ML20238F080

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Proposed Tech Specs,Transferring Table of Containment Penetration Conductor Overcurrent Protective Devices from Tech Spec Table 3.8-1 to Separate Document
ML20238F080
Person / Time
Site: Catawba  Duke Energy icon.png
Issue date: 09/09/1987
From:
DUKE POWER CO.
To:
Shared Package
ML20238E893 List:
References
TAC-66133, TAC-66134, NUDOCS 8709150369
Download: ML20238F080 (103)


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ATTACHMENT 1 I

PROPOSED TECHNICAL SPECIFICATION CHANGES l

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8709150369 PDR 870909

  • P ADOCK 05000423 PDR

-ELECTRICAL POWER SYSTEMS 3/4.8.4 ELECTRICAL' EQUIPMENT PROTECTIVE DEVICES

' CONTAINMENT PENETRATION CON 00CTOR OVERCURRENT PR0TECTIVE DEVICES

-LIMITING CONDITION FOR OPERATION 1

3.8.4 Allicontainment penetration conductor overcurrent protective devices-shall be OPERABLE. ]1

+PPLICA81LITY: MODES 1, 2, 3, and 4.

ACTION: j b .

With one or more Of S: containment penetration conductor overcurrent protective

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device (s) '"-- ' " ' - ' " ' - ' ' " " inoperable: $

a. Restore the protective device (s) to OPERA 8LE status or de-energize the circuit (s) by tripping the associated backup circuit breaker or racking out or removing-the inoperable circuit breaker within 72 hours8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br />, declare the affected system or component inoperable, .i and verify the' backup circuit breaker to be tripned or the inoper-able circuit breaker racked out or removed at least once per 7 days ,

thereafter; the provisions of Specification 3.0.4'are not applicable to overcurrent devices in circuits which have their backup circuit  !

breakers tripped, their inoperable circuit breakers racked out, or removed, or

b. Be in at least HOT STAND 8Y within the next 6 hours6.944444e-5 days <br />0.00167 hours <br />9.920635e-6 weeks <br />2.283e-6 months <br /> and in COLD SHUTDOWN within the following 30 hours3.472222e-4 days <br />0.00833 hours <br />4.960317e-5 weeks <br />1.1415e-5 months <br />.

SURVEILLANCE REQUIREMENTS 4.8.4 All containment penetration conductor overcurrent protective devices

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6 '- T:t':: 3."-1: :-d 3."-it shall be demonstrated OPERABLE:
a. At least once per 18 months":
1) By verifying that the medium voltage (4-15 kV) circuit breakers are OPERA 8LE by selecting, on a rotating basis, at least 10% of the circuit breakers of each voltage level, and performing the following:

a) A CHANNEL CALI8 RATION of the associated protective relays, b) An integrated protective system functional test which includes simulated automatic actuation of the system and verifying that each relay and associated circuit breakers function as designed, and "This surveillance need not be performed until . prior to entering HOT SHUTDOWN following the Unit 1 first refueling. (This applies to Unit 1 only.) f CATAWBA UNITS 1 & 2 3/4 8-19 Amendment No. (Unit 1)

Amendment No (Unit 2)

-- 9LL % CL _

ELECTRICAL POWER SYS'TEMS SURVEILLANCE REQUIREMENT 5 (Continued) c) For each circuit breaker found inoperable during.these functional tests, an additional representative' sample of at least 10% of all the circuit breakers of the inoperable type shall also be functionally tested until no more failures are found or all circuit breakers of that type have been functionally tested.

2) By selecting and functionally testing a representative sample of at least 10% of each type of lower voltage circuit breakers.

Circuit breakers selected for functional testing shall be selected on a rotating basis. Tu tir.; ef th; n cir::it bru k:r;

h:!' : =:f:t c' 'nj::tfn; : :rr=t ' === f the brnh=:

S:t;; int ud =ncrir.; th: rn;== tf =. Th: ::= r:d n='=? {

rn;= n ti= aill 5: n ; =:d t; th; = =f u t =:r'; i t; t:

=;r: th:t it i: 1: n th = r :;= ? t: : ; 12: perf'f:d by th: I n n f = t== . Circuit breakers found inoperable during func-tional. testing'shall be restored to OPERABLE status' prior to f resuming operation. For each circuit breaker found inoperable:

