ML20115A757

From kanterella
Jump to navigation Jump to search
Transmits Unit 2 Cycle 6 Loading Pattern & Projected EOC Fuel Assembly Burnups IAW 960419 Commitments
ML20115A757
Person / Time
Site: Braidwood 
Issue date: 06/27/1996
From: Tulon T
COMMONWEALTH EDISON CO.
To:
NRC (Affiliation Not Assigned), NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM)
References
NUDOCS 9607080393
Download: ML20115A757 (6)


Text

_ _ _ - - - _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _. _ _ - _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _

Commonw ealth 1:dmin Compan) liraiduood Generating St.ition p-

/1 Route al, Ikix 8 4 i

liraces ille, ll. (d) so'" 9619 Tcl Hl44 Meli June 27,1996 Office of Nuclear Reactor Regulation U. S. Nuclear Regulatory Commission Washington, DC 20555-0001 Attention:

Document Control Desk

Subject:

Braidwood Station Unit 2 Cycle 6 Loading Pattern anxi Projected Burnups

Reference:

Letter from John Hosmer to Nuclear Regulatory Commission dated April 19, 1996.

'Ihis letter transmits the Unit 2 Cycle 6 loading pattern and projected End of Cycle (EOC) fuel assembly burnups in accordance with commitments described in the Reference. 'Ihis information is included in the Attachments.

If you have any questions, then please contact Mr. Stephen Hurst at (815) 458-2801 ext. 3171.

Sincerely, J. Tulon raidwood Station Station Manager TJT/fb Attachments cc:

H. J. Mil'.er, Regional Administrator - Region 1I1 C. Phillips, Senior Resident inspector - Braidwood R. A. Asca, Project Manager-NRR Harvey Cybut gI Lonnie K. Kepley j

Denise M. Saccomando Harold D. Pontious Jeffrey W. Gurley Dauglas S. Huston C i: n D G %

9607080393 960627 PDR ADOCK 05000457 P

PDR NRC9e001 A l'nicom CompJny

l NUCEAR FUEL SERVICES DEPARTMENT NDrr No.

95-0062 i

NUCEAR DESIGN INFORMAT10N TRANSMITTAL Rev. No.

O Pay A 1 of A-8 Attachement A i

Mpm1 Braidwood Unit 2 Cycle 6 Core 14edlag Plan A

R P

N M

L K

j H

C F

E D

C 8

A l

1 V31x W28W WO5W V53X W19W W34W V33X i

W W

W W

W W

W I

2 W0sw

  1. 2iw K02W Kl 5W (22W G4W K33W G4W 404W W33W WO3W TP FP

+

TP O

FF 3-FP TP 3

WO7W N05W K14W WGSX K43W W84K Wl?W

  1. 79X K48W WGSM K39W KIOW WO9W TP FP FP 50 M

58 45 M

4C-FP FP FP l

4 W24W Kl ?W W50W K50W

  1. 74K N62W
  1. 97W N64W WSex K5sw mew Osw W36W TP O

M FP TP 4E-FP FP M

e FP W

5 V37x KIIW

  1. 76x K57W
  1. 44W COM
  1. 55W O2X mtw USX W51W K42W WG4x NOIW V25X TP FP SC-M FP M

FP M

FP M

FP M

40 TP TP 8

W35W K29W KGOW WSSX USX W4 f, W WO7W K8ix WO9W W53W USN W70x K44W K25W W22W TP

+

M FP M

C FP

.A-rP O

M FP M

+

TP 7

Wl4W K26W W82x MS$W M5W WI6W K53W WOSX G4W WO3W

  1. 48W MSW.

W85X K21W WI5W TP TP FF FP FP M

TP M

FP FP FP TP FP 8

V56x K23W WolW W38W

  1. ex M82X N00X V54X WT7X G3x K00X
  1. 99W WO2W Kl 3W V52x TP O

TP 4E-M A-FP O'

FP A-M rP O

TP 9

Wl2W K32W Weix NS7W W56W WisW K51W

  1. 78X G2W WOSW W50W 461W
  1. 00X K20W WilW TP fP W

FP FP FP M

FP M'

r?

FP FP 48-FP FP 10

  1. 29W KISW K47W
  1. 75X Olx W52W W20W KS4x WO4W W58W OGM W52x K49W K37W W30W FP

+

M FP M

O FP A.

