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| number = ML19325C908 | | number = ML19325C908 | ||
| issue date = 10/11/1989 | | issue date = 10/11/1989 | ||
| title = Core Operating Limits Rept for Quad Cities Nuclear Power Station Unit 1,Reload 10 (Cycle 11) | | title = Core Operating Limits Rept for Quad Cities Nuclear Power Station Unit 1,Reload 10 (Cycle 11) | ||
| author name = | | author name = | ||
| author affiliation = COMMONWEALTH EDISON CO. | | author affiliation = COMMONWEALTH EDISON CO. | ||
| Line 17: | Line 17: | ||
=Text= | =Text= | ||
{{#Wiki_filter:. . . _ _ | {{#Wiki_filter:... _ _ | ||
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.. s Core Operating: Limits Report a | |||
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for~ | ' Quad = Cities' Nuclear. Power Station-3 t | ||
t | Unit l1,-Reload 10 (Cycle 11) i e, | ||
Unit l1,-Reload 10 (Cycle 11) e | .s e | ||
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N,.I'sC;re;OperC. ting l Limit'Of Report [ | |||
N, .I'sC;re;OperC. ting l Limit'Of Report [ | l' | ||
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ISSUANCE'OF CHANGES ~SUROUGtY | '''*~'-j. | ||
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c.Affected i | t ISSUANCE'OF CHANGES ~SUROUGtY f | ||
Section | 4 f | ||
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1~ | Section Pages l' | ||
- Summary of Chances Date-- i l | |||
.y 1 | |||
1 | All. | ||
Original' Issue-- (Cycle-11)' | |||
06/89:r All M. | |||
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I Quad Cities - Unit 1 i | |||
Cycle 1: | |||
. ~... | |||
A@i.qpiCere.Operdting;Limito Report | |||
A@i.qpiCere | :; + '. | ||
p | .] | ||
p | |||
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j TABLE OF CONTENTS 1 | |||
Page 1 | |||
iv; : i | 3 iii i | ||
. REFERENCES...................................................... | |||
f | l 1 | ||
s iv; : i | |||
1.1 | ' LIST OF FIGURES................................................. | ||
2.0 | 4 f | ||
: 1. 0 ' | |||
2.1 L | CONTROL ROD WITHDRAWAL BLOCK INSTRUMENTATION (3.2/4.2).... 1-1 1.1 Technical. Specification Reforence................. | ||
2.2 | 1-1 q 1.2-Description........................................_1-1 2.0 AVERAGE PLANAR LINEAR HEAT GENERATION RATE (3.5/4.5) 2-1 9 | ||
-1. | |||
L | 2 2.1 L | ||
4.2' | -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.. | |||
'3 L 3.2: | |||
' Description-4.0 MINIMUM CRITICAL POWER RATIO (3.5/4.5) 4-1 o | |||
4.1 Technical Specification Reference................. | |||
4-1= | |||
4.2' Description..............................~......... | |||
4 l4 i.. | |||
L u.- ; | L u.- ; | ||
l l: | l l: | ||
P r | P r | ||
n Quad Cities - Unit 1 | n Quad Cities - Unit 1 11 Cycle 1, | ||
3, | 3, a Core l:Oper; ting l Limits; Report-- | ||
j | |||
..4 t.: | |||
'I w, | |||
REFERENCES 1. | |||
REFERENCES | Commonwealth 1 Edison Company and, Iowa-Illinois Gas and Electric | ||
~ | |||
Company. Docket No.-l50-254, Quad Cities Station, Unit 1= Facility. ' | |||
Operating License, License No. DRP-29. | m Operating License, License No. DRP-29. | ||
.j | |||
'l 2. | |||
g | 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 | LOCA Loss-of-Coolant-Accident Analysis, NEDC-31345P, June 1987 | ||
-(as amended). | |||
5._ | i 5._ | ||
General, Electric Standard Application for Reactor Fuel (GESTAR)'~,- 1 NEDE-24011-P-A-9, September 1988 (as amended). | |||