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j during these functional tests, an additional representative '

sample of a least 10% of all the circuit breakers of the inoper-able type.shall also be functionally tested until no more failures are found or all circuit breakers-of that type have ,

j been functionally tested; and

3) M; b:l=" ; =" f =:ti-- rotatin 'ly intfbasis,

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rept sentativ '

of each ype o fuse on ampi of fu s shall nelude a least 1 ofofa all ses of a .

n typ . The unction test sh 1 consi no estructi I e istan measure nt test hich de strates hat the se  !

sign cri ri a. F es found noper-

' .f M56CI Ts ets'i manufa urer's e ring th a functi nal test shall be eplaced ith pg tble fuse

( PE BLE fus prior t resumin operatio . 'For e additio nctiona tests, MEd i nd inop able dur g these ast 10% f all fu s of tha typ n represen ive sa e of at gg shall b functio 11y test until more fa' ures are ound

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b. At least once per 60 months by subjecting each circuit breaker to an  !

inspection and preventive maintenance in accordance with procedures prepared in conjunction with its manufacturer's recommendations. l l

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i CATAW8A - UNITS 1 & 2 3/4 8-20

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3)' A fuseLinspection and maintenance program'will be maintained to ensure l

that:~

1. The proper; size and type of fuse is installed,
2. The fuse shows no signs of deterioration, and
3. The fuse connections are tight and clean,

?elete Tables 3.8-14, 3.8-lb l

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f' ELECTRICAL POWER SYSTEMS-BASES

, -3/4.8.4 ELECTRICAL EQUIPMENT PROTECTIVE DEVICES _

. Containeerrt electrical penetration and'pene.tration conductors are pro-tested.by,af ther deenergiz.ing circuits: not'. required during reactor operation-or by demonstrating the OPERA 8ILITY of primary and backup overcurrent protec-tion circuit breakers during periodic surveillance.

The Surveillance Requirements applicable to lower voltage circuit breakers

r,d f;;;; provide assurance of breaker
nd f;;; reliabi,lity by testing at least cne . representative sample of each manufacturer's, brand of circuit breaker. ,I nd/:r ft::. Each manufacturer's molded case c.ircuit breakers :nd/;r f;::: are

. couped into representative samples witich are then tested on a rotating basis a

to ensure tha.t all breakers ::d/:r f;;:: are tested. If a wide variety exists within any manufacturer's brand of circuit breakers ;nd/;r f;;::, it is neces-sary to divide that manufacturer's breakers :nd/:r f;;:: into groups'and treat each group as.a separate type of breaker :r f;;; for surveillance purposes.

%se karlin 3i s in accorkce uiN ~ZEEG .Sudard 2'/2-M7.S. Glus M n""

udl dc4 ed ang Si 3 ndiM ' de3radden of Se_ kses ( \;s44J Jn de 5qshen he;pfreah or ime c .ecch sh.J bes. Sej is -Pur4ec-o,ssureJ % h e 'N'i{ Safe" Tb.hu.re. oI bei, Sq[(5, if Me

.(use k'ds 4he circ will 4en e r3i '6e .

%cworntnddryStkoMS d overcurce<d r<Sfo M e.

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h wes ScAkt \over yo% e circuk NNc5 are \tskect in 3

"F.\echten( iower 3 $ 2b hscethion , g,4Q Penebben beUb . free bik i,4his GA Cen4bn i. chca<nen h Lo CdSb - oot o -3o W, dor. (),nik '2._14 is c.'.M Sb - Oo2.0- 3 0,

%4ng C.u.creb in &extess Le e.ica4- break.us ch he breaker's sh4\ exsis}

%ornink schpoin ad d inj]ec M"'3* nj Se response 4 fine, %e. meAJured re3gon,5c fMe

"*M k con 1% M % Ynanu.bb'S O h ensum M b(5 N ban oc ch to a va.(use_ yeelhed b g h h e.

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CATAWBA - UNITS 1 & 2 B 3/4 8-3

i ATTACHMENT 2 JUSTIFICATION AND SAFETY ANALYSIS-I f

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' Justification and Saf,ety Analysis.

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'The proposed changes of Technical Specification 3/4.8.4 seek'to' transfer the

. tables (3.8-la andi3.8-lb) listing the Containment Penetration Conductor Overcurrent Protective Devices out of the Technical-Specifications and into a system descriptions.the change would also modify fuse testing requirements to conform to IEEE Standard 242-1975.

Transferring the tables out of the Technical Specifications is an administrative matter that'would allow a more efficient and timely upkeep of the tables.