TP O

M FP M

+

TP 11 V30X K12W

  1. 71X K4 tw W54W C7X W42W C4X W57W OSX W47W G5W
  1. 72X K03W V27x TP TP 50 M

FP M-FP 3W FP M

FP M

4C-FP FP 12 W32W K35W

  1. 59W K45W WS7X NSSW
  1. 40W NSSW.

455X K45W

  1. 49W K31W W31W 4A-rp 4

M FP FP 4E-TP TP M

O FP 13 V20W K00W K40W Weix K59W WS7X WIFW WSSX GSW

  1. 73X GOW N09W WO4W TP FP FP 4C-M 488 M

5&

rP FP FP 14 Vi gW W23W N06W K27W K35W KISW GOW KISW WFW W20W Vl8W FP FP

+

FP O

TP

+

FP W

FP 15 V2sX W25W WOSW V49x Wlow

  1. 27W V32X W

W W

W W

W W

i Legend:

IYYYY l XXXX Assemtdy10 XXXX I WYY Insert Type:

-5A- = RCCA Shutdamn tank A

.A.. ACCA Control Bank A EW = 8 Radlet len4A

+50- = RCCA Shutdamn Bank 9

-8.. RCCA Control tank 5 455 Secondary Source

-5C.. ACCA Shutdamn tank C

-C.. RCCA Control Bank C

-50.. ACCA Shuteman Bank 0

-0.. ACCA Control Bank D

-5E- = RCCA 5hutdemn Bank E

-TP-. Thimble Flug 9

-.m w.

l NDIT No.Smeet i

Attachment B p s.siement n.v. 2 Figure 2-2

]

Braidwood Unit 2 Cycle 6 BA and Samndmy Sourcelocation i

R P

N M

L K

J H

G F

E D

C B

I I

l' l

I I

I I

I I

I I

I I

I l

l l

l l

l l

l 1

i I

I I

I I

l 1

l l

SA ces Cec ces SA l

1 2

l l

Set ist 1281 1 31 1281 131 6 43 l

l l

l so sw as 4ssa sa sw sC I

3 l

6 48 1288 ist 1881 1281 6 41 l

l sA Cao sW

.sE sW CBD sA l

4 1

1281 1 31 1561 1588 1st 1291 l

l sC sw sw sw sw sw so 5

6 41 1203 1281 1281 1288 1 31 6 41 Ces sw sw Cec CsA Cec ew sw Ces 8

1 31 1281 1 31 1568 1201 1281 1308 s8 sW sW sB tow 7

1 31 1981 Ital 1200 1801 itel CBC sE sw C8A C80 CSA SW sE CBC 8

90 12el 12sl teel 1881 12sl im sa sw sw as 9

1203 1801 1m 1201 1861 131 Cas sw sw Cec CaA CBC sw sw Ces 10 1231 1281 tal 1861 12Al 1801 ist so sw sw sw sw sw sc 11 6 41 1201 tal 1281 12Al 1231 Sel sA Cao sW sE SW CBD SA 12 1281 1288 1581 1861 tal 1st sC sw ss 4ss' se sw so 13 6 41 1281 1281 1281 1281 Sol SA C88 CBC CBS SA 14 64l 1281 1281 1281 1200 1203 6 41 15 0 degree ss Secondary Source

  • Previouslyirradiated xi Fresh Assembly Cv,;.;.t.i, X IFBA Rodlets xw Fresh BA Cluster Contail*ig X WABA Rodlets Cs/s Control Bank or Shutdown Bank 2-8 i

\\

. a 7 = 8800.i Attachment C

" "" L"2 0 IBID /N513 1188 79H 10( % POWER 1.462 C0aB F-ENLTA-E 55 75 sa sa 7A 7A sh 53

