ML19325C908: Difference between revisions
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{{#Wiki_filter:. . . _ _ _ , | {{#Wiki_filter:. . . _ _ _ , | ||
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c.Affected i Affected . I- 1 (g;'. | |||
Section Pages l' - Summary of Chances Date-- i | |||
c.Affected | |||
i Affected . I- 1 (g;'. | |||
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All 1 All. Original' Issue-- (Cycle- 11)' 06/89:r M. ~ | |||
All 1 All. Original' Issue-- (Cycle- 11)' 06/89:r | |||
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1 I I I I I li. , I l 1- | 1 I I I I I li. , I l 1- | ||
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1 I I l l I I I I l' I | 1 I I l l I I I I l' I | ||
* I I I I I I l l I I Quad Cities - Unit 1 i Cycle 1: | * I I I I I I l l I I Quad Cities - Unit 1 i Cycle 1: | ||
. . . . ~ . . . .- -- . - . . . -. | . . . . ~ . . . .- -- . - . . . -. | ||
:; + ' . .. , ' | :; + ' . .. , ' | ||
A@i.qpiCere .Operdting;Limito Report .] | A@i.qpiCere .Operdting;Limito Report .] | ||
p _ | p _ | ||
y - . | y - . | ||
, , . , e. - | , , . , e. - | ||
.,.:I | .,.:I m , q | ||
m , q | |||
:D;. , j | :D;. , j | ||
' ,l TABLE OF CONTENTS 1 Page 1 3 , | |||
' ,l | |||
TABLE OF CONTENTS 1 Page 1 3 , | |||
. REFERENCES ...................................................... | . REFERENCES ...................................................... | ||
iii i l | iii i l | ||
1 s . | 1 s . | ||
| Line 275: | Line 135: | ||
f | f | ||
, 1. 0 ' CONTROL ROD WITHDRAWAL BLOCK INSTRUMENTATION (3.2/4.2) .... 1-1 - | , 1. 0 ' CONTROL ROD WITHDRAWAL BLOCK INSTRUMENTATION (3.2/4.2) .... 1-1 - | ||
1.1 Technical. Specification Reforence ................. 1-1 q 1.2- Description ....................................... ._1-1 , | 1.1 Technical. Specification Reforence ................. 1-1 q 1.2- Description ....................................... ._1-1 , | ||
2.0 AVERAGE PLANAR LINEAR HEAT GENERATION RATE (3.5/4.5) ..... 2-1 , | 2.0 AVERAGE PLANAR LINEAR HEAT GENERATION RATE (3.5/4.5) ..... 2-1 , | ||
9 2 -1. | 9 2 -1. | ||
2.1 L -Technical Specification Reference ................. | 2.1 L -Technical Specification Reference ................. | ||
2.2 -Description ....................................... 2-1 | 2.2 -Description ....................................... 2-1 | ||
.3.0 : LINEAR HEAT. GENERATION RATE -(3.5/4.5) .................. 3-1 3 '.1 - : Technical Specification Reference .................c 3 - 1.. | |||
.3.0 : LINEAR HEAT. GENERATION RATE -(3.5/4.5) .................. 3-1 | |||
3 '.1 - : Technical Specification Reference .................c 3 - 1.. | |||
L 3.2: ' Description- ...................................... '3 o 4.0 MINIMUM CRITICAL POWER RATIO (3.5/4.5) ................. 4-1 4.1 Technical Specification Reference ................. 4-1= | L 3.2: ' Description- ...................................... '3 o 4.0 MINIMUM CRITICAL POWER RATIO (3.5/4.5) ................. 4-1 4.1 Technical Specification Reference ................. 4-1= | ||
4.2' Description ..............................~......... 4 l4 i .. | 4.2' Description ..............................~......... 4 l4 i .. | ||
L u.- ; | L u.- ; | ||
l l: | l l: | ||
P r | |||
P | n Quad Cities - Unit 1 11 Cycle 1 , | ||
Quad Cities - Unit 1 11 Cycle 1 , | |||
3, a Core l:Oper; ting l Limits; Report-- | 3, a Core l:Oper; ting l Limits; Report-- | ||
, _ l j | , _ l j | ||
..4 | ..4 | ||
.. t.: | .. t.: | ||
'I w, | 'I w, | ||
REFERENCES | REFERENCES | ||
: 1. Commonwealth 1 Edison Company and, Iowa-Illinois Gas and Electric ~ | : 1. Commonwealth 1 Edison Company and, Iowa-Illinois Gas and Electric ~ | ||
m | m Company. Docket No.-l50-254, Quad Cities Station, Unit 1= Facility. ' | ||
Company. Docket No.-l50-254, Quad Cities Station, Unit 1= Facility. ' | |||
Operating License, License No. DRP-29. .j | Operating License, License No. DRP-29. .j | ||
'l | 'l | ||
| Line 324: | Line 163: | ||
LOCA Loss-of-Coolant-Accident Analysis, NEDC-31345P, June 1987 | LOCA Loss-of-Coolant-Accident Analysis, NEDC-31345P, June 1987 | ||
-(as amended). i 1 | -(as amended). i 1 | ||
5._ General, Electric Standard Application for Reactor Fuel (GESTAR)'~,- 1 NEDE-24011-P-A-9, September 1988 (as amended). i J | 5._ General, Electric Standard Application for Reactor Fuel (GESTAR)'~,- 1 NEDE-24011-P-A-9, September 1988 (as amended). i J | ||