Presently, it is necessary to seek a license amendment to update the tables as a result of modifications. As a controlled document (Attachment 4) referenced by H

. the Technical Specifications, the table could be readily kept up'to date while under' appropriate controls. Similar relief was suggested by the NRC for snubbers in Generic Letter 84-13.

This area (removing tabular data from the Technical Specifications) is a part of the Technical Specifications Improvement Project sponsoreu by the AIF.

~ Maintaining the tables as a separate, referenced document would reduce technical.

workload and review for Duke and NRC, as no license amendment would be required to maintain the table up to date.

The proposed change to fuse testing would simplify the testing and conform the Technical Specifications to IEEE Standard 242-1975. The Standard, " Recommended Practice for Protection and Coordination of Industrial and Commercial Power LSystems", states: " Maintenance of fuses is limited by nature of the device to an inspection.to ensure that the proper size fuse is installed,.that it shows no-signs of deterioration, and that the enclosure is clean and the connections are i tight. .The size'and type of, fuses should comply with those specified by the engineering department". The failure mode for fuses is "open", so a fuse which-degrades to'the point of failure ~would still protect the equipment. The

" fail-safe" mode ensures that a degraded fuse would not result in damage to the enclosure, conductor, penetration assembly, or load during a fault or overload condition. Resistance testing as now required under Specification 4.8.4a.3) does ,

not accomplish anything and can be counterproductive. Resistance of the fuses l varies significantly with temperature and would have to be drastically higher than normal to indicate degradation. The variance of resistance with ,

manufacturer's lot and with temperature has resulted in some fuses not meeting i requirements and being needlessly removed from service.

The proposed change to the fuse testing would provide for identification of any  !

problems such as arcing in the enclosure, conductor insulation breakdown and/or bad connections, as well as providing verification that the correct fuse is installed. This change would provide proper fuse maintenance with reduced down  ;

time.

Technical reviews at Duke in accordance with 10 CFR 50.59 will ensure the safety of any modifications of containment penetration circuits or the additions /

deletions thereof. Management involvement in the process is assured as review by 1 the station manager or a previously designated superintendent. Subsequent approval is required by Technical Specification 6.5.1.3 prior to the modification L of any nuclear safety related structures, systems, or components. This applies to the penetration circuits.

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I ATTACHMENT 3 ANALYSIS OF SIGNIFICANT HAZARDS CONSIDERATION s

t Analysis of Significant Hazards Considerations l As required by 10 CFR 50.91, this analysis provides a determination that the proposed changes to the Technical Specifications do not involve any significant hazards consideration as defined by 10 CFR 50.92.

10 CFR 50.92 states that a proposed amendment involves no significant hazards considerations if operation in accordance with the proposed amendment would not:

(1) Involve a significant increase in the probability or l consequences of an accident previously evaluated; or (2) Create the possibility of a new or different kind of accident from any accident previously evaluated; or j (3) Involve a significant reduction in a margin of safety.

The transfer of the tables from the Technical Specifications to a controlled document is an administrative matter that does not affect any accident scenario.

The Limiting Condition for Operation (LCO) remains in force for the devices as do the surveillance requirements for the circuit breakers to ensure operability.

The proposed change to the required fuse testing would still ensure fuse reliability as the proposed program would detect any significant deterioration of fuses. Resistance testing of fuses as presently required is counterproductive as i discussed in Attachment 2. Additionally, fuses are, by nature, " fail-safe", thus safety function is assured. As breaker operability is unaffected and fuse safety function is. assured, the proposal does not involve a significant increase in the I probability or consequences of an accident previously evaluated. j j

The proposed fuse testing requirements would not create the possibility of a new or different kind of accident from any accident previously evaluated. The /

proposed program is in conformance with IEEE Standard 242-1975 and would detect any significant fuse degradation while preventing the disposal of good fuses. No i design or hardware changes are permitted by this change which would affect or create any accident scenarios.  !

l The proposal does not involve or allow any significant design or plant operation j changes. Any system modifications must proceed through the modification process I and, in accordance w th 10 CFR 50.59, must not involve an unreviewed safety J question. This process ensures that any change would not create the possibility {

cf a new or different kind of accident from any accident previously evaluated. j The transfer of the tables out of the Technical Specifications is an l administrative matter. While future updates to the tables as a result of l modifications will not require prior NRC review and approval, Duke is required, j under 10 CFR 50.59 to conduct and document a thorough review as previously (

j discussed, The proposed change would not involve a significant reduction in a margin of safety. The transfer of the tables is an administrative matter as fuse and breaker safety function is fully assured, thus no safety margins are affected.

