ML20058K637
ML20058K637 | |
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---|---|
Site: | Sequoyah |
Issue date: | 11/18/1993 |
From: | TENNESSEE VALLEY AUTHORITY |
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NUDOCS 9312150344 | |
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Text
.
L36 931202 802 SEQUOYAH NUCLEAR PLANT UNIT 2, CYCLE 6 QARecorc )
CORE OPERATING LIMITS REPORT REVISION 1 November 12, 1993 1
Prepared: g
( {Guc~d
_ fimT. / t$"lS- E.3 Nuclear Fuel V Date Reviewed:
k idb$1, / N- J 7 -;?3 Reactor'Engineeri g Supervisor Date i j if-/[Vf Technical Supbort % Sger Date d -
/ l b PORC Chairmad Date i
Revision 1 i
Pages affected All I Reason for Revision The EOL/ARO/RTP-MTC and 300 ppm j surveillance limits specified in Section 2.1 are i revised to reflect new calculational inethodolociv. !
Format is also revised to reflect current standard. ]
j SEQUOYAH - UNIT 2 Page 1 of 12 Revision 1 9312150344 931208 l PDR ADOCK 05000328 p PDR
1 _ _ . . _ . . _ - - . _ __ . . _ - _ _ _ _ . _ .-. __ .
COLR FOR SEQUOYAH UNIT 2 CYCLE 6 1.0 CORE OPERATING LIMITS REPORT This Core operating Limits Report (COLR) for Sequoyah Unit 2 ,
Cycle 6 has been prepared in accordance with the requirements of Technical Specification (TS) 6.9.1.14.
The TSs affected by this report are listed below-3/4.1.1.3 Moderator Temperature Coefficient (MTC) I 3/4.1.3.5 Shutdown Rod Insertion Limit i 3/4.1.3.6 Control Rod Insertion Limits
-3/4.2.1 Axial Flux Difference (AFD) i 3/4.2.2 Heat Flux Hot Channel Factor (F e(:Z))
3/4.2.3 Nuclear Enthalpy Hot Channel Factor (F[)
2.0 OPERATING LIMITS i The cycle-specific parameter limits for the specifications -
listed in section 1.0 are presented in the following i subsections. These limits have been developed using the NRC !
approved methodologies specified in TS 6.9.1.14. i The following abbreviations are used in this section: i
'i j
.s BOL stands for Beginning of Cycle Life
, ARO stands for All Rods Out HZP stands for Hot Zero THERMAL POWER !
EOL stands for End of Cycle Life RTP stands for RATED THERMAL POWER i
2.1 Moderator Temperature Coefficient -'MTC (Specification )
3/4.1.1.3) I i
2.1.1 The MTC limits are: !
The BOL/ARO/HZP-MTC shall be less positive than 0 Ak/k/*F (BOL limit). With the measured BOL/ARO/HZP-MTC more positive than .-l.2 x 10'5 I Ak/k/*F (as-measured MTC limit), establish control !
rod withdrawal limits to ensure the MTC remains less ;
positive than 0 Ak/k/'F for all times _in core life.
The EOL/ARO/RTP-MTC shall be' less negative than or i equal to -4,5 x 10 Ak/k/
- F. + j i
SEQUOYAH - UNIT 2 Page 2 of 12 Revision 1 4
r r
- -.. . _ _ _ . ._ _ - .o _ , _ .
- .=- . .. .. . . . . _ . ..
COLR FOR SEQUOYAH UNIT 2 CYCLE 6 I
i 2.1.2 The 300 ppm surveillance limit is: ,
The measured 300 ppm /ARO/RTP-MTC should be less i negative than or equal to -3.75 x 10 Ak/k/
- F. +
2.2 Shutdown Rod Insertion Limit (Specification 3/4.1.3.5).
2.2.1 The shutdown rods shall be withdrawn to a position !'
greater than or equal to 225 steps withdrawn.
2.3 Control Rod Insertion Limits (Specification 3/4.1.3.6) i 2.3.1 The control rod banks shall be limited in physical -!
insertion as shown in Figure 1.
I 2.4 Axial Flux Difference - AFD (Specification 3/4.2.1) ,
2.4.1 The axial flux difference (AFD) limits are provided i in Figure 2.
2.5 Heat Flux Hot Channel Factor - F .(Z) (Specification 7 :
3/4.2.2) p RTP Fo (Z) 5
- K(Z) for P > 0.5 !
