~ __.__,_ __.__ ___,L,_ _~_ _. _ _ ,_ _ . __ __.

0 300 600 900 1,200 1,500 REV. OL-7 TIME (Sec.) 5/94 CALLAWAY PLANT FIGURE 15.5-7 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MINIMUM REACTIVITY FEEDBACK, WITH PRESSURIZER SPRAY

2,000 w

~

J 0 1,800 a::

w I--

I- W 1,600

<( w

$~

a::-

w en 1,400 N[S a:: ---

J

~ 1,200 w

a::

a..

1,000 0 300 600 900 1,200 1,500 TIME (Sec.)

2,600 w

a::

J 2,400 ,...

Cf)

Cf) w V

a::

a..

a::

<(

w Cf) 2,200 ,...

N a..

a:: ---

J Cf)

Cf) w 2,000 -

a::

a..

I I I I 1,800 0 300 600 900 1,200 1,500 REV. OL-7 TIME (Sec.)

5/94 CALL.AWAY PL.ANT FIGURE 15.5-8 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MAXIMUM REACTIVITY FEEDBACK, WITHOUT PRESSURIZER SPRAY

1.2

.....J 1.0 ...

a: z w-

~~ 0.8 -

oO Cl. z a: LL 0.6 -

<!: 0 wz

.....Jo 0- 0.4 -

J I-z (_)

a:

LL 0.2 ,...

I I I I 0

0 300 600 900 1,200, 1,500 TIME (Sec.)

700 w

(9 LL

0) 650 -

a: (l) w 0

<!: w a: a:

w :J 600 -

I- I-a:

~ w w Cl.

a: ~

550 -

0 w

(_) I-500 ...__ _.__ __._,_ __..____I.___........_ __._,_ _.._____,.__......___ _,

0 300 600 900 1,200 1,500 REV. OL-7 TIME (Sec.) 5/94 CALLAWAY PLANT FIGURE 15.5-9 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MAXIMUM REACTIVITY FEEDBACK, WITHOUT PRESSURIZER SPRAY

2,000 w

~

_J 1,800 0

a:

w I--

I- w 1,600

<( w

~ LL.

a: (.)

w co 1,400 N :J

-a: (.)

(J)

(J) 1,200 w

a:

CL 1,000 0 300 600 900 1,200 1,500 TIME (Sec.)

2,600 w

a:

(J) 2,400 -

(J) w a:

CL a:

w

-<(

(J) 2,200 '""

N a:

(J)

-CL (J) w 2,000 -

a:

CL I I I I 1,800 0 300 600 900 1,200 1,500 REV. OL-7 TIME (Sec.)

5/94 CALLAWAY PLANT FIGURE 15.5-10 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MAXIMUM REACTIVITY FEEDBACK, WITH PRESSURIZER SPRAY

1.2

...J

<{

1.0 ....

a: z UJ ~ 0.8 ....

~o Oz 0.. LL a: 0 0.6 -

i'.5 z

...J 0 o-

, r- 0.4 -

z~

a:

LL 0.2 -

I I I I 0

0 300 600 900 1,200

  • 1,500 TIME (Sec.)

700 w

CJ

<{

LL 650 -

OJ a: Q)

UJ 0

<{

--w a: ::,a:

UJ 600 -

r- r- <{

<{

~ w a:

UJ 0..

a: ~

0 UJ 0 r-550 -

I I I I 500 0 300 600 900 1,200 1,500 TIME (Sec.) REV. OL-7 5/94 CALLAWAY PLANT FIGURE15.5-11 CHEMICAL AND VOLUME CONTROL SYSTEM MALFUNCTION MAXIMUM REACTIVITY FEEDBACK, WITH PRESSURIZER SPRAY

0:::

La.I OJI 3,::

0 a.- z

().6

~g

(.)

z (),4 0.2 25 50 75 100 4

2 1-+-.......___._......_ _ _ _ _ _.......__ _ _ _ _......._ _ _ _ _ _.....___......._

0 25 50 75 100 TIME {sec)

CALLAWAY PLANT FIGURE 15.6-1 NUCLEAR POWER AND DNBR TRANSIENTS FOR INADVERTENT OPENING OF A PRESSURIZER SAFETY VALVE REV. 17 11/22

2400 2200 uJ a::

~a:: 2000 Cl.$

ffil/l Na..

a::

(/)

~

1800 1600 a::

Cl.

1400 1200 0 25 50 75 100 520-+-___.____.____..___._____.____._.._......__ ___._..__,_.....______.___._....___._----t 0 25 50 75 100 TIME [s]

CALLAWAY PLANT FIGURE 15.6-2 PRESSURIZER PRESSURE AND VESSEL AVERAGE TEMPERATURE TRANSIENTS FOR INADVERTENT OPENING OF A PRESSURIZER SAFETY VALVE REV. 17 11/22

P t*:!ic,L ' i zc


u 1u r e S1E .rr Gen-e- r a l r


  • I n i;. 1 ,.. _eqrn ~ n r or

. 0 -.----------------------------.

c:t::"

V) r:,,.r)

LLJ Ct:: ' !!loo _, _ _

0....

- - - ~ - * ,P'"

I I

,2*.00 0 00 Ti e (s)

Nate:

1he llamllll-hf._. mllllell .........- ~ INI

._.. on III Mllyl:la 1h11: ,...._*an.