.903 1.081 1.330 1.275 1.134 1.200 1.102

.413

.943 1.184 1.398 1.303 1.205 1.310 1.329

.556 33422 24835 0

0 25200 18393 0

33422

.001 1.000 1.000

.004

.025 1.000

.001 75 sh 7A 7A sh 75 sh 7A 1.081 1.293 1.364 1.181 1.304 1.084 1.997

.491 1.184 1.462 1.405 1.268 1.388 1.170 1.301

.744 24835 0

19792 24626 0

24473 0

22978 1.000m

.018 1.000 1.000

.007 55 7A 7A sh 75 BA sh 7A 1.320 1.255 1.201 1.240 1.123 1.216 1.088

.471 1.398 1.405 1.292 1.381 1.206 1.345 1.258

.697 0

19792 24812 0

23635 0

0 22666 1.000

.018 1.000 1.000 1.000

.008 as 7A 55 7A sh 73 sh 55 1.275 1.182 1.260 1.154 1.245 1.057 1.064

.309 1.383 1.269 1.382 1.238 1.364 1.148 1.333

.551 0

24625 0

24130 0

23803 0

32196

  • 1.000 1.000 1.000 1.000 7A BA 75 BA 7A sh 7A 1.134 1.310 1.125 1.245 1.101 1.159

.616 1.205 1.391 1.208 1.364 1.184 1.318

.922 25208 0

23635 0

34812

.0 22531

.004 1.000 1.000 1.000

.008 7A 75 BA 75 sh.

5A GA 1.200 1.093 1.221 1.059 1.150

.991

.328 1.310 1.184 1.350 1.150 1.310 1'.292

.687 18393 24473 0

23803

-0 J.0 33449

.025 1.000 1.000 1.000 sA sA sa sh 7A.

5A 1.102 1.104 1.091 1.067

.617

.328 1.329 1.314 1.263 1.337

.923

.587 0

0 0

. 0 22531 33449 1.000 1.000 1.000 1.000

.000 55 7A 7A GB

.413

.493

.472

.310 1A REGION

.656

'.747

.700

.553 33422 22978 22666 32196 gy AgSEBEBLY POWER gy namvDN POWER

.001

.007

.008 33 335EIERLY BURNUP BA BA FRACTION a

i 5 IIDICATES ASSEMBLT'AED QUADRANT OF PEAK BtBEBER OF POWER BURNUPS RSGION mamma m s annum TOTAL CTCLE 4A

,8

.328 "

33'49~

~~

4 0

63.

13

.387 32668 0

7A 60

.923 22836 0

73 28 1.089 24094 0

SA 68 1.162 0

0-SR 16 1.279 0

0 1

FIGURE 3.5 3RAIDWOOD D3f1T 2 CTCLE 6 POWER AND BURNUP j

DISTRIBUTION AT 0 lefD/NrU, 3FP,130, NO EENON i

PAaB 3-7

NDIT No. 88,0041 Attaclirtierit D 9

s34. esi ner. 2 4000 IstD/3 BTU 1032 PPIt 100 % POWER 1.412 CORE r-DELTA-s 53 73 53 53 7A 7A GA 53

.756

.939 1.331 1.316 1.056 1.109 1.209

.438

.785 1.040 1.392 1.363 1.120 1.218 1.353

.595 36746 28872 5323 5190 29601 23012 4625 35147

.eSi

.401

.501

.001

.005

.465

.001 73 5A 7A 7A 5A 75 BA 7A

.939 1.224 1.087 1.076 1.369 1.053 1.226

.522 1.040 1.315 1.170 1.149 1.408 1.130 1.382

.793 28872 5023 24481 29143 5357 28747 4646 25032

.524

.006

.412

.463

.004 53 7A 7A 55 73 BA RA 7A 1.331 1.088 1.036 1.282 1.082 1.336 1.221

.495 1.392 1.171 1.107 1.354 1.152 1.400 1.393

.744 5323 24482 29270 5080 28038 5084 4609 24624

.401

.006

.509

.519

.466

.005 53 7A 55 7A 5A 73 BA 55 1.316 1.077 1.282 1.090 1.316 1.027 1.002

.315 1.363 1.151 1.355 1.156 1.383 1.117' 1.349

.570 5190 29147 5083 28612 e5099 27957 4273 33457

.501

.508

.518

.492 7A SA 73 BA 7A BA.