i J | |||
l l | l l | ||
l 9 | |||
9 | |||
O e | O e | ||
C-. H | C-. H | ||
. Q..d Cmes - ene 1 m | |||
7 . .- | 7..- | ||
* '*(Chro',0perttingl Limits Repcet. | |||
,9 ? | |||
q | q s~ | ||
i | i e q.;c LIST OF FIGURES 1 | ||
FIGURE' | s FIGURE' TITLE / DESCRIPTION | ||
2-1. | .PAGE' _j 1 | ||
Maximum Average Planar Linear Heat Generation Rate' | 2-1. | ||
(MhPLEGR)- vs. Average Planar- Exposure = for Fuel Type i | Maximum Average Planar Linear Heat Generation Rate' 2-2;:1 (MhPLEGR)- vs. Average Planar-Exposure = for Fuel Type i | ||
P8DRB265L. | 1 P8DRB265L. | ||
i 2-2 | 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 | 2-3 Maximum Average Planar Linear Heat Generation Rate 2-4 | ||
[ | |||
~ | |||
(MhPLHGR): vs. Average Planar Exposure for Fuel Type BP8DRB282. | (MhPLHGR): vs. Average Planar Exposure for Fuel Type BP8DRB282. | ||
l | I l | ||
:2-5 | 'L 2-4 Maximum Average Planar Linear. Heat Generation Rate 2-5 (MhPLHGR) vs. Average Planar Exposure for Fuel Type BP8DRB283H. | ||
(MkPLHGR) vs.' Avorage Planar Exposure for Fuel . Type BP8DRB299. | [ | ||
:2-5 Maximum-Average Planar Linear Heat Generation Rate 2-6 (MkPLHGR) vs.' Avorage Planar Exposure for Fuel. Type BP8DRB299. | |||
BD300A. | .2-6 Maximum Average Planar Linear Heat Generation Rate 2-7 3 | ||
2-7 | (MhPLHGR) vs. Average Planar. Exposure for Fuel Type BD300A. | ||
BD3008. | 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. | (MAPLHGR) vs. Average Planar-Exposure for Fuel Type-BD30lH. | ||
:2-9 | :2-9 Maximum Average Planar Linear Heat Generation Rate 2-10 (MhPLEGR) vs. Average Planar Exposure for Fuel Type l | ||
4-1 | Barrier LTA. | ||
4-1 Kf Factor vs. Core Flow %. | |||
4-2 1: | |||
l. | l. | ||
' Quad. Cities - Unit 1 iv Cycle 1 | |||
pv | pv LT, " ' Core'. Operating Limito : Report - | ||
LT, " ' Core'. Operating Limito : Report - | [ | ||
[ | y,1. ! | ||
p- | u p-t_ | ||
L | L. | ||
N 1.0 | N 1.0 CONTROL ROD WITEDRANAL' BLOCK INSTSUMENTATION - (3;2/4.2) j.' | ||
1.1-TECHN! CAL-SPECIFICATION: | |||
==REFERENCE:== | ==REFERENCE:== | ||
-l Technical Specification Table 3.2-3'and=3.6.H: | |||
==1.2 | ==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 | < (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: | Md'ik the percent of drive flow required to-produce a rate'd core: | ||
flow.of 98 million-lb/hr. | flow.of 98 million-lb/hr. | ||
rated: power (2511: MNth) . . | Trip. level setting'is in percent of: | ||
rated: power (2511: MNth).. | |||
q I | q I | ||
i f. | i f. | ||
i | i | ||
.i t | |||
l | l i | ||
i | i f | ||
g C | |||
P | |||
' Quad Cities -~ Unit 1 1-1 Cycle 11 | |||
-x. | |||
~, - ;. | |||
7,. | |||
; ^ | |||
~- | |||
"'~~----- | |||
7 | 7 | ||
:]%gCtry | :]%gCtry Oper",,tingj Limito Raphrt > | ||
s y | |||
y_ | |||
j-ssy as' | |||
1 2 i 15 | '*J g ut. | ||
<n 72.0L ' AVERAGE' PIANAR LINEAR HEAT ' GENERATION RATE | |||
/ | |||
g, _s (APLNGR) (3.5/4.5)- | |||
1 h-4 2 i 15 T | |||
suuICAL' SPECIFICATION | |||
==REFERENCE:== | ==REFERENCE:== | ||
m a | |||
;J M | |||
a | '(> | ||
Technical 1 Specification-3.5.I J | |||
~ | |||
m | l 7 | ||
- 2.' 2 - | |||
-DESCRIPTION: | |||
The, Maximum Average Planar- Linear Heat Generation Rates. (MAPLHGF ' | m 1 | ||
. The; Maximum Average Planar Linear Heat Generation Rates'.(MhPLHGF jI y | |||
y The. Maximum Average Planar, Linear Heat Generation Rates (MhPLEGT c l f | <versus Average Planar-Exposure for fuel type PBDRB265L is 1 | ||