1...- ~

Allla on a.

lraat IIWII . . . . . . . to be wlllllll t o ~ lhl RC8 nipld oaaldailn. n.111 aamt1Y6e -.lh 1-,..at b, h u.mll-hJ~ ...... 111 U.8G1RmdUai .......

ertm:la ~ Um * * ........,, ........

Addllanfl o+e~ hwe been perf Ollllld lhllt aamt1Y6lly l"lducl h IUllblr flf arded ASDa

..,.....,.,.,.. . . . . . . . {4 ti11Mf""'1 .... "'tw,,.

,.._ rmub ~ D911' lllipd l!=l M-- ~ U... ~

llhlJln on ... ,..._ ..._ ._.._ lhll: ... b ~

CN..LAWAY PLANT MID

  • I :ay wn pedOllllld to cp,lllw- ndologlNI

.......-Wflf hpnilallgld~ C......6*

~...,....

rwatw.-.:ldlmbw,.,..UAd~u.. * .a*** FIL.,111.z.at All> l1E'MI GBBI\TCll (IUITIIE)

AM, INTACT 81NRATGH8) ppallll!TMNllll!!NTS FDRS'TBII SEMRATOR TLIE RlPTLIE BrENT IIE'l.t, Wit

p ure:d Loo ot Le _


R p lJ e Loop Cold Le g

'\

LLJ I-

~

LL -t II u..l t--

10 100 3 00 Ti Nata:

11-. hrmll-hy.._., madal llfllll lltud In NI flgln II

. . .,... ~ lll'llllr* l t d ~ - tm:11,.1,911,.,......,

~~ ........ b:l . . . . . . . . b : l ~ U .

RCS l"llpld WW. lNI II aanNIYIIIV'a .... . _ _

to lhl lhlrma,hy.._., ._,... ol lhl SG1R n lhl

....... fllfl!Cta '11 ... **Klalled tirmlllrt.

......... ...,.....,..,, ..... ..., ..,........ uw aanNIYIIIV'llf IWIIN 1h11 runllllr ol IDl'ldlllll .ASDt.

  • 11111:111 f CN" lhl llllpld aooldcNn f ram llwN to _,_ 11-.

- - ~ * ...... l"llllld ..awiillliPM U-.. '-1 II.,-, CN..LAWAY PLANT

~

.,... .... ,....,_ nw, lll'lllly.., ltd ..., ..., ~ A8D 7 M9; -

..,........ b:I ._...,. ..........

ol 1h11 pnliDIWld OOiDIIINft. CanNIYIIIV'a CGIINIIPR8 . . . . . .

~

~-JU-.

l&&CTGRCGGI..ANT SYSTEII TEIIPBI\TLIE

'RLPTLIBJ L ~ TMNllll!!NT l'CltaTMII cca..TCR111EFU1111EE!VBII' IE'l.111111

n l;I L o Le~ ( .,, 2 }

n 11 L op Cold L'll g ( I p 2. )

0----------------------------------------,

0 LL.

o 500 -

w LLl .,,..

V. '

~

n....

3'00 u...J I-

[} 100 20 ifJ 400 Tir1. , v Note:

The thermal-hydraulic model presented in this figure is based on an analysis that credits all three AS Os on the intact steam generators: to be available to support the RCS rapid cooldown. This is conservative with respect to the thermal-hydraulic analysis of the SGTR and the potential effects of the associated transient .

.Additional calculations have been per1ormed that conservatively reduce the number of credited AS Os available for the rapid cooldown from three to two. This results in a longer rapid cooldown duration than is shown on this figure . The analyses that use the reduced AS 0 CN..LAWAY PLANT availability were per1ormed to quantify radiological consequences of the prolonged cooldown. Conservative flot1Jrates and durations were used in the radiological consequence analyses .

REl&CTGRCGCLANT 8'STBI TBIPERATLE

[INTACT LGGPlj TMNIIENT FGRSTS\111 Gl!!IBb\TCRWIUl'ftR!!!l!M!III' EV.ti Wit

In ac S l am Ge I or s ( , I a I

~o m

0

_J u..

<j"'

Lr.] 10 --

~

0 1me s)

Note:

The thermal-hydraulic model presented in this figure is based on an analysis that credits all three AS Os on the intact steam generators to be available to support the RCS rapid cooldo1JJn. This is conservative 1JJith respect to the thermal-hydraulic analysis of the SGTR and the potential e11ects of the associated transient .

.Additional calculations have been performed that conservatively reduce the number of credited .Af> Os available for the rapid cooldo1JJn from three to t1JJ0. This results in a longer rapid cooldo1JJn duration than is sho1JJn CN..LAWAY PLANT on this figure. The analyses that use the reduced AS 0 availability 1JJere performed to quantity radiological ~-Jl.l-m consequences of the prolonged cooldo1JJn. Conservative 1101JJrates and durations 1JJere used in the radiological l1EMI R.0WMTE(lffACT GIIBMTCMI}

consequence analyses. TRAMlll!!NT NllaTMII &IN!MTOR Tl.IE RlPT\IE E!IIENT IE'l.111111

S.Lec1m G. .:ner tc L.i..J 0

_J L.L...

