ML20195D667

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Nonproprietary App R Reactivity Calculations
ML20195D667
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Site: Sequoyah  Tennessee Valley Authority icon.png
Issue date: 06/17/1988
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NUDOCS 8806230167
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I i Attachment 2 A PPendix R Reactivity Calculations 1987 Analysis  ;-

                                   - 2,000-ppm Boron Analysis                                                      .

20,000'-ppm Boron Analysis '- - (L32 880516 902).

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.. . ,m TVA 64 (oS 9 65)(o7 W7 7 40 L'NITED STATES GOVERNMENT - L32 88o516 90 2 Memorandum s TENNESSEE VALLEY AUTHORITY TO  : F. A. Koontz, Assistant Chief Nuclear Technology Branch, W10 D224 C-K . FROM  : J. T. Robert, Chief, Reactor Analysis Branch, IBM 2N 03A-C DATO  : MAY 1619T ~ -

SUBJECT:

APPENDIX h REACTIVITY CALCULATIONS I. PURPOSE The purpose of this memorandum is to transmit the following . c-released calculations and calculational notes. '.

                      . 1. Peak xenon reactivity analysis requiring 16-hour cooldown, August 31, 1987 (L32,8870831 900)                                                  ..
2. Peak xenon reactivity analysis w'ith 18 spm 2,000 ppm boration, May 16, 1988 (QIR RABSQN88005R2).
3. Peak xenon recctivity analysis with 1 spm 20,000 ppm ,,

boration, May 16, 1988 (QIR RABSQN88006RO). This material does contain data proprietary to Westinghouse and must be handled accordingly. II. BACXGROUND t The calculational notes are taken from the applicable sections - of the calculational file, PCD-889, "Initial Zenon Worth Impact on Safe Shutdown" (L32 880516 900). This calculational file contains calculations not relevant to the three requested above but is available for review upon request. These n:,ces -

                                                                                                                                                 )

contain all assumptions used in the analyses and their ' justif' cation. Also included in this package are the e developmental notes and documentation for the computer codes BC2SQN and BOR which were used in these analyses. The ' following contains a description of each attachment. i I Attachment 1 - The released calculation requiring 16 hours for l cooldown, (L32 870831 900), and the notes which . support it. Attachment 2 - The released calculation of 18 spm boration with 2,000 ppm water, (QIR RABSQN88005R2), and the notes which support it.  ?

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2 F.'A. Koontz . MY i ? 09 3 , APPENDIX R REACTIVITY CALCULATIONS n Attachment 3 - The released calculation of 1 spm boration with 20,000 pp, boric acid solution, (QIR RABSQN88006 RO), and the notes which support it. Attachment 4 - The developmental notes and documentation for the computer codes BC2SQN and BOR. III. CONCLUSION -

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These attachments can be used to support Appendix R evaluations. These attachments contain Westinghouse

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proprietary data and must be protected accordingly. . IV. RESPONSE RE00EST No recponse is required to this memorandum. , , , x/)M J5 T. ptiert W - JFL:CR cc: RIMS, MR AN 72/.-C (.*.ttachments retained in Reactor Fuel and Analysis) 5395B- ,

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TESSESSEE VALLEY AUTHORITY  ;  ; .\/ m07artd um ' l TO  : Those 11Jted g

J. D.,Robertso hief. Nuclear Fuel . Analysis Branch. BR 6N 32A-C FROH ,

DATE  : August 31, 1987

SUBJECT:

CONDIT ON ADVERSE TO QUA1.ITY REPORT (CAQR) NO. CHS870021 i The CAQR-CHS870021 addressed an analysis perfot.r.ed by Sequoyah Nuclear Plant (SQN) which was used as justification for site procedures to ensure compliance wit' Appendix R requirements. In response to this CAQR, we have complet. . analyses for SQN unit

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cycle 4 unit 2 cycle 3, and Watts Bar Nuclear Plant (WBN) ,.. cycle 1. These analyses define the effect of peak xenon on safe __ shutdown during a complete loss of reactor coolant system (RCS) letdown and boric acid makeup cauced by an Appendix R fire. This . CAQR has been identified as a SQN unit 2 restart item. f Corrective Action Our analyses have shown that for the analyzed fuel cycles, the ' reactor will remain suberitical from initial peak xenon conditions for a minimum of 16 hours. In addition, the establishment of , alternate letdown with a boration flow of 15 spm for SQN unit 2 and WBN unit 1 cycle 1 cycle 3 and 25 spm for SQN unit 1 cycle 4, will maintain suberiticality after an RCS temperature of 200*F has ' been achieved. Compliance with revised SQN procedures $0I-26.2 and SOI-26.3 will ensure the maintenance of suberiticality through cooldown to cold

  • xenon-free boron concentrations assuming,50I 26.2 includes the -

following requirements: ..

1. Requirement that the pressurizer be raised to a level of .

90 percent with refueling water storage tank water. .

2. The reactor be cooled to an RCS temperature of 200*F within 15 hours. I
3. Sol 26.3 be used to borate the RCS once 200*F is achieved. .

SOI-26.3 must include the requirement to establish alternate letdown ' ' " "

  • with a boration rate of at least 15 spm for SQN unit 2 cycle 3 and 25 spm for SQN unit 1 cycle 4 ,

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2 , 1 4 l Those listed . l August 31, 1987 CONDITION ADVERSE TO QUnLITY REPORT.(CAQR) NO. CHS8/0021 i i WBN has indicated that conditions 1 and 2 of the CAQR are not applicable to VBN (T44 870608 848, copy attached). However, the results of our analyses show that conditions 1 and 2 are applicable at WBN. Therefore, VBN should be required to implement procedural  ! requirements similar to SQN's 30I-26.2 and 301-26.3.  !

                                                                                                                                                 )

Recurrence control - Our analyses are valid only for the current evaluated fuel cycles. )' Future cycles must be analyzed to ensure safe shutdown can be - achieved. Therefore, the Nuclear Fuel Analysis Branch procedure

                                                                                                          .~                                      l EGI-08 has been revised to require analysis of each future cycle at                                     '-

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                    - SQN and WBN.      A copy of this procedure is' attached.                                                                    l n

W. S. Delk, Technical Support, OITP, Watts e

  • T. L. Howard, ONP, Sequoyah f

_M. G. Stover, LP AN 91A-C / J. H. Sullivan, ONP, Sequoyah , JTR: TAX:JFL:AF

  • 1 Attachments.
  • I cc (Attachments): l!

RIMS, MR 4H 72A-C (Re: T44 870608 848) R. J. Mullin, BR 6N 40A-C PCDS Files ..

                      .                                                                                                             :W The calculational results describ:.d in this memorandum have been verified in accordance with Engineering Group Instruction 05.

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Attachnent 1 DATA / ANALYSIS VERIFICATION SHEET Page 124 RL l -- cument/ Data Being Verified 1 ;k d l

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Nuclear Plant Son > u36J b% uov9v TM ot. b e- M4 fCD% l Intended use of Document / Data Res/ w e Unit S C O l. L 6)YtJ t -

                                                                                                  %                                            CMR. - CAC, R7Cb 2 l                                                      \

Cycle .SCeJ t Cf ; $ C O L C,3 LWJ f,Ci i Method of verification (check 1 or more)

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l. Design Review 1VI Alternate Calculations
                .L_.,L Identical to the following previously yerified design / analysis:

Seoce of Verification (check areas verified) ' Design Alterna te Review Calculations

                   /,
        *C                         *1         I
                                                ~
1. Inptit data applicable, correctiv used, and properly
                                                                                                                                                                                                           ~              1 referenced (see EGI-02)                                                                                                                                     l
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                                  *O                    2. Assu=ptions described and reasonable
  • Lid.
            .                        i        I 3.' Standards,       regulatory                       requirements, and design criteria
                    /                                        identified and       met                                                                                                                  . 
        * .1_1g1 T~~T
4. Applicable operating experience properly considered
           .L_v_,[.               *i         i 3/                                                  S. Interf  ace requirements satisfied (i.e. , Was the approved Analysis-Plan (see EGI-03) followed?)
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           .                      *1        1
6. Appropriateness procedures) of design method (including analytical
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7. Output reasonable i
          .i._;4j                   .LV1
8. Data transfer to and from co=puter programs '

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          .LM.,                     1l                  9. Conclusions correctly drawn                                                                                             .
                                  *1 1
10. Documentation complete (is CF adequate (see EGI-0417 Are computer codes datasets, tapes, properly referenced?)

1 1 1 1

11. 0ther (specify)
                                  *17
  • REQUIRED Scope for each 12. Consistent results obtained with alternate calculation (s) method T'he verification process consisted primarily of: 13 spot checks within each area verified 14 detailed area verified evaluation of
  • AC C EPT AN C E (check,1) 15 T~'T a combination of both 16 i i Accepted without cotment Verified by M cJdate 8 87 17 T N Accepted with co=,ents (attached) 18 _) (no resolution required) COMENT RESOLUTION U

,J ) I Not Accepted , (resolution req (uired)ce=.ents attached) Com.ents Satisfactorily Resolved if box **d

  )                                                                          .

018 is marked; RESULTS ACCEPTABLE 'M 4 date ' NM d!5%)

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                                '                                                                      9 06 74/87 Wl VERIFICATION COMMENTS - REVISION 1 TO PCD-889                   . _ _ _ .

The method used to calculate the change in soluble boron concentration results in higher boron concentrations than would be calculated using

        .the. correct expression. The results for the method used are nonconservative for the analyses documented in the revision. An alternate calculation whien underestimates the change in boron concentration was run and compe. red to the results in the calculational file. For each point analyzed the reactivity effect was small enough to                                             ,

be ignored. ) l For the calculation of soluble boron versus time for a 15 GPH letdcwn at 68 degrees P (see page 569) the mass addition rate for 15 GPM at 200 degrees F was used. This error is conservative for the case at 68

        . degrees F and since the results of the BOR case that used them (see page 571) were acceptable the error was accepted.                                 ,

On page 597 the ARI critical boron concentrations at 547 and 200 degrees , F were found to be in error by 4.0 ppm. Since the error for both values was the same there was no effect on the results. Therefore the results were accepted. No calcuation of the required letdcwn rate for WBN was perfor=ed. The - i SQN analyses were said to "bound" the WBN case. It is true that the l

 ,       calculated times to critical for any WBN case were longer than for the corresponding S1C4 or S2C3 cases. For normal operations it is clear that the excess shutdown margin available for W1C1 will result in reduced letdcwn requiracents relative to either of the SQN units. For operation with reduced shutdcun cargin the icwer temperature defect from                         -

H2P to CZP (as evidenced by the minimum boron concentration change required for shutdown cargin) supports the claim.that the JQN cycles , that were analyzed were more limiting for the calculation of the required letdcun rate. Note that the S1C4 letdown rate requirement for BOL should be used for WBN because of the higher initial boron . l

         ' concentrations at BOL. For S2C3 the required letdown rate was                                     ,

l established at a cycle burnup cf 8,000.0 MWD /HTU and thus for lower critical boron concentrations. 1;; In the calculational file the worst initial conditions for loss of letdcwn were assumed to be for an instantaneous return to RFP with HFP peak xenon in the core (at eight hours after a reactor trip from RFP with equilibrium xenon) followed by a second reactor trip. If the instantaneous return to power were delayed to 14 hours after the first - trip the xenon decay during the folicwing 16 hours would lead to a larger reactivity increase than was obtained for the cases analyzed in the calculational file. This increase in xenon decay over the following 16 hou.s would make the 14 hours delay case more: limiting except for the -' fact that the transient xenon worth at 14 hours is 1cuer. This Icwer - xenon worth results in a higher initial critical boron concentration which offsets the increased xenon decay on a reactivitiy basis. 'Jhus .m the rost limiting case remains the one analyzed in the calculational ' 'h. m .,'I file. ll D

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                                                                                     ,         The actual renon worth should be affected by the                                                     t % C.

change in temperatu . The CASM0/PDQ cross section modeling I have been j doing has snown that thereal cross sections increase as temperature is decreased. I ran some CASMO restart cases at temperatures between CZP and H2P and verited that at te=peratures below those at H2P the xenon worth is greater than at H2P. Thus the use of the H2P xenon worth is conservative. w.

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3- INT. 8051= -2966. -4297. -6522. - 7776. *-8939. -8939. -8939. ..8939.. -8939 . -8939. ._

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                 .          TIME =                 TEMP =         547. XEWTH= -120 9. K EF F= 1.30C06                                                                                                                       :

G}C t.*D . i ! J. TIME = 27.2 TEMP = 500. XEUTH= -1518. K EF F= 1.0 CC C4 b'tGE ~

                 .1         TIME: 22.5 TEMP =                                                                                                                                                                                                                                                                         O 400. XEWTH=                         -1954. KEFF= 1.00004                                                                                                                                 -
             )l.I TIME = 22.1 TEMP =                             300. XEWTH=                                                                                                                                                                                                           ' ~~                    Lrr53
                                                                                                     -1958. K EF F= 1.00t'05                                                                                                                                                                                           h-3                ;d'~

! Ji TIME = 24.3 TEMP = 2 00. X E WT H= .. -169 5. K EF F=_1.0 00 C 3 , , , _ .m ; - . ,

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{~'%jj jo @ l g. -2 27,2., _ K F.F F= 1.0 0 0 01,, __ TIME = 18.1 TEMP = _ _4 0 0._X EWTJim TIME = 17.2 TEMP = 300. XEWTH= -2331. KEFF= 1.00C12 , [M-h V ~ '. .a l l )(.2 TIME = 16.1 TEMP = 200. X FVT H= . -242 2. KEFF= 1.:lC '03 L~ - 1 -? TIME XEUTH CXEWTH EWTHNOX BWTHACT GCNOXE BCACT KEFF ! ' TEMP . p 48 -406. _ -352.

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a 1050.0 550.5 90.0 0.987971 0.993801 8511.53 1619.15 O- 900.0 -- 532.0 90.0 0.986444 c.992674_ 7 9.4 z. 7,2__ .167.9. 4 7 _ 750.0 510.8 90.0 0.984918 0.991393 7411.53 1769.98 60_0.0 486.2 90.0 0.983391 0.989898 6 8 9 3. 15_.._1.93.6J 3 O- 450.0 456.3 90.0 0.981865 0.988083 6385.12 2120.73 30_0.0 417.3 90.0 0.9_803.38 0.985720 5811,.82 2I,.93.J.9.__ 150.0 358.4 90.0 0.978812 0.982146 5370.60 3291.97 i O- - SVL(I) _ SVP (I) VPS(I) NPS C I) D FF S C I) MT(I). . S V P,$. (.I. ), _ 0.021251 0.026976 1298.40 8274._00 Q,.0_0 5.2.7..Q 2 3. 6._.0 . 0 0 0 0 00... 0.021251 0.026976 215.46 1373.03 -6900.97 567159.1 0.156920 0- _ C.020704 0.026154 215.33 1230.39 -142.64 _s.83701.2...0.1.75.00.7_.. 07020154 0~.~0 2 5 4 C 7 215.19 1101.34 -129.05 596807.4 0.195388

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I hF TENON / S AMARIUM ~CALCULATICNS - 4 S EQ UOYA H UNjI 2 CYCLE 3 (). . 80 XEE N DATA %C XE SM () TIME POVER (%) XE I SM PM WORTH WORTH (H R S) (% EQ) (% EQ) (X EQ) (% EQ) (PCM) (PCM) _., CR, C. () . "" 0.G 100.0 10C.0 10C.0 100.0 10 0. C l l

                  .                 8.0        0.0     171.7                 43.2            105.6        90.1
                  ..               8.0         ~1.0    171.7                43.0             105.7        90.0 i

() . 8.1 8.1 2.0 171.7 42.8 105.7 90. 3.0 1 71.

                  .             ' 8. 2         4.0     171.7 42.6 42.4 105.7 105.8 89.9 89.9
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8.2 5.0 1 71.7 42.2 105.8 89.8 - J () . . 8.3 .0 1 71.6 42.0 105.8 89.7 I

                  .                6.3          /.0    171.5          . 41.8             105.8        89.7                                                         "

() . 8.4 8.0 C.0 171.4 41.6 105.9 89.6

                  .                8.4                 171.3                41.5             105.9        89.6 P.5
                   .                         10.0      171.2                 41.3            105.9        ro.5

() . f.' 5 8.6 11.0 12.0 1/1.0 41.1 106.0 89.5 , l

                   .                                   17 C. 9              41.0             106.0        89.4                                                                            )

1 . e.c 3.0 170.7 '4C.8 106.0.. 89.4 ' 8.7 _ 14.0 40.7 {} . _17 Q. 5 106.0 89._3 c.7 15.0 1 70.2 4'.6 136.1 89.3 E.3 16.0

  • 7". 0 4~.4 1")6.1 39.2 ,_  ;

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                   .               8.8       17.0                           40.3             106.1        89.2                                                                            l
                   .               8.9      _18.0      169.4                40.2             106.2        89.1
                   .               6.9       19.0      169 1                40.1             106.2        89.'

i () . i 9.3 20.0 168.7 40.0 106.2 89.1 '

                  .                9.0       21.0     162.4                 39.9             106.2        89.3
                   -               9.1       22.0      168.0                39.8             106.3        89.

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( - 9.1 9.2 23.0 24.0 167.6 167.2 39.7 39.6 106.3 106.3 88.9 88. i

   ,               .               9.2 _     25.0      166.7                39.5            _106.3        88.8 4

() . 9.3 26.0 166.3- 39.5 106.3 88.8 ~p; ' '

                   .               9.3       c 7.0    165.8                 39.4             106.4        88.8
                   .               9.4       28.0     165.3                 39.3             106.4        88.7                                     i

() .' 9.4 9.5 29.0 30.0 164.8 164.3 39.3 39.2 106.4 10 4 88.7 l a . 9.5 31.0 163.7 39.2 106.5 88_o

  '           () -                 9.6       32.0,   ,163.1                 39.2             106.5        88.5
                  .                9.6       33.0      6 2. '.            39.1             106.5        88.5                                                                          '
                  .                9.7       34.0         6I                39.#     .       106.5        88.5
            $() ,.                 9.7       35.0      . TC -               397'"            106.5        88.5                                                                        .

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  • i . 9.6 37 6 116.6 88.4 1: C) ._ 9.9 38.0 t *16.6 88.4 "'

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                  ,            'lu.2           E/O    15 f75               "39.2             106.7 I           .             10.3         4e.0     153.7
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                             .          12.5     -. . ' . 3                                                                31. 9               108.1

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                            .,          2C . 5             0.0                              125.2                         13.8                112.9                           77.2 22.5'              0.0                              115.6                         11.2                114.0                           75.3 O ,,                 24.5               0.0                             105.9                              9.1             115.1 26.5                                                                                                                                  73._3                                            ___

0.0 96.2 7. 4 11o. 2 71.4 f 28.5 0.0 86.7 6.0 117.2 69.6 y Q 30.5 0.0 77.6 4.8 118.2 67.8 34.5 '; . 0

                                                            .                                  61.4                           3.2             12G.2                           64.3 I            Q.           ~

36.5 0.0 54.2 2.6 1 1 1 2

     'a                     .           38.5               0.0                                47.8                           2.1             122.1                            61.1                                                                                         '
     }i                     .         '40.5                0.0                                 42.0                          1.7            _122 9                                9 Q.                   42.5 44.5 0.0                                 36.9                           1. 4            123.8                           58.C
                            .                              0.0                                32.3                           1.1             124.7                            S 6. _5 l                     .           46.5               0.0                                 28.3 .                       0.9              125.5                            55.0                                                   -

L O- 48.5 0.0 24.7 0.7 126.3 s3

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_. . _ . . . . _ . . . . .. SE QUOY A H'. UNI T 2 CYCLE 3 O eot.[usjx%on oA T A +* c xE Sr O'

  • 7t *r aons- tr -1 MM P M_. JU1R TH WORTH (HRS) (2) (% CO) (Z EG) (% EQ) (% EG) (PCM) (PCM)

O' ' O.0 100.0 100 0 200 0 100 0 100 0 f a; 6__ A.n n.n 171.7 4.h > in O 8.0 1.0 171.7 43.0 105.7 90.0 - O ' _._ __ A.1 9.0 171.7 42t8 10s.7 9n. _

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81 30 171 7 42.6 105.7 89 9 <" A .' s 4.n 171.7 4 'Lm - - l O* - 82 n., 5.0 171.7 92.2 105.8 89.8 - . = tn n 1. c 42 n ios a

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8.3 7.0 171 5, . 41 8 105 8 89.7 - O- " a.4 a . 0-. ' 71. a 41.6 'ns.a aa- L 8.4 90 171 3 41 5 105 9 80.6

                 -                         A.5                  10,, a         171,,2              41,,3           1 Q.5,o               qq,5       '

O- - 8.5 11 0 171.'O 41.1 106.0 89.e m.A 19.n 1 7 n ,_9 Jh. ~ 86 13 0 170.7 40 8 106 0 89.4

0. 8.7 14.o 170 5 40 7 106.o s9.* '

9.7 15.0 170.2 40.6 106 1 89.3

                          .                8.8                 16.0           170 0                40.4            106 1                 39.2 88                  17 0           169.7                40.3            106.1                 89.2                                                                     ;

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9.2 l 25.0 166.7 39 5 106.3 88.8 f 'Oa

  • 9.3 26.0 1AA.3 39.5 ina.3 Ago **f l

93 27.0 165 8 39 4 1 06.4 88.8 9.4 2A.o 165 3 30.3 1 66_4___ _.18 0- - 9.4 29.0 164.8 39 3 106.4 88.7 ',l 1 9.m sn.n 1A4.x to 9 1_nf2. 9.5 31.0 163.7 39.? '. 0 6 . 5 88.6 i O-

  • 9.4 29.o tu 1 39 2-_ i nn s as. -

9.6 33.0 162.6 39 1 106.5 88.5 . 9.7 34 A 162. 0 34 1 106.5 .A3.5

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9.7 35 0 161.4 39.i 106.5 88.5

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        !                                9.8                  37 0           160 1               39 1             106 6                88.4 iO-   '
9. 9_. .. 3e.0....:ss.4 39 0 106.6.... 89.4 .