versus Average Planar Exposure for fuel type BP8DRB282 is | determined;from Figure 2-1. | ||
1 S | g The, Maximum Average Planar-Linear Heat Generation Rates. (MAPLHGF ' | ||
versus Average Planar' Exposure.for fuel type BP8DRB283H is- | iversus? Average Planar Exposure)for fuel-types:P8DRB265H and 1 | ||
BP8DRB265H are determined from Figure 2-2. | |||
i L' | '!y The. Maximum Average Planar, Linear Heat Generation Rates (MhPLEGT c l f | ||
versus Average Planar Exposure for fuelotype.BP8DRB299 is | versus Average Planar Exposure for fuel type BP8DRB282 is j | ||
determined from Figure 2-5. | 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-determined.from Figure 2-4. | |||
u. | |||
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 = | versus Average, Planar ExposureJfor fuel type BD300A'is determint = | ||
L | L from: Figure 2-6. | ||
The Maximum Average Planar Linear Heat Generation-Rates (MkPLHGI l - | The Maximum Average Planar Linear Heat Generation-Rates (MkPLHGI l - | ||
versus Average. Planar Exposure'for fuel' type BD3008 is' determine | versus Average. Planar Exposure'for fuel' type BD3008 is' determine | ||
'from' Figure 2-7. | |||
.The Maximum Average Planar Linear Heat Generation Rates (MAPLHG1-m 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. | 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: | |||
1, s.. | |||
L | if L | ||
Maximus Avsage Plans Lines Heat Gewation Rate (MAPLHGR)g I? | |||
1zsa | vs:Aveage PinarExposwe fa Fuel Type P80RB265L g | ||
n E | |||
Jr k | |||
e | g g | ||
1zsa x | |||
s izco s :- | |||
H8 e | |||
Z a "" | X | ||
~ | |||
E | |||
.p v l Z a "" | |||
\\ | |||
3 | 3 | ||
\\ | |||
= 10.50 l | |||
\\ | |||
10.00 i | 10.00 i | ||
9.50 | 9.50 i | ||
0 | 0 5000 10000 15000 20000 25000 M | ||
e* | M M | ||
Average Planar Exposure {Nd/Sf; j | |||
1 e* | |||
Figwe 2-1 l | |||
i i | |||
...--,....,~w., | |||
m | m Marinum Average Plaar lhear Heat Geeration Rate (MAPulGR)g A | ||
>g vs Average Planar Exposse for Fuel Types P80RB26511 ad BP8DB265H g | |||
n-La g | |||
i. | i. | ||
.i l-g g | |||
l- g | ~ | ||
K 12.50 a | |||
12.50 | i 12.00 jjg N | ||
/ | |||
J | J i | ||
i | i F.00 11 I | ||
i | D | ||
D | \\ | ||
6 N | |||
;. = 10.50 | |||
~ | |||
4$ | |||
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\\ | |||
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i SE 10.00 E | i SE 10.00 E | ||
= | |||
l l | l | ||
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l | 3 l | ||
8.50 20000 | 9.00 l | ||
) | |||
l 8.50 0 | |||
5000 10000 15000 20000 25000 J0000 35000 40000 45000 Average Planar Exposure {Wd/ST;I 1 | |||
Figue 2-2 J | |||
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,4d | |||
~- | |||
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l r | l r | ||
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em B4:Q | |||
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M cNet- Wt1 | . pg EA.S - | ||
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M cNet-Wt1 p.1-4 | |||
j., | j., | ||
~ | |||
l[f-Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) | |||
Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) | ~ | ||
vs Average Planar Exposure for Fuel Type | e vs Average Planar Exposure for Fuel Type BP8DRB283Hj | ||
~ | |||
:i | :i g | ||
g 12.50 | ^ | ||
g 12.50 J | |||
/ | |||
\\ | |||
