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October 27, 1992
Dr. Thomas E. HurleyOffice of Nuclear Reactor kegulationNucli.ar Regulatory CommissionWashington, D.C. 20555
Subject: Dresden Nuclear Power Station Unit 2Supplement to the Intergranular Stress Corrosion Cracking(IGSCC) Program (Generic Letter 88-01) Refuel OutageExamination PlanNRC_Qoch1Jiom52-237.
Reference: (a) P. Piet memo to T. Murley, dated October 14, 1992.
Dear Dr. Hurley:
During the transmittal of the Reference (a) letter, Attachment A wasinadvertently omitted. Commonwealth Edison (Ceco) apologizes for anyinconvenience this omission may have caused the NRC Staff. The omitted zinformation is provided as an attachment to this letter. Please update yourcopy of the Reference (a) letter accordingly.
If there are any questions, please contact me at (708) 515-7286.
_
Sincerely,
j/ G [ I4
' Peter L. PietNuclear Licensing Administrator
Attachment
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tirain2/268/
-9211030244 921014|_ - PDR ADOCK 05000237
P . peg
h 'T h(_hk Mbbk ['
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Appendix C
EMS.TAl.11ED STRESSES AT yliFLAWEDWELD LOCATJ_Qlig
"U2b).e lig_,_ System pggg
REACTOR RECIRCULATIOll:
C-1 4" Bypans Piping P.1C-2 12" Risors at Nozzles ll2A, H2B, C.3
112 C , N2D, and N2EC-3 12" Risors at tiozzles N2F, N2G, C.5
N2H, N2J, and N2KC-4 22" Header Piping C.7C-5 28" Pump Suction & Discharge Piping C.9
C-6 SHUTDOWN COOLINO C.11
RESIDUAL HEAT REMOVAL:
C-7 LPCI Loop "A" C.13C-8 LPCI Loop "B" C.15
ISOLATION C0!iDENSER:
C-9 Steam Supply C.17C-10 Condensate Return C.19
C-11 CONTROL ROD DRIVE C.21
C-12 RESCTOR WATER CLEAN-UP C.23
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XCE-53-102 C.0 NUTECHRev!sion 3 El4GNEERS
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Table C-1
DRESDE11 Uf11T 2SUSTAIRED SIRESSES
REACTOR RECIRCULATIO!1 SYSTG4" BYPASS PIPIlLQ
" e w~i,ra k im m w66struts (q s rpt as (7) sist sa m siff ES A
W1 L D en (t)(pei) (ps0 (peQ (pe4
4 X-1/SPM-4 5-7 4 173 4 051 37 328
SPM-4b6 4.173 222 6 43
S PM-45-5 4.173 747 1e 105
SPtJ-4 5-4 4.173 1.240 16 135
SPM-4 5-3 4.173 1.520 4 85
SPM-4b2 4 173 126 0 0
SPM-4 5-23 4.173 1.253 17 72
4 X-2/SPM-4 5- 2 5 #173 3 914 56 298
4 X-3/SPM-4 5-18 4 173 862 12 34
SPM-45-26 4.173 4E2 12 38
SPl.1-4 b17 4 173 184 8 12
SPM-4 5-16 4.173 ! 70 17 14
SPM-4bl5 4.173 477 51 194
SPM-4bl4 4.173 1,2W8 $1 196
S PM-4 5- 13 4.173 126 0 0
SPM-4b24 4 173 1.060 46 175
4 X-4/SPM-45- 19 4 173 1.024 9 22
NOTES.(t) P = (IP u OD)/|4 a Op)|(i) DW. TH. and WCS (F/A) + |(SQRT[(Mx'2) + /My' *2)) 12 in th )/S]
|4iNRR3 WK,/ AltkD2) (Pg 1 of 2)
XCE-53-102 C.1 NUTEEHRevision 3 ENONEERS
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Tcble C-1
QRESDEli UNIT 2SNETliINED STRERSIS
REACTOR RECIRCULbTIOli SYSTEli1"_ BYPASS PIE 11LQ
(Concluded)
F.im. b"~
T H. M M4 |1) totVA L D NO 4e9 Wef) r!)