P p RTP Fa (Z) 5
- K(Z) for P $ 0.5 '
O.5 THERMAL POWER where P = .!
i RATED THERMAL POWER l
2.5.1 Fa "I" = 2.32 -
2.5.2 K(Z) is provided in Figure 3. .{
SEQUOYAH - UNIT 2 Page 3 of 12 Revision 1
I
'i COLR FOR SEQUOYAH UNIT 2~ CYCLE 6 2.5.3 Note that the W(Z) values required by TS SR 4.2.2.2 .
are provided in Figures 4 through 8. This information is sufficient to determine W(Z) versus ;
core height for all cycle burnups through the use of three point interpolation. '
2.6 Nuclear Enthalov Rise Hot Channel Factor - F"3 (Specification 3/4.2.3) 3 F,N,5F3H RP * [y + gik b
~
)
THERMAL POWER where P = !
RATED THERMAL POWER
~!
2.6.1 F"g" 3
= 1.55 2.6.2 PF 3 , = 0.3 l
l i
1 i
i
.i l
1
-1 i
SEQUOYAH - UNIT 2 Page 4 of 12 Revision 1- i
.l l
)
l 1
,-e -
COLR For Sequoyah Unit 2 Cycle 6
(.09.231) (.65,231) 231 ,,,,,,,,,,,u,,_., o,,,,,,.
225 -
(.o s.2 2 s > 1 / (.e 2.2 2 s) -
' ' B A N K B 200 -
R o _ (i.o.ia r )
d B 160 -
/
n k -
S BANK C t 120 -
e P _
P o 80 3***I s
i . BANK D t -
i
$ 40 -
( .19, o )
0 0.2 0.4 0.6 0.8 1 (F ully inserted) Fraction of Rated Thermal Power FIGURE 1 Rod Bank Insertion Limits Versus Thermal Power Four Loop Operation F ully wit h dr aw n re 91on shall be the c ondition where shutdown and control banks are at a position within the Interval of ! 225 arid ! 231 steps withdrawn, inclusive.
SEQUOYAH - UNIT 2 Page 5 of 12 Revison 1
?
i COLR For Sequoyah Unit 2 Cycle 6 .
i 120 11o -
l e4
(-15,100) (6,10 0) !
- 100 - - - -
0 l I 90 - -
Unacceptable Unacceptable '
R Operation Operation a 80 - ,
e Accept.1ble d 70 -
Operation
[
e 60 - -
i r so -
(.3 .50) - (20, 0) !
m
^
40 -
P 30 -
O
. i W !
e 20 --
)
l 10 - I o !
40 -so 10 o 10 20 3o 40 so ;
Flux Dif ference (t_si) %
FIGURE 2 i Axial Flux Difference Limits As l A Function Of Rated Thermal Power SEQUOYAH - UNIT 2 Page 6 of 12 Revision 1
(
y- t -, y - - --
i j
f COLR For Sequoyah Unit 2 Cycle 6 1.2 -
1.1 -
N :
o 0.9 -
- - - - - t
.r j
$ 0.8 '!
l i 0.7 --
Z -
e l d 0.6 --
i g 0.5--
. Core Height K(Z). j p 0.4 -
o.000 1.000 t o 6.000 1.000 l w '0*000 0 040 e 0.3 _ 12.000 0.925 r
0.2 -
0.1 -
l 0 '
O 2 4 6 8 10 12 Core Height (Feet) f FIGURE 3 K(Z) - Normalized Fq(Z) as a Function of Core Height SEQUOYAH - UNIT 2 Page 7 of 12 Revision 1
. - . _ , - - , ., ,, _. . p
TVA SEQUOYAH UNTT 2 CYCLE 6 COLR MARCH 1992' LV Height MAX i , treet) w(2) i j '
- l tj i l 1 ilII i l l ii;I l; 'i1 l 'i o.000 1. coco T~ .
,- g l j j -
j l; ,
ll l j o.200 1.000o I '
! l' I Il I I o.400 1.0000
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'I 1.400 g,oooo I l i l 1 .I '
.I I i l 1 l 1.600 1.0000 l l l I: ll lIl l I I l l 1.800 1.2337
!II 2 o00 1.2148 I '
! 2.200 1.1958 l l l 1lI I; l 2.400 IN 1 1.1771 1-l t I i l '!i 11 I I Il 'll l i 2.600 1.1584 i
l l l l :i l! I [ ll t ! 2.800 1.1385 '
l l 'I !'
