ML19220B866
| ML19220B866 | |
| Person / Time | |
|---|---|
| Site: | Crane |
| Issue date: | 01/31/1978 |
| From: | Herbein J Metropolitan Edison Co |
| To: | Varga S Office of Nuclear Reactor Regulation |
| References | |
| GQL-0162, GQL-162, NUDOCS 7904270534 | |
| Download: ML19220B866 (23) | |
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-,w 4+ ee,s.4.....s.w.......,e.--,7._.4,.. cm.. .e..- ,. e a ......a address those positiens and questicos raised by /Oc staff. Shcu14 you have any additional questions, please contae: 27 staff. s.cerel? / e / / / t / J. sr. Hertein li:e Presiden - 3enerstian uv.._r.:a 7 __s Attach =ents: (1).:.esponse *.c ? siti:n 5 ( 2,1 .=.e a- - _ =n a _. 4.a.... _,_, (3) Res;. Quesnien %
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Attachnent 2 Position 11 - Additional information requested by NRC (verbally on 1/23/78) regarding door and frame construction details is as follows: 1. Pressed Steel Frame construction (See Door Schedule and Door Details, Burns and Roe Drawings 4521, Rev. 22, and 4522, Rev. 9, attached, for location of applicable doors and additional information): Frame Material - 14 gage c. eel Opening dimensions - 'ee Door Schedule Jamb Depth - See Doc 'etails Jamb-Head Joint - Misered, continuor,1y welded Hardware Reinforcing: Closer - 16 gage ' eel welded to 14 gage frame Strike - lo gai C_srn anJ pierced u__ Hinges - 7 gage steel Anchors: Type - Adjustab.'2 1 -carv atrap anchors,14 gage steel k'el'ad fic ar c1? ps,12 gage steel Number pel Ja-3 2. All other fire dsar iraces are structural steel channels e= bedded in concrete. See Door Schedule and Door Details attached for additional infor=ation and locations. 3. Pressed Steel door frames were supplied by Finestra and, labeled or unlabeled, are all constructed in the sa=e manner. The UL Building Materials Directory lists Finestra as a cualified =anufacturer of fire door frames and doors.
Att ac =er.t 3 Question 84 - Additional infor=ation requested by the NRC (verbally on 1/23/73) to clarify our response to Question 34 is attached herewith (calculation which determines the hea*ing value for cabling used for the fire hazards analysis) f">* ,< t
[(b " .n'~ &CC.'"e.'.'... a hCULATiCN/ PROF.LE.*.1 COVER Sii l Calculstion/Prebicm No.: Client: W1 Jcb No. 5%Cl3 (, - Proicct: YST L Sre Oro I 'O r' *MV" o "!'5 / 'i $ (6 Cu. [h D'\\t GN (O Yb db IU (ISro/pr) h ca6 limy a+ GPo mr-z-l [ a i '] I p. De:icn Bcscs/
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w r,C 4 ~ y g'1 .i F NUCLESILO i.U2CER INSUL^. TION, GLASS 2 RAIDS, fi. NAE & A2RASION RESISTANT g*w& g ASDESTOS C2 AID OVERALL. 