l | l l | ||
1 l | |||
l | |||
9 1 | 9 1 | ||
O e | |||
. Q..d Cmes - ene 1 m | |||
O | |||
e | |||
. Q..d Cmes - ene 1 | |||
m | |||
C-. H | C-. H | ||
7 . .- | 7 . .- | ||
* '*(Chro',0perttingl Limits Repcet. | * '*(Chro',0perttingl Limits Repcet. | ||
,9 ? . .. .. | ,9 ? . .. .. | ||
q s~ :., | q s~ :., | ||
i e q.;c LIST OF FIGURES 1 | |||
i e q.;c | |||
LIST OF FIGURES 1 | |||
; | ; | ||
s FIGURE' TITLE / DESCRIPTION .PAGE' _j 1 | |||
2-1. ' | 2-1. ' | ||
Maximum Average Planar Linear Heat Generation Rate' 2-2;:1 1 | Maximum Average Planar Linear Heat Generation Rate' 2-2;:1 1 | ||
(MhPLEGR)- vs. Average Planar- Exposure = for Fuel Type | (MhPLEGR)- vs. Average Planar- Exposure = for Fuel Type i | ||
i | |||
P8DRB265L. | P8DRB265L. | ||
i 2-2 Maximum Average Planar Linear Heat Generation-Rate 2-3 | i 2-2 Maximum Average Planar Linear Heat Generation-Rate 2-3 | ||
.(MhPLEGR) vs. Average Planar Exposure for Fuel Types P8DRB265H.and BP8DRB265H.- : | |||
.(MhPLEGR) vs. Average Planar Exposure for Fuel Types | |||
P8DRB265H.and BP8DRB265H.- : | |||
Maximum Average Planar Linear Heat Generation Rate 2-4 | Maximum Average Planar Linear Heat Generation Rate 2-4 | ||
~ | ~ | ||
| Line 392: | Line 194: | ||
BD300A. t t | BD300A. t t | ||
2-7 Maximum Average Planar Linear Heat Generation Rate 2-8 (MhPLNGR)' vs. Average Planar Exposure for Fuel Type , | 2-7 Maximum Average Planar Linear Heat Generation Rate 2-8 (MhPLNGR)' vs. Average Planar Exposure for Fuel Type , | ||
BD3008. -l | BD3008. -l 2 Maximum Average Planar Linear Heat Generation Rate 2-9~ | ||
2 Maximum Average Planar Linear Heat Generation Rate 2-9~ | |||
(MAPLHGR) vs. Average Planar-Exposure for Fuel Type-BD30lH. | (MAPLHGR) vs. Average Planar-Exposure for Fuel Type-BD30lH. | ||
:2-9 Maximum Average Planar Linear Heat Generation Rate 2-10 (MhPLEGR) vs. Average Planar Exposure for Fuel Type l Barrier LTA. | :2-9 Maximum Average Planar Linear Heat Generation Rate 2-10 (MhPLEGR) vs. Average Planar Exposure for Fuel Type l Barrier LTA. | ||
4-1 Kf Factor vs. Core Flow %. 4-2 | 4-1 Kf Factor vs. Core Flow %. 4-2 1: . | ||
1: | |||
l. | l. | ||
' Quad. Cities - Unit 1 iv Cycle 1 | ' Quad. Cities - Unit 1 iv Cycle 1 | ||
pv . ,, .- | pv . ,, .- | ||
LT, " ' Core'. Operating Limito : Report - | LT, " ' Core'. Operating Limito : Report - | ||
.; | .; | ||
[ u y ,1. ! . | |||
[ u | |||
y ,1. ! . | |||
p- . | p- . | ||
L. , t_ . . . . . . | L. , t_ . . . . . . | ||
N 1.0 CONTROL ROD WITEDRANAL' BLOCK INSTSUMENTATION - (3;2/4.2) j.' : | N 1.0 CONTROL ROD WITEDRANAL' BLOCK INSTSUMENTATION - (3;2/4.2) j.' : | ||
. 1.1- TECHN! CAL-SPECIFICATION: | . 1.1- TECHN! CAL-SPECIFICATION: | ||
| Line 430: | Line 212: | ||
==REFERENCE:== | ==REFERENCE:== | ||
. ; | . ; | ||
-l | -l Technical Specification Table 3.2-3'and=3.6.H: , | ||
Technical Specification Table 3.2-3'and=3.6.H: , | |||
==1.2 DESCRIPTION== | ==1.2 DESCRIPTION== | ||
The-Rod Withdraw 11 Block Monitor Upscale Instrumentation Trip- ! | The-Rod Withdraw 11 Block Monitor Upscale Instrumentation Trip- ! | ||
Setpoint=for two_ recirculation.' loop-operation is determined from p the following relationships | Setpoint=for two_ recirculation.' loop-operation is determined from p the following relationships | ||
| Line 448: | Line 221: | ||
'**: Clamped, with an allowable value not to exceed the allowable'value?.;3 | '**: Clamped, with an allowable value not to exceed the allowable'value?.;3 | ||
- for recirculation loop flow -(Wd) of 1004.. | - for recirculation loop flow -(Wd) of 1004.. | ||
Md'ik the percent of drive flow required to-produce a rate'd core: | |||
flow.of 98 million-lb/hr. Trip. level setting'is in percent of: , | flow.of 98 million-lb/hr. Trip. level setting'is in percent of: , | ||
rated: power (2511: MNth) . . '!' | rated: power (2511: MNth) . . '!' | ||
q | q I | ||
i f. , | |||
i | i | ||
.i t | .i t | ||
| Line 461: | Line 232: | ||
; | ; | ||
i f | i f | ||
g C | g C | ||
P | P | ||
-; | -; | ||
Cycle 11 | Cycle 11 | ||
' Quad Cities -~ Unit 1 1-1 | ' Quad Cities -~ Unit 1 1-1 | ||
-x. - . - - - . . _ . . . _ . . ,. ..--._:..- . . . . . _ . - . , .- | -x. - . - - - . . _ . . . _ . . ,. ..--._:..- . . . . . _ . - . , .- | ||
~, - ;. 7 ,. , ; ^ - - - | ~, - ;. 7 ,. , ; ^ - - - | ||