3' 9.9 39.0 158.8 39 0 106.6 88.3 10 o 4.D.0. 158.1 .39 1 106. 6 _B a. 3 MD 10.0 41 0 157.4 39 1 106.6 88.3 in 1 4 2.4 D 156 7 35 1..- 106. 7 QTq W W ,- Aa 2-10.1 43.0 156.0 39 1 O - io.2..__.4 u 0 153.3._...33 1. .106 7 106.7 98.2

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to . 3 4.2 o i S t. o_ _a 9 2 -.106 7 88.13,c , ,

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10.5 SS.0 150 6 39.9 1 06.8 88.0 "io.5 51.0 149.9 39.4 106.8 c9.0 10 6 52.0 149.0 39 5 106 8 98.0 10.6 53.0 143 1 39.6 106 8 27.* 10.7 54.0 147.3 39.7- 106 8 P7.? i 10.7 55.0 146.4 39.7 106.8 87.4 I _10.8 .

                                          . ,,5 6 . 0         145,.6       39.8',106            8           a 7. 9 10 8                57 0         144.7         39.9             106 8             .87.9 10.9               $8 0          143 8         40.0             106.9              87 8 10.9                59 0         142 9         40 1             106 9              87.8 11.0                60.0         142.1         40.2             106.9              87.8                                                               .

11.0 61.0 141.2 40.3 106.9 87.8 ' 11.1 62 0 140.3 ,40.4 1.06 9 87.8. _ 11 1 63 0 139.3 40 5 106 9 87.8 1 11.2 64 0 ,138 4 40.7 106.9 87.7 11.2 __ 65.0 137.5 40.8 106 9 87.7 -; - _ 11.3 66 0 136 6 40.9 106.9 07.7 ,] 11.3 67.0 135.6 41.1 106.9 87.7 - - 134.7 11 4 68 0 41 2 .,1_0 6. 9 F:7 ._7 , l 11 4 69 0 133 8 41.4 106 9 87.7 b 11.5 70.0 132 8 41.5 106.9 87.7 11.5 71 0 131 9 41.7 106.9 87.6 11.6 72.0 ~ 130.9 41.8 106.9 ^ 87.6 11 6 73 0 1E9".9 42 0 107.0 67.6'

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11 . 7 74 0 129.0 42 1 107.0 67 6 _ _ _ 11.7 75.0 128.0 42.3 107.0 S7.6

  • 11.8 76 0 127 0 42.5 107 0 87.6 11 9 77 0 126.1 42.7 107.0 *?.6
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11.9 76.0 125.1 42 9 107.0 A7.6 11.9 79.0 124.1 43.0 107.0 E7.6

                          .12.0                80._0         123.2         43 2             107.0                        6        '                                           -

12.0 81 0 122 2 43.4 107 0 87 6 12_. L. 82 0 121.2 43.6 107 0 87.6 12 1 83 0 120.3 43.8 107.0' 87.6 12.2 84.0 119.3 44.1 107.0 __87.6 12.2 35.0 118 3 44.3 107.0 _87.6 12_.3 86 0 117.3 44,5 7.6 - 12 .3 87 0 116 4 44.7 107 0 87.6 . 12.4 80_.0 1L5.4__._.44 9 107'.0 'b 87.6 12.4 89 0 114.4 45.2 107 0 87.6

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_12_. 5 ._90 . 0 ..113 5_ . 4 5 . 4._ _1 0 7 . 0 . . . .B 7. 6_ .._ .. l 12.5 91 0 112.5 45.6 106 9 87.6 12.6 92.0 111.5 45.39' 10i;9 87.6 12.6 93 0 110.6 46.1 106 9 87 6

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12_.7 _91. O. 1.01.6 4 6 . 4 . . . __10 6 . 9._ . ._ __ .8 .7., 6 . __

  • 12.7 95 0 108.7 46.6 106 9 87.6

_ _____12..S__ 96.0 _.107.7 4.6.9 1_06.9 C7.5 12 8 97 0 106 8 47 2 106 9 67.6

            .              12.9 ..._.9 9. 0                  105.8         47.4 ._106.9..                     _8.7.      6,..                                                            *
   .                       12 9                99.0          104.9         47.7             106.9              87.6 l

13.0 100 0 104.0 48 0 106.9 87.6  ! 13.0 00 104.0 48.0 106 9 A.7.6 1.

              .._,..1'                          .C.0         116 0         38 9             108 2              AS.4                                                       IYs !,A i

l 'i . ) 0.0 121.6 31.5 104.4 S3 2

                  ..__. 1 9 0 .                  0.0        .122.3 Ykyfd4 25.6 .130 6                  .    . 91. 0 , ,                                      -         ,,jL$f,,4 21 0                  L.0         119.7         20.7             111.8              78.9 u                                4
              ..       _23 0                     00          114.P         16.8             113.0              76.9                                   ?J                               E 25 0
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37 .0 0.0 62.2 3.9 120.3 64 1 39 0 0 . 0, 55 3 31 121 2 62.4 41 0 0.0 49.0 25 122.1 60 8 43.0 0.0 43 3 21- 123.0 59.2 45.0 00 38.2 l' . 7 123.9 57.7

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XENON / S AMARIUM CALCULATIONS H' Uk I T 2 CYCLE 3 ' SEQUOY)M]XENONDATANC-* BCL XE SM

       ..               TIME            POWER                                      TE                      I                          SM                     PM        VORTH                           WORTH
         .               (HRS)             (%)                                (I EG)                    (T EQ)                    (I EQ)            (% EG)             (PCM)                           (PCM)

U.3 109.0 100.0 10C.0 l

3. 0 100.0 100.0  ;

l% 4 4.5 4.5 1.3 161.4 62.4 62.1 103.2 94.3 ' ( f 161.5 1G3.3 94.2

       ..                  4.                                                                                                                                    2
       .                   4.6               3.0                              162.5                      61.4                     103.3                     94.1                                                   - *
                        ~ 4. 7
       =                                     4.0                              162.8                      51.'s                   103.4                      94                                                                     - .
       .                   4.7               5.0                              163.1                      60.8                    103.4                     94.0                                  -                               -
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4.2 6.3 163.4 6C. 6 1 4 0

       =                   4.8               7.0                              163.6                  . 6C.3                    103.5'                     93.9                                                      '
       .                   4.9               8.0                              163.9                      60.0                    103.5                      93.
       -                   4.9              9.0                               164.1                      59.7                   103.5                      93.8
        .                  5.0            10.0                                164.3                      59.5___1_0_3_._6___.__9_L1 0 164.4
       .                   5.0            11.0                                                           54.2                    103.6                     93.7
        .                  5.1            12.0                                164.6                      59.0                   103.6                      93                                                     "
        -                  5.1            13.0                                164.7                      56.7                    103.7                     93.6 5.2            14.')                               164.8                      5E.5                    1 0 3 . 7 _ _. 9.3. 5_,.. _                                                      .

5.2 15..- 164.? Sc.3 123.7 93.5 5.3 16.0 164.0 58.1 i M. 7 93.4 l

        -                  5.3            17.0                                165.0                      57.8                   103.6                      93.4
        -                  5.4            18.0                                165.0                      57.6                   1 38                                                                                           "
        -                 5.4             19.0                                165.0                      57.4                     103.8                    93.3
        .                  5.5            23
       .                   5.5            21.0                                164.9                      57.0                   103.9                      93.2
        .                  5.6            22.0                                164.8                      56.9                   103.9                      9
        .                  5.6            23.J                                164.7                      56.7                   103.9                      93.1                                                                .c
        .                  5.7            24.0                                164.6                      56.5                    104.0                     91 C 5.7            25.0                                164.4                      56.3                   104.0                      93.0
  • 5.8 26.0 164.2 56.2 104.0 92 9 4-l ~
        ~                  5.3            27.0                                164.1                      56.0                   104.0                      92.9 5.9            28.0                                163.8                      55.9                   104,0                      92.0 163.6                      55.8
        .                  5.9            29.0                                                                                  1C4.1                      92.8
        .                 6.0             30.0                                163.3                      55.6                  104.1                       0 6.0             31.3                                163.1                      55.5                   104.1                      92.7 6.1             32.0                                162.8                      55.4                   104.1                      92_,_7
        -                 6.1             33.0                                162.5                      55.2                  104.2                       92.6                                                                          '

6.2 34.0 162.1 Sf.i 104.2 92.6

       .                  6.2             35.0                                161.8                      55.0                    104.2                     .9 2. 6
 $.    ..                 6.3             36.0                                161.4                      54.9                   104.2                      92.5
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7.0 50.0 1 _54. 6 .. 54.1 1 ' c.i.5_ 92.1 7.0 n.0 154.6 54.1 104.5 92.1 9.0 0 . .) 1 6 ? . 7. . .. . 4 't . 9

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s 1 1.7. __ 0.0 . . 164.3 35.6 107.1 17.4 13.0 0.2 141.3 26. 9' 1C'!.4 __3.5.2 _.

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o 21.0 0.3 126.5 12.5 11).2 7 6 7 - .. 23.0 0.0 116.0 1C.1 114.3 74.7 1 a 25.C 0.0 105.6 8.2 115.4. _l

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   -                      29.C                     0.3                          85.5                           5. 4                   117.5                           69 a

31.C C.0 76.2 4.4 112.5 67.3 '

  • 33.0 0.] 67.7 3.5 119.5 65m a 35.0 0.0 59.9 2.9 120.5 63.9 '~
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                                                                                                                                                                           .  J XENON / SAMARIUM CALCULATIONS S*QUOYAH' UNIT 2 CYCLE I C OLCNTI[E *JONcaTA                                              +SC-XE                        SP Yt ur            p n '. r o            r-                                                                    p y ._ ....Wo gI R _.._

I __ _ _ _.__ S .u _W op.Ifi __ ,__. (H R S ) (%) (% EQ) (% CO) (% EQ) (% EG) (PCM) (PCS)

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        =

O.0 100.0 100.0 100.0 100 0 100.0 l% 4 . r. n c 4 a i ou _.,_ 161.8 4.5 1.0 62.1 103.3 94.2 4 ' 4.6 .0 162.9 61.7 1 0 3;1._ _?.4._,.2. 4.6 3.0 162.5 61.4 103.3 94.1  ;

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4.9 9.0 164 1 59.7 1 03.5 93.8

         .                          5.0                10.0          164.3                5 9 3 _ _ 1_Q 1 .j _ _. _ o.L5_,

5.0 11.0 164.4 59.2 103.6 43.7

  • 5.1 1?.0 164.6 50.0 103.6 9T "

a 51 13.0 164.7 58.7 103.7 43.6 .. _. 52. 1 *. 0. . _ .16.4 . 8

                                                            ..                            56.5                 203.7                    ,

o3.5 _, 5.2 15.0 164.9 59.3 103.7 23.5

                   . ... . 5 3 . . ._16t0. .._ _16 4.                        9            58.1                 103.7                            3.4
         =

5.3 17.0 165.0 57.0 103.8 ' 03.4 5.4 10.6 165.0 57.6 103. CA % ~ a 5.4 19.0 165.0 57.4 103.8 93.3 .

        .=
                                    ~.5               20.0           164.9               5 7 ,. P,             1 0 }a j._.__._ o.J_,
          =

5.5 21.0 164.9 57.0 103.9' 93.2 5.6 16.0. 164.A 56.9 103.9 93.1

          =

5.6 23.0 164.7 56.7 103 9 93 1 .

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a 5.8 27.0 164 1 56 0 104.0 92.9 .- 5.9 ._P1. 0 _161.J 55.9 104 0 92. 9_ 5.9 29.0 163.6 55.8 104.1 92.8

         *~                         5.0               30.0          183.3        h Wo 6.0               31.0          163 1                 55.5                 104 1                         92.7 6.1               32_,0         1(2.8                51 4                 1_01,1                         92.l_

l 6.1 33.0 162.5 55.2 104 2 92.6 ' l 6.2 34,0 1 1_2_,1 _ _ 5_5_._1 1.0 4 . 2_. . ._9.2., 6 $.32 . 62 35.0 161.8 55.0 104.2 c2.6 f' 6.1 36.0 161.4 54.9 104.2 9 2., l i 6.3 37.0 161 0 54 8 104.2 92.5 _ _ . . . _ . _ 6., 4 36.0 1.6.0_d. . _ 5 4. 7.._ 104.3 ..* 2.5 ._ _ . , , .,,.__., 6.4 3?.0 160.2 54.7 104.3 92.4 m,- l 6.5 40.0 lj_9_.1___ 5 4 . 6 104.3 92.4 *<. *] 6.5 41.0 159.3 54.5 1 04.3 92.4 .* 6.6 42.0 150.9 54.5 1 04.3 02. ;5m*A W.k 6.6 43.0 15B.4 54.4 1 04.4 02.3 erty

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154.0 7.0 51.0 54 1 104 5 92 1 _ _. .. 7 . 1 52.0..., 153.3 54 1 104 5 o2 0 l 7.1 53.0 152.7 54 1 104.5 02.0 7.2 54 0 152.1 54 1 104 5 92 0 7.2 55.0 151.4 l 54 1 104 5 92 0  ; 9 7.5 57 0 150.1 54 1 104 6 91 9 ) 7.4 58 0 144.4 54 1 104.6 91 9 _ _ , , l 7.4 59 0 148.7 54.2 104.6 91 9 7.5 60.0 148.0 54 2 104.6 91 9 { 7.5 61.0 147.3 54 2 104 6 91 8  ! 7.6 62 .0 146.5 54.3 104 6 91 8 7.6 63 0 { 145 8 54.3 104 6 91 0

                     -                        7.7           64 0            145.0                            54.4        104 6                            a1 8 7.7           65,0            144.3                            54.4        104 6                            91 6
                   =

7.8 66.0 143.5 54.5 104.6 91.7 - a 78 67.0 142.7 54.6 104.7 91 7 -

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n. 7.9 69 0 141.1 54 7- 104.7 91 7 -
                   =

a BM 54.8 104.7 91.7 80 71 0 139.5 54.9 104.7 91 7

                   = , _ _                       .1         7?.0            133.7                           55,0         104.7                            91 7 n                          81            73 0            137 9                           55.0         104.7                            91 6
                    =
                                                                                                                .           4.7                           o     .6 8.2           75.0            136.2                           55.3         104.7                            91 6
   ,                       ,        . . . . . 8_. 3_. ,     76 0            135.4                           5,5 . 4      104.7                            al.6 S.3           77.0            134.5                           55.5         104.7                            91 6
                                ...      ,.B.4_    .        74 0            133 7                           55.6         104.7                            el.6 8.4           79 0            132.8                           55.7         104.7                            91 6 R.s           a                 to                                            a
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                   =
                    =

8.5 81 0 131 1 56 0 104.7 91 6 a.6 92 0 139.3 56 1 (04.7 a 8.6 83 0 129.4 56 2 104.7 al.6

                   =

8.7 l 84 0 129.5 56.4 1 04.7 91.6

                   =                                                                                                                                                                                                               l 8.7          85.0             127.6.                          56.5         104.7                            91.5
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  • l 88 87 0 125.9 56.9 104.7 91 5 a

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104.7 91.5

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9.4 49.0 115.2 59.1 104.7 91.6

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95 00 144.3 59.3 104.7 91 6 _ ,_ _ _1 1_._5 0 ._0 1 } 0_. 9, . ,4.8 1.,106.O _,_,89 2 13.5 00 139.2 3a.0 107.3 e6.0 - 15.5 0_ . _0 111 5 31.6 10.1 6 ** 1 ' 3 17.5 00 139.5 25.6 109 9 02.5 1_9_ . 5 3 . _0 134.5 20.e.,_ 1,1.1,.1.__

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Westindicuse Nuclear Fuel Bectric Corporation 83 M'? Divisjons T

                                                                                                                      ^"*" *"'.ru 02:a nir ,

86TV -G-0053 June 18, 1986 - Xeywords: TVA/ TEN POP

Reference:

CDC-86-156 - Mr. James R. Ratliff, Chief Nuclear Fuel Branch Tennessee Valley Authority 1101 Market Street .- Chattanooga, TN 37402-2801 . - y .

                                                                                                                                            \-

Dear Mr. Ratliff:

TENNESSEE YALLEY AUTHORITY SEQUOYAH HUCLEAR POWER PLANT s . UNIT 1 CYCLE 4 AND UNIT 2 CYCLE 3 ARI CRITICAL BORON - f Attached are tables function of temperatu.e ando.all-rods-in burnup for the Sequoyah criticalunits. boren concentrations This data boron dilution surveillance procedure.was requested on a cycle specl ' I will be happy to address them.If you have any further questions o . 1 Very truly yours, - i put h

                .                                                                   Laura A. Livingston                                       -

Project Engineer LAL:lal . ATTACHMENT cc: 0. W. Taylor - IL - G. W. Ga0lt - Sequoyah Nuclear Power Plant - 1L G. Johnson - Sequoyah Nuclear Power Plant - IL, 1A X. Allen - Scuo R. Williamson yah Nuclear Power Plant - IL. lA W Chattanooga Sales - IL .j, 7 ,] '

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App. Rallis ART 50 e DOMESTIC LICENSING OF PRODUCTION AND UTILIZAT10N FAClllT1ES AMtMDix R-Mat Paotte* t o w Pao. ~ C. /t'e Pet enfita /*e!'.M Pre Dr:'et. T -- g.g-  ; ,Tg, .,' -

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  • e. W.ts ms.1r Componenta .t"Dorta.nl to Is:*t' me grae, sesso an e.=, gen. :aa L. In 11tu fire MLaard.s s.".sii .e ident.f.sd
1. 83*s09VC'tt 0N 433 stort to its.ewis an,es me *a**aes and sultacle protMllor prouses This append 13 Spolies 80 llCenSed nuclear '

N 8" '*88#* ** normal OpertilerL 01LtLee.1 ace. repair. Or poter esettnC generttag stallerks that gere does pe,aseen ,. Sem r es.e es om.os== ore eccesse., as Operttlag prior to Ja.nuary 1. ;979. exCept to aca we me vs,asc=.a n se gg gg gg g g g the ettent HL forth in 13d 44sti 0 thia DLrt. WitM respfft to Certaan genent 'uyes . yg, e, e sad eistninated where pouitle. These trin. sie t fire tsa tras that e&n nCL be entrititated for suCM f 6Cilities it set.s forth (tre protec. se e ee no ow Sh&ll be Controlled and suits 0le protecitCn g,, ,, ,,,,,,, ,as e.,,e,

  • e,ie,,,ame yee provide tL L30n fettures retutred LO sattsfy Cntenen 3 ewet rf amre waq swo unean. 3. Fire detMtjon system.s. portable ettLA.

Of Append 11 A to thts DLrt.' de gushers. &nd standp:De sad hose stattCrJ CritenOn 3 Of Aependia A to this pa.rt I**9* 8 6** 8** '** * * " "* * * **** shall be mat &Iled. Spectfles that "Structuret, s yste ms. and C:mponents important 10 s&fety shall te de.

                                                                                                                *"['        ,h" ',' [                      4. Dre barners of autorRatic suppreu:On systerrJ Of Doth shall be ;rJtalle1 15 r***s.

e, teme,ee ,, , y9e e.ges,,, Sigted lad loc 8ted to mantmJe. CorJutent he stry 10 protett reduAdant 3) stems er C.m. Oth Other &&fety reQutterne"!ts. the pr00 Anta nMmary for tale shutdets ility 4.nd effect of firts lad espicsieru? ' kN N **

  • ea s ee S. A inte fire trigade shall be estatlahed..

st.# hen CCrJidennt Lhe effect3 Of fir e. Pas e.e.e'e meer ae s'8**'*e e esames wecoeewsa we e a e f.a*s are e tralned. a.nd eilutpped tad shul be on site at e***e e sa, swevet ertiot er tas weess oca'oe these system.s Lucciated tith adhitelng and

  • e * * *** e M **** *** h* ** ** 88 *dca *e g see 6114. times'deteftlon Ttre sad suppreuJon system: *
  • m aant aarur t sale ShuldetTt COndit30, .: +e,w e as e s. es eacet er armecae een necesse esect mees
                                                                                                  ,s tems                                                                                                           .

tasuf*ie ma)Cr import & Ace to safety bettuae e tJr oewes smeewe a ta'est Ns a se e.oag me es'a et nor ariseso-a emme*e e th&J.! be designed. Instaded. maJntained. tad - d&;*.18e to thers C&A lead to core da.rnage re. tested by penormel prepn 3 qualtfled by [g*" NM

                                                                                                   *.,*.,,m','j*,*#,',, ",'ge .ce-4,                      experiente &nd trasAJ18 ;n fire protectlen
suntng fra iau Of e00iant t?.reugh teil0ff. em. .o. e , e ._ e n ste m3.
    ; The prtra.ses "trnport4At 10 sLlety
  • Or '"a is ese roweses wie oca.ee a es me*e area T. Surveillante procedures shall te esta5
    *     'saf ety relates. Mll be USed t?.rou g hout Ty.e rnest strk'igent fire tiLmage limit shall                                *                                                 #

{, furictleru. The priftse "safe shutdetTt" Mlltha Appenets apply for those R u applying systerru that to aJ1 fulsafety into more plan and that M supone snums"a.% thAA ork *ttegory. Redund&At systern.s used "

  • be used throughout thts appendia u apply. D. Alfemeine or deficalef%fictra ca.

kr,g to botA hot aAd Cold shutdonTt funci sign aat enta u not nect " 130I*I* BMt se fire may Effect safe shutdctn sale snutdon'n rnay be lost to a alrigle eIpo-I g sure fire. Hotever, protection sntjl te pro.

