ML20010F821

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Forwards Response to Safety Evaluation of Util Submittal Re Environ Qualification of safety-related Electrical Equipment.Transmittal Consists of Response to NUREG-0588, Response to Safety Evaluation & Environ Zone Description
ML20010F821
Person / Time
Site: North Anna Dominion icon.png
Issue date: 09/04/1981
From: Leasburg R
VIRGINIA POWER (VIRGINIA ELECTRIC & POWER CO.)
To: Clark R, Harold Denton
Office of Nuclear Reactor Regulation
References
RTR-NUREG-0588 355, IEB-79-01B, NUDOCS 8109110377
Download: ML20010F821 (600)


Text

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VIRGINIA EI.ECTRIC AND Powen COMPANY Hictixoxn, Vinonwir 20u61 September 4, 1981 H.11. LE AWB U RO NaC AM F E M AI Mu Mr. Harold R. Denton, Director Office of Nuclear Reactor Regulation Attention: Mr. Robert A. Clark, Chief Serial No. 355 Operating Reactors Branch No. 3 PSE&CS/ JEW Division of Licensing Docket No. 50-339 U. S. Nuclear Regulatory Commission Washington, D. C. 20555 License No. NPF-7

Dear Mr. Denton:

RESPONSE TO SAFETY EVALUATION REPORT FOR ENVIRONMENTAL QUALIFICATION OF SAFETY RELATED ELECTRICAL EQUIPMENT NUREG 0588 90-DAY REVIEW NORTH ANNA POWER STATION UNIT 2 This letter submits the Vepco resporse to the Safety Evaluation transmitted by the NRC letter of June S.1981 from Mr. Robert A. Clark, Chief, Operating Reactors Branch No. 3. Mr. Clark's letter identified specific infonnation required by the NRC staff and actions required of Vepco to resolve the outstanding environmental qualification deficiencies noted for North Anna Unit 2.

The Vepco response is forwarded in three (3) parts:

1. Response to the Safety Evaluation Report by the Office of Nuclear Reactor Regulation for North Anna Power Station Unit 2: This I uvuuments the Vepco response to each concern expressed in the l Safety Evaluation.
2. Revision 4 to the NUREG-0588 90-Day Review for North Anna Power l Station Unit 2: This contains the results of the Vepco engineering i review of safety-related electrical equipment. Section 12, Nnclu-l sions, identifies those components requiring corrective action and provides a schedule for completion of these actions.

l 3. Environmental Zone Description for North Anna Power Station Unit 1 (Volumes 1-5): This defines the environmental service conditions for which the safety-related electrical equipment was reviewed.

This document was forwarded by our submittal for North Anna Unit 1, Vepco letter Serial No. 330, dated August 24, 1981.

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visoix A ELECTRIC AND Powra COMPANY TO Mr. Harold R. Denton, Director September 4, 1981 Page 2 This response addresses only the safety-related electrical equipment exposed to a harsh environment resulting from an accident.

Per a telecon request from L. B. Engle (NRC) on August 31, 1981, Vepco is supplying a copy of our Safety Evaluation Report response and Revision 4 to the NUREG-0588 90-Day Review Report direct to Franklin Research Center (FRC). This will facilitate FRC's timely technical review of the report.

Very trul y urs, R. H. Leasburg JEW:ep Attachments cc: Mr. Victor Stello, Director (Enclosures - 7)

NRC Office of Inspection and Enforcement Division of Reactor Operations Inspection Washington, D. C. 20555 Mr. Zolton R. Rosztoczy (Enclosure - 1)

Branch Chief NRC Equipment Qualification Branch Division of Engineering Washington, D. C.

Mr. J. P. O'Reilly, Director (Enclosure - 1)

Office of Inspection and Enforcement Region II 101 Marietta Street, Suite 3100 Atlanta, Georgia 30303 Mr. Cyril J. Crane (Enclosure - 1)

Franklin Research Center The Parkway at Twentieth Street Philadelphia, Pa. 19103 9

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NORTH Ahh A 30WER STATION UhlT 2 R ESPO.N SE TO SA ETY EVA v ATION REPORT

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l 3Y O::lCE O: NUC_ EAR REACTOR REGU_A~~ Oh 1

VIRGINIA ELECTRIC AND POWER COMPANY

SAFETY EVALUATION REPORT BY THE OFFICE OF NUCLEAR REACTOR REGULATION EQUIPMENT QUALIFICATION BRANCH FOR VIRGINIA ELECTRIC POWER COMPANY NORTH ANNA UNIT 2 DOCKET NO. 50-339 i:RC Reauest

" ENVIRONMENTAL QUALIFICATION OF SAFETY-RELATED ELECTRICAL EQUIPMENT 1 INTRODUCTION General Design Criteria 1 and 4 specify that safety-related elec-trical equipment in nuclear facilities must be capable of perforn-ing its safety-related function under environmental conditions associated with all normal, abnormal, and accident plant opera-tion. In order to ensure compliance with the criteria, the NRC staff required all licensees of operating reactors to submit a reevaluation of the qualification of safety-related electrical equipment which may be exposed to a harsh environment. The staff additionally required the near-term operating license applicants to reassess and evaluate their environmental cualification documentation for their safety-related electrical equipment."

Vepco Response No comment O

AW/lll6B/l North Anna 2 September 3, 1981

NRC Reauest "2 BACKGROUND On February 8, 1979, the NRC Office of Inspection and Enforcement (IE) issued to all licensees of operating plants (except those included in the systeratic evaluation program (SEP)) IE Bulletin IEB 79-01, " Environmental Qualification of Class IE Equipment."

This bulletin, together with IE Circular 78-08 (issued on May 31, 1978), reauired the licensees to perform reviews to assess the adequacy of their environmental qualification programs.

By letters dated October 11, 1979 and February 19 and 21,1980, the NRC Office of Nuclear Reactor Regulation (NRR) requested operating license applicants to review and evaluate the environmental qualification documentation for each item of safety-related electrical equipment and to identify the degree to which their qualification program complies with the staff's positions as described in NUREG-0588, " Interim Staff Position on Environmental Oualification of Safety-Related Electrical Equ ipment . " The applicants were directed to provide a submittal reporting the results of this review.

Subsequently, Commission Memorandum and Order CLI-80-21 (issued on May 23, 1980) states that the D0R guidelines and portions of NUREG-0588 (which were issued on January 14, 1980, as enclosures 4 and 5 to IEB-79-01B) form the requirements that licensees must meet re-garding environmental qualification of safety-related electrical p)

( equipment in order to satisfy those aspects of 10 CFR 50, Appendix A, General Design Criterion (GDC)-4. This order also reauires the staff to complete safety evaluation reports (SERs) for all operat-ing plants by February 1,1981. In addition, this order requires that the licensees have qualified safety-related equipment in-stalled in their plants by June 30, 1982.

Supplements to IEB 79-018 were issued for further clarification j and definition of the staff's needs. These supplements were l issued on February 29, September 30, and October 24, 1980.

l l In addition, the staff issued orders dated August 29, 1980 i

(amended in September, 1980) and October 24, 1980 to all licen-sees. The August order required that the licensees provide a report, by November 1,1980, documenting the qualification of safety-related electrical equipment. The October order required j the establishment of a central file location for the maintenance l of all equipment-qualification records. The central file was man-dated to be established by December 1,1980. The order also re-l quired that all safety-related electrical equipment be qualified by June 30, 1982. In response, the licensee submitted information through submittals dated June 20 and October 31, 1980."

AW/lll6B/2 North Anna 2 I

September 3, 1981

Vepco Response O Revision 3 to the NUREG-0588 90 Day Review was submitted on January 30, 1981. It is assumed that this revision was not incorporated into the staff's SER review.

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l AW/lll6B/3 North Anna 2 September 3, 1981

NRC Recuest "2.1 Purpose q\,_/

The purpose of this SER is to identify equipment whose qualifica-tion program does not provide sufficient assurance that the equip-ment is capable of performing the design function in hostile en-vironments. The staff position relating to any identified defi-ciencies is provided in this report."

Vepco Response No comment O

v AW/lll6B/4 North Anna 2 September 3, 1981

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! NRC Request 0 "2.2 Scope The scope of this report is limited to an evaluation of the equip-ment which must function in order to mitigate the consecuences of a loss-of-coolant accident (LOCA) or a high-energy-line-break

(HELB) accident, inside or outside containment, while subjected to the hostile environments associated with these accidents."

Vepco Response No comment l

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AW/ll168/5 North Anna 2 September 3, 1981

NRC Reauest "3 STAFF EVALUATION The staff evaluation of the licensee's response included an onsite inspection of selected Class IE equipment and an examination of the licensee's report for completeness and acceptability. The criteria described in the 00R guidelines and in NUREG-0588, in part, were used as a basis for the staff evaluation of the ade-quacy of the licensee's qualification program.

The NRC Office of Inspection and Enforcement performed an onsite verification inspection (October 21-24,1980) of selected safety-related electrical equipment. A physical examination was made of installed electrical instrumentation and control equipment associated with the safety injection accumulator, sample, main steam, leakage monitoring, and instrument air systems. The inspection verified proper installation of equipment, overall interface integrity, and manufacturers' nameplate data. The mcqufacturer's name and model number from the nameplate data were compared to information given in the component evaluation work sheets (CES) of the licensee's report. The site inspection is documented in report IE 50-339/80-34. No major deficiencies were identified. Several minor differences were noted, and the licensee's report will be updated for correctness.

The staff performed two audits (July 28-30, and December 2-4, fS 1980) of the licensee's environmental qualification progr:m, Q including detailed reviews of the supporting documentation for 10 equipment items. Results of toe first audit indicated some deficiencies, particularly that reviews of environmental qualification data appeared to be cursory and some qualification documentation was not available for audit. The second audit indicated that the licensee had not established acceptable failure criteria with respect to their evaluation of qualification documentation. In addition, many referenced qualification documents reauested by the staff were not available for audit.

For these reasons, the results of the second audit were inconclusive. It uld be noted that on October 24, 1980 an order for modification of license was issued to the licensee. The order required the establishment, by December 1,1980, of a central file for the purpose of maintaining complete and auditable records of environmental qualification of safety-related equipment."

Vepco Response The central file has been established. It contains an equipment qualification file for each Class IE electrical equipment item listed on the Master List and located in a harsh environment.

O AW/lll6B/6 North Anna 2 September 3, 1981 I

Vepco has completed a field verification program (Special Test 28) e to verify manufacturer and model number of all Class lE eauipment

( listed on the master list. The information obtained by the pro-gram is being reviewed. The component evaluation worksheets (CES) have been revised to correct any known discrepancies in the manu-facturer or model numbers previously provided. Revision 4 to NUREG-0588 90 Day Review is included with this submittal and includes the revised CES.

Vepco will complete the Special Test review by June 1982 and main-tain the results in the equipment qualification central file.

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AW/Ill6B/7 -North Anna 2

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NRC Recuest Completeness of Safety-Related Eouipment

] "3.1 In accordance with IEB 79-01B, the licensee war directed to (1) establish a list of systems and eauipment that are required to mitigate a LOCA and an HELB and (2) identify components needed to perform the function of safety-related display information, post-accident sampling and monitoring, and radiation monitoring.

The staff developed a generic master list based upon a review of plant safety analyses and emergency procedures. The instrumenta-tion selected includes parameters to monitor overali plant perform-ance as well as to monitor the performance of the systems on the list. The systems list was established on the basis of the func-tions that must be performed for accident mitigation (without re-gard to location of equipment relative to hostile environments).

The list of safety-related systems provided by the licensee was reviewed against the staff-developed master list.

Based upon information in the licensee's submittal, the eouipment location references, and in some cases subseauent conversations with the licensee, the staff has verified and determined that the systems included in the licensee's submittal are those required to achieve or support: (1) emergency reactor shutdown, (2) contain-ment isolation, (3) reactor core coolina, (4) containment heat q removal, (5) core residual heat removal, end (6) prevention of (j significant release of radioactive material to the environment.

The staff therefore concludes that the systems identified by the licensee (listed in Appendix D) are acceptable, with the exception of those items discussed in Section 5 of this report.

Display instrumentation which provides information for the reactor operators to aid them in the safe handling of the plant was not specifically identified by the licensee. A complete list of all display instrumentation mentioned in the LOCA and HELB emergency procedures trust be provided. Equipment aualification information in the form of summary sheets should be provided for all compon-ents of the display instrumentation exposed to harsh environ-ments. Instrumentation which is not considered to be safety re-lated but which is mentioned in the emergency procedure -hould appear on the list. For these instruments, (1) justification should be provided for not considering the instrument safety re-lated and (2) assurance shculd be provided that its subsequent failure will not mislead the operator or adversely affect the mitigation of the consequences of the accident. The environmental qualification of post-accident sampling and monitoring and radia-tion monitoring equipment is closely related to the review of the TMI Lessons-Learned modifications and will be performed in con-junction with that review.

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AW/lll6B/8 North Anna 2 September 3, 1981

The licensee identified 436 items of equipment which were essessed by the staff."

Vepco Response A list of display instrumentation referenced in the Emergency Pro-cedures is provided in Table 1. The equipment in Table 1 has been divided into five categories.

Category A - Display instrumentation located in a harsh environ-ment, that is required for post-accident monitoring.

Category B - Display instrumentation located in a non-harsh en-vironment, that is required for post accident moni-toring.

Category C - Display instrumentation located in a harsh environ-ment, that is not required for post accident moni-toring.

Category D - Display instrumentation located in a non-harsh en-vironment, that is not vaquired for post accident monitoring.

Category E - Safety-related equipment, located in a harsh envir-onment, that is not required for post-accident moni-toring.

None of the display instrumentation listed in the Emergency O NOTE:

Procedures provided in Table 1 was previously included on the master list.

O AW/lll68/9 North Anna 2 September 3, 1981

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O O N O Anne a September 3, 1981 TABLE 1 C_ATEGORY A EXPOSED TO A MAftK NIEBER DESCRIPTION HARSH ENVIRONMENT REQUIRED FOR PAM WORKSHEET COMMENT PT-2402 RCS Wide Range X X 78 1 PT-2403 RCS Wide Range X X 79 1 LT-2477 Steam Gen. Wide Range X X 80 1 LT-2487 Steam Gen. Wide Range X X 80 1 LT-2497 Steam Gen. Wide Range X X 80 1 PT-RS256A Outside Recirc. Spr. X X 82 1 l Pump Disch. l PT-RS2568 Cutside Recirc. Spr. X X 82 1 Pump Disch.

FT-2961 Cold Leg SI X X 81 1 FT-2962 Cold Leg SI X X 81 1 FT-2963 Cold Leg SI X X 81 1 FT-2943 Total SI Flow X X -- 1 TE-2412 A -TAVG Protection X X 77 1 TE-2422 A -TAVG Protection X X 77 1 TE-2432 A -TAVG Protection X X 77 1 FT-2945 Low Head Inj. Hdr. X X 83 1 FT-2946 Low Head Inj. Hdr. X X 83 1 RM-SW224 Recirc. Spr. Ht. Exch X X -- 1 Out Rad Mon

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() North \_Ja 2 September 3, 1981 TABLE 1 CATEGORY A - (Continued)

EXPOSED TO A MARK NUMBER DESCRIPTION HAR5H ENVIRONMENT RE0tJIRFD FOR PAM WORKSHEET CDPMENT RM-SW225 Pacirc. Spr. Ht. Exch X X -- 1 Out Rad Mon RM-SW226 Recirc. Spr. Ht. Exch X X --

1 Out Rad Mon RM-SW227 Recirc. Spr. Ht. Exch X X -- 1 Out Rad tbn RM-RMS259 Cent. Part. & Gas Rad Mon X X -- 1 RM-RMS260 Cont Part. & Gas Rad Mon X X --

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North ha 2 September 3, log]

TABLE 1 CATEGOPY B EXPOSED TO A MARK NUMBER DESCRIPTION HARSH ENVIRONMENT RE0UlRED FOR PAM WORKSHEET COMVENT LT-05200A Refueling Water Storage X -- 2 Tank LT-OS2008 Refueling Water Storage X -- 2 Tank L T-CN200 Condensate Storage Tank X --

2 LT-0S200C Refueling Water Storage X --

2 Tank LT-052000 Refueling Water Storage X --

2 FT-FW200 A Aux. Stm. Gen. Feed Pmp. X --

2 FT-FW200G Aux. Stm. Gen. Feed Pmp. X --

2 FT-FW200C Aux. Stm. Gen. Feed Pmp. X --

2 RM-SW208 Serv. Wtr Disch. Rad Mon X -- 2 RM-SW209 Serv. Wtr Disch. Rad Mon X -- 2 Vital Bus Veitage X --  ?

125V Dc Voltage X --

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Nor ,2nna 2 September 3, 1981 ,

TABLE 1 ,

CATEGORY C t

EXPOSED TO A MARK NtNBER DESCRIPTION HARSH ENVIR0fd2NT REQUIRED FOR PAM WORKSHEET COMMENT TE-2411D A -TAVG Control X --

3A h

TE-24210 AL-TAVG Control X --

3A TE-2431D A -TAVG Control X --

3A ,

PT-2934 Boron Inj. Header X --

3B r

PT-2121 Charging Pressure X --

3C PT-2921 Accum. Tank 1 Press. X - - -

3D PT-2923 Accum. Tank 1 Press. X --

3D PT-2925 Accum. Tank 2 Press. X --

3D .

t PT-2927 Accum. Tank 2 Press. X --

3D PT-2929 Accum. Tank 3 Prc:x. X --

3D PT-2931 Accum. Tank 3 Press. X --

3D I LT-2920 Accum. Tank i level X --

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i LT-2922 Accum. Tank 1 Level X --

3E LT-2924 Accum. Tank 2 Level X --

3E LT-2926 Accwn. Tank 2 Level X --

3E L T-2928 Accum. Tank 3 Level- X --

3E .

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LT-2930 Accian. Tank 3 Level X --

3E j FT-2960 Loop 2 Hot Leg SI X --

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i September 3, 1981 i TABLE 1

! CATEGORY C - (Continued)

EXPOSED TO A MARK NtNBER DESCRIPTION HARSH ENVIRONMENT REOUIRED FOR PAM WORKSHEET COMMENT FT-2933 ' cop 1 Hot leg SI

. X --

3F FT-2932 Loop 3 Hot leg SI X --

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LT-2112 Solume Control Tk Level X --

3G

!j LT-2115 Volume Control Tk Level X --

3G 1

l LT-LW202A- HI Level Waste Drain X -- 3H LT-LW202B HI Level Waste Drain X --

3H TE-2141 Letdown Relief Line Temp X --

3I TE-2139 Excess Letdown HI Tech X --

3I Temp TE-RS250A Containment Sump Temp. X --

3J TE-RS2508 Containment Sump Temp. X --

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O O =rth O2 September 3, 1981 TABLE 1 CATEGORY D EXPOSED TO A  !

MARK NINBER DESCRIPTION HAR5H ENVIRONMENT REOUIRED FOR PAM WORKSHEET COMMENT ,

PI-HV2311 Bottled Air Delivery -- 4 ,

Press PDI-HV200 Relay Rm. Pos. Vent. -- 4 PT-FW201A Aux Fed Pmp Disch. -- 4  :

i PT-FW201B Aux Fed Pmp Disch. -- 4 PT-FW201C Aux Fed Pmp Disch. -- 4 PT-FW203A Aux. S.G. Feed Pmp Suct -- 4 PT-FW203B Aux. S.G. Feed Pmp Suct -- 4 PT-FW203C Aux. S.G. Feed Pmp Suct -- 4 Semi-vital Bus Voltage -- 4 l

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O Nort8 e0 2 September 3, 1981 l TABLE 1 CATEGORY E i EXPOSED TO A MARK NINBER DESCRIPTION HARSH ENVIRONMENT REQUIRED FOR PAM WORKSHEET COMMENT I

I FT-2476 SG 1 Feedwater Flow X --

5 ['

FT-2477 SG 1 Feedwater Flow X --

5 FT-2486 SG 2 Feedwater Flow X --

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FT-2487 SG 2 Feedwater Flow X --

5 FT-2496 SG 3 Feedwater Flow X --

5 FT-2497 SG 3 Feedwater Flow X --

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September 3, 1981

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TABLE 1 COMMENTS

1. To be upgraded or replaced with qualified equipment.

The sensor, cable and terminations of the indication listed will be reviewed for qualification. Those portions of the instrumentation loop that are exposed to a harsh environment will be upgraded with environmentally qualified ecuipment.

This will ensure that the operator will not be provided with erroneous indication 4 due to the effects of a harsh environment on this equipment in the event of LOCA '

l or MSLB.

4 The majority of the display instrumentation in the North Anna control room is supplied directly from protection channels. However, to ensure the integrity of the trip function, an isolation device is provided to supply the indicator so that faults at the indicator will not be reflected into the safety trip portion of the circuit. Therefore, the cables that run from the safety trip circuit to the indicator are not treated as Class lE cables with respect to cable separa-tion. This approach allows for redundant indicators to be positioned side-by-side for comparison of readings.

Qualification of Post Accident Monitoring equipment referenced in the Emergency Procedures is a new requirement. Vepco will review the cualification status of this equipment and advise the NRC of the schedule for implementation of any required corrective action by June 1982.

2. Will be reviewed along with other equipment located in a non-harsh environment.

3A. TE-2411D, 24210, 2431D Not considered safety related since it does not (AT - Tave Control) actuate any safeguards equipment. Wide range Th and Tc and AT-Tave protection channels are available: therefore, their failure will not mislead the operator.

38. PT-2934 Not considered safety related. Operator uses (Boron Inj. Pressure) this indication to verify that the boron injection tank is pressurized, but this does not verify flow through tne BIT. Since flow through the BIT is the main indication, faulty pressure indication would not mislead the operator.

() () North Anna 2 September 3, 1931

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TABLE 1 COMMENTS - (Continued) 3C. PT-2121 Is not considered safety related. During an (Charging Press) accident, flow to the core is verified by flow transmitters. Its failure would not mislead the operator since the primary indication of flow would be the flow transmitters.

3D. PT-2921, 23, 25, 27, 29, 31 Required during normal operation to verify Tech (Accum Press) Spec pressure. Not required during accident conditions since the transmitters do not provide any actuation, and periodic testing assures valve lineup such that operator action is not required. Not considered safety related.

3E. LT-2920, 22, 24, 26, 28, 30 Same as for Acc. Press.

(Accum Lvl) 3F. FT-2960, 1933, 1932 The total SI flow (FT-2943) is considered safety (Indiv. Hot Leg SI Flows) related; therefore, the individual hot leg flows are not required to be safety related.

3G. LT-2112, 1115 Not considered safety related. Failure of these (VCT Level) channels may result in swapping chargina pump suction from the VCT to the RWST which is in a safe direction. Since durina a safeguards actuation charging pump suction is from the RWST (or later from the LHSI pumps), VCT level indication failure will not mislead the operator.

3H. LT-LW202A, 8 Not considered safety related since these do not (Hi Lvl Waste Drain) actuate any safeguards equipment.

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TABLE 1 l COMMENTS - (Continued) i

31. TE-2141 Not considered safety related since letdown is
(Ltdn Relief Line Temp; isolated durina a safeguards actuation. Since
TE-2139 letdown is isolated, its failure would not (Excess Ltdn Hx Temp) mislead the operator.

3J. TE-RS-250A, B Not considered safety related. Operator uses

! (Containment Sump increasing sump level and/or containment Temp) temperature / pressure to detect leakage.

] Therefore, its malfunction would not mislead the operator.

j 4. Will be reviewed with other equipment located in a non-harsh environment.

5. FT-2476, 77, 86, 87, 96, 97 These are safety related but-not required for j (Feedwater Flow) accident mitigation. These flows are used for reactor trip looic. Will be added to the master list.

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NRC Recuest "3.2 Service Conditions Commission Memorandum and Order CLI-80-21 reouires that the 00R guidelines a.1d the "For Comment" NUREG-0588 are to be used as the criteria fcr establishing the adeauacy of the safety-related elec-trical equipment environmental qualification program. These docu-ments provide the option of establishing a bounding pressure and temperature condit son based on plant-specific analysis identified in the licensee's Final Safety Analysis Report (FSAR) or based on generic profiles using the methods identified in these documents.

On this basis, the staff has assumed, unless otherwise noted, that the analysis for developing the environmental envelopes relative to the temperature, pressure and the containment spray caustics, has been performed in accordance with the requirements stated above. The staff has reviewed the qualification documentation to ensure that the qualification specifications envelope the condi-tions established by the licensee. During this review, the staff assumed that for plants designed and equipped with an automatic containment spray system which sat Y ies the single-failure cri-terion, the main-steam-line-break (MSLB) environmental condit. is are enveloped by the large-break-LOCA environmental conditions.

The staff assumed, and requires the licensee to verify, that the containment spray system is not subjected to a disabling single-component failure and therefore satisfies the requirements of Section 4.2.1 of the D0R guidelines.

O Equipment submergence has also been addressed where the possi-bility exists that flooding of equipment may result from HELBs."

Vepco Response A description of the containment spray system for North Anna 2 is provided in Section 6.2.2.3.1 of the North Anna 1 and 2 FSAR (Reference 1). This system contains redundant 100% capacity trains which are not subject to a disablino single-component failure.

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v AW/lll6B/20 North Anna 2 September 3, 1981

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l NRC Reauest "3.3 Temperature, Pressure, and Humidity Conditions inside Containment The licensee has provided the results of accident analyses as follows:

Max Temp (DF) Max Press (psig) Humidity (%)

45 100 LOCA 280 45 100 MSLB 430 The staf f has concluded tha+ 'ne minimum temperature profile for equipment cualification purposes should include a margin to ac-count for higher-than-average temperatures in the upper regions of the containment that can exist due to stratification, especially following a postulated MSLB. Use of the steam saturation tempera-

/ ture corresponding to the total building pressure (partial pres-sure of steam plus partial pressure of air) versus time until the sprays become effective will provid? an acceptable margin for either a postulated LOCA or MSLB, whichever is controlling, as to potential adverse environmental effects on equipment.

The licensee's specified temperature (service condition) of 2800F does not satisfy the above requirement. A saturation temperature corresponding to the pressure profile (2920F peak temperature at 45 psig) should be used instead. The licensee should update his equipment summa y tables to reflect this change.

O If there is iny equipment that does not meet the staff position, the licensee must provide either justification that the eauipment will perform its intended function under the specified conditions or propose corrective action.

The staff notes that for the EE0 review the accidents which were As used to evaluate equipment ware LOCAs inside containment.

stated in Section 3.2 of this report, this plant is equipped with an automatic containment spray system. However, the temperature for the MLSB inside containment exceeds the LOCA profile by 1500F for a short time (about two minutes). The licensee should provide the analysis to verify that the effects of this short-term peak temperature da not affect the environmental cualification of the safety-related equipment which was cualified using the LOCA pro-file."

O North Anna 2 AW/11168/21 September 3,1981

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Vepco Response S This submittal contains a complete set of the Environmental Zone (O Descriptions (EZD) for North Anna Units 1 and 2I . A sample of the methodology M ed to calculate postulated in-containment con-ditions for North Anna 2 is given at Reference Tab 2 of the EZD.

Stratification would only be present for a short time period (since the containment spray system becomes effective within 100 seconds) following a LOCA or MSLB. The spray delivery to the upper regions of the containment would quickly cool the stratified region.

No safety-related electrical equipment is located in the upper third of the containment volume. This precludes any equipment froa.being exposed to a higher-than-average temperature due to stratification in the upper regions of the containment followire a LOCA or MSLB.

Even if safety related electrical equipment were located in the upper third of the containment volume, additional margin on top of the maximum temperatures of 4300F for a MSLB and 2800F for a LOCA is not necessary due to the conservatism included in those values.

The MSLB temperature of 4300F was calculated assuming no liculd entrainment from the double-ended rupture of a 30 inch diameter Cj'

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ment heat sinks. These two assumptions result in a significant overprediction of the containment temperature. Other conserva-tisms, such as using minimum values for containment heat sinks and containment volume, result in additional margin.

The LOCA temperature of 2800F was chosen to conservatively en-velope the maximum calculated LOCA temperature of 2670F. This calculated value was obtained using computer codes and models which contain significant conservatisms such that the calculated temperature is an overprediction of the expected average tempera-ture. These conservatisms include: a) the blowdown model, which maximizes release rates to the containment, b) overprediction of the energy available for release to the containment, c) under-prediction of the containment heat sinks and containment volume, d) assuming the most limiting containment initial conditions, e) minimizing containment spray heat removal, and f) the modeling of the behavior of the break effluent to maximize the containment

! pressure and temperature. The combination of all these factors l results in calculatui containment pressure and temperature tran-sients which are substantially greater than expected values.

l I A copy of the Environmental Zone Descriptions (EZD) for North Anna Units 1 and 2 was provided with the North Anna 1 SER response, O deted ^#9"st 24. 1981-AW/lll68/22 North Anna 2 l

! September 3, 1981

The 130F difference between the specified and calculated LOCA temperatures, and the conservatism in the calculated LOCA tempera-ture provide margir to account for stratified regions of higher-A than-average temperatures. Moreover, stratification of steam in the upper regions of the containment is unlikely following a LOCA.

The location of the break is below the operating floor in the lower portion of the containment. The high blowdown rates for the sub-cooled liquid will result in a high degree of mixing, which will prevent the accumulation of stratified steam. The c6atainment spray system, which is effective approximately 100 seconds after a i LOCA, will act further to quickly cool any stratified region.

The effects of the short term peak temperatuiu of 4300F re-sulting from a MSLB do not affect environmental cualification of safety-related equipment. The analysis that verifies this is provided in the response to FSAR Comment 7.17.

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AW/lll68/23 North Anna 2 September 3, 1981

NRC Request

'~'s "3.4 Temperature, Pressure, and Humidity Conditions Outside Containment (G

The licensee has provided the temperature, pressure, humidity and applicable environment associated with an HELB outside contain-ment. The following areas outside containment have been addressed:

(1) Auxiliary Building (2) Main Steam Valve House (3) Service Building (4) Service Water Valve Pit The staff has verified that the parameters identified by the licensee for the MSLB are acceotable."

Vepco Response No comment

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, AW/Ill6B/?4 North Anna 2 l September 3, 1981

NRC Reauest O "3.s sebmereeece The maximum submergence levels have been established and assessed by the licensee. Unless otherwise noted, the staff assumed for this review that the methodology employed by the licensee is in accordance with the appropriate criteria as established by Com- '.

mission Memorandum and Order CLI-80-21.

The licensee's value for maximum submergence is 9 ft.1 in.

Equipment below this level has been identified by the licensee, along with the proposed corrective action. The licensee identified two item types consisting of six safety-related electrical components -- all solenoid valves -- as having the potential for becoming submerged after a postulated event. As a corrective action, the licensee proposes replacing and relocating these components by June 30, 1982. The staff concurs with the proposed resolution.

The licensee stated that the components in question--solenoid valves--perform their functions in less than 60 seconds, fail closed, and are not required to operate after a LOCA. For the interim, the licensee should provide an assessment of the failure modes associated with the submergence of the solenoid valves. The licensee should also provide assurance that the subsequent failure of this component will not adversely a'fect any other safety functions or mislead an operator. Auditionally, the licensee should discuss operating time, across the spectrum of events, in relation to the time of submergence. If the results of the licensee's assessment are acceptable, then the solenoid valves may be excempt from the submergence parameter of qualification. It is not clear from the information submitted that submergence of safety-related electrical equipment outside of containment was addressed. The licensee should address this area more l specifically in the 90-day response and upgrade the CES as j appropriate."

Vepco Response

1. gideReactorContainmentBuildina The maximum fluid level in the calculation is elevation 225'-7" but all components were reviewed against elevation 226'. The 226' correlates to the staff's 9'-1" since the floor high point elevation is 216'-11". The solenoid valves are in the process of being replaced because of insufficient radiation qualification and will be relocated to above elevation 226'. The following discussion is provided as a justification for continued interim operation.

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AW/lll6B/25 North Anna 2 September 3, 1981

The solenoid operated valves which will become submerged are used to control the containment isolation trip valves and are actuated by a containment isolation, phase A, signal. They (d ~.3 are designed such that t'se phase A signal will de-energize the electrical coil to vent air pressure on the containment isolation trip valve to allow the trip valve to close.

Therefore the safe mode for the solenoid operated valve electricalcoilisthede-energizedstate. These coils are de-energized upon receipt of a containment isolation signal by the opening of relay contacts located in the solid state protectior cabinets which are in the instrument room (i.e.

outside containment). A short circuit in the coil or in the cable to the coil due to an accident environment would shunt part or all of the current running through the coil and allow the spring within the solenoid valve to overcome the magnetic flux of the coil.

The solenoid operated valve would then close isolating the air supply to the containment trip valve and venting the air already in the diaphragm chamber.

The lowest soleneid valve is 3 feet above the ficor high point elevation. It will require 250,000 gallons to raise the water level to this elevation. The large break LOCA has the greatest potential to flood the valves prior to their operation, since this accident results in the most rapid floor water level rise. Smaller break LOCA's and secondary system breaks result in a less rapid floor water level rise.

p Q Within the first 60 seconds following a large LOCA, approximately 57,000 gallons are discharged into the containment from the reactor coolant system, gas accumulators, and boron injection tank. Additional water is then injected into the containment from the refueling water storage tank by the quench spray and safety injection pumps, and from the casing cooling tank by the casing cooling pumps. Assuming maximum flow into the containment from all these sources, and assuming no hold-up or loss inside the containment, the water volume on the containment floor will not reach 250,000 gallons until after 15 minutes.

Since each solenoid comp M % "s operation within the first 60 seconds, its operation will not be affected by submergence.

Since each solenoid is de-energized after the 60 seconds, a subsequent failure would not affect anything or mislead the operator.

b~s AW/Ill68/26 North Anna 2 September 3, 1981

2. Outside leactor Containment Buildina f ~, Submergence outside of containment (i.e. Auxiliary Building &

.() Main Steam Valve House) was not specifically addressed during the NUREG-0588 90 Day Review. It was addressed, however, in the North Anna 1 and 2 FSAR, Appendix C.

The Auxiliary Building was the only area determined to be affected by the postulated high-energy line breaks with re-gard to submergence. The maximum water level in the Auxili-ary Building is 1 inch above the floor. All equipment impor-

! ant to safety was found to be at least 15 inches above the floor. The section of the North Anna FSAP describing the flooding effects for the postulated breaks in the Auxiliary Building is included as Reference 2.

Siace we have determined that there is no eauipment outside containment that would be subjected to submergence due to a LOCA or HELB, the submergence block on the Component Evalua-tion Sheets for equipment located outside of containment has been marked Not Required (NR).

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O AW/lll68/27 North Anna 2 Se;,tember 3,1981

NRC Reouest "3.6 Chemical Spray i' The licensee's value for the chemical concentration is 2000-2100 ppm coron buffered to a pH of 8.5 to 11 with sodium hydroxide for a period of 0-4 hours. Then it is reduced to a pH of 7.8 to 9.0 for the remaining 120 days. The exact volume percent used by the vendor for qualification testing should be verified by the licensee. Therefore, for the purpose of this review, the effects of chemical spray will be considered unresolved. The staff will review the licensee's response when it is submitted and discuss the resolution in a supplemental report."

Vepco Response The compor <t evaluation sheets have been revised to show consis-tent units for chemical spray concentration. Each component on the master list which is subjected to chemical sprays has been reviewed to ensure that the chemical spray environment in the test report envelops the specified chemical spray environment. The results of the review are indicated on the worksheets included in Revision 4 of the NUREG-0588 90 Day Review. Specific chemical spray deficiencies which were identified in Appendix B have also been reviewed and resolutions to these deficiencies are indicated on the Revision 4 component evaluation worksheets.

g Details of the qualification review for chemical spray can be Q found in the qualification review packages contained in the cen-tral file.

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AW/lll68/28 North Anna 2 September 3, 1981

NRC Recuest

] "3.7 Aai ng

, NUREG E 88 Category II delineates two aging program requirements.

1 Valve t 3rators committed to IEEE Standard 382-1972 and c,M. ors committed to IEEE Standard 334-1971 must meet the Catetory l requirements of the NUREG. This reauires the establishment of a qualified life, with maintenance / replacement schedules based on the findings. All other equipment must be subjected only to an aging program which identifies aging-susceptible materials within the component. Additionally, the staff requires that the licensee (1) establish an ongoing program to review surveillance and maintenance records to identify potential age-related degradations (2) establish component maintenance and replacement schedules which include considerations of aging characteristics of the installed components The licensee's aging program, as identified in the submittal, addresses aging only to the extent that an equipment failure is attributed directly to an aging mechanism. The licensee was directed by the staff to provide details concerning the aging program, including the identification of aging-susceptible materials and compliance with Category I aging criteria, where applicable.

For this review, however, the staff requires that the licensee submit npplemental information to verify and identify the degree of conformance to the above requironients. The response should include all the equiprant identified as required to maintain func-tional operability in harsh environments.

The licensee indicated that this phase of the response is out-standing and that the revies. is in progress. The staff will review the licensee's response when it is submitted and discuss its evaluation in a supplemental report."

Vepco Response Vepco has addressed aging quai'fication on the CES included with Revision 4 of the NUREG-0588 90 Day Review.

Vepco has not fully developed an ag:ng evaluation program to meet the current requirements for addressing aging a3 outlined in the Safety Evaluation Report and as discussed in the meetings held in Bethesda on July 7 '0, '981. As indicated previously in the NUREG-0588 90 N y Review Revision 1, a program to assess the failure mechanisms of all class IE electrical equipment has been developed and implemented at North Anna, p

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AW/lll6B/29 North Anna 2 September 3, 1981

r The Atomic Induurial Forum is currently drafting a position paper i which Vepco believes has merit with regard to addressing the aging concerns. Implementation of this program is contingent, however, on review of the existing preventive maintenance program at the station. Vepco is currently reviewing the draft AIF position paper on aging evaluation methods in conjunction with the existing preventive maintenance program at Surry. An aging evaluation pro- -

gram which meets the requirements of the SER will be implemented by June 1982.

Below is the program being proposed by the AIF:

3.7.1 Discussion The purpose of qualifying safety-related equipment in a harsh en-vironment is to assure that when the eauipment is subjected to severe environmental stresses from a design-basis event, common mode failures will not occur in redundant safety systems. The purpose of including aging as part of the qualification prncess is to assure that such equi ment will perform its safety functions in its "end-of-useful-life" as well as in its "as-new" condition.

Such a demonstration mut4. consider the design, manufacture, test-ing, installation, operation, maintenance, and replacement of the equipment.

However, the evaluation of aging, as practiced in the nuclear power industry, embodies the concept of preconditioning a piece of C_ equipment by putting it in a simulated advanced stage of life.

This practice is extended to determine an expected (i.e., quali-fied) life for that piece of equipment if, following the precondi-tioning, the equipment can be demonstrated to perform its intended function successfully when exposed to a harsh environment.

The aging and qualified-life concept is sound and logical in prin-ciple. In practice, however, industry research and experience has i

demonstrated that aging is still at the leading edge of technol-ogy; this statement is based on the following:

(1) The most common method to achieve a preconditioning of eauip-ment is to use some form of accelerated stressing. This requires the identification of the various environmental parameters (i.e., temperature, pressure, himidity, radiation, vibration, and chemical environment) that cause stress. An appropriate acceleration technique must be established for each type of stress that is identified. The simultaneous simulated acceleration of all or some of these parameters (e.g., radiation, temperature, humidity), as would occur in the plant, is not always practical or feasible. In addition, i some of these parameters (e.g., humidity and chemical envir-l onment) do not lend themselves to acceleration.

(2) When acceleration is practical, the methods used (such as the j Arrhenius technique and the 10 degree C rule for thermal aging, l

AW/11168/30 North Anna 2

.__ -- Sestembsr LJM1

and an increased dose rate for radiation) are approximate and subject to arbitrary assumptions. Electric Power Research

/ Institute Report NP-1558, "A Review of Equipment Aging Theory and Technology," demonstrates this fact.

The industry believes that the D0R Guidelines recognize this state-of-the-art limitation, as demonstrated by the staff position in Section 7, " Aging," which states:

" Implicit in the staff position in Regulatory Guide 1.89 with regard to backfitting IEEE Std. 323-1974 is the staff's con-clusion that the incremental improvement in safety from arbi-trarily requiring that a specific qualified life be demon-strated for all Class lE equipment is not sufficient to jus-tify the expense for plants already constructed and operat-ing."

Section 7 continues that:

"This position does not, however, exclude eouipment using materials that have been identified as being susceptible to significant degradation due to thermal and radiation aging.

Component maintenance or replacement schedu7es chould include considerations of the specific aging characteristics of the component materials. Ongoing programs should exist at the plant to review surveillance and maintenance records to assure that equipment which is exhibiting age related degrad-3 ation will be identified and replaced as necessary.

Section 3.7.2 outlines the proposed program. When implemented this program will satisfy the agina requirements in the D0R Guide-lines and the Safety Evaluation Report.

3.7.2 Aging Evaluation Program To address the aging evaluation program in a disciplined man-

ner, each safety related Class lE equipment located in potent-ially harsh environment areas and identified in the component evaluation worksheet will be reviewed individually and classi-l fied into three categories as follows, based on their qualifi-cation methods

Category A - Eauipment tested un fer LOCA/HELB conditions with preaging included in the test program Category B - Equipment tested under LOCA/HELB conditions without preaging in the test program Category C - Equipment not tested under LOCA/HELB conditions l

l AW/11168/31 Forth Anna 2 September 3, 1981

3.7.2.1 Category A Q

V Category A includes the equipment which was cualified by type tests. These type tests include (1) simulated aging test in-cluding thermal, radiation aging, and mechanical and electrical cycling where applicable, and (2) design-basis-event tests to verify the equipment's functional capability following simu-lated aging. In these cases a qualified-life estimate, based on most limiting of the thermal and radiation aging tests, was established. For this equipment, an Ongoing Aging evaluation and replacement schedule will be factored into an existing sur-veillance program, which includes:

3.7.2.1.1 The performance of routine preventive maintenance in accordance with established procedures based on manufacturers' recommenda-tions and plant operating experience.

3.7.2.1.2 Parts replacements on which the expected qualified-life is con-tingent. Based on the review of the qualification tests and the results thereof Vepco has identified the parts replacements such as gaskets and lubricants that are required. The existing preventive maintenance programs for each piece of equipment will be revised to include these.

3.7.2.1.3 The evaluation of equipment failures to identify any trends that indicate a potential for common mode failure so corrective actions can be initiated. The failure evaluation program will specifically address the following.

O A record will be maintained of all failures of safety related Class 1E equipment. Periodically failure records will be re- f viewed to determine:

(a) Repetitive nature (1) Is the same type failure occurring on the same equip-ment and at some definite intervals?

(2) Is the same type failure occurring at a definite in-terval on similar equipment?

(b) Timing of the f ailures with respect to any environmental condition changes (c) Other causes indicative of equipment in-service aging degradation.

Vepco currently has an administrative procedure that addresses this requirement. This procedure when fully developed and implemented will provide the additional information required to detect impending age related failure and initiate corrective action.

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AW/1116B/32 North Anna 2 September 3, 1981

3.7.2.1.4 Review of periodic operational test and calibration records to spot any clues for developing age related failure mechanism.

3.7.2.2 'ateaory B Category B includes the equipment for which the cualification has been based on LOCA/HELB tests that are coupled with enoin-eering analyses to address aging. The engineering analyses might include (1) a material evaluation to identify weak links and (2) a comparison of test data on generic materials, or an extrapolation of conservatisms contained in the LOCA/HELB test-ing. In these cases, the establishment of an estimated quali-fied life or replacement schedule has been based on engineering analyses. For this equipment, Ongoing Aging evaluation will consist of:

3.7.2.2.1 The performance of routine preventive maintenance in accordance

' with established procedures based on manufacturers' recommenda-tions and plant operating experience.

3.7.2.2.2 Parts replacements on which the expected qualified life is con-tingent. Based on the revi w of the qualification tests and the results thereof VEPC0 has identified the parts replace-ments, such as gaskets and lubricants, that are required. The existing preventive maintenance programs for each equipment will be revised to include these.

3.7.2.2.3 The evaluation of equipment failures to identify any trends

] that indicate a potential for common mode failure so corrective actions can be initiated. The failure evaluation program will specifically address the following.

(a) Repetitive nature (1) Is the same type failure occurring on the same equip-ment and at some definite intervals?

(2) Is the same type failure occurring at a definite in-tem al on similar eauipment?

(b) Timing of the failures with respect to any environmental condition changes (c) Other causes indicative of equipment in-service aging degradation.

Vepco currently has an administrative procedure that addresses this requirement. This procedure when fully developed and implemented will provide the additional information required to detect impending age related failure and initiate corrective action.

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AW/lll6B/33 North Anne 2 September 3, 1981

3.7.2.2.4 Review of periodic operational test and calibration records to spot any clues for developing age related failure mechanism.

3.7.2.2.5 An equipment monitoring program to augment engineering analyses for aging.

An example of this monitoring program could be the periodic review of motor-winding temperatures, starting current or run-ning currents to identify any trends that indicate performance degradation. The results of this review would form the basis for initiating corrective action.

3.7.2.3 Category C Category C includes the few pieces of ecuipment for which aualification has been demonstratec by analysis only. This equipment is exposed to a limited number of harsh environment parameters, which are substantially lower than they would be for Category A or B. An example would be the equipment in the pump rooms, where the caly harsh parameter is the radiation that results from recirculating fluid lines or a transient temperature spike from a HELB accident.

3.7.2.3.1 For this equipment, ongoing aging evaluation will include:

The performance of routine preventive maintenance in accordance with established procedures based on manufacturers' recommenda-(]~ tions and plant operating experience.

3.7.2.3.2 Parts replacements on which the expectt.d qualified life is con-tingent. Based on the review of the qualification tests end the results thereof Vepco has identified the parts replace-ments, such as gaskets and lubricants, that are recuired. The existing preventive maintenance programs for each equipment will be revised to include these.

3.7.2.3.3 The evaluation of equipment failures to identify any trends that indicate a potential for common mode failure so corrective actions can be initiated. The failure evaluation program will specifically address the following.

(a) Repetitive nature (1) Is the same type failure occurring on the same equip-ment and at some definite intervals?

(2) Is the same type failure occurring at a definite in-terval on similar equipment?

(b) Timing of the failures with respect to any environmental condition changes (c) Other causes indicative of equipment in-service aging O degradation.

AW/Ill68/34 North Anna 2 Septemt'er 3,1981

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Vepco currently has an administrative procedure that addresses this requirement. This procedure when fully developed and g implemented will provide the additional information required to

) detect impending age related failure and initiate corrective action.

3.7.2.3.4 Review of periodic operational test and calibration records to spot any clues for developing age related failure mechanirn.

3.7.2.3.5 A specific maintenance test program designed to augment the engineering analysis for the specific area of concerns (e.g.,

replacement of gaskets, 0-rings, etc.).

3.7.3 Conclusion The program outlined above reflects a practical approach to aging evaluation, consistent with the requirements of the D0R Guidelines and the requirements as outlined in the Safety Evaluation Report. Vepco believes that the implerentation of this program will provide an extra measure of conf idence in 4

safety-related equipment capabilities on a contiauing basis.

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AW/1116B/35 North Anna 2 September 3, 1981

NRC Request O 3.8 aedietion (Ins 4de end Oetside Conteinment)

Th3 licensee has provided values for the radiation levels postulated to exist following a LOCA. The application and methodology employed to determine these values were presented to the licensee as part of the NRC staff criteria contained in the D0R guidelines, in NUREG-0588, and in the guidance provided in IEB-79-010, Supplement 2. Therefore, for this review, the staff has assumed that, unless otherwise noted, the values provided have been determined in accordance with the prescribed criteria. The staff review determined that the values to which equipment was qualified enveloped the requirements identified by the licensee.

The values required by the licensee inside containment ranged from 6.77 x 106 rads to 1.8 x 107 rads. These values do not envelope the minimum requirements of NUREG-0588. The licensee is therefore requested to either provide justification for using lower service conditions or use the minimum requirements of NUREG-0588. If the former is chosen, then the analyses, including the basis and assumptions used and a sample calculation, should be submitted.

A required value of 3.6 x 106 rads has been used by the licensee to specify limiting radiation levels for safety injection equipment witnin the auxiliary building. This value appears to consider the radiation levels influenced by the source term methodology associated with post-LOCA recirculation fluid lines and is therefore acceptable."

Vepco Response Radiation Dose Service Conditions

l. Inside Reactor Containment Buildina The integrated LOCA dose values used for equipment within the containment vary as a function of elevation and location of the equipment, e.g., inside the crane wall or outside the crane wall. As a result, no single dose value is used for all equipment inside the containment. Table 2, below, shows the calculated integrated LOCA dose values as a function of elevation and location.

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O AW/lll68/36 North Anna 2 l

l September 3, 1981

TABLE 2

/~ Calculated Post-LOCA (120 Days) Plus 40-Year

\~T / Inteorated Dose Values (Rads)

El . 216 '-11" El. 241'-0" El. 262'-10" El. 291'-10" Inside 1.8 X 107 4.8 X 107 4.8 X 107 4.8 X 107 Crane Wall (RC-216A)a (RC-241A) (RC-262A) (RC-291A)

Outside 7.5 X 106 6.8 X 106 6.8 X 106 6.8 X 106 Crane Wall (RC-216B) (RC-241B) (RC-2628) (RC-2918)

, Note: a. Refer to Environmental Zone Description Table RC-216A, etc.

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2. Outside Reactor Containment Buildino i

l The integrated LOCA dose values useu for equipment within te Auxiliary Building vary greatly as a function of elevation :nd location of the component being qualified. These specific locations are described in the Environmental Zone Description fS Tables AB-244A to AB-2918. In addition, specific point

(,,/ calculation doses for certain equipment items in the' Auxiliary Building are given on the respective Environmental Zone Description Tables.

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l AW/lll6B/37 North Anna 2 September 3, 1981

NRC Request

( "4 tjuALIFICATION OF EQUIPMENT The following subsections present the staff's assessment, based on the licensee's submittal, of tha qualification status of safety-related electrical equipment.

The staff has separated the safety-related equipment into three categories: (1) equipment requiring immediate corrective action, (2) equipment requiring additional qualificd' cion information 2nd/or corrective action, and (3) equipment considered acceptable if the staff's concern identified in Section 3.7 is satisfactorily re-solved.

In its assessment of the licensee's submittal, the NRC staff did not review the methodology employed to determine the values estab-lished by the licensee. However, in reviewing the data sheets, the staff made a determination as to the stated conditions pre-sented by the licensee. Additionally, the staff has not completed its review of supporting documentation referenced by the licensee (f or example, test reports). It is expected that when the review of test reports is complete, the environmental qualification data bank established by the staff will provide the means to cross reference each supporting document to the referencing licensee.

If supporti0g documents are found to be unacceptable, the licensee will be required to take additional corrective actions to either i

O estab ish qualification or replace the item (s).of concern. This effort will begin in early 1981.

An appendix for each subsection of this report provides a list of equipment for which additional information and/or corrective action is required. Where appropriate, a reference is provided in i

the appendices to identify deficiencies. It should be mted, as in the Commission Memorandum and Order, that the deficiencies ide1tified do not necessarily mean that equipment is unoualified.

However, they are cause for concern and may require further case-by-case evaluation."

i Vepco Response No comment AW/lll6B/38 North Ar.na 2 September 3, 1981

NRC Reauest

() "4 .1 Eauipment Recuiring Immediate Corrective Action Appendix A identifies equipment (if any) in this category. The licensee wa. asked to review the facility's safety-related electrical equi;' ment. The licensee's review of this equipment has l not identified any equipment requiring immediate corrective

action; therefore, no licensee event reports (LERs) were submitted. In addition, in this review, the staff has not identified any safety-related electrical equipment which is not able to perform its intended safety function during the time in which it must operate."

Vepco Response No comment i

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AW/lll68/39 . North Anna 2 September-3, 1981 1

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NRC Reauest "4 . 2 Equipment Reauiring Additional Information and/or Corrective Action Appendix B identifies equipment in this category, including a tabulation of deficiencies. The deficiencies are noted by a letter relating to the legend (identified below), indic+cing that the information provided is not sufficient for the qualification parameter or condition.