~- - ' - -- --- | ~- - ' - -- --- | ||
| Line 481: | Line 244: | ||
7 | 7 | ||
; | ; | ||
:]%gCtry y > Oper",,tingj | :]%gCtry y > Oper",,tingj y_ Limito Raphrt > s j-ssy as' '*J g ut. <n ; | ||
y_ Limito Raphrt > s | |||
j-ssy as' '*J | |||
g ut. <n ; | |||
/ | / | ||
g, _s 72.0L ' AVERAGE' PIANAR LINEAR HEAT ' GENERATION RATE | g, _s 72.0L ' AVERAGE' PIANAR LINEAR HEAT ' GENERATION RATE | ||
| Line 501: | Line 255: | ||
a | a | ||
;J M '(> Technical 1 Specification-3.5.I J l | ;J M '(> Technical 1 Specification-3.5.I J l | ||
7 , - 2 .' 2 - -DESCRIPTION: ; | 7 , - 2 .' 2 - -DESCRIPTION: ; | ||
m 1 | m 1 | ||
| Line 509: | Line 262: | ||
, iversus? Average Planar Exposure)for fuel-types:P8DRB265H and 1 BP8DRB265H are determined from Figure 2-2. '! | , iversus? Average Planar Exposure)for fuel-types:P8DRB265H and 1 BP8DRB265H are determined from Figure 2-2. '! | ||
y The. Maximum Average Planar, Linear Heat Generation Rates (MhPLEGT c l f | y The. Maximum Average Planar, Linear Heat Generation Rates (MhPLEGT c l f | ||
versus Average Planar Exposure for fuel type BP8DRB282 is j determined from Figure 2-3. ; | versus Average Planar Exposure for fuel type BP8DRB282 is j determined from Figure 2-3. ; | ||
1 S -The: Maximum; Average Planar Linear Heat Generation Rates (MAPLHGT 7l ' | 1 S -The: Maximum; Average Planar Linear Heat Generation Rates (MAPLHGT 7l ' | ||
versus Average Planar' Exposure.for fuel type BP8DRB283H is- | versus Average Planar' Exposure.for fuel type BP8DRB283H is- | ||
| Line 525: | Line 276: | ||
'from' Figure 2-7. | 'from' Figure 2-7. | ||
m .The Maximum Average Planar Linear Heat Generation Rates (MAPLHG1-versus Average Planar Exposure for fuel type BD301H is'determint i from Figure 2-8. ] | m .The Maximum Average Planar Linear Heat Generation Rates (MAPLHG1-versus Average Planar Exposure for fuel type BD301H is'determint i from Figure 2-8. ] | ||
The Maxista Average Planar Linear-Heat Generation Rates (MAPLHG1. t, | The Maxista Average Planar Linear-Heat Generation Rates (MAPLHG1. t, versus. Average Planar Exposure for fuel type Barrier LTA is determined ~from Figure 2-9. | ||
i i | i i | ||
i t | i t | ||
' Quad Cities - Unit 1 2-1 Cycle 1: | ' Quad Cities - Unit 1 2-1 Cycle 1: | ||
. , 1, s . . _... _ _ ____ _.,. _ _ .. _ ._ _ _ _ _ _.._ _ _ _ _._ _ _ _ ____ _ ___ _ _ _ _ _ ___ _ _ | . , 1, s . . _... _ _ ____ _.,. _ _ .. _ ._ _ _ _ _ _.._ _ _ _ _._ _ _ _ ____ _ ___ _ _ _ _ _ ___ _ _ | ||
L Maximus Avsage Plans Lines Heat Gewation Rate (MAPLHGR) g if I? vs:Aveage PinarExposwe fa Fuel Type P80RB265L g n | L Maximus Avsage Plans Lines Heat Gewation Rate (MAPLHGR) g if I? vs:Aveage PinarExposwe fa Fuel Type P80RB265L g n | ||
; | ; | ||
| Line 550: | Line 290: | ||
! izco s :- | ! izco s :- | ||
; | ; | ||
e H8 X | e H8 X | ||
.! ~ | .! ~ | ||
: E | : E | ||
.p v l | .p v l | ||
Z a "" | Z a "" | ||
3 | 3 | ||
| Line 564: | Line 302: | ||
9.50 i , | 9.50 i , | ||
0 5000 10000 15000 20000 25000 M M M Average Planar Exposure {Nd/Sf; 1 | 0 5000 10000 15000 20000 25000 M M M Average Planar Exposure {Nd/Sf; 1 | ||
e* Figwe 2-1 l i | e* Figwe 2-1 l i i ! | ||
i ! | |||
, , ...--,....,~w., . . , - . - , . . . . - - . - - - - - - . . . , , . . . . _ _ - - . . . . . . . . . . - . _ . . . . - . - . ..._ ...-...--.-..- . - .. -.- -, .-- | , , ...--,....,~w., . . , - . - , . . . . - - . - - - - - - . . . , , . . . . _ _ - - . . . . . . . . . . - . _ . . . . - . - . ..._ ...-...--.-..- . - .. -.- -, .-- | ||
m ._ | m ._ | ||
A | A | ||
>g Marinum Average Plaar lhear Heat Geeration Rate (MAPulGR) g La vs Average Planar Exposse for Fuel Types P80RB26511 ad BP8DB265 g- n- | >g Marinum Average Plaar lhear Heat Geeration Rate (MAPulGR) g La vs Average Planar Exposse for Fuel Types P80RB26511 ad BP8DB265 g- n- | ||
, g - | , g - | ||
i. | i. | ||
.i g : | .i g : | ||
l- g | l- g | ||
~ | ~ | ||
12.50 | 12.50 K a i 12.00 - % | ||
K a | |||
i 12.00 - % | |||
: jjg / | : jjg / | ||
J N . | J N . | ||
i . | i . | ||
i F .00 I | i F .00 I | ||
D 6 | D 6 | ||
11 | 11 | ||
\ N ! | \ N ! | ||
;. = 10.50 4$ ~ | |||
;. = 10.50 | |||
4$ ~ | |||
~ | ~ | ||
\ \ . | \ \ . | ||
| Line 607: | Line 327: | ||
= | = | ||
l l 9.00 | l l 9.00 | ||
\ 3 ! | \ 3 ! | ||
l l | l l | ||
8.50 20000 25000 J0000 35000 40000 45000 ! | 8.50 20000 25000 J0000 35000 40000 45000 ! | ||