2 I I I I I I I I I I I) 5 0 Tim s)

Note :

The thermal-hydraulic model presented in this figure is based on an analysis that credits all three .AS Os on the intact steam generators to be available to support the RCS rapid cooldown. This is conservative with respect to the thermal-hydraulic analysis of the SGTR and the potential effects of the associated transient.

ftdditional calculations have been performed that conservatively reduce the number of credited AS Os available for the rapid cooldown from three to two . This results in a longer rapid cooldown duration than is shown CN..LAWAY PLANT on this figure. The analyses that use the reduced AS 0 availability were performed to quantify radiological FHiUE11.NE consequences of the prolonged cooldown. Conservative flowrates and durations were used in the radiological l1l:MI R.ONMTE (IUITUIDGIIBM.TCII) consequence analyses. TRAMlll!!NT NllaTMII &IN!MTOR Tl.IE RlPT\IE E!IIENT IE'l.111111

h: l:l u red S C ,,.,,,nera+or I n cct S ea rr G n .. a

  • o r { 0 2) 4 moo 2000 -: 0 51} 0 Time ()

Note:

The thermal-hydraulic model presented in this figure is based on an analysis that credits all three AS Os on the intact steam generators to be available to support the RCS rapid cooldo1JJn. This is conservative 1JJith respect to the thermal-hydraulic analysis of the SGTR and the potential e11ects of the associated transient .

.Additional calculations have been performed that conservatively reduce the number of credited .Af> Os available for the rapid cooldo1JJn from three to t1JJ0 . This results in a longer rapid cooldo1JJn duration than is sho1JJn CN..LAWAY PLANT on this figure . The analyses that use the reduced AS 0 availability 1JJere performed to quantity radiological FHiUE11.NF consequences of the prolonged cooldo1JJn . Conservative 1101JJrates and durations 1JJere used in the radiological l1E'MI GINRATCII TBIPBMTUI: (IUl1lll:D consequence analyses . AID Iii.ACT Glll!!MTGII} TIW l!lffl ,at S'T&UI armttTORTLIERLPTLIEEWENT IE'l.111111

Ru ::ilur S l!iCrfl G:. r £er l r 5

2400 -

~

I I 0 2000 xr 500 Ti me (s)

Note:

The thermal-hydraulic model presented in this figure is based on an analysis: that credits: all three .AS Os on the intact steam generators: to be available to support the RCS rapid cooldown . This is conservative with respect to the thermal-hydraulic analysis: of the SGTR and the potential effects: of the associated transient .

.Additional calculations: have been performed that conservatively reduce the number of credited .AS Os available for the rapid cooldown from three to two. This results: in a longer rapid cooldown duration than is shown on this figure . The analyses: that use the reduced .AS 0 CN..LAWAY PLANT availability were performed to quantify radiological consequences: of the prolonged cooldown. Conservative flowrates: and durations: were used in the radiological hall( &aTOIATIIOIPLE&CL ff consequence analyses: . YALYER.GW MTE (IU'TLIB IEl&li\TOR}

TRAMIIENT FORSTEJIIII CiSEMTOR TLIE RLPTllE Bf'ENT

l nlccl S. am C n::- 'Ol r!:l (to-tel) 12 0 - - - - - - - - - - - - - - - - - - - - - - - - - - - - -

!..i..J 00 --

81.)0 --

-~ 0 --

2 -~

O__..,...-.........!,,l. .,;l."""""""""""';;;,,.,-""':=l~ I ---,.,!,,,1...,,1....;:,,..........-...,,,,,..--""""""",...................!,,--.........!,,l...,,l...;:~ 1--!,,,,,,,,,,,,,.-~

2000 300 -' 00 500 Ti e ' ) J Nata:

'Im lama,hy.._., mudll- lllwd., NI flrp-. II

' - - ' 1:ir1 un unu1r* lid..,.. ul U... .Mlh. 1:ir1 U.

~ .............. Iii bill . . . . . . I i i ~ ...

RCS rapid oaaldlNn. TIM II aanNIVIIIV'a .an mlpllDI:

to lhl llwmll-hy_., ...,.1111 ot lhl 8G1R n lhl

....... '11f. . " .... ,u..ta11a:1 ........

Addllb_. ..... ~ .._ * .._.. .-,1:11'1'1'1.a lhlll:

aanNIVIIIV'llly ..... lhl ruriblr ot lllld:ld .A81Jt,

,wlllbll for lhl IIIIPld OODldNII f ram lhrN to two. 11a

....- ., * .....,.._ "Mlwl dlnlan '-111...,_, CN..LAWAY PLANT 1:ir1tN..r...,_ ,..unu1y..,ua..,u.-...A8D

  • z t47r .-. .-rl:IIYl'l.a lill ~ t ,.,..,_,..

~ ot lhl PflllalWld iDNIIDlln. CanNIIYIIIV'a l1liUI GEIIIM.TalATiclF!LX ..&.&'

flDNIIN 1111d ...,._.,.. I.Md In lhl 111C1a1at1N1 VAi.Vi! Ill.OW IIATI! (N'ACT *l!!IIATCIIJ

~ .-.1y ...

TRAN!IIENT FORSTSUI BWTOR TLEE IU'TLIE Ellf'ENT

Iur n aIo NM

-iillll ID - 1 ,' ~ ** a1 11h11 .*.

1 1ff11Cta fll .._ m1vtllllMI tirmlllri.

1 _

,.._.Nb~-* l:.ii'i Jiilfal'l'l'I* 1h11

- ........l*,.:lllln-**- - ~ w . n f*: 1r:11*. ..,.*

~All II ,AIA-llA'V 1

A ll .IT

- . I ~-- *, - --- **- *JI

. . . . . . ,,,, 1h11

, . . . . .rlll c1nk11a -

~--,--.