o, 3.000 1.1272
! l( A i I 3.20o 1.1250 I; I,
!! I i !!"I Il l I i 3.400 1.1257 1.25 ll l 1 Il li i il I. I ll41 I liloff" l lil 3.600 1.1282 m 8 I I ! I '
4l I l ', 3.soo 1.13o1 -
5 4.ooo 1.1297 t l o i i l (I il 4.200 1.132o x
l l l ll l i i 1 4.400 1.1365
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4.600 1.1388
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- 11.50o 1.0000 i SEQUOYAH UhTr 2 CYCLE 6 tt.soo 1.oooo '
12 Mo ' RAOC
SUMMARY
OF MAX W(Z) AT 150 MWD /MTTJ 1 **
- TOP AND BOTTOM U% EXCLUDED AS PER *ECH SPEC 421G l
Pag: 8 of 12. Ro. 012S2 lo. m
TVA SEQUOYAH UhTT 2 CYCLE 6 COLR MARCH 1992 W Height MAX (Feet) w(2)
. ii,; !i! i I' l I' I=
II I I ili l:I
'I -
l
'l 0.000 t 1. ONO 0.200 1.0000 1 :' lit! lIl I I I I ll I ll ! l ! o,4oo 3,oooo i
Ilii ll!- ! I I I l ! 0.600 1.0000
!ii! llll l1 l i l 'l j O.800 1.0000 1,3$
iilt In F il I 1l 11- l- !
' 0*
1.200 1N* 1.0000 f'l I?}; !!!' l I II' l' !- l 1.400 1,000o i!j! I'Ii :l' ll 8 1.600 1.0000 till lil Il 1
- 1. s m 1.2609 2.000 1.2391 ll1i ll1 Il I ! I 2.200 1.2184 l fili ll 'l i I l- 4 l 2.400 1.1967 IE lill ll l l l l (. I 2.600 1.1765 j9j j j j jj j 2.800 1.1535
- 3.000 1.1405 Illl I I- II l I I i I 3.200 1.1384 1lll ll1 l j j ,l -
o l 3.400 1.1369 j;jj ),, j,j j g ; ; ;. i
", l. 4 gll 3.600 1.1339 1 '"% 3.800 1.1311 m llll lill 118 I ll 1 l el' tiII- l 4.000 1.1285
$ ll j 'jjl "j l l li l i + I I I 4.200 1.1288 m 1.1309 ll- l l j y 4.400 x o 4.600 1.1320
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> 5 d* ' '525 tt ili -- ilst - II
" I i I - i 5.600 1.1680 lIl ll
$ l l T ll l I 5.800 1.1826 $ lll. l l lll ll i l 6.000 1.1947
- lit, I ll jij+ 1 " il I il ! e.200 1.2069 1 * "* s.400 1.2177 1ll1 lil Ill.,_lll'
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!! ! I l l .l .
I. '
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8.800 1.2489 1,0$ 9.000 1.2465 lill Illi ill I ! I l Il l l'l l I l! ' 9.200 1.2534 till liti jll l l l ll 1 ll 9.400 1.2551 ijij lill iiI j j, j -l S.600 1.2630 1.2760 9.800 I!II lIII Ill
-1 I ! ! 10.000 1.2906 till illi ll11 i ll l I I I i 10.200 1.3045 0 1 2 3 4 5 6 7 8 9 to 11 12 10 'M 1N MNM 1I. oo t oOoo 11.000 1.0000 BOTTOM FIGURE 5 TOP 11.200 1.0000 11.4o0 1.0oo0 1 11.600 1.0000
- 11. 8 m 1. m SEQUOYAH UNTT 2 CYCLE 6 12.000 1.0000 I RAOC
SUMMARY
OF MAX W(Z) AT 4000 MED/hfrU j i
- WP AND BOTIVM U% EXCLUDED AS PER TECH SPEC 420 i
P3ge 9 of 11 Rev. O LO9S210.30am
TVA SEQUOYAH UbTT 2 CYCLE 6 COLR MARCH 1992 W
. Height MAX 1.40 ?i' I i-(Feet) W(Z)
Ill 1 1Ii 'll t 1 I ii! (( l
; fii i l)1 1 l ! lll lI 1 ll l l' ) (
lll l i j 0.0o0 1.0000 lIl ' l it! I I l j O.2o0 1.0000 r e.t 3. Ii { l j o. W
!! ! 1:l l l!' i l ill i
l . o.6o0 t . o@c 1.0o00
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t t i i l i l i ( , l{ i i 1.000 1.0000 Iii ! IiI '
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1.40o _llI l l
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1.6o0 1,oooo +
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1.1691 l 1 l '---- 5.600 1.1824
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lill illi
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Il l l i li I i l'l l i 5.80o 6.000 1.1948 1.2052 i i l l l'il l 1'l ll llil 8.2o0 5 lill llII lill
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SUMMARY
OF MAX W(Z) AT 7000 MMWMTU 12. om i . mx
- TOP AND BOTTOM L'% EXCLUDED AS PER TECH SPEC 4.2.2.G Pageloof 12.