0 5000 10000 15000 Average Planar Exposure {Wd/ST;I | 0 5000 10000 15000 Average Planar Exposure {Wd/ST;I 1 Figue 2-2 | ||
1 Figue 2-2 | |||
.. . _ _ . _ _ _ . _ _ . . . _ . _ _ _ . _ . _ ___ _.._____________J | .. . _ _ . _ _ _ . _ _ . . . _ . _ _ _ . _ . _ ___ _.._____________J | ||
.l, | .l, | ||
,4d ,, | ,4d ,, | ||
; ~- | ; ~- | ||
., ~ | ., ~ | ||
l l | l l | ||
r : | l r : | ||
a j Y4 k / 3 l | a j Y4 k / 3 l | ||
:E I | :E I | ||
| Line 648: | Line 347: | ||
A. Q l | A. Q l | ||
; | ; | ||
em B4:Q M ms, | em B4:Q M ms, | ||
~o { ; | ~o { ; | ||
t | t W 5---. v f. | ||
W 5---. v f | |||
s ~B . | s ~B . | ||
d512g' | d512g' | ||
; | ; | ||
. LB5 / M: 8 iI | . LB5 / M: 8 iI | ||
+ | + | ||
w O f is- | w O f is-i ch. .M - | ||
i | |||
ch. .M - | |||
. pg ' | . pg ' | ||
EA.S - , | EA.S - , | ||
| Line 678: | Line 362: | ||
h, . sa ji - | h, . sa ji - | ||
-h. - | -h. - | ||
m- . | m- . | ||
w:w s 3 g | w:w s 3 g | ||
.l4= | .l4= | ||
N i W : | N i W : | ||
.M a | .M a | ||
@- k h M h M.. k | @- k h M h M.. k | ||
_ o_ o_ = ; | _ o_ o_ = ; | ||
M cNet- Wt1 p.1-4 | M cNet- Wt1 p.1-4 | ||
j., | j., | ||
~ | ~ | ||
~ | ~ | ||
| Line 705: | Line 377: | ||
vs Average Planar Exposure for Fuel Type BP8DRB283H j ~ | vs Average Planar Exposure for Fuel Type BP8DRB283H j ~ | ||
l[f- | l[f- | ||
:i ^ - | :i ^ - | ||
g 12.50 g | g 12.50 g | ||
. J i 11.50 - | . J i 11.50 - | ||
j/ \ 3 e | j/ \ 3 e | ||
/ | / | ||
_ g11.00 . | _ g11.00 . | ||
3 l.IE \ | 3 l.IE \ | ||
N\ | N\ | ||
~ | ~ | ||
l08 10.00 s | |||
i 9m 20000 25000 30000 35000 40000 45000 I O 5000 10000 15000 | |||
l08 | |||
10.00 | |||
9m 20000 25000 30000 35000 40000 45000 I O 5000 10000 15000 | |||
: Average Planar Exposure (WWd/ST' o ; | : Average Planar Exposure (WWd/ST' o ; | ||
l1 Figre 2-4 . | l1 Figre 2-4 . | ||
! . :4 | ! . :4 | ||
! Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) g . | ! Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) g . | ||
i I vs Average Planar Exposure for Fuel Type BP80RB299 g | i I vs Average Planar Exposure for Fuel Type BP80RB299 g | ||
.F | .F | ||
; | ; | ||
.r | .r | ||
.! E h 1230 i l ~^ { ; | .! E h 1230 i l ~^ { ; | ||
!' 12.00 w i | |||
!' 12.00 w | |||
i | |||
! 1130 ; | ! 1130 ; | ||
i e i | i e i | ||
; | ; | ||
Alla rr f l i | Alla rr f l i | ||
!ao5 1050 ; x l 3 \ | !ao5 1050 ; x l 3 \ | ||
10m | 10m 3 \ | ||
3 \ | |||
950 . | 950 . | ||
i t | |||
i | 9.00 5000 10000 15000 20000 2'iOOD M M M N 0 | ||
Average Planar Exposure (Nd/ST e i | Average Planar Exposure (Nd/ST e i | ||
* Figwe 2-5 1 | * Figwe 2-5 1 | ||
7 . | 7 . | ||
I Haximum Average Planar Linear Heat Generation Rate (MAPLHGR) g . | I Haximum Average Planar Linear Heat Generation Rate (MAPLHGR) g . | ||
'E vs Average Planar Exposure for Fuel Type BD300A if i | 'E vs Average Planar Exposure for Fuel Type BD300A if i | ||
! .e | ! .e 5 | ||
13 2 | |||
\ | \ | ||
13.00- | 13.00- | ||
/ { | / { | ||
,u0 , | ,u0 , | ||
2 | 2 | ||
| Line 801: | Line 436: | ||
i_ Figme 2-6 | i_ Figme 2-6 | ||
- , , , ,e ,. ,, ..,,......n,- | - , , , ,e ,. ,, ..,,......n,- | ||
- . ~ - ,,,,,n ,,....,,...-,.re,e,,, , _ , , , + , - - - . . , | - . ~ - ,,,,,n ,,....,,...-,.re,e,,, , _ , , , + , - - - . . , | ||
~ | ~ | ||
f. | f. | ||
lg Maximan Average Planar Linear Heat Generation Rate (MAPLHGR) e ~ | lg Maximan Average Planar Linear Heat Generation Rate (MAPLHGR) e ~ | ||
lsw vs Average Planar Exposure for Fuel Type BD3008 i y | |||
lsw vs Average Planar Exposure for Fuel Type BD3008 i | g lE | ||
lE | |||
!~ | !~ | ||
13.50 I 13.00 | |||
13.50 | |||
I 13.00 | |||
! 1z50 - [ \ ' | ! 1z50 - [ \ ' | ||
izm / \ | izm / \ | ||
l eii.s / \ T ; | l eii.s / \ T ; | ||
| Line 836: | Line 456: | ||
9.00 as | 9.00 as | ||
\, | \, | ||
8.00 ! | 8.00 ! | ||
0 | 0 5000 10000 15000 m 25mo 3aos 3s000 aooo ; | ||
5000 10000 15000 m 25mo 3aos 3s000 aooo ; | |||
Average Planar Exposure {Nd/ST | Average Planar Exposure {Nd/ST | ||
\e l Figwe 2-7 | \e l Figwe 2-7 | ||
- .- .. . . - _ .. _ _a | - .- .. . . - _ .. _ _a | ||
lr llaximum Average Planar Linear Heat Generation Rate (ilAPLHGR) g ' | lr llaximum Average Planar Linear Heat Generation Rate (ilAPLHGR) g ' | ||
;j vs Average Planar Exposure for Fuel Type BD301H { | |||
;j | lie l 13.50 | ||
vs Average Planar Exposure for Fuel Type BD301H { | |||