4 X-1/SPM-4 5-7 8 589 16 950 0 $1
SPM-45 6 4 444 16 950 0 26
SPM-4 5- 5 5041 16.950 0 30
S PM-45-4 5 572 to er* 0 33
SPM-4 5-3 5.741 16 950 0 34
SPM-4 5-2 4199 16.950 0 25
SPM-4 5-23 5 515 16 910 0 33
4 x-2/SPM-45-25 8 445 16 950 0 50
4 X-3/S PM-4 5-18 5064 16 950 0 30
SPM-4 5-26 5 084 16 950 0 30
SPM 45-17 4.378 16 950 0 26
S PM-4 5-16 4.404 19.950 0 26
SPM-4 5-15 4 P95 16 950 0 29
SPM-4 5-14 5 716 16950 0 34
S PM-4 5-13 4 299 16 950 0 25
SPM-4 5-24 5454 16 950 0 32
4 x-4/SPM-4 5-19 5 227 16 950 0 31
i
NOTES(1) Srn = Allowat# e Dwaign Stress intensity for Type 3041
Stainless Steel at Design Temperature of575 degrees F frorr. ASME Section Hi
| 2) SR = (P + DW e TH + WOS)i SmAppend.1 Table 1-1.2
gi
|tesNRR3 WK1/ ALL)(D2l (Pg 2 of 7'
XCE-53-102 c.2 t4UTEEH. Revision 3 ENGt4EEP-:
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Table C-2
DRE5 PIN UllIT 2SUSTAI]1ED STRESSIf4
REACTOR RECIFCULATION SlgIEM1?" RISERS AT NOZZLES ff2L_N28, 112 C , 112 D , AllD 112.E
# w ssais s in his6f 8W Es (PJ Bf 6W AS (?) sitt $4 (7) stig as (tj
wuno o ne.4 _ v.4 w.o 9o
t42A J Dir9 171 369 924
PD4/201 1 6 600 390 422 1,455
PO4/L' S 400 1/2 1.946 4.137
N2D 3 999 83 4 30 3 601
PD6/201-1 6 600 188 966 6.424
PD6/L 1 6.800 462 1.372 2 821
N2C 3 999 114 336 4.233
PDC /201 1 6 800 212 794 7.201
PD6/L 1 6 400 600 1.664 3 887
N2D 3999 174 391 16.293
PD 1/201-1 6 800 396 897 27,781
N2E 3.999 IOS $34 ,906'
PD 1972r t .1 6 000 239 1.226 19 946
PD19/L2 6 600 419 2 008 2.748
f40TES(1) P e (IP a 00)/[4 m (ip))(2) DW, TH. and WOE = F/Al + |(LCRT[An* *2) , (My'?)| 12 m /ft )/S|
(12ildRAA3 WK1/ ALLKD2) (Pg 1 of 2)
XCE-53-102 C.3 NU T ED.Revision 3 EtKM4EERS
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ble C-2"
DA J1EN UNIT 2.: WFIJMED STRESSESi REACTOR PEUIRCULATION SljiT11'
@g f 12" RlSEBSJ,T NOZZLES N2A, _N2B, U 2C, N2D, AND U2E,
?- (Concludad)
e. . % 7T H.WOH (1) | SH
wt1D wo. We en to
. Nis. 5.453 16.950 0 32*
7, PO4/201 1 4.467 16.950 0 50
PO4/L1 12.064 16,950 $ 71r
[kN2B 8.013 16.950 7
YPD5/201 1 13.397 16 950 1
POS/L1 10 4/ ' to 950 -
N2C 947 , 16.950 0 51,
PO6/201 14.ty * t 16.350 0 v3
PD6/L'. 1 ' 7ef 16.950 0 69
N2D 19F 16 950 1.17
PD1/201-1 34.873 16.950 2 Oc
N2E 13.544 16 950 0 to
PO10/20 t-1 24.211 16.950 1 43|
*
PO19/L2 10.974 i 16 950 t{NOTES-(1) Sm = Niowatde Design Strese intensity for Type 304
Stamiese Sit * at Design Temperature of>
57: oogrees F tw., ASME Section IllAppendia Table 1-12.
(2) SR = (P + DW + TH + WOS) / Sm-
(12tNRRA3 WK1/ ALLH02) (Pg 2 of 2)
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)
XCE-53- 2 C.4 -
840TEEHRevision 4 ENEANEERS
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Table C-3
DRESDEN UNIT 2SUSTAINED STRESSES
EEACTOR RECIRCULATION SYSTEMJ.2" RISERS AT NOZZLES N2F. N2G._li2H. N2J. ANpjgE
'~
Nd Mine DW~
1H YA)6
sTHESs e sitn'as pl sits as m sTHras (2)vd t t's+0. (t)(re0 (p*4 (Pe9 1780
fl2F 3,999 737 599 1,790
PD7/201 1 5.800 1.681 1,375 3 424
P07/L4 5800 281 2.371 2.481
N2O 3 999 281 608 2.444
POS/201 -1 5.800 592 1.164 3 481
PD8/L4 6 800 669 1.912 7.794
td2H 3.099 87 283 3 306
PO9/201-1 5 800 198 651 6.233
PO9/L4 5,000 323 1.548 3.202
N2) 3 999 154 '82 : 190
PD2/201-1 5 800 350 1,1C 1 2 Cri3
PD2/L5 5800 780 1,112 2 580
N2K 3 999 65 294 704
PC1'?01-1 5 800 147 674 1.467
Pol'L5 5 800 682 1.712 4.285
NOTES.(1) P = (IP x OOVl4 m (tp))(2) OW, TH. and WOS = (F/A) + [(SQRT|(Mx'2) + (My* 't!] x 12 n /tt )/S}
(121NRRB3 WKil ALLND2) (Pg 1 of 2)
l
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XCE-53-102 C.5 NUlEEHRevision 3 ENONEERS
~_ _ _ . _ _ __ ..