  • systePJ 4.nd tecs6se the lots of funClion of etded so that a flre tithin ortly one such E '

sys;e'rJ used 'o m.tigste the CCMetuences a 3) stem t ill not dama g e the re d undaAL g 3 g, p , ' of denrn tuJ 6:e:eents under restf.re e:n. ; : sim. = f at'Or.1 d:es *.;t

  • e r se *  :::. sne:r:e rare:ststrits
                                         '."'.p &C* p'at .* 121et y.                                                                                   =

s);te."% re. = II C*Wk U EEIEDE'UI "I'* # b ## #'# # ** # I ' A II'#IIII

  • I 8 '

th C .. e *.eet

             ..e.    ".o *:."..;t fire da.*",.a t.t
                .. 0 aC.,ege atg -.g ........e........e.....     ... .
  • Sle*t.r
                                                                                                                                                             ?'It o Se p t rn te t 1;e.* 3.*
  • Jes &*.41.
  • e 3.,r.,g ;.offf::oi prop'cF. A IJe pr*.r*

conTa :cr.c.t!crJ 6s greater t?.ar. t?.e neto to taon regrarn sM111 te estabitshed at es:n p:Jnded 10 fur *.:."h r.etet:3r'. t Ilmat ftte dal". age to thole systerrJ required and pressure to the fire rnataloo&ter p. .C!bme nVClear !" 9rtr Ns.nt. The prograrn small ts. EACh supply shall Corutst of a storage to matagate the corJequences of design tu:a Labitsh the fire protettien polley for the Eccidents. Dree level.3 of fire Garr. age limit.s taalt, pump. Diptnf. sad appropriate 130la. protection of structures. SysterrJ. and Com.' Ere estatitshed attordar's to the safety fur.C. ponents important to &&fety tt e Ch plant tion had control Vuvek Tuo separtte redun-LleM of the structure. systen. or tempo aid the procedures equierneM. and person- daat suClioru in one or more inttae strut. De nt: r.el re%utred to implement t.he prog 7&rn at tures f t,pm t L&rge body of later triter. ltat. etcJ erill gattsfy the requirernent for (to se part natu simp tam Dm sup. f te rotection prorttrn shali te N"* ** "# * * ) under the dtrMiten of a.n Lnanndual the ha.s be e rb- deletated au t.hority com.merts atate "" 8"E EII '

  • d y O' * *II E " '"' " 'I N , .

tith the responalbilities of :he position lad

                                                                                                                                                                       , , y of the fire sster dtstr1tution who hu tsailaole sttlf Gersonnel knoti.                                     systern th&JI be capable of prostdirit for 4 I

eClettle in both fire protMtion tad nuciett l sale t y, perted of 2 hours the mtxtmurn espected The fire protMtion prograrn shall extend utu MM u MmM by th hn i the concept of defernenn<!epth to fire pro. hazards trialysts for talety.related artu or I tection in fire t.reu tmportant to talety, other trets that present a fire earcsure t tth the folloting oblMtives htmd to sthulated arm a to prevent fires frorn starting; When stortte ta.rtis are uaed for tomt:r.e4

  • to det tet ra pidly. control and extin. servtce a tlet.!!re m ater uses the rn nimum gN'a h promptly those (Lres that do cetur*. Volume for fire uaes shall be ertsured *y
          ' C:anf tentton Lnd svidence tith respect
  • to provice protection for structures. sys. metrJ of dedletted tannts or by some chs si. l to cermiuscle titerrttnes to satisfy Appen. Ler.s. and componenta important to safety taj metrJ such as a vertical stancotte (cr 61a A to BTP APCSD t 51 hu been pro. 50 tral a fire that ts not prornetly extin, other tater service. Adrntntstrathe Contreta.

ended in f ear other NRC documer.t.s. gNlshed ty the fire suppreuton activities including locu for tant outlet talves, art "S u p ple m e nt ary c alcarce on Informa. *Lil not prevent the tale shutdonTi of the unacceptable u the only mear.: to ertsure t!on Neeced fer Dre ProtMtio n Et uut. D ' La t. sntnlmurrt t ster volume. tJon? Jates Ccteter 21 1913, B. fire guard.s ansfpis. A fire ha.urds Other mater :) stems used u one of the

          Sample Techngal $pettlication." dated                              attusa shul te perictmed by eutlified fire                                  the fire aster supplies shall be ;erfranently M a y 12.1311.                                                           prctetuon and retetor unterns entireers to                                  corinMted to the fire main systeen anc shall                     ,
          ' Nuclear P*aM Pre ProtMtten fNB:ttor.tj                             't) consicer potentlaj in situ and trtAsient                                be carable of automalle sligt. ment to the ResperJib!!tles. Aarr.in: strata e Control and                           Itre Baurcs. ;21 determine the consecuences                                 fire m a tn systern. Pumps. controls. Lt.d Quality AuwranteJ' dated .*vne it.1911                                   of !.rt .rt any location in the plant on *.he                               poter supplies an these s) ster-s shall sattsf y
          'M aapc t er R *tu!rerner.'J for Opersitng                           abl:ty to safely shut dotti the reacter or en                               t'te reQutternents for the main !Lre tur ps.

Reactc s ' *ated .Ntsy 11 ;31 the stil:ty is mir.imize and :cntrol tr.e re. T;te use Jf other t attr sytte'rJ for f.re pt> A Mre Protetucn Safet, Est..auon letse of rac.otcthtty to the enyttir. ment: tecucn I all not te tacorrpet.o:e **ta tht:r Report that bu teen tuyeo ter eter. ec<r. and W sputfy m uns for On puman. Nncmns mum for safe Osat shutdoan ,4 t un g pita. States hot these guide:LMen s ete N Nm N Wpmu4n. W N (W Tah d tM N um Shad not 4 - ttr. er.t and titernsth e she'doen cartot : grade the fire mt.n s)stert fta protunen .um inalSpouduato :e mn tto f acihty M Q a.

e. aad Ment;f.es 4 " '" u '" 8"Zen f *' ' 2'h h" e & C o n t a ir.' M B"" Jernomal
                                                                                                                                                                          ' " uoution et!res See'to                .11 : c t hen the f at.!aty s a t .1D e t the sCprocria'e ttWr e'r.e nts a f .4 p penc.: R to hrt 50                                 AM o safety in atterdance eith NRC                                                                                        I or key operated ithen shall te tutall#$ in ' s y
                                                                                                                                                                                                                     " F
                                                                          , l's CrMM8 ar $ re gNitt:3rJ                                                    the fire mata loop te permit .33 st:en of ;d*= t h 4.I # 1. - . ^ fy %,. @*                           ';
                                                      .s                                                     50 61

[ld h ht - _ _ - .. m . .-.g - _ . g.

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                                                                                                                                                               ,            ,   *4, s.

[m. m'.y(*l A8 4

                                                                                                                                                      .                      n
                                                                                                                                                  % ' ..                      - .~

App. Rt111: .spp. m : , PART 50

  • LICENSING OF PRODUCTION AND UTILIZATION FACILITIES tierts of the f:re main wop for mair.tensne. Separatien of
  • ate aa.d eca. pas t . a .. L us v.ir t f ul; f ar. en. pretsare mut -

or recair tithout trt:errapttrg tne ent: . twc:sied noi. salen circ.it . uf ri c.n.i.:.: actem eu os .NIOSIf t4. ria. ;r.n. .t* Nr b. s ater suppl > Wu ts a norgonto distante of more *4n . Omosuonaa Salen ar.c Health-as-ro.a. C. Hydetal uo4er:en ce!ses Vthes tr.13  % leet enn no intenening cumDust.s.e or formeri, e.ser. '" tne t' S Buresi, a: Nmes be trutuled to permit isolation of ouu Je f re hararca In aJc.uoi. f.re cetreia an,s > nan be prousec ior fire er f ace ca .ase hydranu from the fire ina.n for rna.nte, a.n automane fire suppresion s> sterr. w.all contro. ano control room xnonnri At na.nce or repaar titneut mier unting the be Istalled in the fire ares er leut 10 maaan shall oe ass.:stie for f.re er sater supply to automatic sr manual fire c. Enriosure of cable and equipmen; ano cade personnel Control rr,om pe rsor.n e. auppreasson systems m any area coritarrung auociated non safet) circuiu of one redun man be furnisneo crea:nme air or a mare or presenLing a (tre halard to &&f etFrelated dtat trun in a fire barrier hasme a 1 Sour (Old system piped frorn a storage reservoir if or safe ahutdost equipmenL rat.ng. In addition. fire detectors and an p r a c tic al- Service or rated operatsat alle D. #8%sl Are s h p p re ss t oit. Standospe automatic fire supDreuson syalem she.. be shall be 4 manier um of one hat! !:pur for the ud hese systerns shall be trutalled so that tr.sta.lled in the fire tres. self-contamed un:u at leut one effective hose stream till be frJide nontnertea containments one ff tr,e At leut a ! hour sucDI) 'l breatPing tJr tble to reMh any location that contains or fire protection rnearJ specthed abose or ori, in entrt bottles shdi be socated c n the plant presenu n.n esposurt (tre huard to struc- of the foiloting fire protection metru shas; asu for each 'Jn4L of sHNontamed Dnata-tutta. sy8tema. or componenu LmportanL to be prouded mg a0 Crabs In EddJuon En oNM 4 Mur

         &&f e t y,                                                 tl Segaranon of cab les and eQuipmeM anJ            SUE # OI '"W            Il# 80I0 N E""           IE U Acttis to permit effective functiontr.g of          u&oc;4ted non safe!) circuits of re'3u* 03nt the fitt Drigsce antil te prcnJed to all                trit".s Dy a norcontal distanct of rnore tr.an treaJ that contun or present an esccsure               .0 feet titn rio mienenir.g comen.tsuD.e or             Er tr.e are retur ec !! compteuo 3 are fire hatard to structures, systema, or ecmpo-          fire ha1&rcs:                                           used u a sourte of Dreathing air. only unit.s Denta trt:Crtant to safety.
e. IrJtallation of fire detectors and En accrosed for breathang air shall be used and' -

S tar.d ence and nose stations shall be automatic fire suppreuion system to the the compreuors Ihall be operable LisJrr.;rg . trJide P% R cont &m. menu ud B%% con- fire tres: or a lou of of fsite poter. Special care must te t.a.nmenu t. hat are not anertes. Standpipe  !. Se:aration of cables and equipment and tamen to locate the compressor tn treu free - trid hose statforJ in. side contaJr. men' maV tuXiated non saf ety Cletuik8 of redJPdant of dust and contamina.nu. be connected to a high QuajJty tater supply traarts Oy a noncomDusuDie radiant energy I. Tire beticae Ipsi'tifte The fire bngase of sufficient Quanuty a.nd pressure other s hie 40. ' tra.inmg piccram Shall erJure that the ca. than the fire mal.n loop 11 plant specific f en- p a bellt y to fignt pvtentitj fires L.e estaD-tures prevent e t tencing the fire main 3 Alternativt or dedicated 8nutdolTt cR* ltshed End maJntame3. The prot 7 tin shG) Stbthty Ud its tasectated tircuits. ' thoe-sup !y trJade co ntaJrtin ent. For BA prndent of cables systems or ccmponents in con.stst of an truttal clautoctr. trJtruction errt e!!4. attadplC4 and hose stallor.s thOl pregram fouotes by period;c citasroom in, te placed outsice the dry tell s,th ase-the treL toom of Lone under coruaderatsori, struttaen. fire fighting prtchee, and fir e

                                                            . snul be provices quate levins of hose to reaah any locanon                                                                        crilts in. :de the cry test sitn an effe tive nose t Where the protection of systems a nose                L. Inst ruefio n funcuen La required for hot shutdoun oces m aanaly the mmumm of para 4non                             a The melun          mtuti cituroom lastruction shtJL saestarit Aose tesa hre hose shall                 c tnts secuen. u 7150 psi or 30 psi abcee maairwn fire tr.ain I b %(hen neuMant trams of systema re. I Lne plan of                        t!)  ladeemnation         theI;etif.c p!&nt fire fathp
  . te hydrestacca;1y tested at a pres.sure of tith            identlficauon          of ese c;eraeng pre twn t hacr ent ts ria:e . ; tu:ns fer nat snmosm Waud m tN same ; inpcaal s rnom4Niun I Ho:e saree m msic, h:n hc;.ms saan te                 : p ans ma; te uemt to caman ' a ;                                 .flon.ufim. n cf the im a a Waton                           g,
 !". tes'.es         :.r. aa.a. lx sra i de .et ec es en three S ears s' ia :g+ ncse
  • er:2r i
                                                               ".n P     n  sceu.

or mann n actntu em er ocastionfrer.ofm finu; . se ] g Me um W M MA3oCM .name:at*: W Lan urescfhus g T. Jsremstic '. r e derer:sts Autematic :rnsan s> stema 83 TM tca4 and c:r7:sae charset*rJtics fire cetettaen systerrJ shall be m.sta; led in in adition. fire detection and a fineJ f.re of espettee prohcu of comeustion all ateu of the : ant that conta.n or pres. su;preu.on > stem shaji t< tratalles tn the H 8 Id'Aulication of the locauen of fire - ent an eaxsare fire haaa.rd to sue anut, tres room. or sone uncer coruiceration. f1thling tou rment for each fire tres and dotn or saf et).related s>ste: J or compo- M. Tre amtsee A site fire brigade trained f amilittuation tith the layout of the pla.nt, nents. These fire detection systems shut te tad equirred f or fire fighttng shut t+ es. *C2W8*# 8 ""eu and e:Teu toutes to each casatie of eM sta.ng sith or sithout offsite tatluhes to er.sure adequate manual fire """- poser fighurg escatihty for all areu of the plant 48 The proper use of avantble fire fight. O. Tire paorectice. of sA/e shtdonc*i capa. containma stru6tures. srstems, or compo. In equiprnent tad the correct method of hture.1. Fire protection features ant 11 be nents importa.nt to safety. The fire entac, fighting each Op+ of fire The types of fires prouded for structures. systems. and corn. conm snould melude fins in enugueo

  • shut t.e at leut fne memeers on each anitt.

perents imxrtant to ade snutdesm. These The trigase ietste and at leut tso et gase OWcal epmm. hin in catin and festures shu! be cacaele of limatmg fire memt.ers shall hate sufficient tratnmg in or **'I' A08 II II# 'M ' etmare to that: 1.nossecte of plant safety relateo systems to flar.tn '#8'eud a ti com'e"us tible' liq uids o'r'I"u"8. h

a. One trun of systems reeestary to unserstand the effects of fire ana fire aup. arms pmeeu chemicals. fires routting achieve and mas.tain not shutdosm cond1 preuar.u on safe shutcosn casabilitn The cm emWN M mecationa es e+

tsor.s from eitner the control roctn or emer. quulfacauon of fire trigade memeets shall ##" ** ' gency centrol statient s # La free of fire camad e: anc tr.cluce an a mual phssico estininauen to W TM inte use of ammunicauen. cetermine tre:r stil.tv to perform stenuous lighttna. unu)abori. Lad emergency treath. o System 3 neeeuary to achieve and mun- fire figntir e teuvites The shif t superutor 808 '0 "E " "' tun eels shute:sn fro n either the con:rol sta.. not te a member of the fire ersace

  • D N ' "'h'd I I 8 f Il#5 8 IJ '8 rc.oen or err,ergency centrol stat.ontsi cari te The trita:e lea:er shall t+ c:mpetent to rec t4 rec t it h;ri 'l2 .*.ou n L^8'4' ?"'3#'f 8 8 "d "I*'8 88 8 0'8-tueu the potentisi saf et) coruequentes of W W a.nn>cn and coordmation of the
2. Cacest u crouded for tn rtrarnch G 3 a fire and sciise control room penon.nel fire f thtmg tethtties altre trigace leaden l of tha secuen. stere cotles or com; ment. Such competence b the trigoce leader may **t meluc.ra tu.::cated non ade.y cirts.ita that be eucenced ty poueuten or an cperator g On Detailed revies of fire fighting strate. ,

couts :revent omrsum er ca.se majomra. I cerae or etunaJent anoniedge of piang ga s and omecuns tien due to not anoru open cistwts. or sa f e t:oretales intera.s. (10s Reues of the latest plant modifies. ,

  • shcru to groand. of recancant trtarts of syt. The miniinism etuspment Crosided fcr the tie r.s and c orres pon tr.g changes in fire te?J r,eteua.ty to achieve sad riunta;n het tragade shall ects.st of personal prottethe I 8htlEg LIAIJ-shutdosTl concNorJ Ut located sithLn the ttu.Cment sucn as turnout c o s ts. tioota. NoTT IterrJ 10) and 1101 may t.e deleted La.tne fire tres outJide of GMIriary cCntatn. soles. hard r:s ta emergency ccrr.rr.ursca. , i ment. one of the felicstna tr.etas of trJur. tior.s equipment. port a tat lig h tJ. porta t te (rom (gg trainirt of no more than tso of 10g that Sne of the redundant trurJ la fref the r.cn-c;rraticrts persortnel the snay te
                                                             'eMustion etu'Cr'ent and Portable estin.                 ggg,gned to the lif e brignoe.

of fire camage thaji te pronced g ue'els f ell'< c n'atned. t re ath.ng a t t ara. a 6.ettraUon el Patles &*d e%;:Fment ard b Te rulrVCtlen sha 1 t4 Crovid'*a h a et .v a e

  • II
  • rating structursJ stett formir. a cart of or need av rnouurg nwaum or amen. -

g,thting the uc<a of fires that could octur y . suppoM'ns su!h Itie tarriers IhMI te pfc> '

                                                                                                                               ' I#          * #I                                             I tected to : :vice fire en. stance equna_ent                            "         *            "       "'                  ''*'h'"""'""b'^'

I N" N O *

  • to tt.at requare of tne earner. **
                                                             ""fJ, F48%

8 '.Y'"'8

                                                                           ,n 'h[8g"it e m2 g$0 n .of g'h' Iun'"
                                                                                                                      *^rutr6cecn et               se all p pronoed to an Itte og 3

tugade# enemten .y @ q and f a

                           . k.             ,
                                              ..n.y
                                                              -        E          .

h eI

                                                                                                                                                                          .M. ' -                ~a
                                                                                                                                                                                } f_                         j x                                                      -

r

                 ' App. Rilill yp.Rtlib, PART 50
  • LICENSING OF PRODUCTION AND UTILIZATION FACILITIES y L Regular plarmed Teet'.ru shan! te .te.a preshNs dri!! so that engade merseers are at :eut etery J montns for all trigade n:ct.- treme corms .m f amns enne's mas trained :n *:gnting fires .n t ar:or.s pia *. tpreisted .rta.s .! re.

ters to terew chuges in the f:te pr:tett.;n areas. Th* atuat.on sefecteJ sto'.:d simu. te er;24'

wrec ed n 18;'at:n isttas.d :lcr res.'erJ M J t e . # r.

progra.m a.nd other suojects u *.cerasary tate tae sa:e and arrar.sement of a f.re tnat ut ecmo.isite wenass nead be re

e. Penodic reft ther r a.n:r.( acia.:ts could ressenaely tecur in the area . elected. from the area .tv e:.ste!> feitos mdna ,mM
                                                                                                                                                                                                  .n-sha;l se held to e was the c:hsroo n .n.

alMains for fire deveicoment due to tre paralag. Suen tra-a.ent esmoustitle mat ert. st.ruct:on proert.r r aJI trigade merneers ti.ae required to respond. to octaan equia. al. unless stereo .a approsed containers. oter a tt o-yehe pe 1. These seusons ma) ment. a.nd organ 61e for the fire. a.uuming sa nLe a ne e ch be coneumat wit, . %e retutar plant.ed loss of automatic suppres:. sn .ypsbility. m eetin g s. 441 Anesament of Origine mer s diree. g

2. Practice t!cn of the fire fightms sffort u to thor. , , y g, Pncuce seuions shall s ' t each oughnesa. anura.cy. and effectin eneu. ylene sneet;ng snau de placed :n metal con-truft fire tr1: ace on the proper rt..snod of 4. Accord tainers aitn tight.fittms seaf. closing metal flgnting the various types of fires that couse Individual records of trainirig presided to occur a a nuclear poser plant. These ses. each fire Ontade memeer. includitiv oral Cog'{ p stons snaal provide Dngsce memoers sith entle:.es, sha41 be maintainer or at les.st , g esp *nence in actuaj f:re entmguisnment years to ertsure that enen .. neer recenes g g ,

and the use of c:ncrgency tireatning appara traming in aJ1 rart. of ine tra ams proerarn , g tus u.nder strenuous conditions ercountered These ruotes of tramarig shall De asatlante' a m fLrt fighttr.g. These practice sessions snas: .or NRC review. Retraining or broadened *reuion