IMII In :hi ndala-I ilillllillllllN. ~ -

111'1\RDITliUI *JCll&...:a.1.IC 1111..GWTIIAll!IIT IICIIITMll aBATCII TUEIIPllllll!WIIII' Et., ll ,M 1

S e a rn Ge n ra" o r A. F' I I :)

S rn s- n isr

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j I

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w tn

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f '

I I

CQ t I

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2 I I 0 5~

Ti .~ e (s Nata:

1111 ~.....,.._., madll P191 Ital In la flgln II

...... .., .. ...,. lhut ...... ul lh,,.,Mlh,.., u.

~ ............... Iii .......... Iii tl#ll't.,.

RCS rapid oaaldDML 1111 II aanNrVlll'la llah ...,.at to lhl lhMmll-lly~ ._,. . ol lhl 8G1R md lhl

...... 4f.cta fll tt. *1wlllll81d tr.lllld.

Addllb* ,...,....,. l'IR'* ..._ i:-fill'l'l'l.:l 11'1111:

aanNIVlll'I..,.. ...._ lhl ruriw ot

,w.._ for lhl nipd oooldoNI fram tine to two.

ondllld.,.,.n.

..,u.,,.,_._ In*....,_. e,.wMwww dlntlan .... 11 IIDMI

,.....,.. lhut...,u. ...... ......

CN..LAWAY PLANT

., z rn 1 - i:-fill'l'l'l.:I Iii ~ r -**-

......... ot lhl pmlangld illGNIOIMI. CanNIYIDla flDNIIIN md cbldora W9 IMCI In lhl mclalDglNI AIM *aw,* +4TIRR.OW'MTI!

. . . ....,,... . . . . 1..£VB..(a.Pl'IRIJ

~ ..ay...

IB 'IRM !Bll'IRlllnrMI

.-..l'aa'IRTCR 11IE II.PI\IE BIBO'

I n e e l Se m Ge ars AF I F l aw ( o I)

I n c; t S* m e er~

  • o R l ., .. 1 (11,o p 2)

'1 l.J..J L1.J

_J i::i.:-

7 i'.'.:l::::

0 u I L1.J (11

~ I

~ - - -

I

~

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I \.

~

I I 0 .... I I I LL.. I' J I I I

G.. I I I

-cq:

- - d' I I I I I I 0 ..

0 2 30 . 5000 Ti e Nata:

1111 lamll-hy.._., madll.... ital., INI flgln II

--'..,. un unu1r* l i d ~ ul ttw., .M[h...,. U.

ll'ftd ~ .... illh:iia Iii r. _....,._Iii~ u.

RCS rapid OOIIIIIIWn. lNI II NnNIVIDla .an ...,.al to lhl lhlmlll-hyna, . . . . . ol lhl 8G1R md lhl pulaltllll .Afllcta" . . . . ,wllltwd - - - -

.Addlb* ....................... .-,=m'l'l'l.:111'1111:

NnNIVIDIIIJ ..... lhl rur,w ot orwltllld A8D-.

1111111111 for lhl - oaddoNI fnim tine to l:WD. WI

. . . . ., * ....- ._.. c.awllillwww dlntlan .._,.., .,._, CN..LAWAY PLANT

... u.. ,..._ n. ....,.. u....., u. .....-.AeD

., z rn 1 ,.... .-,=m'l'l'l.:1 Iii ._.a, -*+di

~ ot 1h11 pnlilllllgld aGGldlNn. CanNIYIDla ........i-..*....

a rca::=----TIR R.OW' RATI! AID flDNIIIN md CU'lllaM WII LMCI In lhl rdDloglNI -.~.. ..,_. BIB. (N'ACT C ERl.1'019

~ ..ay.-..

TMNIIENT9 FORSTEltalll IINlli\TOR nlE 11111'1& E\11111'

Iur d r o tor 4 0 NM

-iillll ID - I ,' ~ . 'rl' ,_ .l 1ff11Cta fll .._ m1vtllllMI tirmlllri.

.. I -

,.._.Nb~-* - .....I____. l:.ii'i Jiilfal'l'l'I* 1h11

...... ~ w . n f*: 1r:11*. ..,.*

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A ll .IT

---*--*'ndala-

, . . . . .rlll - - - - -IMII In lhl

~--,--. . - - 111M GIIBIITIII L1CUJ va..utll (IUTUIID*l!lllTCIII TIWBff 11r11 8T - IIWTallT rlPTLIE EIIBff IE'l.tl Mt

OR 1 0 ""1 Rol 9

!ill - -

] 0

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n... 2 --

  • I I I I ~

I I

I I I I I I

I 00 2 0 .....

rm * (s)

Nata:

1111 ~....,....._ madll pn111 Ital In NI,. . . II

-.. ..-1111 lllllllr'* lid ~-1:m,-,~ i;.I ti-,

~ ................ Iii . . . . . . . . . Iii .....-i.,.

RCS rapid aGNIINn.. 1111 II aanNIVIIIV'a llah 1-,.t

--,1a to lhl lhMmll-hycmA, putv.ltllll .,,. . flf Illa-*------- ol lhl SG1R md lhl Addllb* ,....,....,... l'lw* .._. i:-f.m.:111'11111:

aanNIVIIIV'lly l'IIIUIII 1h11 rurlllill' ot andld .ASDt,

  • ~farlhl-oooldNnfnim ltnetob!ID. n-.

.... In*....-.- e--Mwww dlnlan .._. .. .,_..