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Table C-3
DRESCEN UNIT 2SUSTAl1[ED STRESSES
BFhMOR RECIRCULATION SYSTEM12" RISERS AT !!OZZLES N2F, N2G<_lQH, N2J. Al{p_JGE
( Conc? "-led)
P.OW. smTH. Wort (1) SH
MADen (pen (pea mN2F 7,124 16,950 0 42PD 7,201-1 12.275 13.950 0 72
PD7/L4 10 933 16,950 0 64 '
N2G 7.212 16.950 0 43
PD8/201-1 11.019 16 950 0 65,
PD9/L4 16.174 16.950 0 95
N2H 7.675 16,950 0 45
PD9/221-1 12,881 16.950 0)6PO9/t 4 10.872 16.950 0 64
N2J L.426 16.950 0 34
g PD2!201-1 0.309 16.95') 0 55
PDal' 6 10,252 16,9A C.30,
N2K 5.062 '.6 950 0 30
PD3/201-1 8.087 16.950 0 48
PD3/L5 12.379 16 950 0 73
NOTES(1) Sm - Allowable D sign Strea intenoty los Type 304
Staintees Steel at Design Tempeiatuta of575 oogrees F trom ASME Section tilApren6u Table I-12
(2) SR e (P + JW , TH , WDS) / Set
(12iNAR83 WK1/ ALL)(D2) (Pg. 2 of 2)
XCE-53-102 C.6 NUTKHRevision 3 F_NGHEERS
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Table C-4
DBESDEN UNIT 2SDSTAINED STRESSES
REACTOR RECIRCULATION SYSTEM2] " HEADER PIPING
~6i $Gl#( thy TH W3S(HL SS U7 STFESS ft) STFE&t (7) STFESS t>)
MLD NO. (1)(pag (pel) (pe4 (pe!)
1.1/L2 A,290 592 597 3754L2/D17A (290 117 $As 2 659
L2/202-6A 6.290 322 547 3.503
202-6A/L3 6.290 150 60'/ 3 252
202-60/L3 6.290 713 780 2.750
LS-06A 6290 140 528 1.300
L5/L4 6190 742 674 1.401
L 4/202-68 6.290 471 744 2.gNorES.(1) P = (IP x 00)/14 x (rp))(2) OW, TH. and WOS e (F/A) + [(SQRT|iMx "2) + (My'2)[ x 12 in a VL]
(22!NAR3 WK11 ALL)Q2) (Pg 1 of 2)
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XCE-53-10? Cs7 NUTE[HRevision 3 ENGNEERS
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Table C-4
DRESDEN UNIT 2SUSTAIllED STRESSES
REACTOR RECIRC*JLATIOli SYSTEM22" HEADER __ PIPING
(Concluded)
' P.DW. $mTH.WOH (t) sq
Wt10 #40 (pei) (p.6, ga
L1/L2 11,234 16.950 0 66
L2/D l7 A 9.595 16.950 0 57
L2/202-6A 10.702 16.950 0 63
202-6A/L3 10.489 16 950 0 62
202-6BIL3 10.540 16 950 0 62
L5-D6A 8.257 16.W50 0 49
L5/L4 0,507 16. bio * 0 56
L4/202-68 9 621 16 950 0 57
NOTES:.'*) Gm = Allowable Desig7 Strese intenuty for Type 304
Stainless Siegt at Des gn Tempe.ature of$75 degrees 48 from ASME Osetion thAppe4x Tabi a l-1.2-
(2) SR . (P + DW + TH + WOS) / im
(22tNRR3 WK1/ ALL)(D2) 93 2 of 2p
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XCE-53-102 C.8 84UTE[H.
Revision 3 ENGHEERS
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Table C-5
DRESDEN UNIT 2SUSTAINED STRESSES
REACTOR RECIRCULATION SYSTEM28" PUMP SUCTION & DISCHARGE PIPING
PS h3VM OW TH WOS|
S T ESS (P) Pf 4SS (2) ST8E SS rj SifE SWCh '
wt L O NO C Hpen (pe4 (peQ (pe)_
NIA 6 439 486 230 1G1
P S t -2t201- 1 6 430 486 230 526
PS1-2 01 6439 378 212 372
PS1-2-02 6 439 336 245 1,181
PSI-2-03 6.439 3W 233 1,170
PSI-2/PS t -2 A 6.439 160 32 985
PSI-2 A/202 4A 6.439 501 37 745
202-4 A/ PSI A 6.439 ;,59 92 664
PS14/202-1 A 6 439 152 11 180
POlB/202-1 A 6.43G 382 129 362
; '2-5A/PO1 A 6.439 219 205 652
PO1A-015 6439 651 e43 893
PO1A/L2 6.439 597 153 891
L2-017 6439 , 100 ' 151 1,287
INIB 6439 300 ?14 136
PS2/201+1 6 439 300 214 133
PS2-C1 6.439 406 158 437
PS1/PS2 TEE 6 439 416 159 330
PS2 TEE!?o2-4B 6.439 89 77 555
202-48/PS2 A 6.439 141 25 512
PS2A-02 6.439 216 77 441
PS2A-03 6.439 181 88 275
PO1C/202-1 B 6.439 411 100 316
202-58/POIC 6 43; 310 127 119
202-58/PO ID 6 439 245 165 321
PO10-011 6 433 463 181 = 54
PO104312 6439 537 131 380
PO10/L5 2 430 494 114 127
L5-06 6.439 96 '20 290
NOTES.(1) P = CP x 001/14 x (1p11(2) OW TH and WOS = (F/A) + |{SORTi(Mx"2) + (My"2)] x 12 initt )/SJ
f(28iNAR3 WK11 ALL)(O2' (Pg 1 of 2)
i
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XCE-53-102 C.9 ggyggRevision 3 ENIANEERS
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;. .r* .s. .