10. Cont ~'rol'tems' actions to be laten by the con.

be prostded at !eut once ;er year for eacn tra'rurts for fire fighttne sithin Duildmts . fire tngade member. . anal.1 *>e scheduled for all those origase for trigade usista*.ce upon report of a fire yg members chose performance recorcs snos or receipt of alarm on contaol room armun. ~

a. Mre trigade drills shaj! be performed in dif!C'inC3'8- cistor panet. for etample. en ounems loca._

the pts.nl so that the fire brigade can prse. J. Emergener fightina. Emergency lig hting tion of fire over PA systern. Soundtes fire t:ee u a : tarn. uruts with at least an 8-hour tattery poser alarms and notifs;ng the shift supers tsor

b. Cnits snali te performed at argutar en, supply snall be prosided m an anas nuced and the fire er: gate . ender of the type s;e.

tervsfs not to eseeed J months for each for operation of safe ahutdoen equioment and .ocation of tre fire. - antfl tire trigade. Each ftre er cade memter and m access and egreu toutes thereto. 11. Control actier.s to be taken by the fire should participate m each dnll. but riust K. uminutratite controls. Acmtttistra' bngade after notification by the control Part.cipate an a; 'eut two dri!!.s eer year. Live centrots shall te estabhaned to mns. room operstor of a fire, for example. anem. A suf fic:ent nuncer of these drills. but mae fire hazarc.s m ateu contaming str'ac' bitra in a designa:ed location, recesstrig d.- not :eu than one for each shift f!re brigase tures. systems, and components :mpomant rect:ons item the fire bngade leader. and per year. shall be unannounced to deter. te safeti. These controts snali estaolish pro

  • 4:scharging scecic !.re fightma responsibil.

mme the fire figntmg readmess of the 6 ant cedures to- lties meluding seiection and trattsportanon fire engace. engace :eade and fire protee. 1. Cosern the handling and limitation ut of fire fighting etainment to fire loesd*cn. tien s>ste r.: and equipment. Ferwets plan. the use of ordinary comeust:tue matenats- selection of protec*ae equiprnent. operattr.g ning ar.d author: sing an unacitownced c il . comtust: Die and ( ammacte gues and '.is , tera ar.:arstructicr4 ftr use of fire su:rpression ess-

        ; sr s.* en .re that the respenne fr.;ft .:r,l                   ; u:cs. h:gn eff.c:ene) sartemat
  • 3:r *r ase of prepla*.ned strateg.es ter
 ;'
  • t*<a:t .r**> irs are not aura tnat 1 det.! ; c."arc' -2s : ; tert :s ser. ea rt.An<e
  • u_.
                                                                                                                              . a f.... Ling f.rt: .n M:; ; are u
s ae:rg paar'n*C entil .t is be c'L*. *.
  • n ar. . cihf r 4 ~.odt;0le *Mpd..es +n *atC*i rt +a* e J
                                                                                                                                 .t
  • O Mre %sraegenM.f 4*,negfLp
        ,       *: *. *
  • t e: Ords al.a.1 not be schedaed efo*er . 4 *eM
  • m a;l t3M t;.r*.4'e: 1r*as ar.C ares.a pres **.'
    .   , than f our s ee s.s.                                           .        d. Prohibit the storsse' of asmbast.n:es tr. , :r.g 4 r.a2.ard t; :afgu.rt.ated e:U:*.:*.t!.

At leut one dr111 per year s'all be pet.

  • a&fety related ateu or entsbitsh desistated .* T!a. ese strategies shal desig".a:e Dre h: 23r63 La each area covered by.

fo*med on a "tata shif t for eten shif t fire storage ateu tith appropriate fare protet* Drigade. Lion- the steelfic prellte plata.

c. The drials shall te preplanned to estab. 3. Govern the handling of and limit tran- b. Mie eatingutshanta best suited for con-troilln itsh the trammt otteetttes of the drill and SIfnt Itte 1C133 such u combusttNe and the 1tres amoeiated with the fire shaJ' te critiqued to determme hot t ell the flammsDie liQualis. t ood and plutic prod
  • hasarc3 in that atta and the nearest loca.

trainleg obiectines have been met. Una.n. tion of These ettir.guishanta. ' riounced drills shall be pla*ned and critt. Ucta. or other combustible materials m c. Most f avorable atttction from t hich to buildmts contaaniftg safety.related sistems Qued ty members of the management staff or equipment during all phases of ocerattrg, attata a fire m each area in viet of the ten-respCrJitle for plant safety and lef t protec. 1.nd especially during mamtenance. *odell- tilation direction. access halltays stairs. L)on Performance deficiencies t.' a life BN. cadon, of t efuestrig opertttCrts. and doors that are most likely to be free of - gace or of indi : dual f.fe Origade members 4. Des.bmate the oftsste staff memeer it. fire, and the best station of eittalion for' shall be re**.ea.'e4 by schtduling additional :Deftsible .for the lftplant lift protettien fightmg the !!rt All access and effets Lla.ileg for the brigade or members. Unsa. Fevlet of proposed tora actinties to idente routes that innoite locked doors shculd he liaf actory or 11 perfor* nance shall be fol. fy potentlaj transient fire hazards and spect- spettf6cally identti;td m Lf.e procedure tith ICt ed by a f* peat drill 11thm 30 dans fy required additional fife protection an the the appfconale precautaorts and methods

d. At 3 year in:trvals. a randomly Select?d for access spectfled.

work attivity procedure. unann3unt e d df:ll shal! be CFitiqued by $ Govern the use of ag' nit!Cn souffes 'Jy d. Plar.t systems that shou!d t>e managed Qus:sfied aftC!Udh;als incependent of the [p W3e of a Came perrnit system to COntfoi to reduce the darr.agt CC*tnttal during a cc Jee s staf f A copy of the tritten it? ort te!cmg. Carne cutting. braatng. or tol derms local fire and th? locatlan of local and if 3m such includvala sha!! he stallaole for C p e ratierts. A Sepa rate permit shall te temote contrats for such management le s . NRC teriew any hydrtulle or elet'.flCal systema :n the issued for each afea there tota ts to be e Drl.ls shall as a mittafnum include the done. If tora fontmuel oner more than one tone *osered by the specific fire fighting foll3 % ift g. proceJus t that could mcrease the ha.: ara IhtIL. the permit shall be Valid for not rnore eli A.tietsment of flye alarTn effectinentis. than 24 hours then the plant (1 C;erating in the alf a Def3uat of o%f tpfessurttatson Qt time fetuired to notify and tastmble f&rt or for the dotation of a particular job electrif BI halaf Ca t, brigade. And selMtiofL p! cement and use of NIZI Di&OI 8hWido*A e. Vltat hf st seha;tlit alltem Compor.e".ts ' I edipment. and file f8thling strategies. f. Centrol the remosal fr3 n the att t of that ftted t3 be kept tool truit fighting & 12, Aastiament of ta4h brigade memttf I all t aste, deDrts. setap, oil spilla, or othef local fire. Part;tulafly fluar$ous comDustb t.no a ltest of MLS or her role in the file combu; tables resulting from the tort actinF bles that need Coo t*g should be designated. fight;ng attategy for the ates 4Llumed 13 ty mVnediately fol:owmg Compl(tlon of the a d ag ea

                                                                                                                                                                                                                 ?

tof. tam the llte A.seasment of the trigade aC it /. of at the end of each tota shif t' n eg g g gg ff.e m W

  • 3 (Onf ormante t ith est a blast e d " f f COM's I4fst- L 3 to Jo title so that all life flgntmg Ik;."c' p'a*
  • fir
  • fig ht:r.g 3rocedures and est of IIIIIIM lie peflodic hou3eketbeg *n- g 3.g y g g ,

file figM.*.a PCulpfne'It. Influc'f'.E teel 47,n. spe llo J to Are Cont!nted (0mp. ange sor.nti (3r*olernen'. These dutif s ;fCJdd L a ..*.e . e met t enc y bre a thing a ppa ra t Js. ntstra tn e (3nt rols torr. mand Contfo. Cf the br:33de traftsport. * (Dr* *AJh.Ca t:0n eQuipfrf f t and t e".tdation tf g flre suppf tsalon and sLppor* ttulpr'e*.t eh.*f;ent. to the talent pract:*able 0 Control the use of apegg(it Combustibles '

  • in safety felated Afeal All load uvd in go thi (!!e scent 1. applymg the estirg*tte h 3 ett sitM'Jls t e d W.se of fitt f. e h t. *. 3 saNil felskG afeta durir.g m a ,nt e n an(t. thanL to the fl!e forf.muracat ;r. st'.h e4Wif f"ent reg J:ted to ecpe tith the 3:1.3 tion a*no **, pe of f are telect ed for t he C?.!). mMlltation. of ref t.fimt operations .sdtn Cuf. trol room. and (f ?rcir.atson a ttn octa:dt 7-a3 lan doe n blocas of sCSIIcidstig a small be file de$sttments * *
                                                                                                                                                                                          '*q The       aresmand      tic of fire thesen twr the               tremd tith a slame eetarca it. g-                              g. Potential f aa:c. tical and tosse* :ard U%

of a it.e 4.f:,,e fron tnose um m et of - m s eh u n a f.en sr..,,o uiper e nt g ed mn. lari"N" y gj g ' 'J aqu4 i.

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App. Rfilli > App. Rt titi PART 50 e DOMESTIC LICENSING OF PRODUCTION AND UTILIZATION FACILITIES h Ventuation as stem Ocerat.cr. tr.r *. fire or the f.re damage to suer, ec. :- -t: Fire d > ort nr.a:; ce :0Cted (sosed and tr.  ; tures :es.re: piant air sistrout.cn er er an: rs:tems una;; oc hmilec ss inat t. e . . seculat:0n fiOE is :'r.cd:hed 10? f:re Cr ::..r, tema can ce mact Op? rat.e and C:.o J.u.

  • ctec ** eats to ett thr4 W coc's t?* .

Frent Or str.cte C! earing operat Oris f. .ne C10u 3 00s.*.e 4013 Cin te achiesvd uitn.r, !* n0.;ra Ma 3 Tire c00rs sr.al. De presided site aute.

e. Operatierts requir: rig Cen:r0s roe at: uriats for suen reca:rs s:.4.: De rCas .. ma .e h0:o epen ud re ae ue metr.mtsrrJ sr.m engineer C00rcanauen or authst.:a. asaiuele on site and pr0ce ..:s shan c, :n a .d insonad 44:W 10 % U;! y 2 s t 33C r't a l s g>,n eff et to imple nen: suts. re:sta !! s;Ch ue f ree of Centrutuoru er J. !rJtruct Orts for plar.t operaters ar.d Mwpmust and sysums e prior tc 1: 4 Fire 400rs saali te sept C10 sed and in.

general plant personnel carir.g fire. hours MLet the fire tall no: De cacatie of spected dail) to serify inat trie) are in the L. Alteniaciw and gedicales aAiadeirt ca. 'I d 8 L " pa e thly. 1. AJternatne or dedicated snut- C Mtr1C 8 " *poter

                                                                                              ** 'Is *y hste'"'"m.s"e^d   ' Uof8fire becaus          '         The fire Orig &de leader shall have ready doth CA8aDility pr0vided for a specthe fire                      ma               an            n .        O si e 00*H            Emus W kus for any loiCaed (LM du tres shal be able to ta ? &cnies e and tv.am.             s> stem shall be provided. Etuipmen: and                                    Artu protected Dy automatic total flood.

Lain .ubtritict1 retetmty Conditterts m :Me s> stems used after 12 hours may be poured :rg gu suppreuien systems snul have eleC-tesctor; the muntun reteter Ceciant msen. by Ws.u pot u Cn* tri any supuwd self dasms flM doom or tory;(C) aCnieve Ene mLi.httin hot st.LadDs a Os d oeNUM sh&H sautly 0000n I tbcm Condit Crka for a PWR thot snutdotn

  • ICr a Da2tlire shutdont Cacat!!!t7 need not be de- O. Ott celleClion amtm /Ce erector cool-BW'Rt ada 6Calese c0ld srwidotn ConditiOr.s signed to meet setsmic Cate:Ory I Criteria- Cnf siire Tne retCtor Coolant pump sh60 i

tithtrl T2 hour 1. Lad te) mientain Cold shut. -

                                                                                                 "t *Iit, or Oth er de sign b u.s            be equipped tith a.n oil C01JeCuen system if dotn Conditierts the re t!!er. Durtag the                                        I      "'"#                  "O                   W C' N # N I U U #                                                                             O ##I DCstfire s h u t00 tt,     the retCt0r C 00.4.t. t                 .
                                                                                          &&W e O.            W             W                nomaj opMatin N OH COUnen sysh system proteu vs.riables snall be ma.n-                    or itn;ut on entsting aMety systems. Or te.                              snad be 60 designed. entir:eered. and in.

tained Eltnth those predtCled for a leu Of cause of adverte V4Jte attlOrts due to fire stalled that f a.iture till not 1t64 to (tre normal Lt. pot er. and the Ital 0n prc uct carnag e. durtrig normal or design tuts SCCident Con. ' bour.dtry tnterrity shall not be Lif etted. 7. The Safe shutdont equ:Cment 4.nd sys. dit!0ns and that there La rtuonable usur- - , Lt there shalJ De no l'atl Clad darnage. rup- Lems for etCn f are slet sh4J) be knoth 10 be LACE 11 tat the systern t'lll tithstand th e tut' Of EnF DFL ary Cociant bounga.ry, 0, tse'nted from saa0Cisted non safety Circulta , rut.6te Of the contMr. ment bouncaty. In W flM ttu so that h0L sh0rts. Open Cir. SaleSuchShutdetm ColleC00n systerns EAftheusae.' sha .ll be capable 2, The perform &nce 80a!A for the shut. CE:ta. Or &norts to 870und La the taaoC;ateg of Collecting lute Ot] from til potenusJ pre:. doth functJorJ shall gg Cittuits 411] r10% prevent Operat;0n of the

4. Tht rettutity Cont #01 fu?. L10n shall be 8ufMid 4Ad unCreMufM#d It&AL48 81tfi Lfl I.

tale shutdelt equ!pment. The sept?stion the teattor C00lttit purnp lube OlJ sYttema. Cacatle Of LCniertr.g Lad mt.ntannar.3 Colg 8.": d barrie rt betteen Llays a.nd Condults 1Antage ah&JI te Collected and attined to a shut: cst re6Ctivity COnditiOra D. The rettter C001 ant ina.neup functign con to'28 Lasociated Cittu.ts Of one safe tented closed COnta:rter that Can held the Sh utdet? dM.41Cn afid trays and CCnddits ML3M lute 03 SysMm inWnt0ry. A OaM tr.

  . sh*J t* CA:stle of maintaaning the rea::cr 4tonts. intr.s a.isottated Circusts or atle snat.                                        ruter ts retutred in the vent 1f L.h* flurn 0

h"*BMts COela.nl letet abote Vla.or.. Or d: ftC Uca Of the OH DMaent W and te tith:n the trie lesel100 of the Cinre incataticn for isolation

                                                               ; the               ; 4053 Cables of these frCm      the redundant s.ux:sted      citeuit s               ee         e                               heaCL                         ta se inta g the C?tuur12dr for P%%a.                                   g   fr0rn the &&fe snut40t% equl0 merit. af'al; te ;                          ha       g C The rearter heat rem 0saJ funetton : Pall ., :wth that a postu;sted fire LT.civtng knoto                                            y
                                                                                                                                                  , g'    ,7 g a be        capa0;ererr.0.tj of aCniet LF.3 a.n d mt.nta %.*gCCy sate                         CitCults Vtil not prevent 4 Aft shut. f de:1,nen:                                                                ...                                                              r.: O    C.            lne                                             dIhte 1 re e C
                . Me Or:reu mer.:*:r:r.g f atif t:Cn s?l.}

te 01:33if Of pra'.lC;?g d f r!! reta.T.Js 4. y /ger gomp, eg gtf ge g,pg g g g ,, 39;f ,. tr? 14:5 fes".;tes enst on tr.e ria ter g.,,gl.figg;ig.t Per.etra tion $f a; C es *.: 4 *.1'! n2:17.13 4 mis The dia.n Jne sf t ; be talte tn e 3 7..'eth n a';131es P.P'en.ar) to per!:2 e f 0 4dn t 3 at:CS, .0date th.* largett PCten. knd tentt01 \*e tsove funtt;crJ- bid.:e 0%) nCneCm3ust;33e P.a e?.t.s and L3. C.l lela

e. The su;por".mg furttierJ anall tur Caca. shtd be tw&JLfied by testa triat art Compart.

ble Of prend.ng the pr0Cets tooling. lutr1."n. ble to tests used to rate fire DirTlers The - t>0n etC. neteuary to permit the operat:en Ette$ltnte Criterla I0r the ta41 ahaji in-c;y g ,. Of the equipment ned (Or safe shutdets

1. The Cable fire tarrier penetrltten set!
2. The 'shutdetm Cacattlity for spet.fic hu s1tratood the fire endurance ten tiths -

fire areu may te unique for etch suCn tres #'ut Dataate Of fiarne or trniu0n of Catles On Cr it man be one unmue CCmemanen of sys. W unessesed side (Cr a seriod of time oms fCr el suCn areu In either Cue the etulisJent to entner, the flre res.stante ratt _: r e. a;terna:ae snutcOS n Cacattllt) shel be in. 9Ved Of the dependent of the sc<tihC ftte trettas sad 2. The temperature levels retctded f0r the th3M S CComm 0Cale pCa tfire COndit.CrJ uneIp0 Sed Side ate an&Jy' led &nd detn0n. , t here Offs.te .>0t er ts similatie and E ntre strate that the manimufr temperatute La Cffs:te poter ta not ait:14 tie for 12 hours. Procedur es thaji te ta effett to tmplement s'.'f UCnflClentJr temperature: beletand the Cabst tuuauen tena. th a Cacatuity.

4. !! the Ca stility to LChieve and res 9 3. The fire tamer penetrtuen seaJ ee.

rr.atn.: :ntset and does nCt tam CCid shutdat , stJ) not be ava21st;e te-Cause of fate au. age. the edilpment tr$ thr projectlen Of water beycnd the sys:e J C?mprJLr;3 the men.rJ to &Ch.en t t;nexposed surf ace dur1,hg the hCse ar.d mamtain the 50t standty or h0t sht.t. gg7,g7n gg3g' 0057. Ccncitten shall be Ca;atie of ettin. N. fire doort Mre doors shall be 6 elf ele.a. (s.nma such CO*.0.bOM unul CCld shutd?ty Lng er provided tith Closing mechtnu.?J CLn t4 afrutted If auth eQulpment Lt.d ers, an d s h all tf trJ pette d sem.ttmutJly to tems till not t4 Patable Of being pot ered v e r'.f y that a ut ern a tlC hold-Cpen. release. e ty teth CNite tad Cffsite electrtC g<ter sys. Md CJ041 fag deChanIsTs &#13 latches att CD-teraa t+Cause of fire damage. En tndegend. e rs tle. . ' ent CN:te pct er system shtJ) te prest:ed The r. umber Cf OtaratJr'g shif t C+rter.nel Cne Of the f0'Josins tneuures shall be entusne Of fire tr.gase mornt4rs recuired grosided to erdure they 41;l pr;tett the c;ening u requ: red tn Cue cf fire. to 0;erste such equicment and si s te c.s  ! Art doors shall te tept CICaed and elet. shall de en site at 1J1 times 5 E4ulsmen*. Lad sys:e?J Ctmcrising the tr : ally supe rvtae d at a egntinu o,sj3 rr trme d loca t ten; rr e a rJ to ter.iese and mamism Cold stat. d e t *. Cosa;tnN shall not t< d ur.a g e d by

                                                                  . An LICertable f*ethCd Of Compla tnt tith th:s aJternauve sculd t.e to meet R LCry Oulde 1.13 positien 4 re'a:ed to [tsh)[
  • Eet R e g ula to ry Oulde 1.29 Setsmht S ;V,7 '.'

e As defined in the StanJud Tethn.:Caj g ggg g;,. a uC N . ated *J:ur'J and lEIE Std 334 1314 g ee. tien u 4 D there ts!Ord ut sotrans frc'n redandant saf et) protected thtt gestwigag 0"if" US'8ECLUC# NSM8D U I*

                                                                                                                                                                                                                                               . qd'g
                                                                                                                                                                                                                                                      '[l d h .g.

f:res affect trays frcm enJy Orle safel) das. s10 t .y

                                                                                                                                                                                                                             .v d.... ?.

