ML17328A749

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Rev 0 to Unit 1 Core Operating Limits Rept.
ML17328A749
Person / Time
Site: Cook American Electric Power icon.png
Issue date: 09/30/1990
From:
INDIANA MICHIGAN POWER CO. (FORMERLY INDIANA & MICHIG
To:
Shared Package
ML17328A748 List:
References
NUDOCS 9011010319
Download: ML17328A749 (15)


Text

UNIT 1 CORE OPERATING LIMITS REPORT 9022020329 p02029 PDR ADOCK 05000325 P PNU

~

DONALD C. COOK NCULEAR PLANT UNIT 1 CYCLE 11 CORE OPERATING LIMITS REPORT Revision 0 September', 1990

COLR for DONALD C. COOK NUCLEAR PLANT UNIT 1 CYCLE ll 1.0 CORE OPERATING LIMITS REPORT This Core Operating Limits Report for Donald C. Cook Nuclear Plant Unit 1 Cycle 11 has been prepared in accordance with the requirements of Technical Specification 6.9.1.11.

The Technical Specifications affected by this report are listed below:

3/4.1.1.4 Moderator Temperature Coefficient 3/4.1.3.1 Movable Control Assemblies Group Height 3/4.1.3.3 Rod Drop Time 3/4.1.3.4 Shutdown Rod Insertion Limits 3/4.1.3.5 Control Rod Insertion Limits 3/4.2.1 Axial Flux Difference 3/4.2.2 Heat Flux Hot Channel Factor 3/4.2.3 Nuclear Enthalpy Hot Channel Factor 3/4.2.6 Allowable Power Level Page 1 of 11

COLR for Donald C: Cook Nuclear Plant Unit 1 Cycle 11 2.0 OPERATING LIMITS The cyle-specific parameter limits for the specifications listed in Section 1.0 are presented in the following subsections. These limits have been developed using the NRC-approved methodologies specified in Technical Specification 6.9.1.11.

2' Moderator Tem erature Coefficient (Specification 3/4 .1.1.4) 2.1.1 The Moderator Temperature Coefficient (MTC) Limits are:

The BOL/ARO -MTC shall be less positive than the value given in Figure 1.

The EOL/ARO/RTP-MTC shall be less negative than

-3.35E-4 6k/k/ F.

This limit is based on a T avg program with HFP T

avg of 550 F where: ARO stands for All Rods Out BOL stands for Beginning of Cycle Life EOL stands for End of Cycle Life RTP stands for Rated Thermal Power HFP stands for Hot Full Thermal Power 2.1.2 The MTC Surveillance limit is:

The 300 ppm/ARO/RTP-MTC should be less negative than or equal to -2.75E-4 hk/k/'F at a vessel average temperature of 550 F.

Page 2 of 11

COLR for Donald C. Cook Nuclear Plant Unit 1 Cycle 11 2.2 Rod Dro Time Dro Hei ht (Specification 3/4.1.3.3) 2.2.1 All rods shall be dropped from 228 steps.

2.3 Shutdown Rod Insertion Limit (Specification 3/4.1.3.4) 2.3.1 The shutdown rods shall be withdrawn to 228 steps.

2.4 Control Rod Insertion Limits (Specification 3/4.1.3.5, and 3/4.1.3.1) 2.4.1 The control banks shall be limited in physical insertion as shown in Figure 2.

2.4.2 Successive Control Banks shall overlap by 100 steps. The sequence for Control Bank withdrawal shall be Control Bank A, Control Bank B, Control Bank C, and Control Bank D.

2.5 Axial Flux Difference (Specification 3/4.2.1) 2.5.1 The Allowable Operation Limits are provided in Figure 3.

l 2.5.2 The AXIAL FLUX DIFFERENCE (AFD) target band during base load operations is +3%, -3% (not applicable for this cycle).

2.5.3 The AFD target band is +5%, -5% for core average accumulated burnup > 0.0 MUD/MTU Page 3 of 11

COLR for Donald C. Cook Nuclear Plant Unit I Cycle 11 2.6 Heat Flux Hot Channel Factor - F (Z) (Specifications 3.2.2)

CFQ F

Q (Z)< ---

  • K(Z) for P ) 0.5 P

F (Z)< 2

  • CFQ
  • K(Z) for P < 0.5 THERMAL POWER where: P RATED THERMAL POWER 2.6.1 CFQ- 2.15 for Westinghouse fuel 2.6.2 K(Z) is provided in Figure 4 for Westinghouse fuel Page 4 of ll

COLR for Donald C. Cook Nuclear Plant Unit 1 Cycle 11 2.7 Nuclear Enthal Hot Channel Factor - F (Specification 3/4.2.3)