- u- ,.,.._ n,.1111111y.., lid..., tt-, . . . . M!ID CN..LAWAY PLANT B 7 tn~ .... i:-fa:11'1'1'1.:I I i i ~ , - Fd 1ifl!-ff FICiUE11.. .

~ ot 1h11 prlllllngM IDCIGIIDlft. CGnNIIYIIIV'*

,_._ md---. w. IMd ~ lhl ralologlNI PREMLRZER.PDIW R.CM RATE

~

TRANllll!!NT l'CRaTMII 191!!M.TOR TL.IE RLPT\IE Bl'BIT IE'l.1111'11

r e ss.ur l .e q I d \!'{J i u e 1

11 i:l

_J 0

i a

100 0 _,___......_..__..__+---------t-....._,_ _ _ _ _ __.,___,_,......,_ _ _..f-_ __,__.,__-,i 00 J.{100 T le )

Nata:

11-.Hamll-hy.._..madlllNW ilidlnNlf . . . 11

' - - ' 1:ir1 un unulf* lhut ~ ul U...Mlh. 1:ir1 ttw,

~ ~ . . . . . . . . 1a . . . . . . . . .

RC8 l"llpld aaanNn. lNI II aanNrYllrla lall lalplllll:

la ......-i ...

to lhl lhlrma-lr/_.., malya ol lhl 8G1R inl lhl pum;ltlll -,,.- ul Ill *1KMid tlmlln.

.Addlb .. ,..,......, ........

aanNIYWIII)' ..... lhl IUl'I . . . ot llndlllll .A81Jt,

..,m'l'l'I. hi

-- *...-lllllld . .

- ~ for lhl -

~

~ fnim line to l:WD. 1Na wildaPM dlnlan '-111...,..

,...,_ ,.. unuly. . lhut..., th, ..-....AllD CN..LAWAY PLANT

  • 7 tn; - ..,m'l'l'I. la___...,. ***- ~-Ju-al

~

ot lhl ~ oaallbln.

floNIIN ft cmdana WII I.Md fn lht racloioQINI

~

CanNIIVWa FRBIPMIMUQI mvm IAIE TRANSIENT FCIRSTEi\M GIEMMTOR TLIERIPTllE WENT EV.ti Slit

0 12G l 00 -~ V

,a --

Jo 8

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m

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w 00 --

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200 --

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I  ! I I I I I I I I I I I I I I I I I i I I I 0 00 L D }000 4000  ::illO ri e (s)

Nata:

11-. Hamll-hy.._., madlll llfllll Ital In NI flgln II

. . . . . ~ lll'll!ly* h i t ~ - u-.....-.en. ... lt-,

~~ . . . . . . . 1:a . . . . . . . . 1 : a ~ u .

RCSi l"llpld WW. lNI II aanNIYIIIV'a .... . _ _

to lhl lhlrma,hycm6, ._,.. . ol lhl SG1R n lhl pdaltllll _,,_. ul Ill *1KMMI tirmlln.

......... ...,......, ......... ..,........ uw aanNIYIIIV'II)' IWIIN 1h11 runllllr ol IDl'ldlllll .ASDt,

  • 11111:111 f CN" lhl llllpld aooldcNn f ram llwN to _,_ 11-.

- - ~ - ...... lllllld ..a-MPM _...,.., ........ CN..LAWAY PLANT

... tt. ,...._ nw, lll'll!ly.., hit ..., lt-, ~ A8D

_.la._..,..,,

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~

7 Ml; - .-,......

1d M81i-;f ol 1h11 pnliDIWld OOiDIIINft. CanNIYIIIV'a

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I =--w.l'T'ER Flc:IIW RATE (RLPT\IE) lBEMTCII TRMIBff FCR hall IEMRATOR TLIIE IIJPTLIE WENT liE\l', 11 !111

000 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - .,

..-,.., 3000

-__J 000

__J LL..

I I 000 *o *o 500 Ti e (s)

Nata:

'Im lama,hy.._., mudll- lllwd., NI flrp-. II

' - - ' 1:ir1 un unu1r* lid..,.. ul U... .Mlh. 1:ir1 U.

~ .............. Iii bill . . . . . . I i i ~ ...

RCS rapid oaaldlNn. TIM II aanNIVIIIV'a .an mlpllDI:

to lhl llwmll-hy_., ...,.1111 ot lhl 8G1R n lhl

....... '11f. . " . . . .,u..ta11a:1 ........

Addllb_. ..... ~ .._* .._.. .-r.:.ni.a 11'1111:

aanNIVIIIV'llly ..... lhl ruriblr ot lllld:ld .....,_

,wlllbll for lhl IIIIPld OODldNII f ram lhrN to two. 11a

....- .... .....,.._ "Mlwl dlnlan '-111...,_, CN..LAWAY PLANT 1:ir1tN..r__.,_ ,..unu1y..,ua--,u.-...A8D

  • z t47r .-. .-r.:.ni.a Iii ~ t ,.,..,_,.. ~-JU-.