7A 1.056 1.374 1.084 1.317 1.060 1.208

.595 1.120 1.412 1.155 1.384 1.133

'1.338

.888 29601 5377 20046 5102 29129 4719 24963

.001

.411e

.518

.456

.004 7A 75 BA 75 5A BA 6A 1.109 1.060 1.340 1.028 1.209

.991

.318 1.218 1.135 1.406 1.119 1.338 1.291

.668 23012 28778 5102 27963 4722 3943 34752

.008

.518

.456

.520 BA 5A 5A SA 7A 5A 1.209 1.232 1.226 1.084

.596

.318 1.353 1.390 1.398 1.351

.589

.668 4625 4670 4626 4283 24966 34753

. 491_ l

.004

.465

.461

.465 sa 7A 7A i

53

.438

.523

.497

.316 1A REGION

.695

.795

.746

.571 AP ASSEMBLY POWER 35147 25039 24630 33461 NP NAKINUM POWER

.001

.004

.005 AB ASSEMBLY BURNUP BA BA FRACTION m

5 INDICATES ASSEMBLY AllD QUADRANT OF PEAK NUISBER OF POWER BURNUPS REGION ASSEMBLIES SEARING TOTAL CTCLE EA 8

.318 34753 1304 68 13

.357 34231 1564 7A 60

.561 26409 3572 j

73 28 1.039 28343 4249 i

SA 68 1.233 4780 4780 83 16 1.303 5169 5169 i

1 FIGURE 3.10 BRAIDWOOD UNIT 2 CYCLE 6 POWER AllD BURNUP DISTRIBUTICII AT 4000 3pfD/30TU, IFF, ARD, EQUILIBRIU38 XE3 TON j

PAGE 3-12

NOIT No.SMD41 -

Attachment E

  • ** c =85 Ror.2 21500 3EID/NE'U 10 77H 48 % POWER 1.444 CORE F-DELTA-E 55 73 55 55 7A 7A 54 55

.778

.306 1.269 1.272

.946 1.006 1.261

.529

.799

.974 1.327 1.338

.991 1.100 1.361

.772 49932 44814 28362 28273 46917 41183 26352 43492

.001

.003

.002

.081

.001

.007

.801 75 5A 7A 7A BA 73 54 7A

.906 1.247

.979

.964 1.298

.979 1.284

.610

.974 1.309 1.034 1.012 1.344 1.055 1.404

.872 44814 26833 42329 46867 28858 46347 26819 34031

.004

.001

.004

.006

.001 55 7A 7A 55 73 5A BA 7A 1.269

.979

.936 1.255

.998 1.366 1.289

.586 1.327 1.034

.997 1.334 1.051 1.444 1.437

.831 28362 42331 46319 27842 46208 29250 26820 33964

.003

.001

.003

.002m

.006

.001 55 7A 85 7A 54 75 sh 55 1.272

.964 1.264 1.008 1.338

.994 1.133

.386 1.338 1.012 1.333 1.058 1.391 1.054 1.333

.643 28273 46875 27842 47028 28826 45465 23432 39435

.002

.003

.003

.013 TA BA 75 SA 7A RA 7A

.946 1.291

.998 1.337 1.015 1.266

.666

.991 1.342 1.051 1.391 1.058

  • 1.369

.919 46917 20911 46219 28823 47159 26294 35730

.001

.004

.002

.007

.001 7A 75 54 75 BA BA GA 1.006

.981 1.366

.993 1.266 1.086

.395 1.100 1.055 1.443 1.053 1.369 1.318

.737 41183 46436 29282 45470 26294 21762 40782

.001

.002

.007

.020 BA sh BA sh 7A 5A 1.261 1.284 1.289 1.132

.666

.395 1.361 1.404 1.436 1.332

.918

.737 26352 26880 26848 23441 35731 40702

.007

.006

.006

.013

.001 JS 7A 7A 65

.529

.610

.586

.386 3.A REGION

.772

.871

.831

.443 Ay ASSEMBLY POWER 43492 34842 33974 39439 gy 9mrTMUM POWER

.001

.001

.001 As ASSEMBLY SURNUP 3A BA FRACTION 5 INDICATES ASSEMBLY AND QUADRANT OF PEAK staanER or POWER SURNDPS AEGION ASSEMBLIES SEARING TOTAL CTCLE 6A 8

.395 40702 7333

'68 13

.460 41492 8824 7A 60

.335 41072 18236 75 28

.978 45051 21757 SA 68 1.266 26807 26807 85 16 1.267 20080 28080 FIGURE 3.23 BRAIDWOOD UNIT 2 CTCLE 6 POWER AMD BURarDP DISTRIBUTION AT 21500 asfD/NTU, 48% POWER, ARO, EQUILIERZtaf XENOK PAGE 3-25

.