F < CFDH * (1 + PFDH * (1-P))

THERMAL POWER where: P RATED THERMAL POWER CFDH - 1.49 for Westinghouse fuel 2.7.2 PFDH - 0.3 Page 5 of 11

COLR for Donald C. Cook Nuclear Plant Unit 1 Cycle 11 2.8 Allowable Po~er Level - APL (Specification 3.2.6)

APL-min over Z for CFQ

  • K(Z)

F (Z)

  • V(Z)
  • F 2.8.1 V(Z) is provided in Table 1 for +5% AFD target band 2.8.2 CFQ and K(Z) is provided in COLR Section 2.6.1 2.8.3 Fp is provided in Technical Specification 3.2.6 Page 6 of 11

Moderator Temperature Coefficient (MTC)

MTC x 10 hkjk/dog.F 1.00 Unac eptabl Oper tion 0.50 0.00

-0.50 1;00 Acc ptablo Opera on

-1.50

-2.00

-2.50

-3.00 0 10 20 30 40 50 60 70 80 S0 100 PERCENT RATED THERMAL POSER

~OUI.L,< WITHDNA WN) (0.55,228) 228 200 BANK C

' i'" 1.0 1 82).:-

~ I 4 ~

X ~ ~ ~ 0 ~

0 150 ~ 0 ~ ~

~ ~

0 L

(0, 128)

QJ I

100 ~ '

I 0

4 SANK 4

0 lC 50.

, =-,,(o o),:

0.0 0.2 0.4 o.e 0.8 1.0 (FULLY IN 0 ill TID) FRACTlON OF RATED THFRMAL POWER FIGURE 2 ROD INSERTION LIMITS VERSUS

'ZFXRMAL POWER 4 LOOP OPERATION Page 8 of 1]

0 I

h

~4 t'P

+'

I 4~

I'

100 98 98 90 a 80 UNACCEPTABLE UNACCEPTABLE OPERATION OPERAT ION X 70 A

ACC EPTABLE OPERAT ION 60 50 CJ -3l 58 51 58 A 40 6 30 I&I 20 0

O>4 10 0

-50 -40 -30 -20 -10 0 10 20 30 40 50 FLUX DIFFERENCE (hl),

FIGURE 3 AXIAL FLUX DIFFERENCE LIMITS AS A FUNCTION OF RATED THERMAL POWER Page 9 of ll

(0. 0 i l. 0) (6.Oil ~ 0)

(12 ~ 0, 0. 925) 4 d 10 12 CKK HBCHT (FQ FIGURE 4 K(Z) NORHALZZED Fg(Z) AS A FUNCTZON OF CORE HEZQHT FOR NESTZNQHOUSE FUEL page 10 og ll

1 I

47 I

J

/7

TABLE 1 0 ~ 0~ COOK IIM!T 1 CYCI V(X) PUNCTlON i 1t

$ IJRII4t RAN44$ (IIVO/NT!lf Il45H 4XlAL 0 15O 1000 2004 1004 4004 9000 1 OOQQ t 2004 NO ~ Itt a%%% oaeQaa Z~ 1$ 0 1000 2000 4040 QO\0+~ 4004 0000 0 0 OOOO ee%&ma 10040 12040 a\%%%

$ 0L

0. 00 1 +OOOO 1 ~ 000Q 1 OOOO 1. 0000 t.oooo 1 ~ OOOO t. 0000 I ~ 0000 'I ~ OOOO 2