Legend R - radiation T - temperature OT - qualification time RT - required time P - pressure H - humidity CS - chemical spray A - material-aging evaluation; replacement schedule; ongoing equipment surveillance S - submergence M - margin I - HELB evaluation outside containment not completed OM - qualification method RPN - equipment relocation or replacement; adequate schedule not provided O' Ex" - exemptee eovinment sustificet4ee inedeoeete SEN - separate-effects qualification justification inadequate 01 - qualification information being developed RPS - equipment relocation or replacement schedule provided As noted in Section 4, these deficiencies do not necessarily mean that the equipment is unqualified. However, the deficiencies are cause for concern and require further case-by-case evaluation.

The staff has determined that an acceptable basis to exempt equip-ment from qualification, in whole or part, can be established pro-vided the following can be established and verified by the licen-see:

(1) Equipment does not perform essential safety functions in the harsh environment, and equipment failure in the harsh envir-onment will not impact safety-related functions or mislead an operator.

(2a) Equipment performs its function before it; exposure to the harsh environment, and the adequacy for the time margin pro-vided is adequately justified, and (2b) Subsequent failure of the equipment as a result of the harsh environment does not degrade other safety functions or mis-lead the operator.

O AW/lll6B/40 North Anna 2 September 3,1981

(3) The safety-related function can be accomplished by some other designated equipment that has been adequately qualified and satisfies the single-failure criterion.

(4) Equipment will not be subjected to a harsh environment as a result of the postulated accident.

The licensee is, therefore, required to supplement the information presented by providing resolutions to the deficiencies identified; these resolutions should include a description of the corrective action, schedules for its completion (as applicable), and so fcrth.

The staff will review the licensee's response, when it is sub-mitted, and discuss the resolution in a supplemental report.

It should be noted that in cases where testing is being conducted, a condition may arise which results in a determination by the licensee that the equipment does not satisfy the qualification test requirements. For that equipment, the licensee will be required to provide the prooosed corrective action, on a tirrely basis, to ensure that qualification can be established by June 30, 1982."

Vepco Response The equipment listed in Appendix B has been re-evaluated with regard to tne deficiencies identified for each component. In most cases re-evaluation of the available qualification documentation s provided assurance that the equipment is qualified for the para-meters listed as deficiencies. The Component Evaluation Sheets (CES) have been update:: with the required additional information.

The summary information presented on the CES in Revision 4 of the NUREG-0588 90 Day Review (provided with this SER response) should provide.enough information to resolve the deficiencies of Appendix B for equipment that has been detennined through our review to be qualified.

The present "atus of each component listed in Appendix B is indi-cated in the m olution column of Table 3. Each component has been placed into one of the following four categories:

(1) COMPONENTS DELETED FROM THE MASTER LIST (2) COMP 0NENTS RE0VIRING REPLACEMENT OR MODIFICATION (3) COMPONENTS DETERMINED TO BE QUALIFIED (4) COMPONENTS DETERMINED TO BE QUALIFIED EXCEPT FOR AGING The criteria used to resolve the deficiencies and categorize the equipment listed in Appendix B are presented below:

AW/Ill68/41 North Anna 2 September 3, 1981

(1) COMPONENTS DELETED FROM THE MASTER LIST

/) Components which have been deleted from the master list are

\/ listed in the conclusion of the NUREG-058o 90 Day Review Revision 4 (Section 12.5). Justification for deleting this equipment is provided there.

(2) COMP 0f!ENTS RE0VIRING REPLACEMENT OR MODIFICATION Components which are being replaced with qualified equipment or are being modified to upgrade their qualification status are listtd in the conclusion of the NUREG-0588 90 Day Review Revision 4 (Sections 12.1 and 12.2.) Justification for con- tinued operation ar.d the schedules for proposed corrective action are provided in these sections.

(3) COMPONENTS DETERMINED TO BE OUALIFIED Further review of the available oualification documentation has provided sufficient justification to substantiate quali-fication. Summary ir. formation is provided on the CES to re-solve the deficiencies for each component. The criteria used for re-evaluation of each parameter are as follows:

R - Radiation The qualification references were reviewed to ensure that the proper service radiation level was indicated on the CES. The sj radiation level in tbc test report was checked to see that it encompassed the specification level. The test method was reviewed for adequacy. Any deficiencies with regard to this parameter were identified on the CES along with the proposed resolution.

In each equipment review effects of Beta dose were addressed to assure that either total radiation test dose includes the gamma eauivalent of the same, or that the shielding effects inherent in the construction of the equipment (i.e., jacket thickness, casings thickness) were sufficient to reduce the total Beta dose to the sensitive internals are less than 10%

af ter total required gamma dose.

T - Temperature The aualification references were reviewed to ensure that the proper service temperature was indicated on the CES. The temperature level in the test report was checked to see that it encompassed the specification level. The test method was reviewed for adequacy. Any deficiencies with regard to this parameter were identified on the CES along with the proposed resolution.

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North Anna 2 AW/lll6B/42 September 3, 1981

QT - Qualification Time

("')

v The qualification references were reviewed to ensure that the correct qualification time was indicated on the CES. The qualification time was checked to see that it encompassed the required time. The test method was reviewed for adeouacy.

RT - Required Time The operating time (s) indicated on the CES are based on two references. The 120-day operating time is based on Westing-house letter #NS-SS-79287 (Reference 3) dated November 28, 1979 which provided the operating times for eouipment sup-plied by Westin;; house. The 60 second operating time for con-tainment isolation valvet is based on Section 6.2.4.2 of the North Anna FSAR (Reference 4).

P - Pressure The qualification references were reviewed to ensure that the proper service pressure level was indicated on the CES. The pressure in the test report was checked to see that it encom-passed the specification level. The test method was reviewed for adequacy. Any deficiencies with regard to this parameter were identified on the CES along with the proposed resolution.

H - Humidity O

V The qualification references were reviewed to ensure that the proper service humidity was indicated on the CES. The per-cent humidity in the test report was checked to see that it encompassed the specification level. The test method was reviewed for adequacy. Any deficiencies with repard to this parameter were identified on the CES along with the proposed resolution.

CS - Chemical Spray The qualification references were reviewed to ensure that the proper chemical spray concentration was indicated on the CES.

The chemical spray values in the test report were checked to see that they encompassed the specification level. The test method was reviewed for adeouacy. Any deficiencies with regard to this paremeter were identified on the CES along with the proposed resolution.

Chemical spray effects were addressed in the review and evaluation of the qualification of each equipment by estab-lishing an overall envelope of parametric (i.e., concentra-tion, rate of spray flow, duration, and other environmental conditions occurring simultaneously) conditions. During the review effects of any deviation in the tests of these condi-O AW/lll6B/43 North Anna 2 September 3, 1981

tions from those required were addressed. Any resulting de-ficiencies and the resolutions thereof are indicated on the O compoaeat evai"etioa orksheets-A - Aging The test documentation was reviewed with regard to agina. If there was sufficient qualification data to substantiate a aualified life for the equipment, the equivalent preaged life was indicated on the CES.

S - Submergence The six (6) items identified by the NRC to have a deficiency with regard to submergence will be relocated. This disposition is included on the worksheets.

M - Margin Each of the parameters for which margin is a concern were reviewed to ensure sufficient margin sas included for the test parameter.

I - HELB EVALUATION outside containment not complete No items in Appendix B were determined by the NRC to be de-ficient from the standpoint of HELB mitigation.

QM - Qualification Method The qualification method used has been evaluated against each of the critical parameters (operating time, temperature, pressure, relative humidity, chemical spray, radiation and aging) to determine the adequacy of the cualification inform-ation provided. The qualification method is indicated on the CES.

RPN - Replacement schedule not provided Replacement schedules for equipment being replaced or modi-fied can be found in the conclusion of the NUREG-0588 90 Day Review, Revision 4 EXN - Exempted equipment justification inadeauate See Category 1 SEN - Separate - effects qualification inadequate No components in Appendix B were determined by the NRC to have this deficiency.

('"

O AW/lll6B/44 North Anna 2 September 3,1981

01 - Oualification information being developed During the continuing re-evaluai:]n process qualification information (identified in the 90 day submittal as "being developed") has been assembled and reviewed. Disposition thereof is reflected in Appendix B, CES, and the conclusion section.

RPS - Equipment relocation or replacement schedule provided The equipment relocation or replacement schedule is provided in the conclusion of the NUREG-0588 90 Day Review, Revision 4 (4) EOUIPMENT WHICH HAS BEEN DETERMINED TO BE OVALIFIED EXCEPT FOR AGING This equipment was reviewed using the same criteria as listed in Category 3. There was insufficient test documentation to predict a qualified life for components in this category.

Therefore, we will develop an aging evaluation program by <

June 1982 for these components. For the details of this pro-gram see Section 3.7 above.

Additional supporting data for the conclusion reached on the cualifi-cation of all components on the master list are available in the ecuip-ment qualification central file. It is our understanding that the NRC has not reauested or required all test documentation or details of the O test documentation review process be supplied to the NRC at this time.

i i

O AW/lll68/45 North Anna 2 September 3, 1981

O TABLE 3 NORTH ANNA POWER STATION UNIT 2 SAFETY EVALUATION REPORT (SER)

APPENDIX B O

O AW/lll6B/46 North Anna 2 September 3, 1981

North Anna Unit 2 Safety Evaluation Report (SER)

APPENDIX B Equipnent Requiring Additional Infornation and/or Corrective Action (Category 4.2) 1 1

DEFICIENCY LECEf;D R -- Radiation T -- Tenperature QT -- Qualification fine RT -- Required tine P -- Pressure 11 -- llunidity CS -- Chenical spray A -- Material aging evaluation, replacenent schedule, ongoing equipnent surveillance S -- Subnergence M -- Margin

() I -- IIELB cvaluat ion outside containnent not conpleted QM -- Qualification method RPN -- Equipment relocation or replacenent, adequate schedule not provided EXN -- Exenpted equipnent justification inadequate SEN -- Separate effects qualification. justification inadequate QI -- Qualification infornation being developed RPS --

Equipment relocation or replacement schedule provided SOLUTION LEGEND

  • I - COMPONENTS DELETED FPOM TIIE MASTER LIST 2 -- COMPONENTS REQUIRING REPLACEMENT, RELOCATION, OR MODIFICATION 3 - COMPONENTS DETEININED TO BE QUALIFIED 4 -- COMPONENTS DETERMINED TO BE QUALIFIED EXCEPT FOR AGING
  • Refer to Systen Conponent Evaluation Worksheet for Resolution of Dericiencies.

O Q B-I

- . ~1

APPENDIX B (continued)

Equipnent Description Manufacturer Component No. Defielency Sol.

O Level Transnitter Del. val LT-RS-251A A,QI 2 Level Transnitter DeLaval LT-RS-251B A,QI 2 Flow Transnitter Rosenount FT-2474 A,CS,R,QI 2 Flow Transnitter Rosenount FT-2475 A.CS,R,QI 2 Flow Transnitter Ros.-no u n t FT-2484 A.CS,R,QI 2 Flow Transnitter Rosenount FT-2485 A,CS,R,QI 2 Flow Transnitter Rosenount FT-2404 A CS.R,QI 2 i

Flo Transnitter Rosenount FT-2405 A,CS,R,QI 2 Level Transnitter Rosenount LT-2475 A,CS,R,QI 2 Leve1 Transnitier Rosenount LT-2484 A,CS,R,QI 2 Level Transnitter Rosenount LT-2455 A,CS,R,QI 2 Level Transnitter Rosenount LT-2400 A,CS,R,QI 2 Level Transnitter Rosenount LT-2474 A,CS,R,QI 2 Level Transnitter Rosenount LT-247G A,CS,R,QI 2 Level Transnitter Rosenovnt LT-248G A CS,R,QI 2 Level Transnitter Rosenount LT-2404 A,CS,R,QI 2

! Level Transnitter Rosenount LT-2405 A,CS,R,QI 2 i

~

Leve1 Transnitter Barton LT-2450 QT,A,QI 2 Level Transnitter Barton LT-2400 QT,A,QI 2 Level Transnitter Barton LT-24G1 QT A,QI 2 Pressure Transnitter Barton PT-2455 QT,II, A ,QI 2 Pressure Transnitter Barton PT-245G QT,II, A ,QI 2 Pressure Transnitter Barton PT-2457 QT,II, Q, QI 2 Solenoid Valves ASCO SOV-2200A-1 A,S,RPN 2 Solenoid Valves ASCO SOV-2200B-1 A,S,RPN 2 B-2

APPENDIX R (continued)

Equipnent Description Manufacturer Conponent No. Deficiency Sol.

()

O Solenoid Valves ASCO SOV-2200C-1 A.S.RPS 2 Solenoid Valves ASCO SOV-2200A-2 A,S.RPN 2 Solenoid Valves ASCO SOV-2200h-2 A.S.RPN 2 Solenoid Valves ASCO SOV-2200C-2 A,S,RPN 2 Level Transmitter' DeLaval LIT-RS-251A R,A,RPN 1 Level Transnitter DeLaval LIT-RS-251P, R,A,RPN 1 Thernostat lioney cIl TS-IIV-2230 R,4 1 Pressure Transnitter2 Foxboro PT-2474 A,QI,R 2 Pressure Transnitter2 Foxboro PT-2475 A,QI,R 2 Pressure Transnitter2 Foxboro PT-2470 A,QI,R 2 Pressure Transnitter2 Foxboro PT-2484 A,QI,R 2 Pressure Transnitteer Foxboro PT-2485 A,QI,R 2 Pressure Transmitter 2 Foxboro PT-248G A,QI,R 2 d("N Pressure Transnitter2 Foxboro PT-2404 A,QI,R 2 Pressure Transnitter2 Foxboro PT-2405 A,QI.R 2 Pressure Transnitter2 Foxboro PT-240G A,QI,R 2 Punp Motor Cencral 2-RS-P-2A R,A 3 Electric Punp Motor General 2-RS-P-2B R,A 3 Electric Exhaust Fans Westinghouse 1 -11V- F-S A R,A 1 Exhaust Fans Restinghouse 1-IIV-F-8B R,A 1 Exhaust Fans Westinghouse 1-IIV-F-SC R,A 1

1. Iten audited by N!!R starr.
2. See Attachnent: Foxboro letter (3/12/81) " Potential Deficiency Affecting Foxboro Transnitters," for corrective action.

B-3 n RI n_

1 APPENDIX B (continued) 1 Equipment Description Manufacturer Conponent No. Deficiency Sol.

O Valve Operator Linitorque MOV-QS-200A P,A 3 Valve Operator Linitorque MOV-QS 200B R,A 3 Switchgear/ Could-Brown 2EE-ST-01 R,A 1 Transforner Bover:

Switchgear/ Gould-Brown 2EE-ST-02 R,A 4 Transforner Boveri Switchgear/ Could-Erown 2EE-SS-03 R,A 1 Transforner Boveri Switchgear/ Could-Brown 2EE-SS-04 R,A 4 Transforner Boveri Punp Motors' Westinghouse 2-SI-P-1A R.T,A 3 Punp Motors Westinghouse 2-SI-P-1B R,T,A 3 Punp Motors Westinghouse 2-Cll-P-1A R,T,A 3 Punp Motors Westinghouse 2-011-P- 1 B R,T,A 3 Punp Motors Westloghouse 2-Cll-P-1C R,T,A 3

[)

Fans Burralo Forge 2-11V-F- 4 0 A R T.A 1 Fans Burralo Forge 2-IIV-F-40B R,T,A 1 Tenperature Monitors Rosenount TE-AM-215 R,T,A 1 Tenperature Monitors Rosenount TE-AM-216 R,T,A 1 Tenperature Monitors Rosenount TE-AM-217A R,T.A 1 Tenperature Monitors Rosenount TE-AM-217B R,T,A 1 Temperature Monitors Rosenount TE-AM-217C R,T,A 1 Tenperature Monitors Rosenount TE-AM-217D R,T,A 1 Temperature Monitors Rosenount TE-AM-100A R T.RT,QT, 4

!!, A ,QM Temperature Monitors Rosenount TE-AM-100B R,T,RT,QT, 4

1. Iten audited by NRR starr.

B-1 n rtn m

APPENDIX B (continued)

Equipnent Description Manufacturer Conponent No. Deficiency Sol.

II, A , QM Tenperature Monitors Rosenount TE-AM-101A R,T.RT,QT, 4 n,A,QM Tenperature Monitors Rosenount TE-AM-101B R.T,RT,QT, 4 II, A ,QM Tenperature Monitors Rosenount TE-AM-102A R,T,RT,QT, 4 11, A , QM Temperatur. Monitors Rosenount TE-AM-102B R,T,RT,QT, 4 II, A , QM Tenperature Monitors Rosenount TE-AM-103A R,T,RT,QT, 4 II . A , QNT Temperature Monitors Rosenount TE-AM-1038 R,T,RT,QT, 4 II, A ,QM Tenperature Monitors Rosenount TE-AM-104A R,T,RT,QT. 4 II, A ,QM Tenperatuce Monitors Rosenount TE-AM-104B R,T,RT,QT, 4 II,A,QM Tenperature Monitors Rosenount TE-AM-105A R , T, RT, QT, II, 4 A , Q\!

Tenperature Monitors Rosenount TE-AM-105B R , T, RT, QT ,II, 4 l

A,QM Temperature Monitors Rosenount TE-AM-10GA R , T , RT, QT , II, 4 A,qM Tenperature Monitors Rosenount TE-AM-10GB R , T, RT, QT, II, 4 A,QM Tenperature Monitors Rosenount TE-AM-107A R , T, RT, QT ,11, 4 A,QM Temperature Monitors Rosenount TE-AM-107B R T.RT,QT,II, 4 A,QM Temperature Monitorr: Rosenount TE-AM-10SA R , T, RT, QT , II, 4 A,QM Tenperature Monitors Rosenount TE-AM-108B R , T, RT , QT,11, 4 A,QM O B-s V

a e ~

APPENDIX B (continued)

Equipment Description Manufacturer Conponent No. Deficiency Sol.

Flow Transnitter Barton FT-2040 R,T,A 1 Flow Transnitter Barton FT-2013 R,T,A 1 Power Cable Okonite NCA-20 QT,11, CS , A , QN! 3 Power Cable Okonite NGA-21 QT,11, CS, A , QS! 3 Pomer Cable Okonite NGB-15 QT, ll, CS , A , Q'4 3 Power Cable Okonite NGB-1G QT,II,CS, A , Q'4 3 Power Cable Okonite NGB-17 QT, II, CS , A , Q'd 3 Power Cable Okonite NGD-18 QT,ll,CS, A,QN! 3 Power Cable Okonite NGB-10 QT,II, C' . A , Q'd 3 Cable' Cerro Co. NCA-15 QT,T,li, A 3 Control Cabic Cerro Co. NCA-10 QT T.II,A 3 Control Cable Cerro Co. NGA-34 QT,T,II, A 3 Control Cable Cerro Co. NGA-35 QT,T II,A 3 Control Cabic Cerro Co. NGA-3G QT,T,II, A 3

, Control Cable Cerro Co. NCA-37 QT,T,II, A 3 Control Cabic Cerro Co. NGA-38 QT, T ,11, A 3 Control Cable Cerro Co. NCA-30 QT,T,lI, A 3 Control Cable Cerro Co. NCA-40 QT,T,II, A 3 Control Cable Cerro Co. NGA-44 QT, T,II, A 3 Control Cable Cerro Co. NGA-45 QT T,11, A 3 Control Cable Cerro Co. NGA-47 QT,T,II,A 3 Control Cable Cerro Co. NGA-40 QT,T,11,A 3 Control Cable Cerro Co. NGA-57 QT,T,II, A 3

1. Iten audited by NRR staff.

! B-G l n as e

APPENDIX B (continued)

Equipnent Description Manufacturer Conponert No. Deficiency Sol.

O O Control Cable Cerro Co. NGA-77 QT,T,11 A 3 Instrunent Cable Boston Insu- NCA-07 QT,A 4 lated Wire Instrunent Cable Boston Insu- NGA-08 QT,A 4 latcJ Wire Instrunent Cable Boston Insu- NGA-CD QT.A 4 lated Wire Instrunent Cable Boston Insu- NGA-70 QT,A 4 lated Wire Instrunent Cable Boston Insu- NGB-35 QT,A 4 lated Wire Instrunent Cable Boston Ir.s u - NGA-30 QT.A 4

!ated Wire Instrunent Cable Boston Insu- NCA-40 QT,A 4 lated Wire Instrunent Cable Boston Insu- NGA-55 QT,A 4

() lated Wire Power Cable' General Cable NGA-3 QT,11, A 4 Power Cable General Cable NCA-4 QT,II, A 4 Power Cable General Cable NGA-5 QT,II, A 4 Power Cable General Cable NCA-G QT.II,A 4 Power Cable General Cable NGA-D QT,1!,A 4 Power Cable Genera Cable NGA-10 QT,ll, A .4 Power Cable General Cable NGA-12 QT,11, A 4 Power Cable General Cable NGA-13 QT,II, A 4 Power Cable Okonite NGA-3 QT,A 3 Power Cable Okonite NGA-4 QT,A 3

1. Iten audited by NRR staff.

R h B-7

u. u_____

APPENDIX B (continued)

Equipnent Description Manufacturer Conponent No. Dericiency Sol.

O Power Cable Okonite NGA-13 QT,A 3 Power Cable Okonite NGA-14 QT,A 3 Power CabIe 0honite NGil-5 QT,A 3 Power Cable Okonite NGB-7 QT.A 3 Power Cable Okonite NGB-11 QT,A 3 Power Cable Okonite NGB-12 QT,A 3 Instrunent Cable Cerro NGA-G7 QT,A 3 Instrunent Cable Cerro NGA-GS QT,A 3 Instrunent Cable Cerro NGA-70 QT.A 3 Instrunent Cable Cerro NGB-35 QT.A 3 Instrument Cable Cerro NGB-39 QT.A 3 Power Cable' General Cable NCB-5 QT II, A 4 Power Cable General Cable NGB-7 QT,II, A 4 Power Cable General Cable NGB-11 QT,ll,A 4 Power Cable General Cable NGB-12 QT,II, A 4 Solenoid Valve' ASCO SOV-BG-200A R,A 4 Power Cable Okonite NGB-01 QT,A 3

~

! Terninal Block' Connectron, None QT,A 3 Inc.

l Penetration Assenblies' Conax None RT,QT,A 3 Penetration Assenblies Conan None RT,QT,A 3 Spllees Conax, Kapton None RT,QT,A 1 Spilees Conax, Kapton None RT,QT,A 1

1. Iten audited by NRR staff.

B-8 m . _

APPENDIX B (continued)

Equipnent Description Manufacturer Component No. Deficiency Sol.

O Punp Motors General 2-RS-P-1A QT,CS,A 3 Electric Punp Motors General 2-RS-P-1B QT,CS,A 3 Electric Terninal Blocks Marathon None QT,A 4 Terninal Blocks Connection None QT,A 4 Terninal Blocks Therno- None QT,A 4 Electric Terninal Blocks General None QT,A 4 Electric Terninal Blocks Westinghouse None QT,A 4 Ternination Tape Okonite None QT,R,A 3 Splicing Material Raychen None QT,A 3 Solenoid Valve ASCO SOV-SS-2008 R,A 3

(} Solenoid Valve ASCO SOV-SS-212B R,A R,A 3

Solenoid Valve ASCO SOV-SS-201B 3 Solenoid Valve ASCO SOV-SS-203A R,A 2 Solenoid Valve ASCO S0V-SS-203B R,A 2 Solenoid Valve ASCO S0V-SS-204B R,A 3 Ternination Connectors Raychen None QT,A 3 Ilydrogen Reconbiner Rockwell Inti. 1 -IIC-l!C- 1 QT,A,QM 2 Ilydrogen Recombiner Rockwell Intl. 2-IIC-I!C- 1 QT,A.QM 2 Pressure Transnitter2 Foxboro PT-LM-200A QT,A 4 Pressure Transnitter Foxboro PT-LM-200B QT,A 4 Pressure Transnitter Foxboro PT-LM-200C QT,A 4 B-D

~ - .__

APPENDIX B (continusd)

Ergu ipnent Description Manufacturer Component No. Deficiency Sol.

Pressure Transmitter 2 Foxboro PT-Df-200D QT,A 4 Solenoid Valve ASCO S0V-CC-202B CS,A,QM 4 Solenoid Valve ASCO 50V-CC-202D CS,A,QM 4 Solenoid Valve ASCO S0V-CC-202F CS,A,QM 4 Solenoid Valve ASCO S0V-IA-201A CS,A,QM 2 Solenoid Valve ASCO SOV-VG-200B QT,l'T, CS, A , QM 4 Solenold Velve ASCO SGV-RM-200C QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-SS-200A QT,RT,CS,A,QM 4 Solenoid Valve ASCO S0V-SS-201A QT.RT,CS,A,QM 4 Solenoid Valve ASCO S0V-SS-204A QT,PT.CS,A,QM 4 Solenoid Valve ASCO SOV-SS-212A QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-CC-201B QT,RT,CS.A,QM 4 O Solenoid Valve ASCO S0V-CC-205A QT,RT,CS,A,QM 4 SoIenoId VaIve ASCO SOV-CC-205B QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-CC-205C QT,RT,CS,A,QM 4 Solenoid Valve ASCO S0V-DA-200B QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-DG-200B QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-BD-200B QT,RT,CS A,QM 4 Solenoid Valve ASCO SOV-BD-200D QT,PT CS,A,QM 4 Solcaoid Vaive ASCO SOV-BD-200F QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-BD-200G QT RT,CS,A,QM 4 Solenoid Valve ASCO S0V-BD-200l! QT,RT,CS,A,QM 4 Solenoid Valve ASCO S0V-BD-200J QT,RT,CS,A,QM 2 l

2. See Attachment 1: Foxboro letter (3/12/81) "Potenti:.1 Deficiency Affecting Foxboro Transmitters," for corrective action.

B-10 l

i n cut .

APPENDIX B (continued)

Equipment Description Manufacte cr Conponerc No. Deficiency Sol.

O

\s>

Solenoid Valve ASCO SOV-SW-201A1 QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-ST-201A2 QT,RT,CS,A,QM 4 Solenoid Valve ASCO SOV-SW-201B1 QT.RT,CS,A jf 4 Solenoid Valve ASCO S0V-SW-201B2 QT,RT,CS,A,QM 4 Fan Motors Joy Manufac- 2-IIV-F-71 A R,A,RPS 2 turing Co.

Fan Motors Joy Manufac- 2-IIV-F-71B R,A,RPS 2 turing Co.

Solenoid Valve' JSCO SOV-BD-200A R A.RPS 2 Solenoid Valve ASCO SOV-BD-200C R.A.RPS 2 Solenoid Valve ASCO S0V-BD-200E R,A,RPS 2 Solenoid Valve ASCO S0V-CC-2001 R,A,RPS 2 Solenoid Valve ASCO SOV-CC-200B R,A,RPS 2

(} Solenoid Valve ASCO S0V-CC-200C S0V-CC-201A R.A,RPS R,A,RPS 2

2 Solenoid Valve ASCO Solenoid Valve ASCO S0V-CC-202A R,A,RPS 2 Solenoid Valve ASCO SOV-CC-202C R,A,RPS 2 Solenoid Valve ASCO S0V-CC-202E R,A,RPS 2 7

l ASCO SOV-CC-203A R,A,RPS 2 Solenoid Valve l

Solenoid Valve ASCO SOV-CC-203B R,A,RPS 2 Solenoid Valve ASCO S0V-CC-204A-1 R,A,RPS 2 Solenoid Valve ASCO S0V-CC-204A-2 R,A,RPS 2 Solenoid Valve ASCO S3V-CC-204E-1 R,A,RPS 2 Solenoid Valve ASCO SOV-CC-204B-2 R.A.RPS 2 l

1. Iter. audi ted by NRR staf f.

B-11 I

n an ~

APPENDIX B (continusd)

Equipacnt g) Description Manufacturer Component No. Deficiency Sol.

U Solenoid Valve ASCO SOV-CC-204C-1 R T.RPS 2 Solenoid Valve ASCO S0V-CC-204C-2 R,A,RPS 2 Solenoid Valve ASCO S0V-IA-202A R,A,RPS 2 Solenoid Valve ASCO S0V-IA-202B R,A.RPS 2 Solenoid Valve ASCO SOV-DA-200A R.A.RPS 2 Solenoid Valve ASCO SOV-RM-200A R,A,RPS 2 Solenoid Valve ASCO S0V-RM-200B R.A.RPS 2 Solenoid Valve ASCO SOV-SI-200A R,A,RPS 2 Solenoid Valve ASCO SOV-SI-200B R,A,RPS 2 Solenoid Valve ASCO SOV-SI-201 R,A,RPS 2 Solenoid Valve ASCO SOV-VG-200A R,A,RPS 2 Solenoid Valve ASCO S0V-RM-200D R.A.RPS 2

_)

I(O Solenoid Valve ASCO SOV-IA-201B R,A,RPS 2 Solenoid Valve ASCO S0V-MS-211A R,A,RPS 2 Solenoid Valve ASCO SOV-MS-211B R.A.RPS 2 Solenoid Valve ASCO SOV-SS-20GB R,A,RPS 2 Solenoid Valve ASCO SOV-SS-202B R,A,RPS 2 l

Solenoid Valve ASCO SOV-LM-200A R,A,RPS 2 Solenoid Valve ASCO SOV-LM-2008 R,A,RPS 2 Solenoid Valve ASCO SOV-LM-200C R.A.RPS 2 Solenoid Valve ASCO S0V-LM-200D R,A,RPS 2 Solenoid Valve ASCO SOV-LM-200E R,A,RPS 2 Solenoid Valve ASCO SOV-LM-200F R,A,RPS 2 Solenoid Valve ASCO SOV-LM-200G R.A.RPS 2 Solenoid Valve ASCO SOV-LM-200l! R.A.RPS 2 B-12 a at .m

APPENDIX B (continued)

Equipnent Description Manufacturer Conponent No. Deficiency Sol.

Solenoid Valve ASCO S0V-2201 R,A,RPS 2 Solenoid Valve ASCO SOV-2510A R.A.RPS 2 Solenoid Valve ASCO SOV-MS-2134-1 R.A.RPS 2

< Soler.oid V ,1ve ASCO S0V-MS-213A-2 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-213h-1 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-213P-2 R,A,RPS 2 Solenoid Valve ASCO S0V-MS-213C-1 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-213C-2 R,A,RPS 2 Solenoid Valve ASCO S0V-MS-209A R,A,RPS 2 Solenoid Valve ASCO S0V-MS-200B R.A,RPS 2 Solenoid Valve ASCO SOV-SV-203 R.A.RPS 2 Solenoid Valve ASCO S0V-SV-202-1 R,A,RPS 2 Solenoid Valve ASCO S0V-SS-207A R.T.RT,QT,P, 2 O-N II, CS , A , RPS Solenoid Valve ASCO SOV-SS-207B R,T,RT,QT,P, 2 II,CS, A.RPS Solenoid Valve ASCO S0V-MS-201A-1 R,A,RPS 2 Scienoid Valve ASCO SOV-MS-201A-2 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-201A-4 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-201A-5 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-201B-1 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-201B-2 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-201B-4 R,A,RPS 2 Solenoid Valve ASCO SOV-hS-201B-5 R,A,RPS 2 Solenoid Valve ASCO SOV-MS-2010-1 R,A,EPS 2 Solenoid Valve ASCO S0V-MS-201C-1 R.A.RPS 2

(~.-) B-13 0 00 o

APPENDIX B (continued)

Equipment Description  %'anufacturer Component No. Dericiency Sol.

O Solenoid Valve ASCO S0V-MS-201C-4 R.A.RPS 2 Solenoid Valve ASCO S0V-MS-20iC-5 R,A,RPS 2 Solenoid Valve ASCO SOV-CV-250A R,A,RPN 2 Solenoid Valve ASCO SOV-CV-250B R.A.RPN 2 Solenoid Valve ASCO S0V-CV-250C R.A RPN 2 Solenoid Valve ASCO SOV-CV-250D R,A,RPN 2 Solenoid Valve ASCO S0V-SS-202A R,T,RI,QT,P, 2 II,CS, A, RPN Solenoid Valve ASCO SOV-SS-20GA R , T, P.I, QT, P , 2 II, CS, A , RPN Solenoid Valve ASCO SOV-LM-201A R,A,RPS 2 Solenoid Valve ASCO S0V-LM-20aB R.A,RPS 2 Solenoid Valve ASCO SOV-LM-201C R,A,RPS 2 Solenoid Valve ASCO S0V-LM-201D R,A,RPS 2

[)

Solenoid Valve ASCO S0V-IIV-215B-1 R,A RPS 2 Solenoid Valve ASCO S0V-IIV-215B-2 R,A,RPS 2 Solenoid Valve ASCO S0V-24G03 R,T,RT,QT,P, 1

!!,CS A.RPS Solenoid Valve ASCO SOV-24 COB R,T,RT,QT,P, 1 II CS, A,RPS Solenoid Yalve ASCO SOV-203G R T.RT,QT,P, 2 ll,CS,A,RPS Solenoid Valve ASCO SOV-23SO R,T RT,QT,P, 1 II,CS, A.RPS Solenoid Valve ASCO SOV-2850 R,T,RT,QT,P. 2 II,CS, A , RPS Solt,old Valve ASCO S0V-2S84A R,A,RPS 2 Solenoid Valve ASCO S0V-2884B R.A,RPS 2

() B-14

_n____ _ ___ 00

APPENDIX h (contir.:sd)

Equipncnt

, Description Manufacturer Conpanent No. Deficiency %I.

Solenoid Valve ASCO SOV-2884C R.A.RPS 2 Pump Motor Marathon 2-SW-P-5 R,A,RPS 2 Electric Pump Motor Marathon 2-SW-P-G R,A,RPS 2 Electric Pump Motor Marathon 2 -SV.'- P - 7 R,A,RPS 2 Electric Pump Motor Marathon 2-SW-P-8 R,A,RPS 2 Electric Ilydrogen Analyzer Bendix  !!2A-IIC-100 R A,RPS 2

!!ydrogen Analyzer Bendix II2A-IIC-200 R,A,RPS 2 Motor Oper. Damper lioneywe l l i10D-IIV-103A R T,QT,RT, 1 P,II, A . RPS Motor Oper. Damper lioneywe 11 MOD-IIV-1G3B R,T,QT,RT, 1 P,II,A,RPS l Motor Oper. Damper lioneywe1I MOD-IIV-1G3C R,T,QT,RT, 1 l

P ,II, A , RPS Valve Operator Linatorque MOV-SW-214A,B R,A,RPN 1 Valve Operator Linitorque MOV-SW-210A R.A,RPN 1 Valve Operator Limitorque MOV-ST-210B R,A,RPN 1 Valvc Operator Linitorque MOV-2080 T,QT,P,CS,A,RPS 3 Valve Operator Linitorque MOV-2350 R.A.RPN 3 VaIvc Operator Linitorque MOV-283G R,A,RPN 3 Valve Operator Linitorque MOV-2115E R,A,RPN 3 Valve Operator Limitorque MOV-2275B R,A,RPN 3 Resistance Tenperature Rosenount TE-2412B A,RPS 2 Detector Resistance Temperature Rosemount TE-2412D A,RPS 2 Detector B-15 s A RI r

APPENDIX B (continued)

Equ ipner.t Description Manufacturer Component No. Deficiency Sol.

O Resistance Tenperature Rosenount TE-2422B A,RPS 2 Detector Resistance Tenperature Rosenount TE-2422D A,RPS 2 Detector Resistance Tenperature Rosenount TE-2432B A,PPS 2 Detector Resistance Tenperature Rosenount TE-2432D A RPS 2 Detector Resistance Tenperature Rosenount TE-2410 A,RPS 2 Detector Resistance Tenperature Rosenount TE-2413 A.RPS 2 Detector Resistance Tenperature Rosenount TE-2420 A,RPS 2 Detuctor Resistance Tenperature Rosenount TE-2423 A,RPS 2 Detector Resistance Tenperature TE-2430 A,RPS 2 O Detector Rosenount Resistance Tenperature Rosenount TE-2433 A.RPS 2 Detector l Flow Transnitter? Foxboro FT-2414 R 1 Flow Transnitter2 Foxboro FT-2415 R 1 Flow Transn'!ter? Foxboro FT-241G R 1 Flo Transnitter2 Foxboro FT-2424 R 1 Flow Transnitter2 Foxboro FT-2425 R 1 Flow Transmitter? Foxboro FT-2420 R 1 Flow Transmitter? Foxboro F1-2434 R 1 Flow Transnitter2 Foxboro FT-2435 R 1 Flow Transnitter? Foxboro FT-243G R 1

() B-1G l

Fl _. [l t -. o.

f APPENDIX B (continued)

Equipnent Description Manufacturer Componen.t No. Defleiency gog, O

t i

t 0

i I

l l

l

2. See Attachnent 1: Foxboro letter (3/12/SI) " Potential Deficiency Afrecting Foxboro Transmitters," for correetIve actlon.

O B-17 n er ,

i NRC Request O 4.3 equipment Considered Accepte8ie er Coeditioneliy Accente8ie Based on the staff review of the licensee's submittal, the staff identified the eauipment in Appendix C as (1) acceptable on the basis that the qualification program adequately enveloped the specific environmental plant parameters, or (2) conditionally acceptable subject to the satisfactory resolution of the staff concere identified in Section 3,7.

For the equipment identified as conditionally acceptable, the staff determined that the licensee did not clearly:

(1) state that an equipmer, material evaluation was conducted to ensure that no known materials susceotible to degradation because of aging have been used; (2) establish an ongoing program to review the plant surveillance and maintenance records in order to identify equipment de-gradation which may be age related; and/or (3) propose a maintenance program and replacement schedule for equipment identified in item 1 or equipment that is qualified for less than the life of the plant.

The licensee is, therefore, recuired to supplement the information p'

v presented for equipment in this category before full acceptance of this equipment can be established. The staff will review the licensee's response when it is submitted and discuss the resolu-tion in a supplemental report."

Vepco Response i

The agina program.for equipment identified in Appendix C is des-cribed in Section 3.7 above.

i l

O AW/lll6B/47 North Anna 2

[ September 3, 1981

i i NRC Recuest-1 i

() "5 - DEFERRED REQUIREMENTS IEB 79-01B, Supplement 3 has relaxed the time constraints fo- the

, submission of the information associated with cold shutdown equip-ment and TMI lessons-learned modifications. The staff has re-

quired that this information be provided by February 1, 1981. The i

staff will provide a supplemental safety evaluation addressing these concerns."

i Vp. co Response No comment I

i l .

i i

i i

l i (:)

i l

l O

r AW/lll68/43 North Anna ~2 .

September 3,1981

NRC Request

{} "6 CONCLUSIONS The strff has determined that the licensee's listing of safety-relat systems and associated electrical equipment whose ability to fu . tion in a harsh environment following an accident is re-quired to mitigate a LOCA or HELB is complete and acceptable, except as noted in Section 3 of this report. The staff has also determined that the environmental service conditions to be met by the electrical eouipment in the harsh accident environment are appropriate, except as noted in Section 3 of this report. Out-sta1 ding information identified in Section 3 should be provided wit.iin 90 days of receipt of this SER.

The staff has reviewed the qualification of safety-related elec-trical equipment to the extent defined by this SER and has found no outstanding items which would require immediate corrective action to ensure the safety of plant operation. However, the staff has determined that many items of safety-related electrical equipment identified by the licensee for this review do not have adequate documentation to ensure that they are capable of with-standing the harsh environmental service conditions. This review was based on a comparison of the qualification values with the specified environmental values required by the design, which were provided in the licensee's summary sheets, n Subsection 4.2 identified deficiencies that must be resolved to V establish the qualification of the equipment; the staff requires that the information lacking in this category be provided within 90 days of receipt of this SER. Within this period, the licensee should either pr " % documentation of-the missing qualification information wh' )nstrates that such equipment meets the 00R guidelines or s-v588 or commit to a corrective action (re-qualification, replacement, relocation, and so forth) consistent with the requirements to establish qualification by June 30, 1982.

If the latter option is chosen, the licensee must provide justifi-cation for operation until such corrective action is complete.

Subsection 4.3 identified acceptance and conditional acceptance based on noted deficiencies. Where additional information is required, the licensee should respond within 90 days of receipt of this SER by providing assurance that these cancerns will be satis-factorily resolved by June 30, 1982.

The staff issued to the licensee Sections 3 and 4 of this report and requested, under the provisions of 10 CFR 50.54(f), that the licensee review the deficiencies enumerated and the ramifications thereof to determine whether safe operation of the facility would be impacted in consideration of the deficiencies. The licensee has completed a preliminary review of the identified deficiencies and has determined that, after due consideration of the deficien-cies and their ramification, continued safe operation would not he

() adversely affected.

AW/lll6B/49 North Anna 2 September 3, 1981

Based on these considerations, the staff concludes that conform-ance with the above requirentents and satisfactory completion of O. the corrective actions by June 30, 1982 will ensure compliance with the Commission Memorandum and Order of May 23, 1980. The staff further concludes that there is reasonable assurance of con-tinued safe operation of this facility Dending completion of these corrective actions. This conclusion ic based on the following:

(1) that there are no outstanding items which would reauire imme-diate corrective action to assure safety of plant operation (2) some of the items found deficient have been or are being replaced or relocated, thus improving the f acility's capabil-ity to function following a LOCA or HELB (3) the harsh environmental conditions fc. which this eruipment must be qualified result from low-probability events; events which might reasonably be anticipate 6 during this very limit-ed period would lead to less dema iding service conditions for this equipment."

Vepco Response Summary information which demonstrates that the eouipment listed on the master list meets the D0R guidelines or NUREG-0588 is pro-vided in Revision 4 of the NUREG-0588 90 Day Review. The corrective actions for those items which cre considered by Veoco O to have insufficient documentation are included in the conclusion of the above report. Also provided in the conclusion is the justification for continued operation until the scheduled corrective action are complete.

1 l

O l

AW/lll6B/50 North Anna 2 September 3, 1981

(.x C

e SAFETY EVAI.UATION RESPONSE NORTil ANNA POWER STATION UNIT 2

References:

1. North Anna FSAR, Section 6.2.2.3.1
2. North Anna FSAR, Appendix C, Section C.S.4.6.3
3. Westinghause letter number NS-SS-79287 dated g ,3 November 28,1979.

(,/

4. North Anna FSAR, Section 6.2.4.2 l

l jx 3 OJ

NIT 6.2 -61 11-3-78 m

of the during the lif ettre of the equipment to detect de:eriora:icn if any, 65 insulation. In addition, the Ip.S pu=p ectors are designed and tested for LCCA conditions.

g,3 6.2.2.2.5 Eeat Exchangers and vessels The recirculatica spray heat exchangers are designed to the ASMI Code seccion IIIC (1963). The pump casings are designec to the ASMI code The chemical addition tank is designed to ASP.I Code section III3 (1963).

sectica VIII (1971); the RW5 is designed to AFI 650. The heat enchangers and vessels are radi= graphically inspected to ensure their structural integrity.

Telded construction is used to preclude leakage.

exchangers on systen perfor:ance is l The effect of fculing of these heat discussed in Section 6.2.2.3.

65 The design data for the Contain=ent Depressurization Syste= components are given in Table 6.2-36.

6.2.2.3 Design Ivaluation 6.2.2.3.1 Centainment Depressuri:ation Systa:

cespletely separats, The Contain=ent Depressurization Systen consists of t four cc=pletely separate 50 percent 100 percent capacity QS Subsystems and .

The use of a separate spray header connected to the capacity RS Subsystems.

In addition, this discharge ci each pe=p results in a fixed fiev rate.

equipment arrangement siso ensures that a failure of a cc:ponen.: in any one ll) subsyste=s.

subsysten does not affect the Operational capability ci the other g >I D -

' g, t . ,,

,[_ g kl

N1T 6.2-62 7-31-79' EI Spray no::les have been selected in various si:es to give the optimum f

(- }

t

\~/

1

binatica of s:all sp:cy particles for maximus heat transfer and larger pa:ticles for better coverage toward the center and sides of the con:ainment.

55 The sc cen assenblies in and around the contain ent sump are arranged so that no single failu:e ceuld result in the clogging of all four suction points to the RS Subs 7 stems. These assemblies strain the fluid being drawn to the recirculation spray pumps to prevent spray no :le plugging. A main scween asse=bly failure vould have to be coupled with the plugging or failure of a sucti n point cylind:ical screen for any one of the suction points to be lost.

Sufficient screen area is provided to ensure that system operation during accident conditiens vill n t be impaired.

The required aeat re:: val capacity of the RS Subsystems continually decreases 67 -

after the first several hours ic11:ving a LOCA; therefore, excessive plugging I- -

\_/ of no :les, which could only be considered ca a long-term basis, would have ne sigr.ificant effect en the capability of the subsystems.

Folleving a LCCA, the va:er scurces for the sumps feeding the retirculation spray punps are the RCS, the R'.?ST, the Refueling Water Chemical Additica Tank, the Casing C:oling Tank, and the three Safety Injection Accumulators. The chloride content of these sources is li=ited to a caximum of 0.15 pp=.

6,2 Credibin teachable chloride aeditien to the sump water has been investigated.

This investigation included such sources as ther=al insulation, ceutron Tro= this investigation it shielding, electrical cables, paint, and cenerett-has been concluded that a negligible =eunt of leachable chlorici vill be in (m 'l 1

1 1

1

I .

N1T 6.2 '-63 11-3-78 V

the su=p water. Each of the possible scurces that have been considered is addressed belev:

1. Ther=al Insulatica Each Seven types cf ther=al insulation are used in the contain=ent.

and found acceptable ene has been analyzed for leachable chlorides

.. Therefore, the a= cunt of leachable for use en stainless steel. .

chierides available to the sung water vill be negligible.

2. Neutren Shielding The neutron shiciding is a di= ethyl polysilax&ne silicone elastener and is totally free fr== chlorides.

.55 t

3. Electrical cables The insulating =aterial vill not leach chlorides cr fluorides under a 100A conta4-- -* envir :=ent.
4. Ccataintrat Paint Paints used in the contain=ent are discussed in Section 3.8.2.7.6 a the respensa to Co==ent 6.4. Paint manufacturer's data indicate that the =aximu= halide concentration of the paint is 50 parts per t!.111on water halegen (pp=). A calculation was perfer=ed to deter =ine su=p h assu=ing lea:hable halides are credible fr== the top concentration.

vater half of the paint layer. The results have shcvn that the su=P This

/i halide concentratica vould be approxi=atcly 0.17 pp=.

V concentra:ica is enly 0.02 pp= higher than the allevable for the

(

N1T 6.2 - 6 t. N 11-3<o )

p d reacts: ecolant. The su=p water temperature is less than 150 T app cxi=stely 3 hours3.472222e-5 days <br />8.333333e-4 hours <br />4.960317e-6 weeks <br />1.1415e-6 months <br /> after an acciden:. Considering the icv su=p water te=perate:e and lov halide c:ncent:ation of this water, stress cc:::sion vill be negligible.

Qualificatien testing of the inside recirculation spray pu=p =ctc:s has been cor. ducted :o pr ve tha: the =otors vill function with=ut degradation of perfor=ance in the accident environ =ent. The tests were perfor:ed on a Surry Power Stati n inside retirculation pump motor and apply to the No:th Anna Units 1 and 2 inside recirculatica spray pu=p motors because the motors a:e identical. The details of the test progras may be found in the Surry ?over Statica topical repert en GE Vertical Inductica Maters - Inside Contain=ent Re:irculatien Spray ?u=p Motors, filed under Dockets Nos. 50-280 and 50-281.

p v

65 Ie test progra= included exposure of the cocer to a nuclear radiation dose ex:eeding that anticipated fres nor=al and post-accident service, a vibration test si=ulating seis ic disturbance, and a steam / chemical spray exposure si=ula:ing the centai==ent environ =ent followini a LOCA. These tests were preceded by ther=al aging cf the motor.

The results of the test progra= verify that the inside recirculatica spray pu=p tors are capable of functioning in aa accident environ =ent. The outside recirculatien spray pump =ctors are not exposed to the spray solutien, and *.herefore preclude such require =ent.

Depcsitien cf cc::csion products or chemical precipitation so as to restrict lines or reduce heat transfer is not expected because the turbulent flow conditiuns within the sys te:s preclude precipitation. Also, because of the

NIT 6.2-65 7-31-79 corrosion-resistant p cper:ies c; the Recirculation Spray Syste=. Plating cf

~

cor:csien p cducts is negligible. Zine vill accumulate at a rate of less than 1 pp:/ day. Turbulent fiev vill keep it in suspension in the Recirculatien spray Syster, The zinc exides and hydroxides vill deposit out in the sury areas where flew is icv. The small accunt vit.1 not result in any appreciable 65 buildup. Consequen:ly, qualification testing ef -the Recirculaticn 3 pray System to deter: ins the effects of plating cf cc:: sion p cducts or chemical pr'ecipitation se as to plug lines or reduce heat transfer is not necessary.

s Qualification testing on the recirculatien spray no::les to demonstrate they vill function vi:hout degradation of performance due to cerrosion has net been perfor=ed. 3ecause of the corrosion-resistant material chosen for the no::les, degradati n ci the spray ne::les is not expected. .Movever, I*

surveillance of the spray nozzles is conducted as described in the Technical s Specifications. This surveillance vill shov any degradation cf the spray 4 I

nozzles when ex?cred t: RWST vater during periodic quench spray pump tests. I.

he RS Subsystem coolers are laid up with the shell and tube sides clean and dry. There =2y be se e fouling of the tubes, for leng-ters operacion, with resultant loss in heat transfer capability. This less of heat transfe:

65 capability would be :::e than offset by the decrease in heat load due to decreasing decay heat p:cduction.

67

31T 6.2 -6d 11-3-70 'g

(

(

The recirculatica spray heat exchangers are designed in accordance with section III of the ASP.E 3 oiler and Pressure t'essel Ccde (1969) and have velded construction at all points where there could be a potential for leakage of radi= active recirculatica spray into the service water. The pressure s.t all points on the recirculation spray side of the heat exchangers is greater than that of the service water side. This prevents any inleakage of nenhorated Vater into the reactor containment which veuld decrease the reactor shu:dcun margin. The service vate: lines from the ccirculation spray heat exchange:d' are equipped with radiation monitors to detect icakage and any defec:ive subsyste=s could be shut down if leakage above the allevable limit is detected.

Piping, valve packings, and pu=p seals in the R5 subsyste= cutside the

) contain=ent ar designed to sinimize the probability of leakage. However, shculd leaks cccur, they would be conc:clied as folicus:

1. Large leaks in the dischargo piping of the cutside reci
culatica spray pt=ps vould be detected by variations in the recirculation spray pu=p discharge pressure readings in the Main Cont:ci Roen and by se=p pt:p alar =s. If such a pipe break should occur, the operater in the Main Control Roc = can step and re=oce-manually isolate the pu=p involved. .
2. Largs leaks in the section piping in the valve pit occurring during the long-term recirculation period are detected by liquid level

=easuring devicas. The valve pit is provided with a baffle, dividing

,_ the pit into two sections. Thus, leakage from one set of U \

N1T 6.2 -67 11-3-78 recircula:ica spray or icv head safety injection suction lines is detected by the increased licuid level en the affected side of the 6Affle. Cpen detection, if the break is he:veen the isolation valve and the pu=p, the operator in the Main Cent ci Rcca can re=ste-canually isolate the leaking pipe, leaving the cther outside recirculatica spray icop ope:.ble. If the break is in the sher:

length of pipe between the contain=ent and the isolation valve, the ,

pu=p can be left ir. operatic: by per=itting it to take suction directly f:cs the ficcded section of the valve pit. This does not endanger the public as the water cannet risc high enough in the safeguards structure to escape.

..,-s In the case of s=all leaks, i==ediate detection and subsequent

. ~

Q isolation of a leak =ay not be possible. However, the at=esphere of the safeguards structure encicsing the piping is discharged to the at=osphere through charecal filters when the subsysten is cperating.

These leaks vill eventually be indicated by a rist 4.n valve pit or safeguards area su=p levels in sufficienc ti=e to allev cc rective 65 actica to prevent fleeding of equip =ent.