Rev. Oww: 105=m
.TVA SEQUOYAH UNIT 2 CYCLE 6 COLR MARCH [992 W Hefght max 1.40- (Feet) wi z ) '<- !1 !i, -
il! Il I!1 I if'}l((' I i il }l ll ' i >l 1 0.000 I!i i lli 1. coco
- i l l ll l 1 J~ l ll i l
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fil! I
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lili i l i 1 }il i , i I lt ! 2.2o0 1'2568 lill lili il} l l ' '
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' $ l l ,ll' <
(ii ll~ { i 4.400 4.600 1.2047 sj,20 lil 1' il lill D7%4U l' i'i '*800 1.2029
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1 +4 a 11 l llli 1
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i Ll ' lli ! I 1.2232 4 i ! 6.000 lIll lill Itil 1: 1.2330 i lil; ll1 i l l l l4 j l lil illi !!11 111 i il i e.200 1.2411' ll t ii '
!Il lit i 'It i l' 1 Ill e.4x 1,24e2 }l Ill! I}ll lil l ll 14 i i4 1 il e.soo 1.25c7 1111 11 il l t. li '
i tj 6.E0o 1.2532 t till ill! til il tj m, 7.000 1.2523 I lli lill- lill i I; ( ll 7.200 1.2501 ll l l.
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7.400 l ll l ill t l' lill i 1 ill. Il1 i ;~- l 1.2437 Illi Illi 'lli ll I 7.600 1.2359 ll t ( ll i il lfll Ill ' ll i ill' 7.8o0 I lil'
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Ill- '! ! l }ll 'll llt I l ' 1.1341 l' il { 11 1 11l j 8M I 1271 li 1 ! I I ll 1, ll ) Iffl Il ll I l Il 9.200 ( l ' 1.1229 lIll ! !!! l ll il -! ' lll 9.40o 1.1217 l il' I III i t il l 9.600 llII I IIl l l I ali!,l iit i li h i ll 1 l { l jj 'l 9.80o 1.1291 1.1345 15- i tti t- ii16 t iul nli i: (: I 'il o- il { 0 1 2 i i t t! 10.2o0
5' 3 4 5 6 7 1.1624 8 9 13 cyE Elgii (nn) 11 12 10.400 1.0000 10.e00 1.oooo to.soo 1.oooo BOTTOM 11.000 1.oooo FIGURE 7 TOP 11.200 1.oooo 11.4o0 1.0000 11.600 1.oooo SEQUOYAH UNIT 2 CYCLE 6 11. e m 1.omo RAOC
SUMMARY
OF MAX W(Z) AT 10000 MWD /MTU 12. om 1. mx
- TOP AND BOTTDM 15% EXCLUDED AS PER 71EO{ SPEC 412.0 Page 11 of 12.
Rev. 01.M9210'.30m
j i ( 'l 1 i TVA SEQUOYAH UbTT 2 CYCLE 6 COLR .!- MARCH 1992 W beight MAX
'Il ; 'i t ' 'lll '{1 (1 1' 'l i j tfeet) Vi2) l} l i i il 1i 1' ,t j t i 16 :. l{ l 1 i ;, . til i l i i i' i l
I!j i
) 0.000 1.0000 3!I i 1i ' 'i! ! I l 'I i
- i t i i i i 0. 2M 1.o m jfa
! Iit i !ll l < < I 1( ! ii i i
l l O.400 1.0000 1 {l {I l} i t o.600 1,oooo 1.35 _I l l
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NNN 10 11 12 '0 'N ' MOO BOTTOM oo t FIGURE g TOP ti. coo t.oooo 11.2co 1.o00o 11.4oo 1.oooo 11.800 1.0000 SEQUOYAH UNrr 2 CYCLE 6 11. s M 1. wM RAOC
SUMMARY
OF MAX W(Z) AT 14000 MWD '2 /MTU* '*
- TOP AND BOTIDM 15% EXCLUDED AS PER TEQi SPEC 422 G ..
Paj;e 12. of 12 Rn 01mS210 3bam
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