~ ot lhl PflllalWld iDNIIDlln. CanNIIYIIIV'a flDNIIN 1111d _..,...,.. I.Md In lhl IIIClalatlNI I __. WATER R.OIIW RATE (INTACT

~SIiiy--- 1BIEMTCR8) TRMENI' FCRhall QB:.IIU:.TQR Tl.IE IU'11IL EVBIT EV.ti Slit

l Ofi E!'IENT8 FOR l!Jllllaa!! . .111111 LDCA .AIMl..ftll

CALLAWAY - SP Figure 15.6-4A Deleted REV. OL-~15 5/06

CALLAWAY - SP Figure 15.6-48 Deleted REV. OL-~15 5/06

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PCT E_ EY ~T O = 1 .0 rr

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o ,1 1-- 0 0

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X c:.n 2000 550 Nata: 11-.Hamll-hy.._..madlllNW ilidlnNlf . . . 11 ' - - ' 1:ir1 un unulf* lhut ~ ul U...Mlh. 1:ir1 ttw, ~ ~ . . . . . . . . 1a . . . . . . . . . RC8 lllpld aaanNn. lNI II aanNrYllrla lall lalplllll: la .....-i ... to lhl lhlrma-lr/_.., malya ol lhl 8G1R inl lhl pum;ltlll -,,.- ul Ill *1KMMI tlmlln. .Addlb .. ,..,......, ........ ..,m'l'l'I. aanNIYWIII)' ..... lhl IUl'I . . . ot llndlllll .A81Jt, hi - ~ for lhl - ~ fnim line to l:WD. 1Na CN..LAWAY PLANT 1:ir1 U. r...,_ ,._ - - ~ * ...... lllllld ... wlldaPM dlnlan '-111...,.. unulf. . lhut..., ttw, .,.._.AllD

  • 7 tn; - ..,m'l'l'I. la___...,. ***-

FltAIE11.NIE ~ ....... ~ ot lhl ~ oaallbln. CanNIIVWa floNIIN ft cmdana WII I.Md fn lht racloioQINI II.Pl1IID l1E'AII GEIEIMTil1 IIEI\IC R.OII IIL\II IIG 1'1W:11011 TIW l!!lff FORMTRBIENT MTHOIERFILL FEY. ti 1111

R Dlure Sle rn G_ne r lor In acl 5t m Gene a or {lop 70 ------ - - - - - - - - - - - - - - - - - - - -------.. 0 1....-.... LL 0

....9 w

..._... l(IQ Lw ....

 ~
'.:)

1-- 0:::: '0 ',' w o_

 ~

w 2O r-100 500 4000 ,' . 0 5000 5- 0 Nata: 11-.Hamll-hy.._..madlllNW ilidlnNlf . . . 11 . . . . . 1:ir1 un unulf* lhut ~ ul U..Mlh. 1:ir1 ttw,

~ ~ ........ 1a .. .......                      la ......-i ...

RC8 l"llpld aaanNn. lNI II aanNrYllrla lall lalplllll: to lhl lhlrma-lr/_.., malya ol lhl 8G1R inl lhl pum;ltlll -,,.- ul Ill *1KMid tlmlln. Addlb_. ,..,......, .._..... .-,m'l'l'IM hi aanNIYWIII)' ..... lhl IUl'I . . . ot llndlllll .A81Jt,

                              ~ fn,m line to l:WD. 1Na

- ~ for lhl - 1:ir1

                 *...,.lllllld . .-illli,..dlnlan'-111...,..

U. r...,_ ,._ unulf . . lhut...,

           ~

ttw, .,.._.AllD CN..LAWAY PLANT Fl._16.Nlf

  • 7 tn; -

ot..,m'l'l'I. la___...,. ***-

~

lhl ~ oaalllNn. CanNIIVWa ,_._ inl - - - - .... I.Md In lht . . . . . . .

~

l1E'AII GIIBMTCII TBIPIRATUI:

                                                                   'RLPTLR!!D Am INTACT ll!!talATOAII)

TMNl!IIENT FOR.MTR EWENT 'INITH CNBFILL IE'l.111111

R J lur ~ SC _V 260 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 20 210 200 VJ 1am

   ~         1,60 m
   ,_J
 . ,_____;, 1 0
   ~ 120 1  0
    .....J    80 60 40 20 0------------------------------

Nata: 1111 ~.....,.._., madll P191 Ital la flgln II In ...... .., .. . . . , . lhut ...... ul lh,,.,Mlh,.., u. ~ ............... Iii .......... Iii tl#llt.,. RCS rapid oaaldDML 1111 II aanNrVlll'la llah ...,.at to lhl lhMmll-lly~ ._,. . ol lhl 8G1R md lhl ...... 4f.cta fll tt. *1wlllll81d tr.lllld. Addllb* ,...,....,. l'IR'* ..._ i:-fill'l'l'l.:l lhlll: aanNIVlll'I..,.. ...._ lhl ruriw ot ondllld .,..,_ ,w.._In*....,_. ... for lhl nipd oooldoNI fram tine to two. n. e,.wMwww dlntlan tt.. 11 IIDMI CN..LAWAY PLANT .., u.. ,..._ ,.. ...,.. lhut..., u. ............ ., z rn 1 - i:-fill'l'l'l.:I Iii ~ r -**- FltuE 11.HIGII ......... ot lhl pmlangld illGNIOIMI. CanNIYIDla flDNIIIN md cbldora W9 IMCI In lhl mclalDglNI STE'AII IBEI\TGRATMGIPI BIC FE.ENE ~ ..ay... "-GIii RA.Tl! 'RLPTL.m &IN!MTOR} TMNllll!!NT FOR.MTR BifENT 'INITH CNERFILL IE'l.111111