lie | |||
l 13.50 | |||
# N I | # N I | ||
: 13.00 l 12.50 | : 13.00 l 12.50 | ||
| Line 875: | Line 477: | ||
\ | \ | ||
\ | \ | ||
I$ 9.50 N d 9.00 \ | I$ 9.50 N d 9.00 \ | ||
5 8.50 | 5 8.50 | ||
| Line 885: | Line 486: | ||
! 6.50 3 6.00 5000 10000 15000 20000 2500C 30000 35000 40000 45000 50000 0 | ! 6.50 3 6.00 5000 10000 15000 20000 2500C 30000 35000 40000 45000 50000 0 | ||
Average ?lanar Exposure iWd/ST) ' | Average ?lanar Exposure iWd/ST) ' | ||
g | g I | ||
I | |||
, n. ~. .~ . - - , . - - . . , . . , | , n. ~. .~ . - - , . - - . . , . . , | ||
Figwe 2-8 | Figwe 2-8 | ||
| Line 895: | Line 494: | ||
~," | ~," | ||
' '~ ~ | ' '~ ~ | ||
Maximum Average Planar Linear Heat Generation Rate (MAPLHG g . | Maximum Average Planar Linear Heat Generation Rate (MAPLHG g . | ||
I vs Average Planar Exposure for Fuel Type Barrier LTA y | I vs Average Planar Exposure for Fuel Type Barrier LTA y | ||
:# .e | :# .e 5 | ||
5 | |||
; | ; | ||
tom I 9.50 i / | tom I 9.50 i / | ||
| Line 918: | Line 506: | ||
= 7.00 | = 7.00 | ||
% 3 i | % 3 i | ||
\ | \ | ||
6.50 | 6.50 | ||
| Line 925: | Line 511: | ||
~ | ~ | ||
5.50 0 m a im m m m m a m So0r_ | 5.50 0 m a im m m m m a m So0r_ | ||
Average Plancr Exposure {Nd/ST[ | Average Plancr Exposure {Nd/ST[ | ||
a i Figwe 2-9 | a i Figwe 2-9 | ||
' g;lCoge Oper; ting Limits Report | ' g;lCoge Oper; ting Limits Report q.o.;- v. , _ , t- ; | ||
i 3.0- LI"_*" MEh? GENEPATION RATE (LnGR) (3.5/4.5) , | |||
q.o.;- v. , _ , t- ; | j 3.1 TBCENICAL #FSCIFICATION | ||
i | |||
j | |||
3.1 TBCENICAL #FSCIFICATION | |||
==REFERENCE:== | ==REFERENCE:== | ||
i g Technical Specification 3.5.J | i g Technical Specification 3.5.J | ||
; | ; | ||
| Line 957: | Line 532: | ||
-> 6.- BFSDRB299 l | -> 6.- BFSDRB299 l | ||
: 7. Barrier LTA ! | : 7. Barrier LTA ! | ||
I b '. The LEGR limit-is 14.4 kw/ft for fuel ~typest i | I b '. The LEGR limit-is 14.4 kw/ft for fuel ~typest i | ||
e | e | ||
| Line 967: | Line 540: | ||
; | ; | ||
; | ; | ||
I i | |||
I | |||
i | |||
.f : | .f : | ||
lr i | |||
lr | I I | ||
I | |||
Quad Cities - Unit 1 3-1 Cycle 12- | Quad Cities - Unit 1 3-1 Cycle 12- | ||
..._a.a..__.- . | ..._a.a..__.- . | ||
c, Cere Oper; ting Limits Report | c, Cere Oper; ting Limits Report | ||
: # [; ., , | : # [; ., , | ||
4 | 4 | ||
!" 4.0- 'kiW1WUli CRITICAL POWER RATIO (MCPR)- (3.5/4.5) l | !" 4.0- 'kiW1WUli CRITICAL POWER RATIO (MCPR)- (3.5/4.5) l 4.1 TBCNNICAL SPECIFICATION | ||
4.1 TBCNNICAL SPECIFICATION | |||
==REFERENCE:== | ==REFERENCE:== | ||
l | l | ||
.l Technical _ Specification 3.5.K and 3.6.H ; | .l Technical _ Specification 3.5.K and 3.6.H ; | ||
i | i | ||
==4.2 DESCRIPTION== | ==4.2 DESCRIPTION== | ||
During steady-state operation at rated core flow, NCFR shall be ! | During steady-state operation at rated core flow, NCFR shall be ! | ||
greater.than or equals l 1.30- for tave < 0.68 sec. , | greater.than or equals l 1.30- for tave < 0.68 sec. , | ||
1.35 for tave > 0.86 sec. , | 1.35 for tave > 0.86 sec. , | ||
(0.278)tave + 1.111 for 0.58 sec. < tave-< 0.86 see.. l , | (0.278)tave + 1.111 for 0.58 sec. < tave-< 0.86 see.. l , | ||
where tave = mean 20% scram insertion time for all surveillance I' data from Tech. Spec. 4.3.C which has been generatt in the current cycle. j For core flows other than rated, these nominal values of HCFR shall be increased by a factor of Kf where Kf is as shown in t Figure 4-1. ; | where tave = mean 20% scram insertion time for all surveillance I' data from Tech. Spec. 4.3.C which has been generatt in the current cycle. j For core flows other than rated, these nominal values of HCFR shall be increased by a factor of Kf where Kf is as shown in t Figure 4-1. ; | ||
When operating with a Feedwater Heater Out-of-Service, the ! | When operating with a Feedwater Heater Out-of-Service, the ! | ||
Operating MCPR Limit shall be increased by 0.02. ; | Operating MCPR Limit shall be increased by 0.02. ; | ||
1 i | 1 i | ||
y | y | ||
!9 | !9 i | ||
i | |||
i 1 | i 1 | ||
i | i l. | ||
l. | |||
i~ , | i~ , | ||
b P | b P | ||
d t | d t | ||
-Quad' Cities - Unit 1 4-1 Cycle 1: | -Quad' Cities - Unit 1 4-1 Cycle 1: | ||
i e i | |||
.CareOperatira Limits bort-J a j | |||
i | |||
e i | |||
.CareOperatira Limits bort- | |||
J a j | |||
= l 3 | = l 3 | ||
{ | { | ||
I m | |||