Table C-5
DRESDEli UNIT 2SUSTAIllED STRESSES
REACTOR RECIRCULATION SYSTEM?_B." PUMP SUCTION & DISCHARGE PIPI!1Q
(Concluded)
P.DWT fwn
T HeWOf1 (1) SHML D NO (ps4 (pe0 CD
NIA 7.250 16 950 0 43
PS t-2/201- 1 7,681 16 950 0 45
PS t-2-01 7.431 16.950 0 44
PSt-2-02 8 201 16.950 0 48
PS t -2-03 4.195 16.950 0 48
PS t-2/ PSI-2 A 7 616 to 950 0 45
PSt 2A/202-4 7.722 16.950 0 46
202-4 A/PSt A 7,454 16 #53 0 44
Pe t A!202-1 A 6.788 16.950 0 40
"U18/202 .A 7.312 16 950 0 43
2C2 5A/ POI A 7,515 16.950 0 44
PO1A-015 8.125 16 950 0 48
PO1 A/L2 d.079 16 950 0 48
L2-017 7.986 16.950 0 47
N1B 7.088 16.950 0 42
PS2/201-1 7.0E6 16 950 0 42
PS2-01 7,469 16.950 0 44
PS1/PS2 TEE 7.393 16 950 0 44
|PS2 TEE /702- 7.160 to 950 0 42
202-48/PS2 A 7.117 16 950 0 42
PS2A-02 7,173 16.950 0 42
PS2A-03 6.982 to 950 0 41
PO1C/202-18 7.271 16 950 0 43
202-58/F 6 995 16.950 0 41
202-5BJPC - 7.169 16 950 0 42
P010-011 7.536 16 950 0 44
PO10!O12 7.486 16.950 0 44
PC 10!L5 7.174 16.950 0 42
L5-06 6 945 16.950 0 41
NOTES.(1) Sm Allowable Ossign Suvas intensity for Type 304
Stamiens Steel at Design Temperature of575 degrees F aom ASME Secte niAppendix Table 1-1.2.
(2) SR = (P + OW + TH + W"JS) / Sm
(;8tN RR3.W K11. ALL)(O2) (Pg 2 ol21
XCE-53-102 C.10 '
NUTE[HRevision 3 ENGNEERS
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Table C-6
'.RESDE!1 UllIT 2
SUSTAIJiEQ STRESSESS11UToowt1 cooLIf1G SYSTEM
est asure. DW 1H was6f15 as (19 situ ss (:r) stFtss (2) sistss(21
WEID No (1 Mesa (per) gen (p.a
LOOP *A"
10-11 6 925 275 1.362 1.006
16-10 6 925 352 1.998 679
LOOP'B' -
1645 6 925 1,014 2.334 S37
16-9 6 925 902 2.205 589,
16-10 6925 144 f,525 413
NOTES(1) P = (IP a OOM4 x (tp)1(2) OW, TH and WOS * (F/A) + [(SQRT[tMa* *2) + (My* *2)} x units)/S]
Y
(02 SOC 2 WK11 ALL)(C2) (Pg 1 of 2)
-r
a
s
XCE-53-102 C.11 NUTEEHRevision 3.
EMNEERS1
- - _ _ _ _ - _ _ _ _ _ _ _ - - - _ _ - _ _ _ _ _ _ _ _ _ _ _ _
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Table C-6
DRESDEN UNIT 2SUSTAINED STRESSES
FHUTDOWN COOLING SYSTEM(Concluded)
e.uw. A16.Wtm (1) $ f fM.SR IMilO
v4 LO M) (paQ (poi (2)
LOOP'A*
16-11 9 569 16 950 0 56
16-10 9.954 18 950 0 59
LOOP'D'
16-- K 6 10 809 16.950 0 64
16-9 10.620 16.950 0 63
16-10 10.011 18 950 0 51
-
NOTES-(1) Gm a Alawable Design Stress truensity for Type 304
Stamiess heel at Design iemperature of$75 degrees F from ASME Section IIIApg endia Table I-1.2,
(2) SR = (P + DW + TH + WOS)/ bm
(00 SOC 2,WK1!. ALL)(D2p (Pg 2 of 2)
XCE-53-102 C.12 NUTEEH. .