4 I SPECIFICAT10NS I:, N5GX ll t CONSTRUCilON: Otronded tirned copper conductors, "Nuc!esil"S silicone rubber insulation specinc. ally compotnded for extreme rod; orion resistance, color coced glass broids, t'.ome, obrosion ond radiction re:istent onbestes broid overall. Nuclesil silicone rubber I insulation exceeds P3.17 IPC~A S.19-815:h. ecision. I, FEATUP.ES: C!rcuit integrity during and citor exposure to simulated LO.C.A. and fire. Minimum ilome propocorion and srneking. No corresive furt es given eif on burning. Exceeds cll known vertical troy tests, ADVANTAGES: Radiction fevels to 2 x 102 rods Maintoiris circuit 'ntegrity Excellent electric si properties l Excellent overle 2d chorocteristics 40 year life (rr moins flexible end usobiel ![ Brillioni color oce LI;. l-a Good abrosio, resistance l. 125*Ctena. aling' e Good flexibil ty era ~ w t,; g, No cold !!cw ' ~ ' ' ~' Superior cor,no & ozone ruistance l I USE5: Instrumente ion er centrol wiring la nuclear eenerering stations. Available in singte and faulti c7nductor form in AWG CI:es ::20 through 500 MCM and up to 100 condecters or cemnencnts, shioiced or unshicided, armeured er unormoured. / Suitchio for use in conceit or open coole troys. 1 s
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2 :ss= e.: ac. 3 .a ANACCNDAi 2 ~ a rm,g TYPE SRI!V/SRGV" N:ncM3 FIRE RESISTAMT INSTRU?tTNTATICH AND kCNTROL CASLE e .a rq3;3 nhar Gac3 FOR Tl!E IIYDROCAREON PROCESSI? G II DUSTRY ~ C3 W): = s ~t; ~ c ::p ' . p :.fi For the controlled shutdown in fire, SRNV/SRGV is construtted with tinacd copper or thermecouple 6 c.m Z '{J} alley condu ters; silicone rubber insulation cov- ~ ered with nylon (SRNV), or bcndad tilass braid (SRGV); and jacketed with flame retardant f. .:f ]>; " are 1050C; and this cabic resists flame up to 20000T PVC. Ratincs are 300 and 600 volts; centinuous operating temperatures i,. :.',;;) (10930C). t_ R d.4 hic,d. Fcr installation
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~l 6% LMcm chem. cal pla:its, of f-shore platforms, pipeline valve and pump controls and petroleum ports ; where circuit integrity is recuired for cot. trolled shut-down in the event of fire. l y . ". ~. 834G.' S no a This resume on SRNV/SRGV also contains the folicwing: CWC-T123 Flame Teut Procedure Report 75202 Flace. Test Results, SRNV 0 1500 F Report 75312 Flame Test Results, SRSV Q 10000F Report 75230 riame Test Results, SRGV 0 10000 T Report 75117 'leme Tcs: Results, PVC Q 1000 T-20009 C__3_ EN-10523 Specification Shect; 2/C-18 SRMV PEN-15735 Specific.trica Sheet; 2/C-16, 3/C-12 SRGV j s /d,t_l @.: m:acemeany Cant:nentalwire s coste Cerp. b it..w C:A': D.,ision P. O. 0c410G3 York. Punnsyivenia 174 7 7/ 70:'."..
e t A::ach::ent' Uc. 3 s (p q [1 **% M % r:k LF b b' a b C3N/ RO / It SRNV I?iSTP.UME!!?ATIC.'l CABLE 4 z 300 volts; 1050C c,ontinuous. . j,g 7 Strand tinnad copper conductors. Ea.:~g,r., 1; AWG.18 and 16 for single pair; ~ q: gy AWG 20 thru 16 for multi-pair. t;.e 1~. Mia Solid or Stranded extension grade ther=occuple alloys. "1y.J. Aug 16 per single pair; .R.YPf AWG 20 for culti-pair. - -n ,$, j~a ' Insulation is a 15 mil wall siliconc rubber and i 1
- _ y a 5 mil wall of color coded nylon.