I | |||
m | |||
. i I | . i I | ||
5 | 5 | ||
/ | / | ||
/ G l | / G l | ||
1 | 1 | ||
,/ ; | ,/ ; | ||
8 ' a | 8 ' a | ||
/ !- | / !- | ||
8 g l n l g B | 8 g l n l g B | ||
~ | ~ | ||
/ [ R | / [ R | ||
/ - | / - | ||
I 1 | I 1 | ||
I g w 8 % | I g w 8 % | ||
e- a B l e C. - | e- a B l e C. - | ||
*EI' | *EI' | ||
/ | / | ||
i sf s- a L *n.a.ll> t.s t ) E eir : | |||
i sf s- a | |||
L *n.a.ll> t.s t ) E eir : | |||
l | l | ||
_ g - s- ~ | _ g - s- ~ | ||
L w I,/ g" | L w I,/ g" | ||
; | ; | ||
L l gg i | L l gg i | ||
/ c I . | / c I . | ||
/ e | / e | ||
/ | / | ||
| Line 1,100: | Line 609: | ||
/ $ | / $ | ||
f n ' | f n ' | ||
,/ - | ,/ - | ||
g | g | ||
/ | / | ||
/ - | / - | ||
R - | R - | ||
I | I | ||
Revision as of 00:48, 1 February 2020
| ML19325C908 | |
| Person / Time | |
|---|---|
| Site: | Quad Cities |
| Issue date: | 10/11/1989 |
| From: | COMMONWEALTH EDISON CO. |
| To: | |
| Shared Package | |
| ML19325C898 | List: |
| References | |
| NUDOCS 8910180083 | |
| Download: ML19325C908 (19) | |
Text
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, Core Operating: Limits Report '
a , ;
for~ ,
t 3 ' Quad = Cities' Nuclear. Power Station-t i
Unit l1,-Reload 10 (Cycle 11) e, , ,
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ISSUANCE'OF CHANGES ~SUROUGtY -
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Section Pages l' - Summary of Chances Date-- i
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- I I I I I I l l I I Quad Cities - Unit 1 i Cycle 1:
. . . . ~ . . . .- -- . - . . . -.
- + ' . .. , '
A@i.qpiCere .Operdting;Limito Report .]
p _
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' ,l TABLE OF CONTENTS 1 Page 1 3 ,
. REFERENCES ......................................................
iii i l
1 s .
iv; : i 4
' LIST OF FIGURES .................................................
f
, 1. 0 ' CONTROL ROD WITHDRAWAL BLOCK INSTRUMENTATION (3.2/4.2) .... 1-1 -
1.1 Technical. Specification Reforence ................. 1-1 q 1.2- Description ....................................... ._1-1 ,
2.0 AVERAGE PLANAR LINEAR HEAT GENERATION RATE (3.5/4.5) ..... 2-1 ,
9 2 -1.
2.1 L -Technical Specification Reference .................
2.2 -Description ....................................... 2-1
.3.0 : LINEAR HEAT. GENERATION RATE -(3.5/4.5) .................. 3-1 3 '.1 - : Technical Specification Reference .................c 3 - 1..
L 3.2: ' Description- ...................................... '3 o 4.0 MINIMUM CRITICAL POWER RATIO (3.5/4.5) ................. 4-1 4.1 Technical Specification Reference ................. 4-1=
4.2' Description ..............................~......... 4 l4 i ..
L u.- ;
l l:
P r
n Quad Cities - Unit 1 11 Cycle 1 ,
3, a Core l:Oper; ting l Limits; Report--
, _ l j
..4
.. t.:
'I w,
REFERENCES
- 1. Commonwealth 1 Edison Company and, Iowa-Illinois Gas and Electric ~
m Company. Docket No.-l50-254, Quad Cities Station, Unit 1= Facility. '
Operating License, License No. DRP-29. .j
'l
- 2. Letter from D. M. Crutchfield to All Power Reactor-Licenses and l Applicants, Generic. Letter 88-16; Concerning the Removal:of i Cycle-Specific Parameter-Limits from Technical Specifications.- <
g .3. Supplemental Reload License Submittal.for Quad Cities Nuclear Power Station, Unit 1, Reload 10 (Cycle 11) , 23A5970, ~ Rev. 0, May 1989. ;
'4. Quad Cities Nuclear Power Station,. Units 1 and 2, SAFER /GESTR >
LOCA Loss-of-Coolant-Accident Analysis, NEDC-31345P, June 1987
-(as amended). i 1
5._ General, Electric Standard Application for Reactor Fuel (GESTAR)'~,- 1 NEDE-24011-P-A-9, September 1988 (as amended). i J
l l
1 l
9 1
O e
. Q..d Cmes - ene 1 m
C-. H
7 . .-
- '*(Chro',0perttingl Limits Repcet.
,9 ? . .. ..
q s~ :.,
i e q.;c LIST OF FIGURES 1
s FIGURE' TITLE / DESCRIPTION .PAGE' _j 1
2-1. '
Maximum Average Planar Linear Heat Generation Rate' 2-2;:1 1
(MhPLEGR)- vs. Average Planar- Exposure = for Fuel Type i
P8DRB265L.
i 2-2 Maximum Average Planar Linear Heat Generation-Rate 2-3
.(MhPLEGR) vs. Average Planar Exposure for Fuel Types P8DRB265H.and BP8DRB265H.- :
Maximum Average Planar Linear Heat Generation Rate 2-4
~
2-3 [
(MhPLHGR): vs. Average Planar Exposure for Fuel Type BP8DRB282.
l . I 2-4 Maximum Average Planar Linear. Heat Generation Rate 2-5 'L (MhPLHGR) vs. Average Planar Exposure for Fuel Type BP8DRB283H.