Revision 3 ENCANEERS,,
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Table C-7
DRESDEli UNII_2SUSTAINED STRESSES-
RHR SYSTEM - LPCI LOOP "A"
ne ssuse ow TH wasSiiW,SS (P) $IFW SS(2) ST YSS (2) ST Ft.SS (?)
)NL'L D NQ, { y (pei) (peQ (pt) (pgi)
821|16-15 6125 314 1,154 .
16-K10 6.9'S 291 1.634 292
16-14 6 W25 614 11 565 1,9A4
16-13 6925 546 5.046 1.879
16-12 6 925 389 3.594 1.860
16-K9 P.925 85 3.942 775
16-Ka 6.925 149 1,246 236
16-K7 6925 109 5729 1.05?
16-X6 6.925 172 8.520 106
16-11A 6.025 611 4.765 2.000
16-1$ 6.925 126 1,716 2.090
16-10 6925 435 m,734 2.991
16-K5 6 925 468 4 622 3 592
NOTES(e) P (IP x 00)14 x (rp)!(2) OW. TH. and WGS = (FIA) + l(Sr ~ Ti(Ms"li + (My"2)] a 15 m1ft 1/S1
f t PCIA3 WK11. ALL)(D2) (Pg 1 of 2)_
XCE-53-102 C.12 NUTEHRevision 3 Et4GNEERS -
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Table C-7
PRESDEN U'IT 2fiUSTAINED STRESSES
El![i_ SYSTEM LPCI 100F "A"-
(Concludeo}
P etM. 8wn
TH+M N1 (1) STIE88 fMilOv410NO (peo 9m0 (2)
16 it 13.214 16.950 0 78
16-Kto 9.143 16 950 0 54
16-14 21.092 16.950 1 24
16-13 14.396 16.950 0 85
16-12 12,772 10 950 0 75 i
16-K9 11.726 16.950 0 69
16-K4 8.555 16,950 0 50
16-K7 1d $20 16 9 % 0 87
16-F1 15.723 1&ds0 0 93
16-11A 14 392 16.950 0 85
.6-11 to854 16.950 0 64
16-10 14.000 16 950 0 &J
16-K5 15.607 16,950 0 92
NOTES,
(1) Sm a Mowable Desion Stresa Intensity for Type 304Stainless Stee6 at Design Temre'ature of575 degrees F trom ASME Swtion illAppendix Table I-12.
(2) SR = /P + DW + TH + WOS)i Sm
(LPCIA3 WK1/ A8.L)(D2),
(Pg 2 o
XCE-53-102 C.14 NUTETHEcvie4.on 4 EN EERS
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Table C-8
DRESDEN UNIT 2SJ; STAINED STRESSX.S
RHFi SYSTEM - LPCI LOO P '' B ",
f Ptsssiit (m TH wossiitss (55 stiESS m sine SS A Gilt SS CT)
WELD NO (t) (pei) (peQ (p44 (pe4
18-12 6 925 304 4.749 1.070
16-K9 6.925 274 1.691 228
16-11 6.925 599 11.075 461
16-10 6915 541 4 8c0 836
16-K8 6 92f - 378 4 011 e 119
16-K7 6.92. 86 4 087 579
16-K6 8925 151 1.233 171
16-K5 6 925 107 6712 944
16-K4 6.925 183 8.066 409
16-4 6.925 117 1,776 788
16-8 0.925 457 3.831 1.551
16-K3A 1 6 925 502 5 321 2.256
NOTES.(1) P = ('P x 00)/[4 x (tp)).(2) DW, TH. and WOS = (F/A) + [(SCRTI'Ms"2) + (My"2)i a 12 in /ft 1/5;
(LPCIB3 WK1/ .LL)(D2) (Pg 1 of 2)
XCE-53-102 C.15 NUTEEHRevision 3 ENGNEERS
=. . . _ _ _ _ _ _ -. __.
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v. .
Table C-8a
DFESDEN UNIT 2SUSTAINED STRFSSES
Ellit SYSTEM - LPCI LOOP "B"
(Concluded)
e
P.Dm MTWWOH (1) STTE ES M TIO
WW1D W (p+4 M GP _s6-12 13 044 16 950 0 77
16-K9 9.118 16.950 0 54
16-11 19 061 16.950 1 12~16-10 .1,111 14.950 0 77
16-K4 12 44 16.950 0 73
16-K7 11.677 16.950 0 69
16-K8 8,540 13.950 0 60
16-K5 14 693 16 950 0 87
16-K4 15.584 16 950 0 92'
g
16-9 9 606 16 950 - 0 57*
16-4 12,765 10.950 0 75
16-K3A 15 004 16.950 0 89_NOTES.
g (1) Sm = Allowable Design Stresa Intene4ty tw Type 304kain6eas Otaet at Dewgn Ts.nperature of676 degrees F froci AsME Section 11!Append n Table 8-1.2
(2) SR = (P + f1W + TH + WOS) / San
kLPCIS) WK11 ALLXOC) (Pg. 2 of 21
)_
<
4
XCE-53-102 C.16 NHYE[HRevision 4 ENGNEERS
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_ _ _ _ _ _ _ - _ _ _ _ _ _ __ _ _ _ - _ _ _ _ _ _ .