_ g11.00 | j 11.50 - | ||
3 i | |||
N | / | ||
l e | |||
1 | |||
i 9m 20000 | : _ g11.00 3 | ||
l.IE | |||
l1 | \\ | ||
@ l08 N | |||
~ | |||
\\ | |||
10.00 s | |||
i 9m I | |||
O 5000 10000 15000 20000 25000 30000 35000 40000 45000 Average Planar Exposure (WWd/ST' i | |||
: o l1 Figre 2-4 | |||
:4 Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) g I | |||
vs Average Planar Exposure for Fuel Type BP80RB299 g | |||
i.F | |||
.r | |||
.! E h | |||
l ~^ | |||
1230 | |||
{ | |||
i 12.00 w | |||
i 1130 i | |||
e i | |||
! Alla l | |||
f | |||
; rr i | |||
!ao5 1050 x | |||
l 3 | |||
\\ | |||
10m 3 | |||
\\ | |||
950 i | |||
9.00 t | |||
0 5000 10000 15000 20000 2'iOOD M | |||
M M | |||
N Average Planar Exposure (Nd/ST i | |||
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 i | |||
! if | |||
.e 5 | |||
\\ | |||
/ | |||
{ | |||
13 2 13.00- | |||
,u0 | |||
/ | |||
\\ | |||
13 2 | |||
13.00- | |||
2 | 2 | ||
'2m j x | |||
Q11.50 | |||
\\ | |||
3 | |||
, Eilm N | |||
= | |||
l | !. go 10 2 | ||
\\ | |||
l 3 10.00 | |||
9.00 82 | \\ | ||
92 | |||
\\ | |||
Average Planar Exposure '<WWd/Sf; n | 9.00 | ||
i_ | \\ | ||
82 i | |||
~ | |||
i | |||
~B.00 i | |||
0 5000 10000 1M M | |||
N 8 | |||
Average Planar Exposure '<WWd/Sf; 1 | |||
n t | |||
i_ | |||
Figme 2-6 | |||
,e | |||
..,,......n,- | |||
-. ~ - | |||
,,,,,n | |||
,,....,,...-,.re,e,,, | |||
, _,,, +, - - -.., | |||
~ | |||
f. | f. | ||
lg | lg Maximan Average Planar Linear Heat Generation Rate (MAPLHGR) e ls vs Average Planar Exposure for Fuel Type BD3008 i | ||
~ | |||
g | : w y | ||
lE g | |||
!~ | !~ | ||
13.50 I | 13.50 I | ||
13.00 | |||
izm | [ | ||
l eii.s | \\ | ||
1z50 - | |||
l | / | ||
\\ | |||
izm | |||
/ | |||
\\ | |||
9.00 as | l eii.s T | ||
E | |||
8.00 | / | ||
\\ | |||
Average Planar Exposure {Nd/ST | l. Ali.00 N | ||
\e l | J g 10.50 | ||
\\ | |||
3 | |||
% 10.00 9.50 x | |||
l | |||
\\, | |||
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 | lr llaximum Average Planar Linear Heat Generation Rate (ilAPLHGR) g | ||
;j vs Average Planar Exposure for Fuel Type BD301H | ;j vs Average Planar Exposure for Fuel Type BD301H | ||
lie l | {, | ||
lie l | |||
13.50 I | |||
N 13.00 | |||
\\ | |||
l 12.50 | |||
\\ | |||
12.00 ! | |||
\\ | |||
11.50- | |||
\\ | |||
p11.00 | p11.00 | ||
\\. | |||
R .50 | R.50 10 | ||
4 | \\ | ||
r 4 | |||
l v $10.00- | |||
I$ 9.50 | \\ | ||
I I$ 9.50 N | |||
d 9.00 5 | |||
8.00 7.50 | \\ | ||
8.50 | |||
\\ | |||
7.00 | 8.00 | ||
\\ | |||
Average ?lanar Exposure iWd/ST) | 7.50 | ||
g I | \\ | ||
I l | |||
7.00 | |||
\\ | |||
l 6.50 3 | |||
i 6.00 0 | |||
5000 10000 15000 20000 2500C 30000 35000 40000 45000 50000 Average ?lanar Exposure iWd/ST) g I | |||
Figwe 2-8 | Figwe 2-8 | ||
] | |||
n. | |||
~. | |||
.~ | |||
.n | |||
'~ | |||
~ | |||
Maximum Average Planar Linear Heat Generation Rate (MAPLHG | ~, " | ||
I | Maximum Average Planar Linear Heat Generation Rate (MAPLHG g | ||
I vs Average Planar Exposure for Fuel Type Barrier LTA y | |||
tom I | .e 5 | ||
tom I | |||
9.00 l | 9.50 N | ||
i | |||
i.rf"" | / | ||
9.00 l | |||
= a50 x | |||
/ | |||
\\ | |||
/ | |||
\\ | |||
i.rf"" | |||
l k'" | l k'" | ||
3 i | |||
= 7.00 | |||
\\ | |||
6.50 | 6.50 | ||
\\ | |||
j 6.00 l | |||
5.50 0 | ~ | ||
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 | a i | ||
Figwe 2-9 i | |||
' g;lCoge Oper; ting Limits Report q.o.;- v. | ' g;lCoge Oper; ting Limits Report q.o.;- v. | ||