- 2-5 Maximum-Average Planar Linear Heat Generation Rate 2-6 [
(MkPLHGR) vs.' Avorage Planar Exposure for Fuel . Type BP8DRB299. ;
.2-6 Maximum Average Planar Linear Heat Generation Rate 2-7 3 (MhPLHGR) vs. Average Planar. Exposure for Fuel Type ,
BD300A. t t
2-7 Maximum Average Planar Linear Heat Generation Rate 2-8 (MhPLNGR)' vs. Average Planar Exposure for Fuel Type ,
BD3008. -l 2 Maximum Average Planar Linear Heat Generation Rate 2-9~
(MAPLHGR) vs. Average Planar-Exposure for Fuel Type-BD30lH.
- 2-9 Maximum Average Planar Linear Heat Generation Rate 2-10 (MhPLEGR) vs. Average Planar Exposure for Fuel Type l Barrier LTA.
4-1 Kf Factor vs. Core Flow %. 4-2 1: .
l.
' Quad. Cities - Unit 1 iv Cycle 1
pv . ,, .-
LT, " ' Core'. Operating Limito : Report -
.;
[ u y ,1. ! .
p- .
L. , t_ . . . . . .
N 1.0 CONTROL ROD WITEDRANAL' BLOCK INSTSUMENTATION - (3;2/4.2) j.' :
. 1.1- TECHN! CAL-SPECIFICATION:
REFERENCE:
. ;
-l Technical Specification Table 3.2-3'and=3.6.H: ,
1.2 DESCRIPTION
The-Rod Withdraw 11 Block Monitor Upscale Instrumentation Trip- !
Setpoint=for two_ recirculation.' loop-operation is determined from p the following relationships
.;
< (0. 65)Md + 434** l
'**: Clamped, with an allowable value not to exceed the allowable'value?.;3
- for recirculation loop flow -(Wd) of 1004..
Md'ik the percent of drive flow required to-produce a rate'd core:
flow.of 98 million-lb/hr. Trip. level setting'is in percent of: ,
rated: power (2511: MNth) . . '!'
q I
i f. ,
i
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l .
i
i f
g C
P
-;
Cycle 11
' Quad Cities -~ Unit 1 1-1
-x. - . - - - . . _ . . . _ . . ,. ..--._:..- . . . . . _ . - . , .-
~, - ;. 7 ,. , ; ^ - - -
~- - ' - -- ---
"'~~-----
7
- ]%gCtry y > Oper",,tingj y_ Limito Raphrt > s j-ssy as' '*J g ut. <n ;
/
g, _s 72.0L ' AVERAGE' PIANAR LINEAR HEAT ' GENERATION RATE
- (APLNGR) (3.5/4.5)- .;
1 2 i 15 Tm suuICAL' SPECIFICATION
REFERENCE:
h-4 ~
a
- J M '(> Technical 1 Specification-3.5.I J l
7 , - 2 .' 2 - -DESCRIPTION: ;
m 1
. The; Maximum Average Planar Linear Heat Generation Rates' .(MhPLHGF jI y ,
, <versus Average Planar-Exposure for fuel type PBDRB265L is 1 g determined;from Figure 2-1. ,
The, Maximum Average Planar- Linear Heat Generation Rates. (MAPLHGF '
, iversus? Average Planar Exposure)for fuel-types:P8DRB265H and 1 BP8DRB265H are determined from Figure 2-2. '!
y The. Maximum Average Planar, Linear Heat Generation Rates (MhPLEGT c l f
versus Average Planar Exposure for fuel type BP8DRB282 is j determined from Figure 2-3. ;
1 S -The: Maximum; Average Planar Linear Heat Generation Rates (MAPLHGT 7l '
versus Average Planar' Exposure.for fuel type BP8DRB283H is-
- u. determined.from Figure 2-4.
i L' The' Maximum Average. Planar Linear Heat Generation Rates (MhPLHGI .:
versus Average Planar Exposure for fuelotype.BP8DRB299 is 1 0 ~
determined from Figure 2-5. j i
- The Maximum Average Planar Linear. Heat Generation 1 Rates (MAPLHG1]
versus Average, Planar ExposureJfor fuel type BD300A'is determint =
L from: Figure 2-6. ,
The Maximum Average Planar Linear Heat Generation-Rates (MkPLHGI l -
versus Average. Planar Exposure'for fuel' type BD3008 is' determine ' '
'from' Figure 2-7.
m .The Maximum Average Planar Linear Heat Generation Rates (MAPLHG1-versus Average Planar Exposure for fuel type BD301H is'determint i from Figure 2-8. ]
The Maxista Average Planar Linear-Heat Generation Rates (MAPLHG1. t, versus. Average Planar Exposure for fuel type Barrier LTA is determined ~from Figure 2-9.
i i
i t
' Quad Cities - Unit 1 2-1 Cycle 1:
. , 1, s . . _... _ _ ____ _.,. _ _ .. _ ._ _ _ _ _ _.._ _ _ _ _._ _ _ _ ____ _ ___ _ _ _ _ _ ___ _ _
L Maximus Avsage Plans Lines Heat Gewation Rate (MAPLHGR) g if I? vs:Aveage PinarExposwe fa Fuel Type P80RB265L g n
E Jr ._
k g .
1zsa g
x s ,
! izco s :-
e H8 X
.! ~
- E
.p v l
Z a ""
3
\ \ ,
= 10.50
\
10.00 i
9.50 i ,
0 5000 10000 15000 20000 25000 M M M Average Planar Exposure {Nd/Sf; 1
e* Figwe 2-1 l i i !
, , ...--,....,~w., . . , - . - , . . . . - - . - - - - - - . . . , , . . . . _ _ - - . . . . . . . . . . - . _ . . . . - . - . ..._ ...-...--.-..- . - .. -.- -, .--
m ._
A
>g Marinum Average Plaar lhear Heat Geeration Rate (MAPulGR) g La vs Average Planar Exposse for Fuel Types P80RB26511 ad BP8DB265 g- n-
, g -
i.