_ _ .
,- <*. ...
Table C-9
DRESDEN UNIT 2SilSTAIilED STRESS 13
LS2[ATIOll CONOPJEER SYSTEM - STEAM SUPPL 1
{ thitssue: tur 1H ] wog|
,
| sW Sa (P) 81 P".5 3 (7, s1 Fit'sa (7; site as (7)WT 1 O P40 ( t)W)__ (poi (pa.) (m2,
2 1102-t4* ItCtOE DA YWF',4N58 6.857 231 7,351 014-K1 8857 178 6 851 014->J 6.857 405 5 003 014-K3 9.857 912 9192 0.4-K4 6.857 634 . 10.553 014 2 6.857 829 10.555 0'4-2 8 857 178 11.254 C
14-K5 6 867 186 11.285 014-K6 6 857 1 217 1.945 0ti-3A 68571 1.217 1.945 014-4 6.857 I 314 8,1* 8 0.
14-5 6 857 251 7.t ae 014-5A 6.857 74 5 456 014-5N 6857- 4J 5.76# 0
2- t 302-14' OUTSIDE D AYWEU NOTE (3)14-6 E857 4.322 .i.692 014-64 68U 4.322 4 #2 , 0,
14-7 6 857 3.102 3.928 014- ' '57 1.42C 1.782 0-.
14-2 a E '7 S$1 5.743 014-3 6.657 253 3.892 0e4-4 0.857 99 1 1.269 0
it4-5 0 857 835 5 041 0
f14-6 0ff.857 727 4.34314-7 6 SS7 697 S.196 0*
314-8 6.857 100 5 696 014-0 8.857 310 5.476 C
?; * 102_A- 12'12-1 6%il 97 ,
NOTE (3)7.J41 0
12-1 0. 8 .1 EM 5.555 0-
5.100 f12-3 6.811 109 s;12-4 6 811 205- 5.127 C
[12-4A I
978|.6 811 g * 4 816 0
:12 5 6 811 | 4.701 0
f)2-0 0.811'' 1,101 5115 0i.2-7 6.811 1.183 5655 0
l; 2-13028 t?' NOTE (3;
{12-1 6,811 246 6,514 012-2 6 811 247 5 2Rli 012-3 6.811 458 6.210 012 3A 6.811 827 0.487 012-4 6 81 t 796 4.753 012-5 6.811 980 6.072 012-6 6 811 947 '7.b s6 0
INOTESfil' P = (!P x 00)/l4 m {tpy,
h2) DW.TH snd WO3 -(FIA) + [(SORT [(Me"2) +(M "2)| x 12 in /ft }/S)f
h3) ENVElnPE LOAO OF Fu t 660 lb. My=22.0?O h-Ib & Mud 550 ft-Idadded per ASU Cctculatan
I
h02tSCO3 WK1/ ALL fD2) (F g 1 of 2) .
XCE-53-102 C.17tG TEEHRevision 3 g;EIMEERS -
__ -
__ _____ _ _____ ._ __- _
*. . . ..,* *
Tabic C-9
RBIfQEN UNIT 2SMSTAINED STRESSIS
ISOLATlQE CONDENSER SYSTEM - STEAM SUPPLY(concluded)-
P sowe ~S~t n.wost (1) tri4GSFMTC
VALDNO M4 (pe 6) (7)
2-1302-14' INSIOE D AYWEQN58 14 439 16 950 0 8514-K1 13487 16 DN 0 8214-K2 12.728 16 960 0 7514-K3 17.561 16.950 1 04
14-K4 18,245 16.950 1 04 -
14-2 18.242 16.950 1 04# 14-3 18 290 16.950 1.08 y
14-K$ 14.325 to 950 1 08 v14-K6 10.019 16 950 0 59 #
14-3A t 0.019 16.950 0 50e 14-4 15.310 18,9t0 0 90
} 14-6 14 295 18 950 0 84/ 14-5A 12.387 16 950 0 73
14-6H 12.6ad 16 950 0 75
h1302-14' OU.T Sg D AYWELL14-6 15 872 16.95%' 0 941441A 15.872 16)$0 n 9414-7 13.887 16 950 0 E214-1 12.000 16 950 0 7114-2 13.152 16 # 60 0 78
9 14-3 11.043 16 950 0 6514-4 10.225 16,950 0 6014-5 13 633 16 950 n 40
' 14-6 11.9.17 16.950 0 7014-7 13.750 16.250 0 8114-8 12.653 16.9f 3 0 7614-4 12.643 16 950 - 0.75
Q302 A-12*12 1 14.249 16.950 0 84
i12-2 13.220 - 18.950 0 78
f12-3 12,020 16.950 0 71112-4 12.143 10 960 0 72
{ t2-4 A 11.709 16.950 C P4
|12-5 12.400 16 950 0 74 -g;
|12-6 13 117 16.950 0 7712-7 13.649 16.950 0 41
2-1 M28-t2'12-1 13 47C 16.950 0 8212-2 12.346 16 950 0 7312-3 13,479 16 950 0 8012-3A 13.125 16 950 0 77 .