E.:/ Shielding can be provided with Aluminur/ Mylar t-69.1 tape and drain wire. bq m I [?'} f) ? Jacket is color coded flanc-retardant, PVC rated f at 1050C. (An optional low-chlorine content, .h.M flame retardant i PVC, rated at 900C, is also available). m.o eI;z.aka I 1 6 SRGV C0!; TROL CABLE I t t 600 volts ; 10500 continuous. 7 Strand tinned copper conductors AWG 14 thru 9. Insulation is a 30 mil wall silicene rubber and a 6 mil trall of colcr coded bcnded 61aca braid. li (The individual conductors arc rated at 2000C for M Class H motor leads.) l Shielding can be provided with Aluminum / Mylar tape and drain wire. Jacket is color ceded flame-retardant PVC rated at 105 C. (An optional low-chlorine content. flame retardant PVC, rated at 90 C, is also 0 availuble). j ~. b 83 T13 M-A. i ATP t P-a.,. c e
? .) ~ n ~. 3. < + - +* c = s 3 g v. ,i A wu wm L, w SRNV/SRGV i e i The electrical properties of silicone rubber compare favorably with crganic inculation materials. It's re-sictance to chemicals is particularly useful at temper-atures which prchibit the ucc-,f other elastcmers. When burned, cilicene rubber leaves-a non-conducting ash which retain 0 excellent dielectric cualitica co that continued Efoperationoftheconductoris'poccibicforcentrolledchut-Errr: 7' down. ,p?q;[%? through and abracion, and : ccistc exposure to gasolin cf The nylon in SRNV pro'eccts the insulation from cut-r?!ff oil and other hydrocarbo: solvents. In additica to providing i,2f j longer insulation life, the protection afforded by the gg c)h' nylon = cans that the thickness of inculation need only be
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sufficient to provide electrical insulation and permits CC~ 'a the wire construction to be of srallcr! diameter. (("d In a multiconductor cable, the low cecificient of friction of (fj},5,1 nylon pcraits the insulated conductors to move more g,' {p within the cable for optimum ficxibility. freely thermally crable up to 125 degrecs C, The nylon is and has good lcw '.Lt 'a g,3 -n temperature properties. The impregnated glass braid in SRGV provides further flame and temperaturc resistance, pEC_ g plus gives greater mechanical protection to the silicone REri9 rubber, and affords a method for color coding. The flame retardant polyvinyl chloride jacket provides a tough hydrocarbon and moisture resist =.nt e%:_i), casily pulled through conduit. cuter covering that is m .m Since SRNV/SRGV is for use where circuit i required in high temperature flame, a flame tectintegrity is has been developed by Continental for cualification. CUC T-123, this test Designated develop the required temperatures of 1600utilizac a 7" gac ribbon burner to to 20000F developin.; approximately 27,000 BTU / hours. Tta cables are inserted into a steel conduit with accro::imately 401 fill, and cncrgized. The test is run fcE 30 minutes normally, with time-to-failures, if any, recorded. A complete CWC T-128 Flame Tcut Procedure is available. Typical results using C'.-lC T-128 for a 2/C-18 chielded SRNV cable show no failures in 30 minutec at 1600CF (Recort 75202); and no failures until almost 12 minutes at 1800 F C (Report 75312). On a 7/C-12 S3GV cable, there are Yailures at 1800 F (Report 75230). By contract, a l 0 no conventionally designed 2/C-13 Shielded ?VC/PVC instru-b acntation cable fails in 45 to 30 seconds at 1G000F to 18000F (Report 76117). 4 . _.o T