1 ~

0 20 ~ t. 0440 1 ~ 0004 1

~

~ OOOO tooooa I'I 0400 ~

0004

1. 0000 1. OOOO 1: aooo 0000 1 ~ 0000 0000 1 ~ OOOO 0000

~

4,40 1 . 0000 1 ~ ooaa 1 ~ 0000 1:oooa ~ 1 ~ 1 ~ 1 ~

4 0.40 1. 0000 I ~ 0400 1 OOOO

~ 1. 0000 I OOOO ~ 1.0000 1 ~ 0400 1.0004 1 ~ OQOQ 5

~

0.$ 0 1 4000

~ 1 ~ OOOO 1 0000~ 1:oaoo I 0004 ~ 1 ~ 0000 1 0000

~ I . 0000 1 ~ 0000 1 0000 0000

~

4. 1.04 1. 0000 I 0000 1 0000

~ o 1. 0000 I 0000 ~ 1 ~ 0004 1. 0000 ~ 1 ~

7~ I 20 1 '794 1. 079$ 1.07$ $ 1.0413 'I . 044$ 1.0492 1. 0957 I 103$

~ 1 ~ 1 137 I tat$

~

4~ 1 ~ 10 1.0774 1. 0774 I . 0740 1.0400 1.0433 1 0440

~ 1. 0912 ~ 1 ~ I 107

$. 1. 44 1.0750 1.0754 1. 0742 1.0785 1 041$ ~ 1.444$ 1.0922 1. 0$ $ 1 1 ~ 1070

10. 1.40 1.0721 I 0730 1 0741 1.0747 1 0402 1 '445 1. 04$ T I.0$ 5$ t ~ 142$

1 '920

~ ~

F 00 1. 0711 1. 07 14 1.0724 1.0752 'I . 0744 1. 0422 1. 0447 1. 0$ 7$

11 12.

13.

~

2 2

'0

'0 1. 0707 1. 0712 1.0720 1 0700

~ I 0703 1. 070$

~

1 '739

1. 0723 1. 0711 I . 0744 1.07$ $ 1 0033 1 ~

~

074$ 1. 0794 I 0474 1 ~ 0$ 2$

~

1.0427 1.0444 14, 2.40 I . 0491 1. 0493 1. 04$ $ 1.0704 0714 1. 0731 1.0751 I OTT$ 0403 2 '0

~

15. 1 ~ 0441 1. 0441 1.0440 t .0442 0447 1. 04$ $ 1. 0704 1.0720 1.0737
14. 04 1. 044T 1. 0447 1.0445 1.0445 1.045$ 1.0454 1. 045$ 1.04$ T 1 ~ 044 1 3 '0 3 ~

17, 1. 0455 I 0455 1. 0450

~ 1.0444 1. 0434 1. 0424 1.0420 1 0417

~ 1. 0417

14. 3. 40 1. 0451 1 0451 I . 043$ 1 0430 I 0411 1.0402 1 04 10 1.0424 1 0452 20.

3 3 0

'0

~ $

~

~

I 0453 1. 0453 1. 043$

1. 0452 1. 0452 1 0434 ~

~

1. 0420 I 041 ~ I 0414

~ ~

0402 1. 0404 1. 0432 to042$ 1.04T4

~

1.0477 1.073$

1.0744 t.a$ 27 o

21. 4 F 00 1. 041$ 1 044$ 1.0433

~ 1 ~ 041$ 1. 0435 t.a4$ 7 1.071T 1. 0402 to0$ ta

22. 1 20 1.0415 1. 044$ I 042$ 1 0417 1. 0454 1.0441 1. 0757 1.0$ 4t 1. 0$ $ 0
t. 104$

~ ~ ~

1.0410 1. 0440 1. 042$ 1 0417 047$ 1.070$ 1. OT9$ 1 0914 23 24 25.

~

~

F 40 4

4.4a

'0 1.0433 1. 0433 1.0421

'I. 0423 1. 0423 1. 0422 1

~

1.4420

'422 1

I .

~

I.OT0$

0493 1.0724 1 0430 1.074$ t 0440

~

~ 1

~

1. 0944 tott33,

~ 1014 1 ~ 1194

24. 5.oo 1.0412 1. 0421 1 0421 '422 I 0724 1.0740 to0444 1044 1244 2T.

2$ .

5 5.40

'0 I . 0403 1.04 1$ I 041 ~

1. 05$ T 1. 0412 1.0412

~

~

1 I 0414

~

~

1. OT2$

0413 1.0733 1 ~ 077 1 1.0904

1. 0777 1 0920 1

I

~

~ 107$

1. 1101 1

1

~

~ 12$ $

132Q' 2$ .

30.

5 5.40

'0 1. 054$ I . 0401 1.0404 1 0574

~ 1 ~ 0593 I 0593

~

1 1

~

1 041$

~

0417 1. 0733 1.072$

1.077$ 1.0924 1.0775 1.0924

~

t. 1114 1 ~ 1117 1 ~

1

~

~

1341 134$

4.aa 054 1 I 05 ~ 1 1 0541 1.0414 1 071$ 1.074$ 1.0$ 1$ 111t tot344 32.

33.

4 4,40

'4 1 ~ ~

1. 0543 1 0545 1 0545

~

1. 0521 I 0541 1.0514

~

~ 1.040$ 1. OT03 t.a594

~

1. 0441 1.071$ 1 '902
1. 072T 1.0$ TT 1 ~
1. 1094 t o 1327 1044 t.12$ $

34

'5.