The proposed change in the fuse testing program will maintain safety margins by assuring fuse operability. Any significant degradation of fuses will be detected

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p Analysis of-Significant: Hazards Consideration (Cont'd)-

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by;this program while.the.often. counterproductive resistance' test'is eliminated. ~

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-The. fail-safe nature of fuses provides additional assurance'that safety' function-is fulfilled thus assuring.that margins of safety are. maintained.'

0 ' Based.upon'the' preceding-analysis,-' Duke Power Company concludes that the proposed'

. amendments do not involve any significant hazards considerations..

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,.-.-.-----._.---__r-- - - , . _ _ - - . - - . -_---.-

ATTAC1 MENT 4 SYSTEM DESCRIPTIONS

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i CATAWBA fluCLE/G STATION  ;

. i Utll T 1 1 ELECTRICAL POWER SYSTEM DESCRIPTl0tl.

ELECTRICAL PENETRAT, ION CIRCUITS CNSD-0010-30 I (EZA) l SEPTEMBER 24, 1984 .J i

NUCLEAR SAFETY RELATED POWER SYSTEMS 9- 2 /-8tf '

DATE fh C0flTROL SYSTEMS jg g_g, DATE ENGINEER ENGINEER ECKED f-N#$Y DATE fh CHECKED BY

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DATE bWAv _

' APPROVED DY wkt.

DATE

QA C0 W ON 1 REVISIOfl/ADCilDA LOG PAGES PREPARE CHECKED lil5PECTE APPROVE PA. E S SUPER- PAG ES PAGES BY BY BY BY
10. REVISED CEDED ADDED ")EL ET ED DATE DATE QATE ,, WATE

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1 SYSTEM CHANGE / MODIFICATION LIST

. System design changes / modifications included in this' system description:

System Description Change / Modification. Change / Modification.  !

Revision No . Authorization Form No. Implementation Date Month / Day / Year i

1 Removed Unit 2 portions. '

of System Description. 06/04/85 .i l- Also,. includes editorial i changes. ,

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2 Added Welding Receptacles 10/08/86 inside containment per NSM CN-10739/00.

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CNSD-0010-30 ii

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1 ELECTRICAL PENETRATION CIRCUITS I i

1. 0 PURPOSE ,

Electrical penetration assemblies are specially designed devices to allow I circuits.to enter / exit the containment vessel, while maintaining E pressure d barrier between inside and outside containment during' normal' plant. operations and under.the postulated design basis loss of coolant accident (LOCA).

NOTE: .This system description documents test values associated.with penetration protective devices (See' Attachment 1). The devices are to be periodically. tested per the Catawba Technical Specifications.

2.0 GENERAL DESCRIPTION j The electricalipenetrations are designed to meet all electrical requirements >

for the specified service environment without dielectric breakdown or damage j due to' overheating. Typically, an electrical penetration assembly consists of 1 electric conductors, conductor seals, and the~ mechanical assembly for securing I the conductors and conductor seal assemblies to the containment structure. A pressure gauge and valve assembly are provided on the outboard end of each

, j penetration assembly to permit periodic monitoring of the penetration )

gross-leak integrity.

The electrical penetration circuits are designed to perform f. heir various

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electrical functions inside the reactor containment structure while their )

associated penetration assembly maintains a testable leak-tight pressure .j boundary. All electrical penetration assemblies are manufacture to maintain 1 their leak-tight integrity and remain electrically functional during ar.d following.the postulated design basis loss of coolant accident.

Type A, B, C, 0, F, G H, J, K, L and M (N and BH) electrical penetration assemblies are manufactured by D. G. O'Brien, Inc. (Conax Corporation). For j periodic' leak test requirements for penetration types A, B, C, D, F, G, H, J, K, L and M (N and BH)., refer to specifications CNS-1390.01-00-0079, CNS-1390.01-00-0068, CNS-1390.01-00-0171 and instruction manuals ,

CNM-1361.00-0009, CNM-1361.00-0030 and CNM-1361.00-0029 (installation and i maintenance manual CNM-1361.00-0050; other design criteria and specifications l will be referenced later).

Electrical penetration assemblies are installed in the Reactor Building on the containment vessel wall at various elevations between 575'+8" and 656'+5" (except for the medium voltage islectrical penetration assemblies, type A, which are installed only et M evation 588'+8") at various azimuths. Refer to Electrical Equipment Layout Drawing CN-1919-01 and Electrical Penetration Connection Diagrams CN-1767-Series for Unit 1.