Table 6.2-37 su==ari:es the potential leakage f:c= Rs subsyste=s. Leakage of i

55 pu= ped fluid frc= the centain=ent recirculation spray pu=p shafts does not occur due to the canner in which the pu=p is sealed. !vo =echanical seals a:e arranged in tande= with a fluid seal between the=. The seal iluid is supplied f:c= a reservoir stranged in such a canner that the pressure of the seal fluid is slightly above (approxi=&tely 1.0 psi) the pu= ped fluid pressure at the c inbcard side of the inboard se l. This a::ange=ent is provided so that,

NIT 6. 2 . '-6 8 11-3-78 -

J assu=ing a single seal failure, seal fluid vill leak through the failed seal and the other seal vill remain available to prevent escape of pu= ped fluid to the at=csphere. A level alars on the reservoir provides indication of seal failure. Makeup is th: ugh a hose cennection en the seal reservoir.

8F Consistent with letters from the ACR52,'** concerning vital piping which must. function during a LCCA, passive failure of the recirculatien spray suction piping during a LOCA in the short ters is not considered credible. If s a large leak were to occur in the long-ter= after depressurization of the I

contain=ent at=esphere to subat : spheric pressure had been achieved, the valve pit veuld ficod with recirculatio: vater. The spilled recirculation water v:uld provide a water seal to prevent inleakage of outside air into the centain=ent and subsequent return of the contain=ent to atecspheric p:essu:e. .

,s 65 T1ooding of the valve pit area has no effect on the operation of the LH5I system or the 25 Subsystes. The pu=ps are not affected by ficoding since they are of the vertical shaf t type with discharge head and cetor drivers located sc=e 45 feet above the valve pit.

i 65 Table 6.2-33 discusses the likelihcod and consequences of various ccmpenent calfun:tio ns.

i 6.2.2.3.2 Recirculation Spray Pump Net Positive Suction Head The contain=ent recirculation spray pumps are capable of meeting NP55 i

( require =ents under accident conditions. Sufficient NPSM is available when the i

pumps are started (at the nazi =um su=p water te=perature) and after the I

('T s/ cencain=en: structure has been returned to subat=espheric c=nditions e i

NLF 6.2 -69 11-3-78 (r,

()

i The pumps are star:ed and deliver rated flow c: containment within 25 approximately 300 sec=nds after the containment at= sphere pressure reaches 27.75 psig. The delay in operatica of the pu=ps allows sufficient water to 35 accu =ulate on the centain=ent structure floor. Additic al infer:ati n en the 25 delay in operation of the recirculation spray pu=ps is provided in Section 6.2.2.2.

NP S *4 . Analvsas. Matb-4 . and ? rec =dures .

The LOCTIC cc=puter progra: is used to calculate the net positive suction head available (Np5HA) for the inside and outside centain=en: recirculation sprav pumps and the lov head safety injection pumps. Since the most limiting assumptions for an N?SH analysis are different frem those for a contait=ent

' depressurization analysis, both analyses =ust be performed. The for:er ensures that the net positive suction head required (N?SHR) to suppert the Slov rate used in the analysis is available during the entire accident transient, and a latter ensures that the subattospheric contair.=ent criteria of depressuriring in less than one hour and remaining depressurized thereafter are satisfied.

The assu=ptions made for the containment depressurization analysis maximire the energy release to the containment atmosphere (mini =1:e energy release to susp) in order to everesti= ate the contain=ent pressure.

l The assu=ptiens =ade for N? SEA analyses for the recirculatica spray and icv head safety injection pu=ps tini=1:e the energy release to the contain=ent at sphere and maxi:ize the energy release to the contain=ent flecr. Thus, the contain:ent pressure is underesticated, and the contait=ent ficer water f'~)<

4

\

l l

l 1

__ -- -- . - e- - -. % m --y l

NIT 6.2 ' 70 11-3-78 --

(.

O<~ Since cor.tain=ent pressure is a positive vapor pressure is everesti=ated.

term in the NPSEA ecuation and the floor water vapor pressure is a negative ter=, a conserva:ive calculation of N?SH results. Table 6.2-39 identifies the different assu=ptions. Table 6.2-40 lists the inputs to the LCCT:C cede for both casts.

All,'NPSM values are referenced to the centerline of the first stage of the pu:p impeller. , ,

The fiev rates and NPSK for the pu=ps are as follows:

Minicum r;;2 rier ? ate N? 5'97 N?SVA

'N (gp=) (ft) (ft)

/ )

rN

- Q 65. (

l. Outside RS 3,640 11.0 16.6
2. Inside RS 3,300 9.4 11.5 N?SM Sensitivity Studios Table 6.2-40 lists the input para =eters used in nu=erous studies to deter =ine the limiting case for NFSH. These studies considered various b:cak iccations, se:vice water and R'JsT te=peratures, break sizes, .ind initial cenditions.

sinele railura and 3reak Loration Table 6.2-41 shevs the =inieu: NPSEA calculated for both the pu=p suction double-ended rupture (?S3IR) and the het leg double-ended rupture (ELDER) with various single failures.

O 5% ..Y _

  • h * '

NIT 6.2 -71 11-3-73 s

g( The results indicate the icileving:

1. H'_DIR ' s are nore li=iting than PSDIA's for the recirculatica spray pumps.
2. The inside recirculatica spray pumps are insensitive to the single failure a:sunp:ica.
3. Nor=al Engineering Safety Features (IST) and failure cf cne cutsida recirculatica spray pu ; are the mest id'*4g single failures for both the inside and cutside recirculatica spray pu=ps.

s Sarvice Catar Te-earatur? -.d S**ST Ta-earatura NPSKA is calculated for bcth the PSDIR vi th mini:Un IST and the F.LD1R vith nor=al RST for the icileving temperature conditions to shew the effect en 55 NPSH:

1. 50 7 RUST and 25 7 Service Wate: Te=perature
2. 50 T RWSI and 93 P Service Water Temperature
3. LO T RW57 and 35 T Service Water Te perature 4 40 7 RWST and 95 T service Water Tenperature .,

Table 6.2-40 lists the :e=aining input parameters. The results shcun in Table 6.2-42 indicate the Eclieving:

1

1. For the recirculacion spray pumps, ccid service water is =cre j li=iting because cold va:e: injection into the pump suctica is lass i

i t

. . .- . . - - ,1 .. n- - . x . .: . . m x. : . . v . ms. .. . .a .

.u.:,c u asmwn .

l _ . . - -

NIT 6.2 ' 72 11-3-78 effective in in:: easing NFSHA vhen the st=p vater is colder. which it is for the case =f celder service water.

2. Wars RUSI te=pera:ure is = ore li=iting for the IRS pt=ps since it results in less effective cooling of the water at the pu=p suction.

?rask size Since mini =u= IST is the = cst limiting single f ailure for NFSH to the LESI ,

pe=p, further analyses assu=ing mini =u= IST vere done for various break 3.ccations and break si:es for both recirculation sp;&y and LESI pu=ps.

Table 6.2-43 sh:vs the mini =u= NPSHA to the pu=ps for this analysis. It is c:ncluded that break si:e has a negligible effect.

65 Initial Conditiens A

(_)

Tabic 6.2-44 shows the results of several ec=binations of RUST and service water te=peratures and i=itial containment dry bulb te=peratures and dev peints. For a PSDIR with mini =u= IST and for a ELDIR with nor=al IST, asst =ing an air partial pressure of 8.9 psia, the results show that:

1. NPSEA is i= sensitive to dev point.
2. A higher containment te=perature is more li=iting. .

The N? SEA analyses for the ORS pt=ps shev that NFSEA for a flow of 3,640 gp=

is always above the F?SER. Therefore, N?SHA is adequate for the entire transient. The N?S:iA analysis for the IRS pt=ps also shows thct NPSHA for a fiev of 3,300 gp= is always above the NPSHR.

_ _ _ _ _ m ,-_ _ -

NIT 6.2 .-73

- 11-3-73 ti-itine ?.s ?u-o N?r{ Trznrian-A HLDIR for the lever ent:cre of service va:e: torperature (35 ?) is the limiti=g case for the re:irculatice spray pumps N?SE. Figures 6.2-74 th:cugh 6.2-79 shew time his ::ies ic: he fellevi=g:

1. N?SRA

+.

2. Co= tai =:ent Total ? essure
3. Surp Water Levei 4 Surp Vapor Pressure
5. Contai= ent Te:perature
6. Surp Wate Te:perature
7. IRS and 025 Suetica vapor Pressures sa

-r

. 8. Conde=si=g Coef ficie::

s

9. RS Cooler Duty
10. QS Flev Uater Drain re in ?efralin? C vitv There are two paths by which spray water drains f:c the refueling cavity:
1. Spray water drains through the 16 square feet of cpe: a==ulus a c=d the reacter vessel and fleeds the reacter cavity and in-core instru en atic tus el. The water then builds up around the reze:o:

t l

vessel and everflevs to the stear generator cubieles through the open area arcund the h : and cold leg penetratic=s in the reacter cavity vall, r

s N-

.g .w4 . . .* , * ', ,, M _ ' s i .d n s . -s ,,, , i

s. .

1

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Nir 6.2 -74 y

11-3-78 O }

d

2. k*ater also flows from the refueling cavity to the contain=ent su=p through a 6-inch drain located in the fuel transfer portion of the refueling cavity. The drain is 1;cated in the bottes of the fuel transfer canal at an elevation of 251 feet-4 inches end is shown on yi;ure 9.1.3-1.

An , analysis indicates that the refueling cavity represents 9.2 percent of the area exposed to the quench and recirculation spray. The fuel transfer canal  %

receives 11 percent of the spray falling into the refueling cavity, the re=ainder of the spray falling at the 262 foot-10 inch elevation of the refueling cavity wh ch contains the open annulus around the reactor vessel.

Spray vater acetaulation in the refueling cavity is negligible, but there is a r' s 65 =azi=un possible accu =ulation of 71,000 gallons in the in-core instrumentation '%

y tunnel, lover reactor cavity, and around the reactor vessel. This wate:

accu =ulation is subtracted from the water available to the containment su=p.

The valves in the refueling cavity transfer canal drain lines are ad=inistratively controlled by procedure and by physically chaining and locking the valves in the open position during normal ope:ation of the reactor.

Operators are required to verify all valve positions before starting or ,

resuming cc::a1 cperation when it is known that those syste=s have been used during the shut-down period.

Conversely, when the reactor is being refueled, these valves are locked closed i

I 7g under si=ilar administrative control.

U .-

wv n qq j 3-14-75 l

a. The addition of tenperature sensors in various parts of the An as previously described, and
b. The use of existing instrumentation and valving to detect and isolste the break.

C.S.4.6.3 Flooding Effects FJooding within the auxiliary building has been investigated uith the approach to demonstrate that essential equipment is not endangered bv vater

' from any postulated pi,,e break.

A syste= of floor drains within the Auxiliary Du11 dine will direct the water flow from a break to the Auxiliary Buildinn sunp, which is located within the floor of the 244 ft-6 in. elevation. Iligh water level within the su=p vill initiate an alarm in the control room. For breaks that exceed the 903 gal capacity of the sump, the water will run out onto the 244 f t-6 in level. The large floor area of the Auxiliary Building at this l elevation requires approximately 8,800 gal of water to attain a water level of 1 in. above the floor. The mini =un height above floor level of 34 equipment which is essential to safety was found to be 15 in. Therefore, the water required te reach this height would be approximately 132,000 gal.

The sump alarm, combined with visual inspection, will excute detection and isolation of the water source in adequate time to assure safety, considering the large enount of water required to cause danane.

. ,, s. s.

C.S.4.7 Structural Analysis The overall structural stability of the Auxiliary Building is not impaired by any potenttal pipe breaks.

t AMEND 24

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I:vclear Technology Division fx* Safety Standards

v. . 249-485G

(~)

'v tu November 28, 1979 sego Qualification of E12ctricci Equipment for '

flear Tena OL Plants W. C. Gangloff, 5 -

M. A. Siano, 5

" R. S. Howard, 5 J. L. Vota, 5 l1. H. Judkis, 5

~

cc: D. H. Rawlins, 4

  • R. J. Sero, 4
  • G. Butterworth, 4 As a result of a meeting with the five (Salem 2, North Anna 2, McGuire 1, commitments Sequoya51, Diablo Canyon) near term OL plants on October 31,1979 were made to provide information on Westinghouse supplied electrical equipment The information required along with a sample transmittal inside containment. Please transmit Attachment A and the appropriate valve.

letter is attached. As indicated herein, an additional trans-table (Attachment B) to your customer. 11, 1979.

mittal on valves operators will be required prior to December rx V Since the enclosed information is vital to the near term OL plants, ic is essential that you get an adv:nced copy of this infermation to your customer after project manager approval.

If you have any questions, please contact the undersigned.

h. wj C. E. Faust, III Safety Standards

.JJM/ keg Attachment (s) e e

(b

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  • OCTa OJII l - - - - - - . . . . . .

PWRSp w.sDi;m Wcsiing. house Watcr Reactor Electric Corporation Ditisicas , g,m3 Pdtru'thF c T c.a p m

- Qualification of Uestinghouse Supplied Electric Equipment Inside Containment

Dear Sir:

In response to your request at the October 31, 1979 meeting with Westinghouse, information is provided to further support your operating license review and the quali#ication of Westinghouse supplied elec*.rical equipment inside contain-ment. The enclosed information has been segregated into tuo attachments as follows:

Attachment A - The informati.on in this Attachment identifies Westinghouse supplied electrical equipment (excluding valve operators) inside containment.

This information is presented in the tabular format identified in draft NUREG-0588. This information is generic and, as such, must be reviewed by Additionally, your staff to identify v:hich equipment is applicable to your plant.

r~x portions of the information required by draft !!UREG-0588 is plant specific and

() must be completed by your staff.

Attachment B - This Attachment identifies valves and their electircai operators located inside containment required to mitigate the consequences of a postulated accident. The valves listed represent those valves inside containment in However, all the valves and/or the valve operators Westinghouse supplied systems. Currently, the qualification docu-may not have been supplied by Westinghouse.

mentation for the valve operators identified in this Attachment is being reviewed.

This effort will be cot.pleted by December 11, 1979 and a table in the format

- of draft NUREG-0588 will be provided.

j In regard to valve operators, there have been a number of NRC I&E Bulletins and Circulars over the past saveral years which may have necessitated field modifi- .

cations to valve operators. Based on these NRC instructions and other circum-l stances it is recommended that you verify the information in Attachment 8 based

! upon as-installed conditions.

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  • _ __.._.; __ . _ _ _ _ _ - . _ _ _ _ . _ - . - _ _ . . . _ . _ _ . . ~ -

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i The P0 t-accident radiation dose used in the calculation of the narrow

) dated ( range )

4

RTO vias teo large.

yr.lified life sent to you in a previous letter (The calculations of at

[The revised calculaticn does not affect

] tho:e transmitted the qualified life.] previously.(The sentence in brackets should be deleted for McGuire j

andSequoyah.) .

If you hcve any quctions on or theMr.

enclosedC. Faust,III, informa' (412-373-4176). tion, please contact Mr.

i G.Detterworth,(412-373-4761) i PROJECT i:ANAGER l .

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  • ESTINCIOUSE, r\ .

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J :D SAFETY-RELATED EttCTRICAL

, EQUnd .. INSIDE COUAlfetENT

  • Abnormal or Accident Envtrorsnent Qualtfled Envfrorpent
  • Model Inte- Irte-Numter Peak grated ' Ped grated Accuracy Accuracy Qualtft-or 13en. Tempera. Dose Terrera. Dose Operabil
  • Require- Demn- cation tu t e. ttftca- ture Radla- ture Cheelstry 3adta- Ity Rr- Operebil- mants strated itz ference

-*-t Manufac- tion Pressure Chemistry tien Pressure Condition tion quire- tty Dem- (1 of (1 of and fcctl W Locstion turer Number Humidity Condition Type ihnidity Type ments onstrated $ran) Span) Method Pr at sur . Barton 763 (Lot LOCA 1.14 wt. Lt;CA 4 months 4 r 3ths +101 <51 for hS-TMA.

tree 1 BfF E Boric 5:16I Post-DRE Post-CDE for 5 m'n, IMO l . F.es spe 78 psia Acid and G?MtA <5 min. Mas. Anriersen i

I f r -s- 100% Ril 0.17 wt. SLII 5 min. Error to sinir atsee Ftra. 3-1 1 Naoli to 4 mo. 5 min. tr,-i rw-St il dissolved 10 1.{3 x

~+75% to 4 mo. 2110 hfr in water CAPNA 175 Andersen

  • 75 rstg to 5tolt 100% Rif Tig. 3-19 (fest) thru 3-77 .

4 Barton 763 (Lot 3800F 1.14 wt. 5:10 7 '4 months 4 months +101 for (1) (1) l

2) 15 ps'g 5 8,rie G/ntA Post-DDE Post-00E 75 min.

100% '.H Ac1d and 5 min.

0.17 =t. to 4 me.

, 1 NA0H +75%

dissolved in water Foiboro Ell GM >300 1.5% 2. x 30 min. 40 hr. *101 fer Mar. WCAF.R541 (rCS) *f see flor te  ! Fost-DCE Post-DBE -75 min. Error (test)

(4-20 ma) App. 8 Acid by CAFNA O to 6

>00 welqht + min. -71

] psig N4 0H to >5 min.

100% RH a'ljast

-9%

- the pH to

  • 9.25-10 Fon%ro Ell CM >318 fene 2.* a 30 mtn. 25 b'r. +105 for Mat. WCAP-8541 (MCA) *F see IOC rost-DOE Post-DBE 15 min. Errer (Test)
  • (10-50 - App. A GNf.i -141 ma) >90 pstg 100% Rlt e

, m ESTINGICUSE aED $AFETY-RELATED ELECTRICAL EQUIPMENT INSIDE CONTAltNENT ,

Abnomal or Accident E nviromer.t Qualifled Enviromer.t ', ,

Pndal Inte- Inte-Number Peak grated Peak grated , Accuracy Accuracy Qualt f t-or Iden. Tempera- Dete Tempera- Dose Operabil- Requfre- Dmm- cattoa

!*s'p- tifica- ture Radia. ture Chmtstry Radta- ity Re- Operabil- wnts strated Reference

-=* Manufac- tion Pressure Chemistry tion Pressure Condition tion gulre- Ity Dem- (1 of (% of an<f f ec* lan tre d lon turer Numtser Ibmittity Condition Type llumidity Type ments onstrated Sran) 5 pan) Method 8- =: s r - Barton 7 f> 4 >320 1.14 wt. l.ga 4 months 4 months +101 0 to 5 NS-EE.

      • - (Proto- "F 75  % Boric 10 Post-DUE Post-DCE -= for min. 1384

,*1 type) pstg Acid and G#t1A ~<5 min. <3% E t r. held tnger

-.-s- 1001 RH 0.17 wt. 5 min. te stola

't e see FIq. 1 Na0ll to 4 me. ( f eu) ure dissolve -151

  • in water Barton 764(Lot LfYA 1.14 wt. LOCA 4 mcnths 4 months 610% 0 to 5 NS TMA-

. 1) 7m"r  % r.nric EldI Post-000 Post-DCE -= for mtp. 1991 1:t psia Acid and GN NA ~<5 min. *5% A..'?rson lunt in 0.17 wt. 5tli Hn. to stali l' l y. 3-1 % N 30fl trrer hs.trw St il dissolve T.)'3 10 x 5 min. 7120 3 Mar in water CNNA to 4 me. Anaerson 75 rsfg 115 to Stolt 1001 Ril (fest) rig. 3-19 thru 3-27 Barton 764(lot 3800i 1.14 wt. 5:107 4 months 4 months +10% (1) (I)

2) 75 psig % Borte GNUA Post-DBE Post-CDE -= for 100% RH Acid and <5 min.

0.17 wt. 5 min.

% NgDH to 4 me.

dissolve ~+251 In water

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tr[TV.RELATED FLECTRICAL

..alDE CONTADetENT

('^ )i Abnsmal or Accids.t Env troriaent Qualtfled Envirereent i i

PMr1 Inte- Inte-ikerN r Peak grated Peak grated Accuracy Accuracy Qualiff-er iden. Tempera- Dose irmnera- Dose Operabil- '

Require. Deman. cation t u e-s ttffca. tur e Radia- tnre Chmistry RWia- ity Re. Ope rabil- rents strated Reference .'

-.-t Manufac- tion Pressure Chemistry tion Pressure Condition tion qufre- ity Ocm- (% of (% of and f rctton Loc ation turer PA=+er Mrmidity Condition Type ilumidity Type reets onstrated Span) Span) Method

'C5 Wide Barten 763 >WO 1.14 wt.

o..,.

(Proto- 0F 75 l.ga 4 l month. 4 senths -+10% -<*10% h5-CE-

% Corte 10 Post.DBE Post-DUE 1334 P assure type) a-Iq Acid and GAMMA Elcheidinger sw4 RH 0.17 wt, to Stoir tre rig- % Ng0li (fest) ure dissolved in wJter

  • Barton 763 (tot toCA 1.14 wt. Lf1CA

.4Post-Onr, months 4 months ~ slot ~<*10% NS-f PW

1) 'bfr  % Ooric bl6I Post.00E IVO 70 ps1a Acid and GN*iA And rsnn 1001 Ril. 0.17 wt. St B in stotr Ftq. 3-1 % N A04 1. 3 m M-tm-51 0 dissolved 10 'Aterson M@r in water C#f14 to Stoir 75 psfg (Test) 1001 RH F1g. 3-19 thru 3-72 Barton 763 (Let 300er 1.14 wt. 5:107 4 months 4 months 2) 75 psig % Boric

-+10% (I) (1)

GAMMA Post-DBE Post-DCE 100% RH Acid and 0.17 wt.

1 N 40H dissolved in water Verttrak 59 PM 1300r None None N/A N/A, 0.5% <0.5% Instruction Atmos- Manual pheric (fest)

N/A (2)

O

(' (3 WESTINQ100s / .D SATETYdELATED ELECTRICAL 8

. IdOlrMt ni IN5!! E CONTA!t[NT Abnormal or Accident

  • E nv trewnt Qualtfled [nviroment .

Model Inte- Inte-m#ve Peak grated Peak grated Accuracy A curacy 09altft-or Iden. Tempera. Dose T m era- Dose Operabil , Pequire. O m n- cation ture Radia- ture Chmtstry Radfa- it/ Re- Operabil- wnts strated Ref erenc e

[+ste- tifica-ity Dem-

-*at Manufac. ilon Pressure Chemistry t tori Pressure Condition tion autre- (% of (% of and Htmidit y Condttton Type Humidity Type ments enstrated Span) Spin) Pethod f m tton loc ation turer N#er itae- Bartor 764(lot LOCA 1.14 wt. LOCA 4 Tonths 4 avonths +101 0 to 5 NS-TMA-

. .- >. , pr 7PTPF  % Berle Gli)7 Pos t-00E Post-DBC L mis. 1750 78 psia Acid and GtJNA ~<5 mtn. <% Anderson Lavel Man, to 5tolz f.g s- 1001 RH 0.17 wt. SL B

                                                                          ,atace                                                                            Fig. 3-1 % N 0H  A         3x                                    E ror     (fest) f*W ro.                                                                          R tt        dissolved T.]3 10                                        f, min.

pi-n] lhPF in water G.M4A to 4 me. 75 psig lit IW DH Fig. 3-19 thru 3-22 Bar tr n 764 (Let 300r 1.14 wt. 5:107 4 months 4 sonths +101 (1) (1)

2) 75 estg i Boric GNtiA Post-DOE Post-03E L 1005 RH Acid and ~<5 min.

0.11 wt.

                                                                                                                                                                         % NA00 dissolved in water e

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I ,. - iiCSTINGHOUSE 5' 5ATETT-RELATED [LECTRICAL ( CQuiminiNilDC CONTAINMfhi Abnnmal or heldrnt E nv ironre n t Quallf ted Environment j '! Mnel Inte- Inte- } ! twte r Pe ak grated Peak grated Accuracy Accuracy Qualtft-or Iden. Tempera- Dose Tempera- Do .e Operabil-

  • Req u ire- Deeon- c o t t on .
       *1, 5                               tifica. ture                    Radia-   ture        Cientstry R a,l t a- sty Pe-    Omrabil- rents         strated Reference
          -!              'anufac- tien             Pressure Chea t stry tien        Pre ssure Conditton tion          q uire-    Ity Dew (% of          (1 of    sed
       ' rct fM Lecstten ture r            M c5e r  Humidit/ Condition Type          H pidity                 Type     ents       enstrated Span)        Spin)    h thod P.-                 F 1092496                                   >350          1.14 wt. 4 104    Initiate Fatted at *10%           Pn.      WCl#-9157 i       e%                  a .,,i s,c he r                                           er see       1 Borte     GNT4A    Si on      6 min.     ~until      Error    Rev. -0
         -. s.             Perter                                                    Fig. 5-2 Arl<f and                ste amitre            centatn- -2.11       ('est)
       -t.se                                                                          to 6-4      0.17 wt.             break                 ent         +1.9%

, 66 psig 5 N Ami pressure 1001 101 dissolved inttfates i in H 2O SI , Barton 164(Lot 3800F 1.14 wt. 5:107 4 montFs 4 months -10% (1) (1)

2) 75 psig 1 Borte GM t1A Post-:'E Post-DHE * == f or l'X4 Ril Acid an:t ~<5 min.

O.11et.

,                                                                                                 1 N f,91 dlsw1Wd in water Verltrak 5000                                               1300F       None       None     N/A        N/A        0.5%        <0.5%     Instruction Atm7s-                                                                      Hinual p.5eric                                                                      { test)

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WE3TINGOU # SATETY-RtlATE0 EltCTRICAL (m

                                                                                                                                                                      '            1 EQ41rMENs INS!00 (Chf AINMENT Abnorwal or Accidert Envirorrient               Quallfled Enviroment                                                                            i Pmtel                           Inte-                            Inte-Nuntie r   Peak                 grated Pe ak                     grated                          Accur ac y Accter acy Quallft-or iden. Tenpers.               Dnse     Tem xra-                Dose     Operabf1-              Require. Omm.        ration tifica. ture                 Radle-   ture         Chmistry Radla-      Ity Re. Operabil- arnts      strated Reference
           ! 9te.                                                                                                                                                  and
           - -
  • P3nufac- tion Preuure Chemistry tion Pres'.ure Conit i tion tion quire- sty Dem. (1 of (% of Wer Humidity Condition Type Humidity type meets onstrated Span) Span) Method
           ' ;a c *.t o a loc ation turer Rose-                                             >3?O         1.146 wt. In103     30 sec. 40 yr.     ~~+.2%    ~+.2%      WCAP-9157 e5                                 176EF E Roric                                                         (fest)
           ' Tr a.                 reunt                                              "F see                  GfM1A     Post-5LB Life t;re                                                                       If9. 5 3 Act.1 and                           over 30 and 6.3 0.17 wt.                             sec.
           ....rw                                                                     66 pstg 1 NA0H                               Post-5LB s . Se q.as                                                                       1001 Ril dissolved In H 2O                                                                             ,

sostman 118348-1 3320 1.146 ut. 1:108 30 sec. 40 yr. ~+.2% ~+.21 WC AP-9157 0F see 1 Boric GNtiA Post-5LB Life (fest) Fig. 5-3 Acid and over 30 and G.1 0.17 wt. sec. 6G rst1 1 N A0lt Po.t-SLD 1001 PH dis =olved in Hyo pose- 176K5 >3?O 1.14G wt. 1:108 2 weeks 12 yr. +.21 +.25 WCAP-9157 e5 "F see 1 Doric GNf14 Post-5L8 Life T -. a- rount (by) son corr or f-t ,r. F19 . 5-3 Ac1d ar1 2 weeks x e e. and 6-3 0.17 wt. Post-5L8

,- e ,

66 psig % N DH A s'rs 100% RH dissolved in H 2O Sostman 119018 >320 1.146 ut. 1:108 2 weeks 12 yr. ~+.21 ~+.21 WCAP-9157 PF see 1 Coric GNtiA Post.5L8 Life (t y) comp er f-Fla. 5-3 Acid and 2 weeks son and 6-3 0.17 wt. Post-5L8 66 psig % N A0tt 1001 RH dissolved , in H 2O Ev--ee WL-23686 300"F N/A (5) 8 hr. at 16 hr. at N/A Detector W Test

                                     ~WIGTD                                            Ates-                             1750F      '000F                Func.      T/69 r                                                                                                                                           tional pheric
             ?. .e  r v.
                 .cters (Pe or                                                                     N/A,
             'ime) s

IESTINGotl3E 3'#PL WETY-RELATED ELECTRICAL . EQUlrHCNT s 410E CON) ALIMENT Abnereal or Accident Envirorvent Qualtfled Enviroment . Model Inte- Inte. Np9r Peak grated Peik grated Accuracy Accuracy 04altft-or Iden- Tempera- Dote Tempera- Do'.e Operabil- , acquire. D w o- cation , ture Radla. ture Ctemistry Radte- tty Re- Operabil. Pents strated Peterence Easta- ttftca- and Pressure Chemistry tion Pressure Condition tlan gulre- Ity De m (% of (% of m-t Manufac- tion sents- onstuted $ pan) Scan) f*thod Nu ter Htpfdtty Condition Type Hustdt ty Type f rc*,f on .Lecstion turer 3800F 2500 ppe 2:108 <1 yr. 1 yr. II/A N/A KAP-7820 Etattric W A 77 psia Beron as CM:ru Post-DDE Post-06E aro Supp. uv '** w n 5turte- I-4 Pi:=- vant 1001.at Borfe Acid V M-7709-L ve Supp. with Na0't P-91 2 Sect. to glw a and 5 srp. 3.4.3 p!I of 10 1-4 (Test) W p 3020F 2500 ppm 2:108 el yr. 1 yr. N/A ' N/A WCAP 7020 eten ete Post-DGE Post-00E and Supp. u , e- Tturte. (4) Doron as en 69 psta Onetc GArg0 21 17 P.:w - vant WCV-7 709-L e f e.r . 1001 Ril Actil with BEIA

  • and Supp.

NACH to give a pH 1-1(Test) of 10 e ,

                                                                                                                                                                               ?

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4 FOTES: , !* (1) The tests have been completed and the report is being developed for  : i submittal to the f3C. ' (2) The test is a calibration prefomed on each instrument by the manuf acturer per the instruction manual. l (3) The recombiners are qualified to 4200F per the TEC acceptance letter dated 6/22/78. j 2 2 (4) Degigned to 5 x 10" n/cm s gemal, 5 x 10" n/cm s gst and 5 x i 10 R/Hr gama up to 2 x 10 n/cm- and/or 0.7 x 10 R. f I ) - l

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fii CATEGORY I VA6Vt1 I I Valve Model Po. '. Descrfrtion Mem Valve No. Location Function M Oreretor Manufacturer or ID No. Pressuriree 5V RCS $51 ADC IRC AM/RCPB Relief N/A Letdown LCW CVCS +LCV 460A 1RC RCFB/AM A0V . I Letdown LCV CYC5 +LCV-4608 IRC KCP3/AH A0f ' Letdown CVCS +200 ABC IRC CIS ACV . Ex letdown CYC5 ?01 IRC RCFB , ADV L5 N4tC0 0-2400X 5 ASCO LB-831654 ,

                                                                                                           . RCP Seal Ret           CVCS       +330          IRC         CIS            MOV i                                                                                                             ACC. TO GAS SYST.      515        HCV-936       !RC         Cl3            ADV         L5           MMC 0        D-24001 5            ASCO         LC-83?654             .

I ACC. TO TIST LINE 515 842 IRC CIS A0V LS NAMCO D-2400I 5 ASCO L8-832654 i

                                                                                                             + Information on operator mot evallable at Westinghouse. Please check as-installed records.

i

                                                                                                              .RC   -  inside reactor containment                                                                   *             ,

AM - accident attigation l RCPS - reactor coolrit pressure boundary l CIS - contalment is21ation A0V - afr operated valve . LS - ilmit switch 5 - solenoid

                                                                                                                                                                                .                                                  e e

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ATTACH'ENT C

      \

V Radiation Dose Calculations for RTO's The object of the following calculations is to estimate the plant specific in-service life that, when taken in conjunction with assuming the RTD's operate for 100 days in a post-LOCA environment, yields a 8 total dose equal to 1 x 10 Rads as employed by Westinghouse for the testing reported in WCAP-9157. External Environment WCAP-8587, Figure 6-4, indicates a ' containment atmosphere dose of 1 x 108 Rads for 100 days post-LOCA. This value is based on a TID calculation for a 4100 MA reactor and a containment volume of 1.1 x 106 ft . 3The Westinghouse calculated dose can be approximately scaled for your plant application by the formulae: 8

  • Rads D = 1.0 x 10 4 00 Inserting a value of 2900 W (P) and 2.4 x 106 (V) as applicable to 7

your plant yields a post-LOCA 100 day integrated dose of 3.2 x 10 Rads for the RTD external connection. Since the narrow range RTD is only required for a short time after the event this calculation only applies to the wide range measurement. The external dose for the narrow 6 range is on the order of 10 Rads and is insignificant compared to the I test condition. The remaining dost. available to cover in-service effects is the , difference between the total dose employed in the Westinghouse test 8 reported in WCAP-9157 (i.e.,1 x 10 Rads) and the abdve calculated 7 7 post-LOCA dose (i.e., 3.2 x 10 Rads), which is 6.8 x 10 Rads. The iOv- dose rate during normal operation appropriate to the external connection 1' . l s . x . . ..

is taken as 165 R/hr (Table 6-2, WCAP-8587). Thus', assuming an 80 per-a cent load f actor, the time required to attain this romain'ng dose is: Wide Rangit 6.8 x 10 7 = 59 years 165x24x365x0.8 Harrow Range 1.0 x 10 8 = 86 years 165x24x355x0.d The Westinghouse calculated dose post-LOCA employed for this calculation is conservative with respect to those recommended by the Staff in 'Appen-cix D in NUREG-0588. Internel Environment 7 WCAP-8587, Figure 6-8, indicates a RCS internal pipe dose of 1.8 x 10 Rads for 100 days post-LOCA. Without considering any reduction in this value by scaling for your plant, the remaining dose available to cover 7 in-service radiatica effects on the RTD is 8.2 x 10 Rads. The dose rate during normal operation for wide range RTO's installed directly in Q the reactor coolant system is conservatively taken as 820 R/hr as defined for the RCL pipe center in Table 6-2, WCAP-8587'. For the bypass line, narrow rance RTO's, the dose rate is conservatively taken as 165 R/hr as defined for the RCL outside surface. Thus, assuming an 80 per-cent load f actor the time required for the internal part of the RTD to attain the remaining dose is: 7 Narrow Range 8.2 x 10 = 70.9 years 165x24x365x0.8 7 Wide Range 8.2 x 10 = 14.3 years . 820x24x365x0.8 .

  %) _

Summary . Using Westinghouse dose estimates from WCAP-8587 scaled for your plant, 4 the shortest demonstrated life for the wide range RTD is 14.3 years and l greater than 40 years for the narrow range RTD. l i 4 i e e Y

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                                                                                                                 - - . - . - - - - _ _ _ . . _., .                                               ...y.

N1T 6.2-111 11-3-78 requi:e=ents for quality Class 3 as required by Regulatory Positica C.1 and O(~T Table 1 of Regulatory Guide 1.26. The ec penent cooling lines to the residual heat re: Oval heat ex: hangers are designed and built to ANS:-331.7-1969 Class III which cc::esponds to the 55 require =ents of quality Class C of Regulatory Guide 1.26. All of the sealed systers used as isolation barriers in lieu of isolatica valves meet the requircrents of Regulatory Guide 1.29 for Class I seismic equipment. l 6.2.4.2 Syste: Design Tab'e 6.2-34 provides infor:ation concerning every penetration that it in 55 service, as to the type of valves that are pr vided; their positiens under

A kI various conditions; the fluids they contarn, and the sys:e=s they conne:t. In addition, each contain=ent is provided with spare pfping penetrations. These serve no function but are available should design =cdifications require 65 additional penetrations. Ice spare penetrations are velded closed to prevent leakage.

All Stone a Webster procured remotely operated valves associated with piping penetrations through the contain=ent are listed in Table 6.2-62. The auto-trip valves listed are spring-opposed diaphrag: or pisten-operated which fail closed upon less of air or electrical power. 55

         'Te s tingh:us e   p ccured   :e=otely operated valves associated with piping penetrations nre listed in Table 6.2-63.      The valves listed as using air ic:
         =ctive force fail closed upon loss of air.
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Nli 6.2-112 11-3-78 q All cotor-operated valves listed in the tables fai! in an "as is" condition upon loss of electrical power. Motor-operated valves used for containment isolation are povered f:c the onsite energency power system, and in addition, are equipped with a hand wheel which allevs manual operaticn ci the valves in the case of a pcVer failure. The status of the valves during nor:al, shutdcrn, and accident conditions is given in Table 6.2-34 All containment isolation valves purchased by Stone & Webster are factory - tested and inspected. A written specification defines the specific requirements fer valve procurement, which include the icilcuing:

1. Welding and ND: P:ccedure Qualification
2. Welder and NDT Operator Qualifications

() 65 4

                        *        **   '2 #
  • Dye Penetrant Test (as required)
5. Magnetic Particle Test (as required)
6. Radiography (as required)
7. 3cdy Hyd: static Test
 -                    8. Seat and Valve Steam Leakage Test
9. Perfor=ance Test
10. Dimensional Check
11. Cleaning
12. Preparation for Ship ent
13. Seis=ic Qualification The aute-trip conta.n=ent isolation valves, with the exception of the =ain I

steam isolation valves vnich are discussed in respense to C:::ent 10.2, are

   /,,,i

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N1T 6.2-113 11-3-78 air-operated, globe or butterfly valves. The pisten c diaphrag operators are spring opposed, se that the valve fails closed upen less cf instrument air or loss of pcuer to the solenoid pilet, er trip: closed upon receip: of a safety signal. Tactcry tests of these valves include tests to ensure p:cper stroke action and operatien of accesseries. The use cf "Limitorque" cperators has been specified for all cotor-cperated

               'ecntainment isolation valves. The spe:ific require:ents for =oter-eperated valves include a seis=ic analysis of the valve and opera:or as a c:=bine'd unit. With the excep: ion of the =ain stea: isolati n valves, which are required to close within 5 se::nds, all centain=snt isolation valves cust be capable of closing within 60 se: ends after receip: of a contain=ent isolatica Phase A signal.

i s The basis for the 60-second linit is that no fuel cladding is expected to melt s or fail until a'ter 60 se nds felleving a loss-Of-:: lant a::iden: (LOCA). Thus, fission product release f: s the core, to the con:ain=ent at : sphere, c to other porticas of the RCS could not occur until at least one =inute after the event. This is verified for PWR's by the TLICF.I ex;erimen:a1 results*82* vnich indicate peak te:Peratures occur 6C se:cnds c  :: e after the start of reflooding (30 seconds more after the accident) fe: lov reflooding rates like i these that might lead := clad reiting. 1 i L All containment isolatica valves purchased by St ne 811bster satisfy the bases described belev. The bases for the =21ection of containnen: isolation valves and valve

operators purchased by Westingh=use are pri=arily systers requirenents. For I __ _
             ,      --m m

N1? 6.2-114 1.v . is_ , m. those lines that penetrate the centainment and are in part of a system that is (')

    \/

not ne:essary folleving a LOCA and whose inadvertent closure is not detrimental to plant operation or equip =ent integrity, Wsstinghouse systens criteria specify the use of " fail-elesed" valves with air cpera:c:s. This is based upon the fact that the energy needed for closure of this type of valve / operator is stored in a spring. The failure of the solenoid valve, electric power, pneumatic device c the loss of air pressure does not prevent the' valve f cm c=ving to the desired pcsition. This design ensu:es a high degree of reliability of the valve function. To: th:se lines that penetrate the contain=ent and are a part of a system that is required foll: wing a LOCA, or in which an inadvertent valve closure vould jeopardize safe plant cperation or ec=ponent integrity, Westinghouse criteria specify the use of valves with coter-type operators, assigned to " fail as-is." Tc: these types of valves, 65 the failure of the motor operator en loss of electrical pcver to the operator (v ') does not affect the valve movenent and ensures that the valve remains in its desired position. This design ensures a high degree of reliability of the valve function. Finally, Westinghouse criteria specify the use of check valves as the inside isolation valve where applicable. Since the only ::tive force necessary to provide closure of this valve is a r: essure difference, this design ensures a high degree of reliability in the valve functi:n. In addition to these design require =ents, all the valves are subje:a d to functional tests and shell hydrostatic tests prior to installation. These design and testing require =ents are 5;ecified within the equip =ent i specifications. This co=binatien of design and testing is carefully ::nitored by Westinghouse quality control personnel through ut the p:: urement pre:ess. ' capability to produce a quality In the procurement process, the vendo 's product to the requirenents of the specification is carefully evaluated and is f-)

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A one of the major considerations in awarding a contract. Requirements f:: the (s vendor's quality control p cgram are established by Westingh use. Additionally, Westingh0use has approved rights en each vender's quality control system and on the inspe= tion progran for each type of v.41ve. All containment isolation valves p cvided by Westingh00:E vhich are not nor= ally in the closed position are capable of closure vi: tin 10 see nds.

         'This time for fast-acting valves of the Engineered Safety Teatures is based cpon the accident analyses requirements.

All lines passing through the cen:ainment p ene::a:i::.s enter in: the 55 auxiliary building pipe tunnel, safeguards area, or main steam valve house. All of the extern 11 isolation s.lves for these pipes are located in one of the above areas. The te=perature of the auxiliary building pipe tunnel and f Us _)j safeguards area is maintained at a minimum of 50 T, which precludes the freezing of the valves and piping in these areas. The =ain s et: valve h use is also maintained at a temperature greate: than free:ing, as described in the Response to Cc::ent 9.67.

These hreas are all within seismic Class 1 stru::ures and are provided with I

l l tornado =issile protection as indicated in Table 3.2.1-1. Tigure 6.2-99 shows schemati: representations of typical containment is:lati;n 65 valve at:1ngenents. Although the station is designed to the General Design Criteria published in 1966,  : st isolation arrange =ents confer: to l Criteria 55, 56, er 57 of Appendix A, " General Design Criteria for Nuclea: 1 i i power plants" to 10CTR50 published in 1971. A discussion of these cri:eria l 65 l can be found in Sectica 3.1. n m) 8k

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BTr C.TT1T6 11-3-78 General Design Criteria 55, 56, and 57 had not been p:: ulgated when four

    ._    r enetrations, which use check valves outside the ccatainment as isolatica I\
   '-     valves, were designed.      As explained in 6.2.4.2.b, and Table 6.0-34, these penetrations constitute exceptiens taken to    G.D.C. 55,  56,  and  57. This 65 situation cecurs only where there is a sealed Seismic Class I system inside the containment serving as a second isolation barrier. These penetra: ions are censidered to    =eet the requirements of General Design Criterion 53 (July 10, 196,7) in effect at the time of design. Table  6.2-34  also indicates    the isolation criterion to which the penetration cenforms, or references one of the felleving sections which descrita isolation a::ange=ents which differ from those listed in the criteria:
1. Rea:to containment leakage monitoring lines to open taps and containment vacuu pu=p suction lines.

The leakage conitoring lines to the open taps have one manual, 73 b administratively controlled valve followed by two aute=atic trip valves in series outside the centainment. There are fcur of these 26 lines utili:ing four penetrations. The two aute=atic valves in each line shut on receipt of a centain=ent Isolatien Phase A signal. The contain=ent vacuum pump suction lines have two normally closed aute=atic trip valves in series. The Centain:2nt Atmosphere Cleanup system takes its suction frc these lines dernstream of the two aute=atic trip valves. These valves receive a Containment Isolation Phase A Signal to close. I e x_) 3 4

NIT 6.2-117 11-3-78

               )
          ~

The arrangements =f two trip valves in series outside the containment is necessary to provide accessibility to the valves in order to a ensure operation of these sytees folleving an accident.

2. Ccepenent cooling water supply to the Residual Heat Re eval syste:

(RHRS), the excess leidevn heat exchanger and the containment air recirculation ecoling ceils; feedvater lines and chemical feed lines. , The penetrations for these lines have two barriers between fluid l inside the reacter ecelant pressu:e boundary c: between the containmen: at:0..p h e r e and the at : sphere curside the containment. These two barriers are the various heat exchangers served by the lines and the check valves outside the containment. These check valves shut under a differential pressure when the higher pressure is

           !~            on the centain=ent side of the check valve.                                                 The piping inside the containment f:c the penetra:ica to the c:npenent is run so that it is protected frc: potential missiles generated as a result of an accident.

Each feedvater line has the folleving connections between the isolation valve outside the containment and the stea: genera::: inside the contain=ent. The isolation arrangement fer each of these cennections is des::ibed:

a. A three-in:h auxiliary feed line, located curside the containment, with a check valve.
b. The ehenical feed line cennects to the cain feedvater line inside the con:ainment. In addition to the check valve in the l'

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N17 6.2-118 11-3-78 chemical feed line, there is a nor ally cpen canual isciation (' s valve on each side of the centainment in this line.

3. Main steam line Each 32-inch main steam line is isolated by an au:0:atically tripped, normally cpen sving-check valve installed is the direction to prevent flow cut of the contain=ent. Ticv into the contain=ent is prevented
             -    by a motor-operated nonreturn valve installed adjacent to the trip valve. These valves are located outside the contain=ent with a         '

sealed system inside; this arrangenent cenic::s to General Design Criterica 57. The felleving lines join each tain steam line between the steam generatcr inside the c:ntainment and the isolatica valve outside the containment with the exception of the flow elemen: Icep 65 which is ccepletely within the contain ent. The isolation s,) arrangement fer each of these lines is described: 65

a. Tour 3/4-inch pressure instrument lines outside the containment, each with two =anually-eperated isciatica valves.
b. A 4-inch steam line outside the con:& intent to the turbine
   ~

65 driven auxiliary feedvater pump, isolated by one canually-cperated valve.

c. A 32-inch connection cutside the centad--=-- to the safety and relief valves. This line leads to five parallel safety valves and one aute=atically centrolled pcver relief valve. There is 1

1 1 a manually operated isolation valve in the line to the p:ver relief valve, and the safety valves can be manually gagged i P shut. l

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                                                                                                         .u
o. ~.,.,s 11-3-75
d. A 3-inch decay heat relief line cutside the containmen:

(sV) contains a check valve. After the junction of the three decay heat relief lines d::= the three mai- steam lines, there is a remote, nanually c:ntrolled isolation valve.

e. A 1-inch sample line outside the contain=ent containing eve normally 1: sed isolati n valves.
f. A 3-inch varnup bypass line around the rain steam trip vaive contains an antecatic trip valve for isolation.

4 Residual heat :e: val sample lines These 3/8-inch lines cen:ain a remote =anually-operated is=lati:n valve inside the centainment and an automa:ic trip valve outside the (( ') v c=ntainment. These is=lation valves are normally shut during station o r e*a*-da'

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4 ss' " c' -a--va =- >- at reduced p: essure and temperature. During power =pera:Len, the RERS is isolated f::: :he ROS by motor-opera:ed valves.

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         ,.                                                            .   . e..u.e R.a-The Safety In;ecti:n System (SIS) is cperated felieving a COA to                                                         65 keep the reacter :::e : vered with water (Secti:n 6.3).                                               The valves affecting containment isolation in the b=ren injectie: path to the RCS cold legs are therefore designed to = pen upon receip: Of a Safety Injectica Actua: ion Signal, ' All other valves (except in the 10v head saf ety injecti:n ('_HS!) header to the RCS cold legs) are n::: ally closed and 0;ened as necessary by the con::01 reen =pera:c: after an pi

(_) acciden: has cc:urred. MM

NIF 6.2-120 3-7-80 The high head safety injection line to the Reactor Coolant System cold legs (boron injection line) is provided with two normally closed, remotely controlled metor-operated isolation valves in parallel outside the contain=ent and one check valve inside the containment. A separate post-accident high head recirculation header feeding the cold leg injection branch lines is provided with one normally closed, remotely controlled motor-ope.ated isolation valve outside the containment and one check valve inside the containment. In addition, there is a 1-inch line connecting to the boron injection line betwa:n the penetration and the isolation valve outside the containment bypassing the boron injection tank. This line is supplied with a normally locked closed manually-operated isolation valve. O, Am The high head safety injection lines to the RCS hot legs are each provided with one normally closed, remotely controlled motor-operated valve outside the containment and one check valve in each header inside the containment. The LHSI lines consist of three headers outside the containment supplied by both low head saf ety injection pumps. One LHSI header to 68 the RCS cold legs is provided with two parallel nor= ally open, re=otely controlled motor-operated isolation valve outside the containment and one check valve in each branch line to the cold less inside the containment. Two LHSI headers to the RCS hot legs are i provided each with one normally closed remotely controlled motor-operated isolation valve outside the containment and one check valve l in each header inside the centainment. l 1,

      -, . . , -     ,      ,-    . - - . - , . _ . , - . . . _ . , . - - - . , -- --. - - -----.,         c  _ .~ .

4 i

  .                                                                                 NIT      6.2-121 11-3-76 Q(s These concain=ent isolation arrange:ents confor= with tha single i

f ailure criteria specified in Section 6.2.4.1 and also .tllow the SIS to perform its design function. i

6. Reactor coolant pu:p seal water supply 3

These lines are each provided with a check valve and a nor= ally open manual isolation valve inside the containment and normally open canual isolation valve outside the containment. In addition, there is an additional check valve inside the containnent- which is not missile protected. The two isolation barriers are the check valve inside the contain=entL and the closed portion of the Chemical and Voluze Control System on O , , \~/ the discharge side of the charging punps. The piping f cm the check t valve inside the containment to the manual isolation valve outside the containment is designed to Class I of INSI 331.7, and the piping from the =anual valve to the charging pump discharge is designed to Class II of ANSI B31 7.

                           'Jater is' pu ped through these lines, through the reactor coolant pu=p seals and into the RCS during normal operation and safety injection.

Thus these lines renain open after receipt of a safety injection signal and the flow contributes to the SIS flow to the RCS while protecting the reactor coolant pu=p seals.

            -)                                                                  -

i

NIT 6.2-122 11-3-75 65 7. Quench spray, recirculation spray, and casing c cling pu=p discharge o lines 65 The Centain=ent Depressurization System cperates after an accident to depressurize the containment. The valves in the lines f == the quench s, pray and outside recirculatica spray pumps are the:efore designed to be opened upon receipt of a centainten: depressurizatica (high-high centain=ent pressure) signal if they are not already open. The quench spray pump discharge lines are provided with a check valve inside the contaitrent and one normally clcsed, remotely con::elled 41 motor-operated valve outside the containment. This =otor-operated valve opens upon receipt of a containment depressurization (high-high containment pressure) signal. The two isolatica barriers are gg provided for these penetraticas by the check valve and the motor-V operated valve. The outside recirculation spray pump discharge lines are p cvided with a check valve inside the containment and a nor= ally open, re=otely controlled =c:c -operated valve en: side the centainnen:. The two isolatica barriers are provided by the check valve inside the contain=ent and the closed system outside the centainment. This t closed systes includes the recirculation spray pumps and their casings. The syste= piping conforms to Class !! cf ANSI 331.7, ths recirculation spray pumps conic:m to Class II of the Nuclear Pump and 65 Valve Code, and the recirculation spray pump casings conic = to ASMI Section III 3. t C--) E

               ,-    _ -       --     , , . . - . ,-m ,, _._

( NIF 6.2-123 11-3-!2 I'T

     \_/

The casing ecoling pu=p discharga lines tereinate at the suction to the outside recirculation spray pu=ps. These lines are provided with a check valve, one nor: ally open re:::ely cen: 011ed =ctor-cperated valve, and one normally e.csed re=c:ely con::elled 20ter-eperated _ w valve nu: side the centa a. The isola:Len barriers are the check valve, two me:or-ope valves, and the elesed outside recirculation spray pump suction piping as discussed in Section 6.2.4.2.

8. Lev head safety injection pump and outside recirculatien spray pump suctica lines special confideration given to the icv head and recirculation spray i
       ]       pump inlet lines which take suction fro: surps inside the centainment 1           results   in a conservative design and use of highly reliable 65 cc=penents in a single valve a::angement which is enclosed in a special valve pit. The major portion of the piping is buried in the reinforced concrete base cat, and only a sher: length of piping exists between the =at and the isolation valve. The single valve is 65 equipped with a highly reliable re=ote opera:or. If a failure occurs in this suctica line, the valve pit beco es ficoded. This provides a water seal between the contain=ent and the outside at= sphere which prevents leakage into or out of the centainment. The design of this portica of the installation is cc patible with letters           f:==   the Advisory Cc=nittee on Ret:ter Safeguards ' " ," *. previsicas fe             65 detecting leaks in       these   su:: ion  lines     are   described     in

() Sections 6.2.2. and 6.3. s

NIT 6.2-124 11-3-75 The isolation valve at the suction of the outside recirculation spray

     ,)                 pu=ps is a ner= ally open, recotely controlled, =ctor-operated valve.