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ke & a C W O!44 . n 9' L4 4 841221 804 . 400 Chestnut Street Tower II

            ~

December 21, 1984 U.S. Nuolear Regulatory Commission Region II Attnt Mr. James P. O'Reilly, Regional Administrator 101 Marietta Street, NW, Suite 2900 Atlanta, Cecrgia 30323

Dear Mr. O'Reillyt .. :

. /

                                                                                                                                                                             ~
                                                                                                                                                                                   . t* 6.-

In acocedance with items 5, 6, and 7 of the August 10, 1984 contir-mation of f.-_"- Action Letter (CCA) to H. O. Parris fres you, we are subsitting by the

                                                                                                                                                                        ?

following molosures, infermation on implementation of Appendix R to 10 CPR , , Part 50 at the Sequoyah Nmlear Plant. The following enolosures complete th,' ,.7.' COA reperting requiresents: g,;h.y . Enclosure 1 - Overview of Appendix R Enclosure 2 - Fire Shutdom Legio Diagrsss and Associated , , , Keys (4 copies) Enclosure 3 - Electrical Equip.mmt Block Diagrs.ss (4 copies) Er.olosure 4 - Colcc-Coded Cable Location Drawings (4 copies) Enclosure 5 - Interaction Identification (4 copies)

  • d.' x Enclosure 6 - Associated Circuit Analysis (4 copies) h."7)/l Enclosure 7 - Additional Deviations (4 copies) . , ,

M Enclosure 8 - Implementation Schedule If you have any questions, please get in touch with R. H.tell at FTS 858-2688. To the best of my knowledge I doolare the statements containst harsin are s' cecplete and true. Very truly yours, - TENNESSEE VALLEY AUIHORITT

    • J. A. Decer

,N Nmlear Engineer *

;, '.                               Enclosures (3) oo:     Mr. Richard C. DeIoung, Direci.or                                     (Enclosures 1 and 8 only)                                                .-
.,.                                         Office of Inspection and Enferoemmt U.3. Nuolear Regulatory Co= mission                                                                                                         .

v' Vashington, D.C. 20555 x .. 3

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                                        . . . _ . . - . .    %g.]      U.S. Nuclear Regulatory Co==ission                         December 21, 1984
nab cc (Enclosures 1, 2, 3, 5, 6, and 8 only): Ph 0y m3 5Aelf N/e.dp/* ,

NUC PR ARMS. 1520 CST 2-C J. W. Hutton, 176 0 CST 2-C H. L. Abercrccbie, Sequoyah R. J. Hullin,1350 CUBB-C (2) i J. W. Anderson, 255 SPB-K J. A. Raulston, W10C126 C-K .' E. A. Belvin, 109 MPB-M H. S. Sanger, E11B33 C-K H. N. Culver, 249A HBB-K F. A. Sze:epanski. 220 401B-C E. J. Tced, Sequoyah-NRC NOTE: Enclosure 7 provided to CCs by ARMS No. L4$ 841218 800)  :~ be: R. E. The=pson, 1630 CST 2-C (Enclosures 1, 2, 3, 4, 5 J. H. Sullivan, Sequoyah (Enclosures 1, ; 2, 3, 4, 5, 6, . 6, 8) 8) .. C00RDDIATED: SCN/JSullivan, hUC SRV/RThompson 1 e .- e o% o 9 O d e o 6

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SEQUOTAE NUCLEAR PLANT APPCfDIX R i.. - Enclosure 2 Fire Shutdown Logic Diagram and Associated Keys

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c. No rupture of the containment boundary he rupture of the con:ainmen: boundary shall consis: of
  ,Q                                               the uncontrolled release of the containment a:=osphere.
     &                                             Failures of. closed syste=s inside or outside of contaicment need not. be postulated unless a failure can be induced by a fire.

g 2.2.2 The reactor coelant system process variables shall be within

 .j                                           those predicted for a loss of no =al at power.
  • 2.2.3 The shutdown capability shall be able to achieve and maintain suberitical conditions in the reactor, maintain reactor coolan:

inventory, achieve and maintain het standby

  • conditions for an ex: ended period of time, repair cold shutdown systems within 72 hours, achieve and maintain cold shutdown conditions .-

thereaf:er. '

                                             *As defined in the Technical Specifications.                                  ,
                                                                                                                              ~

2.3 Perfor ance Coals , 2.3.1 The reactivity control function shall be. capable of achievins; e and- main:aining cold shutdown reae:ivity conditions. 2.3.2 he reactor coolant makeup fune: ion shall be capable of ' ' maintaining the reactor coolan: level in the pressurizer.

     ^                            2.3.3 The reae:or hea: removal fune:ien shall be capable of achieving                            !

j,.) and =aintaining decay heat renoval. l x .- l 2 . 3 . l. The process monitoring function shall be capable of providini j direct readings of the process variables necessary to perfom and control the above functions (see ses: ion 2.5).

a. RCS pressure and pressurizer level
b. Reac:or coolant hot leg te=pera:ure or core exit thermocouple and cold leg tee
                        ,                          pressure (to calculate ; cold)perature or steam generator
c. S tean generator pres.=ure,and vide range or narrev range level.
d. Source range flux monitor
e. Diagnostic instrumentation for shutdown systees
f. Level indications for all tanks used .

If the tank is very large and significant time is needed :o use the water, then local indication or pump sue: ion pressure is acceptable.

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2-3.5 ne supporting functions shall be capable of providing the process cooling, lubrication, etc. necessary to per=ic the operation of the equip =ent used for safe shutdove by the

 * .' J systems.

2.3.5 n e equipment and syste=s used to achieve and =aintain hot standby conditions should be (1) free of fire damage;

                            -                  (2) capable of maintaining such conditions for an extended time period longer than 72 hours if the equipment required to, achieve and maintain cold shutdown is not available due to fire damage; and (3) capable of being povered by an onsite emergency power ryste=.

2.3.7 he equip =ent red syste=s used to achieve and maintain cold shutdown conditions should be either free of fire damage or the fire da= age to such systems should be limited such that repairs - can be made and cold shutdown conditions achieved within 72  ; hours. Equip =ent and systems used prior to 72 hours alter the "

               .                               fire should be capable of being powered by an onsite e=ergency power system; those used af ter 72 hours =ay be povered by                           n off site power.

2.3.8 n ese,syste=s need not be designed to (1) seismic category I criteria; (2) single failure criteria; or (3) cope with other plant accidents such as pipe breaks or stuck valves except , where required for other reasons, e.g., because of interface with or i= pact on existing safety syste=s or because of adverse

    ,                                          valve actiens due to fire da= age.

l j-;:1

  \l                                2.3.9      he two units can be in any combination of operati:3 modes at the time of the fire.

2.3.10 Manual acions by operations personnel scy include - manipulation of equipment located in any accessible area of ' the plant provided such actions are within the capabilities of l the mini =u nu=ber of operators defined by the staf fing ( require =ents. . 2.3.11 In addition to the identification of equipment which must operate for safe shutdown, that equipment whose spurious operation vould adversely af fect the safe shutdovn capability c:us t also be identified. 2.3.12 ne systens and ce=ponents used for safe shutdovn shall be capable of perfor=ing their intended function within their , design li=ics and if possible as denoustrated by previously accepted analysis. , i 2.4 Assuaptions ,. 2.4.1 Design basis events which can be caused by a fire t:ist be prevented fro: occurring or must be citigated. Design basis events which cannot be caused by a postulated fire are not .9 . considered to randomly occur with a postulated fire.

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A_ :M 2.4.2 No f ailure other than those directly at:ributable to a pos:ulated fire are to be considered. 2.5 Alternate Approach to Meeting NRO Require =ents 2.5.1 Ins:r:=en:ation' providing direct reading of process variables (reference 6.2, Inclosure 1, paragraph 3.4; reference 6.4,

                               .                  Appendix C to Inclosure, Section D; reference 6.5, See: ion II).
a. Tne above references do not allow the' use of SG pre'ssure instru=entation to provide a reading of RCS cold leg te=perature.

Justification During a reactor coolan sys te= cooldown from the ACR, the stea= generator pressure vill be adjusted to the desired i corresponding Teold te=nerature using stea= generator PORV controller. If a cooldown is in process, Tgne can - be used just as well as Teoid to determine cooldown rate

                                                                        ~

since delta-T will re=ain relatively constant. .- The accur'cya in reading the stea= generator pressure indicator vill have minimal effects on the cooldown races since the stea= generator pressure is adjusted frcc :he

                                                -         PORV con: roller. The stea= generator pressure instru=ent'*

can be used to verify the set point on the PORV controller and to de:er=ine Teold' . h-.-f .

b. Tne above references specifically do not allev the use of SG narrow range level for =anual SG 1evel control.

Justificaelen Procedures vill be written to instruct the operator as to which ATV pu=p to use based on the location of the fire, ensuring flow to the intact SGs. 2.6 References 2.6.1 10CTR50 Appendix R , 2.6.2 Generic 1.e ter 81-12, February 20, 1981 2.6.3 Clarification Letter of Generic Letter 81-12, April-May 1983 , l 2.6.4 SECY 83-259, July 5, 1983 ,

                                                                                                                      .                                           I i

2.6.5 IE Notice 84-09, February 13,.1984 , 2.6.6 Branch Technical Position CMEB 9.5-1

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3.0 Assu=stions ' I

    .--                            1.      Both uni:s =ay be oper'a:ing in any mode when a fire is' pos:ulated.
    'df                            2.      No failures other than those 61:ee:1y attritetable to a obsculated fire are to be considered.     -
3. No design basis events which cannot be caused by a fire are considered concurrent with a postulated fire.
4. Equip =en: required for safe shutdown during a postulated fire must be capable of perfor=ing their safety function while being powered by both an onsite e=e:gency power syste= and an of fsite power syste=. 1 1
5. Iquip=en: required for safe shutdown during a postulated fire need not be designed to =eet seis=ic Category I requirements, single failure -.;

criterion, or other design basis even: criteria. -

                                                                                                                                             - l
6. v.anual actions by operations personnel may include manipulation of -
                        -                   e quip =en: located in any accessible area of the plant provided such                                ;

actions are vi:hin the capabili:ies of the mini =u= nu=her of operators r defined by the staffing require =ents.-

7. During a post-fire shutdown, the fission product boundary integrity cus: be maintained (e.g., no fuel clad. damage, no rupture of any ~

i pri=ary coolant boundary, no rup:ure of the containment.. boundary).

8. ne safe shutdown analysis is based on the design reflected in 'the
          ^
  • 1atest revisien of IN DES issued drawings and docu=ents. A field
     '%Ay'J                                 verification vill be required to ensure the analysis reflects the as                                 !

constructed configuration. _

9. De ERCW system =us: 'be aligned such that A-train ERCV cooling water ,

is supplied to the A-train CCS beat exchangers. ne same applies for the B ::ain lineup.

10. ne nor=al and alternate auxiliary power supply to the vital bat:ery '

chargers vill be available. , , 4 4.0 Source of Infor=ation

1. 10CTR50, Appendix R
2. IN DES-SIP B4-10, Safe Shutdown Analysis for Postulated Fires at Sequoyah Nuclear Plant .

l

3. IN DES-I? 3.03, Design Calculations ,

l e (

4. Sequoyah Nuclear Plant 10CTR50, Appendix k - Tire Protection Submittal, l October 1981. .

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p. TL(I) VL (I) vpCI) MLCI) MP(I) MADD(I) _ . _ . . BCCI)

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TT-44 ' Page 1 Revision 6 DETERMIMTION OF ADDITION VOLUMES FOR BORON CONCENTRATION CHANGES Page 1 of S 2 _ 1.0 '!NTR000CTION Boron concentration in the RCS is adjusted either by diluting the L - primary fluid with makeup water or borating with a 12-percent boric acid solution. These dilution or boration volumes may be determined through the use of tables or nccographs. The boron. tables are generated as output of the 80 ROM code. These ...

                                '           tables give the required addition volumes versus the current RCS boron                                                              

concentration and the desired concentration change. Scee interpolation E y be necessary in using the cabies. - I t The boration and dilution nocographs are generated as output of the * ( N@GRF code. These ncoographs provide quicir. values of addition volumes for boration and dilution. 2.0 METH00 L - The addition volumes are calculated in accordance with equation 2.1 below: Cn - Co (2.1) V. . V,f in Cn - (Cp + a C) where: Vp = RCS volume (gallon)  ! Vn - Addition volumes (gallon) . . . .

            'p                      -

Cp - Initial primary system boron concentration. ( .

                                          .                    Cn - Boron concentration of addition volume (ppa)ppe)
(Elther boric acid solution or zakeup water)

SC - Change in primary 'ystem boron concentration (ppa) - h f - Ratto of primary to add!tton volune densities (frac) i (p,/p.) t 1 The derivation of equation 2.1 is given in calculational file CPHS-CF-007

                  -               frca the Core Performance I

Methods Section. NFAB. r The primary system volume is deterntned through the use of a best estimate system rodel shown In Figure 3.1. In this codel, the primary s k agrees with the FSAR value for hot full power (HFP) conditions.ystem volume

                                                                                                                                                   ,A constant pressurizer level of 24.7 percent span is assumed at and below hot zero                                                                                      .

power (HZP) conditions. Thernal expansion effects are included in this

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       ]p .      7234 664~75 STEP =   1    C8= $77.

_ .- S T E P = ~ 2 ~ C '4 = 6C1." ~- - - ~ ~ ~ ~ ~ ~ ' ~ ~ - ' STEP = 3 (83 7(4,

            ,                S TE P=  4    CR= 717 Q..                   5 RP =   3    t 8T"730 .

STEP = 6 C9= 743. ~

            .                STEP =   7    C8= 756.

() . ., ETEP= STEP = 8 9 CB= 768. C8= 7 51

            .                STE P= 10     CBs 793.

() . . STEP = 11 STEP = 12 C8= 805. C9= 817. * ,

            ..               STEP = 13     CB= d29.

() . . _ STEP = 14 STEP = 15 C8= 841. C8= 853. - s o -

  • STEP = 16 C8= 864

() .o STE P= 17 STEP = 18 C8= 876. CB: 887 o S TEP= 19 C8= 898., . < s () .o

  • STEP = 20 STEP = 21 CB= 910.
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CB= 9 21 . o STEP = 22 CB= 931. () .. STEP = 23 STEP: 24 C8= 942. CB= 9 53 .

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o STEP = 25 C8= 944 *

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STEP: ?6 C 9 = _ 9 74 . . S TE P= 27 C9= 9e4 STEP: 2d CR= 9C5. A.- o S TEP= 2 9 STEP = 30 C8=10C5. CB=1015.

 '          o                STEP = .51    C8=1025.                                                            -

() . o STEP = 32 STEP = 3 3 CB=1035. CB: 1045. o STEP = 34 CB=1054. () o STEP = 35 C8=1064. - o STEP = 36 'C B = 10 73 . *

                        ' ' STEP = 37      C8=1083 s   . .                .

C0=1092. 4 *

       'O =                                                                W.e'M*O 'f.r# 1 E STEP ='38                               T                                                      '-             . VIS . '               s' '
         ,  .                STEP = 39     C 8 = 1 1 01 . , ,, ' , . . $ . , a ..,. . ~ ; o. ,.
            -                STEP = 40     CB=1110.

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  • STEP = 41 STEP = 42 CB=1119. '
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  • CB=1128.- * -
            -                STEP = 43     C 8 = 1137.                                                                         ,

i () e STEP = 44 CB=1146. . l

            .                STEP = 45     C 0 = 1154                                                                                                                                       i
            .                STEP = 46     C B = 1163 .
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    , () .                   STEP = 4 7    CD: 11f2.
    ;       -                STEP = 48     C8=11?O.                                                                                                                                     *
     *      -                STEP = 49     CB=11H.
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STEP = 5'. C9=1197.

            .                STEP = 51     CB=12T5.

o STEP = 52 CB: 1213. ilEP= 53 C B = 12 21. ()( f STEP = 54 CB=1229 * * '

            .                STEP = $5     CH=1236.                                                                                                                                . <.

() - s. . STEP = 56 C8=1244 . h N'- )

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UA, 569 41- "- o ,_ . . , . 610Y Q. STEP = 61 -C8=1282. 7L &lb STEo= S2 C8=12sg. STEP = 63 CH=12C6. STEP = o4 C B = 13C3 , STiPn 65 C 9 = 1311

              .             STEP = 66              C8=1318.

Q. . STEP = 67 STEP = 68 C8=1325. C 8 = 13 31

                          - STEe= 69               C8=1338 Q                      STEP = 70              CB=1345.
             ..             STEP = 71              C B = 13 52 .
             .              STEP = 72              CB= 13 53.

Q STEP = 73 CB=13c5.

             .              STEP = 74              C 9 = 13 71.

STEP = 75 C B = 13 73 Oe. **=* STOP

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               .1354100sE2 .21763617E-2 .27105951E-4 .20458450E-7                                                                                                                        l
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                .                STEP =     1  Ca= 713.

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() .~. 72TT~713 75 ST8.P= 1 CBs 726.

  .            =                 S1Ef=     2   C8= 739 I

(). n STEP = STEP = 3 4 C8= 752. C8= 764 l . STEP = $ CR= 777. l () . STEP = 6 CB= ? F.9

               .                 STEPS     7   CB= 801.

i .. STEPS 3 C8= d13. () . STEP = 9 C9= 825.

               .                 S TE P= 10   CB= 837.

o - STEP = 11 CBs 849 (). . STEP = 12 STEP = 13 C8: 8 61 . C9= 872'.

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e STEP = 14 CB= d64 . < () .o STEP = 15 CB= 895. S TEP= 16 CB= 9C6.

               .                 STEP = 17    CB: 917.

() . STEP = 18 STEP = 19 CBs 928. CB= 939 ' . . STEP = 22 CB= 950. i

 '      () . .                   STEP = 21    C9= $67 Sido= 22     C9: C 71 4                                 STE J= 23    CR= G E1  _
               .                 S TEP= 24    CB: 991.

o STEP = 2 5 CB=1002. ~ o STEP = 2 6 C8=1012. () e _ STEP = 27 CB=1C22. , , o STEP = 28 C8=1032. o STEP = 29 CB=1042 () . STEP = 30 C B = 10 51.

              .                 STEP = 31     C B = 10 61.                          '
e STEP = 32 C8=1070.

i () .o STEP = 33 CB=1020. t r- - a i? - I STEP = 34 C0=1089 . STEP = 35 C8=1098.'

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  • STEP = 3 6 CH=11C7.

S TE P= 37 CB=1116. STEP = 38 C8=1125. () . STEP = 39 C0=1134.

  • STEP: 40 C8=1143. 1 i

STEP = 41 C B = 1152 ~

     , () -                     STEP: 42      C0=11(D.

p =_ STEP = 43 C0=1169 '

             =                  STEP    44    C S = 117 7.
     ; () -                     STEP = 45     C9=1166.
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I STEP = 46 C0=1194. o STEP = 47 C H = 12 02 . (} 3 S TEP: 48 CD: 121') . (_)_ S TE P= 49 CR=1218 , S TE P= 50 C8: 1226. () = _ STEP = 51 C3=1234 .y: s)

             -                                                                                                                 ~t STEP = $2     C0=1242 o

STEP = 53 C0=1249 L ' D. , CEIb. O_ STEe= 54. Ce=i257. . b$' h.5 P N ~ N-me

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             .                                                                                             g-}M             M DS /d; 5.~~                 STEP = 56        C EEil72 .                     -

T. STEP = 57 C8=1279.

            .             STEP = 56       C9=1267.

STCP= 59 C9=1294 S TE P = 3, cg= j 3c5,

            .             STEP = 61       C9=13*3, O.                   S T E F=T C 6Tf.ff5 .

STEP = 63

            .                             C8=1322.
           -              STER = 64      C8=1329 O . ..               STEP = 65      C8=1336.                                      .
             .            STEP = 66      C 8: 13 43 .
           .=             STEP = 67      CB=1349                                                                                                     )

0- STEP = 64 STEP = 69 C8=1356. - C9=1363.

           ..             STEP = 7;      C8=13c9                                                                                                     l C=                   STEP = 71      C8=1376.                                                                                                    l
           =              STEP = 72      C8=1382.                                                                                        .
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           =              STEPS 73       CB=1388.                                                                                             ; -

O- = STEe= 74 STEP = 75 CB 1394 C8=1401,

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              .                       STEP =     1   CB: 1196.

l . STEP = 2 C9=1229 -

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S TE P= 3 C B : 12 23 .

              ,                       STEP =    4    C8=1236.

() . STEP = 5 C8=1249

             .                        STEP =    6   C8=1262.
            .                         STEP =    7   C8=1274.

() ... STEP = 8 CR=1286. STEP = 9 C8=1298.

            .                        .STE P= 10     C8=1310.

() . STEP = 11 STEP = 12 C8=1322.

            .                                       CB=1334.

STEP = 13 CB:1345. () . STEP = 14 STEP = 15 C8=1356.

             .                                      C8=1367.                                                                                              -
          . . ,                       STEP = 16     C8=1378.                                                                                                   '- '

() . , STEP = 17 STEP = 18 CB=1388.

            .                                       C8=1399
            .                         STEPS 19      CB=1409.,

(). STEP = 20 CB=1419

            .                         STEP = 21     CB=1429.
            .                         STEP = 22     C8=1438.

() . STEP = 23 STEP = 24 C8=1448.

            .                                       C8=1457                                                                                          ~
            .                         STEP = 25     C8=1467.                                                                              *

() . STEP = 26 CB=9476. . . STEP = 27 C8: 1415. ST2P= 2* CR=1443. A. . S TEP= 29 C8=15C2. STEP = 30 C8=1510. ~ S TE P= 31 -C8=1519. . () ..

                   .                  STEP = 32     CB=1527                                       .       s   .    .                          .                        l STEP = 33     C8=1535.
           .                          STEP = 34     C8=1543.

() .

  • STEP = 35 C B = 15 51 .
           .'                       . STEP = 36     CB=1558.

STEP = 37 CB=1566. - . .' .. . . . .... , e. (') . ' ., . - '"' STEP = 38 C 8 = 15 73 ."' i F- '

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                                   ;.S IE P = 3 9   C B.= 15 81. ..                      s...          .-
m. .

STEP = 40 C8=1588. . () . STEP = 41 C8=1595. l . STEP = 4 2 C8=1602. STEP = 43 C8=1609. () . STEP = 44 CB=1615. *

          .                          STEP = 45      CB=1622.                                                            .
          .                          STEP = 46      C8=1623.
   , () .                            STEP = 47      C8=1635.
          .                          STEP: 48       C B : 16 41
          .                          STEP = 49      CB:1647.
 ' ' () .                            STEF= 50       CB=1653.
          =

STEP = 51 C8:1659

          =_                         STEP = 52      C8=1665.

