ML20133L619

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Proposed Tech Specs Re Shutdown Margin & Boron Concentration in Modes 3,4 & 5
ML20133L619
Person / Time
Site: Summer South Carolina Electric & Gas Company icon.png
Issue date: 10/18/1985
From:
SOUTH CAROLINA ELECTRIC & GAS CO.
To:
Shared Package
ML20133L581 List:
References
NUDOCS 8510240234
Download: ML20133L619 (3)


Text

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REACTIVITY CONTROL SYSTEMS j

4 SHUTDOWN MARGIN - MODES 3, 4 AND 5 LIMITING CONDITION FOR OPERATION 3.1.1.2 The SHUTDOWN MARGIN shall be greater than or equal to 2.C% delta-k/k.

% c u m Ts 3no w w m

APPLICABILITY: MODES 3, 4 and 5.

Fi% s 3.s-3.

ACTION:

TRE REauintD VAtug With the SHUTDOWN MARGIN less than..

..... -,,'immediately initiate and continue boration at greater than or equal to 30 gpa of a solution containing greater than or equal to 7000 ppe boron or equivalent until the required SHUTDOWN MARGIN is restored.

SURVEILLANCE REQUIREMENTS 4.1.1. 2 The SHUTDOWN MARGIN shall be determined to be greater than or equal to 2.0% delt: k/kune ncovuo vAws:

a.

Within one hour after detection of an inoperable control rod (s) and at least once per 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> thereafter while the rod (s) is inoperable.

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If the inoperable control rod is immovanle or untrippable, the SHUTDOWN MARGIN shall be verified acceptable with an increased allowance for the withdrawn worth of the immovable or untrippable control rod (s).

b.

At least once per 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> by consideration of the following factors:

1.. Reactor coolant system boron concentration, 2.

Control rod position, 3.

Reactor coolant system average temperature, I

4.

Fuel burnup based on gross thermal energy generation, j

5.

Xenon concentration, and 6.

Samarium concentration.

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k X V% 'NIDM NM00J.0tlS 03HInb3H St 2..

-l 3/4.1 REACTIVITY CONTROL SYSTEMS BASES l

3/4.1.1 B0 RATION CONTROL 3/4.1.1.1 and 3/4.1.1.2 SHUTDOWN MARGIN f

A sufficient SHUTOOWN MARGIN ensures that 1) the reactor can be made subcritical from all operating conditions, 2) the reactivity transients associated with postulated accident conditions are controllable within acceptable limits, and 3) the reactor will be maintained sufficiently subcritigal to preclude inadvertent criticality in the shutdown condition.

SHUTDOWN MARGIN requirements vary throughout core life as a function of f

fuel depletion, RCS boron concentration, and RCS T,yg.

In MODES 1 and 2 the r

l most restrictive condition occurs at EOL, with T,yg at no load operating I

temperature, and is associated with a postulated steam ifne break accident and resulting uncontrolled RCS cooldown.

In the analysis of this accident, a minimus SHUTDOWN MARGIN of 1.77 percent delta k/k is required to control the l

reactivity transient. Accordingly, the SHUT 00WN MARGIN requirement is based l (

upon this limiting condition and is consistent with FSAR safety analysis assumptions.

In MODES 3, 4 and 5 the most limiting accident is a boron l

dilution accident. A 2 percer;t Nt; k/k SHUTDOWN MARGIN providef adequate protection in these MODES.

L s vAniso As A ruNcTiors oF i

A\\lERAGC l

3/4.1.1.3 MODERATOR TEMPERATURE COEFFICIENT t

The limitations on moderator temperature coefficient (MTC) are provided to ensure that the value of this coefficient remains within the limiting condition assumed in the FSAR accident and transient analyses.

The MTC values of this specification are applicable to a specific set of plant conditions; accordingly, verification of MTC values at conditions other than those explicitly stated will require extrapolation to those conditions in order to permit an accurate comparison.

f l

The most negative MTC value equivalent to the most positive moderator density coefficient (MDC), was obtained by incrementally correcting the MDC j

used in the FSAR analyses to nominal operating conditions. These corrections I

i

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