The isolation valve for each LHSI pu=p suction penetration is a nor= ally closed, remetely centrolled, =ctor-operated valve. 65

9. Tuel transfer tube 63 A 20-inch CD fuel transfer tube in the fuel transfer penetration between the refueling canal inside the contain=ent and the spent fuel pit is fitted with a blind flange inside the containment and a ner= ally closed gate valve in the transfer canal outside the contain=ent to preven: ,

leakage through the transfer tube during accident conditions.

10. Dead weight pressure calibrator The line to the pressurizer dead weight pressure calibrator is provided n

(_ vith two nor= ally closed, ad=inistratively controlled, =anual isolation valves outside the contain=ent. This line is not nor= ally used during station operation. Branch lines intersecting between isolation barricts consist of leakage

            =enitoring connections that are previded with nor= ally closed valve- and caps.

Leakage =enitoring connecticas are designed to the same criteria as their i respective =ain lines. l 65. l The reactor coolant letdown line has a branch with a ner= ally closed relief valve (Tigures 9.3.4-3, 6). A te=perature ele =ent is provided to moniter i leakage dovnstrea= of the relief valve, and the relief valve set pressure exceeds the test pressure of the contain=ent. Therefore, no isolation barrier is required. \

NIF 6.2-125 3-7-80 L' hen internal closed loop systems represent a barrier for contain=en: c isolstion, the contain=en: penetrations, the piping inside the centainment, and the piping up to and in:1uding the iscla: ion valves outside the containment are designed in accordance with Seismic Class 1 criteria.

            !he definition'of Seis=ic Class 1 criteria is in Section 3.2.1. Table 3.2.1-1 lists the seis=ic criteria for s:::ctures, systecs, and co:ponents.

The containment isolation syste= valves are protected from the effects of pipe whip by separation, physical barrier, and by the applica ics of pipe whip restraints. Dasign basis breaks are postulated in ths high energy piping in accordance with Section 3.6 and NRC Regulatory Guide 1.46 as explained in the response to 65 Y l( Comment 3.19. For the main stes= and feed ster lines, whip restraints are designed which eliminate any possibility of damage to an isolati:n valve from pipe whip. Additional restraints or barriers are supplied, as required, to prevent damage to the isolation valves and related piping from a break in any other high energy line. The following contain=ent penetrations are .dentified as open to the containment with a check valve inside and a single valve outside subject to active failure:

1. ' Quench spray
2. Outside recirculation spray discharge SS
       >Q
       %)          .

1 i I 1 N l

N1F 6.2-126 3-7-80 Note, however, that there is no penetration with a check valve inside and a O single valve outside subject to single active failure which is connected to ncnseismic Class I piping or components. Leakage into the containment for 2.tose containment penetrations identified above is prevented as described below. Ine suction lines to the outside recirculation spray pumps are sealed against inleakage by a head of water in the containment sump. The Outside Recirculation Spray Syste= is a closed loop outside the centainment and is Seismic Class I throughout so that although it is open to 65 the containment on the inside, failure of an isolation valve does not result in inleakage to the containment. .

*m
     . Additional automatic valves are provided for the air ejector vent, instrument l

air return line, end the containment radiation menitoring return line. These I valves appear in Table 6.2-34 which lists all containment isolatien valves. The check valves used in the Quench and Recircule.icn Spray Systems are of the same design. They a e cett seated swing check valves. Closing force is p;cvided by external reighte of lever arms located on both sides of the valves. The weights are initially set at the factory to hold the discs closed with 2 psi dif f e rential pressure in the norms 1 flow direction. Once open, reseating is expected to occur at about 0.5 psi. The opening and reseating pressures are adjusted by moving the external weight along the weight arm. Opening and reseating pressures are not independently adjustable. O v

VEPC0 t' ORTH ANNA UNIT 2 NCEG-0588 90-DAY REVIEW REVISION 4 SEPTEMBER 3, 1981 VIRGINIA ELECTRIC AND POWER COMPANY O THIS REVISION REPLACES REVISION 3 IN ITS ENTIRETY v

O VEPCO NORTH ANNA POWER STATION UNIT 2 o NUREG-0588 REVIEW O VIRGINIA ELECTRIC AND POWER COMPANY

1 l VEPCO NORTil ANNA UNIT 2 NUREG-0588 REVIEW i I 1 1 1 4 1 l i G VIRGINIA ELECTRIC AND POWER COMPANY

b

 !                                                                   TABLE OF CONTENTS

(} NUREG-0588 REVI" NORTil ANNA POWER ST/ .dN UNIT 2 Section Titic Page INTRODUCTION . . . . .. . .. . ... . .. ... . . . . I-1 1 DISCUSSION . . . . . .. . . . .... ......... . 1-1 1 1 ESTABLISl! MENT OF Tl!E QUALIFICATION PARAMETERS FOR DESIGN BASIS EVENTS (DBE' . . . ... ... . . . . 1-1 1.1 TEMPERATURE AND PRESSURE CONDITIONS INSIDE CONTAINMENT - LOSS-0F-COOLANT ACCIDENT (LOCA) . . . . 1-1 1.2 TEMPERATURE AND PRESSURE CONDITIONS INSIDE CONTAINMENT - MAIN STEAM LINE BREAK (MSLB) . . . . . 1-2 1.3 TIIE EFFECTS OF CIIEMICAL SPRAY . . ... . . . . . . . 1-2 1.4 RADIATION CONDITIONS INSIDE AND OUTSIDE CONTAINMENT . . . .... . ... . .. . .. . . . . 1-3 1 j 1.5 ENVIRONMENTAL CONDITIONS FOR OUTSIDE CONTAINMENT . . 1-G I () 2 QUALIFICATION METIIODS . . .... . . .. . .. . . . . 2-1 1 2.1 SELECTION OF METl!ODS . . . ... . .. . .. . . . . 2-1 1 2.2 QUALIFICATION BY TEST . . . .. . ... . . . . . . . 2-1 2.3 TEST 7L;.ENCE . . . . . . ... ... ... . . . . 2-3 j 2.4 OT1IER QUALIFICATION METI!0DS . . . ... . .. . . . . 2-4 3 MARGINS . . . . . . . . . . . ... ... .. . . . . . 3-1 4 AGING . . . . . . . . . . . . ... . .. . . . . . . . 4-1 1 5 QUALIFICATION DOCUMENTATION . ... ... . . . . . . . 5-1 C INSTALLATION INTERFACES . . . ... ... .. . . . . . (Daleted) 1 7 RESPONSE TO SUPPLEMENT 2, IE BULLETIN 70-01B . . . . . (Deleted) 1 8 ZONE CONDITIONS . .. . . . . .. . .. . .. . .. . . (Deleted)  ! 9 MASTER LIST . . . . . . . . . ... . .. . . . . . . . 9-1 ( ' ! REVISION 4 NA-2 i September 3, 1931

   - - . . - _ _ _ . .         _~.-._ _ . _ _ _ . -              . . - . _ _ . . _ _ . . -                         - _ , . _ - _                , -
                                                                                                                               -. --        . - .                     . _ = -

TABLE OF CONTENTS (Cont). () Section Title Paac 10 QUALIFICATION AND EVALUATION WORKSi!EETS . . . . . . . 10-1 11 REFERENCES . . . . . . . . . . . . . . . . . . . . . . 11-1 4 12 CONCLUSIONS . . . . . . . . . . . . . . . . . . . . . 12-1 BOUND SEPARATELY 13 TMI MODIFICATIONS . . . . . .. . . . . . . . . . . . 13.1-1

13.1 INTRODUCTION

.                                         . . . . . . . . . . . . . . . . . .                        . 13.1-1 13.2 QUALIFICATION AND EVALUATION WORKSIIEETS                                                                . . . . . . 13.2-1 13.3 CONCLtSIONS                                      . . . . . . . . . . . . . . . . . . .                            . 13.3-1

13.4 REFERENCES

. . .                                             . . . . . . . . . . . . . . . . .                    . 13.4-1 O

i I

O REVISION 4 NA-2 il September 3, 1981

l l i l 9 \ l 1

                                                                                                                                       )

l i l INTRODUCTION I l i 4 9 1 I i l I i i 1 i i h 4 i 4 O NA-2 September 3, 1981 6, Revision 4 i

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B O INTRODUCTION The review of electri al equipnent qualification contained in this report is supplied in response to the February 19, 1980 NRC letter to neartern operating plant licensees. That letter required that the previous subnittals of reports for Class IE electrical equipment qualification be cuspared against the latest version of the draft EUREG-0588. The earlier reports on environnent qualification of Class IE electrical equipment were generated in response to IE Bullefin 70-01. These reports were forwarded to the NRC by VEPCO letters dated Septenber 17 and Novenber 2, 1070; and February 25, 1980. A previous report on NUREG-058S was issued by VEPCO letter dated June 20, 1980. This report has been divided into the following sections: Introduction Discussion This section includes a point by point response Section 1-7 to NUREG-0588 and applicable questions from IE Bulletin 70-01B, Supplement 2. Zone Conditions Environnental Zone Descriptions are provided in the SER Response. Master List This section includes the conputerized Master Section 9 List of all equipnent required to operate for nitigation of the postulated accidents. The Master List gives the equipnent nark number and description, nanufacturer, systen, 1 accident function, and file number. The file number refers to a file in which is located the equipment specification, quallrication docunentation and zone definition. The file number is also the qualification sheet page number. Any IE equipnent which is not required to operate in a harsh environnent to nitigate an accident does not have a fi!c nunber or qualification sheet and is indicated , by NA on the Master Lists. I j The Master List provided has been sorted on the five following fields: A. File Number l B. Equipnent Description C. Manufacturer - (} D. Systen i REVISION 4 NA-2 I-1 September 3, 1981 e ~rr -,- u - - ,, -a .,,--a--,-- -.-.,----n,cqw - a ,- - --n-. --- - - - - - - , - 7- . - - - , , - . , e---.--w- - -

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4 E. Mark Number A sheet defining the various accident functions is also provided. Qualification and This section includes all equipment which will Evaluation Tables see a harsh environnent while performing its Section 10 function to mitigate an accident. On single sheet tables, the left column on the sheet lists equipment informati-,, accident function, description of accident environment, and operability requirenents. The right column gives the environnent to which equipnent is quallfled, operability denonstrated, qualification documents, and deficiencies and reconnended solutions. References The reference shact includes listing of all Section 11 the qualification docunentation referenced in the report. Conclusion A detailed conclusion which I!=ts all Section 12 outstanding itens and provides a replacement, testing schedule and/or justification. The conclusion section identifies all outstanding itens. Included in tnis section is the l f- justification for contin *.cd plant operation ()s along with a replacenent or re-test schedule. Revision 4 of this report is the result of the licensee's continuing eva:uation review of (1) Qualification of the safety related Class IE equipnent in accordance with NUREG-0588, (2) The staffs criteria issued with the SER, and (3) Subsequent clarification meetings held on July 7-10, 1981. As part of this revision the Qualification and Evaluation Sheets, the master list, the references and the Conclusion section have been revised to reflect the updated qualification status. I m i REVISION 4 NA-2 I-2 Septenber 3, 1981

            , ~ - - - - _ _ - - - -      '

9 DISCUSSION h NA-2 September 3, 1981 Revision 4

SECTION 1 (~h ESTABLISINENT OF TIIE OUALIFICATION PARAMETERS FOR DESIGN BASIS EVENTS (DBE) This review of environnental qualification of Class IE electrical equipment and components for North Anna Unit 2 is bascd upon the guidelines outlined for Category II plants as defined by NUREG-0588, " Interim Staff Pusition on Environmental Qualification of Safety-Related Electrical Equipment." NUREG-0588 is in draft form at this time; the version used for this review was issued to operating license applicants by an NRC letter on February 5, 1980. In addition to the guidelines listed in pages 5 through 17 and Appendices A through D of the subject document, discussions between VEPCO and NRC staff were considered in this review. Differences between the NUREG-05b2 guideli.ies and the methods specifically enployed in the reevaluation are detailed below. The numbers in parentheses following the specific paragraphs reference the NUREG-0588 section numbers. 1.1 TEMPERATURE AND PRESSURE CONDITIONS INSIDE CONTAINMENT - LOSS-0F-COOLANT ACCIDENT (LOCA) The tine-dependent tenperature and pressure established for the f-' design of the containnent structure are described in FSAR (_,g/ Section G.2.1. These paraneters have previously been found acceptable by the NRC staff, and are used for equipment qualification. (Ser NCREG-0588 Section 1.1, Subsection 1) The methods used to calculate mass and energy release rates following a loss of-coolant accident (LOCA) and a main stean line break (MSLB) have been accepted by the NRC for the containnent functional design, as noted in the North Anna Safety Evaluation Report NUREG-0053 (Section G.2.1 for a LOCA, and Section G.2.1 of Supplenent 3 for an MSLB). The mass and energy release rates for , both the LOCA and MSLB were calculated with the LOCTIC computer code using data fron the Westinghouse REFLOOD code for the reflood phase of the LOCA, and using data from the Westinghouse FROTil code for the post reflood phase of the LOCA. (Sect 1.1, Subsect 1) LOCTIC is also an equivalent industry code to CONTEMPT-LT and, therefore, is deened acceptable for calculating containment transients. The assunption of partial revaporization, which was not used in the North Anna MCLR analysis, is now allowed. Lack of use of this assunption increases the conservatism of the present MSLB analysis. (Sect 1.1, SuFsect 1) The time-dependent tenperature pressure criteria for a LOCA are established by methods described in Sect 1.1 above; NUREG-0588

 ,       (~)  Section 1.1, Subsections 2, 3, and 4 do not apply for this
         \_/

REVISION 4 NA-2 1-1 Septenber 3, 1981

review. () 1.2 IEMPERATURE AND PRESSURE CONDITIONS INSIDE CONTAINMENT - MAIN STEAM LINE BREAK (MSLB) Environmental profiles for an MSLB were developed for a plant-specific model in the FSAR and have been reviewed and accepted by the NRC staff. The model utilized for the MSLB environment is described in Section 1.1 above. (Section 1.2, Subacet I through the suitability of LOCA equip,ent qualification as a basis for qualification to MSLB is documented in FSAR Section 3C and the response to Comment 7.17, and has been revlemed and accepted by the NRC staff. (Sect 1.2, Subsect 5) For nost equipment, heat transfer calculations showed that the pcak surface tenperature of the conponent did not exceed the 1,0CA qualification tenperature. For that equipnent for which the peak surface tenperature was shown to exceed the LOCA qualification tenperature, further investigations were performed to show that this equipnent maintained its functional capability at the higher tenperature calculated for tha MSLB. This procedure was found acceptable to the NRC ctaff  ; stated in Section 3.10.2 of Supplement No. 8 to the Safety Evaluation Report (SER). (Sect 1,2, Subsect 5) () The peak equipnent surface tenperatures have been calculated for an MSLB using nethods which result in higher tenperatures than those nethods listed in Appendix B of NUREC-0588. Appendix B, Iten 2.b, states "A convective heat transfer coefficient should be used when the condensing heat flux is calculated to be less than the convective heat flux." The North Anna-2 equipnent tenperature transients were calculated by adding the heat flux fron condensation and convective heat transfer. This calculation results in a slight overprediction of heat transfer to tLe equipment and is therefore a conservative assunption. (Sect 1.2, Subsect 5) Appendix B, Iten 2.b, of NUREC-0588 also gives a correlation of the velocity as a function of the blowdown rate and containment volune. A constant velocity of 30 ft/sce was used in the North Anna-2 analysis. For the North Anna-2 blondown entes, the correlation gives a velocity greater than 30 ff/sce for a few seconds after the rupture, ilowever, the velocity continually decreases with time as the blowdown rate decreases and is less than 30 ft/see after the first few seconds. Use of a constant value of 30 ft/see is conservative with respect to heat transfer to the equipment. (Sect 1.2, Subsect 5) 1.3 TIIE EFFECTS OF CIIEMICAL SPRAY f- The effects of caustic spray =cre addressed in Section G.2.3 of (,,g/ the FSAR. Single failure was considered, so that the nost severe REVISION 4 NA-2 1-2 Septenber 3,-1981

i caustic spray environment was addressed and is reflected on the equipment / component qualification and evaluation sheets.

        /~              (Sect 1.3)

, \_)h 1.4 RADIATION CONDITIONS INSIDE AND OUTSIDE CONTAINMENT The radiation environment for qualification of equipment and conponents is based on the normally expected radiation environment over the life of the plant (40 years), plus that , 1 associated with the most severe design basis accident (DBA). The radiation dose rates are based upon results obtained from the NUREG-0578, Section 2.1.6b design review. Consideration was given to source strength, source volume, atructural shielding arrangements, and piping locations. (Sect 1.4) The analysis to determine the LOCA radiation environment at North , Anna is based on the instantaneous release from the fa.,1 to the atnosphere of 100 percent of the noble gas, 50 percent of the iodines, and 1 percent of the remaining fission products. The only non-LOCA accident considered for radiological equipnent gutlification is an MSLB. The analysis to deternine the MSLB endiation environnent in based on instantaneous release from the fuel of 5 percent of the noble gases and 5 percent of the lodines in the fuel cladding gap. Additionally, the steam generator activity prior to MSLB was assumed to be that due to a 10 gpm primary-to-secondary leak with 1 percent failed fuel. (Sect 1.4, Subsect 1) A (_) The radiation qualification for equipaent required to operate for - an MSLB is in excess of the calculated radiation environnent using NUREG-0588 source terns. Csing the NUREG-0588 LOCA source tern, the containment centerline 120-day integrated dose for LOCA is calculated to be 1.8 x 107 rads. When added to the 40 year nornal operating dose of 3x 107 rads, the total dose is 4.8 x 107 rads, which is the value used in this review for conponents inside the crane wall. The use of LOCA doses for radiation qualification for MSLB results in conservative doses for MS*.B radiation qualification. (Sect 1.4, Subsect 1) The analysis for the radiation environment assumed a release unifornly distributed in the containnent, which is consistent with NUREG-0588, Appendix D, Page D-5, for a PWR. (Sect 1.4, Subsect 2) See response to the above paragraph which refers to NCREG-058, Sect 1.4, Subsect 3, Description of Activity. The analysis for the LOCA or MSLB radiation environment does not take into account the renoval of airborne activity in the containment by the engineered safety features (ESF) systems c.- leakage. It does accour.t for radioactivity decay. It also , assumes that 50 percent of the iodine released from the fuel plates out in a very short time in accordance with Regulatory (} Guide 1.4. The present analysis results in igher nirborne REVISION 4 NA-2 17 September 3, 1071

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activities than those calculated by the nethod of NUREG-0588, Appendix D, and is therefore conservative. (Sect 1.4, Subsect 4) The present LOCA and MSLB radiation environnent assumes 50 percent instantaneous plate out of the iodine released from the core in accordance with Regulatory Guide 1.4. This assunption is conservative as stated in NCREG-0588, Page D-G. (Sect 1.4, Subsect 5) The present LOCA and MSLB radiation environnent calculates the dose and dose rate at the center point of the containnent; these values are used for unshielded equipment qualification. The dose rate for unshielded equipnent is evaluated with respect to dose contribution of location-dependent sources, such as the sump water. (Sect 1.4, Subsect G) As installed all cables used in the North Anna-2 containments, except the 300 V instrument cable supplied under Purchase Order No. NA-2G5/1265, and the electrical penetrations including splicing material, are qualified to 2 x 108 rads. When the beta dose was dded to the presently calculated ganna dose in accordance with NEREG-0588, the total dose did not exceed 2x 108 rads; this qualification affects all cables which are required for accident nitigation. The 2 x 108 rads dose has been found acceptable. (Sect 1.4, Subsect 7) ShicIded conponents were qualified based on a ganna source in fg accordance with NUREG-0588. (Sect 1.4, Subsect 8) (.) The beta dose to unshicided equipment and conponents has been evaluated for the 300 V .nstrunent cable and electrical penetrations. NRC IE Bulletin 70-01B, Section 4.1-2, provides anplifying instructions to NCREG-0588 with regard to the effects of beta radiation dose to electrical equipnent. IE Bulletin 70-01B, Section 4.1-2, states that "the conservative beta surface dose of 1.4 x 108 rads reported in Appendix D of NCREG-0588 would be reduced by approxinately a factor of 10 withir. 30 nils of the surface electrical cable insulation of unit densi+y. An additional 40 nils insulation (total of 70 mils) results in another factor of 10 reduction in dose. Any structures or other equipment in the vicinity of the equipnent of interest would act as shielding to further reduce beta doses. If 11 can be shown, by assuning a conservative unshielded beta su.fsce dose of 2.0 x 10" rads and considering the shielding fa tors discussed here, the beta dose to radiation sensitive equipnent internals would be less than or equal to 107. of the totti ganna dose to which an iten of equipnent has been qualified, then that equipment or conponent may then be considered qualified for the total radiation environnent (vanna plus beta)." Since the 300 V instrunent cable and cacetrical penetrations have been qualified to a ganna dose of I x 108 rads, they can be considered qualified for the total radiation environment (ganna plus beta) if 70 nils

~N of insulation and/or jacketing is present. Review of equipnent (d   and conponents at North Anna-2 indicater that this requirenent is NA-2                                                                                             REPISION 4 1-4                           Septenber 3, 1981

satisfied. (Sect 1.4, Subsect 0) The integrated dose calculated for the North Anna-2 containnent (~)/ \- paint coating is based on a ganna source only. Addition of the beta dose to the presently-calculated ganna dose results in a calculated dose in excess of 1x 108 rads. (Sect 1.4, Subsect 10) North Anna paint coatings that were used on steel are quallfled for 1 x 10" rads. Paint coatings used on concrete were tested to 1 x 108 rads, and other data for tested coatings comparable to coatings used for centainment Indicated that good results were obtained 'or 1x IOS rad dose. (Sect 1.4, Subsect 10) The present analysis to deternine the radiation environment for Energency Core Cooling Systen (ECCS) components is in accordance with NUREC-05SS. (Sect 1.4, Subsect 11) During the evaluation of NUREG 0583, a radiation " threshold" of 10,000 rads was used. All equipnent exposed to radiation doses less than 1.0E5 were evaluated generically through a naterial evaluation rather than an individual specific qualification evaluatior. This threshold value was based on an engineering review of naterial susceptibility to radiation danage as presented in existing literature (Ref. 1 through 5). Rosiew of the above litarature indicates that the platics and clastomers are used in the forn cf gaskets, o-rings, seals, hoses, diaphrans, electrical insulation, supports and potting compounds in power plant [') electrical and instrunentative equipment. They have a ninimun threshold of 1.0E5 Rads and in nost ,ses 1.0EG or better. The only conponent which was identified to have a lower threshold (of the crder of 1.0E4) are the integrated circuits. Ilowever, the integrated circuits used in the instrumentation equipnent such as transnitters have been or will be qualified for the required dose by type testing. Lubricants ar.d greases used in safety related electrical and instrumentation equipnent have a threshold of 1.0E5 or better. This was deternined by a survey of the nost connonly used lubricants by equipnent suppliers. It is therefore concluded that a threshold of 1.0E4 "hich is one order of magnitude less than the lowest value of 1.0E5 cited above is vary conservative. Therefore, equipment located in areas where the integrated radiation dose is less than 10,000 Rads do no t require specific qualification evaluation. See responses to (Section 1.4, Subsections 7-12) (Section 1.4, Subsect, Qualification Acceptance 13) A conservative analysis of equipnent has been used as detailed in responses to Section 1.4, Radiation Conditions Inside and Outside Containnent. (Section 1.4, Subsect 14)

References:

1. J.F. Kircher and R.E. Bowan, " Effects of Radiation on Materials and REVISION 4 NA-2 1-5 Septenber 3, 1981

Components," Reinhold, 19G4. (' ) 2. REIC Report No. 21, 'The Effect of Nuclear Radiation in Elastomeric and Plastic Components and Materials," Battelle Memorial Institute, 19G4.

3. W.W. Parkin.on and O. Sipnan, "The Use of Plastics and Elastomers in Nuclear Radiation, " Gale Ridge National Laboratory, published in Nuclear Engineering and Design, Vol. 17, 1971.
4. EPRI Research Project Report NP-1558, "A Review of Aging Then;y and Theory and Technology," 1980.
5. Table C-1 " Thermal and Radiation Aging Degradation of Selected h; ate -ials" Appended to DDR Guidelines, Enclosure 4 to IE Bulletin 70-01B.

1.C ENVIRONMENTAL CONDITIONS OUTSIDE CONTAINMENT The = energy line break (l!ELB) analysis of equin.nent located r cor+ainnent is addressed in FSAR Appendix C, and

             . S7.17.          Although spccific enviroanental conditions and 4tions are not identified in these documents, we have utilized postulated worst-case conditions for the equipment qualification review.      Required equipment wht we        qualification has not been demonstrated to these worst case conditions has been identified.

I, sone cases, specific environmental conditions nay be developed to denonstrate the acceptability of qualification to less severe {}/ x- environnents. (Sect 1.5, Subsect 1) The equipment required for accident nitigation located in general plant areas hac been identified, as well as ventilation systems utilized in these areas and 40 year and accident radiation levels. (Sect 1.5, Subsect 2) Equipnent located in areas where a loss of the environnental support systen may expose sone equipnent to environnents that exceed t h e i .- qualified linits are provided with ambient tes,.crature norlto.s, which will alert the operator that abnormal conditions exist, and pernit an assessment of those conditions in order to determine corrective action. (Sect 1.5, Subsect 3) D) b REVISION 4 NA-2 1-G September 3, 1D81

SECTION 2 QUALIFICATION METl!0DS 2.1 SELECTION OF METl!0DS The qualification nethods used conforn to the requirenents defined in IEEE Standard 323-1971, except for equipnent procured prior to acceptance of IEEE-323 by the Atonic Energy Connission, or equipnent qualified under the current daughter standards. A discussion of the qualification nethods used is found in FSAR Section 3.11 and the response to NRC Questions referenced therein. (Sect 2.1, Subsect 1) Testing is the prinary method of qualification. Analysis has been used to verify or anplify test results. For equipnent inside the containnent exposed to MSLB conditions, special analytical nethods were used in conjunction with type testing. Arrherius methodology was the prinary neans used to address thernal aging considerations. The ten degree Celsius (10*C) rule was used to extra polate test results for deternination of post-accident operability. (Sect 2.1, Subsect 2) The basis for the tine interval required for operability of a component is an analysis of the accident and the function of the component. The resulting operability requirenents under harsh s conditions are identified on the qualification and evaluation s-) sheet for the component. Operability and failure criteria are discussed in Section 2.2; nargins are discussed in Section 3. (Sect 2.1, Subsect 3) Equipnent i~nat must function in a harsh environnent resulting from en accident in order to nitigate the accident will be qualified to demonstrate its operability for the tine required by test or as described in Sections 2.2 and 2.4. (Sect 2.1, Subsect 3a) Analysis of equipnent that need not function in order to nitigate an accident for its affects on plant operation will be handled by response to NUREG-0515 "TMI-2 Lessons Learned Task Force Final Report" when it  :. inplenented by the NRC. (Sect 2.1, i Subsect 3b, 3c) i The criteria used for North Anna-2 cavironnental qualification of equipnent or components subject to events other than DBA are that qualification nust be denonstrated by actual tests, analysis, or operating history, or a conbination thereof. (Sect 2.1, Subsect 4) 2.2 QUALIFICATION BY TEST Operability requirements are defined in the procurenent docunents. Any failures identified during the environnental f~} v REVISION 4 NA-2 2-1 Septenber 3, 1981

qualification effort are reviewed and evaluated relative to their ,_s effect on the ability of the component to perform its required () function. (Sect 2.2, Subsect 1) The results of the tests demonstrated that the equipment can perforn its required functions. The subject of nargins is addressed in Section 3. (Sect 2.2, Subsect 2) The qualification methods and documentation ccncerning test procedures, when not specified in accordance with Section 5.2 of IEEE-323-1971, were judged to be acceptable as they specify the accident-based environmental conditions in which the equipment may be expected to function. (Sect 2.2, Subsect 3) Separate profiles were d weloped for a LOCA and an MSLB, as described in the FSAR, Sections 15.4 and S7.17. (Sect 2.2, Subsect 4) The flood level has been addressed as referenced on the equipment /cenponent qualification and evaluation sheets. (Sect 2.2, Subsect 5) The tenperature to which equipment is quallfled, when exposed to the simulated accident ervironnents, is verified by temperature neasurenents consistent with the specified requirements. For example, if anblent tenperature is specified, test reports were be revlemed to ensure that anbient tenperature readings were taken during testing to verify the adequacy of the test. (~)N (_ (Sect 2.2, Subsect G) Qualification docunentation was reviewed to ensure that the operability of equipnent (reference Section 2.1.3) was denonstrated. Verification of equipment performance characteristics throughout its range of required operability did uc.t necessarily require verification periodically during testing, n u- was continuous monitoring of the operability status necessarily required. For example, when testing was being performed to sinulate long-tern effects on operability, testing and/or continuous monitoring during the test was not required. Operability of the equipment was verified before and after such testing. (Sect 2.2, Subsect 7) When testing was being perforned to verify performance characteristics over a range of environnental conditions, verification of operability at the nost extrene conditiors denonstrated operability for the intermediate conditions. (Sect 2.2, Subsect 7) The tenperature and pressure conditions at which caustic spray was applied during testing of conponents has been reviewed. Sect 2.2, Subsect 8) The operability status of equipnent in respoase to NUREG-0588 () Section 2.2, Subsection 0, is justificJ above in the discussion REVISION 4 NA-2 2-2 September 3, 1981

l of verification of performance in response to NUREG-0588 Section 2.2, Subsection 7. O (See response to Section 2.E, Subsection 7. (Sect 2.2, Subsce D, Operability Status) Application of expected extremes in power supply voltage range and frequency during testing to extreme environmental conditions was not specified in procurement specifications nor required by IEEE-323-1071. (Sect 2.2, Subsect 10) The expected extremes in power supply voltage and frequency were specified as design parameters for all safety related equipment. The results of an analysis of the 4 kV and 480 V power systems indicate that v nee voltage levels are maintained. (Sect 2.2, Subsect 10) In order to further ensure that adequate voltages exiat on the emergency 4 kV and 480 V systems, a degraded bus voltage protection system has been installed. This system will ensure that the emergency power systen voltage does not remain degraded below 00 percent ( ref erer. ce VEPCO letter to NRC, dated 10/20/78). (Sect 2.2, Subsect 10) The vital bus systen which provides power to safety related instrumentation is powered from a regulated power source designed to maintain a voltage of 118 V 12 percent and frequency of 60 !!z 12 Hz (reference FSAR Section 8.3.1.2). (Sect 2.2, ("_} s- Subsect 10) The 125 Vdc buses are normally fed from batteries that are maintained by battery chargers. All de equipment is specified to operate over the voltage range encountered during normal and accident conditions. (Sect 2.2, Subsect 10) All Class IE electrical equipment is enclosed in NEMA Type 1 through 12 enclosures as defined in Publication No. IC4-1058, thereby guarding against the adverse affects of dust. (Sect 2.2, Subsect 11) Cobalt 60 is considered an acceptabic ganna radiation source for environmental qualification. (Sect 2.2, Subsect 12) 2.3 TEST SEQUENCE The test sequence selected has been reviewed and, when determined to be unjustified, has been identified on the qualification sheets. ( St . 2.3, Subsect 1) Tests performed were reviewed to ensure that postulated environnents were sinulated as closely as practicabin. (Sect 2.3, Subsect 2) The qualification methods and documentation concerning test (a) REVISION 4 NA-2 2-3 September 3, 1981

procedures, when not in accordance with Section 5.2 of IEEE 323-1971, mero considered to be acceptable if determined (} that they specified conditions and equipment operability requirements. the required accident environmental (Sect 2.3, Subsect 3) Any deviation from sequential testing were addressed and evaluated on the applicable qualification sheets. (Sect 2.3, , Subsect 4) 2.4 OTi!ER QUALIFICATION METl!0DS Any deviation from actual qualification testing is addressed on the applicable qualification sheets. (Sect 2.4) 1 i l l O REVISION 4 NA-2 2-4 September 3, .1981 _ . . . _ . _ . _ _ , _ _ - - . . _ _ _ . . _ . . - _ _ . - - _ = - - _ , _ - - - -

Os V SECTION 3 MARGINS i For equipment inside the containment, the discussion and conclusion of margins in the qualification program is discur s . A in Section 3.10.2 of the SER Supplement 8. (Sect 3, Subsect 1, 2, 3) MSLB conditions are more severe than LOCA for all environmental parameters except for radiation. Radiation qualificati- is discussed in Section 3,10.3 of Supplement 9 of the SER. This report uses radiation values computed under the guidelines of NUREG-0578, thus adding to the conservatism of the enveloping parameters. (Sect 3, Sub.ect 1, 2, 3) i All equipnent is qualified for time periods in excess of those required to provide equipment's safety function. The guideline that a minimun of 1-hour duration for qualified life be demonstrated was not pronulgated at the time this equipnent was tested. (Sect 3, Subsect 4) O i REVISION 4 Septenber 3, 1981 ~ NA-2 3-1

O SECTION 4 AGING The area of Aging is addressed in SER response Section 3.7. l l r l l l l l O O REVISION 4 NA-2 4-1 September 3, 1981 I

() SECTION 5 QUALIFICATION DOCUMENTATION Duris.g the review of submitted qualification documentation, when it is determined that actual test data were not submitted (i.e., test summaries and/or certificates of conformance only were subnitted) actual test data was requested. If such data cannot be submitted because it is considered proprietary by the manufacturer, an audit of this data was made. Testing summaries and/or certificates of conformance was not considered acceptable on their own merit. (Sect 5, Subsect 1) A final determination of the acceptability of qualification documentation considered the requirements of IEEE-323-71. (Sect 5, Subsect 1) In preparation of the NUREG-0588 response, equipment was classified into three categories: (Sect 5, Subsect 2)

1. Actual Test Report, or Audits of test data:

Reports supplied detailed information on the test methods. Direct correlation with actual plant environment were made.

            -/                                                                      When this form of docunentation was used to qualify equipnent, a copy of the actual test report or an audit of records was arranged to verify the contents.
2. Summary of Testing:

These docunents provide a summary of the actual test data. In many cases, the acceptability of the equipment ( described was denonstrated.

3. Certification of Compliance:

No deternination of environnental acceptability was made on the basis of the certificate. Vendors were contacted to provide the basis for certifying compliance with the technical requirenente of the purchaser document. If the basis for compliance was a method described in NCREG-0588, arrangements were made for an audit of the data used. t I f O REVISION 4 NA-2 5-1 September 3, 1981

   - . . . . - . . . . _ - .        _ - - _ ~ _ _ . .

k i i fh i l A l l 1 I i i INSTALLATION INTERFACES "This Section Deleted September 3, 1981" i l i f I i G I l l@ NA-2 September 3, 1981 Revision 4

i O 1 i s I 1 I RESPONSE TO SUPPLEMENT 2, i IE 79-01B i .I j

                                         "This Section Deleted September 3,1981" i

1 lO l I l i i O NA-2 September 3, 1981 Revision 4

4 t l 1 i t ZONE CONDITIONS "This Section Deleted September 3, 1981" t f i i 6 i i i i I J 1 J W NA-2 September 3, 1981 Revision 4 1 i f 4

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r k i i l .I 1 ( l . i I I MASTER LIST t j l 1 1 L i l0 - i 1 l NA-2 September 3, 1981 Revision 4

O ' O DATE C/20/81 VIRGINIA ELECTRIC Atl0 POWER CCt1 patly PAGE 1 NORTH AtittA POL'ER STATI0tl UtfIT 2 O EQUIPttENT QUALIFICATI0!4 NASTER LIST FILE / NARK tiUMBER SORT h ORDER '.2345678901234 2-HV-E-4A CHILLER, C0tlTROL AND RELAY R00t1 WESTIllGHOUSE PC088W10 HV 1247 6 01 O 2-HV-E-4B CHILLER, C0t4 TROL AND RELAY ROON WESTIrlGHOUSE PCC88W10 HV 1247 6 01 e

      -      2-HV-E-4C                      CHILLER, C0t4 TROL Atto RELAY R00t1                                              WESTINGHOUSE                  PC088W10                 HV         1247        6         01 2-HV-S-1A                      STRAIT 4ERS, CHILLER R00f1                                                       ELLIOT                        t1AR25104                HV          1299       6         02 2-HV-S-1B                      STRAINERS, CHILLER ROON                                                          ELLIOT                        MAR 25104                HV          1299       6         02 2-HV-F-24                      F'AN, ECUIPt1ENT ROON SUPPLY                                                     AEROVEllT FAN CO.             7-216 Iti F HV                       1241       6         03 2-HV-P-20A                     PUt1P, CHILLER ROUN A/C                                                          BIllGH AN-WIL LI At1E T T E   TBDP                     ?iV         1276       6         04 O-2-HV-P-20B                     PUNP, CHILLER ROON A/C                                                           BINGHAN-WILLIANETTE           TBDP                     HV          1276       6         04 e?

2-HV-P-20C PUt1P, CHILLER R00ft A/C BINGHAN-WILLIANETTE TBDP HV 1276 6 04 2-HV-P-22A PUt1P, CHILLER ROON A/C BIllGH AN-WILLI At1E TTE TF"3P HV 1276 6 04 i r 2-HV-P-22B PUNP, CHILLER ROCN A/C bit 1GH Ati-WI LLI ANETTE TPs. HV 1276 6 04 T O 2-HV-P-22C PUt1P, CHILLER ROON A/C BIttGH Ari-WILLI At1ETTE T E.D P HV 1276 6 04 e)_ 2-DB-P-10A PUNP, CHILLER R00t1 SUt:P ALLIS-CHAlt1ERS TYPE PGZV DB 1421 6 05 . 2-DB-P-10B PUMP, CHILLER ROOM SUMP ALLIS-CHAltfERS TYPE RGZV 00 1421 6 05

             !!GA-20                        CABLE, I/C 250 NCN                                                               OKONITE                       HE0/ETH/PR ED                        1128         8       06 O

NGA-21 CABLE, 1/C 2/0 ANG. OKONITE NE0/ETH/PR ED lite 8 06 e

,            NGB-15                         CABLE, TRIPLEX #4 AWG                                                            OKONITE                       t1E0/ETH/PR ED                       1128         8       06 NGB-16                         CABLE, TRIPLEX #6 AWG                                                            OK0tlITE                      NE0/ETH/PR ED                        1128         8       06 1

g NGB-17 CABLE, 3/C #8 P4G OKONITE NE0/ETH/PR ED 1128 8 06 . U W _tlGB-18 CADLE, 3/C #10 AWG OKONITE NE0/ETH/PR ED 1128 8 06 tlGB-19 CABLE, 3/C #12 ,*.WG OK0tlITE NE0/ETH/PR ED 1128 e 06 NGA-15 CABLE, TRIPLEX 250 t1CN CERRO WIRE NEO XL PLY ED 1359 35 07 NGA-19 CABLE, 2/C 02 AWG CERPO WIRE NEO XL PLY ED 1312 8 08 d- CABLE, 1/C #14 AWG NEO XL PLY ED 1312 8 08 h _NGA-34 CERRO WIRE O O

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t t t DATE 8/2 6 1 VIRGINI A ELECTRIC AND POW 1--40t1PANY PAGE 2 NORTH Attila POWEP STATION L,t4IT 2 O EQUIFMENT QUALIFICATION NASTER LIST h FILE /t1 ARK HUttBER SORT ORDER 12345678901234 HGA-35 CABLE, 2/C #14 AWG CERRO WIRE HEO XL PLY ED 1312 8 08 NGA-35 CABLE, 3/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-37 CABLE, 5/C #14 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08 NGA-38 CABLE, 7/C #14 AWG CERRO 41RE NEO XL PLY ED 1312 8 08 NGA-39 CABLE, 9/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 6 08 NGA-40 CABLE, 12/C #14 AWG CERRO WIRE HEO XL PLY ED 1312 8 06 NGA-44 CABLE, 1/C #12 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-45 CABLE, 2/C #12 AWG . CERRO WIRE HEO XL PLY ED 1312 8 08 NGA-47 CABLE, 4/C #12 AWG CERPO WIPE HEO XL PLY ED 1312 8 08 NGA-49 CABLE, 7/C #12 AWG CERRO WIRE N2O XL PLY ED 1312 8 08 ) c NGA-57 CABLE, 4/C #10 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 2 NGA-77 CABLE, 4/C #10 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 O! NGB-43 CABLE, 2/C #8 AWG CERRO WIRE HEO XL PLY ED 1312 8 08 . NGB-44 CASLE, 2/C #6 AWG CERRO WIRE HEO XL PLY ED 1312 8 08 NGB-45 CABLE, 4/C #6 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 MGA-67 CABLE, 19/C #1o AWG BIW NEO XL PLY ED 1265 2345 09 NGA-68 CABLE, 12/C #16 AWG BIW H"0 XL PLY ED 1265 2345 09 NGA-69 CABLE, 2/C #16 AWG BIW NEO XL PLY E0 1265 2345 09 NGA-70 CABLE, 18/C #16 AWG BIW NEO XL PLY E0 1265 234'i 09 _MGB-35 CABLE, 2/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGB-39 CABLE, 3/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 Of NGB-40 CABLE, 4/C #16 AWG BIN HE0 XL PLY ED 1265 2345 09 9 NGB-55 CABtE, 45/C #16 AWG BIH HE0 XL PLY ED 1265 2345 09 - bs ' _NGA-10 CABLE, 1/C 2000 NCM GENERAL CABLE NE0/ETN/PR ED 1255 8 10 O e Og e

O - C,) DATE 8/20/81 VIRGIllIA ELECTRIC At1D POWER COMPANY PAGE 3 NORTH AtitlA POWER STATI0t1 UNIT 2 bs EQUIPNEllT QUALIFICATION NASTER LIJT h, FILE /t1APK #1Ut1 DER SORT ORDER 12345678901234 HGA-12 CABLE, 3/C 1000 NCN ALUNINUN art 10R GENERAL CABLE HCO/ETH/PR ED 1255 ', 10 a t!G A-13 CABLE, 3/C 4/0 AWG. ALUNINUt1 art 10R GENERAL CABLE I4E0/ETH/PR ED 1255 S 10 h NG,A-3 CABLE, TRIPLEX 1000 NCH GLi'ERAL CABLE I4E0/ETH/PR ED 1255 8 10 NGA-4 CABLE, 3/C 500 NCH ALUt1INUM art 10R GENERAL CABLE HE0/ETH/PR ED 1255 8 10 NGA-5 CABLE. 3/C 1250 NCH STEEL art 10R GENERAL CABLE HCO/ETH/PR ED 1255 8 10 HGA-6 CABLE. 3/C 1250 NCH ALUNINUM Apt:0R GENERAL CABLE NE0/ETH/PR ED 1255 8 10 NGA-9 CABLE, 1/C 1500 NCN GEttERAL CABLE HE0/ETH/PR ED 1255 8 10 HGA-13 CABLE, 3/C 4/0 AWG OK0llITE ED 1375 8 11 f.- 11GA-14 CABLE, TRIPLEX 4/0 AWG OKONITE ED 1375 8 11 HGA-3 CABLE, TRIPLEX 1000 t1CH OKONITE 1375 8 11 e? ED [ c NGA-4 CABLE. 3/C 500 NCH OKONITE ED 1375 8 11 O. HGB-11 CABLE. TRIPLEX 2/0 AWG OK0llITE HE0/ETH/PR ED 1304 8 12 e?i _ NGB-12 CABLE. TRIPLEX #1 AWG OKONITE HE0/ETH/PR ED 1384 8 12 bf. 1384 8 h. HGB-5 CABLE. TRIPLEX 500 NCH OKONITE NE0/ETH/PR ED 12 NGB-7 CABLE. TRIPLEX 250 NCt1 OKONITE HE0/ETH/PR ED 1384 8 12 NGA-67 CABLE, 19/C #16 AWG CERRO WIRE NEO XL PLY ED 1392 123456 13 NG'.-68 CABLE, 12/C #16 AWG CERRO WIPE NEO XL PLY ED 1392 123456 13 NGA-70 CABLE, 18/C #16 AWG CERRO WIRE HE0 XL PLY ED 1392 123456 13 HGB-35 CABLE, 2/C #16 AWG CEPRO WIRE HE0 XL PLY ED 1392 2345 13 _ HGB-39 CABLE, 3/C #16 AWG CERRO WIRE HE0 XL PLY ED 1392 123456 13 HGB-11 CABLE. TRIPLEX 2/0 AWG , GENERAL CABLE HE0/ETH/PR ED 1256 8 14 HGB-12 CABLE, TRIPLEX #1 AWG GENERAL CABLE HE0/ETH/PR ED 1256 8 14 g HGB-5 CABLE. TPIPLEX 500 NCH GENERAL CABLE NE0/ETH/PR ED 1256 8 14 g V W _ HGB-7 CABLE. TRIPLEX 250 NCH GENERAL CABLE NE0/ETH/PR ED 1256 8 14 o e O O O e a11 e

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A V Cq p p DATE C/2 . I VIRGINIA ELECTRIC AtID POWie OMPANY PAGE 4 b tl0RTH ANilA POWLR STAlI0t4 UNIT 2 O_ EQUlrttENT QUALIFICATI0ti t1 ASTER LIST h FILE /ttARK tlUf10ER SORT ORDER 12345678901234 SOV-DG-200A SOV, PRIt1ARY ORAIN TRAtlSFER FUt1P DISCHARG ASCO HB830281U CI 1125 1 15 NGB-01 CABLE, 2/C #10 AWG OkOHITE HYP XL PLY ED 1404 8 16 t10V-HV-215-1 t10V, FLUSH VALVE LEFT FOR STRAlttER RAYMotlO CMTin;tS 9170K32 HV 1299 6 17 HOV-HV-215-2 NOV FLUSH VALVE RIGHT FOR STRAItiER RAYMOND CCHTROLS 9170K32 HV 1299 6 17 MOV-HV-216-1 tt0V, FLUSH VALVE LEFT FOR STRAIttER RAYh0ND Cot 4TROLS 9170K32 HV 1299 6 17 MOV-HV-216-2 NOV, FLUSH VALVE RIGHT FOR STRAINER RAiMott0 CONTROLS 9170K32 HV 1299 6 17 2-HV-F-40A , FAN, SAFEGAURDS AREA VEtlTILATICH BUFFALO FORGE 6808101G57 HV 1296 0 18 2-HV-F-408 FAH, SAFEGAURDS AREA VENTILATI0t4 BUFFALO FORGE 6800101G57 HV 1296 0 18 _ TB TERT 11HAL BLOCKS Cot 4NECTIOtt IllC. HSS3 PLYSL PI/A 1313 9 19 b, LT-RS-251A TRANSHITTER, C0t4T WATER LEVEL GEMS XH-36920 RS 1333 4 20 h5i. LT-RS-251B TRANSMITTER, Cot 1T WATER LEVEL GENS XN-36920 PS 1333 4 20  ? O 2-HV-F-71A FAH, SAFEGAURDS AREA VENTILATION JOY mat 1UFACTURING 21-1A-450 HV 1201 0 21 63 _ 2-HV-F-71B FAH, SAFEGAUROS AREA VENTILATI0t3 J0f MANUFACTURING 21-1A-450 HV 1201 0 21 . 1 FP-MC-19 NCC-1H1-2H KLOCKNER t10ELLER ED 1176 8 22 1-EP-MC-20 t1CC-1H1-2S KLOCKHER MOELLER ED 1176 8 22 O- . O l-EP-t1C-21 NCC-1J1-2H KLOCKNER HOELLER ED 1176 8 22 1-EP-MC-22 t1CC-1s1-2S KLOCKt1ER MOELLER ED 1176 8 22 U-s

  • 2-EP-itC-19 NCC-2H1-2H KLOCKNER MOELLER ED 1176 8 22 h

g 2-CP-MC-20 ftCC-2H1-25 KLOCKHER t10ELLER ED 1176 8 22 v NCC-2J1-2H KLOCKN*R N0ELLER ED 1176 8 22 9 _2-E P-itC-21 2-EP-MC-22 ttCC-2J1-2S KLOCKNER MOELLER ED 1176 8 22 NOV-QS-201A HOV QUEHCH SPRAY PUtiP DISCM LIMITORQUE REL NTR-DI QS 1242 35 23 MOV-QS-201B NOV, QUEt4CH SFRAY PUMP DISCH LIMITORQUE REL t1TR-BI QS 1242 35 23 - -- bg ' _ HOV-RS-255A MOV, RECIRC SPRAY SUCTIOil LIMITORQUE REL NTR-BI RS 1242 35 23 O 9 II - _ _ _ _ _ _ _ - _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _-.