12-4 12.159 16 950 0 7312-5 13.864 18.950 0 2212-6 16 404 18 950 0 91
WCTE C~
(1) Sm = AWtswebte Demon Strese intensty w lype 304Stainless Steet at De*0n Temperature of -575 riegtses F trom ASHE Sechon 1HAcpec$2Tath M .2
12) SR = (P + DW + TM + WOT) / 2%
(#12| SCC 3 WK1/ ALLMD2) (Pg 2 of 2y
XCE,53-102 C 18. NUTEEH
Rev.is2on 4 ENHtER*ii.
-1|
.
-.,g . . ,
.
Table C-10
DRESDE.'l UllIT 2SUSTAIllED STRESSES
JSOIJC7,Qfi COtlDE!1SEE SYSTEM - COtIDEtJSATJ RETURU
P5ELsuff (Nv TH vos
s f HESS (P) STFESS (2) SI TE SS (2) $1 Fess (2)!
! wtLDfC (1) (psi (pad (pea (pc 4
2-1303-12*lNSIDE ORYWEg'
12X-4 6.811 0.005 158
12-K7 64t1 167 6 910 137
12-11 6.811 7 /9 8.158 159
12-KSA 6,811 675 7,585 160
12-K3 8.L . ' ~ $56 - 7.58) 214
12-10 6.81 760 5.620 189
12-9 6.411 752 2.589 112
12-KI 6.811 703 3 701 63
12-8 6.811 264 5422 90
12-78 6.811 | 120 ,7 S74 '4
12-7N 8.h t i i 154 4.134 26
p.t 30.3 12aOUT $10E DAYWELL
'2-7A 6811 183 528 0
12-7 c.811 183 528 0
12-6 6 811 342 2087 0
'NOTED(1) P = (iP x 004/14 x (tp))(2) OW. TH. and WOS (F/A, + [(SCRT{{Mx"?) + (M '2)| w 12 in lft ytlf
;31 ENVELOPE LOAO OF Fu =1.600 Iti. My=22 050 R-lo. & Mied 550 It-Ibadded por ABB Calculatian
;C215003 WK1/ ALLKD2) (Pg 1 of 2; |
XCE--5 3 - 10 2 C.19 NU'TEHRevision 3 ENGMF.ERS -
*:-cs* .
Table C-10
DRESDEli U?iIT 2SUSTAIt<ED STRESSES
ImTIori CorIDEtiSER _ SYSTEM - COfiDEllSATE RETURif(Concluded)
_
r .UW. Sm
TH.Woh (t) Sf HE SS nATIO
WELD NO (pad me) m
|2-1303-t:"INSIDE D AYWEL L
12X-4 13.219 16 950 0.78
12-K7 14.025 10.950 0 83
12-11 15 908 16=950 0 94
12-K3A 15.231 16.950 0 90
12-K3 15,162 16.950 0 SG
12-10 13.279 16.954 0.78
12-9 10,265 16.950 0 61
2-K1 10.778 16 950 0 64
12-8 12.591 18,950 0 74
12-7B 11.019 16.950 0 65
Iw-7N 11.125 iA950 0 66
2-1303-ir*OUTSIDE DRVWELL
12-7A 7.522 16.950 0 44
12-7 7,522 If ~30 0 44
12-6 9 240 ?O.950 0 55
llO TEF --
(1) Sm = Allowable Design Stress Intensity fcw Type 304Stamiese Steel at Design Temperature of$75 degrees F ham ASME Section ..
.
Append 4x Table |-f.2.i(2) SR = (P + DW + TH + WOS) / Sm
dD2|SCO3 WK1/ ALLHD2) (Pg. 2 of 2) ,
!
XCE-53-102 C.20 NUTEHRevision 3 ENGt4EERS
.
es. **,,* e
4
-Table C-11
DRESDEN UNIT 2SUSTAINED STRESSES
COf1 TROL ROP DRIVE _ SYS'"fM
| reu.sauset ow TH vvussisu nsp*) st F(ss rz) stit.ss m sisu:ss rj
ut D NO O Hpe4 (pe4 @e4 (pe4
I4-6 4.173 133 1.125 0
4-5 4 173 1.010 2.742 0
4-4 4.173 426 2 070 0
4-3 4,173 278 1 960 0
4-2 4.173 1,167 1.744 0
4-1 4.173 1.257 1.663 0
|WOTEs,(t) P . (IP x OD)/i4 x (tp)](2) DW, TH. and WOS = (F/A) + {(SQRTI(Mx"2) + (My* '2)] x 12 in Itt )/S).
'020RC3 WK1/ ALL)(O2) (Pg 1 of 2)
XCE-53-102 C.21 NUTEEHRevision 3 ENGHEERS
- _ - _-_-__--. - - - - - - -
*, e-.,
'.