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( A::a =en: ::c. 3 'D !\\ ,' hf$M.n ~Z a 'Q *n s. L,) .n %7% Jb = TYPICAL SRlV/SROV CC::STRUCTIONS SRNV-S300 INSTRU:!E!:TATION CABLE ~ ~ JCKT. THICNNESS NOM 0.D.* TYPE STR.C D SHIELDING (mils) (inches) 1FR-19 7/'.0152 Overall 30 .244 G/C-10 7/.0152 Mone 45 .357 4PR-20 7/.0125 PR S Overall 45 .463 12PR-20 7/.0125 PR & Overall 6& .764 1SPR-20 7/.0126. PR & Overall SO .933 I SRNV-300 THERMCCOUPLE EXTENSION CABLE I l 1PR-16 Solid Overall 30 .253 4PR-20 Solid PR S Overall 45 . 4 t: 3 10PR-20 Solid PR S Overall 60 .696 20PR-2C Solid PR S Overall 80 .921 3SPR-20 Solid-PR S Overall '80 1.162 s SRGV-S600 CONTROL CABLE l' c AWG 14(7/.0242) AUG 12(7/.0305) AWG 9(7/.0432) NO. C0"D. JCra. .0M 0.D.* JChT !.un u.a." JCKT !a 0 M. O.D. (milc) (inches) (milc) (inchen) (=ils) (inches) 2 45 .389 45 .427 45 .507 3 45 .413 45 AS4 60 .569 4 45 .451 45 .497 60 .624 5 45 .493 SO .574 60 .677 7 60 .567 60 .621 60 .738 ~ t 54 Tolerance All Bending Radius are 10 x 0.D h;D aI Y 9 to e u ssMe
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.q;......, c-4 = e...* atmument.,e 3 i I {~ . S O9f' P.Y OF C AHLE FOUTED-J30 TO DATE .o. J00" s 1 ) ,3-f t. NO. CABL E DESCR. 00T. DIAM. CAB 1.E ARE3 LENGTH ROUTED ~ 7OTAL CIRCUITS FR-13 a 1-18 9.573C0 0.25S18 ) FR-1356 9-22E2-18 0.73]CO C. 418 5 4 z ~ 9066.6 46 ...___.9-13CC 2-20 0.47500' O.17721 852.6 22204.6 69 Fr-13C0 1-21 G.20SCO C.03301 . 5055.4 40 - -l ) F F. - I S i t. 2,16 0.35200 0.09731 263406.1 1350 4 .FF-15'B 7-14 G. '; 4100 0.22937 ' I..I FR-I S S 16 881,1... 12 } '), s.37200 0.10869 146263.9 g.8 FF-ISCC 20-16 0.83000-0.54106 628 Ii. ..i-1500 1:1-20 O 54000 0.22902 20a31.I '..,,_ 1 0 4 369.3 5 4 FP.- 1 S i.: 4-14
- {-
) FR-ISFF 2-16 0.34600 0.09402 372n0.0 O.48300 C.18322 33960,1 13S
- y FP-15GG 3-16 0.36~100 0.1G636..
1392.4 S75 3.' - FP-1514H 6-16 0.S1000 0.20428 S 90S. 9 15 ,I,'.h g) FF-ISJJ 9-16 0.650C0 0.33183 7067.6 ..,27 1 24. 4td _.___ FR-ISKK 2 -16 1.100C0 0.95033.... 2SS9.9 ~~' 6. . ~, a ' f.' t.? 1 h. F.4 - ISLL 20-16 0.82000 0.S2810 2396.7 ,. '.. 'O Sh FF-15 Mit 3-14 0.45000 0.1590 t-I;' l[ ~K _ FR-15.'iff 18-16 .1.03500 0.34134 16959.7 29 A, 8143.2 .l 36
- i.
FR-1500 IUT.22-22 0.36000 0.10179 5 7r. 0. 8 ', '., ' ] . F ik ' I S F P S1 10-16 C.61SCO G.29706 3390.3 'I b, 37 .l F F.; 1600 rz.g FR 1SPF. 9-22 0.35309 .C.10066 62 6126 8 71 32-22 0.50000 0.19635 3 74,3 g (- i TJJ FR-1555 13-12 1.33500 1.39975 5 .f ' ~qt FR-ISTT 6-16 C.49300 d
- 0. 0 0
FR-150U 18-16 0.99000 , 0.19009..._.....729.1 ' ~ 14 . '.'h T3 0.62211 1375.7 FR-ISVV 12-16 0.75000 0.44179 i 10 i ~~9 FR- ., \\. /. + --1500 6-16 .- 0,60000 0.28274 3386n.1 u. 643S.9 46 '\\) F (i - ISXX 4-16 c. li' 'f 1 'd ,+ FR-IS YY 2-16 0.35200 i 0.09731 33377. 9 0.45000 0.15904 15 6... 273.5 . 4; dhiM FP-157Z 4 3-14__.__. ..,0.45200,_,,_, 0.16C46_,._ _103326,8 f,' I SS FR-17AA 6-6El-4 1.65000 2.13824 22969.8 , _,_. _,,_ _,1 3 1.,,,__,, g(~ [- FR-1700 16-14 1.21GGG 1.14990 138 j' { IA-1AA-3-7SO 18t66.9
- 4. 2 10 0 0 _,,.,,,14. 3 2 0 0 6.,, _,,_, _,,, 2 7 12. S 2
.*i t IA-2A 3-4/0 138 2,' ' h h 2.S4000 S.06707 8 IA-23 3-350 3.0S0C0 1234.7 1 r M. j= I1 IA-2C 3 500 7.30615 13 .(. . :. :-^ S 3192.8
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-3.34000 8.76157 8 0.0 O ,. ~ \\
t, [.. '.[') i ~~' ' ' ' ~ - - ~~. t .,t ..... - _ At/taehw6IL!!2:
- 5..