DATE 8/20/81 VIRGINIA ELECTRIr AND POWER COttPANY PAGE 5 NORTH AtitlA POWER STATI0tl UtlIT 2 O ' Eau 1PnEHT ouAtIrICATION niSuR LISr FILE /ttARK ttutBER SORT e ORDER 12345678901234 MOV-RS-2558 NOV. RECIRC SPRAY SUCTION LIMITORQUE PEL HTR-BI RS 12(2 35 23 O-NOV-RS-256A NOV. RECIRC SPRAY DISCH LIMITORQUE REL HTR-BI RS 1242 35 23 e NOV-RS-256B tt0V RECIRC SPRAY DISCH LIMITCRQUE REL NTR-BI RS 1242 35 23 O-TYPE IA PENETRATION ASSEffBLIES (IllSTRUMENTITION D CONAX ED 1313 8 24 e g TYPE IB PENETRATI0tt ASSET:BLIES (C0tiTROL) C0ilAX ED 1313 8 24 J TYPE IC pet 1EIRATI0ti ASSET 1BLIES (LOW VOLTAGE PWR) C0tlAX ED 1313 8 24 G TYPE IIA PENETRATIOil ASSET 1BLIES ( LOW VOLTAGE PWR I C0tlAX ED 1313 8 24 O,- O TYPE IIB PENETRATICH ASSEffBLIES ( LOW VOLTAGE PWR ) C0tlAX ED 1313 8 24 TYPE IIC PENETRATI0tl ASSEffBLIES ( LOW VOLTAGE PWR ) cot 1AX ED 1313 8 24 TYPE IID PENETRATI0tl ASSET BLIES ( LOW VOLTAGE PWR) Cot 1AX ED 1313 8 24 1 TYPE IIF PEllETRATI0tt ASSET:BLIES ( LOW VOLTAGE PWR ) COHAX ED 1313 8 24 f t TYPE III PEtlETRATI0t1 ASSEMBLIES (TRIAXIAL) CollAX ED 1313 8 24 e'i TYPE IV PENT fRATI0t1 ASSEttBLIES (THERit0 COUPLES) C011AX ED 1313 8 24 . TYPE IA PENETRATION ASSEMBLIES-(INSTRUt1EHTATIONI C0tlAX ED 1313 8 25 TYPE IB pet 4ETRATI0t1 ASSEf BLIES (COtlTROL) CONAX ED 1313 8 25 TYPE IC pet 1ETRATI0t1 ASSEttBLIES ( LOW VOLTAGE PWR) CONAX ED 1313 8 25 g TYPF IIA PEttETRATION ASSEMBLIES ( LOW VOLTAGE PWR ) C0t4AX ED 1313 8 25 g v W TYPE IIB PEllETRATION ASSEMBLIES ( LOW VOLTAGE PWR) CONAX ED 1313 8 25 s TYPE IIC PENETRATION ASSEttBLIES ( LOW VOLTAGE PWR ) CarlAX ED 1313 8 25 u 9 _ TYPE IID PENETRATICH ASSEMBLIES ( LOW VOLTAGE PWR) CONAX ED 1313 8 25 TYPE IIE PENETRATICH ASSEtiBLIES ( LOW VOLTAGE PWR) C0tlAX ED 1313 8 25 O- O SP SPLICES , C0t!AX KAPT014 IHS tt/A 1313 9 26

   -       SP                           SPLICES                                                                           CottAX                         KAPT0H INS H/A 1313                       9    27 28 h

_ 2-RS-P-1A PUtiP. INSIDE'RECIRC. -" RAY GEllERAL ELECTRIC 5K6319XJ10 RS 1355 35 O e O O O e o 11

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DATE 8/2 erd VIRGINIA ELECTRIC At10 POWir40MPANY PAGE 6 tiORTH ANNA POWER STATION Uti1T 2 p) i._ EQUIPMENT QUALIFICATICt1l1 ASTER LIST h FILE / NARK t1UtIDER SORT g -.----....-------------- --........---- .......-----...-----........---------------------- ----.----.-........--.-- -------...--... V NARK HO. DESCRIPTION MANUF/STURER HODEL HO. S PURCH. ACCIDElli FUNCT FILE PAGE W ORDER 12345678901234 p 2-RS-P-1B PUMP, INSIDE RECIRC. SPRAY GENERAL ELECTRIC 5K6319XJ1B RS 1355 3 28 g v , W 2-RS-P-1A PUMP, INSIDE RECIRC. SPRAY GENERAL ELECTRIC FK6319XJ10 RS 1355 35 29 2hS-P-1B PUMP, INSIDE RECIRC. SPRAY GENERAL ELECTRIC 5K6319XJ1B RS 1355 3 29 g0 9 SOV-BD-2rl0A SOV, STEAN GEN. BLONDOWH ISOLATICH ASCO HT8321A5 CI 1125 1 30 SOV-BD-200C SOV STEAN GEN. BLOWDOWH ISOLATION ASCO HT8321A5 C1 1125 1 30 (- O SOV-BD-200E SO/, STEAN GEN. BLOWDOWN ISOLATION ASCO HT8321A5 CI 1125 1 30 D CI 0 ,, SOV-CC-200A SOV-CC-200B 30V, RECIRC. AIR COOLER OUTLET OUTSIDE SOV, RECIRC. AIR COOLER OUTLLT OUTSIDE

                                                                                                        ~ASCO ASCO HT8321A5 HT8321A5    CI 1125 1125 1

1 30 30 e g SOV-CC-200C .SOV, RECIRC. AIR COOLER OUTLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 h[ 50V-CC-201A SOV, RCP THERMAL BARRIER RET HEADER ASCO HT8321A5 CI 1125 1 30 ): SOV-CC-202A SOV, RCP COOLER RETURN HEADER ASCO HT8321A5 CI 1125 1 30 bc. h ,l! SOV-CC-202C SOV RCP COOLER RET 0RH HEADER ASCO HT8321A5 CI 1125 1 30 - g SOV- CC-202 E SOV, RCP COOLER RETURH HEADER ASCO HT8321A5 CI 1125 1 30 g-V W SOV-CC-203A SOV, RHR HEAT EXCH RETU"H ASCO HT8321A5 CI 1125 1 30 SOV-CC-203B SOV RHR HEAT EXCH RETURH ASCO HT8321AE CI 1125 1 30 bf-SOV-CC-204A-1 SOV, RCP COOLER INLET DUTSIDE ASCO HT8321A5 CI 1125 1 30 h SOV-CC-204A-2 SOV, RCP COOLER INLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204B-1 SOV, RCP COOLERS IHLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204B-2 SOV, RCP COOLERS INLET Oui"IDE ASCO HT8321A5 CI 1125 1 30 0-HT8321A5 CI 1125 30 0 _ SOV-CC-204C-1 SOV, RCP COOLERS C:LET OUTSIDE ASCO 1 SOV-CC-204C-2 SOV, RCP COOLERS IHLET. OUTSIDE ASCO HT8321A5 CI 1125 1 30 b- 50Y-DA-200A SOV, RC SUMP PUMP DISCHARGE ASCO HT8321A5 CI 1125 1 30 h s SOV-IA-201B SOV, CONTAINitEllT INST AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 -- U SOV, CONTAINMENT INSTRUMENT AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 h' _ SOV-IA-202A O 0 4 ' e d

O O DATE 8/20/81 . VIkilHIA ELECTRIC AND POWER COMPANY PAGE 7 NORTH ANilA POWER STATION Utili 2 bs EQUIPl1ENT QUALIFICATI0tl HASTER LIST h FILE / MARK hut 1BER SORT ORDER 12345678901234 SOV-IA-202B SOV, C0t4 Tall 1HEHT INSTRUTIENT AIR ISOLATION ASCO HT8321A1 CI 1125 1 30 0e h SOV-RM-200A SOV, RADIATION MotlITORING ASCO HT8321A5 CI 1125 1 30 SOV-RM-2003 SOV, RADIATION MONITORING ASCO HT8321A5 CI 1125 1 30 SOV-RM-2000 SOV, RADIATION MONITORING ASCO CI 1125 1 30 SOV-SI-200A SOV HITROGEH SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 f

                                                                                                                                           .                                                                                                     h SOV-SI-2008                                 SOV, HITROGEH SUPPLY LINE                                                                      ASCO                          HT8321A5          CI  1125  1                          30 SOV-SI-201                                  SOV HITROGEH SUPPLY LINE                                                                                                     HT8321A5          CI  1125 ASCO                                                      1                          30 g

SOV-VG-200A SOV, PRIt1ARY DRAIN TRANSFER TANK VENT ASCO HT8321A5 CI 1125 1 30 2-EE-SS-03 SWITCHGEAR 480V (2FQ) ITE ED 1088 8 31 ay p/ s_ W1 2-EE-ST-G1 SWITCHGEAR 480V (2H11 ITE ED 1088 8 31 i TB TERT 1INAL BLOCKS H/A NA 9 32 MANY g TT TERT 11NATI0tl TAPE OKOHITE HA HA 9 33 -- SP SPLICES RAYCHEN WCSF/H COA N/A HA 9 34 - FT-2474 TRANSHITTE9, STEAM GEH. FLOW POSEMOUNT DP6A930P HS 1486 23 5 3's . FT-2475 TRANSMITTER, STEAM GEH. FLOW ROSEMOUt4T 2DP6A93DP MS 14.36 23 5 35 FT-2484 TRANSHITTER, STEAN GEN. FLOW ROSEMOUNT 2DP6A93DP NS 1486 23 5 35 FT-2485 TRAtlSMITTER, STEAN GEN. FLOW POSEMOUNT EDP6A93DP N3 1486 23 5 35 FT-2494 TRANSHITTER STEAM GEN. FLOW ROSEMOUNT 2DP6A93DP NS 1486 23 5 35 TT-2495 TRANSHITTEP, STEAM GEH. FLOW ROSEMOUNT 20P6A93DP HS 1486 23 5 35 _ SOV-N3-211A SOV, AUX FEED PUt1P TURB CRIVE ASCO HT8344A71 MS 1125 2 67 36 SOV-MS-2118 SOV. AUX FEED PUNP TURB DRIVE ASCO HT8344A7] MS 1125 2 67 36 SOV-SS-2008 SOV, PRE 9SURIZER LIQUID SPACE ASCO HD830281U CI 1163 1 37 SOV-SS-201B SOV, PRESSURIZER VAFOR SAMPLE ASCO HB830281U CI 1163 1 37 ,r3 m v W SOV-SS-203A SOV, RHR OUTBOARD ISO'LATI0tt VALVE ' ASCO HB830281U CI 1163 1 37 h ac O O t h

n ,-w L..) ~ L) DATE 8/2 k 1 VIRGINI A ELECTRIC AND POWEk 40MPAtlY PAGE 8 g fl0RTH At#1A F0WER STATION UtlIT 2 g ( EQUIFHEllT QUALIFICATI0tl NASTER LIST w FILE /t1APK UU!1 DER SORT ORDER 12345678901234

        .... ....____ _______________.___                                           .___________A_       ..____ ............._ ..... ....... .. ... ....._ ....__________ ..... ._._

q SOV-SS-2038 SOV, RHR OUTCOARD ISOLATI0tl VALVE ASCO H8830281U CI 1163 1 37 g V w SOV-SS-204B SOV, PRESSURE RELIEF TANK SAMPLE ASCO HB830281U CI 1163 1 37 50V-SS-212B SOV, STEAN GEN sat 1PLE ISOLATION ASCO HB830281U C1 1163 1 37 Os O 50V-SS-202B SOV, PRIMARY C00LAt4T COLD LEG SAMPLE ASCO HB830281U CI 1163 1 38 SOV-SS-2063 SOV, PRIt1ARY COOLANT HOT LEG sat 1PLE ASCO HB830281U CI 1163 1 4 38 TN TERNINATIOt4S RAYCHEN HVT/HVNC N/A N/A 9 39 50V-LN-200A SOV, C0t1TAINNENT LEAKAGE NOHITOR ASCO HT8320A102 CI 1163 40 () ,-s 1 50V-LN-2008 SOV, CONTAINt1ENT LEAKAGE N0!4ITOR ASCO HT8320A102 CI 1163 1 40 SOV-LN-200C SOV, C06, TAIT #1ENT LEAKAGE NotlITOR LSCO HT8320A102 CI 1163 1 40 SOV-LN-2000 SOV, C0t4 TAINT 1ENT LEAKAGE NONITOR ASCO HT8320A102 CI '1163 1 40  % i. q SOV-Lit-200E SOV, C0tiTAItt1ENT LEAKAGE t.JtlITOR ASCO . HT8320A102 CI 1163 1 40 m? Wj SOV-LN-200F SOV, C011 TAIT #1ENT LEAKAGE NOHITOR ASCO HT8320A102 CI 1163 1 40 ._

                                                                                                                                                                                                                                     ?

SOV-LN-200G SOV, CCHTAINt1ENT LEAKAGE NOHITOR ASCO HT8320A102 CI 1163 1 40 - 50V-LN-200H SOV, CONTAINMENT LEAKAGE MONITOR ASCO HT8320A102 CI 1163 1 40 SOV. AUXILIARY SPRAY LINE HT831654 1010 Of SOV-2311 2-SW-P-5 FUNP, RADIATION HONITOR ASCO HARATHON ELECT. 8H56T17051 SW CH 1083 4 5 41 41 e 2-SW-P-6 PUNP, RADIATION HONITOR HARATH0H ELECT. 8t156T17051 SW 1083 4 41 Of O 2-SW-P-7 PUNP, RADIATION Nati! TOR NARATH0tl ELECT. 8H56T17D51 SW 1083 4 41 2-SM-P-8 PUNP, RAOIATION NOHITOR HAPATHCH ELECT. 56T17D516 SW 1083 4 41 _H2A-HC-100 HYDROGEN ANALYZER BEtIDIX E-10SS HC 1332 4 42 H2A-HC-200 H1DROGEH ANALYZER BENDIX E-10SS HC 1332 4 42 Og O 1-HC-HC-1 H1DROGEH REC 0t1BINER ROCKWELL IHT. 5DFC HC 1365 3S 43 2-HC-HC-1 H1DROGEH RECOttBIt4ER ROCVUELL INT. 7404S HC 1365 ;5 43 O FUMP, RECIRC. SPRAY GENERAL ELECTRIC SK6319XJ1D RS 1127 3 44 e-- ~ _ 2-RS-P-2A O O Og 9 1 1

W q bn b DATE C/20/G1 VIRGINIA ELECTRIC AHO POWER COMPANY PAGE 9 HORTH Ar:tlA POWER STATION UtlIT 2 O-. EQUIFitENT Q'JALIFICATION t1 ASTER LIST FILE /ttARK I4UttDER SORT h () ttARK HO. DES".RIPTION NAtDFACTURER tt00EL tio. SYS PURCH. ACCIDEt4T FUNCT FILE PAGE W ORDER 12345678901234 2-PS-P-28 PUttP. RECIRC. SFRAY GENERAL ELECTRIC 5K6319XJ1B RS 1127 3 44 g%) I-HV-F-8A FAH, AUX BLOG EX u ST WESTit!GHOUSE TAAN HV HUS-71 23 1 45 ( 1-HV-F-CB FAH, AUX BLOG EXHAUST EESTIt1GHOUSE TAAN HV tJUS-71 23 1 45 1-HV-F-8C FAH, AUX BLOG EXHAUST WESTIttGHOUSE TAAN HV HUS-71 27 1 45 SOV-2204 SOV REGEN HEAT EXC. OUTLET VALVE ASCO PV2023021R CI 1010 1 46 Os SOV-2519A SOV, PRIN GR2)E WATLR TO PRT ASCO HT831654 CI 1010 1 46 e

TE- Att-215 ANBIENT TEMP. t10t4ITOR SERV. BLOG. ROSENOUNT 78-81-17 AN 1363 7 47 TE -N-216 ANBIENT TEMP. Not41 TOR SERV. BLDG, ROSEtt0UNT 78-81-17 AN 1363 7 47 TE-AN-217A AtiOIENT TEttP. *!CHITOR SERV. Bt0G. ROSEt10UNT 78-81-47 AM 3363 7 47 O ey TE-Att-217B ANBIENT TEMP. Not4ITOR SERV. BLDG. ROSEtt0UNT 78-81-17 AM 1563 7 47 g- TE-AN-217C At1BIENT TEttP. MONITOR SERV. BLOG. ROSEt10UNT 78-81-17 AN 1363 7 47 b TE-Ati-2170 A!!B 'EHT TEMP. It0NITOR S~RV. BLOG. ROSEtt0UtT1 78-81-17 AM 1363 7 ^7 h _

PT-LN-200A TRAtle. LITTER. Cot 4TAlt; MENT PRESSURE FOXBORO E11AH LN 1215 135 48 f3 O h. PT-LN-200B TRANSHITTER, CONTAINt1ENT PRESSURE FOXBCR0 E11AH Lt1 1215 135 48 PT-Lil-200C TRAftSt1ITTER. C0t4TAlt;!!ENT PRESSURE FOXBORO E11AH Lt1 1215 135 48 PT-LN-2000 TRANSNITTER, CONTAINNFHT PRESSURE FOXBORO E11AH Lt1 1215 135 48 LIT-RS-251A TRAtiSHITTER. CONT WATER LEVEL GENS RE31320/31 RS 1333 4 49 V, , O LIT-RS-251B TRANSNITTER. CONT WATER LEVEL GENS RE31320/31 RS 1333 4 49 NOV-SW-201A NOV, RECIRC SPRAY HEAT EXC. HEADER INLET LINITORQUE REL NTR-DI SW 1194 35 50 g)

  %                                                                                                                                                                                                                     h NOV-SW-201B                      #10V, RCCIRC SPRAY HEAT EXC. HEADER INLET                                                     lit 1ITORGUE          REL NTR-BI SW      1194      35            50 NOV-SW-201C                      HOV, RECIRC SPRAY HE.\T EXC. HEAllER It4LET                                                   LIMITORGUE            REL NTR-BI SW      1194      35            50 NOV-SW-2010                      tt0V, RECIP7 SPRAY HEAT EXC. HEADER '-NLET                                                    LIMITORQUE            REL NTR-BI SW      1194      35            50 NOV-SW-203B                      NOV. SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE                                                                REL HTR-BI SW      1194      35            50 0f         NOV-SW-204A                     NOV SERVICE WATER FROM RECIRC SPRAY CLR                                                        lit 1ITORQUE         REL t1TR-BI SW     1194      35            50 9

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r . m x C' PAGE 10 V OATE C/2L d VIRGINIA ELECTRIC AHO POWiu-40MPANY t10RTH AMtlA POWEK STATI0taLX4IT 2

b. EQUIPt1Etli QUALIFICAT10ti tif IR LIST O FILE /t1 ARK '3Ut: DER V . MARK HO. DESCRIPTIOt3 (1AtlUF ACTURER t10bE L t10. SYS PURCH. ACCIDENT FUNCT FILE PAGE W ORDER
  • M5678901234 NOV-SW-203a MOV, RECIRC SPRAY HEAT EXC. HEADER OUTLET Litt1 TORQUE RE L t1TR-BI SW 1194 35 50 fm o .

h t10V-SW-205B ' NOV, RECIRC SPRAY HEAT EXC. HEADER OUTLET lit 1ITORQUE REL NTR-BI SW 1194 35 50 NOV-SW-205C HOV, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL MiP-BI SW 1194 35 50 m U h MOV-SW-2050 NOV, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL NTR-BI SW 1194 35 50 HOV, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL t1TR-BI SW 1194 35 50 p) MOV-SM-206A h MOV-SW-206B t10V, RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL F1TR-BI SW 1194 35 50 SOV, STEAtt GEH TRIP A?CO HT8321A5 CI 1125 1 51 t SOV-MS-209A h SOV-MS-209B SOV, STEAN GEN TRIP ASCO HT8321A5 C1 1125 1 51 SOV-MS-213A-1 SOV, STEAN GEN TRIP ASCO HT8321A5 CI 1125 1 51 U O O DATE 8/20/81 VIRGINIA ELECTRIC AtB POWER COMPAllY PAGE 15 ,3 t3 ORTH ANilA POWER STATIOt1 UtlIT 2 V EQUIPMEllT QUALIFICATI0tl MASTER LIST h FILE /ttARK NUMBER SORT U ttARK P40. DESCRIPTI0tt MAtlUFACTURER MCPEL tlO. SYS PURCH. ACCIDENT FUt4CT FILE PAGE W OPDER 12345678901234 NOV-SW-214B MOV. RECIRC. AITl COOLING COILS LIMITORGE Lt1T TRQE-DI SW 1194 3 73 MOV-QS-2004 MOV. REFUELIllG WATER STORAGE TAtJK LIMITORQUE ,REL MTR-DI QS 1242 35 74 fx MOV-QS-2008 ft0V. REFUELIttG WATER STORAGE TANK LIttITORQUE REL MTR-BI QS 1242 35 74 (,) e h 2-EE-SS-04 SWITCHGEAR 480V (2J1) , ITE ED 1088 6 75 2-EE-ST-02 TRAt4SFORMER 480V (2J1) ITE ED 1083 8 75 bs h SOV-HV115B-1 SOV. IODINE FILTER BANK ISOLATI0t4 VALVE ASCO HV FIELD 0 76 SOV-HV115B-2 SOV. IODINE FILTER DAtlK ISOLATION VALVE ASCO HV FIELD 0 76 b3 " h PT-LM210A TRAtlSHITTER, COND. PRESSURE WIDE RANGE FOXBOPO tl-E11AH LM 1215 4 T01 PT-Lt1210B TRANSMITTER. CE,ttD. PRE'SSURE WIDE RAtlGE FOXBORO N-E11AH 1215 4 T01 q b LM g w _i YE-VttS200A-1 ' ACCELEROMETER PZR SAFETY VALVE POSITI0t4 ENDEVC0 2273AM20 RL 1605 4 T02 ,q YE-VHS200A-2 ACCELER0t1ETER. PZR SAFETf VALVE POSITI0ti Et0EVCD 2273AM20 RC 1605 4 T02 g V Wj YE-VMS2008-1 ACCELEROMETER. PZR SAFETY VALVE POSITION [t0EVC0 2273AM20 RC 1605 4 T02 _ YE-VMS2003-2 ACCELEROMETER.PZR$AFETYVALVEPOSITI0tl Et10EVC0 0273 Att20 R: 1605 4 T02 . YE-VMS200C-1 ACCELEROMETER. PZR SAFETY VALVE POSITIOtt EtOEVCO 2273AM20 2C 1605 g W TV-SS-2080 SOV, PRIMARY COOL At4T HOT LEG CONT ISO VALCOR V*i26568319 SS 34670 1 Til ,, TV-SS-209A SOV, PRIt1ARY COOLAh* COLD LEG CONT ISO VALCOR V526568319 SS 34670 1 Til V SOV, COHT ATi1OS SitPL FROM CO'4T - CONT ISO VALCOR V526568319 SS 34670 1 T12 h _ H2-XCV-1402A g H2-XCV-1402B SOV, t.vHT ATMOS SttPL FROt1 CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 ( H?-XCV-1423A SOV CONT ATitOS SMPL FROM CONT - C0tti ISO VALCOR V526568319 SS 34670 1 T12 ,_ H2-XCV-14238 SOV CONT ATHOS SttPL FROM CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 - _TV-SS-2028 SOV PRIMARY COOLANT COLD LEG cot 4T ISO VALCOR V526568319 SS 34670 1 T12 y n . W \_)l I

tJU p C, . C DATE 8/20/G1 VIRGINIA ELECTPIC AHO POWER uGMPANY PAGE 17 itORTH AHilA E0WER STATION UNIT 2 bs EQUIPt1EHT QUALIFICATION ttASTER LIST h FILE / MARK tlUf1 DER SORT 7, \,_) MARK HO. DEC"RIPTIOtt MAtlUFACTURER MODE L HO. SYS PURCH. ACCIDENT FUNCT FILE PAGE W ORDER 12345678901234

       .._____-- --- --....._..____..___-_------------                                       ----. --...-___-___ ------ ..-__...__ ___                      ..___m _____________. --_._ .__-

m TV-SS-2033 SOV RHR OUlBOARD C0tiTAltIMENT ISOLATION VALCOR V526568319 SS 34670 1 T12 h TV-SS-206B SOV. PRIMARY COOLANT HOT LEG CONT ISO VALCOR V526568319 SS 34670 1 T12 S TT-SS-207A SOV. RHR OUTLET SAttPLING CONT ISO VALCOR V526568319 SS 34670 4 T13

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TT-SS-207D SOV. RHR IHLET SAMPLING CONT ISO VALCOR V526568319 SS 34670 4 T14 ZS-SS-202A-1 LIMIT SWITCH, PR COOLHT COLD LEG COHT ISO GORDOS MR8901 SS 34670 TIS ZS-SS-202A-2 lit 11T SWITCH. PR COOLHT COLD LEG COHT 150 GORDOS MP8901 SS 34670 TIS ZS-SS-203A-1 LIMIT SWITCH. RHR SAMPLING CONT ISO GORDOS MR8901 SS 34670 T15 'o V ZS-SS-203A-2 LIMIT SWITCH. RHR SAMPLING CONT ISO GORDOS MR8901 SS 34670 T15 m ZS-SS-206A-1 LIMIT SWITCH, PR C00LHT HOT LEG CONT ISO GORDOS MR8901 SS 34670 T15 k) ZS-SS-206A-2 Ll.*IT SWITCH. PR COOLHT HOT LEG CONT ISO GORDOS MR8901 SS 34670 T15 h2-c ZS-SS-2000-1 LIMI1 SWITCH. PR COOLHT HOT LEG CONT ISO CORDOS MP8901 SS 34670 T15 7

                                                                                                                                                                                                           }

23-SS-2080-2 LIMIT SWITCH. PR COOLHT HOT LEG C0t3T ISO GORDOS MR8901 SS 34670 T15 ZS-SS-209A-1 LIMIT SWITCH. PR COOLHT COLD LEG CONT ISO GORDOS MRS901 SS 34670 TIS (m%) h= ZS-SS-209A-2 LIMIT SWITCH, PR COOLHT COLD LEG CONT ISO GORDOS MR8901 SS 34670 T15 gs ZS-SS-1402A-1 LIMIT SWITCH CNT ATMS St1PL FROM CHT IS V GORDOS MR8901 SS 34670 T16 g d W ZS-SS-1402A-2 LIMIT SWITCH, CNT ATMS SMPL FROM CNT IS V GORDOS MR8901 SS 34670 T16 E-SS-14028-1 LIMIT SWITCH. CNT ATitS SMPL FROM CNT IS V GORDOS MR0901 SS 34670 T16 ZS-SS-14020-2 LIMIT SWITCH, CNT ATitS SMPL FROM CHT IS V GORDOS MR0901 SS 34670 T16

-       ZS-SS-1423A-1               LIMIT SWITCH, CNT ATits SMPL TO CNT IS V                                GORDOS                          MR8901     SS   34670                            T16

_ ZS-SS-1423A-2 LIMIT SWITCH. CNT ATMS SMAL TO CNT IS V GORDOS MR8901 SS 34670 T16 m ZS-SS-14230-1 LIMIT SWITCH, CNT ATMS SMPL TO CNT IS V GORDOS MR8901 SS 34670 T16 g V w ZS-SS-1423D-2 LIMIT SWITCH. CHT ATMS SMPL TO CHT IS V GORDOS MR8901 SS 34670 T16 ZS-SS-2028-1 LIMIT SWITCH. PR COOLHT COLD LEG CONT ISO CORDOS MR8901 SS 34670 T16 U,m h ZS-SS-2028-2 LIMIT SWITCH, PR COOLHT COLD LEG CONT ISO GORDOS MR8901 SS 34670 T16 h o # # # h 11

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DATE 8/20/ 1 VIRGINI A ELECTRIC At3D POWEV40NPAlli PAGE 18 NORTH ANNA F0WER STATION UtlIT 2 () fs EQUIPitENT QUALIFICATION NASTER LIST FILE / NARK HUttBER SORT h ORDER 12345678901234 n ZS-SS-2038-1 LIMIT SWITCH, RHR OUTDOARD CONT ISO GORDOS NR8901 SS 34670 T16 g (.) W IS-SS-2030-2 lit 11T SWITCH. RHR OulBOARD CONT ISO GORDOS NR8901 SS 34670 T16 s ZS-SS-206B-1 LINIT SWITCH. PR COOLHT HOT LEG COf4T ISO GORDOS NR8901 SS 34670 T16 ZS-SS-2068-2 LINIT SWITCH, PR COOLHT HOT LEG C0tli ISO GORDOS HR8901 SS 34670 T16 s ZS-SS-207A-1 LIMIT SWITCH. RHR OUTLET St1PLtlG CNT ISO V GORDOS NR8901 SS 34670 T17 LIMIT SWITCH, RHR OUTLET St1PLHG CNT ISO V GORDOS h ZS-S%207A-2 NR8901 SS 34670 T17 ZS-SS-2078-1 LIMIT SWITCH, RHR INLET SNPLt4G CNT ISO V GORDOS NR8901 SS 34670 T18 0- h ZS-SS-207B-2 LIMIT SWITCH, RHR IHLET SitPLNG CNT ISO V GORDOS NR8901 SS 34670 T18 g H2A-HC-201-1 H)DROGEtt ANALYZER CONSIP-DELPHI K III HC T19 E H2A-HC-201-2 HYDROGEH ANALYZER CONSIP-DELPHI K III HC T19 7 i. f TV-HC-200A SOV. HYDROGEH ANALYZEM SYSTEN VALCOR V526529531 HC 34670 129 7 (g) hi TV-HC-2003 SOV HYDROGEN ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 1 TV-HC-201A SOV HYDROGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 . TV-HC-201B SOV. HYDROGEN ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 TV-HC-202A SOV, HYDROGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 TV-HC-2028 SOV, HYDROGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20

         -      TV-HC-203A                                                                            SOV, HYDROGEH ANALYZER SYSTEN                             VALCOR                           V526529531 HC  34670                          T20 TV-HC-203B                                                                             SOV, HYDROGEN ANALYZEP SYSTEN                             VALCOR                           V526529531 HC  34670                          T2G h

g ZS-HC-200A-1 LIMIT SWITCH, lit 1IT SWITCH FOR TV-HC-200A GORDOS NR8901 HC 34670 T21 g U T _ ZS-HC-200A-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-200A GORDOS NR8901 HC 34670 T21 ZS-HC-2008-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2000 GORDOS NR8901 HC 34670 T21 ZS-HC-200B-2 LINIT SWITCH, LIMIT SWITCH FOR TV-HC-2008 GOPDOS HR8901 HC 34670 T21 ZS-HC-201A-1 LINIT SWITCH, LIMIT SWITCH FOR TV-HC-201A GORDOS NR6901 HC 34670 T21 - _ ZS-HC-201A-2 LIMIT SWITCH, LINIT SWITCH FOR TV-HC-201A GORDOS HR8901 HC 34670 T21 O h nv

o DATE 8/20/81 VIRGItIIA ILECTRIC AtID POWER COMPAHf PAGE 19 HORTH A lt4A POWER ST ATIOtt U141T 2 O E0uIPriENT OuAtirICAT10titiiSTER tIST FILE /t1 ARK hut 10ER SORT e

                                      .                                                                                                                                 ORDER    12345678901234 ZS-HC-201B-1                     LIMIT SWITCH, lit 11T SWITCH FOR TV-HC-2010 CORDOS                                                               MR8901      HC  34670                     T21 ZS-HC-20lb-2                     LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201B GORDOS                                                                 MR8901      HC  34670                     T21 ZS-HC-202A-1                     LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202A GORDOS                                                                 MR8901      HC  34670                     T21 ZS-HC-202A-2                     lit 1IT SWITCH, LIMIT SWITCH FOR TV-HC-202A GORDOS                                                               MR8901      HC  34670                     T21
-     ZS-HC-2028-1                     LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2028 GORDOS                                                                 ttR8901      HC 34670                     T21 ZS-HC-2028-2                     LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202B GORDOS                                                                 MR8901      HC  34670                     T21 h

IS-HC-203A-1 LIMIT SWITCH, lit 11T SWITCH FOR TV-HC-203A GOPDOS t1R8901 HC 34670 T21 ZS-HC-203A-2 L1 HIT SWITCH, LIMIT SWITCH FOR TV-HC-203A GORDO5 MR8901 XC 34670 T21 h ZS-HC-2038-1 LIMIT SWITCH, LIMIT SWIXH FOR TV-HC-203B GORDOS MR8901 HC 4670 Til ZS-HC-2030-2 LIMIT SWITCH, LIMIT SWITCH *"R TV-HC-203B CORDOS HF8901 HC 34670 T21 c SOV-HC-204A SOV, HYDROGEH RECOt1BINER ASCO H5831654E HC 35085 1 T22 T \ } SOV-HC-204B SOV. HYCROGEH REC 0t1BINER ASCO NP831654E HC 35085 1 T22 _ n SOV-HC-205A SOV, HYDROGEN RECOMBINER ASCO HP831654E HC 35085 1 T22 . V SOV-HC-205B SOV HYDROGEN RECOMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-206A SOV, HYDROGEN RE"OMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-206B SOV HYDROGEN MCOMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-207A SOV, HYDROGEH RECOMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-2078 SOV, HYDROGEN RECOttDINER ASCO , NP831654E HC 35085 1 T22 E180-11302 HC o m ZS-HC-204A-1 _ ZS-HC-204A-2 lit 11T SWITCH, HYDROGEH C0tiTROL LIMIT SWITCH, H1DROCEN COPITROL tlAt1CO HAMCO E180-11302 HC 35085 35085 1 1 T23 T23 e ZS-HC-204B-1 LIMIT SWITCH, HYDROGEN CONTROL E180-11302 HC 35085 T23 ZS-HC-2048-2 LIMIT SWITCH, H)DROGEH CONTROL IIAMCO HAMCO E180-11302 HC 35085 1 1 T23 e ZS-HC-205A-1 LIMIT SWITCH, HYDROGEN C0th .0L HAMCO E180-11302 HC 35085 1 T23 bm ZS-HC-205A-2 LIMIT SWITCH, HYDROGEH CONTROL 'MCO E180-11302 HC 35085 1 T23 h O e O # # # e

sm sy 0 [' (% ,Q O DATE 8/2 %I VIRGINIA ELECTRIC AND POW dOMPAtlY PAGE 20 HORTH AHilA POWER STATI0tl Ut31T 2 O EOU1Pnttir OuitirICirioH nisTER L1ST FILE /t1 ARK NUMBER SORT h __. .....--.n ------_----- -- --__~_ --.--_------_-._.- _ . -__---__ --- ... --- -_. .-_- -__... ... ORDER 12345678901234

              .--.._.___-__ _-----~~.---__-----____.__. ...-_-...-._.                                                                                                                __--____.__._.___ __--______ ___ ____._ ________-____. __._. ....

IS-HC-205B-1 lit 11T SWITCH, HYDROGEH CONTROL hat 1CO E180-11302 HC 35085 1 T23 bs ZS-HC-2050-2 L1r1IT SWITCH, HYDROGEH C0t4 TROL HAMCO E180-11302 HC 35085 1 T23 h

        %     ZS-HC-206A-1                     LIMIT SWITCH. HYDROGEN CONTROL                                                                                               HAMCO                                             E180-11302 HC                 35085     1                  TC3 b         ZS-HC-206A-2                     LIMIT SWITCM. HYDROGEN CONTROL                                                                                               HAMCO                                             E180-11302 HC                 35085     1                  T23 h

ZS-HC-206B-1 LIMIT SWITCH, HYDROGEH CONTROL HAr1CO E180-11302 HC 35085 1 T23 0 ZS-HC-206B-2 LIMIT SWITCH HYDROGEN C0t4 TROL hat 1CO E180-11302 HC 35085 1 T23 h

        -     ZS-HC-207A-1                     LIMIT SWITCH. HYDROGEN CONTROL                                                                                               HANCO                                             E180-11302 HC                 35085     1                  T23 ZS-HC-207A-2                     lit 11T SWITCH, HYDROGEN CONTROL                                                                                             hat 1CO                                           E180-11302 HC                 35085     1                  T23 h

IS-HC-2078-1 LI'i1T SWITCH. HYDROGEN CONTROL

  • HANCO E180-11302 HC 35035 1 T23 ZS-HC-2078-2 LIMIT SWITCH. HVDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 y FT-2414 TRANSNITTER, RE ACTOR COOLANT FLCW L1 FOXBORO E13DH RC 1010 2 5 WOI  ?

0,_ b FT-2415 TRANSHITTER. REACTOR COOLANT FLOW L1 FOXBORO E130H ,R C 1010 2 5 N01 FT-2416 TR ANSt1ITTER , REACTOR COOLANT FLOW L1 FOXBORO E13DH RC 1010 2 5 W01 - FT-2424 TRANSHITTER, REACTOR COOLANT FLOW L2 FOXBORO E13DH RC 1010 2 5 WD1 gm FT-2425 TRANSHI?YER, REACTOR COOLANT FLOW L2 FOXBORO E130H RC 1010 2 5 WD1 v FT-2426 TRANSHITTER, REACTOR COOLANT FLOW L2 FOXBORO E13DH RC 1010 2 5 WD1 h FT-2434 TRANSMITTER, REACTOR COLLANT FLOW L3 FOXBORO E13DH RC 1010 2 5 WO1 FT-2435 TRANSHIT'ER, REACTOR COLLANT FLOW L3 FOXDORO E13DH RC 1010 2 5 Wo1 FT-2436 TRANSM7 (TER > REACTOR COLLAh'T FLOW L3 FOXBORO E13DH RC 1010 2 5 WOI LT-2459 TRANSMITTER. PRESSURIZER LEVEL BARTON 764 RC 1010 23 5 WO2 LT-2460 TRANSMITTER, PRESSURIZER LEVEL DARTON 386/752 RC 1010 23 5 WO2 LT-2461 TRANSMITTER, PRESSURIZER LEVEL BARTON 386/752 RC 1010 23 5 WC2 PT-2474 TRANSHITTER. STEAN GEH. 1 PRESSURE FOXBORO E11GH NS 1010 5 WO3 - RT -2475 TRANSHITTER. STEAN GEN. 1 PRESSURE FOXBORO E11GH MS 1010 5 WO3 u

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Q U f% DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPAttf PAGE 21 HORTH At:HA POWER STATIOtt Ut4IT 2 O EQuIPt'EiiT QUAtIrICATIott MASTER LIST FILE /11 ARK NUMDER SORT 4 o ORDER 12345678901234 PT-2476 TRANSHITTER. STEAN GEH. 1 PRESSURE FOXBORO E11GN NS 1010 5 W33 PT-2484 , TRANSMITTER. STEAN GEtl. 2 PRESSURE FOXBORO E11GN MS 1010 5 WC3 PT-2485 TRANSHITTER. STEAN Gell. 2 PRESSURE FOXCODO E11GH NS 1010 5 WO3 PT-2486 TRANSMITTER. STEA*1 GEN. 2 PRESSURE FOXBORO E11GN MS 1010 5 WO3 PT-2494 TRANSMITTER, STLAN Gell. 3 FRE'SURE FOXDORO E11GN MS 1010 5 WO3 PT-2495 TRANSHITTER, STEAN GEN. 3 PRESSURE FOXCORO E11GH NS 1010 5 WO3 PT.'496 TRANSMITTER, STEAN GEH. 3 PRESSURE FOXBO O E11Gli NS 1010 5 WO3 HCV-2200A LIMIT SWITCH. REGEH. HEAT OUTLET HAMCO EA-180 CH 1010 1 WO4 HCV-22008 LIMIT SWITCH. REGEN. 1 EAT OUTLET HAttCO EA-180 CH 1010 1 Wo4 HCV-2200C LIMIT SWITCH. REGEN. HEAT OUTLET HANCO EA-180 CH 1010 1 WO4 } ft0V-2860A HOV, LHSI PUMP SUCTION LIMITORQUE REL-RH INS SI 1010 23 5 WOS NOV-28608 HOV, LHSI PUMP SUCTION LIMITORQUE REL-RH INS SI 1010 23 5 WO5 _ s NOV-2885A tt0V, LHSI RECIRC VALVE LIMITORQUE REL-RH INS SI 1010 23 5 WO5

          ]                                                                                                                                                                                                                                  h.

NOV-2885B NOV, LHSI RECIRC VALVE LIMITORQUE REL-RH INS SI 1010 23 5 WO5 MOV-2380 ff0V, RCP SEALWATER RETURil LIMITORQUE 1010 1 5 WO6 PT-2455 TRANSMITTER, PRESSURIZER PRESSURE BART0H 763 LOT 1 RC 1010 23 5 WQ7 g PT-2456 TRANSHITTER, PRESSURIZER PRESSURE DARTOH 763 LOT 1 PC 1010 23 5 WO7 g V W P1-2457 TRANSMITTER, PRESSURIZER PRESSURE BARTOtt 763 LOT 1 RC 1010 23 5 W37 MOV-2890A NOV. LHSI LINE STOP VALVE LINITORQUE E LTRCL-HI SI 1010 23 5 W38 _ NOV-28900 MOV. LHSI LINE STOP VALVE lit 1ITORQUE RE L NTR-BI SI 1010 23 5 WO8 SOV-2000A-1 SOV, LET00Wtl lit:E ASCO HV202302IR CI 1010 1 W39 SOV-2200B-1 SOV, LETOOWN LINE ASCO HV2023021R CI 1010 1 WO9 SOV-2200C-1 SOV. LETOOWN LINE ASCO HV2023021R CI 1010 1 WO9 0-- SOV. LETOOWN LINE LOOP 1 8 2 ASCO HT831654 CI 1010 1 W10 4 _ SOV-2460A O e G O O

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ONPAHf PAGE 22 VIRGINIA ELECTRIC AND POWE DATE 8/2078 tt0RTH AHilA POWER STATIDH Ut41T 2 O EQUIPMENT QURIFICATION NASTER LIST O FILE / NARK NUttDER SORT ORDER 12345o78901234

     -------------      -----------------------------------------                                                 CI  1010      1                       W10 ASCO                      HT831654 SOV-24608          SOV, LETDOWil LINE LOOP 1 & 2 1010        23 5                  Wil NOV, LHSI PUNP SUCTI0ta                          LIMITGF1UE                PEERLSS-DI SI NOV-2862A NOV-2862B          NOV LHSI PUt1P SUCTI0tl                          lit 1ITORQUE              PEERLSS-DI SI      1010        23 5                  W11 e

iO l T L- 24128 RTD, RCS HARROW rat 1GE ROSEMOUNT 176KF RC 1010 1 345 W12 RC 1010 1 345 W12 90SENOut4T 176KF TE-2412D RTD, RCS HARROW RAtlGE ROSEt10UNT 176KF RC 1010 1 345 W12 TE-2420B RTD, RCS HARROW RANGE RC 1010 1 345 W12 POSEt:0UNT 176KF TE-2422D RTD, RCS HARROW RANGE RC 1010 1 345 W12 ROSEt100HT 176KF TE-24328 .RfD, RCS t4 ARROW RANGE RC 1010 1 345 W12 ROSEt10UNT 176KF TE-24300 RTD, RCS HARROW RANGE ' SI 1010 2 5 W13 WESTINGHOUSE ACOP I 2-SI-P-1A PUNP, LOW HEAD SAFETY IHJECTI0t4 W13 7 1010 2 5 2-SI a-1B PUNP, LOW HEAD SAFETY IHJECTION WESTINGHOUSE ARDP SI O! O NOV-?S63A F10V, LHSI DISCH VALVE LIMITORQUE REL NTR-BI SI 1010 23 5 W14 , t10V , LHSI DISCH VALVE LIMITORQUE REL NTR-BI SI 1010 23 5 W14 e ., NOV-2863D O NOV-2864A NOV. LHSI DISCH VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 WIS 1010 23 5 W15 NOV, LHSI DISCH VALVE LIMITORQUE PEERLSS-DI SI P10V-28640 1010 23 5 W16 LINITOR'3JE REL MIR-BI CH NOV-2115C HOV C.lARGING PUNP SUCT. FRON VCT 1010 23 5 W17 LIMITORQUE REL NTR-BI CH MOV-2350 NOV, ENERGEt4CY BORATION 1010 23 5 W18 LINITORQUE REL NTR-BI CH HOV-2267B NOV, LhSI TO CHARG1t4G PUNP REL NT;i-DI CH 1010 23 5 W18 LIMITORQUE MCV-2269B F10V. LHSI & VCT TO CHARGING PUt1P 1010 23 5 W18 NOV, LHSI & VCT TO CHARGING PUNP LIMITORQUE REL NTR-DI CH _t10V-2270B 23 5 W18 LIMITORQUE REL NTR-DI CH 1010 NOV-2370 110V, CHARGING PUNP TO SE AL HATEP RECIRC. 1010 23 5 W18 NOV, CHARGIt4G PUt1P TO RECIRC. SV LIMITORGUE REL NTR-BI CH NOV-2373 WIS REL MTR-BI SI 1010 23 S LIMITORQUE NOV-2869A NOV CHARGING PUNF SI STOP VALVE ' LIMITORQUE REL MTR-DI SI 1010 23 5 W18 P10V, CHARGING PUt1P SI STOP VALVE _ NOV-2869B

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O O DATE 8/20/81 VIRGINIA ELECTRIC Atl0 POWER cot 1PANY PAGE 23 g fl0RTH AtitlA POWER STAT 10tl UtlIT 2 V EQUIPttEllT QUALIFICATIOli itASTER LIST FILE /ttARK HUMDER SORT h O nExno. oESCRieTICH nuiurACTunR nooEL to. STS eURCH. ACClotHT runCT rite ORDER 123J5678901234 e PAGE e NOV-2286A HOV. CHARGING PUMP OISCH. lit 11 TORQUE REL NTR-BI CH 1010 23 5 W19 O-NOV-2286B NOV. CHARGING PUMP DISCH. LIMITORQUE REL NTR-BI CH 1010 23 5 W19 e MOV-2286C HOV, CHARGIllG PUMP DISCH. LIMITOPQUE REL NTR-BI CH 1010 23 5 19 9 07 HOV-2287A HOV. CHARGIllG PUMP STOP VALVE LIMITORQUE REL NTR-BI CH 1010 23 5 W19 e HOV-2287B MOV, CHARGING PUMP STOP VALVE LIMITORQUE REL F11R-BI CH 1010 23 5 W19 HOV-2287C MOV. CHARGING PUttP STOP VALVE LIMITORQUE REL NTR-BI CH 1010 23 5 W19 g 2-CH-P-1A - PUMP, CHARGIllG IHHSI) WESTINGHOUSE CH 1010 2 5 W20 g U w 2-CH-P-1B PUMP. CHARGING (HHSI) WESTINGHOUSE CH 1010 2 5 W10 s 2-CH-P-1C PUMP. CHARGING (HHSI) WESTINGHOUSE CH 1010 2 5 W20 5 NOV-2267A MOV, LHSI TO CHARGING PUMP LIH1 TORQUE REL NTR-BI CH 1010 23 5 W21 i c g NOV-2269A MOV. LHSI & VCT TO CHARGING PUMP LIMITORQUE REL NTR-BI CH 1010 23 5 W21  ? _) j NOV-2270A tt0V, LHSI A VCT TO CHARGING PUMP LIMITORQUE REL NTR-BI CH 1010 23 5 W21 NOV-2289A MOV. CHARGING PUMP DISCH. LIMITORQUE REL HTR-BI CH 1010 23 5 W21 = NOV-22898 NOV CHARGING PUMP DISCH. LIMITORQUE REL HTR-BI CH 1010 23 5 W21 g NOV-2115D HOV. CHARGING PUMP SUC'FROM RWST LIMITORQUE REL NTR-BI CH 1010 23 5 1 W22 g ss W NOV-21150 t0V, CHARGING PUMP SUC FROM RWST LIMITORQUE REL NTR-BI CH 1010 23 5 1 H22 n FT-?940 TRANSMIT 1ER, SI HEADER FLOW HOT LEG BARTOH 384 SI 1010 W23 U h FT-2943 TRANSMITTER, BOROH IHJe TK. HEADER FLOW BART0H 384 SI 1010 W23 g NOV-2867C tLV. CHARGING PUttP STOP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W24 _HOV-2867A NOV. CHARGING PUMP STOP VALVC LIMITORQUE REL MTR-BI SI 1313 23 5 W25 Ox HOV-2867B MOV-2867D MOV, CHARGING PUt1P STOP VALVE NOV. CHARGING PUMP STOP VALVE LIMITORQUE LIMITORQUE REL MTR-BI SI REL HTR-BI SI 1313 1313 23 5 23 5 H25 W:'S e gg SOV-2859 SOV. SAFETY IHJECTION ACCUMULATOR e ASCO HT831654 CI 1010 1 W26 m () W TE ,2410 RTD, RCS WIDE RANGE ROSEMOUNT 176KS RC 1010 5 W27 r+ b O # # # e g

A DATE 6/20/v1 h) VIRGINIA ELECTRIC AtJD POWD/ COMPANY () PAGE 24 O NORTH LNilA POWER STATION LXIIT 2 m (_- EQUIPitENT QUALIFICATICH l1 ASTER LIST T FILE /ttARK HUtDER SORT ORDER 12345678901234 gg TE-2413 RTD, RCS WIDE RANGE ROSEMOUt4T 176KS RC 1010

  • H27 m

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  • ROSEMOUNT 176KS RC 1010 4 W27 bc c h TE-2430 RTU, RCS WIDE RANGE ,

ROSEMOUNT 176KS PC 1010 4 H27 TE-2433 RTD, RCS WIDE RANGE ROSEttOUNT 176KS RC 1010 4 W27 O- O MOV-2865A MOV ACCUMULATOR TAHK 1 COLD LEG LIMITORQUE SI 1010 23 5 W28 O t"0V-2865B NOV ACCUMULATOR TANK 2 COLD LEG tIMITORQUE SI 1010 23 5 H28 O ' h NOV-2865C MOV ACCUttOLATOR TAHK 3 COLO LEG lit 1ITOPQUE SI 1010 23 5 W28 NOV-2836 NOV, COLD LEG CIRC VALVE LIMITORQUE SI 1010 23 5 W29 O-SOV-2864A "SOV, BOROH IHJECTION TAHK TO BATCH T, ASCO LO831656 SI 1010 23 5 W30 4: p I q SOV-2884B SOV, POROH IHJECTION TANK TO BATCH TK ASCO LB831654 SI 2010 23 5 W30 v 0{;

                $0V-2884C                        SOV, BORON IHJECTION TAttK TO EATCH TK                                                      ASCO                           LB831654      SI    1010            23 5         H30                      _

EP HCV2186 E/P FOR HAND C0tlTROL VALVE HCV-2186 FISHER 546 W32 Qf- 9-SOV-22004-2 SOV, LETDOWH LINE AGC0 HV2f,2302IR CI 1010 1 W32 SOV -2 2 0 0B-2 SOV, LETDOWH LINE ASCO HV202302IR CI 1010 1 W32 SOV-2200C-2 SOV, LETDOWN LIllE ASCO HV202302IR CI 1010 1 W32 g SOV-2936 SOV ACCUMULATOR VENT LINE FLOW ASCO HV2023031P CI 1010 1 W33 g v a W MOV-2275A NOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE REL MTR-DI CH 1010 23 5 W34 g MOV-2275C NOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE REL NTR-BI CH 1010 1,35 W34 v NOV, SEAL WATER RETURH SV

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_ NOV-2381 LIMITORQUE REL MTR-BI CH 1010 23 5 W35 g NOV-2115E NOV, CHARGING PUMP SUCT FRON VCT LIMITORQUE REL MTR-BI CH 1010 23 5 W36 u . NOV-2275B NOV, CHARGING PUMP TO RECIRC. SV G LIti! TORQUE REL MTR-BI CH 1010 23 5 W37

           ,    NOV-2885C                        MOV, LHSI RECIRC TO CHAPGIN3 PUMP VALVC                                                     LIMITORQUE                     PE ER LSS-CI SI     1010            23 5         W38                  - -

MOV-2885D MOV, LHSI RECIRC TO CHARGING PUMP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W38 Og e

6I m C/ rs U DATE 8/20/81 VIRGINIA ELECTRIC Aft 0 POWER COMPAHf PAGE 25 t30RTH AtiHA POWER STATIOtt UNIT 2 O - EQoIPfiENT ouit1FICAT10H nASTER t1ST # FILE / NARK NUNDER SORT V NARK 340. DESCRIPTIOtl NAtlUF ACTUR ER t10 DEL tiO. SYS PURCH. ACCIDENT FUttCT FILE PAGE h

                                                       .                                                                                           ORDER  12345678901234 NOV-2890C              tt0V, CH: RGING PUNP SUCT. FROM VCT                              LIMITORQUE                        REL HTR-BI SI     1010      23 5          W39 0-                                                                                                                                                                                            9 NOV-2890D              NOV, LHSI LINE STOP VALVE                                        LIMITORQUE                        REL HTR-BI SI     1010      23 5          W39 p       SOV-2842               SOV, RAOIATIOfi tt0HITORING lit 4E                               ASCO                              HT830654     CI   1010   1                W40 o                                                                                 ,

G FS-BD-2038 FLOW SWITCH. STN GEN BLWDH TO TK BARTON 288A BD 1257 6 *?vA c FS-BD-2030 FLOW SWITCH. STN GEta DLHDH TO TK BARTOH 2884 BD 1257 6 *H/A d h FS-BD-203F FLOW SWITCH, STN GEN BLWDH TO TK BARTON 288A BD 1257 6 *H/A FS-BD-203G FLOW SWITCH. STN GEN BLWDH TO TK BARTot4 288A BD 1257 7 *H/A Qe S FS-BD-203H FLOW SWITCH, STN GEN BLHDH TO TK DARTON 288A B0 1257 7 *H/A

  ~    FS-BD-203J             FLOW SWITCH STN GEH BLWDH TO TK                                  BART0tt                            288A        BD   1257             7     *H/A FS-HV-2207A            FLOW SWITCH, BATTER 5 ROON 2-1 VENT                              FLUID COMP                         12-64-3     HV   FIELD              9   *H/A                  i FS-HV-2207B            FLOW SWITCH. BATTERY ROON 2-2 VENT                                FLUID COMP                        12-64-3     HV   FIELD              9   *H/A               g{

p) ( WJ FS-HV-2207C FLOW SWITCH, BATTERY ROON 2-3 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A _ p FS-HV-22070 FLOW SWITCH BATTERY ROON 2-4 VENT FLUID CONP 12-64-3 HV FIELD 9 *H/A g= L) w FT-FW200A TRANCMITTER. AUX. FDWTR. DISCHARGE FOXBORO E13DN FW 4 *H/A p/ FT-FW2000 BRAH5NITTER, #UX. FDWTR. DISCHARGE FOXDORO E13DH FW 4 *H/A 'y g t \ w FT-FW200C TRAt4SNITTER, AUX. FDWTR. DISCHARGE FOXBORO E13DN FW 4 *H/A \ HC-2186 E/P FOR SE AL HATER FLOW cot 4 TROL CH 2 5 *H/A HCV-FW-200A LIMIT SWITCH, FW CONTROL TO STEAN GEN 1A HANCO FW 1125 57 *H/A 1125 O V HCV-FW-2000 LIMIT SWITCH, FW CF FOOL TO STEAf1 GEH IB LIMIT SWITCH, FW CONTROL TO STEAN GEN IC hat 1CO hat 1CO FW FW 1125 57 57