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CNSD-0010-30 1

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'3.01 SYSTEM PROTECTION. CONTROL AND OPERATOR INFORMATION DESCRIPTION 3.1 SYSTEM PROTECTION Each penetration circuit must be provided with. redundant. protection to protect the. electrical penetration assembly for overload and/or' fault currents (unless the maximum current available.is less than the continuous rating for the penetration, e.g. Thermocouple, RTD, Transducer and Annunciator Circuits.) ,

The' overload current. test value and corresponding. breaker trip time for those )

. protective devices are listed in Attachment 1. The breaker trip times are per j Table II, Westinghouse Application Data 29-160A WEA, Page 16, and Square 0 -)

Breaker ~ Characteristic Curves. i I

3 3.2 ~ CONTROLS R

N/A

3.3 OPERATOR INFORMATION q The pressure gauge reading for each penetration assembly manufactured by D. G. O'Brien Inc. (Conax. Corporation) should be between 13 psig and 17 psig j (15 psig and 18 psig). For further information (i.e., Periodic, Pre-1 operation, and In-service Inspection), refer to the references listed in

-Sections 5.1.& 5.2.

4.0 DECRIPTION OF SYSTEM OPERATION Electrical penetrations functionally fall into the following service classifications: 1) Type A, medium voltage electrical power penetration assemblies,. supply power to reactor coolant pump motors; 2) Type B, C, D, F and G, low voltage electrical power and control penetration assemblies, are used with lighting panels, heaters, control rod drive, reactor protective i systems, and other equipment circuits; and 3) Type H, J, K, M, N and BH, i electrical instrumentation and control penetration assemblies, form a vital '

link in circuitry for nuclear instrumentation, control rod position indication, environmental sensing, and communications. Refer to the references of Section 5.0 for further information.

Some of the electrical penetration circuits may not be energized during normal plant operations (i.e., D.C. Welding penetration circuits); however, their pressure gauge will still be checked during each periodic inspection.

i 5.0 REFERENCE DOCUMENT _5 5.1 DUKE DOCUMENTS Design Criteria " Design and Installation Criteria for 0C-16.1: Electrical Penetration Assemblies '

Manufactured by D. G. O'Brien, Inc. -

Catawba" (Later): "nesign and Installation Criteria for Electrical . Penetration Assemtilies CNSD-0010-30 2

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L Manufactured by Conax Corporation -

Catawba"'

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-Installation Specifications " Procedure for Receipt, Storage, and

. CNS-1390. 01-00-0171: Maintenance'of 0. ; G. O'Brien, Inc. Elec-trical Penetration Assemblies" (Later): " Procedure for Receipt, Storage, and Maintenance of Conax. Corporation Elec-trical Penetration Assemblies" CNS-1390.01-00-0079: " Procedure for Performing the Electrical Penetration 0-Ring Seal Leak Rate Test-(Type A through'M)"

CNS-1390.01-00-0068: " Procedure for Corrective Action for Electrical Penetrations which have a Marginal.or Possible Unacceptable SFe  ;

Leak Rate or Pressure (Types A through 1 M)"

Procurement Specifications' .

CNS-1361. 00-00-0001: " Catawba Nuclear Station, Units 1 & 2,  !

CNS-1361.00-00-0002: Electrical Penetration Specifications" CNS-1361.00-00-0003:

CNS-1361.00-00-0005:

l 5.2: MANUFACTURER DOCUMENTS CNM-1361.00-0009: (0, G. O'Brien, Inc. Instruction Manual No. 1052 1, Type A)

CNM-1361.00-0030: (D. G. O'Brien, Inc. Instruction Manual j No. 1051-1, Types B, C,'0, F and G)

CNM-1361.00-0029: (D. G. O'Brien, Inc. Instruction Manual j No. 1051-1, Types H, J, K, L and M) l l

CNM-1361.00-0050: (Conax Corporation Instruction Manual IPS-1040, Types N and BH) 5.3 FSAR APPLICABLE PARAGRAPHS FSAR Section 8.3.1.4.5.2: " Cable Separation" j FSAR'Section 8.1.5.2: " Regulatory Guide 1.63" 5.4 CALCULATIONS CNC-1381.05-00-0004: (Design Verification for Penetration Protection)

CNC-1144.09-01-0010: (Duke Power Company Miscellaneous Containment Vessel Design and Analysis Calculations, Type A, B, C, D, F, G, H, i

CNSD-0010-30 3

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1 m-JJ, . K,' L, M,. N and BH Penetration -

f 1 Assemblies)

"$H '55 DUKE ELECTRICALIDIVISION DESIG'N STANDARDS

, 00-1.02:-  ;" Separation - Catawba"'

4 , DC-3.02: " Cabling -~ Classifications.- Catawba" DC-16.1: " Design. and Installation Criteria ' for .