_J

  ~ *1madll..,. ad 1...... 1. l CILLAWAY Pl.ANT' STBUII IBBll"l'IRATIIOIPI ERC 113..ENE
                     ,Ill.GIii MT! £INTACT IWTGM) TRAMIIBIT IRR1817  - *.1 Wl'T1HmrBl!ILIL I

C 20

      ,s 0

Mlliri!!!I all:iillllllilll, ,. 1......1flll' - _ _ _ _ , . .' 1111i11111llll11U11Wol lll!!llldl . -_ ', 111111b1J f'ar 1iiflit aroalillDll11,ram ..._ ID _ _ CILLAWAY Pl.ANT' 1 . . . . ~ ..........MMldln6anlbmllllwi 1111.N1r ,.___,..,u.....,u..-.-MD _. 7 NI/ 111ii'1i jmfl'l'Hd Iii..,._, -d+dJ ~

                                                   ~

Iii N pllllDlllgld WtdalM\. CGnllA'lltll , _ . . ... clliidin.,.. IMd ~ lhl ndalDglNI 11.NII

                                                             ....,.;..-- m311iF1i11&JORBRE'AK I

8Cffll

R ::il ure l red a 300 ~ - - - - - - - - - - - - - - - - - - - - - -~ 2~5 250

-~

a: 225

z:

2

~,

_J 175 .......__.. 125 w

-<d;:      mo -           ,---  *   - - - - - *- - - - - - -- -* - -* - - -* - - - - - -* - -* - -     --

I

            '0        I i

25 I I 000 Nata: '1111lamll-hy~mudll1n1 iltldlnNlflr,nll - - ..... ...,.. lid~- u..~ ... tt. ~~_.* ...,_.,Iii .. _....._ I D ~ U. RC8 rapid oaaldlNn. lNI II oanNIVIIIV'a .an ...,.at to lhl lhNmll-hycmA, --,aa ot lhl 9S1R and lhl ....... .,,. . fll ... **MIiied ......... Adlfi:I .. ....... ~ ..... ....-. p.till'l'l'l.:11 ll'lit oanNIVIIIV'lly ..... lhl ruriblr ot .,..... .....,_ - ~ far lhl -.ii ooaldNll fn,m line to lWD. 11a ....-111 * ........ ..--MIIM IU9IDn .._, 11...,_.. ... u- ,.... ,.. ...,... tta ..-.itl tt. ...... A8D CN..LAWAY PLANT - 7 N9; ..... p.fill'l'l'l.:11 b:l . . . .t- . . . . _ ... FIGJ!Ltu-zt* ......... ot lhl pmiDrGld iDaGIIDln. CanNIIVIIIV'a ,..._mil---. w. lald ~ lhl . . . . _ ALDOLIARY' FEEIJIIMTBIR.CM MTENE MIHM ~ IWEI!!! LBll!!l. (IUl11R!m -l!!MTCIIJ 1RAl l!!lffll Rll 911'1R BIIIII' MIH OlillRi I

lnl-.ic; SG AF 1 I n oc t S (; r r o YI .a r g e 275 Ci 20 225 Ct::

z:
  ..,___ 200
  ~            175
   ~ 1'

__J

  ...........- 125 w
   . -; : 1 5

0 Nata: 1111 ~.....,.._., madll P191 Ital ...... .., .. ...,. lhut ...... ul lh,,.,Mlh,.., u. In la flgln II ~ ............... Iii .......... Iii tl#ll't.,. RCS rapid oaaldDML 1111 II aanNrVlll'la llah ...,.at to lhl lhMmll-lly~ ._,. . ol lhl 8G1R md lhl ...... 4f.cta fll tt. *1wlllll81d tr.lllld. Addllb* ,...,....,. l'IR'* ..._ i:-fill'l'l'l.:l 11'1111: aanNIVlll'I..,.. ...._ lhl ruriw ot ,w.._ for lhl nipd ondllld.,..,.n. oooldoNI fram tine to two. ... In*....,_. e,.wMwww dlntlan .... ..,u.,,.,.._ ,.....,.. lhut...,u. ...... ...... 11 IIDMI CN..LAWAY PLANT ., z rn 1 - i:-fill'l'l'l.:I Iii ~ r -**- Fl,._1&HM: ......... ot lhl pmlangld illGNIOIMI. CanNIYIDla flDNIIIN md cbldora W9 IMCI In lhl mclalDglNI AUIILIARY' FB:IJIIIATBl R.CM MTEANl NMRl:M ~ ..ay... IWEI!! UM!l. (lffACT alaBIATCIII} TIW l!!lffl FDI 9B'IR EIIBII' MIii OlillJFI I IB', , * .,,,

R :)lu r "' SC SG + St e o"li L ' n e SD+ DO 70

                                           ~--------~-----~----------

_j a

J

_j

 ~
 ..... 100 0    5000  0 Nata:

11-.Hamll-hy.._..madlllNW ilidlnNlf . . . 11 ' - - ' 1:ir1 un unulf* lhut ~ ul U...Mlh. 1:ir1 ttw, ~ ~ . . . . . . . . 1a . . . . . . . . . RC8 l"llpld aaanNn. lNI II aanNrYllrla lall lalplllll: la .....-i ... to lhl lhlrma-lr/_.., malya ol lhl 8G1R inl lhl pum;ltlll -,,.- ul Ill *1KMMI tlmlln. .Addlb .. ,..,......, ........ ..,m'l'l'I. aanNIYWIII)' ..... lhl IUl'l . . . ot llndlllll.A81Jt, hi