.i g :
l- g
~
12.50 K a i 12.00 - %
- jjg /
J N .
i .
i F .00 I
D 6
11
\ N !
- . = 10.50 4$ ~
~
\ \ .
i SE 10.00 E
=
l l 9.00
\ 3 !
l l
8.50 20000 25000 J0000 35000 40000 45000 !
0 5000 10000 15000 Average Planar Exposure {Wd/ST;I 1 Figue 2-2
.. . _ _ . _ _ _ . _ _ . . . _ . _ _ _ . _ . _ ___ _.._____________J
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M cNet- Wt1 p.1-4
j.,
~
~
Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) e .
vs Average Planar Exposure for Fuel Type BP8DRB283H j ~
l[f-
- i ^ -
g 12.50 g
. J i 11.50 -
j/ \ 3 e
/
_ g11.00 .
3 l.IE \
N\
~
l08 10.00 s
i 9m 20000 25000 30000 35000 40000 45000 I O 5000 10000 15000
- Average Planar Exposure (WWd/ST' o ;
l1 Figre 2-4 .
! . :4
! Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) g .
i I vs Average Planar Exposure for Fuel Type BP80RB299 g
.F
.r
.! E h 1230 i l ~^ { ;
!' 12.00 w i
! 1130 ;
i e i
Alla rr f l i
!ao5 1050 ; x l 3 \
10m 3 \
950 .
i t
9.00 5000 10000 15000 20000 2'iOOD M M M N 0
Average Planar Exposure (Nd/ST e i
- Figwe 2-5 1
7 .
I Haximum Average Planar Linear Heat Generation Rate (MAPLHGR) g .
'E vs Average Planar Exposure for Fuel Type BD300A if i
! .e 5
13 2
\
13.00-
/ {
,u0 ,
2
/ \ '
'2m j x 3
, Eilm Q11.50 \
= N
!. go 10 2
\
l 3 10.00 92
\
\
9.00 82
\ ~
~B.00 i 0 5000 10000 1M M N 8 #
Average Planar Exposure '<WWd/Sf; n
i_ Figme 2-6
- , , , ,e ,. ,, ..,,......n,-
- . ~ - ,,,,,n ,,....,,...-,.re,e,,, , _ , , , + , - - - . . ,
~
f.
lg Maximan Average Planar Linear Heat Generation Rate (MAPLHGR) e ~
lsw vs Average Planar Exposure for Fuel Type BD3008 i y
g lE
!~
13.50 I 13.00
! 1z50 - [ \ '
izm / \
l eii.s / \ T ;
! E / \
l .;.Ali.00
- N ,
3 J g 10.50
\
% 10.00 9.50 x
9.00 as
\,
8.00 !
0 5000 10000 15000 m 25mo 3aos 3s000 aooo ;
Average Planar Exposure {Nd/ST
\e l Figwe 2-7
- .- .. . . - _ .. _ _a
lr llaximum Average Planar Linear Heat Generation Rate (ilAPLHGR) g '
- j vs Average Planar Exposure for Fuel Type BD301H {
lie l 13.50
- N I
- 13.00 l 12.50
! \
! 12.00
! \
! 11.50- ! \
p11.00
\
R .50 \. '
4 10 l v $10.00-
\
\
I$ 9.50 N d 9.00 \
5 8.50
\
8.00 7.50
\
\
7.00 l \
! 6.50 3 6.00 5000 10000 15000 20000 2500C 30000 35000 40000 45000 50000 0
Average ?lanar Exposure iWd/ST) '
g I
, n. ~. .~ . - - , . - - . . , . . ,
Figwe 2-8
. , . .. ... .. ..--- ... .n - -- - . , . - --.-- - --,-,-., . ,-,.- -. ------
]
~,"
' '~ ~
Maximum Average Planar Linear Heat Generation Rate (MAPLHG g .
I vs Average Planar Exposure for Fuel Type Barrier LTA y
- .e 5
tom I 9.50 i /
' N '
9.00 l = a50 , x
< / \
i.rf"" / \
l k'"
= 7.00
% 3 i
\
6.50
\ l 6.00
~
5.50 0 m a im m m m m a m So0r_
Average Plancr Exposure {Nd/ST[
a i Figwe 2-9
' g;lCoge Oper; ting Limits Report q.o.;- v. , _ , t- ;
i 3.0- LI"_*" MEh? GENEPATION RATE (LnGR) (3.5/4.5) ,
j 3.1 TBCENICAL #FSCIFICATION
REFERENCE:
i g Technical Specification 3.5.J
3.2 DESCRIPTION
- i I
- a. The LEGR limit is 13.4 kw/ft for fuel types: ]
1.: PSDRB265L ];
- 2. PSDRB2655
- 3. BF80RB265R )
- 4. SFSDRB283R :
5.- BFSDRB282- -!
-> 6.- BFSDRB299 l
- 7. Barrier LTA !
I b '. The LEGR limit-is 14.4 kw/ft for fuel ~typest i
e
- 1. BD300A ;
- 2. BD3003 '
i 3.- BD301H !
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Quad Cities - Unit 1 3-1 Cycle 12-
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c, Cere Oper; ting Limits Report
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4
!" 4.0- 'kiW1WUli CRITICAL POWER RATIO (MCPR)- (3.5/4.5) l 4.1 TBCNNICAL SPECIFICATION
REFERENCE:
l
.l Technical _ Specification 3.5.K and 3.6.H ;
i
4.2 DESCRIPTION
During steady-state operation at rated core flow, NCFR shall be !
greater.than or equals l 1.30- for tave < 0.68 sec. ,
1.35 for tave > 0.86 sec. ,
(0.278)tave + 1.111 for 0.58 sec. < tave-< 0.86 see.. l ,
where tave = mean 20% scram insertion time for all surveillance I' data from Tech. Spec. 4.3.C which has been generatt in the current cycle. j For core flows other than rated, these nominal values of HCFR shall be increased by a factor of Kf where Kf is as shown in t Figure 4-1. ;
When operating with a Feedwater Heater Out-of-Service, the !
Operating MCPR Limit shall be increased by 0.02. ;
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