Electrical Penetration Assemblies

.Manufa'ctured by D. G. O'Brien, Inc -

Catatwa," Sections ~8-and 9 (Circuit Separation Requirements and-Wiring-Criteria)-

1 -(Later): " Design and Installation Criteria for.

Electrical Penetration Assemblies

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Manufactured by Conax Corporation -

Catawba," Sections 8 and 9 (Circuit Separation Requirements and Wiring Criteria)

~ 5. 6 TEST' PROCEDURES GENERATED BY DESIGN ENGINEERING n

N/A' 5.7 INDUSTRY STANDARDS -

'.ASME Boiler an'd Pressure Vessel Code, Section-III, Subsection NE,' " Class MC-Components": Excluding Conductors and Insulation-1971 Edition, including the Summer 1973 Addenda.

IEEE Standard 317-1972, " Electrical Penetration Assemblies in Containment  ;

Structures.for Nuclear Power Generating Stations."

5. 8 NRC REGULATORY GUIDES, DUKE POWER COMPANY NUCLEAR GUIDES )

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Regulator Guide 1.63: " Electric Penetration Assemblies in Containmen'-

Structures'for Light-Water-Cooled Nuclear Power Plants." -)

l 5.9 PROTECTIVE RELAY SETTING SHEETS 1

'N/A- .

6.0 DESIGN CRITERIA l

, 6.1 SAFETY CLASS DESIGNATION 1 Class 1E, Nuclear Safety Related. )

6.2 REDUNDANCY REQUIREMENTS

'DC-16.1, Section 7.0: " Design and Installation Criteria for i Electrical Penetration Assemblies Manufactured by D. G. O'Brien, Inc -

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Electrical. Penetration Assemblies

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. Catawba"

.FSAR,.Section'8.1.5: , Regulatory Guide'1.63 J6.3- SEPARATION REQUIREMENTS

.. 1 Re,er to Section 5.5.of thisLSystem Description,.and FSAR Paragraph 8.3.1.4.5 2:- l Cable" Separation. ,l

, 6.4 . DESIGN SEISMIC LEVEL-

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J Refer to"the Procurement Specifications listed in Section'5.1.

6.'5 DESIGN ENVIRONMENT'

- Refer.to the Procurement Specifications listed.in Section 5.1.

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ELECTRICAL POWER SYSTEli DESCRIPTIOtt Electrical Penetration Circuits CNSD-0020-30 (EZA)

June 14, 1985 Nuclear Safety Related POWER SYSTEMS S~ '"~W DATE 5 ~

Y C0llTROL SYSTCliS h-l743 ENGillEER DATE

- ENG il1E E R

- d2 /d/M s-s-u d j? L- g.z,gy CHECKED BY DATE CHECKED BY DATE

_b, __ _

APPROVED DY DA l'E

,r, e a

e L" . , i i ,. , _. f <"$ 3 {

t'- .Ybi f jV,j j REVisl0tt/ADCtIDA LOG PAGES PREPARE CHECKED itlS PECT E APPROVED PAGES SUPER- PAG ES PAGCS BY

/ BY BY BY

10. REVISED CEDED ADDED *)EL ETED . .r . . .-#A T E ,D AT E . DATE -

DATE 1 2422 2 r NONE NONE NONE \ f/ B M S S

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' SYSTEM CHANGE / MODIFICATION LIST n < ...

System design. changes / modifications. included in this' system description:

~5ystem Description Change / Modification Change / Modification.

Revision-No. ' Authorization Form No.' Implementation Date

' ..+" .

. Month / Day / Year 1 0 -Unit-2 document' originated

,l' Added Welding Receptacles 11/04/86' r .1 inside containment per

NSM CN-20091/00.

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8, CNSD-0020-30 ii EL42108W

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P ELECTRICAL PENETRATION CIRCUITS-

1. 0 PURPOSE Electrical penetration assemblies are specially designed devices to allow circuits to, enter / exit the containment vessel, while maintaining a pressure barrier between inside and outside containment during normal plant operations and under-the postulated design basis loss of coolant accident (LOCA).

NOTE: This system description documents test values associated with penetration protective devices (See Attachment 1). The devices are-to be.

periodically tested per the Catawba T2chnical Specifications.