.
Table C-11
DRESJEN UNIT 2_S3ES3'AIEED STRES_S1's
C_QRTROL POD DRIVE SYSTEM(Concluded)
f Pbw.~ w,1HMH (i)-" IU' L _.,,._ _ 5'4 etsuAs ruix)
;4 6|
____S'S
G15 431
SS 16.950 !;47 926
4-4 16 950 -o gr6 669
4-3 1e 9500 39
0.411A-2 16 950
0 337.084
41 te gio0 427,093
16 950 'o 42
ll0TE5 -(1) Sm = Allowable Destgr) Stress intensity b Type 304
Stamiese Steelat Dusgr Temperature of575 degrees F from ASME Secoon litAppendia Table i+1.2
(2) "A = (P + OW + TH + WOSlt Sm
{D2 CAD 3 WKII A_LLv02)(Pg 2 of 2)
t_
<
>
0
3-102 JTE[Hion 3 C.22 HaNEERSNUTEEHENGNEERSg
__ __ . _ _ _ _ _ _ - - - - - - - - - - - - - - - - - - - __ __ _ _ _ - _ _ - - - - - - - - - - - - - - - - - - - - - - - ~ ^ - ~ --_--- "_
.___
... .
.
* .
*.
Table C-12
QFESDQi UNIT 2SUSTAINED STRESSES
REACTOR WATER CLEAN-UP SYSTEM,
(Concluded)
P.Dw. smT H4vot (t) sit
wt iD too tusi (p=0 (2)
8X.t 9.014 16.950 0 53
I
NOTES.(1) Sm = AllowaDie Design Stress Intensity for Type 304
Stainiese Steel at Desegn Temperature of575 degions F from ASME Section tilApperio u Table 1-1.2.
(;') ?9. (" + OW , TH + WOS) / Sm
(D2RWCt.13 WK11 ALLMD2) (Pg 2 of D
i.
XCE-53 - 102 C.24 NUTEEHRevisi - 3 ENGNEERS
( -----
'g .,
- J
&T Conanonwealth Edison Co.
'
P.O. Box 767, Chicago, IL 60690 September 1990 Inservice InspectionUnit No. 2; National Board No. N-137,
Dresden Nuclear Power Station Commercial Service Date: 06-09-724-
R.R. No. 1, Morris, IL 60450 .
.
TABLE E INTRODUCTION
A reanalysAs of the Reactor Recirculation Piping was performed inOctober, 1990. The analysis was performed to asses the effe-ts ofRiser shrinkage caused by Weld Overlays.
The reanalyais resulted in the change of several spring can cold loadsetting tolerances on the Recirculation, Low Pressure CoolantInjection, Reactor Water Cleanup, Isolation Condenser, and ShutdownCooling systems. A special inspection was performed on the springcans in these systems that were not inspected during D2R11, and werenot part of the regularly scheduled ISI for D2R12.
Several of the spring cans inspected had cold load settings outsidethe new tolerance range. The cold loeds were reset within tolerancesand a baseline visual inspection was performed.
The attached Table summarizes the supports that received the specialinspections and the results of the baseline examinations followingany repairs.
.
- 56 -
IR17/202
.
- - -..e m. -- , . . . . ~ , , m
. . _ - .
,
; y,_,
.--w
s. ,
i Coamonwealth Edison Co. . septerber 1990 Inservice inspectica -.
P.O. Box 767 Chica90, IL 60690 O,it No. 2; National Board No. N-137Connercial Service DatS: 06-09-72
Dreiden Nuclear Power StationR.R. No. 1, Morris IL 60450
IABLE_f
Page 1 of f
RESULIS
CATEGORY ,MATERI AL/ LOC ATION METh00 EXTENT OF EXAMINATION I!jQ1LAT10N NO. SCAN TYPE.. . PERCENT CAC _.
EVALUATIONASHE COMPONENT
NRIF-C Recirc Line 0201A VT-3/4 M-Il57D-255
Class 1 DW 22" NRIVT-3/4 K-flu:u-2%7
NRIVT -3/4 M-Il57D-Z58
VRI' VT-3/4 M-1157D-258
NRIRecire Line 02013 Vi-3/4 M-1!570-256DW 22" NRI
VT-3/4 M-1157D-263
NRI J
VT-3/4 M-1157D-264NRI
'A' Recirc Pump VT-3/4 N-il57D-276DV NRI
'/T-3/4 M-1157C-277NRI
VT-3e4 H-1157D-278NRI
Recirc Line 0203A VT-3/4 M-1157D-265
DW 4" NRIVT-3/4 tb1157D-269
NRIRecire Line 02038 VT-3/4 H-1157D-2f5 .jDW 4"
NRISDC Line 1001A . VT-3/4 H-11590-259
DW 16"NRI
RwCU Line 1201 VT-3/4 H-11590-262
DW 8"
o
- 57 -ZR17/202 .
'
.
_
| - _ _ _ _ _,
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