                                                                                                                                                                          *H/A
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_ HCV-FN-200C LCV-2460A LCV. LOOP 1 LETDOWH LINE CONT. VV HArtCO EA-180 CH 1 *H/A LCV-2460B LCV. LOOP 2 LETDOWH LINE CONT. VV HANCO EA-180 CI 1 *H/A LT-QS-200A TRANSHITTFR, RF WATER STORAGE TANK FOXBORO E13DN QS 1215 35 *H/A n g () W _ LT-QS-2008 TRANSHITTER. RF WATER STORAGE TANK FOXBORO E13DN QS 1215 35 *H/A [\ U 9 o # # # e n /

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LT-QS-200D TRANSHITIER. RF WATER STORAGE TAHK FOXDORD E13DN QS 1214 35 ati/A NOD-HV127A-1 NOD. SERVICE WATER PUNP HOUSE DANPER HV 4 *H/A NOD-HV127A-2 NOD SERVICE WATER DUNP HOUSE DANPER HV 4

  • t4/A NO3-HV127A-3 NOD. SERVICE WATER PUNP HOUSE DANPER HV 4 *H/A NOD-HV127A-4 NOD SERVICE WATER PUt1P HOUSE DANPER HV 4 *H/A HV 4 *H/A NOD-HV127B-1 NOD. SERVICE MATER PUNP HOUSE DAt1PER NOD-HV1278-2 NOD. SERVICE WATER PUNP HOUSE DAt1PER HV 4 *H/A NOD-HV1278-3 NOD SERVICE WATER PUNP HOUSE DANPER HV 4 *H/A NOD SERVICE WATER PUNP HOUSE DANPER HV 4 er4/A NOD-HV1278-4 2

1 i NOD-HV134 NOD. SCREEHWASH VENTILATION HV 4 *H/A T g i l l fiOD-HV135 NOD. CONTROL RN AC SYSTEN HONEYWELL M845A1027 H/ 6 *H/A h x M845A1027 HV 6 *H/A NOD. COHTROL RN AC SYST EN H0t4EYWELL e ,, O. NOD-HV136 HONEYWELL H845A1027 HV 9 *H/A NOD-HV137 HOD. UNIT 1 RELAY RH AC SYSTEN HOD-HV13S NOD UNIT 1 RELAY RH AC SYSTEN hot 4EYWELL M845A1027 HV 9 *H/A O- 6 NOD-HV235 NOD. CONTROL PN AC SYSTEN HONEYWELL M845A1027 HV 6 *H/A N00-HV236 f100. CONTROL RN AC SYSTEN HONEYWELL NS45A1027 HV 6 *H/A NOD. UNIT 2 RELAY RN AC SYSTEN HOtlEYWELL M845A1027 HV 9 *H/A NOD-HV237 NOD-HV238 HOD. UllIT 2 RELAY RN AC SYSTEN HONEYWELL HC45A1027 HV 9 *H/A HOD AUX FEEDWATER VENTILATION HV 4 *H/A NOD-HV269 l NOD AUX FEEDWATER VENTILATION hV 4 *H/A NOD-HV270 NOD. AUX FEEDWATER VENTILATION HV 4 *H/A NOD-HV271A NOD AUX FEEDWATER VENTILATION HV 4 *t1/A -s O MOD-HV271B 4 *N/A e!' N00-HV272A NOD AUX FEEDWATER VENTILATION HV l e O e' 11 _ _ _ _ - _ _ _ _ - -

0 0 DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPANY PAGE 27 140RTH Atit4A POWER STATIOta Ut31T 2 O EQUIPMENT QUALIFICATION HASTER LIST FILE / NARK HUNDER SORT h ORDER 12345678901234 P100-HV2728 NOD, AUX FEC0 WATER VEllTILATICH HV 4

  • t4/A NOV-FN-200A t10V, AUX STEAN GEH FD PP DISCH LIMITO,1QUE FW 1125 57 *t1/A NOV-FW-2000 NOV, AUX STE Att GEH FD PP DISCH lit 1ITORQUE FW 1125 57 *H/A NOV-FW-200". NOV. AUX STEAN GEtt FD PP DISCH VV LIMITORQUE FW 1125 57 *H/A NOV-HV-104-1 tiOV, ENERGEtlCY CONTROL ROOH AC HV 6 *H/A e

MOV-HV-104-2 NOV, ENERGEt4CY CONTROL ROON AC HV 6 *N/A NOV-HV-204-1 NOV, CONTROL ROOM ENER AIR SUPPLY HV 7 *ti/A NOV-HV-204-2 NOV CONTROL ROOM ENER AIR SUPPLY HV 7 *H/A NOV-F"'18-1 t10V, UNIT 1 Et1ERGEttCY RELAY ROOH AC HV 9 *H/A O NOV-HV118-2 075 NOV UNIT 1 Et1ERGENCY RELAY R00t1 AC HV 9 *H/A L NOV-HV218-1 t10V, Ut4IT 2 Et1ERGEt1CY RELAY ROOT 1 AC HV 9 *H/A  ? O NOV-HV218-2 NOV, UHIT 2 ENERGEt1CY RELAY ROON AC HV 9 *H/A ei _ NOV-QS-202A NOV RF WATER CHEM. ADD TAtlK LIMITORQUE QS 1181 35 *H/A . NOV-QS-202B NOV, RF WATER CHEN ADD TAHK LINITORQUE QS 1181 35 *H/A NOV-SW-100A NOV, SW RETURH TO RERVOIR ISOLATI0t4 LIMITORQUE SW 194 n v t10V-SW-100D NOV, SW RETURH TO RERVOIR ISOLATION lit 1ITORQUE SW 194 23 5 23 5

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NOV-SW-110A t10V, RECIRC. AIR COOLING COILS LIMITORQUE SW 194 3 *H/A NOV-SH-110B NOV, RECIRC. AIR C00L1HG COILS LIMITORQUE SW 194 3 *H/A NOV-SW-114A NOV RECIRC. AIR COOLING COILS lit 11 TORQUE SW 194 3 *H/A _ NOV-SW-1140 NOV, RECIRC. AIR COOLING COILS lit 11 TORQUE SW 194 3 *H/A t*0V-SW-115A NOV. AUX SW PUMP ISO VALVE LIMITORQUE SW 194 23 5 *H/A NOV-SW-11SB NOV, AUX SW PUt1P ISO VALVE

  • LIMITORQUE SW 194 23 5 *ti/A NOV-SW-117 t10V, CIRC WTR SW PUNP ISOLATION LIri! TORQUE SW 194 23 5 *H/A NOV, CIRC WTR IHTAKE TO SW PUNP lit 11 TORQUE SW 194 23 5 *H/A

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NOV-Sil-119 NOV, NAKE-UP ISOLATI0H lit 1ITORQUE SW 194 23 5 *tVA Om O NOV-Sl!-200 A NOV, SW RETURH TO RESERVOIR ISOLATI0H LIMITORQUE SW 1194 23 5 atVA NOV-SW-2008 fl0V, SW RETURH TO RESERVOIR ISOLAT10ti lit 1ITORQUE SW 1194 23 5 *H/A U-F10V, AUX SW PUNP ISO VALVE LIMITORQUE SW 1194 23 5 *H/A S NOV-SW- 215 A n NOV-SW-2150 NOV. AUX SW PUt1P ISO VALVE LIMITORQUE SW 1194 23 5 *tVA g V W NOV-SW-217 HOV, CIRC W1R SW PUt1P ISOLATION LIMITORQUE SW 1194 23 5 *N/A NOV-SW-219 NOV, NAKE-UP ISOLATION LIMITORQUE SW 1194 23 5 *H/A NOV-SW-220A NOV, SW TO CIRC TUtit4EL L!NITORQUE SW 1194 3 *tVA f- NOV-SW-2208 NOV, SW TO CIRC tut #lEL LIMITORQUE SW 1194 3 *tVA 2 PS-EG-2JA PRESSURE SWITCH, ENER GEH 2J C0t1P ALLEH 07ADLEY 836-C9A ED FIELD 8 atVA i. 2 s PS-EG-2JB PRESSURE SWITCH, ENER GEN 2J Cot 1P ALLEH DRA0LET 836-C9A ED FIELD 8 *tVA  ?

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PT-NS-201A TRANSNITTER, NAIH STN LP I PRES CONTROL FOXBORO E11Gt1 MS 1215 2 *N/A _

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PT-NS-201C TRANSHITTER, NAIH STN LP III PRES CONTROL FOXBORO E11GM NS 1215 2 *tVA RN-SW-224 RADIATI0fl NOHITORS, EW RAD NONITORS WESTINGHOUSE 1655 SW 1200 4 *tVA RN-SW-225 RADIATION F10HITORS. SW RAD NOHITORS WESTINGHOUSE 1655 SW 1200 4 *tVA RN-SW-226 RADIATION NOHITORS, SW RAD N0tlITORS WESTINGHOUSE 1655 SW 1200 4 atVA O-RN-SW-227 RADIATION MONITORS, SW RAD NONITORS WESTINGHOUSE , 1655 SW 1200 4

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RPS-EG-CHA PRESSURE SWITCH, ENERG GEH 2H COMP ALLEH E.RADLEY 836-C9A ED 8 *H/A O. PRESSURE SWITCH, ENERG GEH 2H C0t1P ALLEH BRADLEf 836-C9A ED 8 *H/A e _ CPS-EG-2HB t SOV-CV-200 SOV, COHTAltW1EHT VACUUN EJECT IHLET ASCO CI 1125 1 atVA SOV-HV-160-1 SOV, CONTROL AHD RELAY ROOM DANPER ASCO HV FIELD 6 *tVA

     -      SOV-HV-160-2             SOV, CONTROL At3D RELAY ROON DANPER                                     ASCO                                                                 HV   FIELD         6        *tVA                 -

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O O DATE 0/20/81 VIRGINIA ELECTRIC AND POWER COMPAt4Y PAGE 29 NORTH ant 4A POWER ST ATIO'1 Ut4IT 2 O EQUIPMENT QUALIFICATIOtl NASTER LIST FILE / MARK nut 1SER SORT h O nARx NO. DESCRIPT10H niNuFACTURER n0DEt NO. SYS eUaCH. ACCrotHT FU,,CT ORDLP 12345678901234 RILE eAcE e SOV-HV-161-2, SOV, cot 4 TROL At40 RELAY ROON DAMPER ASCO HV FIELD 6 *H/A SOV-HV-215A-1 SOV, FLUSH VALVE SERVICE BLOG STRAINER CI 1 *H/A SOV-HV-215A-2 SOV, FLUSH VALVE SERVICE BLDG STRAINER CI 1 *H/A SOV-HV-2158-1 SOV, FLUSH VALVE SERVICE BLDE STRAltlER CI 1

  • t4/A SOV-HV-2150-2 SOV, FLU 3H VALVE SERVICE BLDG STRAINER CI 1 *H/A SOV-HV-2200A SOV, VA'.VE FOR 2-HV-P-22A hot,EYWELL HV FIELD 9 *t4/A 50V-HV-22000 SOV, VALVE FOR 2-HV-P-200 HONEYWELL HV FIELD 9 *H/A O.

SOV-HV-2200C SOV, VALVE FOR 2-HV-P-22C H0ttEYWELL HV FIELD 9 LN/A e SOV-HV-2300A SOV, BOTTLED AIR SYSTEN ATKONATIC SLWP-2300 HV 6 * *4/ A O. SOV-HV-23008 SOV, BOTTLED AIR SYSTEN ATK0MATIC SLWP-2300 HV 6 *H/A 0; SOV-HV-2300C SOV, BOTTLED AIR SYSTEN ATK0MATIC SLWP-2300 HV 6 *H/A  ? O ei SOV-HV-23000 SOV, BOTTLED AIR SYSYTEN ATKOMATIC SLWP-2300 jiV 6 *H/A SOV-HV-2306A SOV, BOTTLED AIR SYSTEM ASCO HV 6 *WA . SW-HV-2306B SOV, BOTTLED AIR SYSTEN ASCO HV 6 *H/A SOV-HV228-1 SOV, EXHAUST TO IODINE FILTER BANK ASCO HV FIELD 23 5 *H/A SOV-HV228-2 SOV, E9'.HAUST TO IODINE FILTER BANK ASCO HV FIELD 23 5 *H/A SOV-HV2301A SOV, SAFEGUARDS EXHAUST SYSTEN ASCO 8320A22Y HV 0 *H/A SOV-HV2301B SOV. SAFEGUARDS EXHAUST SYSTEN ASCO 8320A22Y HV O *H/A 50V-NS-210A SOV, NAIM STEAN LINE BLOWDOWN ASCO CI 1125 *H/A p a _ SOV-NS-2108 SOV, HAIN STEAM LINE BLOWE0WN ASCO CI 1125 1 1 *H/A e TCV-HV155 TEMP CNTRL VALVE, cot 4 TROL RN AC SYSTEN HONEYWELL 1606 HV 6 *N/A TCV-HV164 TEMP CNTRL VALVE, cot 41ROL RN AC SYSTEN HONEYWELL 1606 HV 6 *H/A TCV-HV166 TEMP CNTRL VALVE, UNIT 1 RELAY RN AC SYS Hot 1EYWELL 1606 HV 9 *t!/A TCV-HV167 TEMP CNTRL VALVE, UNIT 1 RELAY RN AC SYS HONEYWELL 1606 HV 9 *H/A O e

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b- t%DK t10. DESLdIPTION HAttUFACTURER HODEL HO. SYS PURCH. ACCIDENT FUNCT FILE ORDER 12345678901234 PAGE h c s TCV-HV255 TEt1P CHTRL VALVE, CONTROL RN AC SYSTL

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                                   , TEMP CHTRL VALVE, Cot 4 TROL RN AC SYSTEN                                                                                    1600                   HV                                 6 h

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10- 0 AMBIENT TEMP. NONI.MR SERV. BLDG. ROSEMOUNT 78-81-17 AM 1363 7 47 TE-AM-217A AMBIENT TEMP. NOHITOR SERV. BLDG, ROSEMOUNT 78-81-17 Ali 1363 7 47 c TE-AM-215 TE-AM-216 AMDIENT TEt1P. MONITOR SERV. BLDG. ROSEMOUt4T 78-81-17 AM 1363 7 4 .- TE-AM-100A AMBIENT TEffPERATURE MONITORS ROSEtt0UNT 78-81-17 AM 1363 8 72 ( ROSEMOUtli 78-81-17 A *1 1363 8 72 TE-AM-1000 AttBIENT TEMPERATURE NOHITORS TE-AM-101A AMSIENT TEt1PERATURE MONITORS ROSEMOUNT 78-81-17 AM 1363 8 72 g

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_ TE-AM-101B TE-AM-102A AMBIENT TEMPERATURE MOHITORS ROSEtt0UNT 78-81-17 AM 1!63 8 72 TE-AM-102B AMBIENT TEMPERATURE MotlITORS ROSEtt0UtlT 78-81-17 AM 1363 8 72 AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AM 1363 8 72 TE-AM-103A m U h AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AM 1363 8 72 _TE-AM-1038 O 9 o 8 8 # e

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                                  \

VIkGIllIA ELECTRIC AND POWER COtt?ANY p! x PAGE 2 t30RTH ANilA POWER STATION UNIT 2 EQU!PttENT GUALIFICATIO!4 MASTER LIST DECIPTION/ FILE SORT h ORDER 12345678901234

           *TE-AM-104A                        AttBIENT TEttPERATURE tiotilTORS                                  ROSEtt0Ut4T                           78-81-17         AM      1363          8           72 Of TE-AM-104B                        AMBIENT TEttPERATURE tt0NITORS                                    ROSEtt0UHT                            78-81-17         mM      1363          8           72 9

TE,-AM-105A AtfBIENT TEMPERATURE t10HITORS ROSEMOUt4T 78-81-17 AM 1363 8 72 TE.AM-105B AMBIENT TEMPERATURE Mot 4ITORS ROSEMOUtiT 78-81-17 AN 1363 8 72 TE-4M-106A AMBIENT TEttPERATURE MONITORS ROSEt10UtiT 78-81-17 AM 1363 6 72 TE-AM-106B ArtBIENT TEMPERATURE t10HITORS ROSEMOUt4T 78-81-17 AM 1363 L 72 TE-AM-107A AffBIENT TEttPERATURE M0ttITORS ROSEMOUt4T 78-81-17 AM 1361 8 72 TE-AM-107B AMBIENT TEMPERATURE tt0NITORS ROSE MOUt4T 78-M-17 AM 1363 8 72 g TE-AM-108A AMBIENT TEMPERATURE M0t1ITORS ROSEMOUtiT E7995/B AM 1363 8 72

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TE-AM-108B At1BIENT TEMPERATURE Mot 11 TORS ROSEtt0UNT E7995/B Ari 1363 8 72 S 2-BY-C-02 BATTERY CHARGER GOULD 1250 8 *H/A 1 0 2-GY-C-03 BATTERY CHARGER GOULD ED ED 1250 8 *ti/A e t 2-BY-C-04 BATTERY CHARGER COULD ED 1250 8 *H/A 2-BY-C-05 BATTERY CHARGER GOULD ED 1250 8 *H/A h 2-BY-C-C' BATTERY CHARGER GOULD ED 1250 8 *H/A

2-Bf-C-07 BATTERY CHARGER GOULD ED 1250 8 *H/A 2-BY-B-04B BATTERY. STATION BATTERY 2-4 CSD BATTERY HV 1262 8 *H/A 2-BY-B-01A BATTERY. STATICH BATTERY 2-1 CSD BATTER ( ED 1262 8 ott/A 2-BY-B-01B BATTERY STATICH BATTERY 2-1 CSD BATTERY ED 1262 8 *t1/A b-

_ 2-BY-B-02A BA"TERY STATION BATTERY 2-2 CSD BATTERf ED 1262 8 *H/A 2 -B Y-B - 0 2B BATTERY. STATION BATTERY 2-2 CSD BATTERY ED 1262 8 *H/A 2-BY-B-03A BATTERY. STATI0tl BATTERY 2-3 CSD BATTERY ED 1262 8 *t1/A 2-BY-B-03B EATTERY STATIDH BATTERY 2-3 C80 BATTERT ED 1262 8 *H/A _2-BY-B-04A BATTERY. STATI0tl BATTERY 2-4 CSD BATTERY HV 1262 8 *H/A Il

M f% p O  % DATE 8/20/81 VIRGINIA ELECTRIC APID F0WER C0i1PANY PAGE 3 HORTH AtlHA FCNER STATI0tl UtlIT 2 O EaVInt1ENT auAtirICATICH nASTER tIST C DESCRIPTIC?UFILE SORT ORDEP 12345678901234 p 2-EP-CB-28A CABIllET. AUX RELAY CABINET A ED 23 5 78 *H/A d h 2-EP-CB-28B CABINET. AUX RELAY CABINET B ED 23578 *H/A 2-EP-CD-28 CABINET. AUX RLY CAB CASING CLNG (RS2A) ED 2 *H/A 2-EP-CB-28 CABINET. AUX RLY CAB CASIllG CLHG (RS20) ED 2 *ti/A o-2-EI-CB-06A 2-EI-CB-06B CABIllET. AUX SNUTDOWil PAtlEL CABINET. AUX SNUTDOWH PAtlEL WOLFE 2 NAtlH WOLFE & HAHti ED ED 1307 13G7 2345 2345

                                                                                                                                                                                                             *H/A
                                                                                                                                                                                                             *H/A e

2-EI-CB-48A , CABINET. AUXILIARf RELAY WESTIllGHOUSE *H/A 2-EI-CB-48B CABINET. AUXILIARY RELAY WESTINGNOUSE *N/A e 2-EI-CB-156A CABINET. CDHTROL CAB FOR AIR SYS ED 6 *H/A .b 2-EI-CB-156B CABINET. CONTROL CAB FOR AIR SYS ED 6 *H/A 2-EP-CB-34 CABINET, C0tlTROL PANEL FOR CONTROL RM AC ED FIELD 6 *H/A I g]

s. h 1 2-EP-CB-35 CABINET. CONTROL PANEL FOR CONTROL RM AC ED FIELD 6 *H/A nj 2-EP-CB-12A CABINET. DC CABINET 2-1 GENERAL ELECTRIC ED 1266 8 *H/A 2-EP-CB-12B CABINET, DC CABINET 2-2 GENERAL ELECTRIC ED 1266 8 *H/A h

2-EP-CD-12C CADINET DC CABINET 2-3 GENERAL ELECTRIC ED 1266 8 *H/A 2-EP-CD-120 CABINET. DC CADINET 2-4 GENERAL ELECTRIC ED 1266 8 *H/A h 2-EP-CB-12B1 CABINET. DC DISTRIBUTIOtt PAtlEL 2-2A CENERAL ELECTRIC ED 1609 8 *ti/A

                -                                                                                                                                                                                                           G 2-EP-CB-1201                    CABINET. DC DISTRIBUTIDH PANEL 2-4A                                                 GENERAL ELECTRIC                         ED 1609                           8  *H/A 2-EP-CB-23A                     CABINET. DC DISTRIE,UTION PANEL 2A                                                  GENERAL ELECTRIC                         ED 1266                           8  *H/A

_ 2-EP-CD-238 CABINET DC DISTRIBUTION PAtlEL 2B GENERAL ELECTRIC ED 1266 8 *H/A 2-EI-CB-08A CABINET. EMER GEH 2H CONTROL PANEL WOLFE & HANN ED 1307 8 *H/A 2-EI-CB-088 CABINET. EttER GFH IH COHTROL PANEL WOLFE & F1ANH ED 1307 8 *H/A 2-EP-CB-80A CABINET. INST DISTRIBUTION PANEL 1 GENERAL ELECTRIC ED 1302 8 *H/A _ 2-EP-CB-808 CABINET. INST DISTRICUTI0tl PANEL 2 GEtiERAL ELECTRIC ED 1302 8 *H/A O e O O O O e

        !I

35 O o o/ O i ' DATE C/26. VIRGINIA ELECTRIC APID POWE OMPAN1r PAGE 4 tt0RTH AIDIA POWE4 STATION UNIT 2 O- Eau 1PnENT OUALIrICATION MASTER LIST DESCRIPTION / FILE SORT h ORDER 12345678901234 2-EP-CB-80C CAB 1t4ET. INST DISTRIBUTIOt1 PANEL 3 GEt1ERAL ELECTRIC ED 1302 8 *H/A 2-EP-CB-800 CABINET, INST DISTRIBUTI0tl PANEL 4 GENERAL ELECTRIC ED 1302 8 *H/A 2-EI-CB-02 CABINET, HAIN CONTROL BOARD WOLFE & MANt1 ED 1226 2345 *N/A 2-EI-CB-03 CABINET, Malti CONTROL BO ARD NOLFE & F1Aini ED 1226 2345 *H/A 2-EI-CB-04 CABINET, t1AIt1 C0tiTROL BOARD WOLFE & NANil ED 1206 2345 *ti/A 2-EI-CB-05 CABINET, HAIH CONTROL BOARD WOLF E & MAtR4 ED 1226 2345 *H/A CABINET, NAIH COHTROL BOARD WOLFE & NAtDi 1226 2345 *H/A O 2-EI-CB-01 2-EI-CB-23A CABIt4ET, PROCESS RACK WESTIt4GHTSE ED ED 1291 2345 *H/A e 1291 2345 . Of-2-EI-CB-230 2-EI-CB-23C CABIt4ET, PROCESS RACK CABINET, PROCESS RACK WESTIllGHOUSE WESTINGHOUSE ED ED 1291 2345

                                                                                                                                                                                                                   *H/A
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g 2-EI-CB-23D CABINET, PROCESS RACK WESTINGHOUSE ED 1291 2345 *H/A g

;V                                                                                                                                                                                                                              W 2-EI-CB-51                       CABINET, Pr?OCESS RACK 1                                                                    WESTINGHOUSE                            ED    1010           135             *H/A CABINET PROCESS RACK 2                                                                                                                    1010 10 1

2-EI-CB-52 2-EI-CB-53 CABIt1ET, PROCESS RACK 3 WESTINGHCUSE WESTIllGHOUSE ED ED 1010 135 135

                                                                                                                                                                                                                   *H/A
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2-EI-CB-54 CABINET, PROCESS RACK 4 WESTINGHOUSE ED 1010 135 *H/A 2-EI-CB-644 CABINET, SOLID STATE PPOT AUX RELAY RACK WESTItiGHOUSE *H/A 2-EI-CD-648 CABINET. SOLID STAJE PROT AUX RELAY RACK WESTIt1GHOUSE *N/A 2-EI-CB-47A CABINET. SOLID STATE PROTECTION WESTINGHOUSE ED 1010 135 *H/A 2-EI-CB-47B CABINET, SOLIO STATE PROTECTI0tl WESTINGHOUSE ED 1010 135 *H/A _ 2-EI-CD-47C CABINET, SOLID STATE PROTECTIOt1 WESTItlGHOUSE ED 1010 135 *H/A 2-EI-CD-47D CABINET, SOLID STATE PROTECTIOtl WESTINGHOUSE ED 1010 135 *N/A 2-EI-CB-47E CABINET. SOLID STATE PROTEC110H , WESTIt1GHOUSE ED 1010 135 *H/A q 2-EI-CB-47F CABINET. SOLID STATE PROTECTIOf3 WESTINGHOUSE ED 1010 135 *H/A a ss , W 2-EI-CB-07 CABINET, VENTILATIGH CONTROL BOARD WOLFE & NAIDI ED 1307 6 9 *N/A O e Og e

O O DATE 8/20/21 VIRGINIA ELECTRIC AND POWER COMPANY PAGE 5

        ,                                                                                                                               NORTH AtitlA POWER STATION Ut41T 2 EQUIPMEt4T QUALIFICATI0H MASTER LIST                                                        h DESCRIPTION / FILE SORT
            ...__..._. n -_.._........ .............__....................___....___.-____...-___._.....__............................._..___....

Mp MARK HO. DESCRIPTION MANUFACTURER MODEL NO. SYS PURCH. ACCIDENT FUNCT FILE PAGE W ORDER 12345673901234 p 2-E P-CD-0

  • A CABINET VITAL BUS CAB 2-1 GENEPAL ELECTRIC ED 1302 8 *H/A g
     \>                                                                                .                                                                                                                                         W 2-EP-CD-048                                                                  CABINET, VITAL BUS CAB 2-2                              GENERAL ELLCTRIC                    ED   1302         8        *H/A e

2-EP-CB-04C CABINET, VITAL CUS CAB 2-3 GENERAL ELECTRIC ED 1302 8 *N/A 2-EP-CD-04D CABINET, VITAL BUS CAB 2-4 GENEPAL ELECTRIC ED 1302 8 *H/A 2-EP-CB-19A CABINET, VITAL SOV PANEL GENERAL ELECTRIC ED 1302 8 *N/A 2-EP-CB-19B CABINET VITAL SOV PANEL GENERAL ELECIRIC ED 1302 8 *H/A o A HGB-35 CABLE. 2/C #16 AWC: ' BIW NEO XL PLY ED 1265 2345 09 m V

  • W NGB-39 CABLE. 3/C #16 AWG BIW HE0 XL PLY ED 1265 2345 09 NGB-40 CABLE, 4/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 LHC CABLE. HARDLINE COAXIAL LOW NOISE CABLE ENDEVC0 3075M6 RC 1605 4 T04 J,n NGB-12 CABLE. TRIPLEX #1 AWG GENERAL CABLE NE0/ETH/PR ED 1256 8 14
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^ NGB-12 CABLE. TRIPLEX #1 AdG OKONITE NE0/ETH/PR ED 1384 8 12 NGB-15 CABLE, TRIPLEX #4 AWG OKONITE NE0/ETH/PR ED 1128 8 06 } NGB-16 CABLE, TRIPLEX #6 AWG OKONITE NE0/ETH/PR ED 1128 8 06 NGA-3 CABLE. TRIPLEX 1000 MCM GENERAL CABLE HE0/ETH/PR ED 1255 8 10 NGA-3 CABLE, TRIPLEX 1000 MCM OKONITE ED 1375 8 11 NGB-11 CABLE, TRIPLEX 2/0 AWG OKONITE HE0/ETH/PR ED 1384 8 12 m fm) ( .W NGB-11 CABLE. TRIPLEX 2/0 AWG GENERAL CABLE HE0/ETH/PR ED 1256 8 14 NGA-15 CABLE. TRIPLEX 250 MCM CERRO WIRE NEO XL PLY ED 1359 35 07 _HGB-7 CABLE. TRIPLEX 250 MCM OKONITE NE0/ETH/PR ED 1384 8 12 CABLE. TRIPLEX 250 NCM - GENERAL CABLE HE0/ETH/PR ED 1256 8 14 m (q

      .),,NGB-7                                                                                                                                               .                                                                  W NGA-14                                                                      CABLE, TRIPLEX 4/0 AWG                                  OKONITE                             ED   1375         8          11 m NGB-5                                                                             CABLE. TRIPLEX 500 MCM                                   OKONITE                NE0/ETH/PR ED    1384         8          12             g G                                                                                                                                                                                                                           w NGB                                                                     CABLE. TRIPLEX 500 MCM                                  GENERAL CABLE           NE0/ETH/PR ED    1256         8          14 o                                                                                                             -

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O DATE 8/2$rvi O e VI9GINIA ELECTRIC AtID F0WEk^ COMPANY O PAGE 6 O NORTH ANNA POWER STATION UllIT 2 O EauIPnENT auAlir1 CAT 10,i nisTER t1st DESCRIPTICN/ FILE SCRT e ORDER 12345678901234 ttGA-4 , CABLE, 1/C #12 AWG CERRO WIRE HE0 XL PLY ED 1312 8 00 0p NGA-34 CABLE, 1/C #14 AWG CERRO WIRE flEO XL PLY ED 1312 8 08 e NGA-9 CABLE, 1/C 1500 HCN GENERAL CABLE HEO/ETH/PR ED 1255 8 10 NGA-21 CABLE, 1/C 2/0 AWG. OK0tlIT E NE0/ETH/PR ED 1128 8 06 NGA-10 CABLE, 1/C 2000 MCH GENERAL CABLE NE0/ETH/PR ED 1255 8 10 NGA-20 CABLE, 1/C 250 MCM OKOtlI TE NE0/ETH/FR ED 11?8 8 06 NGA-40 CABLE, 12/C #14 AWG CEFR0 WIRE HEO XL PLY ED .512 8 08 NGA-68 CABLE, 12/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGA-68 CABLE, 12/C #16 AW% CERRO WIRE NEO XL PLY ED 1392 123456 13 NGA-70 CABLE, 18/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGA-70 CABLE, 18/C #16 AWG CER90 WIRE NEO XL PLY ED 1392 123456 NGA-67 CABLE, 19/C #16 AWG BIH HE0 XL PLY ED 1265 2345 13 09 e NGA-67 e CABLE, 19/C #16 AWG CERRO WIRE NEO XL PLY ED 1392 123456 13 a NGB-01 CABLE, 2/C #10 AWG OKONITE HYP XL PLY ED 1404 8 16 . NGA.45 CABLE, 2/C #12 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-35 CABLE, 2/C #14 AWG CERRO WIRE NLO XL PLY ED 1312 8 08 NGA-69 CABLE, 2/C #16 AWG BIH HEO XL PLY ED 1265 2345 09 NGB-35 CABLE, 2/C #16 AWG CEERO WIRE NEO XL PLY ED 1392 2345 13 NGA-19 CABLE, 2/C #2 AWG CERRO HIRE NEO XL PLY ED 1312 8 08 _ HGB-44 CABLE, 2/C #6 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGB-43 CABLE, 2/C #8 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGB-18 CABLE, 3/C #10 AWG OVONITE NE0/ETH/PR ED 1128 8 06 NGB-19 CABLE, 3/C #12 AWG OKONITE NE0/ETH/PR ED 1128 8 06 (m

        /

m W _NGA-36 CABLE, 3/C #14 AWG ' CERRO WIRE NEO XL PLY ED 1312 8 08 O e O e, Il

O O DATE 8/20/81 VIRGINI A ELECTRIC AND POWER COMPAtlY PAGE 7 p v HORTH AtlNA POWER STATIDH Utili 2 EQUIPt1ENT QUALIFICATI0t3 MASTER LIST DESCRIPTION / FILE SORT

       - - -                      MARK HO.                                 DESCRIPTICH                                                  HANUFACTURER      NODEL HO. SYS PURCH. ACCIDENT FUNCT FILE    PAGE ORDER  12345678901234 NGB-39                       CABLE, 3/C #16 AWG                                                                   CERRO WIRE              HE0 XL PLY ED     1390   123456           13 g,

NGB-17 CABLE, 3/C #8 AWG OKONITE HE0/ETH/PR ED 1128 8 06 HGA-12 CABLE, 3/C 1000 ftCN ALUMINUM ARMOR GENERAL CABLE NEO/ETH/PR ED 1255 8 10 g HGA-6 CABLE, 3/C 1250 MCN ALUttINUM ARtt0R GENERAL CABLE i1E0/ETH/PR ED 1255 8 10 NGA-5 CABLE, 3/C 1250 MCM STEEL ARMOR GENERAL CABLE tlEO/ETH/PR ED 1255 8 10 g HGA-13 CABLE, 3/C 4/0 AWG OKotlITE ED 1375 8 11 p HGA-13 CABLE, 3/C 4/0 AWG. ALUMINUM ARMOR GENERAL CABLE NE0/ETH/PR ED 1255 8 10 g b/ W HGA-4 CABLE, 3/C 500 MCM OKONITE ED 1375 8 11 NCA-4 CABLE, 3/C 500 t1CM ALUMIllVM ARMOR GENERAL CABLE HE0/ETH/PR ED 1255 8 10 NGA-57 CABLE, 4/C #10 AWG CERRO WIRE NEO XL PLY ED '1312 8 08 HGA-77 CABLE, 4/C #10 AWG CERRO WIRE

  • HEO XL PLY ED 1312 8 08 1 NGA-47 CABLE, 4/C #12 AUG CERRO WIRE HE0 XL PLY ED 1312 8 08
O HGB-45 NGB-55 CABLE, 4/C #6 AWG CABLE, 45/C #16 AWG CERRO WIRE BIW NEO XL PLY ED NEO XL PLY ED 1312 7.265 2345 8 08 09 e

HGA-37 CABLE, 5/C #14 / 7 CERRO WIRE NEO XL PLY ED 1312 8 08 NCA-49 CABLE, 7/C #12 AWG CERRO WIRE HEO XL PLY ED 1312 8 08 HGA-38 CABLE, 7/C #14 AWG CERRO WIRE UE0 XL PLY ED 1312 8 08 HGA-39 CABLE, 9/C #14 AWG CERRO WIRE HEO XL PLY ED 1312 8 08 2-HV-E-4A CHILLER, CONTROL AND RELAY ROON WESTINGHOUSE PC088W10 HV 1247 6 01 _ 2-HV-E-4B CHILLER, CONTROL AND RELAY ROOH WESTINGHOUSE PC088H10 HV 1047 6 01 2-HV-E-4C CHILLER, CONTROL AND RELAY ROOM WC3TINGHOUSE PC088W10 HV 1247 6 01 1-HV-E-30 CHILLER, EMERGEr:CY CONTROL ROOH AC HV 6 *H/A 2-HV-E-30 CHILLER, Et1ERGENCY CONTROL ROOM AC HV 6 *N/A _1-HV- E-31 CHILLER, UNIT 1 EMERGENCY REL AY ROON AC HV 9 *H/A o e O O O O e 11

s p D ( ' DATE 8/2 VIRGINIA ELECTRIC AffD POW v-40MPAHf PAGE 8 HORTH MilA POWER STATION Ut1IT 2 h- EQUIPMENT QUALIFICATION MASTER LIST DESCRIPTION / FILE SORT h ORDER 12345678901234 2-HV-E-31 CHILLER, UttIT 2 El1ERGEHCY RELAY R00t1 AC HV 9 *H/A 2-EG-C-2JA COMPRESSOR, ENERG GEli AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A 2-EG-C-2HA COMPRESSOR Et1 ERG GEH AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A 2-EG-C-2HD COMPRESSOR, EMERG GEtt AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A 2-EG-C-2JB C0t1FRESSOR, EMERG GEH AIR COttP 2 COLT INDUSTRI S ED 1220 8 *H/A 2-EG-AC-2HA COOLER, AFTER COOLER EMER GEtt ROON 2H ED 8 *tt/A 2-EG-AC-2HB COOLER, AFTER COOLER EMER GEH R00t1 2H ED 8 *H/A e 2-HV-AC-09 COOLER, AFTER COOLER Et1ER GEN ROct1 2H ED 6 *H/A 2-HV-AC-08 COOLER, AFTER COOLER EMER GEH ROON 2't ED 6 *H/A 2-EG-AC-2JA COOLER, AFTER C00LFR EMERG GEH ROOM 2J ED 8 *ti/A 2-EG-AC-2JB COOLER, AFTER COOLER EMERG GEN R00t1 2J ED 8 *H/A e

     -;O 1-HV-AC-1                                                                                   COOLER, CONTROL RN AC SYSTEN                                                                        HV                  6                 *H/A 1-HV-AC-2                                                                                   COOLER, COtiTROL RM AC SYSTEtt                                                                      HV                  6                 *t1/A e

20 2-HV-AC-06 COOLER, EMERGENCY SWITCHGEAR ROON A/C BUFFALO FORGE HV 1269 9 *H/A 2-HV-AC-07 COOLER, EttERGENCY SWITCitGEAR ROON A/C CUFFALO FORGE HV 1269 9 *H/A Oe COOLER, UNIT 1 RELAY RN AC SYSTEN O 1-HV-AC-7 HV 9 *H/A 1-HV-AC-6 COOLER, UllIT 1 RELAY RN AC SYSTEN HV 9 *H/A EP HCV2186 E/P FOR HAND C0t4 TROL VALVE HCV-2186 FISHER 546 W31 HC-2186 E/P FOR SEAL WATER FLOW C0f4 TROL CH J 5 *H/A _ E/P FC-2122 E/P. CHARGING FLOW CONTROL COPES-VULCAN CH 61 TV-SW-101A EMER SUP, TO CONTAlltMENT AIR COOLER FISHER SW 1125 3 *H/A TV-SW-101B EMER SUP, TO CONTAIttMENT AIR COOLER FISHER SW 1125 3 *H/A g TV-SW-201A EMER SUP, TO CotiTAINtENT AIR COOLER FISHER SW 1125 3 *H/A g V W _1V-SW-201B EMER SUP, TO CONTAIHMEHT AIR COOLER FISHER SW 1125 3 *H/A O e f.

LRJ (3 s_/ O V DATE 8/20/81 VIRGINIA ELECTRIC AND F0WER COMPANY PAGE 9 110RTH ANNA POWER STATION UNIT 2 U EQUIPMENT QUALIFICATICH HASTER LIST DESCRIPTION / FILE SORT ORDER 12345678901234

           ............. --....---.....-..............--- =......- ...------ .......... .......... --- ...... ........-. -.. --... --..

o 1 -HV-F-8A 1-HV-F-8C FAN, AUX BLDG EXHAUST FAN, AUX BLDG EXHAUST WESTIt1GHOUSE WESTINGHOUSE TAAtt TAAN HV HV HUS-71 HUS-71 23 23 1 1 45 45 e 1-HV-F-8B FAN, AUX BLDG EXHAUST WESTItlGhuuSE TAAtt LV NUS-71 23 1 45 2-HV-F-69 FAN, AUX FEEDWATER VENTILATIDH HV 4 *H/A fs 2-HV-F-70A FAH, AUX FEEDWATER VENTILATIOH HV 4 *H/A k.) 2-HV-F-70B IAti, AUX FEECWATER VENTILATIOt1 HV 4 *H/A 2-HV-F-57A FAH, BATTERY ROOH 2-1 EXHAUST FAH AEROVENT FAH CO. HV 1241 9 *H/A 2-HV-F-57B FAH, BATTERY ROON 2-2 EXHAUST AEROVEHT FAN CO. HV 1241 9 *H/A 3 2-HV-f-57C FAN, BATTERY ROOM 2-3 EXHAUST AEkOVENT FAN CO. HV 1241 9 *H/A u 2-HV-F-57D F Ati, BATTERY ROOM 2-4 EXHAUST FAH AEROVENT FAN CO. HV 1241 9 mH/A 2-HV-F-41 FAH, CONTROL ROOM EMER VENT DUFFALO FORGE HV 1296 6 *ti/A FAN, EMERGEtiCY CONTROL ROOM AC HV 6 *H/A } 1-HV-F-41 FAH, EMERGENCY SWITCHGE AR VENT BUFFALO FORGE HV 1296 9 *H/A

.o 4         2-HV-F-42 2-HV-F-24                        FAH, EQUIPMENT ROOM SUPPLY                                   AEROVENT FAN CO.         7-216 IH F HV         1241                   6             03 e

1-HV-F-22B FAH, EXHAUST FAH EMER GEN R00t. 2H AEROVEt4T FAN CO. HV 1241 9 *H/A 1-HV-F-220 FAH, EXHAUST FAH EMER GEH ROOM 2J AEROVENT FAH CO. HV 1241 9 *H/A 2-HV-F-400 FAH, SAFEGAURDS AREA VENTILATICH DUFFALO FORGE 680B101G57 HV 1296 C 18 2-HV-F-40A FAH, SAFEGAUROS AREA VENTILATION BUFFALO FORGE 6800101G57 HV 1296 0 18 1201 o_ 2-HV-F-71B 21 FAH, SAFEGAURDS AREA VENTILATICH JOY MANUFACTURING 21 1A-450 HV 'J

          .2-HV-F-71A FAH, SAFEGAURDS AREA %2HTILATICH                             JOY HANUFACTURING        21-1A-450          HV 1201                       0         21 6

1-HV-F-61 FAH, SCREEHWASH VENTILATION HV 4 *H/A 1-HV-F-42 FAH, UNIT 1 ENERGFNCY RELAY ROOM AC HV 9 *H/A 2-HV-F-68A FAH, 1H SUPPLY Fall JOY HANUFACTURING HV 1001 1 *H/A _ 2-HV-F-6BD FAH, IJ SUPPL) FAH JOY MANUFACTURIllG HV 1001 1 *N/A

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    ,     FS-HV-2207C                         FLCt' SWITCH, BATTERY ROOM 2-3 VEtiT                          FLUID COMP                        12-64-3           HV  FIELD                 7           *ti/A FS-HV-2207D                         FLCW SWITCH, BATTERY RCON 2-4 VENT                            FLUID COMP                        12-64-3           HV  FIELD                9            *N/A
    -s    FS-ED-203J                          FLOW SWITCH, STM GEti BLWDN TO TK                             BART0tl                           288A              BD  1257             7                *t1/A U

FS-BD-2030 FLOW SWITCH, STM GEN BLNDil TO TK BART0tl 288A BD 1257 6 *ti/A h FS-BD-203F FLCW SWITCH, STM GEN BLWDN TO TK BART0tt 288A BD 1957 6 *N/A O- O FS-BD-203G FLCW SWITCH, STM GEN BLWDN TO TK BARiott 2802 BD 1257 7 *N/A FS-BD-203B FLCW SWITCH, STM GEN BLWDN TO TK

  • BARTott 288A BD 1257 6 *N/A FS-BD-203H FLOW SWITCH, STM GEN BLWDN TO TK BART0tl 288A BD 1257 7 *N/A
      %   2-EG-B-028                          GENERATCR, EMER GEN 2H BATTERY                                COLT INDUSTRIES                                     ED  1220               8              *N/A
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 - (/                                                                                                                                                                                                                  W 2-EG-B-4D                           GENERATCR, EMER GEN 2J BATTERY                                COLT It0USTRIES                                     ED  1220               8              *H/A 2-EE-EG-4C                          GENERATCR, EMER GEN 2J CONTROL CAB                            COLT INDU9TRIES                                     ED  1220               8              *t1/A P-EE-EG-4B                          GENERATCR, EMERG GEN 2J CONTROL BOX                           COLT IllDUSTRIES                                    ED  1220               8              *N/A 2-EE-EG-02A                         GENERATCR, EMERGENCY GEN CH                                   COLT IIIDUST'IIES                                       1220               8 O%

2-EE-EG-4A GEtlER ATCR , EMERGENCY GENERATOR 2J COLT INDUSTRIFS ED ED 1220 8

                                                                                                                                                                                                      *N/A
                                                                                                                                                                                                      *N/A e

H2A-HC-100 HYDRCGEN ANALYZER BENDIX E-10SS HC 1332 4 42 bf. HYCRCGEN AtlALYZER BENDIX E-10SS HC 1332 4 42 h _H2A-HC-200 ff2A-HC-201-1 HYCRCGEN ANALYZER COMSIP-DELPHI K III HC T19 H2A-HC-201-2 HYDROGEN AtlALYZER COMSIP-DELPHI K III HC T19 l-HC-HC-1 HYDROGEN RECOMBINER ROCKWELL It4T. 5BFC HC 1365 35 43 _2-HC-HC-1 HYDROGEN RECCMSINER ROCVWFLL INT. 7404S HC 1365 35 43 O e O g e

O . O DATE 6/20/81 VIRGINIA ELECTRIC APID POWER COMPANT PAGE 11 NORTH ANilA FOWER STATI0tl UtlIT 2 O EcuIPnEtiT cuAtIr1C21I0ti nAsTtR t1Sr DESCRIPTION / FILE SORT e ORDER 12345678901234

           . . . . _ . _ _ _ _ ~ . ___.____.__.._ _._______.. .._...                                                                                                o........ ___._____._ .__...._ ____.__ .. ... .._... .............. .. __ ____

m 2-VD-I-01 IrlVERTER, VITAL DUS IllVERTER 2-1 ED 8 *t1/A

v. 2-VB-I-02 G INVERTER, VITAL DUS INVERTER 2-2 ED 8 *t1/A 2-VB-I-03 INVERTER, VITAL EUS IllVERTER 2-3 ED 8 *ti/A 2 ,VD-I-04 IllVERTER, VITAL CUS INVERTER 2-4 ED 8 *ti/A
    ,%      LCV-2460A                                                                                                   LCV, LOOP 1 LETDOWil LIllE C0 tit. W                     HAMCO                                      EA-180                 CH                      I                    *H/A L.)