4 4

'0

'Q

1. 0495 I 051$ 1 051$

~

1.044$ 1. 0491 1.0191

~ 1 ~ 057$ 'I . 0453

1. 0552 1.0414 1.0497 1.0443
1. 045T 1 0400 ~

1 ~

t.1427 'I 1 244 1.0942 1 1202

~

~

34. 7 F 00 1.0430 1.045Q 1. 0440 1. 0537 1. 0594 1.0424 1.074$ 1.0947 tott44 37, 7,20 1. 039$ 1. 0425 1. 0442 1.0535 I 0$ 7$ ~ 'I . 0405 1. 0743 1 ~ 0915 1 1121

~

34 T. 10 1. 037T 1.0441 1 0444 ~ 1.0524 1.0555 1. 0575 1. 0704 1. 044$ 1 1044 ~

7,40 1.0392 1 ~ 0440 1.044$ 1 0511

~ 1.052$ 1. 0537 1 0454 ~ 1.0$ 0$ 1 0994 ~

10. 7 $0~ t.0402 1.0475 1 0175 ~ 1 ~ 0491 I 0491~ 1. 050$ 1.0412 I . 0714 1 0911~
11. 4.oa 1 ~ 042 1 1. 0447 1 0447 ~ 1 '443 1. 0443 1. 0512 1. 0592 1. 0495 1 042 1~

12 ~ 4 ~ 20 1.0440 0493 1. 0493 1.0171 I 0497 ~ I 0532 1. 0579 I 043$ 1. 070$

~

13 ~ 4.1Q 1. 0509 I.0512 1 0515 ~ 1.0525 1.0534 1.054$ 1.0544 I 0541 1 0400 ~

4 ~ 40 1.0554 1. 0543 1 0570 ~ 1 ~ 0513 1. 0593 t.o4oa 1. 0401 '.0404 1.0404 45, 4.4Q I 0402 I 0410 1.041$ 1.0434 1.0444 1.0454 'I .0458 1.045$ t.o45$

'7t2

~ ~

14, F 00 1. 0614 t.0454 1.0445 1.0440 1.0493 1.0702 1. 0709 1 1 ~ 0712 4T, 9.20 1. 0492 1. 0741 1.0710 1. 0724 'I .073$ 1.0750 1. 0757 1 ~ 074 1 1. 0743 44, 9.1Q 1.0735 1. 0744 1.0753 OTTO I 0744 1.0795 1.0410 1 0413 19 ~

50, 9 '0 9 ~ $4

'I . 0777 1 0414

~

1 ~ 0744 1.0422 1.0$ 2$

1.0793 1 ~ ~

t.0809 1.0424 1. 0434 1.0414 1 . 045$ 'I 047 4 ~

1. 0404 1 0451 1

~

~

1 '442 1 0493 I 0911 1 0$ 2$

~

~

~

0473

51. 10. 0 1.0453 I 0450 1 0444~ ~ 1 ~ 0479 1. 0$ $ $ 1,0914 I . 0934 1.0954 1 0$ 7$ ~

52 10.2 te0444 1. 0$ $ 2 1.04$ $ 1 ~ 0915 1. 0933 1.0953 1. 0975 I . 0999 1 1025 ~

'3.

10. 4 I 0$ 1T 1. 0923 1 0931

~ ~ 1.0944 1. 0947 1.0944 1. 1012 1 1037 1. 1044

54. 10. 4 1. 0913 1. 0950 1.095$ 1 . 0977 1.0997 1 101$ ~

~

I, 1043 1 1044 1. 1094

~

5$ . 10. 4 1. 4$ 4$ 1. 0972 1 0941 ~ 1 . 1000 I 1021

~ 1. 1044 1 1049 1. 1094 1 112$

'000 I.oooo ~

~

54. 11.0 t.ooao 1. 0000 1 0000 ~ 1 1,OOOO 1. OOOO 1. 0000 1. 0000
57. 11 ~ 2 1 ~ 0000 I . 0000 1.0000 1. 1. 0044 0000 0000 1.0000 1. 0000 5 ' 11.4 1 ~ 0000 'I . 0000 1 0000 ~

0000'.

0000 1. oooa 1.0000 1 ~ 0400 1. 0000 1. 0000 5$ . 11.4 1. 0000 I 0000 1.0000

~ 'I . 0000 1 0000 1 '000 1. 0000 1 0000 1 0000 OOOO 'I . 0000 1 '000

~ ~

40. 11.4 1 ~ 1.0000 1 ~ 0000 1.0000

~

1. 0000 1.0040 1.0000
41. 12 ~ 0 1. 0000 1. 0000 1 OOOO 1.0000 1.0000 1.0000 0000 1.0000 1.0000 Top Inc bot tom Io",. o1'o> e II ~ Ixclucec ia pat Tochntcal soe II'teat tone.

Page 11'f