2;0- GENERAL DESCRIPTION The electrical penetrations are designed to meet all electrical requirements for the specified service environment without dielectric breakdown or damage due to overheating. Typically, an-electrical penetration assembly consists of electric conductors, conductor seals, and the mechanical assembly for securing.

the conductors and conductor' seal, assemblies to the containment structure. A pressure gauge and valve assembly are provided on the outboard end of each  !

penetration assembly.to permit periodic monitoring of the penetration l gross-leak integrity.

.The electrical penetration' circuits are designed to perform their various electrical functions.inside the reactor containment structure while their associated penetration assembly maintains a testable leak-tight pressure boundary. All electrical penetration assemblies are manufactured to maintain their leak-tight integrity and remain electrically' functional during and following-the postulated design.b uis loss' of coolant accident.

Type A, B, C, D, F, G, H, J, K, L and M (N and BH) electrical penetration assemblies are manufactured by D. G. O'Brien, Inc. (Conax Corporation). . For periodic leak test requirements for penetration types A, B, C, 0, F, G, H, J, K, L and M'(N and BH), refer to specifications CNS-1390.01-00-0079, CNS-1390.01-00-0068, CNS-1390.01-00-0171 and instruction manuals CNM-1361.00-0009, CNM-1361.00-0030 and CNM-1361.00-0029 (installation and maintenance manual CNM-1361.00-0050; other design criteria and specifications will be referenced later).

Electrical penetration assemblies are installed in the Reactor Building on the containment vessel wall at various elevations between 575'+8" and 656'+5" (except for the medium voltage electrical penetration assemblies, type A, which are installed only at elevation 588'+8") at various azimuths. Refer to Electrical Equipment Layout Drawing CN-2919-01 and Electrical Penetration-Connection Diagrams CN-2767-Series for Unit 2.

CNSD-0020-30 1 EL42108W y

y _ _ _ _ _ . _ . _ _ . . _ _ . .

3. 0 . SYST9 PROTECTIOb CONTROL AND OPERATOR INF0 DATION DESCRIPTION 3.1 SYSTEM PROTECTION Each penetration circuit must be.provided with redundant protection to protect

' the electrical penetration assembly for overload and/or fault currents (unless the maximum current available is less than the continuous rating for the penetration, csg. Thermocouple, RTD, Transducer and Annunciator Circuits.).

The overload current' test value and corresponding breaker trip time for those protective devices.are listed in Attachment 1. The breaker trip times are per Table II, Westinghouse Application Data 29-160A WEA, Page 16, and Square D Breaker Characteristic Curves.

- 3.2 CONTROLS N/A 3.3 OPERATOR INFORMATION The pressure gauge. reading for each penetration assembly manufactured by '

- D. G. O'Brien Inc. (Conax Corporation) should be between 13 psig and 17 psig (15 psig and 18 psig). For further information (i.e. , Periodic, Pre-operation, and In-service Inspection), refer to the references listed in Sections 5.1 & 5.2.

4.0 DESCRIPTION

OF, SYSTEM OPERATION Electrical penetrations functionally fall into the following service classifications: 1) Type A, medium voltage electrical power penetration assemblies, supply power to reactor coolant pump motors; 2) Type B, C, D, F and G, low voltage electrical power and control penetration assemblies, are. i used with lighting panels, heaters, control rod drive, reactor protective '

systems, and other equipment circuits; and 3) Type H, J, K, M, N and BH, electrical instrumentation and control penetration assemblies, form a vital link in circuitry for nuclear instrumentation, control rod position indication, environmental sensing, and communications. Refer to the references of Section 5.0 for further information.  ;

Some of the electrical penetration circuits may not be energized during normal plant operations (i.e., D.C. Welding penetration circuits); however, their pressure gauge will still be checked during each periodic inspection.

5. 0 BEFERENCE DOCUMENTS ,

5.1 DUKE DOCUMENTS Design Criteria " Design and Installation Criteria for DC-16.1: Electrical Penetration Assemblies Manufactured by D. G. O'Brien, Inc. -

Catawba" CNSD-0020-30 2 EL42108W  ;

Q hij k

p J y (Later):- " Design and Installation Criteria for Electrical Penetration Assemblies-

~

[ x p,

Manufactured by Conax Corporation'-

Catawba"-

Installation Specification " Procedure for Receipt, Storage,-and

CNS-1390.01-00-0171: Maintenance of _D. G. O'Brien, Inc. Elec-trical Penetration Assemblies":