LCV-24600 LCV, LOOP 2 LETDOWN LINE cot 4T. VV HAMCO EA-180 CI 1 *ti/A h c LIMIT SWITCH, CNT ATMS E'1PL F ROM CHT IS V GORDOS Mr8901 SS 34670 T16 t) ZS-SS-1402A-1 ZS-SS-1602A-2 lit 1IT SWITCH, CNT ATMS SMPL FROM CNT IS V GORDOS G t"R 8901 SS 34670 T16 g ZS-SS-14028-1 LIMIT SWITCH, CNT ATt.S St1PL FROM CNT IS V GORDOS t?8901 SS 34670 T16 .o ZS-SS-1400L-2 LIMIT SWITCH, Citi ATriS St1PL TROM CNT IS V GORDOS G MR8901 SS 34670 T16 ZS-SS-1423A-1 LIMIT SWITCH, CNT ATMS SMPL TO CNT IS V GOPDOS MR8901 SS 34670 T16

g

':o ZS-SS-1423A-2 lit 11T SWITCH, CNT ATMS SMPL TO CtiT IS V GORDOS MR 0 iOI SS 34670 T16 e ZS-SS-14230-1 LIMIT SWITCH, CNT Alt 1S St1PL TO CtlT IS V CORDOS t1P 89 '3 SS 34670 T16 Z5-SS-14230-2 LIMIT SW1TCH, CitT ATMS SMPL 10 CNT IS V GORDOS MRS901 SS 34670 T16 HCV-FN-200A lit 1IT SWITCH, FW CCtlTROL TO STEAM GEtl 1A NAMCO FW 1125 57 *t1/A HCV-FW-200B LIMIT SWITCH, FW CCHTROL TO STEAM GEM ;D tlAMCO FW 1125 57 *N/A f_3 HCV-FW-200C LIMIT SWITCH, FM C0!ITROL TO STEAM GEN IC HAi!CO FW 1125 57 *N/A V ZS-HC-204A-1 LIMIT SWITCH, HYDROGEtt C0tlTROL NAMCO E180-11302 HC 35085 1 T23 h ZS-HC-204A-2 LIMIT SWITCH, HYDRCGEN C0tlTROL HATICO E180-11302 HC 35085 1 T23 _ ZS-HC-204B-1 LIMIT SWITCH, HYDROGEN C0itTROL llAMCO E180-11302 HC 35085 1 T24 n ZS-HC-204B-2 LIMIT SWITCH, HiUROGEN CONTRCL NAMf"1 E180-11302 HC 35085 1 T23 V ZS-HC-205A-1 LIMIT SWITCH, HYDROCEH CONTPOL HAML E180-11302 HC 35085 1 T23 h ZS-HC-2050-1 LIMIT SWITCH, HYODOGEH CO?ITROL HAMCO E180-11302 HC 35085 1 T23 _ ZS-HC-2058-2 LIMIT SWITCH, HfDR0dEtt CONTPOL HAMCO E180-11302 HC 35085 1 T23 O e g 9 9 9 , 11

O g n p O DATE 8/2L VIRGINIAELECTRICAtt0POWE#[0t1PANY PAGE 12 fl0RTH ANin F'CMER STATICH UNIT 2 O EcuIrntilT CuAt1F1C41ICn nAS1ER tIST DESCRIPTICti/ FILE SORT e CPDER 12345678901234 ZS-HC-206A-1 LIMIT SWITCH, HYDPOGEtt CONTROL tlAMCO E180-11302 HC 35085 1 T23 Z3-HC-206A-2 LIMIT SWITCH, NYDROGEtt CotlTROL HAMCO E180-11300 4C 35085 1 T23 ZS-HC-206D-1 LIMIT 0 WITCH, HYDRCGEtt C0tlTROL HAMCO E180-11302 HC 35085 1 T23 ZS-HC-2060-2 LIMIT SWITCH, HfDROGEta CONTPOL HAMCO E180-11302 HC 35085 1 T23 ZS-HC-207A-2 LIMIT SWITCH, HYDROGEta COtlTROL NAMCO E180-11302 HC 35085 1 T23 b_ Z5-HC-2078-1 LIMIT SWITCH, HYDROGEN CotlTPOL HAMCO E160-11302 HC 35085 I T23 h ZS-HC-205A-2 LIMIT SWITCH, HYDROGEN CotlTPOL tlAMCO E180-11302 HC 35085 1 T23 0- ZS-HC-207B-2 . LIMIT SWITCH, HYCROGEH CCMTROL tlAMCO E180-11302 HC 35085 1 T23 h

 ,      ZS-HC-207A-1                     LIMIT SWITCH, HYDROGEN CCflTPOL                                            tlAMCO                               E180-11302 HC  35085             1                          T23 ZS-HC-200A-2                     LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-200A GORDOS                                                                MP8901      HC 34670                                        121 h

LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-200A GORDOS MR8901 HC 34670 T21 O_ZS-HC-2003-1 ZS-HC-2004-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2003 GORDOS MR8901 HC 34670 T21 h LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2000 GOPDOS MP8901 HC 34670 T21 b- ZS-HC-2008-2 ZS-HC-201A-1 LIMIT SWITCH, lit 1IT SWITCH FOR TV-HC-201 A GCPDOS MP8901 HC 34670 T21 h

 -      ZS-HC-201A-2                      LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201A GORDOS                                                               MP8901      HC 34670                                        T21 ZS-HC-2018-1                      LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2010 GORDOS                                                               MR8901      HC 34670                                        T21 h

ZS-HC-2018-2 LIMIT SWITCH, LIMIT SWITCH FCR TV-HC-201D GORDCS MP8901 HC 34670 T21 bf. ZS-HC-202A-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202A GORDOS MR8901 HC 34e70 T21 h e ZS-HC-200A-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202A GOPDOS MP8901 HC 34670 T21 _ ZS-HC-202B-1 LIMIT SWITCH, LIMIT SWITCH FCR TV-HC-202D GORDOS MP8901 HC 34670 T21 ZS-HC-2028-2 LIMIT SWITCH, LIMIT SWITCH FCR TV-HC-202B GORDOS MR8901 HC 34670 T21 bc ZS-HC-203A-2 LIMIT SWITCH, LIMIT SWITCH FCR TV-HC-203A GCRD00 MR890' HC 34670 T21 h ZS-HC-203A-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203A GORDOS MP890; HC 34670 T21 _ ZS-HC-2038-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2038 GCPDOS MR8901 HC 34670 T21 II

UV s o J DATE C/20/81 VIRGIf4IA ELECTRIC AND PCHER COMPANY PAGE 13 NORTH ANtlA POWER STATIOff Ut4IT 2 EQUIPt1ENT QUALIFICATI0tl MASTER LIST h DESCRIPTION / FILE SORT J MAPK tt0. DESCRIPTIOtl mat 1UFACTURER MODEL tt0. SYS PURCH. ACCIDENT FUt1CT FILE PAGE h OPDER 12345678901234 , LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203D GORDOS MR8901 HC 34670 T21 O~ ZS-HC-2038-2 G ZS-SS-202A-1 LIMIT SWITCH, PR COOLHT COLD LEG Cotti ISO GORDOS MR8901 SS 3 % 70 TIS n G) ZS-SS-200A-2 LIMIT SWITCH, PR COOLNT COLD LEG C0t4T ISO GORDOS MP8901 SS 34670 TIS hl 1 ZS-SS-209A-2 LIMIT SWITCH, PR COOLNT COLD LEG C0tlT ISO GURDOS MR8901 SS 34670 TIS ZS-SS-209A-1 LIMIT SWITCH, PR C00LitT COLD 1EG CONT ISO GORDOS MR8901 SS 34670 T15 m p) u w LIMIT SWITCH, PR COOLHT COLD LEG cot 4T ISO GORDOS MR8901 SS 34670 T16 ZS-SS-202B-1 LIMIT SWITCH, PR C00 Lilt COLD LEG C0 TIT ISO GORDOS MR8901 SS 34670 T16 t U m ZS-SS-2000-2 h ZS-SS-206A-1 LIMIT SWITCH, PR C00LitT HOT LEG CONT ISO GORDOS t198901 SS 34670 TIS LIMIT SWITCH, PR COOLNT HOT LEG C0t4T ISO GORDOS MR8901 SS 34670 T15 fw V ZS-SS-206A-2 h ZS-SS-208D-1 LIMIT SWITCH, PR C00Lili HOT LEG C0tif ISO GORDOS MR8901 SS 34670 TIS 115 ZS-SO-20eD-e tInIT SWITCH, eR C00ttT HOT tEG CONT Ito GORo0S nRc,01 SS 3467 s LIMIT SWITCH, PR COOLHT HOT LEG CONT ISO GORDOS MRS901 SS 3467n' T16 1 ZS-SS-206B-1 2 ZS-SS-2060-2 LIMIT SWITCH, FR COOLHT HOT LEG COfiT ISO GOPDOS MR8901 SS 34670 T16 m q w

   'V                                                                                                                                          WO4 HCV-2200A       LIMIT SWITCH, REGEN. HEAT CUTLET                   HAMCO                   EA-180     CH   1010   1 LIMIT SWITCH, REGEN. HEAT DUTLET                   tlAMCO                  EA-180     CH   1010   1                WO4 O- HCV-2200S                                                                                                                                                      9 LIMIT SWITCH, REGEN.- HE AT GUTLET                 t1AMCO                  EA-180     CH   1010   1                 WO4 HCV-2200C ZS-SS-207B-2    LIMIT SWITCH, RHR ItiLET SMPLttG.CNT ISO V         GORDOS                  MR8901     SS   34670                    TIS Ne                                                                                                                 34670                    T18 ZS-SS-2078-1    LIMIT SWITCH, RHR IHLET SMPLNG CilT ISO V          GORDOS                  t198901    SS lit 1IT SWITCH, RHR OUTCOARD C0 fit ISO            GORDOS                  MR8901     SS   34670                    T16 f       ZS-SS-203S-1                                                                                                                                              h lit 1IT SWITCH, RHR OUTBOAPD C0 tit ISO            GOPDOS                  MR8901     SS   34670                    T16 ZS-SS-203D-2 LIMIT SWITCH, RHR OUTLET SMPLNG CNT ISO V GORDOS                           MR8901     SS   34670                    T17 ZS-SS-207A-2 n

t_; O LIMIT SWITCH, RHR DUTLET SMPLtlG CNT ISO V GORDOS MR8901 SS 34670 T17 ZS-SS-207A-1 ZS-SS-203A-2 LIMIT SWITCH, RHR SAMPLING cot 4T 150 GORDOS MR8901 SS 34670 TIS O-O ZS-SS-203A-1 LIMIT SWITCH, RHR SAMPLING CONT ISO GORDOS HR8901 SS 34670 TIS M v O g 9 9 9 ,

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DATE C/2im i VIRGINI A ELECTRIC AffD POWE/CCMPAi;Y PAGE 14 tt0RTH Attila POWER STATI0tl Ut4IT 2 O EQUIPifEllT QUALIFICATICti MASTER LIST DESC9IPTI0ti/ FILE SORT h ORDER 12345678901234 YY-VMS201A-2 LItlE DRIVER, PZR PORV POSITI0t1 "* 410 LTZ-DICKI E C2CA-ZTR PC 1605 4 T06 YY-VMS2018-1 lit 1E DRIVER, PZR PORV POSITI0tl Uti.'OLTZ ')ICKIE 22CA-ZTR PC 1605 4 T06 YY-VMS201B-2 LIttE DRIVER, PZR PORV POSITIOtt Of fiCLTZ-DICKIE 22CA-ZTR RC 1605 4 706 bc < G YY-VMS201A-1 lit 1E CRIVr.R. PZR PORV POSITI0tl UtniOLTZ-DICKIE 22CA-ZTR PC 1605 4 706 YY-VitS200 A-1 LItlE DRIVER, PZR SAFETY VALVE POSITIOf4 U!1HOLTZ-DICKIE 22CA-ZTR PC 1605 4 705 YY-VMS200A-2 lit 4E DRIVER, PZR SAFETY VALVE POSITI0ti Ut1HOLTZ-DICKIE 22CA-ZtR RC 1605 4 T05 YY-VMS200B-1 lit 1E DRIVER, PZR SAFETY VfLVE POSIT,I0tl UtlHOLTZ-DICKIE 22CA-ZTR PC 1605 4 T05 g g/ L W YY-VrtS200D-2 LITE DRIVER, PZR SAFETY VALVE POSITICt1 Ut!HOLTZ-DICKIE 22C4-ZTR RC 1605 4 TOS YY-VMS200C-1 lit 4E DRIVER, PZR SAFET'Y VALVE POSITI0tl Ut1HulTZ-DICKIE 22CA-ZTR RC 1605 4 TOS YY-VMS200C-2 'LIttE DRIVER, PZR SAFETY VALVE POSITI0tt UtlHOLTZ-DICKIE 22CA-ZTR RC 1605 4 TOS 1-EP-MC-19 MCC-lH1-2t1 KLOCVilER tt0ELLER 1176 8 ED 22 e ~ 30 1-EP-NC-20 t1CC-lH1-25 KLOCKilER MOELLER ED 1176 8 22 1-EP-MC-21 MCC-1J1-2tl KLOCVNER McELLER ED 1176 8 22

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i' l-EP-MC-22 NCC-lJ1-2S s $ KLOCKNER ttCELLER ED 1176 8 22 2-EP-NC-19 MCC-2H1-2tl KLOCKNER MOELLER ED 1176 8 22 2-EP-MC-20 MCC-2H1-2S KLOCPHER MCELLER ED 1176 8 22 2-EP-MC-21 MCC-2J1-2t3 KLOCKilER MOELLER ED 1176 8 22 2 - E P- t*C - 2 2 MCC-2J1-2S KLOCKilER MOELLER ED 1176 8 22 2-EP-NC-10 MCC, 2H1-1 K LOCKttER-it0E L LER ED 1176 8 *H/A _ 2-EP-MC-12 MCC, 2"I-1A K LOCKNER-t10E LLER ED 1176 8

  • ti/A 2-EP-MC-41 MCC, 2H1-4 K LOCKNER-t10E LLER ED 1176 8
  • t1/A O- O 2-EP-MC-ll MCC, 2J1-1
  • K LOCKNER-t10E LLER ED 1176 8
  • tt/A 2-EP-MC-13 MCC, 271-1A KLOCVNER-MOELLER ED 1176 8 *t1/A MOD, AUX FEEDWATER VENTILATI0tl HV 4
  • t1/A

_ M03-HV269 O . O e il _

O O DATE C/20/01 VIRGINIA ELECTRIC AND POWER COMPANY PAGE 15 t40RTH ANilA PCWER STATICH UtlIT 2 EQUIPt1ENT QUALIFICATICfl MASTER LIST h DESCRIPTI0tt/ FILE SORT

                                                                     .                                                                                                                                           ORDER      12345678901234
             ..____...____                 e_...____._____.._._...._......___                                                    __.. ....__._............ ...__..... ... ...... ........... __ ____. ....

MOD-HV271A MCD, AUX TEEDWATER VENTILATION HV 4 *H/A M00-HV2718 MOD, AUX FEECWATER VEllTILATION HV 4 *N/A g M00-HV272A MCD, AUX FEECWATER VENTILATI0tl HV 4 *fi/A a V W MCD-HV2728 MOD, AU.< FEEDWATER VENTILATI0t1 HV 4 *N/A N00-HV270 MOD, AUX FEEDWATER VENTILATI0t1 HV 4 *t1/A

     \-

N00-HV1638 MCD, CENTRAL AREA EXHAUST DISCH DAMPERS H0 tit fWE LL M845A1027 HV 22436 23 1 66 tt00-HV163C MOD, CEllTRAL AREA EXHAUST DISCH D AMPERS HOrlEYWELL t1845A1027 HV 22436 23 1 66 MOD-HV163A MCD, CEtlTRAL AREA EXHAUST DISCH DAMPERC HCtlEYWELL M845A1027 HV 22436 23 1 66 M00-HV136 MOD, CONTROL RM AC SYSTEM HCtlEYWELL MS45A1027 HV 6 *t1/A ttOD-HV135 MCD, CCtlTROL RM AC SYSTEM HONE Yt'E LL MS45A1027 HV 6 aft /A MOD-HV235 MOD, CCNTEDL RM AC SfSTEM HOtlEYWELL M345A1007 HV 6 *ti/A I MOD-HV236 MOD, CCNTROL PM AC SYSTEN H0tlE Y WE L L MS45A1027 HV 6 *ti/A 30 i MOD-HV134 N00-HV127A-1 MOD, SCREEttWASH VENTILATICtl MOD, SERVICE NATER PUMP HOUSE DAMPER HV HV 4 4

                                                                                                                                                                                                                                                   *ti/A
                                                                                                                                                                                                                                                   *ti/A e

N00-HV127A-2 MOD, SERVICE WATER PUttP HOUSE DAttPER HV 4 *ti/A MOD-HV127A-3 t100, SERVICE WATER PUt1P If0USE DAMPER. HV 4 *N/A \ p t1CD-HV127A-o 100, SERVICE WATER PUt1P HOUSE DAMPER HV 4 *ti/A g d w MOD-HV1270-1 MCD, SERVICE WATER PUt1P HCUSE DAMPER HV 4 *t1/A p M00-HV1278-3 MOD, SERVICE FiTER PUMP HOUSE DAMPER HV 4 *H/A a J W MOD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *N/A _ M00-HV1270-4 MCD-HV1278-2 MOD, SERVICE WATER PLitP HCUSE DAMPER HV 4 *N/A bm h MCD-HV137 tt0D, UNIT 1 RELAY RM AC SYSTEM HONEYWELL M845A1027 HV 9 *ti/A MCD-HV138 MOD, UNIT 1 RELAY RM AC SYSTEM HOtlEYWELL MS45A1027 HV 9 *N/A NCD, UNIT 2 RELAY RM AC SYSTEM HCtlEYWELL M845A1027 HV 9 *H/A _ M00-HV237 O e Og

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                                                                                                                                                >>                                                              ,j DATE 8/2L v1                                                                                     VIRGIHIA ELECTRIC AtlD POWErrdOMPAtlY                                                       PAGE 16 t10RTH AtttlA P0ilER STATI0!l UtlIT 2 hf                                                                                                        EQUIPMEllT QUALIFICATI0tl MASTER LIST                                                                   h DESCRIPTICil/ FILE SCRT b, ......._.._...___................................___________.___

MARK tt0. DESCRIPTIDH . ._............__.........______... MAtlUFACTURER N00EL tio. ...._..._______ SYS PURCH. . _.__......__ ACCIDEtti FUtlCT FILE PAGE h ORDER 12345678901234 MOD-HV23S M00, UtlIT 2 RELAY Rt1 AC SYSTEM , Hot 1ETWELL M845A1027 HV 9 *tt/A MOV-22698 MOV. LHSI 8 VCT TO CHARGItlG PUt1P LIMITORQUE REL MTR-DI CH 1010 23 5 W18 f3 MOV-2865A MOV, ACCUt1ULATOR TAtlK 1 COLD LEG LIMITORQUE SI 1010 23 5 H28 kJ MOV-2865B NOV, ACCUt1ULATCR TANK 2 COLD LEG LIMITORQUE SI 1010 23 5 W28 h NOV-2865C MOV. ACCUt1ULATOR TAtlK 3 COLD LEG lit 1ITORQUE SI 1010 23 5 H28 0-t10V-FW-200A MOV, AUX STEAM GEtt FD PP DISCH LIMITORQUE FW 1125 57 ati/A h NOV-FW-2008 MOV, AUX STEAM GEt8 FD PP DISCH lit * 'T OR QUE FW 1125 57 ati/A O-MOV-FW-200C MOV AUX STEAM GEN FD PP DISCH VV LIMITORQUE FW 1125 57 *H/A h MOV-SW-115A MOV. AUX SW PUMP ISO VALVE LIMITORQUE SW 194 23 5 *H/A MOV-SW-115B MOV, AUX 0W PUMP ISO VALVE lit 1ITCRQUE SW 194 23 5 *H/A . MOV-SW-215B MOV. AUX SW PUt1P ISO VALVE LIMITORQUE SW 1194 23 5 *tt/A MOV-SW-215A MOV, AUX SW PUMP ISO VALVE LIMITORQUE SW 1194 23 5 *H/A MOV-2286% NOV, CHARGIttG PUt1P DISCH. LIMITORQUE REL MTR-BI CH 1010 23 5 W19 MOV-22868 MOV, CHAPGItlG PUt1P DISCH. LIMITORQUE REL MTR-BI CH 1010 23 5 W19 MOV-2286C MOV, CHARGING PUMP DISCH. LIMITORQUE REL MTR-DI CH 1010 23 5 W19 MOV-2289A MOV, CHARGItlG PUMP DISCH. LIMITORQUE REL HTR-DI CH 1010 23 5 H21 MOV-22898 MOV, CHARGIflG PUt1P DISCH. LIMITORQUE REL NTR-BI CH 1010 23 5 W21 MOV-2869A MOV, CHARGIllG PUt1P SI STOP VALVE LIMITORQUE PEL MTR-BI SI 1010 23 5 W18 n MOV-2269B MOV, CHARGItiG PUMP SI STOP VALVE LIMITORQUE REL MTR-DI SI 1010 23 5 W18 U h _ MOV-2287A MOV, CHARGItlG PUt1P STOP VALVE LIMITORQUE REL MTR-BI CH 1010 23 5 W19 e MOV-2287B MOV, CHARGIll3 PUt1P STOP VALVE LIMITORQUE REL HTR-BI CH 1010 23 5 W19 0 h MOV-2287C tt0V, CHARGIllG PUMP STOP VALVE LIMITORQUE REL MTR-DI CH 1010 23 5 W19 m tiOV-2867C t*0V, CHARGIllG PUMP STOP VALVE LIMITORQUE PEtRLSS-DI SI 1010 23 5 W24 m (J W _MOV-2867A MOV, CHARGING PUMP STOP VALVE LIMITORQUE REL MTR-DI SI 1313 23 5 H25 U_ _

a. o O DATE C/20/81 VIRGIllIA ELECTRIC AND POWER COMPAt4Y PAGE 17 q NORTH AtPIA POWER ST ATION UNIT 2 g V EQUIrttENT QUALIFICATION MASTER LIST W DESCRIPT10ti/ FILE SORT ORDER 12345678901234 MOV-2867B tt0V, CHARGING PUMP STOP VALVE LIMITORQUE REL MTR-DI SI 1313 23 5 W25 ttOV-28670 MOV. CHARGING PUMP STOP VALVE LIMITORQUE REL MTR-BI SI 1313 23 5 W25 m q MOV-21158 MOV, CPSPGItlG PUMP SUC FROM RWST lit 1ITORQUE REL NTR-BI CH 1010 23 5 P3 5 1 W22 e MOV-21150 t10V, CHARGItlG PUMP SUC FPCt1 PWST LIMITORQUE REL MTR-DI CH 1010 1 H22 l MOV-2115C MOV, CHARGIllG PUMP SUCT. FROM VCT LIMITORQUE REL MTR-DI CH 1010 23 5 W16 ttOV-2115E MOV, CHARGING PUMP "UCT. FROM VCT lit 1ITORQUE REL MTR-DI CH 1010 23 5 W36 MOV-2890C MOV, CHARGING PUMP SUCT. Fr!OM VCT LIMITORQUE REL MTR-DI SI 1010 23 5 W39 l h l MOV-2373 MOV, CHARGING PUtfP TO RECIRC. SV LIMITORQUE REL MTR-DI CH 1010 23 5 W18 MOV-2275A MOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE REL MTR-BI CH 1010 23 5 W34 20 0, 1 MOV-2275C  ?!OV, CHARGItlG PUt1P TO RECIRC. SV LIMITORQUE REL MTR-DI CH 1010 23 5 W34 MOV-22755 MOV CHARGING PUt:P TO RECIRC. SV lit 1ITORQUE PEL t1TR-BI CH 1010 23 5 W37 ,~_. tt0V-2370 MOV, CHARGING PUMP TO SEAL WATER RECIRC. LIMITORQUE REL MTR-BI CH 1010 23 5 WIS O, MOV-SW-118 MOV, CIRC WTR INTAKE TO SW PUt1P MOV, CIRC WTR SW PUMP ISOLATION LIMITORQUE LIMITORQUE SW SW 194 19/+ 23 5 23 5

                                                                                                                                                                             *N/A
  • ti/A e

itOV-SW-117 MOV-SW-217 tt0V, CIRC WTR SW PUT!P ISOLATI0tl LIMITORQUE SW 1194 23 5

  • ti/A MOV-2836 t10V, COLD LEG CIRC VALVE LIMITORQUE SI 1010 23 5 W29 NOV-HV200C tt0V, COtITAINMEtiT PURGE LIMITORQUE REL MTR-DI HV 198 1 65 O, O MOV-HV200A MOV, CONTAltiMEt4T SUPPLY LIMITCRQUE REL MTR-DI HV 198 1 65 I

t10V, CCtlTROL ROOM EMER AIR SUPPLY HV 7 *ti/A O MOV-HV-204-2 7 O1 tt0V, CDITPOL ROOM EMER AIR SUPPLY HV *ti/A _ MOV-HV-204-1 MOV-2350 MOV, EMERGENCY CORATI0ti LIMITORQUE REL t1TR-BI CH 1010 23 5 W17 U,,

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MOV-HV-104-2 MOV, Et1ERGEtiCY C0tiTROL R00t1 AC

  • HV 6 tt0V-HV-104-1 F10V, EMERGENCY C0tITROL ROOM AC HV 6 *fi/A ttOV-HV-216-1 MOV, FLUSH VALVE LEFT FOR STRAINER RATM0 TID CONTROLS 9170K32 HV 1299 6 17 7

O 9 g 9. O O , n -- - _

o

                                            ,( ');                                                                                              .

(~'h f3 DATE 8/2ird VIRGINIA ELECTRIC At4D POWda OMPANY PAGE IS HORTi! Atit;l POWER STATI0tl UtlIT 2 EQUIPt1EtlT GUALIFICATION MASTER LIST DESCRIPTI0ti/ FILE SORT h V MARK I40. DESCRIPTI0tl MANUFACTURER MODEL HO. SYS PURCH. ACCIDENT FUtlCT FILE PAGE W ORDER 12345678901234 6 ___________ ' ___ ....._______......_.....______... ___ .... ___.........___ .__.....__ ... ... __ ______________ __... ..._ MOV-HV-215-1 MOV, FLUSH VALVE LEFT FOR STRAlt4ER PAYMOND C0tlTROLS 9170K32 1299 6 17 O RAYtt0tto CONTROLS 9170K32 HV HV 1299 6 17 e MOV-HV-215-2 ,MOV, FLUSH VALVE RIGHT FOR STRAINER NCV-HV-216-2 MOV, FLUSH VALVE RIGHT FOR STRAINER RAYttCilD CONTROLS 9170K32 HV 1299 6 17 MOV-!W-2134 MOV, FUEL PIT COOLER VALVE LIMITORQUE REL MTR-BI SW 1194 3 53 MOV-SW-213B MOV, FUEL PIT COOLER VALVE lit 1ITORQUE REL MTR-DI SW 1194 3 53

     ,m O

MOV-SW-2088 MOV, INLET HEADER VALVE lit 1ITORQUE REL MTR-BI SW 1194 3 53 e NOV-SW-208A ff0V,ItlLETHEADERVALVE LIMITORQUE REL MTR-DI SW 1194 53 0f. MOV-22700 NOV, LHSI & VCT TO CitARGING F1JttP LIMITORQUE REL F1TR-DI CH 1010 23 5 3 W18 e MOV-2269A MOV, LHSI & VCT TO CHARGIt4G PUt1P LIMITORQUE REL t1TR-DI CH 1010 b21 .u n MOV-2270A tt0Y , LHSI & VCT TO CHAPGIllG PUt1P LIMITORQUE REL MTR-eI CH 1010 23 5 23 5 H21 e MOV-2863A MOV, LHSI DISCH VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 W14 ~ MOV-2863B MOV, LHSI DIS;.1 VALVE LIMITORQUE REL MTR-DI SI 1010 23 5 W14 MOV-2864A MOV, LHSI DISCH VALVE LIMITORQUE PEERLSS-DI SI 1010

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n MOV-2864B MOV, LHSI DISCH VALVE LIMITOPQUE PEERLSS-DI SI 1010 23 5 23 5 W15 W15 e MOV-2890B MOV, LMSI LIllE STOP VALVE 1010 f, v MOV-2890A MOV. LHSI lit 1E STOP VALVE LIMITORQUE LIMITORQUE REL MTR-DI SI ELTRCL-HI SI 1010 23 5 23 5 N00 W98 e MOV-28900 MOV, LHSI LItlE STOP VALVE LIMITCRQUE REL MTR-DI SI 1010 23 5 W39 MOV-2860A MOV, LHSI PUMP SUCTIOtt LIMITCDQUE , REL-RH Ills SI 1010 23 5 WOS ttOV-286 CD tt0V , LHSI PUMP SUCTIOtt LIMITORQUE REL-RH Ills SI 1010 23 5 WO5 _NOV-2862D MOV, LHSI PUMP SUCTIOt3 LIMITORQUE PEERLSS-B1 SI 1010 23 5 Wil g MOV-2862A MOV, LHSI PUMP SUCTI0tl LIMITORQUE PEERLSS-DI SI 1010 23 5 W11 g V W MOV-2885C Mo'/, LHSI RECIRC TO CHAPGIffG PUMP VALVE LIMITORQUE PEERLSS-DI SI 1010 23 5 W38 MOV-28S50 MOV, LHSI RECIRC TO CHARGIt3G PUMP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W38 MOV, LHSI RECIRC VALVE LIMITORQUE REL-RH INS SI 1010 23 5 N05 _MOV-2885A O e O e

(v3 O v DATE 0/20/61 VIRGINIA ELECTRIC AND POWER COMPANY PAGE 19 FICRTH ATMA F0WER STATIO!, UNIT 2 O EQUIPMENT QUALIFICATICH MASTER LIST h DESCRIPTIO!1/ FILE SORT .O nARx 10. DtSCRIP110n ninurACTuRER n0 DEL 10. SvS PuRCH. ACCIDtt.T runCT RILE ORDER 12345678901234 Pace e O-NOV-2885B MOV-2267B MOV, LHSI RECIRC VALVE MOV, LHSI TO CHAPGIh"", FUMP LIMITORQUE LIMITORQUE REL-RH ids SI REL MTR-BI CH 1010 1010 23 5 23 5 WO5 W18 e O-MOV-2267A MOV-SW-119 MOV LHSI TO CHARGING PUMP MOV, MAKE-UF ISOLATICN LIMITORQUE LIMITORQUE REL MTR-BI CH SW 1010 194 23 5 23 5 W21

                                                                                                                                                                                       *H/A e

MOV, MAKE-UP ISCLATICH LIMITORQUE SW 1194 23 5 *H/A f q .CV-SH-219 g V W MOV-QS-201A MOY, QUE,CH SFRAY PUMP DISCH LIMITORQUE REL MTR-BI QS 1242 35 23

  .      MOV-QS-2015                  MOV, QUENCH SFRAY PUMP DISCH                                                       LIMITORQUE           REL MTR-DI QS     1242      35             23 MOV-HV-201                   MOV RC FURGE SYSTEM BYPASS                                                                                                1198                     59 h

LIMITORQUE HV 1 g MOV-HV-2000 MOV, RC FURGE SYSTEM EXHAUST LIMITORQUE HV 1198 1 59 .0 MOV-HV-2008 MOV, RC PURGE SYSTEM VALVE LIMITORQUE HV 1198 1 59 0 MOV-2330 MOV, RCP SEALWATER RETURN LIMITORQUE 1010 1 5 WO6 MOV-RS-256A MOV, RECIRC SFRAY DISCH LIMITORQUE REL MTR-BI ,P S 1242 35 23 MOV-RS-2568 MOV, RECIRC SPRAY DISCH LIMITORQUE REL MTR-BI RS 1242 35 23 MOV-SW-201A MOV RECIRC SFRAY HEAT EXC. MEADER INLET LIMITORQUE REL MTR-BI SW 1194 35 50 MOV-EW-201B MOV, nECIRC SFRAY HEAT EXC. HEADER INLET LIMITORQUF REL MTR-BI SW 1194 35 50 Os MOV-SW-201C MOV, RECIRC SFRAY HEAT EXC. HEADER INLET lit 11 TORQUE REL MTR-BI SW 1194 35 50 e MOV-SM-2010 MOV, RECIRC SFP4Y HEAT EXC. HEADER INLET LIMITORQUE REL MTR-BI SW 1194 35 50 MOV-SW-205B MOV, RECIFC SFRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL MTR-BI SW 1194 35 50

    -    MOV-SW-206A                  MOV, RECIRC SFRAY HEAT EXC. HEADER OUTLET LIMITORQUE                                                    REL MTR-BI SW     1194      35             50

_ MOV-SM-205A MOV, RECIRC SFRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL MTR-B1 SW 1194 35 50 MOV-SW-2050 MOV, RECIRC SFRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL MTR-BI SW 1194 35 50 MOV-SW-206B MOV, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL MTP-BI SW 1194 35 50 MOV-SW-205C MOV, RECIRC SFRAY HEAT EXC. HEADER CUTLET LIMITCRQUE REL MTR-BI SW 1194 35 50 0g MOV-RS-255B MOV, RECIRC SFRAY SUCTICH LIMITORQUE REL MTR-BI RS 1242 35 23 4 O e m u 9 9 9 e il

VLF-O p; O DATE 6/2 a .1 c) t VIRGINIA ELECTPIC AND POWE<-4CMPANY PAGE 20 (c') il0RTH At1HA PCWER STATI0tl UNIT 2 O EQUIPt1ENT QUALIFICATICtl(1 ASTER LIST h DESCRIPTION / FILE 50RT OPOER 12345678901234 __________. _ ___... __.............__...-___.__c___.... ................. __ .. ...__._ __. ..._.. __..__ .._.... ..... ___. e MOV-RS-255A F10V, RECIRC SPRA Y SUCTIOtt LIMITORGUE REL MTR-BI PS 1242 35 23 MOV-SW-214A ,MOV, RECIRC. AIR COOLING COILS LIMITORQUE LMTTRQE-BI SW 1194 3 73 h n MOV-SW-2108 MOV, RECIRC. AIR COOLING COILS lit 11 TORQUE LitTTRQE-BI SW 1194 3 73 o MOV, RECIPC. AIR C00LIttG COILS O MOV-SW-210A LIMITCRQUE LMTTRQE-BI SW 1194 3 73 MOV, RECIRC. AIR COOLING COILS LIMITORQUE LHTTRQE-BI SW 1194 3 73 0- MOV-SW-214D MOV-SM-110A MOV, RECIRC. AIR COOLIt!G COILS LIMITORQUE SW 194 3 *N/A 9 MOV, RECIRC. AIR COOLING COILS lit 1ITORQUE 194 *t1/A O. MLV-SM-1103 MOV-SW-114A MOV, RECIRC. AIR C00 lit 4G COILS Lit 1I TORQUE SW SW 194 3 3 *N/A e g MOV-SW-1148 tt0V, RECIRC. AIR C00LIttG COILS LIMITORQUE SW lb 3 *ti/A MOV-QS-200A MOV, REFU2 LING WATER STORAGE TAIM LIMITORQUE REL MTR-BI QS 1242 35 74 h

g MOV-QS-2008 tt0V, REFUELING WATER STORAGE tat:K LIMITORQUE REL MTR-BI QS 1042 35 74
 -J                                                                                                                                                                                                                            G

. tt0V-QS-202B tiDV, RF WATER CHEM ADD TAtlK LIMITORQUE QS 1181 35 *H/A r MOV-QS-202A t10V, RF WATER CHEM. ADD tat;K lit 1ITORQUE QS 1181 35 *t1/A L}, MOV-2381 t10V, SEAL WATER RETURN SV LIMITCRQUE PEL ttTR-BI CH 1010 23 5 W35 MOV-SW-204A tt0V, SERVICE MATER FRott RECIRC SPRAY CLR LIMITORQUE REL MTR-BI SW I194 35 50 rt0V-!W-2 04B MOV SEPVICE W!LTER FR0t1 RECIPC SPRAY CLR LI!11 TORQUE Lt1TTRCE-0I SW 1194 35 52 MOV-SW-204C MOV SERVICE WATER FROM PECIRC SPRAY CLR LIMITORQUE LMTTPQE-BI SW 1194 35 52 O-MOV-SW-2040 tt0V, SERVICE WATER FR0t1 RECIRC SPRAY CLR LIMITORQUF LMTTRGE-BI SW 1194 35 52 e f- . MOV-SW-203B MOV, SERVICE WATER TO RECIPC SPRAY COOLER LIMITCRQUE REL MTR-BI SW 1194 35 50 b h _tt0V-SW-2 0 3 A MOV SERVICE WATER TO PECIRC SFRAY COOLER LIMITORQUE Lt1TTRQE-BI SW 1194 35 52 tt0V-SM-203C MOV, SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE Lt1TTRQE-BI SW 1194 35 52 b, h tt0V-SW-203D MOV. SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LMTTRGE-BI SW 1194 35 52 MOV-RS-200A tt0V, SUPPLY VALVE CC PECIRC SPPAY LIMITORQUE REL MTR-BI RS 1242 35 57 0- MOV, SUFPLY VALVE CC RECIPC SPRAY h _tt0V-RS-2 01 A LIMITORQUE REL MTR-BI RS 1242 35 57 O e il - _

w) v DATE 6/20/01 VIRGlHIA ELECTRIC ANO POWER COMPANY PAGE 21 NCRTH At'NA PCWER STATI0t1 UNIT 2 b- EQUIP!1EllT CUALIFICATICtl MASTER LIST h DESCRIPTION / FILE SCRT ORDER 12345678901234 MOV-RS-2003 MOV. SUPPLY VALVE CC RECIRC SPPAf lit 11 TORQUE REL MTR-BI RS 1242 35 57 ft0V-RS-2018 MOV. SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE REL MTR-BI RS 1242 35 57 MOV-SW-100A MOV, SW RETURil TO RERVOIR ISOLATION LIMITCRQUE SW 194 23 5 *ti/A fm) ( MOV-SW-1008 *t1/A h MOV. SW RETUPN TO RERVOIR ISOLATION LIMITORQUE SW 194 23 5 MOV 'W-200A MOV. SW RETURN TO RESERVOIR ISOLATI0tl LIMITORQUE SW 1194 23 5 *N/A MOV-SW-2003 MOV, SW RETURN TO RESERVOIR ISCLATICH LIMITORQUE SW 1194 23 5 sti/A MOV-SW-200A MOV, SW TO CIRC TUNNEL LIMITCRQUE SW 1194 3 *H/A MOV-SW-2208 -MOV SW TO CIRC TUtNEL lit 1ITCRQUE SW 1194 3 *H/A MOV-HV118-1 MOV, UNIT 1 EMERGEtCY RELAY ROOM AC HV 9 *H/A MOV-HVllS-2 MOV, UNIT 1 EMERGEtCY RELAY ROOM AC HV 9 *ti/A MOV-HV218-1 I"0V, UNIT 2 Et1ERGENCY RELAY ROCM AC HV 9 *N/A

t10V-HV218-2 MOV, UNIT 2 EMERGENCY RELAY POOM AC HV 9 *N/A PENETRATIOtl ASSEM0 LIES (CONTPOL) COllAX ED 1313 8 24 1 0~ TYPE IS TYPE IB PENETRATION ASSEMBLIES (CONTROL) CCNAX ED 1313 8 25 9

TYPE IA PENETRATION ASSEMBLIES (INSTRUt ENTATION) CONAX ED 1313 8 Ie TYPE IA PENETRATICtl ASSEMBLIES (ItiSTRUMEt,4TATIOfi) C0tlAX ED 1313 8 25 TYPE IC PEtiETRATI0tl ASSEMBLIES (LOW VOLTAGE PWR ) CCliAX ED 1313 8 24 TYP,E IIA PENETRATICN ASSEri3 LIES ( LCW VOLTAGE PWR) CCtlAX ED 1313 8 24 TYPE IIB PENETRATIOil ASSET 13 LIES ( LCW VOLTAGE PWR) CONAX ED 1313 8 24 _ TYPE IIC PENETRATICN ASSET BLIES ( LOW VOLTAGE PWR) CCHAX ED 1313 8 24 TYPE IID PENETRATICil ASSEMBLIES ( LOW VOLTAGE PWR) CCtlAX ED 1313 8 24 TYPE IIE PENETRATION ASSEMBLIES ( LOW VOLTAGE PWR ) C0tlAX ED 1313 8 24 TYPE IC PENETRATICH ASSEMBLIES ( LOW VOLTAGE PWR ) C0tlAX ED 1313 8 25 _ TYPE IIA PENETRATICN ASSEMBLIES ( LOW VOLTAGE PWR) CCHAX ED 1313 8 25 O O oil O O O e

                                                                                                          )                                                                                                   )

DATE 8/26 v1 VIRGIllIA ELECTRIC AtID POWErdOMPANY PAGE 22 i:0RTH AMilA POWER STATION UttIT 2 hf EQUIPt1ErlT QUALIFICATI0tl MASTER LIST h DESCRIPT10t1/ FILE SORT ORDER 12345678901234 , TYPE IIB PENETRATION ASSET 1BLIES ( LOW VOLTAGE PWR) C0t1AX ED 1313 8 25 TYPE IIC PENETRATICN ASSET:3 LIES ( LOW VOLTAGE PWR) C0tlAX ED 1313 8 25 , TYPE IID PENETRATI0tl ASSET 1DLIES ( LOW VOLTAGE PWR ) C0t1AX ED 1313 8 25 TYPE IIE PE!!ETRATIC'1 ASSET 1DLIES ( LOW VOLTAGE F%'R ) C0t!AX ED 1313 8 25 TYPE IV FEtlETRATICt1 ASSEtSLIES (THERt10COUPLESI C0t1AX ED 1313 8 24 TYPE III PENETRATICil ASSEmLIES ITRIAXIAL) C0t1AX ED 1313 8 24 ZS-DA203A POSITIC'1 SWITCH. AJ< BLOG TO CilT SUMP PMP NAt100 EA-180 DA 35085 1 T09 ZS-DA2038 POSITION SWITCH, AUX DLDG TO CtlT SUt1P PMP ttAMCO EA-180 DA 35085 1 T09 ZS-FW159A POSITICN SWITCH, LIMIT SWITCH NAMCO D2400X FW 4 n *ti/A a V W ZS-FW1598 FOSITIOtl SWITCH, L*MIT SWITCH hat 1CO D2400X FW 4 *H/A ZS-FW200A POSITION SWITCH, lit 1IT SWITCH timCO D2400X *t1/A FW 4 e

-:O         ZS-FW2008                                                                                                 POSITION SWITC" LIMIT Sl' ITCH                                tlAt1CO                     D2400X          FW               4                   *t1/A In         ZS-FW200C                                                                                                 POSITION SUITCH, LIMIT SWITCH                                 ttAttCO                     D2400X          FW               4                   *t1/A 10                                                                                                                                                                                                                                                                                        &

PS-EG-2JA FRESSURE SWITClf, EMER GEN 2J COMP ALLEtt BRADLEY 836-C9A ED FIELD 8 *N/A PS-EG-2JB FRESSURE SWITCH, EMER GEN 2J COMP ALLEN BRADLEY 836-C9A ED FIELD 8 *t1/A RPS-EG-2H3 FRESSURE SWITCH, EMEPG GEN 2H COMP ALLEN BRADLEY 836-C9A ED 8 *t1/A RPS-EG-OHA FRESSURE SWI CH, Et1 ERG GEtt 2H COMP ALLEli BRADLET G30-C9A ED 8 *tt/A 1-0W-P-4 PUt1P, AUX SERVICE WATER PUt1P MESTIt!GHOUSE SW 1059 23 5 *N/A 2-!W-P-4 PUMP, AUX SERVICE WATER PUttP WESTIN0 HOUSE  :>W 1059 23 5

  • t1/A

_ 2-RS-P-38 PUT1P, CASIt!G CLG RECIRC SPRAY PUMP LAWERAtiCE PUMP & EtlG 6X8HDD-M RS 1538 35 *t1/A 2-RS-P-3A FUMP, CASING CLG RECIRC SPRAY PUt1P LAWERANCE PUMP & ENG 6X8HBD-M RS 1538 35 *N/A O- O 2-CH-P-1A PUt1P, CHARGING IHHSI) WESTIt1GHOUSE CH 1010 2 5 W20 2-CH-P-lC PUt1P, CrtARGItiG (HMSI)

  • WESTIt:GHOUSE CH 1010 2 5 W20 2-CH-P-1B PUT1P, CHAPGING (HHSI) WESTINGHOUSE CH 1010 2 5 W20 0 9 O

g e

T O O DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPANY PAGE 23 NORTH At!?tA PCWER STAT 70?1 UtlIT 2 Oe EQUIPMEtiT QUALIFICATICri t1 ASTER LIST h DESCRIPTIO!!/ FILE SORT g u MARK tio. DESCRIPTI0tl MAttUFACTURER MODEL NO. SYS PURCH. ACCIDENT FUt1CT FILE PAGE W ORDER 12345678901234 2-HV-P-20A PUt1P, CHILLER ROOM A/C BINGH AM-WILLI At1E T TE TDDP HV 1276 6 04 g 2-HV-P-200 PUMP, CHILLER ROCM A/C BIttGHAM-WILLIAMETTE ,TBDP HV 1276 6 04 p 2-HV-P-20C PUMP, CHILLER ROcti A/C BINGHAM-WILLIA!1ETTE TEDP HV 1276 6 04 m v < W 2-HV-P-20B PUMP, CHILLER ROOM A/C, BIttGH AM-WILLI At1ETTE TBDP HV 1276 6 04 m

 %)

2-HV-P-22A PUt1P, CHILLER R00!1 A/C BINGHAN-WILLIAt1ETTE TBDP HV 1276 6 04 g w 2-HV-P-22C PUt1P CHILLER R00t1 A/C BIttGH AM-WIL LI At1E TT E TODP HV 1276 6 04 2-CS-P-108 PUMP, CHILLER ROOM SUMP ALLIS-CHALMERS TYPE RGZV 1421 6 05 DB g 2-DB-P-10A PUt1P, CHILLER ROOM SUt1P ALLIS-CHALMERS TYPE RGZV DD 1421 6 05 2-EG-P-2HA PUMP, Et1Ei?GENCY GEN 2H FUEL OIL PUMP DELAVAL TURDINE EW 0812 8 *N/A 2-EG-P-2HB ' PUMP, EMERGEt1CY CEN 2H FUEL OIL PUMP DELAVAL TURBIttE ED 0812 8 *tt/A ln 2-EG-P-2JB PUt1P, EMERGENCY CEN 2J FUEL OIL PUt1P DELAVAL TUPBIt4E ED 0812 8 *ti/A a

.(J                                                                                                                                                                                                           W I         2-EG-P-2JA                   PUMP, Et1ERGEi!CY GEN 2J FUEL OIL PUMP                                            DELAVAL TURBItiE                            ED   0812           8       *N/A 2-RS-P-1A                    PUMP INSIDE RECIRC. SPRAY                                                         GEt1ERAL ELECTRIC               SK6319XJ1D RS    1355     35               28 g>

2-RS-P-1B PUMP. INSIDE RECIRC. SPRAY GENERAL ELECTRIC 5K6319XJ1B RS 1355 3 28 2-RS-P-1A PUMP, INSIDE RECIRC. SPRAY GEt1ERAL ELECTRIC SK6329XJ10 RS 1355 35 29 g 2-RS-P-1B PUMP, INSIDE REClRC. SPRAY GENEPAL ELECTRIC SK6319XJ18 RS 1355 3 29 2-SI-P-1B PUMP, LOW HEAD SAFETY INJECTIC" WESTIllGHOUSE ARDP SI 1010 2 5 W13 2-SI-P-1A PUMP, LCW HEAD St.FETY Iti)ECTIOtt bESTIt!GHOUSE AEDP SI 1010 2 5 W13

  -      2-QS-P-1A                    PUt1P, GUEtiCH SPRAY PUMP 1A                                                      INGERSDL-RAtID                              QS   1099     35            *N/A U                                    PUtiP, QUEtiCH SPRAY PUMP 'lB h

_ 2-QS-P-1B INGERSOL-RAND QS 1094 35 3 *ti/A p 2-SW-P-5 PUt1P, RADIATICM MONITOR MARATH0t1 ELECT. 8H56T17D51 SW 1083 4 41 J , h SH-P-6 PUMP, RADIATION MCtlITCR t1ARATHott ELECT. 8M56T17D51 SW 1083 4 41 n 2-SW-P-7 PUMP, R ADI ATIOtt M0!11 TOR MARATHON ELECT. 8H56T17D51 SW 1033 4 41 u PUMP, RADIATION MONITCR MARATHON ELECT. 56T17D516 SW 1083 4 41 h _ 2-SW-P-8 O O O h uII _

g- o p.

                      \       5

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                                                                                                                                                                                             \"/

DATE G/20mi VIRGINIA ELECTRIC AND POWE( 40MPAtif PAGE 24 flORTH At!!1A FCWER ST ATI0tl UNIT 2 h-

  • EQUIFMENT CUALIFIC',TI0tt F1 ASTER LIST DESCRIPTICil/flLE SJRT h

ORDER 12345678904234 2-RS-P-2A FU!iP, RECIRC. SFRAY GENERAL ELECTRIC 5K6319XJ10 RS 1127 3 44 2-RS-P-2B PUtiP, RECIRC. SPRAY GEt1ERAL ELECTRIC SK631aXJ18 WS 1127 3 44 2-FW-P-3A FUt1P, STM GEN AUX DP MOT A , ALLIS-CHAlt1ERS FW 1022 57 *N/A 2-FN-P-3B FUMP, STM GEN AUX DP MOT B ALLIS-CHALMERS FW 1022 57 *ti/A 2-SW-P-1A FUMP, SW FUMP MOTER A kESTIt1GHOUSE SW 1059 23 5

  • ti/A 1-SW-P-1A FUMP, SW FUt1P MOTCR A WESTIt!GHOUSE SW 1059 23 5 *ti/A q 1-SW-P-1B FUtiP, SW FUMP MOTCR B WESTItiGHOUSE SW 1059 23 5 *ti/A g V W 2-SW-P-1B FUMP, SW FUtiP T10TCR B WESTINGHOUSE SW 1059 23 5 *N/A LQ/LS-DA210A FWR SUt> & SWTCH, CCliT SUtiP LVL IIRRW Rt1GE GEtiS RE-39425 DA 1333 4 T10
  .Of LG/LS-DA2108                                                                                                             RE-42830 h

Pb"A SUP & SWTCH, CONT SUMP LVL t1RRW Rt1GE GEMS DA 1333 4 T10 4 -n RM-SW-224 RADIATICN t10ti1TCRS. SW RAD tiONITORS WESTIt1GHCUSE 1655 SW 1200 4 *tUA g

   -V                                                                                                                                                                                               W T       RM-SW-225                 RADIATICH MC!i1 TORS, SW RAD MotlITCRS                          WESTIt1GHOUSE                   1655       SW    1200                4        *ti/A
   ;f3 RM-SW-226                    RADI ATICH MCt11 TORS, SW RAD tiotlITORS                        WESTIllGHOUSE                   1655       SW    1200                4        *ti/A             g
   'V                                                                                                                                                                                               W Rit-SW-227                R ADIATION tic"ITCRS. SW RAD MCNITORS                           WESTIllGHCUSE                   1655       SW    1200                4        *ti/A c     TE-24128                  RTD, RCS NARPCW RANGE                                           POSEttCUtiT                     176t< F    RC    1010          1 345            W12
                                                                                                                                                                                                 \% h TE-2412D                  RTD, RCS NARROW RAtiGE                                          ROSEt10UtiT                     176KF      RC    1010          1 345            W12 p     TE-2422B                  RID, RCS NARROW RA!1GE                                          POSEMCUtiT                      176KF      RC    1010          1 345            412             m V                                                                                                                                                                                               W TE-24220                  RTD, RCS NARROW RAtlGE                                          ROSEtt0UtiT                     176KF      RC    1010          1 345            W12 TE-24308                  RTD, RCS NFRLW RANGE                                            ROSEt" )UtiT                    176KF      RC    1010          1 345            W12

_ TE-24300 RTD, RCS NAR?CW RAtlGE ROSEtL'JNT 176KF RC 1010 1 345 W12 TE-2410 RTD, RCS WIDE RANGE ROSEt10UtiT 176KS PC 1010 5 W27 0e h TE-2413 RTD, RCS WIDE RANGE ROSEtiOUNT 176KS RC 1010 4 427 q TE-2420 RTD, RCS WIDE RANGE ROSEtiOUNT -76MS PC 1010 4 W27 m V W _TE-2423 RTD, RCS WIDE RAN0E ROSEt:0UtiT 176KS RC 1010 4 W27 m II _

O u . pa DATE 8/20/01 VIRGINIA ELECTRIC AND POWER CCf1 pat 1Y PAGE 25 t10RTH At;tlA POWER STATI0t1 Ut1IT 2

  • be EQUIP?tEtiT GUALIFICATICtl MASTER LIST
                                                                                                                                                                                                 ~

h DESCRIPTION / FILE SORT b^ HARK HO. DESCRIPTIO!1 MAtlUFACTURER t10 DEL NO. SYS PURCH. ACCIDENT FUNCT FILE PAGE h ODDER 12345678901234 TE-2430 RTD, RCS WIDE rat!GE 176KS 1010 4

                                                                                                                            ,                      ROSEMOUNT                                       RC                                       W27 g

TE-2433 RTD, RCS WIDE rat;SE ROSEtt0UNT 176KS RC 1010 4 W27 SOV-2936 SCV, ACCUMULATOR VENT LINE FLOW HV2023031R CI 1010 ASCO 1 W33 g 50V-SW-201A-2 SOV, AIR CCOLER EMERG SUPPLY ASCO HDB30281U SW 1125 3 70 SOV-SW-201A-1 SOV, AI" CCOLER Et1 ERG SUFPLY HB830281U 1125 ASCO SW 3 70 g SOV-SW-2018-1 SOV. AIR COOLER Et1 ERG SUPPLY ASCO EllGr1 SW 1125 3 70 m SOV-SW-201B-2 SOV, AIR COOLER EMERG SUPPLY ASCO E11GM SW 1125 3 70 m V W SOV-SV-202-1 SOV AIR EJECTOR VEtlT ASCO HT8321A5 CI 1125 1 51 SOV-SV-203 SOV, AIR REMOVAL SYSTEM HT8321A5 CI 1125 51 ASCO 1 g SOV-MS-2118 SOV AUX FEED PUMP TURS CRIVE ASCO HT8344A71 MS 1125 2 67 36 SOV-ttS-211A SOV AUX FEED PUMP TURB DRIVE ASCO HT8344A71 T13 1125 2 67 36 50V-UA203A SOV. AU'<. BLDG. TO CCtiT. SUMP PUt1P ASCO HP831654E D4 1125 1 T07 t SOV-DA203B SOV, AUX. BLOG. TO CCtlT. SUMP PUMP ASCO HP831654E DA 1125 1 T07 Cf- O SOV-2311 SOV AUXILIAR1f SPRAY LINE ASCO HT831654 CH 1010 5 41 SOV-2884C SOV, BCRCH INJECTICN TAttK TO DATCH TK ASCO LB831654 1010 23 5 W30 SI g SOV-28S4A SOV, BCRCN INJECTION tat 1K TO BATCH TK ASCO LD831654 SI 1010 23 5 W30 aOV-2884B SCV, BORON INJECTICtl tat;K TO BATCH TK ASCO LB831654 SI 1010 23 5 W30 50V-HV-2306A SOV, BOTTLED AIR SYSTEM ASCO HV 6 *tt/A SOV-HV-2300A SOV, Br'TTLED AIR SYSTEM ATKCMATIC SLWP-2300 HV 6 *N/A _ SOV-HV-2300B SOV, BOTTLEO AIR SYSTEM ATK0MATIC SLWP-2300 HV 6 *N/A SOV-HV-2300C SOV, BOTTLED AIR SYSTEM ATKCMATIC SLWP-2300 HV 6 *N/A SOV-HV-2306B SOV, BOTTLED AIR SYSTEt1 ASCO HV 6 *N/A fO SOV-HV-23000 SOV, DOTTLEO AIR SYSYTEM SOV, CONT ATMOS SMPL FRCM CONT - CONT ISO VALCCR ATK0MATIC SLWP-2300 V526568319 SS HV 34670 1 6 *tt/A T12 e _ N2-XCV-1402B O e O O O O e n

O" DATE 6/2 h 1 O VIRGIt4IA ELECTRIC AND PCNEr dOMPANY O PAGE 26 O [' fl0RTH AtitlA PCWER ST ATICtl UtiIT 2 dr EQUIPTIENT GUALIFICATI0ti MASTER LIST h DESCRIPTIOil/ FILE SCRT ORDER 12 % 5678901234 t!2-XCV-1402A SOV, CCtli ATMOS St1PL FRot1 CCitT - CCtli ISO VALCOR V526568319 SS 34670 T12 L3 t12-XCV-1423B SOV, CONT ATMOS StiPL FRCM C0tlT - CCt4T ISO VALCOR V526568319 SS 34670 1 1 T12 e

 ,f~)   fl2-XCV-1423A                        SOV, CCtiT ATMOS ST1PL FRCM C0!IT - CCNT ISO VALCC7                                                                                 V526568319 SS     34670    1                          T12           g U                                                                                                                                                                                                                                                   W SOV-IA-201B                          SOV, CCtlTAI!C1ENT INST AIR ISOLATIC!I                                                              ASCO                            HT8321A5    CI    1125     1                             30 S0V-IA-201A                          SOV, CCNTAIt#'ENT INSTRUMENT AIR                                                                    ASCO                            HD20683220 CI     FIELD    1                            55 SOV-IA-2028                          SOV, CCNTAIt:1ENT INSTRUMENT AIR ISOLATI0t1 ASCO                                                                                    HT8321A5    CI    1125     1                             30
        $0V-IA-202A                          SOV, CC'4TAIta1ENT It1STRUMENT AIR ISOLATI0tl ASCO                                                                                  HT8321A5    CI    1125     1                             30 SOV-LM-200F                          SOV, CCt1TAltRiENT LEAKACE MONITOR                                                                  ASCO                            HT8320A102 CI     1163     1                            40 g     SOV-LM-200B                          SOV, CCNTAItR1ENT LEAKAGE MONITCR                                                                   ASCO                            HT8320A102 CI     1163     1                            40

.J G SOV-LM-200A SOV, CONTAINMENT LEAKAGE Mot 4ITCR ASCO HT8320A102 CI 1163 1 40 SOV-LM-200C SOV, CCNTAItaiENT LEAKAGE MCilITOR ASCO HT8320A100 CI 1163 1 40 ~