(Je3 STEP = 53 C 8 = 16 71.

        - L                          STEP = 54      C8:1677                                                                                                          *
          =

STEP = 55 C8=1682. () _ STEP = 56 CB=1688. - 1.iii ~ 'I STEP- 57 C8=1601 , 4 ,

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          .              - STEP = o1- CB=1714 -                           -        --           -                         -      =                                       __

T. S T E_a = 62 C8=1719 STEP = 03 C R = 1773 . STEP: 54 C9=1728. l STdP= $5 C9=1733.

         .                STEP = 66      C8:1738.

O. ST EP = 67 C B'= 174 2 . STEP = 63 C8=1747. l

        =                 STEP = 69      C 8 = 17 51.                                                                                                                       I O,                       STEe= 7a       C8=1755, n                 STEP = 71      C8:1760.
        .                 STEP = 72      C8=1764 Oa                       STEP = 73      C8=1768
        .                 STEP = 74      C 8 = 17 72 .

STEP = 75 C8=17?6. O- ***. STOP . 1

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           .              TIME: 29.9 TEMP: 200. XEWTy:                                                            - 1076 KEFF: 1 00006                                                                              =

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                .                    0 021251         0.026976            215.46          1373.03          -6900.97          567159.1 0.020704                                                                                                  0 .15 6 9 jt 0-(}.                                           0 026154            215.33          1230 39           -142.64          581701 2          0.175007
            '.                       0 020154         0.025407            215 19 1101 34           -129.05          59T807.4          0 .19 5 5 B 8
            '.                       0.019671         0 024717            215.04           983.66           -117.68          610757.7          0 219615
     < O' -                          0.019242         0.024072            214 89           875.32           -T0 8 . 3 4      623742.9          0.245494         .
     ;          -                    0.019957         0.023463            214.72           774.64           -100.68          635893.9          0.277185 g          .                    0.013T10        0.672831            214.54            680 30             -94.33         647319.4          0 3153b4             l
      .O-                            0 013194 ~

0 022320 214.34 591.36 89.94 658104.0 e.362449 l 0.0T7TO6

            ,.                                        6 U'217T2           214 12           507T11
                                                                                                              - 8'4TYF6T53TB 9~                0.422239

__ 0.017643 0.021231 213.88 426.98 -80.13 678025.6 0.500912 1

0. OT7 TOT- 676To6Ts 2T3Tf6~ 3To.46 -75~51 6'87283.6 0.6o94e6  !

_ 0.017181 0.020131 213.28 277.08 -73.38 696157.2 0.769747 0 01E979 0 0T95 4 5 2T2W 2V6 33 -7077d 70g733 7 1 03118d O. _- 0.016795 0.018894 212.3e 137.66 -68.67 713171 7 1.542738 i, a 0.0T6Tr9 OTOTFO91 211T'El 70.21 -67.45 721901.6 a . 013 919 f ' ss'ffh * *' l

Q gQ & Tl 9t thsh l O- .

                                                    - 00 773 3 gy-.

0.0 5 DTT -- - 11291 0- 501 3 1127377 501 0

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                    ,                        11256.5                     500.6 Q.                                   11239.2                     5'Ob.3
                   .                         11222 0                     499.9
                   ..                        11239.7                     499.5 O ..                                 11137.5                     499.0
                   .                         11170 2                     498.5
                   -                         11152.9                     497.9 O-.                                  11135 7 11119 4
                                                                         +97.3 496.5
                   ..                        111]1.2                     495.6 0-e                                  11oS3 9                     494
  • l 11066 6 492 6 ,
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                .                                                   SEQUOYAH UP T 2 CYCLE                                                 3

() . MOLhhgg (XENON DATA 47CJR XE SP () .. TI M E POWER XE I SM PM WORTH WORTH u (HRS) (%) (% EG) (% EQ) (% EQ) (% EQ) (PCM) (PCM)

               ,                                                                          ......                         ...... ,.....                                           . . . . . _, g p ,

() .. ---- "" 00 0.0 75.0 0.0 94.8 94.8 75.0 100 0 75 0 1 1 I

               .                                                           75.0           100.0                               75.0
               ..                  0.0               1.0     95.6          74.6           100.0                               75.0

() =. 01 2.0 95 5 74 2 100 1 74 9 01 30 97 3 73 9 100.1 74 9 +

              .                '~ 0 2                40      99 0          73 5           100 1                               74 8                                                                      - '

() '.. . 02 5.0 98.8 73 1 100 1 74 8 - 0.3 6.0 99.6 72 8 100.2 74.7

              .                    03                7.0  100.3       . 72 4              100.2-                                 47                                                            *

() l.. 04 8.0 101 0 72.1 100 2 74.6 ,. 04 90 101 8 71.8 100 2 74 6

              .                    0.5             10.0    102.5           71.5           100.3                               74.5

() ' . 05 11 0 103 1 71 1 100. 4.

              .                    06              12.0   103.8            70.8           100.3                              74.5                                                            *
              .                    06              13 0   104 5            70 5           100 3                                  44                                 -

() ' . _ 0.7 14 0 105 1 70 2 200 3 74.4 . 0.7 15.0 105.7 69.9 100.4 74.3 0.8 15.0 105.3 69.7 200.4 74 3 08~ 17.0 105 9 69.4 100.4 74.3

      > i.' r. i            ~

O.9 18.0 107.4 69.1 100.4 74 2 ~

   "T .% -                         0.9             19.0   107.9           68.9            100.5                              79 2                                            ,

() ' .. . __1 0 20.0 109.4 68.6 100.5 7.4.2

           '.,                     10              21 0   108.9           68 3           100 5                              74 1
          '.                       11              22.0   109.4           68.1           100.5                              79.1

() .' . ' Ir1

1. *c 23 0 24.0 109 8 110.3 47.9 67.6 100 5 74 1 ,

100.6 74 0 12 25 110.7 67.4 100.6 74 0 () ,'. : L '. '13 26.0 111 1 767 2 100.6 74 0

       . 4 ..                 j. 1 3              27.0    111 4           67.0 , 100.6                                      73 9                                          .
              .                    14              28.0   111.8           66.8           100.6                              73 9

()'*.'

  • 1.4 29 0 112.1 66.6 100.6 73.9 15 30.0 112.4 66.4 100.7 73.8
             .                    15              31.0    112 7          66.2            200 7                              73 8

()'. '. 16 32.0 112 9 66.0 100 7 73 8

  • 16 33.0 113 2 65.9 100 7 73 8 -
            .                     1.7             34.0    113.4           65.7           100.7                             73.7

() . 1.7 35.0 113 6 65.5 100-7 ,73 7 e - 18 35.0 115 8 65.4 100.7 73.7 ', l '. 18 37.0 114 0 65.2 100 8 73 7 ()' . 1.9 38.0 ~ 114 2 65.1 100 8 73 6 l

            .                     1 . '9          39.0    114.3          6570            1O'O.8                             T3 . 6
            .                     20              40 0    114.4          64 8            100 8                             73 6

() . - 20 41.0 114 6 64.7 100.8 73.6 I 21 42 0 114 6 64.6 100 8

                                                   -                                                                       73 6                                                                   *                  -
                                                                                                                                                                                                                      ,i 21              45.0    114.7          64.5            100 8                              73 5                                                                                      - l
   @.                             2.2             44.0    114 8          64.4            100.8                             73.5                                         ,
                                                                                                                                                                                              ..C,* t ] l
           .                      22              45 0    114 8          64.3            200 8                             73 5                                  ,,,.-

23 114 8-- j-

                                  . ,             45.0.                 --64.2           100.9                             73 5                                  '.'[4                      gy$pg.

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                                                                                                                                                                                                                                                          ,e,3~,~

pgl ' " ~~ ~ 2.5 50 0 114.7 63.8 100.9 73.4 ' 2 . 5 ~ 71'. 0 '~ ~ 11T; I 637 B~'' 'I O G'9 73T4-2.6 52 0 114.6 63.7 100.9 73.4 2.6 ~~ 5 3. 0--" 11TsT~~ 6T.' i I 17 0 . 9 ( 3 .C - ( 2.7 54.0 114 4 63.6 100 9 73.4 ' l O , -- - - 2.7 55'.0 - 114 . 3 " - 6 3. 6 - 10 0 . 9 - 7 3 . 3~~ -~

                      ,                                2.8                                 56.0                        114.1            63.5           100.9                                       73.3 O ,,                                         29                                  Ss.0                        113.8            63.5           100.9                                       73.3                            ,
                       ,                               3.0                                 60.0                        113.5            63.4          101.0                                        73.3                         li O' .                                         3o                          ~To
  • 213 3 63
  • 1 - 73-
                       ,                               3.1                                 62 0                        113.0            63.4          101.0                                        73.3
                       ,,                              31                                L.                                 .           e . a+                        .                                .

Q 3.2 64 0 65.0 112.6 63.4 101.0 73 3

                       ,                               J.2                                                             112.3            63.4          101.                                             .                                                              --

s

                 '.                                    3.3                                 66.0                        112.0            63.4          101.0                                        73.3                                                                    ,.    -

O' .. - - - - - - - -

                 '.                                    3.4                                 68 0                        111 5           63.5        '101 0                                          73.3                                                                              l
                 ',                                    34                                  69 0                        111 2         .63.5            101 0                                            .

l Q' ' 3.5 70.0 110.8 63.5 101.0 73.2 l 3.5 71 0 110. . . .

                  ',                                   3.6                                 72.0                        110.2           63.6           101.0                                        73.2 Q',                                                .                                        .                     .o              .                         .                                .
                       ,                               3.7                                 74 0                        109 5           63.7           101.0                                        73.2                                                          -

4.7 75.0 109. . . < . - O' 3.7 0.0 109.1 63.8 101.0 73 2

                            " " " " ~' ' 5 . 7                                         0.0                           12 9. 6~        51.7           102.1                                       '71'. 4
                                                                                                                                                                                                            '                                            ~ " ~ - '

7.7 00 141 4 41 9 103.1 69.5

                       .,                              977                                      07 0--'~ ~14 6 . 6                     34.0           104.T
                                                                                                                                                                 ~

6777-

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                                                                                                                                                                                                                                                                        ~ " '
                 ^4-                               11 .7                                        0.0                    146.6           27.6           105.1                                        66.0                                                                -
   .          ' O.                                                                                                     14 .            22.            106 1                                          4.

O .. . 15.7 0.0 137.1 18.1 107.0 62 6. 17.7 0.0 129.5 14.7 107.9 61 0 19.7 t'. 0.0 121.0 11.9 108.8 59.4 O'. " . 21.7 0.o 112.0 9. 9. .9

                                     '" 23.7
                      .                                                                         0.0                    102.7              7.8         110.5                                        56.4                                                                  -
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  • i i 27 7 0.0 83 8 51 112 2 -
                                                                                                                                                                                               ~53.5
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                                                                                                                                                                     .9                               .2 31.7                                          00                       66.7             3.4          113.7                                        50.8 Q I'.                                   33.7                                          0.0                      59.0             2.7         114.5                                         49.

35.7 00 52.1 2.2 115.2 48 2

                  '.                             37.7                                          0.0                      45 9        W1                               .                             4  .0 Q'.                                     39.7                                          0.0                      40.3             1.5          116.6                                        45.8                                                               .
                  '.                             41.7                                          00                       3C1'~2                        11             .2                            44 6                                                           -
                     .                           43.7                                          0.0                      30.9             1.0          117.9                                        43.5       ,                                                ;
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                                                                                                                          .              U t" T 2 CYCLE 3     .
                                                                                                                                                                             .-4             _ _ . .               _ _ . - . . . _ .                      ....
                       ,                                                                                                                                                                                                                                    ~-

XE SM Q .. TIME POWER XE I SM PM WORTH WORTH (HRS) (%) (% EQ) (% EG) (% EG) (% EG) (PCM) (PCM) Q 0.0 7'5I D 94.8 75.0 1 . . 8

                       ,                             3.0                         0 1                        131.2              54.8         101.6                   72.1
                       . , -                          30                         1.                               .                 .                    .                   .

Q 31 20 132.0 54.2 101 7 72.0

                       ,                             31                               .0                    1 24                    .           0 .                          .                                                                 .,'
                       .                      - 3.2                              40                         132.8             53.7          101 7                   71.9                                                                                 - -

Q. 3.3 6.0

                                                                                      .                          .                     4                 .8                 .9                                      -                                  -
                      .                                                                                    133 5              53 2          101 8                   71 9
                       .                             33                          70                        133 6              5    .        101.                            .                                                                   s Q .'                                     3.4                        80                         134 1              52.7          101 8                   71 8
                      .                              3.4                        90                          134.              52.5          10 .9                       1.7
                       .                             35                     10.0                            134.6             52.2          101.9                   71.7 Q.                                       3.5 36 11.0 12 0 134 9 135 1 52 0          101.9                   71 6
                       .                                                                                                      51 8          101 9                  71.6                                                                      *
                       .                             36                     13 0                           1   o.                 .       .             .                  .6                                    .

Q. '~ ~ 3.7 14.0 135.5 51.4 102.0 7,1.5 3 .7 15 0' 135.7-~ 51."2 ' 102.'O ~ ' 71 '. 5" '

                                                                                                                                                                                                                '                                ~
                            ~

38 16.0 135.8 51.0 1C2.0 71 5

                                             ~~3-~8 ~ ' 17 .'0 '                                                                  ~
                                                                                                                                                   ~-
                                                                                                        ' 1'3 5T9           ~5 0 .' 9'~ ~1~0 2 .~b              ~7f.4
                      .'                            3.9                    18.0                           136 1               5'0.7         102.0                  71 4                                                                            -
                      .                             3.9                    19.0                           136.1               50.5          102.1                      1.4 Q *~.                                    40                     20 0                           136 2               50.4          102 1                  71 3
                      .                             40                     21 0                           136.2               50.2          102.1                      1.3
                     '.                            41                      22 0                           136 3               50.1          102 1                  71 3 Q  .                                 41                      23.0                           136 3               49.9          102 1                  71 2 4.2                     24.0                           136.3 i'.-  .

42 2 .0 13 .2 49.8 49. 102.2-102 2 71.2 12 Q j.9

  • 43 26 0 136.2 -49 5 102.2 71.1
            ..     ..                     ..      43                       27 0                           136 1               49.4         102 2                       11
                   '.                       "4 . 4                         28.0                           136.0               49.3          102.2                  71.1
  • O 'k. '

4.4 29.0 135.9 2.2 71.0 4.5 30.0 135 7 49.1 102.3 71.0 k 45 31 0 135.6 49 0 02. 1.0 0L 4.6 32 0 135.4 48.9 102.3 71 0 -

                   .                             4.6                       33.0                          135.2               48.8          102.3                  70.9
                   .                             4.7                                                     135.0 i

34.0 48.8 102.3 70.9

      ,0 -

4.7 35.0 134.7 48.7 1022 7 9

      *            =                             48                        36 0                          134.5               48.6          102.3                  70 9                                                                                         ,
                  .                             46                         37 0                          174 3               487 6                     .
      'O
       '                 ~                      4.9                        38.0
                                                                            ~

134.0 48.5 102.4 70.8

                  .                             49                        39.0 ~~i T32                                       48 5          102.4 - 70.8 5.0                        40.0                           133.4               48.4         102.4                   70 8 50                         41 0                          153.1               48 4          102.4 10.8 51                                                                                                                                                                                                               ;

42 0 132 7 48.3 102.4 70 8

                  =

O 5.1 52 43.0 132.4 48.3 ll C . .,, , q. . g ___ 44 0 132.0 48.3 102.4 70.7 4 .- i 5a2 l'31.6

           ,.___                               5.3 45.0 46 0                           131 3 48.3 48.3 102 N                                                              *
                                                                                                                                                                                                               .u                          .                 s 102.4                  70 7                                        12[

m .. s --  ; j--- , , . . ,

d Q, 54 49 0 u $. ld O yj d ['f 1(.h ' ,

                                                                                                                                                                   ![                                                                 qo% , c 130 0             48 3         100 5                             06                                                1 l
                       .                     5.5             50.0                          129.5             48.3        102.5                            70.6 i

5.5 51.0 129.1 T8. 3 10275 7~ .6 ' O 5.6 52.0 12s.6 48 3 70.6

  • O .

5 e 5.7 53.0 54.0 12sv1-~ T8T3~102.5 127.6 48 3 102T5 102 5 TOTE-70.6 Q. 1H71 5.7~- 5.8 55.0 56.0 125.5 48 K 48.4 102. 102.5 0.6 70.6

                      .                      58          . 57.6                           125.0            48.5         102.5                              0.

Q .. 5.9 58 0 125.5 48 5 102 5 70.5

                     ,,                      5.9            59.0                          124 9             48.6         102.5                              0.
                     .                       6.0            60.0                          124.3             48.6         102.5                            70.5 Q                                6.0            61 0                          125.8             48.          102.5                              0.
                     .                       6.1            62 0                          123.2             48 8         102.5                            70.5
                     ..                      61             6        .0                   122 6             4   .        1 20                                  .

Q 6.2 6.2 64.0 65.0 122.0 48.9 102.5 70.5

                     .                                                                    121.4             49.0         102.5                            70.5                                                                                                -
               ,'..                          6.3            66.0                          120.7             49 1         102.5                            70.5                                                                                                     - -

Q, .2 . .0 6.4 68 0 119 5 49 3 102 5 70.5

                  *. 7. 4                                   69 0                         1TS.8              49 4         102.5                            70.5                                                                                             s Q                              6.5            70.0                         119.2              49.5         102.5                            70.5 6.5            71.0                         117.5             49.6         102.5                               05 115.8
                     .                       66             72.0                                           49.7          102.5                            70.5 Q..                             66             73 0                         116 1             49 8         102 5                             70.

6.7 74.0 115.5 50.0 102.5 70.5 ~

                     .                       67             75.0                         119 8             50 1         102.                                  .                                                                 -
            @ ' , ~~ ~ ~ ~ " 8 . 7 5.7               00                        114 9             50.1         102.5                            70.5 0.0                      127.9"          ' 4 0 .'6     ~ 103.6 ~ "68.7 ~

10.7 00 134 2 32.9 104.6. 66.9 12.-7' ~

                                              ^

0.0 - 13 5~.' '4" F677 "--~1'0 5 5 15. 2-~

                                                                                                                                                                                                                           ~~'~                      "

f.- . 14.7 00 133.0 21.7 106.5 63.5 -

             '%                            16.7                0.0                       128 0             17.6         10 .4                            61.9 Q .-            ,

18.7 0.0 121.4 14 2 108.3 60 3 dc

              '"/,,

20.7 0.0 113.7 11.5 109.2 58.7

                    .                      22.7                0.0                       105.5                9.4       110.1                            57.2
         'O a.. '                          24.7                00                           9s.9           -7 6         110.9                            55.7
       ]e       '?
        . . T. '-' N 26.7                00                           89.0              62       -111.7-                           54.3                                                                                                    '
         ~.                               ,28 7                00                           79 2              50        11 .                                     9 30.7                0.0                          70.9       .      4.0       113.3                            51.5
       -'. .gfQl' ,.- ;',, s 'c ~ .' ' ' k 32.7 34.7 0.0 0.0 63.1 55 9
                                                                                                          . 3. 3
                                                                                                           '2.7' 114.6 V 114.8                            48.9 O'-                                                                                                                  sn.
             '). *J.                                                                                                                                     46'*                                                                          "

5. O' . . 42.7 0.0 33.5

              'a) 91.7               0.0                          29.3 1.1 0.9 117.5 118.2 44.1 4 2 . 9'
                  .                        46.7               00                           25.6                                                                                                                                                                          .