U (Later): "Precedure for Receipt, Storage, and Maintenance:of.Conax Corporation Elec-trical Penetration Assemblies -

~

CNS-1390.01-00-0079: " Procedure for!Performin'g the' Electrical Penetration 0-Ring Seal Leak Rate Test' (Type A'through M)"

CNS-1390.01-00-0068: " Procedure for Corrective Action for_

Electrical Penetrations which have a Marginal or Possfole Unacc_eptable SFs Leak Rate or Pressure (Types A through M)"

Procurement Specifications . ,

CNS-1361.00-00-0001: " Catawba Nuclear Station, Units 1 & 2,:

CNS-1361.00-00-0002: Electrical Penetration Specification;"

CNS-1361. 00-00-0033:

CNS-1361.00-00-0005:

5.2: MANUFACTURER DOCUMENTS-L CNM-1361.'00-0009: (D. G. O'Brien, Inc. Instruction Manual No. 1052-1. Type A)-

,CNM-1361.00-0030: (D. G. O'Brien, Inc. Instruction Manual No. 1051-1, Types B, C, D, F and G)

.. CNM-1361.00-0029: (D. G. O'Brien, Inc. Instruction Manual a

No. 1051-1, Types H, J, K, L and M)

'CNM-1361.00-0050: (Conax Corporation Instruction Manual

< IPS-1040, Types N and'BH)

5. 3 -- FSAR APPLICABLE PARAGRAPHS

'FSAR Section 8.3.1.4.5.2: " Cable Separation" FSAR Section 8.1.5.2: " Regulatory Guide 1.63" CNSD-0020-30 3 EL42108W

Yi 5.4~ CALCULATIONS

-CNC-1381.05-00-0004: '(Design Verification for Penetration

i. Protection)

CNC-1144.09-01-0010: -(Duke Power'. Company Miscellaneous-Containment Vessel Design and Analysis-Calculations, Type A~, B, C,.0, F, G, H.

J, K,.-L, M, N'and BH Penetration Assemblies) r

5. 5 DUKE ELECTRICAL DIVISION DESIGN STANDARDS.

DC-1.02: " Separation - Catawba" DC-3.02: " Cabling.- Classifications - Catawba" DC-16.1; " Design and Installation Criteria for

~

. Electrical Penetration-Assemblies

' Manufactured by D. G.' 0'Brien, Inc -

Catatwa," Sections 8 and 9 (Circuit Separation Requirements and Wiring Criteria)

(Later): " Design and'Insta11ation Criteria for Electrical Penetration Assemblies Manufactured by Conax Corporation -

Catawba," Sections 8 and 9 (Circuit Separation Requirements and Wiring Criteria) 5.6 TEST PROCEDURES GENERATED BY DESIGN ENGINEERING N/A 5.7 INDUSTRY STANDARDS

- ASME Boiler and Pressure Vessel Code,Section III,. Subsection NE, " Class MC Components" Excluding Conductors and Insulation-1971 Edition, including the Summer 1973 Addenda.

IEEE Standard 317-1972, " Electrical Penetration Assemblies in Containment Structures for Nuclear Power Generating Stations."

5.8 NRC REGULATORY GUIDES, DUKE POWER COMPANY NUCLEAR GUIDES Regulator Guide 1.63: " Electric Penetration Assemblies in Containment Structures for Light-Water-Cooled Nuclear Power Plants."

5.9 PROTECTIVE RELAY SETTING SHEETS N/A

'l 1

CNSD-0020-30 4 EL42108W

6. 0 DESIGN .CRIIERIA J 6.1 ,

SAFETY CLASS DESIGNATION )

Class 1E, Nuclear Safety Related.

6.2 REDUNDANCY REQUIREMENTS i 0C-16.1, Section 7.0: " Design and Installation Criteria for Electrical Penetration Assemblies i Manufactured by D. G. O'Brien, Inc - ,

Catawba" l I

(Later): " Design and Installation Criteria for Electrical Penetration Assemblies Manufactured by Conax Corporation -

Catawba" FSAR, Section 8.1.5: Regulatory Guide 1.63 6.3 _S_EPARATION REQUIREMENTS Refer to Section 5.5 of this System Description, and FSAR Paragraph 8.3.1.4.5.2:

Cable Separation.

i 6.4 DESIGN SEISMIC LEVEL j Refer to the hocuresi;ent Specifications listed in Section 5.1. i 6.5 DESIGN ENVIRONMENT Refer to the Procurement Specifications listed in Section 5.1.

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