. 8 ~ - -.. _.. ~ -.. _ _... ( y, SU".'tA R Y OF CA BL E F OUT ED-JCB TO DATE J0Gu .9 ) s l
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6-11 J10. C"cLE CESCR. OUT. DIAM., CABL5 AREA LENGTH ftOUTED TOTAL C IRCUITS lA-2JJ 3-1/0 3 2.19000 3.76694 455.0 IA-2KK 2-250 - 2.80000 I 4 __.. I A - 2'm 3-2/1 6.15751 1470.3 4 ~ )
- 2. 30C 00 IA-34 3-13 4.15475,..
198.S .[ ) I.5 - 3S 8 . 0.73898' .O.97000 --- 1 i '9 1.'0 4 ')C0 C.84948 55763.6 E 202 ,,.I_ ___ IA-388 2-1-) .0.93000 O.67929.. 19J6.6 7023.4 36 IA-30 3-6 1.16CCO 1.99359 ll. ), 11 I A-3CC 2-12 0.857c0 E ', IA. 30 3-4 0.S6745 75 -. _.g 9109,6 0.0 W> 1.31900 1.34782 0 6 IA-3.~ 3-2 1.50 C0 1.76714 S, ) 3S76.4 ..,_IS.- 1A-3F 3-1/0 1.73009 2.26980 38 8465.6 ._... I A - 3G 3-2/0 1.32000 3470.2 l I4-3H 3-4/9
- 2. 69155 _.,
15 3.43C69 3000.9 - 'O ) .IA-311 3-12 C.89)OO 0.62211 32054.1 2.39700 16 -I 7717.4 i cg I A. 3J. . 3-350 64 . 2.S1000,,_' 4.94807., 194 N.IA-3K 3 -5 O 2.S4000 6.33469 2460.1 ) b -dC6 ~ I A - '3. Nil-4-12 0.99000 0.76977 17 ,,? 18 3559.S ,_ I A - '3PP' 4-19 1.05000 0.85500 1G22.7 'i,, d b1 IA-300 4-4 i S 8:186. 4 ) h.... 1.33dC0 y .',') 1 A- .3X 4-1/0 1.85000 2.63002 8 1.49571 , 39
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IA-449.1 'er ~ 3TT 4-3 'i0 . S. 1C95 4 2.79909,,, 6.11361 18 ,. I A - 30u 4-590 3.133C 0 7,6944S
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a, 2834.7 __........ _, l a IA- .3 v - 4-2/9 2.18000 3.73252 IG I 974.1 3XX. 22-2/0 1.6SC00
- 0. 0
~: 1 tT IA-4 . 2-6 2.13024 1198.6. f '[ .d m_g 0 1.18:'00 &/ IA-SK 4-4/0 1.093S9 3 2.2e909 7508.7 C-7 KI-4I 4-2C 4.00281 3530.5 ^ 32 e 3. ( 7G KI-13I 13-18
- 0.75000 0.45000.-..
0.15904 16 P y.. 'l ) L 8) S79.8. - 0.44179 PE-IC 1-2/0 C.S2100 0.21319 2 .-..1 1151.3 sj ': , p[p' T,' SR-2C 2-16 90.9 't. 'c : !~-b, SG-24C 24-12 1.32000 1.36347 10 C.183 00. _ 0.02776 2 ..... 1150.0 16 VI-1330 9-2202-18 0.51500 0.20631 3 j', U 4 . s. i,." { ' 240.0 C2-VI-24C 24-14 1.05300 0.86590 15
- 'g(g i. fz'W 3S6.0 WC-S6C 56-20 0.75000 473.9
- i a,
WC-60C 63-20 0.44179 . 11 ar () 0.77310 0.46942 1 45.3 .(. f
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