i 3.0- | , t-i 3.0-LI"_*" MEh? GENEPATION RATE (LnGR) (3.5/4.5) j 3.1 TBCENICAL #FSCIFICATION | ||
j 3.1 | |||
==REFERENCE:== | ==REFERENCE:== | ||
i g | i g | ||
Technical Specification 3.5.J | |||
==3.2 | ==3.2 DESCRIPTION== | ||
i I | |||
a. | |||
1.: PSDRB265L | The LEGR limit is 13.4 kw/ft for fuel types: | ||
] | |||
] | |||
1.: | |||
5.- BFSDRB282- | PSDRB265L 2. | ||
PSDRB2655 3. | |||
BF80RB265R | |||
) | |||
e | 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 I | |||
i | |||
.f l | |||
r i | |||
I I | I I | ||
Quad Cities - Unit 1 | Quad Cities - Unit 1 3-1 Cycle 12- | ||
... a.a.. | |||
Cere Oper; ting Limits Report c, | |||
# [; | |||
4.0- | |||
'kiW1WUli CRITICAL POWER RATIO (MCPR)- (3.5/4.5) l 4 | |||
4.1 TBCNNICAL SPECIFICATION | |||
==REFERENCE:== | ==REFERENCE:== | ||
l | l | ||
.l Technical _ Specification 3.5.K and 3.6.H i | |||
i | |||
==4.2 | ==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 | greater.than or equals l | ||
1.35 | 1.30- for tave < 0.68 sec. | ||
(0.278)tave + 1.111 | 1.35 for tave > 0.86 sec. | ||
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. | (0.278)tave + 1.111 for 0.58 sec. < tave-< 0.86 see.. | ||
When operating with a Feedwater Heater Out-of-Service, the | 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. | ||
Operating MCPR Limit shall be increased by 0.02. | 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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Latest revision as of 17:41, 31 December 2024
| 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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j TABLE OF CONTENTS 1
Page 1
3 iii i
. REFERENCES......................................................
l 1
s iv; : i
' LIST OF FIGURES.................................................
4 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
-1.
2 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..
'3 L 3.2:
' Description-4.0 MINIMUM CRITICAL POWER RATIO (3.5/4.5) 4-1 o
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--
j
..4 t.:
'I w,
REFERENCES 1.
Commonwealth 1 Edison Company and, Iowa-Illinois Gas and Electric
~
Company. Docket No.-l50-254, Quad Cities Station, Unit 1= Facility. '
m 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 5._
General, Electric Standard Application for Reactor Fuel (GESTAR)'~,- 1 NEDE-24011-P-A-9, September 1988 (as amended).
i J
l l
l 9
O e
C-. H
. Q..d Cmes - ene 1 m
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 (MhPLEGR)- vs. Average Planar-Exposure = for Fuel Type i
1 P8DRB265L.
i 2-2 Maximum Average Planar Linear Heat Generation-Rate 2-3
.(MhPLEGR) vs. Average Planar Exposure for Fuel Types P8DRB265H.and BP8DRB265H.-
2-3 Maximum Average Planar Linear Heat Generation Rate 2-4
[
~
(MhPLHGR): vs. Average Planar Exposure for Fuel Type BP8DRB282.
I l
'L 2-4 Maximum Average Planar Linear. Heat Generation Rate 2-5 (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 -
[
y,1. !
u p-t_
L.
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)..
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<n 72.0L ' AVERAGE' PIANAR LINEAR HEAT ' GENERATION RATE
/
g, _s (APLNGR) (3.5/4.5)-
1 h-4 2 i 15 T
suuICAL' SPECIFICATION
REFERENCE:
m 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
determined;from Figure 2-1.
g 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-determined.from Figure 2-4.
u.