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SEQUOYAH UN 2 CYCLE 3 O- .,

                                                                                                     "o C % gT     XENON D A TA +5E
                                                                       ,                                                                                XE                      SP

() o TI M E POWER XE I SM PM WORTH WORTH 1 I u (HRS) (%) (% EG) (% EG) (% EG) (% EG) (PCM) (PC1)

                                                                                                                                                                             ..... ,                e,

() . -' O.0 75.0 94.8 15.0 100 0 75 0 t {

                 .                                6.0                         0.0        145.1         40.0        103.2              69.4 60                          1.         145.2         39.8        1          .2      69.3 C)-.                                     6.1                         2.0        145 3         39.6       103 3               69 3 l

51 3.0 145.5 39.4 103.3 69.2  ;~

           - ..                                   6.2                         4.0        145 5         39.2       103.3 l

(). = 62 6.3 5.0 6.0 145.6 145.7 39.0 38.8 103.3 103.4 69 2 69 1 - - 69.1

            . .                                   6.3                         70         145.7      . 38.7        103.4 ,             69 1                                                    v

() .-. 6.4 80 145.7 38.5 103.4 69.0 64 90 145 7 38 4 103.4 69 0

                .                                 6.5                        10.0        145.7         38.2       103.4               68 9

() .~ 65 11 0 145.7 38 1 103.5 68 9

                .                                 6.6                        12.0        145.6         37.9       103.5               68 9                                               e
                .                                 6.6                        15 0        145 5         37 8       103 5              68 6

() - 6.7 14 0 145 5 3.7 . 7 103.5 68 8 .., 6.7 6.8 15.0 145.4 37.6 103.5'~63 8 15.0 145.2 37.5 103.6 63.7 6.8 17.0 195.1 37.3 103.6 68.7"~~

                .-                           <6.9                            18.0       144 9          37 2       103.6              68 7                                                       -
                ..                               6.9                         19.0      144.7          37.1        103.6              68 6

() '.~ . 5 7.0 20.0 144.5 37.1 103.6 68.6 7.0 21 0 149 3 37.0 103.7 68 6

                .                                71                         22.0       144 0          36.9        103.7              68 5 O ..-                                    71                         23 0       143.8          36 8        103.7              68 5
           , f. _                                7.2                        24.0       143.5          36.8        103.7-             68.5
  • 4 7.2 25.0 143.2 36.7 103.7 68.4

(). 2 .e 7.3 26.0 142 8 36.6 '103.7 68.4 7.3 27.0 142.5 36.6 103.7 68 4 J. 142 1 7.4 28 0 36.5 103.8 68.4 () a ' 7.4 29.0 141.8 36.5 103.8 68 3

               .                                7.5                        30.0       141.4           36.5        103.8              68.3
               -                                7.5                        31.0       140.9           36.4       103 8               68 3

() . 7.6 32.0 140.5 36.4 103 8 68.3 *

              .                                 76                         33 0       140 1           36.4       103 8               68 2
              .                                 7.7                        34.0       139.6           36.4        103.8              68.2 A

() . 7.7 35.0 139.1 36.4 103 9 68 2

              -                                 7.8                        36.0       139.6           36.4       103.9               68.2                                                                 -
              .                                 78                         37.0       138 1           36.4       103.9               68 2

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  • 7.9 38.0 137.6 36 4 103.9 68 1
              -                                79                          39.0       137.1           36.4       10'3.9              6C.1 80                          40.0       136.5           36.4       103.9               68.1                                                    ~

80 41.0 135.0 36.4 103.9 68 1 . 4 81 42.0 135.4 36 5 103.9 68.1 "A'

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S EQ UOY A H ' U' T2 CYCLE () , PCLQEED XENON DATA 3 4~ G; C-xE SM () ,, TIME POWER XE I SM PM WORTH VOR T H

                      .           (HRS)      (%)           (% E Q)        (% EQ)         (% EQ)

(% EQ) (PCM) (PCM) l () . ---- - ' " J . C 75.0 94.8 75.0 100.G 75.C d- $ C.

                       .          .S.O        0.3          146.2            32.4                                                                                       /

104.2 67.6 e.u ... 146.3 32.2 104.2 07.5 3 () . 8.1 2.0 146.3 32.1 104.3 67.5 i . o.1 3.0 146.2 31.9 104.3 67.4 i-j 146.2

                      .             8.2       4.0                          31.8         104,.3        67.4                                                                      - -

() . 8.2 5.0 146.1 31. 7 104.3 67.4 "

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                      .            8.3        7.0          146.0        - 31. 4         104.4'        67.3

() . 8.4 8.0 145.9 31.3 104.4 67.2

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                      .            8.4        9.0         145.7            31.2         104.4         67.2
                      .             8.5     10.0          145.6            31.0        104.4          67.2

() . 6.5 11.u 145.4 3C.9 104.5 67.1

                      .            8.6      12.0          145.3            30.8        104.5         67.1                                                              '
                      .            8.6      13.)          145.1            30.7        104.5         67.1
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                  ..:              8.9      19.0          143.5            30. 3       104.6         66.9

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                     ."-~~~~ 9.0            21.0          142.9            30.2        104.7 66.8 a

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            " ' .*i ).             9.2      24.0          141.7
                                                                           ' :2 30.1        104.7 9.2      25.0          141.3            30.1        104.7         66.7
() E9 - 9.3' 26.0 140.9 30.0 104.7 66.7
                     .c            9.3      27.0          140.5            30.0        104.7         66.6 9.4      23.0          140.0            30.0        104.8         66.6

() ., 9.4 29.') 139.5 30.0 104.8 66.6

                     .             9.5      30.0          139.0            30.0        104.8
                     ..            9.5      31.0          138.5            30.0        104.8         66.5
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                    .              9.6     33.0           137.4            30.0        104.8         6-
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34.0 136.8 30.1 104.8 66

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I . 9.8 37.0 135.1 3L.2 104.9 66.4

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                                                                                                                         ~              ns% y M.%                          r:f XENON / S AM AR IUM CALCULATIONS                                       '" 2 Q,

SEQUOY _ -UN T 2 CYCLE MCL 3 J a_,r_ ENON DATA XE SM Q TIME POWER YE I SM PM WORTH WOR T H (HRS) (%)~ (% EO) (% EG) (% EG) (% EG) (PCM) (PCM) Q ,, u.o 75.0 . .0 100.0 75.0

                 ,,                10.0                                    0. 0          143.2        26.3       105.2          65.8 1 c . .,3                               1.0           143.1 26.1       105.2           65.8 O ,,                      10.1                                    2.0           143.0       26.0       105.3           65.7 25.9       105.3           65.7                                           i-
               ..                  10.2                              , 4. 0              142.7       25.8       105.3           65.7                                                 - '

O. 10.2 142.6 25.7 105.3 65.6 - 142.4 10.3 6.0 25.6 105.3 65.6 Q .- 10.4 8.0 142.'1 25.4 105.4 - 65.

                .                 1u.4                                    9.u            141.9       25.3       105.4          65
                ,                 10.5                                 10.0              141.6       25.2       105.4          65.4 O.                        10.5                                 11.0              141.~4      25.1       105.4          65.4
                .                 10.6                                 12.0              141.2       25.1       105.5          6                                            *
                .                  10.6                                13.0           -

14C.9 25.0 105.5 65.3 0*. 10 7 14 0 1'C 6 ?5 1 105 5 65 3 Iv.7 15.0 14'.3 24.9 105.5

1. 65.3 3 16. ] 14 C. ' 24.0 105.5 65
                .                          8                           17.u              139.,6      24.8       105.6          65.2
           ,<i.z                  10.9                                 18.0              139.3       24.8       105.6                                                           -~
                .                 10.9                                 19.0              138.9       24.8 O.                        11.0                                                                          105.6          65.1 i                                                                      20.0              138.5       24.7       105.           65.1                                             -

21.0

       ..                         1                                                      138.1       24.7       105.6          65.1
                .                 11.1                                 22.0              137.7       24.7 O.                                                                                                      105.6          65.

1.37.2 24.7 105.7 65.c

                .                 11.2                                 24.0             136.8        24.7       105.7-         6 5. C                                             
               .                          2                         .25.0               136.3        24.7      105.7 O.      .

11.3 26.0 135.8 24.7 105.7 65.0 64.9 4-0 24.7 105.7

                                *11.4                                                                                         -64.9 28.0              134.7        24.7      105.7           64.9                                                '

O- ' 4 29.0 134.2 24.7 105.7 64.9

               .                 11.5                                 30.0              133.6        24.8      105.8           64.8 11.5                                 31.0              133.0       24.8       105.8

() .- 11.6 32.0 132.5 24.8 105.8 64.8 64.8

              .                  11.6                                                   131.8       24.9       105.8           64.8 11.7                                 34.0              131.2       24.9       105.8           64.8 0                                                                                     .6-    25.0       105.8           64.7 1          .                  11.8                                 36.0              130.0       25.0       105.?           64.7
   !          .                       .5                              37.0              129.3       25.1       105.8 10 -
    '                            11.9                                 38.3              1 ? *. 7    25.2       105.s 64.7 64.7                                           -
              .                  11.9                                 39.0                                     105.8 12.0                                                                                          64.7 40.0              127.3       25.3       105.9           64.7 s Oy 12.0                                41.0               126.6       25.4       105.9 A

12.1 64.6 42.J 125.9 25.5 105.9 64.6 j

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46.0 123.0 e 25.9 105.9 6 4. 6 N'i' O . . .y a . . . . .

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12.6 5 3 . .- 1T7.6 26.8- 1 C~5~-9 64.5

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               ,,         -- 12. 8 - - 5 6. 0             115.1         -27.2    ~105.9        64.5
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                           -13.0 - - 6 0.0                111.8           27.8    105.9        64.5 O ' ,,                      23.o        i,           iii.            2e.c    105.9        64.5
               .                 13.1      62.0           110.1           28.2    105.9        64.5 1u5.9        64.5 Q.                          13.2      e4.0           10?.4           28.6    105.9        64.5                                            -
               .                    .      6 .            1      .6      28.8     105.9        64.5                                                  '
               .-             '13.3      - 66.0           106.7           28.9    105.9        64.5 Q.                             .      6 .                   .       29.1     105.9        64.5
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               .                    .      71.0           102.4           3C.0    105.9       64.5                                                        ,
               .                 13.6     72.0'           101.-5          30.2    105.9       64.5 i

Q.. 13 105.9 64.5 13.7 7 & .0 99.8 30.7 105.9 64.5 p .

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  • 31.7 0.0 67.5 4.7 113.6 51.C
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37.7 0.0 48.1' 48.4  ;., 2.5 115.7 '47.2

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O- ' 43.7 0.0 33.1 1.3 117.7 43.6

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             -                51.7          0.0             19.5           0.6    12C.2 53.7                          17.0 39.3 0.0                            0.5    120.8       38.3      I
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                                    ...           1350.)                582.3             90.0       0.991024           0.995729             9772.15 l-                       1200.0                 567.2                                                                                  1559._14 90.0       0.989497           0.994812             9115.12           1589.6A
               . . .. . . -                       1050.0                550.5             90.0       0.987971           0.993801             8511.53

() . . 1619.15 90C.0 532.0 90.0 0.986444 -0.992674 7947.22 1679.47

                          ..                        750.0               510.8             90.0       0.984918           C.991393             7411.53
    ;                                               600.0               486.2                                                                                  1769.98 90.0       0.983391           0.989898             6893.95            1994.43

() ..- , 450.0 456.3 90.0 0.981865 0.988083 6385.12 2120.73 _ '300.0

                         .f.                                            417.3             90.0       0.980338           0.985720             5877.82           2491.50
  ,                  ..-                            150.0               358.4             90.0       0.978812           0.982146             5370.60

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SVL (I) S VP ( I) VPS(I) MP S (I) DNPS(!) () . . 0.021251 MT(I) SVPS(I) 0.026076 1298.41 R274.00 0.00 5?70 23. A 0.607Non

                         .                    0.021251          0.026976                215.46         1373.03          -6900.97

() . 0.020704 567159.1 0.156920 0.326154 215.33 1230.39 -142.64 581701.2 0.175007

                        .                     0.020154          0.5254C7                215.19         1101.34 y                      .                     0.019671          0.024717                215.04
                                                                                                                         -129.05. 596807.4                   0.195388 983.66         -117.68            610759.7         0 .21 8615 0.019242         u. 0 24 0 72            214.89            875.32 1 () ..                          0.018857          3.323463                214.72            774.64
                                                                                                                         -108.34
                                                                                                                         -10 0. 6 a 623742.9         0.245494.

635803.9 i) u.016510 6.977185 0.0 22 BE1 214.54 680.30 2

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                        =

u.016079 U.?195*5 212.89 206.!3 i () .

  • 2.016795 0.313604 212.38 137.66
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                                                                                                                            -66.67 ' 713171. 7 ' t i . 54 2 7 3 8}

u.C16629 0.018091 211.e1 70.21

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            .            (HRS)            (%)            (% EG)                   (2 EQ)         (% EQ)          (% EQ)              (PCM)               (PCM) 93.5 75.0 10C.0

_ap Q 0.0 75.0 75.C ]_

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            .              v.u                .J              +4                    74.6         100.0              75.C Q .,                 0.1              2.0              95.0                   74.2         100.1              74.9
            .              v.                 .u                   5. 7             73.9         100.1              74.9                                            '
            .              0.2              4.0              96.4                   73.5         100.1              74.8 Q                      .                .              97.1                   73.1         100.1              74.8
            .            .0.3               6.0               97.8                  72.8         100.2              74.7
            .              0.3              7.0               98.5                  72.4         100.2              74.7 O..                  G.4              8.0              99.1                   72.1         100.2              74.6 0.4              9.0              99.8                   71.8         100.2              74.6
            .              0.5            10.0           100c4                      71.5         100.3              74.5 0                      .5           11 0           101 0                      71.1         100.3              74.5
             .             C.6            12.0           101.6                      7C.8         100.3              74.5
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                           .7             15.s           103.3                      H.0          1 :. . 4         74.3 C.6             16.0          10348'                     69.7         1 *. i. 4          74.3
             .                                                           3          69.4         100.4              74.3 100.4 0.9            18.0           104.8                      69.1                              4
             .             0.9             19.0          105.3                      68.9         100.4              74.2                               -                -

O.* 1.0 20.0 105.7 68.6 100.5 74.2

             .               .            21.0            106.2                     68.3         100.5              74.1
      .    ..              1.1            22.3            106.6                     68.1          100.5             74.1

., O. 1.1 23.u 107.0 67.9 100.5 74.1 c.

. 1.2 24.0 107.3 67.6 100.5 74.0 5.0 107.7 Q'

67.4 100.6 74.0 ,. 1.3 26.0 108.0 67.2 100.6 74.0 '

             .               .               7.0          108.4                     67.0          100.6             73.9
             -             1.4             28.0          108.7                      66.8         100.6              73.9 O         M8. 9                                                               66.6         100.6              73.9
 ;           .             1.5             30.0           109.2                     66.4          100.6             73.8 l          .              1.5             31.0           109.5                     66.2          100.7             73.8 O-16              32.0           100.7                     66.0          100.7             73.8
                           ~1.6           33.0            109.9                     65.9          100.7             73.8                                                            '

1

            -              1.7            34.0            11C.1                     65.7          100.7             73.7
   ,0                       1.7            35.0           110.3                     65.5          100.7              73.7
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65.1 17 2. F 73.6 i2 . 39.0 110.9 65.0 100.8 73.6 e.v . . -

            -              2.0             40.0           111.0                     64.8          100.8             73.6                                           46
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2.1 42.0 111.2

c. 5 100,9 1.x . a 73.6 71.5
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2.2 45.9 64.3 73.5

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3.5 70.0 107.9 63.5 101.0 73.2

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i .' 13.7 0.0 131.9 22.3 106.0 64.3 J () . ,. 15.7 0.0 125.7 12.1 106.9 6 I

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() ' . - 27.7 0.0 75.2 5.1 112.0 53.5

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() - 33.7 0.0 52.9 2.7 1 ' 4. T 49.5 i i

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XE SM Q ,, - -----T I M E POWER XE I SM PM WORTH WORTH (HRS) (%) (% EQ) (% EG) (% EG) (% EQ) (PCM) (PCM)

                        ,,                                                                                                       ______           ______           ______                      _____                   ____                                c,c_

O 0.T 7 STO 93.5 75 0 T0 0'. 0 7b 0 7 j

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3.0 0.0 126.4 54.8 101.6 72.1

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1 Q -31 2.0 127.1 54.2 101.7 72.0 --

                        .                            - 31                      30           127.5                                    53 9         101.                     .

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Q. 3.2 3.3 5.0 6.0 128.1 128.3 53.4 53 2 101 7 71.9

                        .                                                                                                                         101 8              71.9                                                                             -

4

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                        .                                3.4                   9.0          129.1                                    52 5         101 8                1.
                        ,                                3.5                10 0            129.3                                    52 2         101.9              71.7 Q ,,                                         .                  1.0          1       9.                                 2.             1.                  .
                        .                                3.6                12 0            129.6                                  51 8          101 9               71.6 i                                                     36                 13 . 0
                         .                                                                  129.8                                   51 6         1017                     .

E Q ~ 3.7 14.0 *130.0 . 51 4 1 01 .9 71.5 7 ~~~3 .7 15 0 130 1 51 2 102 0 71.5 A 3.9 15.0 130,.2 51.0 102.0 71.5

                        .                                38                 IWO             130.3                                  50 9          102 0               71 4                                                                                  _
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Q.. 4.0 20.0 130.5 50.4 102 1 71 3

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  !                  1              3"                 '4.2                24.0             130.4                                  49.8          102.1               71.2 l              . .                    .

42 25 0 130.4 49. 102 1 12 i O. ' ' 4.3 26.0 130.3 49.5 102 2 71.1 j - . 43 27 0 130.2 49 9 102 2 11 4

                        .                                4.4               28.0             130.1                               '49.3            102.2               71.1 O..                                       4.4               29.0             130.0                                  49.2          102.2               71.0
                        .                                4.5               30.0             129.9                                  49.1          102.2               71.0 a                                 45                31 0             129.                                   49.0          102.                    .

1 O. ~ 4.6 32.0 129.6 48.9 102 3 71 0

                       .                                 4.6          - T3 . 0              129.4                                  48.8          102.3               70.9 9                     .                                 4.7               34.0             129.2                                  48.8          102.3               70.9
           ,0 -                                          4.7               35.0             129.0                                 48 7           102.3             -70 9
           -          .                                  4.8               36.0             129.8                                 48 6           102 3               70 9
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O~ 4.9 49 3e.0 12s.3 48.5 102.3

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70.8 5 I 5.0 39 0 128.0 e fi~5 1 bT. 3' 7 0 8 ~ 1

                      .                                                    40.0            127.8                                  48 4           102.4               70.8                                     '

S.hhh _ 5.6 4176~~ T27 5 48 4 102.4 7 77. 8 w.

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51 42.0 127.2 46.3 102.4 70 8  ? Mb.,;1 ' i 5.1 4370 126.9 46 3 "IT 7~4~~ ~'~7C -

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O- 5.2 44.0 12s:5 48 3 ica.4 70.7 @,, ,

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                     -                                  52                 45.0            125.2                                  48 3           15c.4                   .             ,.                     g,                                            - ec

[ "$.3 - 46.0 -125.9 48 3 - 102 4 < 7 0 7 hy w - l O _,. xrai-

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O I'23I i :'O O UD I '"" ' - -

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t o '. 5.5 5C.0 124.3 48.3

                                          -                                                           102.4    -

70.6

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                              = " T. 6 ' ' 'T3 . 0               123.~1                  4 5.T        l'0 2~.'5              T7. 6 5                                 5.7           54.0       122 6                   49.3         102.5                  70.6 l       Q.                        5.7'          5570       122.2                   4 8 . 4--"T0 2~5-~ 7%~6--                                                                 ~
                    .                   5.8           56.0       121 7                   48.4         102.5                  70.6 e                                 5.8~~         57.0       121 3                   48 5         10     .                  .

Q .. 5.9 58.0 120 8 48.5 102.5 70.5 [

      ;-            ..                  5.9           59.0       120.3                   48.6         202.5                   05 i              .                   6.0           60.0       119.8                   48.6         102.5                  70.5

[ Q .. 6.0 61 0 119 4

     /              .                   6.1           62.0       118 8                   48 8         102.5                  70.5 f              ..                  61            63.0       118 3                   48.8        '102.5                  7C~5 I        Q                         6.2           64.0       117.7                   48.9         102.5                  70.5                                       ./-

0 . 6.2 65.0 117.2 49.0 102.5 70.5 . . i- . 6.3 66.0 116 7 49.1 102.5 70.5

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4 . 6.4 68.0 115 6 49.3 102.5 70.5 - . -

    '.'             .                   6.4           69.0       115.0             . 49.4         102.                   70.                      .

f ,Q 6.5 70.0 114.4 49.5 102.5 70.5

   ,,            ..                                       0     113 8                    49.6         102.5                   0.                        >

i . 6.6 72.0 115'.3 49.7 102.5 70.5

    .j        Q.                        66 6.7 73 0 74.0 112 7                    49.8         102.5                   05                                    .,

l< . 112.1 50.0 102.5 70.5 [ . 6.7 75.0 111 5 50 1 10 . . O

   .                                    6.7            0.0      111 5                   '50.1      .102.5                    70.5
                       ' ~ ~ ~ ~ ~ ' ~ '8    7      -.0C       '122 0                    4 'O . 6     103.5"               '67. 7
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l I.) 10.7 0.0 126 5 32 9 104.5 66.* i

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                    .                12.7              0.0      126.4                    26.7         10575                --~E-~

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v 14.7 0.0 123.2 21.7' 106.4 63.5 i y . 16.7 00 11 .8 17.6 107.3 61.9 - '

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    .              .                 22.7              0.0         95.6                    9.4        109.9                  57.2 h) Q=
   ~

24.7 26.7 00 87.5 7.6 110.8 $5.7 .