                             ~ fnim line to l:WD. 1Na

-- *...-lllllld . . - ~ for lhl -

        ~                        -ilda,..dlnlan'-111...,..
        ,..._ ,.. unuly. . lhut..., th, ...... A8D CN..LAWAY PLANT ot..,m'l'l'I. la___...,. ***-
  • 7 tn; -

FIG\Rii 1u-a ~ ~ ....... lhl ~ oaallbln. CanNIIVWa floNIIN ft cmdana WII I.Md fn lht racloioQINI IIPl1IID l11:AII GBBM.TCII lJCI mva UII! 'IIMl l!!lff FDRMITR Bl'Bff 'IM'TH tNEIFILL

Pr s. :;i u r POV 10 * - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 0 U')

  ~

60 _J 0

 !l:::::

_J 0 20 500 3000 (s) Nata: 'Im lam_...,.._., mudll- lllwd., NI flrp-. II ' - - ' 1:ir1 un unu1r* lid..,... ul U... .Mlh. 1:ir1 U. ~ .............. Iii . . . . . . . . I i i ~ ... RCS rapid oaaldlNn. lNI II aanNIVIIIV'a .an mlpllDI: to lhl llwmll-hynA, ...,.1111 ot lhl 8G1R n lhl ....... .,,. . " . . . .,u..ta11a:1 ........ Addllb_. ..... ~ .._ * .._.. .-,1:11'1'1'1.a lhlll: aanNIVIIIV'llly ..... lhl ruriblr ot lllld:ld .....,_ ,wlllbll for lhl IIIPld OODldNII f nim lhrN to l:WD. 11a ....- ., * .....,.._ "Mlwl dlnlan '-111...,_, CN..LAWAY PLANT ... tN.. ,__.,_ ,.. unu1y.., lid.., u. -...A8D

  • z t47r .-. .-rl:IIYl'l.a lill ~ t ,.,..,_,.. Fltu:E:11.HIM

~ ot lhl PflllalWld iDNllbln. CanNIIYIIIV'a flovnla 1111d ...,._.,.. LMd In lhl 111C1a1at1N1 PA FWF-PCIW FI..OW'MTE ~ .-.1y ...

                                                                       'IRU  l!!lff PDII IIG'IR W IIWITH OW'EIFILL

I nd i c l ~ I 10

           *o 0

(.;) 60

    -<C 0  50

_J 40 w _J 0 I 20

           *o 5000  5*
  • 0 Nlllla:

11-. lamlll,hy.._.. mudll ..- ital~ NI,..,. II .__. lt'l"I un unulr* thut ~ ul U..Mlh. lt'l"I tt. ID .,...._ID~ b ll'ad llbiMI a-i*illllilia. r. RCS mpld ooaldDllft. lNI II aanNIYWa .an lalpllllll to lhl lhlrm....,cm.to . . . ol lhl 8G1R md lhl putwa.l -,,.- vi tlll *1DI.MIICI ......,__ ........ ....,.....,,.,., ........ ...,m'l'l'I. ht aanNIYWIIIJ ..... lhl IUl'llllll"ot ...a.ll.A8Dt.

  • llllilll far lhl IIIPld ooolclcNn fn,m IIMM to l:WD. 1ta

--- r..._ lt'l"I U.

         ~ *...-llllllld . . wiMl,_1 uaian--, 11.,_.

n-, unu1y.., thut.,.. tt. ....,._. AllD CN..LAWAY PLANT

  • 7 tn; - ..-,m'l'l'l-.t ID._..,..,

~ ot 1h11 pnllDllgld acdlallft. CanNIVWa FIILEE1U-W ~...y ... floNIIN mil CUlllloM Wli LMCI In lhl mloiodNI PREii" RZER LIQUD VOL.Lall E

                                                         'IIUJ l!lff ral IIG'IR l!VIIII' MIii~*

IE'l.111111

CALLAWAY - SP Figure 15.6-34 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-35 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-36 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-37 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-38 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-39 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-40 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-41 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-42 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-43 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-44 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-45 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-46 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-47 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-48 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-49 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-50 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-51 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-52 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-53 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-54 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-55 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-56 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-57 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-58 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-59 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-60 Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61a Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61b Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61c Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61d Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61e Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61f Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61g Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61h Deletedl Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61i Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61j Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61k Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61l Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61m Deleted Rev. OL-15 5/06

CALLAWAY - SP Figure 15.6-61n Deleted Rev. OL-15 5/06

HOLD UP IN CONTAINMENT A LOCA, FHA IN CONTAINMENT (NO r AND CAE HOLDUP) STEAM VENT & SAFETY VALVES OR . ATMOSPHERE .r CONTROL ROOM r RADWASTE BUILDING SGTR, MSLB, WGDTR AND D E (NO HOLD UP) CAE A' FUEL BUILDING (NO HOLDUP) C . B FILTERS FHA IN FUEL BUILDING REV. OL-9 5/97 CALLAWAY PLANT FIGURE 15 A -1 RELEASE PATHWAYS

Allowable lnleakage Values 3000 ~ - - - - - - - - - - - - - - - - - - - - - - - - - - - - ~ 2500 -.§

-; 2000 C')

Ctl

~

Ctl

~

C:

,C

1500 "C Unacceptable

I Ill
~ 1000 C:

0 u Acceptable 500 0 5 10 15 20 25 30 Control Room lnleakage (cfm) REV. 16 9/06 CALLAWAY PLANT FIGURE 1SA-2 ALLOWABLE INLEAKAGE VALUES}}