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.
.The Maximum Average Planar Linear Heat Generation Rates (MAPLHG1-m 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..
if L
Maximus Avsage Plans Lines Heat Gewation Rate (MAPLHGR)g I?
vs:Aveage PinarExposwe fa Fuel Type P80RB265L g
n E
Jr k
g g
1zsa x
s izco s :-
X
~
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.p v l Z a ""
\\
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\\
= 10.50 l
\\
10.00 i
9.50 i
0 5000 10000 15000 20000 25000 M
M M
Average Planar Exposure {Nd/Sf; j
1 e*
Figwe 2-1 l
i i
...--,....,~w.,
m Marinum Average Plaar lhear Heat Geeration Rate (MAPulGR)g A
>g vs Average Planar Exposse for Fuel Types P80RB26511 ad BP8DB265H g
n-La g
i.
.i l-g g
~
K 12.50 a
i 12.00 jjg N
/
J i
i F.00 11 I
D
\\
6 N
- . = 10.50
~
4$
~
\\
\\
i SE 10.00 E
=
l
\\
3 l
9.00 l
)
l 8.50 0
5000 10000 15000 20000 25000 J0000 35000 40000 45000 Average Planar Exposure {Wd/ST;I 1
Figue 2-2 J
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l[f-Maximum Average Planar Linear Heat Generation Rate (MAPLHGR)
~
e vs Average Planar Exposure for Fuel Type BP8DRB283Hj
~
- i g
^
g 12.50 J
/
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j 11.50 -
3 i
/
l e
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- _ g11.00 3
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\\
@ l08 N
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10.00 s
i 9m I
O 5000 10000 15000 20000 25000 30000 35000 40000 45000 Average Planar Exposure (WWd/ST' i
- o l1 Figre 2-4
- 4 Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) g I
vs Average Planar Exposure for Fuel Type BP80RB299 g
i.F
.r
.! E h
l ~^
1230
{
i 12.00 w
i 1130 i
e i
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- rr i
!ao5 1050 x
l 3
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950 i
9.00 t
0 5000 10000 15000 20000 2'iOOD M
M M
N Average Planar Exposure (Nd/ST i
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 i
! if
.e 5
\\
/
{
13 2 13.00-
,u0
/
\\
2
'2m j x
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\\
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, Eilm N
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l 3 10.00
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92
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\\
82 i
~
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0 5000 10000 1M M
N 8
Average Planar Exposure '<WWd/Sf; 1
n t
i_
Figme 2-6
,e
..,,......n,-
-. ~ -
,,,,,n
,,....,,...-,.re,e,,,
, _,,, +, - - -..,
~
f.
lg Maximan Average Planar Linear Heat Generation Rate (MAPLHGR) e ls vs Average Planar Exposure for Fuel Type BD3008 i
~
- w y
lE g
!~
13.50 I
13.00
[
\\
1z50 -
/
\\
izm
/
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l eii.s T
E
/
\\
l. Ali.00 N
J g 10.50
\\
3
% 10.00 9.50 x
l
\\,
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 I
N 13.00
\\
l 12.50
\\
12.00 !
\\
11.50-
\\
p11.00
\\.
R.50 10
\\
r 4
l v $10.00-
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d 9.00 5
\\
8.50
\\
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\\
7.50
\\
I l
7.00
\\
l 6.50 3
i 6.00 0
5000 10000 15000 20000 2500C 30000 35000 40000 45000 50000 Average ?lanar Exposure iWd/ST) g I
Figwe 2-8
]
n.
~.
.~
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'~
~
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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 N
i
/
9.00 l
= a50 x
/
\\
/
\\
i.rf""
l k'"
3 i
= 7.00
\\
6.50
\\
j 6.00 l
~
5.50 0
m a
im m
m m
m a
m So0r_
Average Plancr Exposure {Nd/ST[
a i
Figwe 2-9 i
' 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
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 I
i
.f l
r i
I I
Quad Cities - Unit 1 3-1 Cycle 12-
... a.a..
Cere Oper; ting Limits Report c,
- [;
4.0-
'kiW1WUli CRITICAL POWER RATIO (MCPR)- (3.5/4.5) l 4
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.
1 i
y 9
i i
i 1
l.
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