                   .                                   00          79.2                    6.2       111.6                   54.3 4               -                 28 7              00        ,   12                    5.0       11 .                       .9
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1 O- - 30.' 0.0 63.7 4.0 113.1 51.5

                                                                                                                                                                 ~

7 . 113.9 50.2

                   -                 34.7              0.0         50.2                    2.7       114.6                   48.9 l

O- 36 7 00 44 4 22 115.3 47 7 l = 38.7 0.0 39 1 1.7 116.0 46.4 l - 40.7 0.0 34.3 1.4 116.7 45.2 j O- 42.7 00 30.1 1.1 117.3 44.1 1'

                  -                  44.7              0.0         25.4                    0.9       117.9                   42 9
                  .                  46.7              00          23.0                    0.8       118.6                   41.8   [ _
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Xi SP () .. TIME P_0WER XE I SW PM VORTH V OR'T h

                ..                     (HRS)         (%)         (% EG)         (% EG)    (% EG)              (% EQ)        (PCM)                                       (PCr)
                                                                                                             ...... _ .....                                                                        g__

() ... 00 75.0 93.5 75.0 100 0 75.0 l l 6.0 0.0 138.6 ~ 40.0 103.2 69.3 60 1.0 138.7 19 . 8 1 3.2 o9. () . 61 61 2.0 3.0 138.8 138 9 39.6 39.4 103.2 69.3 '

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               ..                                                                         103.2                 69.2                                                                              '--

4 '. 62 4.0 138.9 35.2 103.3 69.2 () ,. 62 5.0 133.9 39.0 103.3 69 1 ___2___

                .                       6.3            6.0       138.9            39 8    103.3 ,               69.1                                                                       .
                .                       63             7.0       138.9            38.7    103.3                 69 0

() . 64 64 8.0 9.0 138.9 138.9 38 5 38.4 103.4 69 0

                .                                                                         103 4                 69.0
                .                       6.5          10.0        138.B            38 2    103.4                 68.9 Q ,,                                                                                     '. 4           68 9                                                                     ,
                .                       6.6          12.0        13B.7            37.9    103.4                 68.9
                .                       66           13.0        138 6              78    103.                  68 8                                            -

() ,,6 . 7_ 14.0 ,13 $ . 5, 37 7 103 5. 6 8. E . , _ 6.7 15.0 139.4 37.6 103.5 e6.7 138 2 37.5 8 . 6.8 6.8 69 15.3 17.0 18.0 138.1 137.9 37.3 37 2 103.5. 103.5 103 6 64.7-68.T'~' 68.6

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                .                       6.9          19.0        137.7            37.1    103.6                 68 6

() . 7.0 20.0 137.5 37.1 103.6 E8 . 6

                .                       70           21.0        137.3            37.0    103 6                 68 6
           . .                          71           22.0        137.1            36.9

().- . 71 72 23.0 24.0 136.8 136.5 36 8 36.8 103.6 103.6 63.5 68 5

  • 103.7 68.5 e 72 25.0 136.2 36.7 103.7 68.4

() . 7.3 26.0 135.9 36 6 103.7 68.4

                .                       73           27 0       135.6            36.6     103.7                 68 4
                -                       7.4          28.0        135.3            36.5    103.7                 68.4

() - 7.4 29.0 134.9 36 5 103.7 68.3

                .                       7.5          30.0       134.6             36.5    103.7                 68.3
               -                        7.5         31.0        134.2             36.4    103 8                 68 3

() . 7.6 32.0 133.8 36.4 103.8 68 3

               .                        76          33.0        133.4             36.4    103 8                 68.2
               .                        7.7          34.0       133.0             36.4    103.8                 68.2
   , () a                               7.7         35.0        132.6             36.4    103.8                 69 2
   '.'         =                        78          36.0        132.1             36.4
                                                                                                                                                                                                        .j 103.8                 6C.2                                                                                       l 3          i' 78          37.0        131.7             36.4    103 8                 68 1                                                                                       l

() - - 7.9 3P.0 131.2 36.4 103.E 68 1 7.9 39.0 130.7 36.4 102.8 63.1 - u m- - 80 40.0 130.3 36.4 1_03.9 68 1 80 41.0 129.8 36.4 W Mf 103.9 64.1 x 81 42 0 129.3 36 5 1C3.* 68 1 IS I- , b@. '7 .a 871 43.0 129.7 36.5 103.9. 65.0 lJ,4 .. 0_'- 8.2 44.0 128.2- 36.6 in. 9 68.0

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                                    ,,82            45.0       127.7              36.6    103 9                 68 0                                            -N                                  m
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8 3 '^ 46.0 -U 2 7.1 '36.6 '103 9

  • 680 DI E NN O 83 47 0 . .126.6 ,.36.7 103 9 . 68,0 o, .sc4 .Jrunen

1 o . ', s , aeee nm a ;o.... . y u u p y-- _. . ._ ... g g - . 4 9. '0 " ~ 12 5 . 4 ' '" T6 .' B ~ ~ 1 0 3'. 9 ~ . 68 0 "F 8.5 50 0 124.8 36.9 103.9 67.9 1

                                                       ~ 6 '. 5                                       51 '. 0  ~12 4 . 2 ' - 77. 0                                                                   1 C 3 9 - ~ 6 7 '. 9 ' ~ ~
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86 52.0 123.6 37 0 103.9 67 9

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b O- 's.9 39 58 0 59 119.9 119.2 37.6 104.0 67.9

                                   .,                                                                                                                                      37.7                       104 0                          67      9~'~
                                   ,,                    9.0                                          60.0                                    118.5                        37.8                       104.0                          67.9                                                                          !

O ., 970 6r. 0 117.9 3 8 . a-- r oat 0--- 67. - [ , 9.1 62.0 117.2 38 1 104 0 67.9 g ., 97 63 0 115.b "Je.2 10 . 7 -

        ,              Q ,.                              9.2                                         64 0                                     115.8                       38.4                        104.0                          67 8                                                                          I
                                   .                     9.2                                         65.0                                     115.2                       38.5                        10 4. ON L                                                                                                                                                                                                                                                                                               -
                                   ,                     93                                          66.0                                     114.5                      38.6                         104.0                         67 8                                 .                          -

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                                  ,                      94                                          69.0                                     11'2                                                                                         .e Qg                                9.5                                          70.0                                    111.6                      39.3                        104.0                          67 8
                                   .                     9.5 9.6 71 0 72.0 110.9                      39.4                        104.0 M
                                   ,                                                                                                         117.2                       39.6                        104.0                          67.9 1

Q, 96 73 0 109.5 39 8 104 0 o .

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    ;j                             ,                     9.7                                          7 5. 0~                                10 D .                                                                    .            6      .v                        .

N Q. - - ' 9.7 11.7 0.0 S.0 109.0 40 1 104 0, 67.9 114.2 32.5 104.c 66 1 h 13.7 00 115.6 26.4 1 05 .9 64.4 0.0

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                                   .                   15.7                                                                               T13^.8                        21.4                        1O'68'                          6K7                                                           T

a 17.7 0.0 109.6 17.3 107.7 61.1 4

s 19. 00 10 . 14 . .6 Q. 21 7 0.0 97.3 11.4 109.5 58 0
                                 -                     23 7                                                00                                       0.2                      92                     11                .               6.
   ,_                           .                      25.7                                                0.0                                   82.7                        7.5                    111.1                           55.1
   ;!                 Q.                               27.7                                                0.0                                   75.1                        6.1 111.9                                 .6                                                                       l n                            .                      29.7                                                0.0                                   67.7                        49                     112.7                          52 3
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                               .                      37.7                                                 0.0                                   42.3                        2.1                    115.6                          47.1 O.       .

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a 43 7 k 00 28.0 11 117.6 43 5 .* O. *S.7 0.0 25.2 0.9 118.2 42 4 l

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SEQUOYAH UN T 1 CYCLE 4 [n Q. . SC ENON DATA t"J " XE p h () . ,, TIME (HRS) POWER (%) XE I SM PM WORTH

                                                                                                                                          .S M WORTH

(% E Q) (% EG) (% EQ) (% EQ) (PCM) (PCM) p , ---- ----- ....-- ----.. ---.-- ....-. E () , s.O 75.u 93.5 75.0 100.0

                                                                                                                                         ---- q % c_

75.C i U . 8.C 3.3 139.3 32.4 104.2 67.6 e.s ..'. 139.3 32.2 104.2 67.5

     !l          C).               8.1       2.3      139.2        32.1        104.2            67.s                                                  --
                      .      . c.1       3.3      139.2        31.9        104.2            6 7. /                                                      -

i; 8.2 4.0 139.1 31.8 104.3 6 7. * - i' E () .. 8.2 8.3 5.0 6.0 139.0 31.7 104.3 67.3 13!.9 '31. 5 104.3 7 - ii . 8.3 7.0 136.8 31.4 104.3 67.3 h () . 8.4 8.0 138.7 31.3 104.4 7

                      .            d.4       9.0      138.5        31.2        104.4            67.2

[ . 8.5 10.0 132.4 31.3 104.4 67.2

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() . 8.5 11.0 138.2 30.9 104.4 67.1

                      .            8.6     12.0       138.0        30.8        104.4            67.1 h                               8.6     13.0       137.8
                      .                                            30,7       104.5             67.0 il ji

() . 8.7 14.0 137.6 30.7 1 QL 5 67 " 2.7 15.. 137.4 3. 6 1 '.' 4 . 5 6 7. ~

   'i 5.5     16.~       177.*        3.C         114 ._j          6 A. 9 8.8     17.0       136.9        30. 4      104.5             66.9 2        ..              8.9     18.0       136.6        30 4       104 c            .             8.9     19.0       136.3        30.3        104.6            66.9

() . 9.0 20.0 136.0 30.2 104.6 66 8

   ,1                .            9.0      21.0       135.7        30.2       104.6             66.8
   ;l                .            9.1     22.0        135.3        30.2       104 6

() - 9.1 23.0 135.0 30.1 104.6 66.7 '

                     .            9.2      24.0       134.6        30 1       104
                     -            9.2     25.0       134.2         30.1       104.7            66.7
   )            () .              9.3     26.0       133.8         30.0       104.7
   ]                 .-           9.3      27.0      133.4         30.0       104.7            66.6 9.4     2 ?. 0     133.0 30.0       104 7            66 6 C) -              9.4     29.0       132.6         3c.0       104.7            66.6
                    .             9.5     30,0       132.1         30
                    .'            9.5     31.0       131.6         30.0 1 4 7 104.7 i         () .              9.6     32.0       131.2         30.0       104.7 66.5 66
                    .             9.6     33.0       13r.7         3C.0       104.8            66.5
     ;              .             9.7     34.0       1 3 '. 2      30.1       104.8
      ;       , () .              9.7     35.0       129.7         30.1       104.8 66.5
                                                                                              '66.4           -                                                    *
              .     .             9.8     36.0       129.2         3C.1       104.A            66 4
              !     .             9.8     37.0       12!.6         30.2       104.8 i      j () .              9.9     39.7       1?'.1         30. 2      124_.8 66.4 6 (, 4                                               '~

i 9.9 39.5 127.5 3L.2 134.E 66.4

                   .           10.0       40.O       1.2_? 3C.h3 3 104.8         h                                                                ;'U, 5^' .,d (

1..U 41.0 126.4

                    "_         10.1       4 2 . ')   12(.8         3C. 4      104.9 66.3 66
                                                                                                                                *1-g;4R.;

IG.1 43.v 125,3 3C. 5 104.9 O- 12 4 4 . ;- 66.3 12':' 3-.5 in'.o ..V;s 66 N"+MfM 19.2 45.0 124.1 3C. 6 104.9 10.3 3C.7 6 6. 3 , . e'  :

                                                                                                                                                                    }

O $ 46.0 123.4 104.9 . a a: ' v,

                           ,   10,3 -     D T T w TC              W.N-        * ^ E f C ,4,3c , .9;#                                                  ~~

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                     .. . . . 3 ; , 4 - -- g o , .y           3 73      5-'-"'11T ' 101.'. 9                 66."2
                                                                                                                                      ~ ~ ~ ~

l f, 1'. 5 5 : . 's 12 .9 31.1 104.9 66.2

                   ,              1..3         51.v           i b. E           31.2          104.9           66.2                                                          )

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                   ,              1:.6         52.0           1 1 ').6         31. 3         1o*. o          66.2
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o. .i n . d . 54.0 114.3 31.8 104.9 66.2 66.2 0- ic.9 59.0 115.5 32.3 104.9 66.2 1 ,, v. .u . . 164.9 66.1
                  ,               11.G         6C.0           1_14.0           32.3          104.9           66.1 i

Q 11.a 61.0 113.3 32.5 104.9 66.1 1 . 11.1 62.0 112.6 32.6 104.9 66.1

                  ,,                   ,       a..~                1           32.6          104.9           6 o.1 O                     11.2         64.0           111.2           32.9           104.9           66.1                                              J'
     .             .                   .       o   .
                                                         '      1     .4      33.1           104.9           66.1                                                    - ~
                   .              11.3         66.0           109.7           33.3           104.9           66.1                         --                       -

Q. 11.3 o7.0 109.0 33.5 104.9 66.1 3 . 11.4 69.0 10'. ? 33.6 104.9- 66 1 '-

                   .              11.4         o9.0           107.5           33.8           104.9           66.1 Q.                    11.5         70.0           106.7           34.0           104.-9          66.1
                  .               11.5         71.0           104.0           34.2           104.9           66.1
                  .               11.6         72.0           105'.2          34.4           104.9           66.1 O                     11.6         73.u           104.5           34.6           104.9           66.2                                           -
    '.            .               11.7         74.0           103.7           34.8           104.0            e
. 1 .7 75.U 102.9 35.0 104.9 60.2 i O_ 11.'7 13.7 0.0 1 ~ 2. 9 35. ) 10', 9.__. 3_6 2.__.
                  .                              G..          1 '. 7. 3       28.4           1 J. S . 9      64.5 15.7           S . .'       1 '. 7. 6       23.3           1 C 6. 5        62 8 17.7           0.0          105.1           18.7           107.7           61.2
               ..                 19.7           0.0          100.8           15.1           109 6            0
   -            ..                21.7           0.0            95.2          12.3           109.4           58.1
    ;       O--                   23.7           0.o            sa.a          1 c. 0         110 3 25.7           0.0            82.1            8.1          111.1           55.1                                                           -
 .',            '.                27.7           0.0            74.9            6. 5         111.9           53
 .i         O-                         .7        0.0            67.8            5.3          112.7           52.3                                                  '

I

. 31.7 0.0 60.9 4.3 113.4 51 0 p . 33.7 0. 0 .54.4 3. 5 114.2 49.6 O- 35.7 0.0 48.4 2.8 114.9 48.4 e
 ]                -                  7.7         0.0            42.9          .2.3           115.6           47.1                                          -

i - 39.7 0.0 37.9 1.9 116.2 45.9

   '        O-J                   41.7           0u             33.4            1. 5         116.9           44.7 43.7           0.0            29.3            1.2          117.6           43.6
'j               -                45./                          25.7 0.0                            1.0          118.2           42.4'                                               *
   -        O-                    47.7           0.0            22.5            0.8          118.8           41.3 9             -                49.7           0.0            19.7            C. 7         119.4           40.3 o               -                51.7           0.0            17.2            0.5          12.0 . G        39.2
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SEQUOYAH U- T 1 CYCLE 4 O - BOL % CNON CA7A

                                                                                                                                                                                                             ~

XE SP O ., 7IME POWER XC I SM PM WOR 7H WCFTH

         ;                .,                  (HRY)                  (%)         (% EQ)                         (% EQ)            ( 17)                 (t EG)                 ( P'Ch )               (FCM )

7 ..... - a,c Q ., 0D =75Rf 9315 75.0 1T070 75 7 -

                          .                   10.0                     0.0       136.0                            26.3            105.1                  65.8
                          ..                  10 0                    1.3        17 5- 9                          26 1            lod.;                  6s.

Q 10.1 2.0 135.8 26.0 105.2 65.7 --

     ,                    .                -10 1                       30        133.                                   .                .                     .
                          .                   10.2                     4.0       135 5                            25.8            105 2                  65 7 Q.                           10 2 10 3 5.0 6.0 135.3 135.2 25.7            IT .                         .

i . 25.6 105 3 65.6 _

                          .                   10 3                    7 . 0'    135 0         . 25 5                             10     .                o .                                                                   ~

O. 10 4 80 134 8 25.4 105 3 65 5

       ,                 .                    10 4                    9.0       134.6                             25.3           105 3                   6 5 .T-'-
                         .                    10.5                  10.0        134'.3                           25.2            105.4                   65.4
    ]            Q.                           10 5                  11 0        134 1                            25 1            1      .4                    .
                         .                    10 6                  12.0        133 8                            25.1            105.4                   65.4
. 10 6 1 . a* .

O -- ' 10.7 14.0 133.3 25.0 105.4 65.3

                                             '11.7                  15.0        1.',3.0                          24.0            105.5                   l5.3 J

10 8 15.0 132.7 24.9 105.5 65 2

                         .                    10 8              ~1 N O          f3 2. 4                          24 8            f05.5 - ~6'$'.2~~                                                ~               ^~"
                 ...                          10 9                 18 0         132 0                            24.8            105.5                   65 2
                         .                    10 9                 1                                                                                      . , .
     '          Q..      .-

11 0 20.0 131.3 24.7 105.5 65.1 11 0 21.0 130.9 24.7 105 6 65 1 y . 11 1 22 0 130 5 24.7 105 6 65 0 W Q. 11 1 23 0 130 1 24 7 105.6 65. -

                       ..                     11.2                 24.0         129.7                            24.7            105.6                  65.0
                         .       .              1.                2     .0            .                            4.                   .6                s.
    !           O.                   -

11.3 26.0 128.8 24.7 105.6 64 9

                        .                    1 .                  2     .0          8.                             4.           10 .                      49
                        -                    11.4                 28.0         127.9                             24.7           105.7                   64 9 0                            11.4                 29.0         127.4                             24.7           105.7                   64 9
                        .                    11.5                 30.0         126.9                             24 8           105.7                   64 8
                        ..                         .                  1.              .                               .e             ..                 e4 O-                           11 .6                 32.0         125 8                             24 8          105.7                    64 8
                        .                   11.6                  33.0         125.3                             24 9           105.7                   64 8
                        -                   11 7                  34.0         124.7                             24 9           105.7                   64.8
            ,  0-                           11 .7                 35 0         124.2                             25 0          105 7                    64 7
  .         .          .                    11 8                  36 0         123.6                             25.0          105.7                    64.7 I         $          =                    11.8                  3W6~ 123 .~d                                   25 1          l 'd 5 .-
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11.9 32.0 122.5 25 2 105.8 o. j . ~-"~ 1 l 9

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39;0 64.7 - 12.0 ' '1'21.' 9 "- " 2 5 2 ' ' "1 0 5 . 8 "' ' 6'4 ' . 7 ~ ~ .. ." 40.0 121.3 25 3 105.8 64 7

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T f'~0~- ~ 4 f . 0 " 120~.7- .'N.4r.*4

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12 1 42 0 120 1 25 5 105.8 Ne M

                       -                                                                                                                                64 6 TU r- 73 '.~0- ' ~ 1 19 .~ 4 ~ ~~2 5 '.T~' T 0 $ ; 8- ~ ^ 6 4B                                                                              ' - - ~

O- 12 2 44.0 11s.8 25 7 10s.8 e6 $, M-12.2 45.0 irs;Y 25.=e 10 E s' G. i l - 12 3 '46.0 . 117.5 25 9 105 8 6 4 a'6 M.

                                                                                                                                                                                   .      Y'b....                   .....

A ih . t v .. I b l @.3 % g r.~e m >y , , , , _ , , b .g d h Ow $.-.. ((  ! !.}. ,' .' . M 09A.3Fc-s/:t/g l 115 5 ~~ M~'6YE}  ?.1 Q. 12 4 49 0 2 c i- 105 8 - 6*. 13 12.5 50 0 114 8 26.4 1C5 8 64 5

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             =                                             1350.0                                                                                    !!!!.EC 587.3                 90 0   0 991024      0.995729            9772 15        155c.14
            -                                              1200.0      567.2                 90.0   0.989497       0.994812           9115 12
                                                                                                                                                           ~

1580.66

            -                                              1050 0      550.5                 90.0   0 987971      0.993801            8511 53        1619.15
            =

930.0 532.0 90.0 0.986444 7047.22 0.a92674 167?.47 750.0 510 8 90.C 0 984918 0 991393 7411 53 1769.98

            =

600.0 486.2 40.0 0.983391 0 989898

            .                                                                                                                         6893.95        lo06.43 450.0      4.56.3               90.0    0.981865      0.988083            6385.12 300.0      417.3                 90.0 2120.73
            =

150.0 358.4 0.980338 0.985720 5877.82 2491.Sc 90.0 0.978812 0.982146 5370.60 3291 97 SVl(!) SVP(I) VPS(1) MPS(!) OPPS(!) MT(I) SVPS(h)

            =

0.021251 0.026976 1209.40 e274.00 0.021251 0.026976 0.00 527023.6 0.000000 215.46 1373.03 -6900 97 567159 1

           =

3.023704 0.026154 215.33 1230 39 0.15t*20 0.020154 0.025407

                                                                                                                     -142.64        581701.0       0.175007 215.19        1101 34        -124 05        596807.4        0 195389 0.011671   0.024717             215.04         983.66        -117.6A 0 019242                                                                    610750.7        0.21261; 0.024072 214 89         875 32        -108.34        623742.9 0                                                     0.01co??   0.c23463                                                                         0.2454ah 214.72         774.64        -100.6?        6359c3.9 i                                                     0 016510   0.022891             214 54         580 30 0.277185 i       -

0.010194 0.022320

                                                                                                                      -94 33        647319 4      0 315354 214.34         591.36          -88 94       656104 0       0 26244*

2 0.017906 0.021772 214.12 507.11

         =

0.017643 0 021231 213.88

                                                                                                                      -84.25        665316.9      0.422239 426.c8         -80 13        678025.6      0.500912 0 0174n1   0.0206as             213.60         353.a6         -76.51 0.0171A1   0.020131             21?.29         277.08 6a72Rf7T C.6Cc4F6
                 ~
                                                                                                                      -73.36        68o157 2 0.769747 0.01097a   0.019545             212.80         206 33         -70.75       .7f4733 7 1 02,170!

0.015795 0.0183t4. 212 5e 137 66 0 015609 0 0180'19 ~ 211.61

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2. J. 0 82613.6 5251.7 1 71.56.1 15.55.0 628768.7 85956.9 8545.8 L, _j
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