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SOV-LM-200N SOV, CCNTAItctEtiT LEAKAGE MotlITCR ASCO HT8320A102 CI 1163 1 40 9 3,~ SOV-LM-2000 SOV, CCNTAIt 1ENT LEAKAGE MONITOR ASCO HT8320A102 CI 1163 1 40

 'd SOV-LM-200E                         SOV, CCNTAIt0 TENT LEA'(AGE MO!IITOR                                                                                                                                                        40 h

ASCO HT8320A' M CI 1163 1 SOV-LM-200G SOV, CONTAIt0;ENT LEAKAGE Mot 1ITCR ASCO HT8320A102 CI 1163 1 40 SOV-LM-201A SOV, CCtlTAltaiEt4T LEAKAGE NC?lITOR ASCO 8320A102 CI 1163 1 69 n SOV-LM-201B SOV, CCNTAItC1EtiT LEAKAGE M0t1ITCR ASCO 8320A10? CI 1163 1 69 U SOV-Lii-201D CI h SOV, CCHTAIt01ENT LEAKAGE mot 1ITOR ASCO 8320A102 1163 1 69

         $0V-LM-201C                         SOV CCNTAIt:1EtiT LEAKAGE MONITCR                                                                   ASCO                            8320A102    CI    1163     1                            69

_ SOV-DA-2009 SOV, CONTAIt?"ENT SUtiP DISCH ISOLATION ASCO HBS30281U CI 1125 1 62 50V-CV-250C S1V, CCt1 TAIT 01Et4T VACUM PUMP SUCTICt1 ASCO HT8321A5 CI 1125 135 67 SOV-CV-2500 SOV, COtiTAltC1ENT V* CUM PUMP FUCTICtl ASCO HT8321A5 CI 1125 135 67

  'm     SOV-CV-250D                         SOV, CCNTAI?O1EllT . Uf1 FUMP SUCTION                                                                ASCO                           HT8321A5    CI    1125     135                          67          m t)                                                                                                                                                                                                                                                 W

_SOV-CV-250A SOV, CCiiTAINtiENT VACUM PUMP SUCTICH ASCO HT8321A5 CI 1125 135 67 O e Og e

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                                                                                                                                                                                                                         ,v DATE 0/20/81                                                                    VIRGIllIA ELECTRIC At10 POWER COMPAt1Y                                                                        PAGE 27 m                                                                                          fl0RTH AtitlA POWER STATI0t1 UNIT 2                                                                                         g C                                                                                       EQUIPMErlT CUALIFICATION MASTER LIST                                                                                           W DEStAIPTI0ti/ FILE SORT DFDER     12345678901234 SOV-CV-200                       SOV CONTAltiMEt4T VACUUM EJECT lt1LET                        ASCO                                          CI    1125      1
  • ti/A SOV-HV-160-1 , SOV CCNTROL At:0 PELAY ROOM OAMPER ASCO HV FIELD 6 *t1/A
   %      SOV-HV-160-2'                    SOV C0tlTROL Ato RELAY ROOM DAMPER                           ASCO                                          HV    FIELD                6                  *ti/A b                                                                                                                                                   flV h

SOV-HV-161-2 SOV, C0!ITROL AfD RELAY ROOM DAMPER ASCO FIELD 6

  • t1/A SOV-HV-161-1 SOV, CotiTROL Afic RELAY ROOM DAMPER ASCO HV FIELD 6 *ti/A SOV-HV228-1 SOV, EXHAUST TO 10DIllE FILTER batik ASCO HV FIELD 23 5
  • Pl/A SOV-HV228-2 SOV, EXHAUST TO IODIt1E FILTER bat 1K ASCO HV FIELD 23 5 *H/A SOV-HV-2158-1 SOV FLUSH VALVE SERVICE BLDE STRAIT 4ER CI 1
  • ti/A SOV-HV-215B-2 SOV FLUSH VALVE SERVICE BLDG STRAINER CI 1 *N/A SOV-HV-215A-1 SOV, FLUSH VALVE SERVICE BLDG STRAINFR CI 1 *ti/A
.         SOV-HV-215A-2 SOV, FLUSH VALVE SERVICE BLDG STRAltiER                                                                                       C_                                            *ti/A C          TV-HC-200A                       SOV, HYOROGEtt ANALYZER SYSTEM                               VALCOR                            V526529531 HC     34670                                     T20 h

.?- TV-HC-20CB SOV. HYORCGEtt At1ALYZFR SYSTEM VALCOR V5265?9531 HC I4670 T20 O TV-HC-201A SOV, HYDROGEtt ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 h TV-HC-201B SOV, HYOROGEtt AllAf1ZER SYSTEM VALCOR V526529531 HC 34673 T20 TV-fiC-202A SOV. HYDROGEll ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 g TV-HC-202B SOV. HYOROGEN ANALYZER SYSTEM VALCOR V526529531 NC 34670 T20 , (> W TV-HC-2038 SOV, HYORMEtt AtlALYZER SYSTEM VALCOR V526529531 HC 34670 T20 TV-HC-203A SOV. HYOROGEtt AtiALYZER SYSTEM VALCOR V526529531 NC 34670 T20 _ SOV-HC-207A SOV, HYOROGEH RECOMDIt1ER ASCO tiP831654E HC 35085 1 T22 SOV-HC-2054 SOV, HYOROGEt1 RECOMDIt:ER ASCO NP831654E HC 35085 1 T22 SOV-HC-205B SOV, HYDROGEt1 RECOM3 iller ASCO NPS31654E IfC 35085 1 T22 50V-HC-206A SOV, HYOR0GEli RECOMSIt1ER ASCO tiP831654E HC 35085 1 T22 b-SOV HYOROGEH RECOMBIllER ASCO NP831654E HC 35085 1 T22 h _ SOV-liC-204B O h a-O O O e

DATE 8/21, J VIFGINI A ELECTRIC Atic FCWE's LOttPANY PAGE 28 flOfTH AtitlA FCWER STATICtl UtiIT 2 Os EQUIFttENT CUALIFICATICtl ttASTER LIST h DESCRIPTIO!1/ FILE SCRT O ttARx t10. DeSCC APTI0tl t1At1UFACTURER MODEL tio. SYS PUPCH. ACCIDENT FUttt.( FILE PAGE h CRDER 12345678901234 50V-HC-206B SOV HYDRCGEN REC 0" sit 1ER ASCO tiP831654E HC 350C5 1 T22 SOV-HC-204A SOV, HYDRCGEN RECOMSINER ASCO tiP831654E HC 35035 1 T22 SOV, HYCROGEN RECOMBINER ASCO 11P831654E HC 35085 1 T22 O SOV-HC-2078SCV, ICDIllE FILTER BANK ISOLATI0tl VALVE 76 h SOV-HV1158-2 ASCO HV FIELD 0 SOV-hV11SB-1 SOV, IODINE FILTER DA!!K ISOLATION VALVE ASCO HV FIELD 0 76 O- U09 h SOV-2200A-1 SOV LETDCWN IIt<E ASCO HV202302IR CI 1010 1 50V-22003-1 SOV LETD024 LIllE ASCO HV202302IR CI 1010 1 WO9 i IO h I 501-2200C-1 SOV, LETD024 LITE ASCO HV2023021R CI 1010 1 WO9 SOV-2200A-2 SOV, LETDOMI lit 1E

  • ASCO HV202302IR CI 1010 1 W32 SOV-2200C-2 50V, LETCC24 LINE ASCO HV20:302IR CI 1010 1 W32 SOV LETDC'44 LItiE ASCO HV2023021R CI 1010 1 W32
 '- b~ SDV-2460A SCV-20028-2                                                                                                                                                              h SOV LETDOWN LINE LOOP 1 & 2                                              ASCO                     HT831654   SI   1010   1                  W10 SOV-24608         SOV, LE'DOWN LIllE LOOP 1 2 2                                            ASCO                     HT831654   CI  1010    1                  W10 hl
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SOV-t13-210B SOV, t1AIN STEAM LINE BLOWDOM1 ASCO CI 1125 1 *ti/A . U m SOV-MS-210A SOV, MAIN STEAM LINE BLOWDOWri SOV, MAIN STEAM LINE TRIP ASCO ASCO HT8316047 CI CI 1125 1009 1 1

                                                                                                                                                                         *N/A 60 Ol 1 SOV-115-2 c 1 A-2 SOV-MS-201 b4 SOV,itAIN STEAM LINE TRIP                                                    ASCO                     HT8316D47  C3  1009    1                   60 C                                                                                                                                                                                h, SOV-itS-201C-1 SOV MAIN ! TEAM LIllE TRIP                                                  ASCO                     HT8316047 CI    1019   1                   60 SOV-MS-201A-1 SOV, HAIN STEAM LINE TRIP                                                    ASCO                     HT8316D47  CI   1009   1                   60 ASCO                     HT8316D47  CI   1009   1                   60

_ SOV-MS-201B-4 SOV, MAIN STEAM LINE TRIP SOV-MS-201C-1 SOV,t1AIN STEAM LItiE TRIP ASCO HT8316D47 CI 1009 1 60 50V-tis-2018-5 SOV, t1AIN STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 50V, MAIN STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 b- SOV '!S-201A-5 h ASCO HT8316047 CI 1009 1 60 _ SOV-MS-201C-2 50V, t1AIN STE AM LINE TRIP O h O e 11

O . O DATE 8/20/G1 VIRGINIA ELECTRIC APID POWER COMPANY PAGE 29 _<g NORTH Al't1A POWER STATION UNIT 2 V rQUIP11ENT GUALIFICATIOt1 MASTER 8.IST h DESCRIPTION / FILE SORT o OPDER 12345678901234 SOV-MS-201C-4 SOV, MAIN STEAM LINE TRIP ASCO HTG316047 CI 1009 1 60 0m . O SOV-MS-201C-5 .SOV MAIN STEAM LINE TRIP ASCO HT8316047 CI 1009 1 60 q SOV-MS-2018-2 SOV, MAIH STEAM lit!E TRIP ASCO HT8316D4 CI 1009 1 60 g V w SOV-SI-200A SOV, HITROGEN SUrPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-SI-2008 SCV, HITROGEN SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-SI-201 SOV, HITROGEN SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-SS-2043 SOV, PRESSURE RELIEF TANK SAMPLE ASCO HBS30281U CI 1163 1 37 SOV-SS-2003 SOV, PRESSURIZER LIQUID SPACE ASCO HB:330281U CI 1163 1 37 SOV-SS-200A SOV, PRESSURIZER LIQUID SPACE ASCO HC830281U CI 1163 1 62 SOV-SS-204A SOV, PRESSURIZER RELIEF TAMK GAS SPACE ASCO HB830281U CI 1163 1 62 SOV-SS-201B SOV, PRESSURIZER VAPOR SAMPLE ASCO HC830281U CI 1163 1 37

 ^

50V-SS-201A SOV, PRESSURIZER VAPOR SPACE sat 1PLE ASCO HB830281U CI 1163 1 62 SOV-2519A SOV, PRIM GRADE WATER TO PRT ASCO HT831654 d 1010 46 e 1 sO TV-SS-209A SOV, PRIMARY COOLANT COLD LEG C0 tit ISO VALCOR V526568319 SS 34670 1 T11 n TV-SS-202A SOV, PRIMARY COOLANT COLD '.EG CONT ISO VALCOR VS26568319 SS 34670 1 T11 V TV-SS-2028 SON, PRIMARY CCOLANT COLD LEG CONT ISO VALCCR V526568319 SS 34670 1 T12 h SOV-SS-202B SOV. PRIMARY COOLANT COLD LEG SAMPLE ASCO HD830281U CI 1163 1 3A O SOV-SS-202A SOV, PRIMARY COOLANT COLD LEG SAMPLE ASCO HD83021U CI 1163 1 60 e TV-SS-206A SOV, PRIMARY COOLANT NOT LEG CotiT ISO VALCOR V526568319 TS 34670 1 T11 O_ _ TV-SS-2080 SOV, PRIMARY COOLANT HOT LEG CONT ISO VALCOR V526568319 SS 34670 1 Til e TV-SS-206B SOV, PRIMARY COOLANT HOT LEG CONT ISO Vt.LCOR V526563319 SS 34670 1 Tli: 50V-SS-206B SOV, PRIMARY COOLANT HOT LiG SAMPLE ASCO H0830281U CI 1163 1 4 38 SOV-SS-206A SOV, PRIMARY COOLANT HOT LEG SAMPLE ASCO HBS3021U CI 1163 1 68 0 SOV PRIMARY ORAIN TRANSTER PUMP DISCHARG ASCO HD830281U CI 1125 1 15 9 _ SOV-0G-200A O e 11 _ _ _ ____ .____

O g g g O DATE 0/2 6 1 VIRGIttI A ELECTRIC At:0 POWEW0t1PAHf PAGE 30 k2

  ,_s                                                                                                                   tJCRTH At*ttA FCNER STATION UtlIT 2 U                                                                                                                 EQUIFt1EtlT GUALIFICATICH MASTER LIST DESCRIPTION / FILE 50RT O              nARx tiO.                                                  DESCRIeTICri                                                          nAHurACTuREa              nODEt ><0.            STS PURCH. ACCIDEHr rut CT rite ORDER  12345678901234 eAGE    &

50V-DG-20CB SOV, PRIMARY DRAI?1 TRAtiSFER PUttP DISCHARG ASCO 2068322U CI 1125 1 62 SOV-VG-200A SOV, PRIMARY CRAIN TRAt:SFER TAttV, VEllT ASCO HT8321A5 CI 1125 1 30 SOV-VG-2003 SOV, PRIMARY CRAIll TRAtiSFER tat:K VENT ASCO HC830281U CI 1125 1 62 SOV-RM-200A SOV, RADIATION f10tlITORING ASCO HT8321A5 CI 1125 1 30

           $0V-RM-2000                      SOV, RADIATION MOtlITORIt:G                                                                   ASCO                              HT8321A5              CI        1125    .              30 SOV-RM-2000                      SOV, RADIATIOt! MC?lITORIt:G                                                                  ASCO                                                    CI        1125   1               30 SOV-RM-200C                      SOY, RADIATIO!1 MONITORING                                                                    ASCO                              HB830281U             CI        1125   1               62 s
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SOV-2842 -SOV, RADIATION MONITSRING LINE ASCO HT830654 CI 1010 1 W40 SOV-DA-200A SOV, RC SUMP FUMP DISCHARGE ASCO HT8321A5 CI 1125 1 30 50V-CC-202B SOV, RCP BEARING COOLING ASCO HB830261U CI 1125 1 58 SOV-CC-202D 50V, RCP BEARING COOLING ASCO HC830281U CI 1125 1 58 CI 58 SOV-CC-202F SOV, RCP BEARING COOLING ASCO HB830281U 1125 1 SOV-CC-204A-1 SOV, RCP COOLER ItiLET GUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204A-2 SOV, RCP COOLER It!LET CUTSIDE ASCO HT8321A5 CI 1125 1 30 fs SOV-CC-202E SOV, RCP COOLER RETURN HEADER ASCO HT8321A5 CI 1125 1 30 O $ SOV-CC-202C SOV, RCP COOLER PETURN HEADER ASCO HT8321A5 CI 1125 1 30 SOV-CC-202A SOV, RCP COOLER RETURN HEADER ASCO HT8321A5 CI 1125 1 30 g g V W SOV,-CC-204C-2 SCV, RCP COOLERS INLET CUTSIDE ASCO HIB321A5 CI 1125 1 30 SOV-CC-204B-1 SOV, RCP COOLERS INLET GUTSIDE ASCO HT8321A5 CI 1125 1 30 _ SOV-CC-204B-2 SOV, RCP COOLERS INLET CUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204C-1 50V, RCP COOLERS INLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-2010 SOV, RCP THERMAL BARRIER HEADER ASCO HB830281U CI 1125 1 62

   ,,      SOV-CC-201A                      SOV, RCP THERMAL BARRIER RET HEADER                                                           ASCO                              HT8321A5               CI       1125   1               30 U                                                                                                                                                                                                                                            h

_ SOV-CC-205A SOV, RECIhC AIR COOLERS OUTLET INSIDE ASCO HB830281U CI 1125 1 62 6 11

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(%.)/ (G DATE 8/20/81 VIRGINIA ELECTRIC Att3 POWER COMPANY PAGE 31 t:0RTH ANNA POLER STATION UNIT 2 b- EQUIPitENT CUALIFICATI0t3 MASTER LIST DESCRIPTION / FILE SORT ORDER 12345678901234 , q SOV-CC-205C SOV, RECIRC AIR COOLERS OUTLET INSIDE ASCO HES30281U CI 1125 1 62 m V W SOV-CC-205B SOV, RECIRC AIR COOLERS OUTLET INSIDE ASCO HD830281U CI 1125 1 62 g) SOV-CC-200A SOV, RECIRC. AIR COOLER OUTLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 m (> W SOV-CC-2008 SOV, RECIRC. AIR COOLER OUTLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 m SOV-CC-200C SOV, RECIRC. AIR CCOLER DUTLET DUTSIDE ASCO HT8321A5 CI 1125 1 30 m (> W SOV-2204 50V, REGEN HEAT EXC. OUTLET VALVE ASCO HV202302IR CI 1010 1 46 SOV, RHR HEAT EXCH RETURN ASCO HT8321A5 CI 1125 1 30 O~ SOV-CC-203A SOV, RHR HEAT EXCH RETURN h COV-CC-2038 ASCO HT8321A5 CI 1125 1 30 g3 TT-SS-207B SOV, RHR INLET SAMPLIt:G CONT ISO VALCOR V506568319 SC 34670 4 T14 g s (.) w TV-SS-203B SOV RHR DUTCOARD CONTAltC1ENT ISOLATION VALCOR V52656831') SS 34670 1 T12

  -s    SOV-SS-203A                   SOV, RHR OUTE0ARD ISOLATION VALVE                                                 ASCO                    HB830?81U         CI 1163          1                     37

~'U h SOV-SS-2038 SOV RHR OUTBOARD ISOLATION VALVE ASCO HD830281U CI 1163 1 37 g TT-SS-207A SOV, RHR OUTLET SAMPLING CONT ISO VALCOR V526568319 SS 34670 4 7'

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SOV-SS-207A SOV, RHR SAMPLE LINE ASCO HV20029920 CI 1163 1 56

f. SOV-SS-207B SOV, RHR EAMPLE LINE ASCO HV2002992U CI 1163 1 56 (3/ h TV-SS-203A SOV, RHR SAf1PLING CONTAIt: MENT ISOLATIDH VALCOR V526568319 SS 34670 1 Til
  -s     50V-HV2301B                  SOV, SAFEGUARDS EXHAUST SYSTEM-                                                   ASCO                    830A22Y         HV                                 0 *H/A I.)

SOV, SAFEGUARDS EXHAUST SYSTEt1 h 50V-HV2301A ASCO 8320A22Y HV 0 *N/A SOV-2859 SOV, SAFETY INJECTION ACCUt1ULATOR ASCO HT831654 CI 1010 1 W26 (n) SOV, STEAM GEN DLOWOCWN ISOLATION VALVE h _ SOV-BD-200F ASCO HB830281U CI 1125 1 7 63 f SOV-CD-2000 SOV, STEAM GEN BLOWDOWN ISOLATION VALVE ASCO HCe10281U CI 1125 1 7 63 SOV-CD-200J SOV STEAM GEN BLOWOOKH ISOLATION VALVE ASCO 2003322U CI 1125 7 63 h 7 SOV-CD-200G SOV, STEAN GEN BLOWDOWN ISOLATION + VALVE ASCO HCSIO281U CI 1125 7 63 SOV-BD-2008 50V, STEAN GEN BLOWDOWN ISOLATION VALVE ASCO HC830081U CI 1125 1 7 63 h O h aIl # 8 8 h

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v h SOV-NS-213C-2 SOV. STEAt1 GEN TRIP ASCO HT8321A5 CI 1125 1 51 SOV-MS-2138-2 SOV, STEAt1 GEN TRIP ASCO HT8321A5 CI 1125 1 51 SOV-MS-213A-2 SOV, STEAM CEN TRIP ASCO HT8321A5 CI 1125 1 51 SOV-MS-213A-1 SOV, STEAN GEN TRIP ASCO HTS 321A5 CI 1125 1 51

 ,U q                                                                                                                                                                                                  h SOV-MS-209A     'SOV STEAM GEN TRIP                                     ASCO                     HT8321A5    CI    1125       1                                                51 ASCO                     HT8321A5    CI    1125       1                                                51
 ~'. 0-SOV-CD-200E SOV-MS-213B-1 SOV. STEAN GEN TRIP hi l SOV. STEAM GEN. BLOWDOWN ISOLATION                     ASCO                     HT8321A5    CI    1125       1                                                30 SOV, STEAM GEN. BLO DOWN ISOLATION                     ASCO                     HT8321A5    CI    1125       1                                                 30
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SOV-CD-200C hl SOV-BO-200A SOV. STEAM GEN. BLOWDOWil ISOLATION ASCO HT8321A5 CI 1125 1 30 l SOV, VALVE FOR 2-HV-P-22A H0t1EYWELL HV FIELD 9 *N/A 0f-SOV-HV-2200A h SOV-HV-22003 SOV, VALVE FOR 2-HV-P-22B H0ftEYWELL HV FIELD 9 *t!/A H0t:EYWELL HV FIELD 9 *N/A O fm SOV-HV-2000C SOV, VALVE FOR 2-HV-P-22C

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SP SPLICES RAYCHEM WCSF/N COA N/A NA 9 34 n, 1-SW-S-1B STRAINER, SW TRAVELItlG WATER SCREENS WESTINGHOUSE SW 1058 23 5 *N/A g , w L/ ' SW-5-1 A STRAINER, SW TRAVELIlld WATER SCREENS WESTINSHOUSE SW 1058 23 5 *N/A 2-SW-S-1A STRAINER, SW TRAVELING WATER SCREENS lit!K BELT CO. SW 1058 23 5 *N/A 2-SW-S-18 STRAINER, SW TRAVELING WATER SCREENS LINK CELT CO. SW 1058 23 5 *N/A W O h

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               !OV-CC-204C-1 SOV. RCP COOLERS IHLET OUTSIDE                                                                                                    ASCO                           HT8321A5  CI      1125  1                                  30             g V                                                                                                                                                                                                                                                                W IOV-CC-204C-2 SOV. RCP COOLERS IHLET OUTSIDE                                                                                                   ASCO                           HT8321A5  CI      1125  1                                  30 10V-DA-200A                                                                            SOV. RC SUt1P PUMP DISCHARGE                            ASCO                           HT8321A5  CI      1125  1                                  30                   -
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g______ (v3 (v3 DATE 8/20/81 VIRGINIA El rCTRIC AliD POWER COMPANY PAGE 5 O NORiH ANNA PCMER STATICH UNIT 2 E0uIrtiEnT ct AtirIC4110ti niSitR tISr mat 4UFACTURER/ FILE SORT e ORDER 12345678901234 pm SOV-IA-202A SOV. CONTAIHt1ENT It4STRUMENT AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 d SOV-IA-202B SOV. CONTAIN!1ENT IHSTRUMENT AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 SOV-RM-2008 50V. RADIATION F10HITORING HT8321A5 1125 30 O SOV-RM-200A SOV, RADIATION MOHITORING ASCO ASCO HT8321A5 CI CI 1125 1 1 30 e SOV-PM-2000 SOV, RADIATION MONITORIttG 1125 30 Os SOV-SI-200A SOV, HITROGEH SUPPLY LIttE ASCO ASCO HT8321A5 CI CI 1125 1 1 33 e SOV-SI-2008 SOV HITROGEH SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-SI-201 SOV. HITROGEN SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-VG-200A SOV, PRIt1ARY ORAIN TRANSFER TAHK VENT ASCO HT8321A5 CI 1125 1 30 0~ 8 SOV-MS-211A SOV. AUX FEED PUt1P TURO DRIVE ASCO HT8344A71 MS 1125 2 67 36  % SOV-MS-2110 SOV. AUX FLED PUMP TUPB DRIVE ASCO HT8344A71 f1S 1125 2 67 36 O SOV-SS-2008 SOV. PRESSURIZER LIQUID SPACE ASCO HB8302810 CI 1163 1 37 e -7i SOV-SS-201B SOV. PRESSURIZER VAPOR SAMPLE ASCO HB8302810 CI 1163 1 37 , SOV-SS-203A SOV, RHR OUT00ARD ISOLATION VALVE ASCO HB830281U CI 1163 1 37 p SOV-SS-203B SOV, RHR OUTBOARD ISOLATICH VALVE ASCO HD830281U CI 1163 1 37 m AJ W SOV-SS-2128 SOV. STEAN GEN SAMPLE ISOLATI0t4 ASCO HB830281U CI 1163 1 37 SOV-SS-204B SOV. PRESSURE RELIEF TANK SAMPLE ASCO HB830281U CI 1163 1 37 SOV-SS-202B SOV, PRIMARY COOLANT COLD LEG SAMPLE ASCO HB830281U CI 1163 1 38 HB830281U CI 38 O, SOV-SS-206B SOV, PRIHARY COOLANT HOT LEG SAMPLE SOV. CONTAIHMENT LEAKAGE MONITOR ASCO ASCO HT8300A102 CI 1163 1163 1 4 1 40 e _ SOV-LN-200A SOV-LM-200B SOV CONTAINt1ENT LEAKAGE McHITOR ASCO HT8320A102 C1 1163 1 40 SOV-Lii-200C SOV, CONTAINt1ENT LEAKAGE MOHITOR ASCO HT8320A102 CI 1163 1 40 SOV-LM-200F SOV, CONTAIHt1ENT LEAKAGE N0ti1 TOR ASCO HT8320A102 CI 1163 1 40 _ SOV-LM-200G SOV. CONTAINt1ENT LEAKAGE MONITOR ASCO HTB320A102 CI 1163 1 40 O e O. O e e uil

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  <     SOV-HS-213B-1                 SOV. STEAN GEH TRIP                                                               ASCO                       tit 8321A5 CI   1125    1                  51                   ?

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SOV RCP BEARING COOLIl1G ASCO HBS30281U CI 1125 1 58 h _ SOV-CC-2028 SOV-CC-202D COV. RCP BEARING COOLING ASCO HB830281U CI 1125 1 58 SOV-CC-202F SOV. RCP BEARING C00 lit 1G ASCO HD830281U CI 1125 1 58 SOV-MS-2018-4 SOV. MAIN STEAM LINE TRIP ASCO HT8316047 CI 1009 1 60 - _ SOV-HS-201A-1 SOV. MAIH STEAN LINE TRIP ASCO HT8316D47 CI 1009 1 60 O e O e

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NAHUFACTURER/ FILE SORT ORDER 12345678901234 SOV-NS-201A-2 SOV, HAIH STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 SOV-t13-2 01 A-4 50V, NAIN STEAM LINE TRIP ASCO HT8316047 CI 1009 1 60

                                          $0V-MS-201A-5 SOV, HAIN STEAM LItlE TRIP                                                                                                         ASCO                           HT8316D47  CI      1009  3                      60 SOV-NS-2018-1                                                                          SOV, HAIH STEAM LINE TRIP                                 ASCO                           HT8316047  CI      1007  1                      60 SOV-NS-2018-2                                                                          SOV, NAIH STEAM LINE TRIP                                 ASCO                           HT8316047  CI      1009  1                      60 SOV-NS-201C-1 SOV, NAIN STEAM LItlE TRIP                                                                                                         ASCO                           HT8316047  CI      1009  1                      60 n                                       SOV-t1S-201C-2 SOV, HAIN STEAN LINE TRIP                                                                                                         ASCO                           HT8316D47  CI      1009  1                      60 V

SOV-NS-201C-4 SOV, HAIN STEAN LINE TRIP ASCO HT8316047 CI 1009 1 60 h

  ,                                       SOV-t1S-201C-5 SOV, NA1H STEAN LINE TRIP                                                                                                         ASCO                           HT8316047  C1      1009  1                      60 SOV-MS-201B-5 SOV, P.4IN STEAM LINE TRIP                                                                                                        ASCO                           HT8316047  CI      1009  1                      60 h5y SOV-CC-201B                                                                           SOV, RCP THERNAL DARRIER HEADER                           ASCO                           HB830281U  CI      1125  1                      62          7' 3

SOV-CC-205A SCV, RECIRC AIR COOLERS OUTLET INSIDE ASCO HB830281U fI 1125 1 62 _ g 50V-CC-20SB SOV, RECIRC AIR COOLERS OUTLET INSIDE ASCO HD8302810 CI 1125 1 62 g-U W SOV-CC-20SC SOV, RECIRC AIR COOLERS OUTLET INSIDE ASCO HD830231U CI 1125 1 62 g SOV-DA-200B SOV, CONTAINNEHF SUNP DISCH ISOLATI0H ASCO HB830:81U CI 1125 1 62 g V W SOV-DG-2008 SOV, PRIMARY ORA 1H TRANSFER PUt1P DISCHARG ASCO 20683d'J CI 1125 1 62 SOV-RM 200C SOV, RADIATION NOHITORING ASCO HB830281U CI 1125 1 62 SOV-SS-200A SOV, PRESSURIZER 1.! QUID SPACE ASCO HB830281U CI 1163 1 62 o _ SOV-SS-204A SOV-SS-201A SOV, PRESSURIZER VAPOR SPACE SAMPLE SOV, PRESSURIZER RELIEF TANK GAS SP*CE ASCO ASCO HB830281U CI HB830281U CI 1163 1163 1 1 62 62 e o SOV-SS-212A SOV-VG-2008 SOV, STEAN GEH SAMPLE SOV, PRINARY DRAIH TRANSFER TAHK VENT ASCO ASCO H0830281U HB830281U CI CI 1163 1125 1 1 62 62 e p SOV-00-2000 SOV, STEAN GEN BLOWDOWH ISOLATION VALVE ASCO HB830281U CI 1125 1 7 63 d SOV-BD-2008 SOV, STEAN GEH BLOWDOWN ISOLATION VALVE ASCO HB830281U CI 1125 1 7 63 h o e o O O O e all _

O DATE 8/2 u ,u VIRGINIA ELECTRIC AHO POW 1 W OMPANY PAGE O V HORTH ANNA POWER STATION Ut4IT 2 EQUIPMENT QUALIFICATI0H MASTER LIST NANUFACTURER/ FILE SORT h o ORDER 12345678901234 SOV-CD-200F SOV. STEAM GEH DLOWOOWH ISOLATION VALVE ASCO HB8302810 CI 1125 1 7 63 SOV-BD-200G ,SOV, STEAN GEN BLOWDOWN ISOLATION VALVE ASCO HB8302SIU CI 1125 7 63 SOV-DD-200H SOV. STEAN GEN BLOWDOWN ISOLATION VALVE ASCO HB830281U CI 1125 7 63 SOV-BO-200J SOV, STEAN GEH BLOWOOWN ISOLATION VALVE ASCO 2003322U CI 1125 7 63

   ,f3     SOV-CV-250C                            SOV, cot lTAIHMENT VACUM PUMP SUCTIOtl                                   ASCO                          HT8321A5  CI    1125          135                67 v

SOV-CV-2500 SOV. CONTAIHMENT VACUt1 PUMP SUCTION ASCO HT8321A5 CI 1125 135 67 9 g SOV-CV-250A SOV, CONTAIllMENT VACUM PUMP SUCTION ASCO HT8321A5 CI 1125 135 67 g U w SOV-CV-250B SOV, CONTATHMENT VACUN PUMP SUCTIOtl ASCO HT8321A5 CI 1125 135 67 SOV-SS-202A SOV, PR? h t COOLANT COLD LEG SAMPLE ASCO HB03021U CI 1163 1 68 SOV-SS-206A SOV. PRIMARY COOLANT HOT LEG SAMPLE ASCO HB83021U CI 1163 1 68 h7 E E p SOV-LN-201A SOV. CONTAINMENT 1EAKAGE MotlITOR ASCO 83L2A102 CI 1163 1 69 L,/ SOV-LM-201C ASCO 8323n102 CI 1163 1 69 h}* gDV. CONTAIHMENT LEAKAGE MONITOR SOV-LN-201B SOV, CONTAIHMENT LE AKAGE MotlITOR ASCO 6320A102 CI 1163 1 69 . SOV-LN-2010 SOV. CONT AIHMENT LE AKAGE MOHITOR ASCO 6320A102 CI 1163 1 69

    .      SOV-SW-201A-1 SOV, AIR COOLER ENERG SUPPLY                                                                      ASCO                          HB830281U SW    1125                          3  70 SOV-SW-201A-2 SOV. AIR COOLER EMERG SUPPLY                                                                      ASCO                          HB830281U SW    1125                          3  70 SOV-SW-201B-2                          SOV, AIR COOLER ENERG SUPPLY                                             ASCO                          E11GM     SN    1125                          3  70 SOV-SW-2018-1 SOV. AIR COOLER EMERG SUPPLY                                                                      ASCO                          EliCM     SW    1125                          3  70 SOV-HV115B-2                           SOV. IOD.THE FILTER Bat 1K ISOLATION VALVE                               ASCO                                    HV    FIELD                       0    76 O, .                                                                                                                                                                                                              O

_ SOV-HV1158-1 SOV, IODINC FILTER BANK ISOLATI0H VALVE ASCO HV FIELD 0 76 SOV-DA203A SOV, AUX. BLDG. TO CONT. SUMP PUMP ASCO HPS31654E DA 1125 1 T07 Og

  • T07 O

SOV-DA203B SOV. AUX. BLDC. TO CONT. SUMP PUMP ASCO NP331654E DA 1125 1

      . SOV-HC-204A                           SOV. HYDROGEH RECOMBIt!ER                                                ASCO                          HP831654E HC    35085         1                 T22 35085

_ SOV-HC-204B SOV HYDROGEN RECOMBIHER ASCO NP831654E HC 1 T22 O 9 O # g

DATE 8/20/81 VIRGINIA ELECTRIC At10 POWER COMPANY PAGE 9 HORTH ANNA PCWER STATIDH Ut4IT 2 O Eau 1Pt1ENT oVAtIr1CirIDH nASTER tIST MANUFACTURER / FILE SORT e U MARK HO. DESCRIPTIOt1 t1At1UFACTURER NODEL NO. SYS PURCH. ACCIDENT FOltCT FILE PAGE W ORDER 12345678901234 SOV-HC-205B SOV, HYDROGEtt RECOMDINER ASCO HP831654E HC 35085 122 J,- SOV-HC-205A SOV HVDROGEN RECOMDINER ASCO hP831654E HC 35085 1 1 T22 e SOV-HC-206A SOV, HYDROGEN RT. COMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-2078 SOV, HYDROGEH RECOMBINER ASCO HP831654E HC 35085 1 T22 SOV-HC-207A SOV, HYDROGEtt RECOMBINER HP831654E 35085 T22 Os SOV-HC-206B SOV, HYDROGEN RECOMOINER ASCO ASCO NP851654E HC HC 35085 1 1 T22 e fg SOV-2200B-1 SOV, LETDOWil LINE ASCO HV2023E<2IR CI 1010 1 WO9 g V W SOV-2200A-1 -SOV , LETDOWN LIS ASCO HV2023021R CI 1010 1 WO9 SOV-2200C-1 SOV, LETDOWH LINE ASCO HV202302IR CI 1010 WO9 G, SOV-2460A SOV, LETDOWH LINE LOOP 1 8 2 ASCO HT831654 CI 1010 1 1 W10 orI - 1 SOV-2460B SOV, LETDOWH LINE LOOP 1 & 2 ASCO HT831654 CI 1010 1 W10  ;' 3 SOV-2859 SOV, SAFETY IHJECTIOf4 ACCUMULATOR ASCO HT831654 CI 1010 1 W26 _, SOV-2884A SOV, BOROH IHJECTION TAf1K TO BATCH TK ASCO LB831654 SI 1010 23 5 W30 O . O. SOV-2884B SOV, BOROH INJECTION TAttK TO BATCH TK ASCO LB831654 SI 1010 23 5 W30

  -     50V-2884C                    SOV, BOROH IHJECTION TAHK TO BATCH TK                                                                ASCO                    LB8316%    SI   1010            23 5       W30 b                                                                                                                                                                                                                        N SOV-2200A-2                  SOV, LETDOWN LIf4E                                                                      ,

ASCO HV202302IR CI 1010 1 W32 m SOV-2200B-2 SOV, LETDOWH lit 4E ASCO HV2023021R CI 1010 1 W32 U h SOg-2200C-2 SOV, LETDOWN LINE ASCO HV202302fR CI 1010 1 W32 U-50V-2934 SOV, ACCUMUI.ATOR VLHT LINE FLOW SUV, RADIATION MONITORING LINE ASCO ASCO HV20:3031R CI HT830654 CI 1010 1010 1 1 W33 W40 e _ SOV-2842 p J SOV-CV-200 SOV-HV-160 ,1 SOV, CONTAINMENT VACUUN EJECT INLET SOV, CONTROL AND RELAY ROOM DAMPER ASCO ASCO CI HV 1125 FIELD 1 6

                                                                                                                                                                                                            +H/A
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FIELD SOV-HV-160-2 SOV, CONTROL AND RELAY ROCH DAt1PER ASCO HV 6 *H/A e Ls; _ SOV-HV-161-2 SOV, CONTROL AND RELAY ROOH DAt1PER ASCO HV FIELD 6 *H/A O e O 8 8 8 e IL

O O C DATE 8/2 L,,.d h VIRGINIA ELECTRIC AHO POW N OMPAHf PAGE 10 NORTH AHilA F0WER STATION UNIT 2 bm EQUIPMENT GUALIFICATIOH MASTER LIST h NANUFACTURER/ FILE SORT ORDER 123 5678901234 , SOV-HV-161-1 SOV, CONTROL Atl0 RELAY ROOM DAMPER ASCO HV FIELO 6 *tUA Os SOV, BOTTLED AIR SYSTEN 9 SOV-HV-2306B ASCO HV 6 *tVA fg SOV-HV-2306A SOV, BOTTLE 0 AIR SYSTEM ASCO HV 6 *H/A u O SOV-HV228-1 SOV, EXHAUST TO ICDINE FILTER BANK ASCO HV FIELD 23 5 *tVA Ox SOV-HV228-2 50V-HV2301A SOV, EXHAUST TO IODINE FILT'ER BANK SOV, SAFEGUARDS EXHAUST SYSTEN ASCO ASCO 6320A22V HV HV FIELD 23 5 O

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  • BARTON 288A B0 1257 6 *H/A -

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II O O DATE C/40/81 VIRGINIA ELFCTRIC AND POWER Col 1PAtif PAGE 11 NORTH ANNA POWER STAT 10H UNIT 2 O EaulPnENT aUAurICArim nASnR uST # NANUFACTURER/ FILE SORT ORDER 12345678901234 FS-BD-203B FLOW SWITCH, STN GEN BLWDH TO TK BARTON 288A BD 1257 6

  • t4/A FS-BD-203G FLOW SWITCH, STN GEtt BLWDH TO TK BARTON .288A 80 1257 7 *H/A .

FS-BD-203H FLOW SWITCH, SIN GEli BLWDH TO TK BARTOtl 2884 BD 1257 7 *H/A O < 4 42 0 HtA-HO-100 HYDROGEN ANALYZER , BEHDIX E-10SS HC 1332 H2A-HC-200 HYDhW H ANALYZER BEllDIX E-10SS HC 1332 4 42 2-HV-P-200 PUt1P, CHILLER ROON A/C BINGHAN-WILLIANETTE TBDP HV 1276 6 04 2-HV-P-22A PUMP, CHILLER ROOli A/C , BINGHAN-WILLIAMETTE TBDP HV 1276 6 04 2-HV-P-22C PUt*P, CHILLER ROON A/C BINGHAN-WILLIANETTE TBDP HV 1276 6 04 2-HV-P-20A PUMP, CHILLER R00t1 A/C BINGHAN-WILLIANETTE TBDP HV 1276 6 04 2-HV-P-2CC ' PUMP, CHILLER ROON A/C BINGHAN-WILLIANETTE TBDP HV 1276 6 04 h 2-HV-P-22B PUMP, CHILLER ROOH A/C BINGHAN-WILLIAtETTE TDDP HV 1276 6 04 { HGA-67 CABLE, 19/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 m t!G A-68 CABLE, 12/C #16 AWG BIW HE0 XL PLY E0 1265 2345 09 g-k) W NGA-69 CABLE, 2/C #16 AWG BIN HE0 XL PLY ED 1265 2345 09 q NGA-70 CABLE, 18/C #16 AWG BIW HE0 XL PLY F0 1265 2345 09 g V W HGB-35 CABLE, 2/C #16 AWG BIH HE0 XL PLY ED 1265 2345 09 f- HGB-39 CABLE, 3/C #16 AMG BIW HE0 XL PLY ED 1265 2345 09 g V)

  • W NGB-43 CABLE, 4/C #16 AWG BIW HE0 XL PLY ED 1265 2345 09 1265 2345 09 NGB-55 CABLE, 45/C #16 AWG BIW HE0 XL PLY ED g

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VIRGIHIA ELECTRIC AND POWEV COMPANY PAGE 12 s (40RTH AtlHA POWER ST;. TION UtlIT 2 EQUIFtIENT GUALIFICATIOra ttASTER LIST h MANUFACTURER / FILE SORT ORDER 12345678901234 2-HV-F-41 Fall, CONTROL ROOH ENER VENT BUFFALO FORGE HV 1296 6 *H/A 2-BY-B-03A BATTERY, STATION BATTERY 2-3 CSD BATTERY ED 1262 8 *H/A 2-BY-B-01A BATTERY, STATION BATTERY 2-1 , CSD BATTERY ED 1262 8 ell /A 2-BY-B-01B BATTERY, STATIOH BATTERY 2-1 CSD BATTERY E'J 1262 8 ott/A O-2-BY-B-02A 2-BY-B-02B BATTERY, STATION BATTERY 2-2 BATTERY, STATION BATTERY 2-2 C8D BATTERY C80 BATTERY ED ED 1262 1262 8 8

                                                                                                                                                                                                                 *H/A
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pV 2-BY-B-038 2-BY-B-04A BATTERY, STATIOH BATTERY 2-3 BATTERY, STATIOtt BATTERY 2-4 CSD BATTERY CSD BATTERY ED HV 1262 1262 8 8

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O O DATE G/23/81 VIRGINIA ELECTRIC At0 POWER Cot 1PAttf PAGE 13 NORTH aHNA POWER STATICH UNIT 2 m t) EQUIFt1EHT QUALIFICATI0tl t1 ASTER LIST W HANUFACTURER/ FILE SORT CDDER 12345678901234 HGB-43 CABLE. 2/C #8 AWG . CERRO WIRE NEO XL PLY ED 1312 8 08 UGB-44 CABLE. 2/C #6 AMG CERRO WIRE flEO XL PLY ED 1312 8 08 NGB-45 CABLE, 4/C #6 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08 bn HGA-67 CABLE. 19/C #16 AWG CERRO WIRE HEO XL PLY ED 1392 12345A 13 NG%-68 CABLE. 12/C #16 AWG CERRO WIRE HE0 XL PLY ED 1392 123456 13 NGA-70 CABLE. 18/C #16 AWG CERRO WIRE tiEt XL PLY ED 1392 123456 13 m HGB-35 CABLE. 2/C #16 AWG CERRO WIRE NEO XL PLY ED 1392 2345 13 b h HGB-39 CABLE. 3/C #16 AWG CERRO WIRE HEO XL PLY ED 1392 123456 13 2-EE-EG-02A GENERATOR. Et1ERGENCY GEH 2H COLT It00STRIES ED 1220 8 *ti/A c { 2-EE-EG-02B GENEFtATOR. EMER GEM 2H CONTROL BOX COLT Itt00STRIES ED 1220 8 *H/A F 2-EE-EG-02C GENERATOR. ENER GEN 2H CONTROL CAB COLT INDUSTRIES ED 1220 8 *ti/A 2-EE-EG-4A GENERATOR. Et1ERGENCY GENERATOR 2J COLT INDUSTRIES ED 1220 8 at1/A 7 2-EE-EG-48 GENERATOR. Et1 ERG CEH 2J CONTROL COX COLT IIIDUSTRIES ED 1220 8 *H/A = 2-EE-EG-4C GENERATOR. Et1ER GEH 2J CONTROL CAB COLT ItIDUSTRIES ED 1220 8 *H/A 2-EG-B-02B GENERATOR. EMER GEN 2H BATTERY COLT It00STRIES ED 1220 8

  • tt/ A 2-EG-B-4D GENERATOR. Et1ER GEN 2J BATTERY COLT It00STRIES E0 1220 8 *H/A 2-EG-C-2HB COHrRESSOR. Et1 ERG GEN AIR COMr COLT It0USTRIES ED 1220 8 *H/A 2-EG-C-2JB COMPRESSOR. EMERG GEH AIR COMP . COLT It2)USTRIES ED 1220 8 *H/A e 2-EG-C-2HA COMPREOSOR. Et1 ERG GEN AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A b

_ 2-EG-C-2JA COMPRESSOR. Et1 ERG GEN AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A H2A-HC-201-1 H10ROGEH ANALYZER C0t1 SIP-DELPHI K III HC T19 H2A-HC-201-2 HYDROGEH ANALYZER cot 1 SIP-DELPifI K III HC T19 TYPE IA PEHETRATION ASSEMBLIES (INSTRUMENTATIOH) CONAX ED 1313 8 24 _ TYPE IB PEHETRATION ASSET 1BLIES (CONTROL) CONAX ED 1313 8 24 O e G O O e u11

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140RTH AtitlA POWER ST ATIOH UtlIT 2

 %                                                                                           EQUIPrtEHT QUALIFICATI0H MASTER LIST                                                                                         h MANUFACTURER / FILE SORT ORDER                   12345678901234 TYPE IC                      PEllETRATION ASSEttDLIES ( LOW VOLTAGE PWR)                           C0tlAX                                     ED            1313                               8         24 TYPE IIA                     PENETRATION ASSEMBLIES E LOW VOLTAGE PWR)                             C0tlAX                                     ED            1313                               8         24 TYPE IIB                    PEHETRATI0tl ASSEMBLIES ( LOW VOLTAGE PWR)                            C0tlAX                                     ED            1313                               8         2-TYPE IIC                     PENETRATI0tt ASSEMBLIES ( LOW VOLTAGE PWR)                            CONAX                                      10            1313                               8         24 TYPE IID                     PEHETRAT10tl ASSEMDLIES ( LOW VOLTAGE PWR )                           CONAX                                      ED            1313                               8         24 0s 8

9 TYPE IIE PEHETRATIDH ASSEMDLC ( LOW VOLTAGE PWR ) CONAX ED 1313 24 p TYPE III PEHEIRATIO!1 ASSEttt3 LIES ( TRIAXIAll C0tlAX ED 1313 8 24 L) O TYPE IV PEtlETRATION ASSET 1DLIES ITHERMOCOUPLES) C0tlAX ED 1313 8 24 , TYPE IA PENETRATION ASSEMDLIES (INSTRUMENT ATIDH) C0tlAX ED 1313 8 25 , 5-TYPE IB PEHETRATIOtt ASSEMBLIES (CONTROL) CONAX ED 1313 8 25 1 a PENETRATIDH ASSEMDLIES ( LOW VOLTAGE PWR ) CONAX ED 1313 8 25 7 O~ TYPE IC TYPE IIA PEHETRATION ASSET 18 LIES E LOW VOLTAGE PWR) COHAX ED 1313 8 25 93 TYPE IID PEHETRATICH ASSEMDLIES ( LOW VOLTAGE PWR ) CollAX ED 1313 8 25 O- e ,,, TYPE IIC PENETRATION ASSEMDLIES ( LOW VOLTAGE PWR ) CONAX ED 1313 8 25 TYPE IID PENETRATION ASSEMBLIES (LOW VOLTAGE PWR) ONAX ED 1313 8 25 TYPE IIE PEHETRATION ASSEMBLIES (LOW VOLTAGE PWR) COHAX ED 1313 8 25 SP SPLICES C0tlAX KAPT0H INS H/A 1313 9 26 SP SPLICES CONAX KAPTON INS H/A 1313 9 27 q TB TERMIllAL BLL.KS COtiHECTIGH IHC. HSS3 PLYSL t t/A- 1313 9 19 O E/P, CHARGING FLOW COHTROL CH 61 h _ E/P FC-2122 COPES-VULCAH 2-EG-P-OHA PUtlP EMERGENCY GEH 2H FUEL OIL PUt1P DEL AVAL TURBINE SW 0812 8 *H/A 2-EG-P-2HB PUMP. EMERGENCY GEH 2H FUEL OIL PUMP DELAVAL TURBINE ED 0812 8 att/A 2-EG-P-2JB PUMP, EMERGEHCY GEH 2J FUEL OIL PUMP DELAVAL TURBINE ED C812 8 *H/A - 2-EG-P-2JA PUMP, EMERGEHCY GEH 2J FUEL OIL PUMP DELAVAL TURBINE ED 0812 8 *tt/A h e O M a O , O DATE 8/20/81 VIRGINIA ELECTRIC At0 POWER COMPAt4Y PAGE 15 HORTH At#1A POWER STATIcti UNIT 2 C,. EQUIPt1ENT QUALIFICATION MASTER LIST MANUFACTURER / FILE SORT h ORDER 12345678901234 2-HV-S-1A STRAINERS, CHILLER ROOM ELLIOT t1AR25104 HV 1299 6 02 o~ 2-HV-S-1B ELLIOT MAR 25104 HV 1299 6 02 h

                                   , STRAINERS, CHILLER ROOM                                                                                                                                                       ,

YE-VMS200A-1 ACCELEDOMETER, PZR SAFETY VALVE POSITIO*1 EttDEVCD 2073AM20 RC 1605 4 T02 f YE-VHS200A-2 ACCELEROt1ETER, PZR SAFETY VALVE POSITION Et3DEVC0 2273A1120 RC 1605 4 102 YE-VHS2000-1 ACCELER0t1ETER, PZR SAFETY VALVE POSITIOtt Et!DEVC0 2273AM20 RC 1605  % T02 YE-VHS2000-2 ACCELER0t1ETER, P2R SAFETY VALVE POSITION Et0EVC0 2273AM20 RC 1605 4 T02 YE-VMS200C-1 ACCELEROMETER, PZR SAFETY VALVE POSITIOta 010EVC0 2273AM20 PC 1605 4 T02 g/ \_ w YE-Vt15200C-2 ACCELEROMETER, P.'R SAFETY VALVE POSITION EttDE V.0 2273AM20 RC 1605 4 T02 f- YE-VMS201A-1 ACCELEROMETER, PZR PORV POSITION Et0EVC0 2273AM20 RC 1605 4 T03 YE-VMS2018-1 ACCELEROMETER, PZR PORV POSITIOt1 Et40EVC0 2273AM20 RC 1605 4 T03 )I YC-VMS201B-2 ACCE LERot1ET ER , PZR PORV POSITION 2273AM20 1605 4 703 ,3 kJ ENDEVC0 RC

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EP HCV2186 E/P FOR HAND CONTROL VALVE HCV-2186 FISHER 546 W31 TV-SW-101A EMER SUP,10 CONTAINt1Et4T AIR COOLER FISHER SW 1125 3 *H/A TV-SW-101B EMER SUP, TO CONTAIHMEHF AIR COOLER FISHER SW 1125 3 *H/A TV-SW-2010 EMER SUP, TO C0tlTAltiMENT AIR COOLER FISHER SW 1125 3 *H/A TV-SW-201A ENER SUP, TO CONTAItn1ENT AIR COOLER FISHER . SW 1125 3 *H/A FS-HV-2207A FLOW SWITCH, BATTERY R00f12-1 VEf 4T FLUID COMP 12-64-3 HV FIELD 9 *H/A _ FS-HV-2207B FLOW SWITCH, BAT 1ERY ROOM 2-2 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A FS-HV-2207D FLOW SWITCH, BATTERY ROON 2-4 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A F S-HV-220 7C FLOW SWITCH, BATTERY ROOM 2-3 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A PT-LM-200A TRANSMITTER, CONTAIHMENT PRESSURE FOXCORO EllAH LM 1215 135 48 TRANSMITTER, CONTAIHMENT PRESSURE h PT-LM-200D FOXBORO E11AH Lt1 1215 135 48 o e o * *

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 ,      ___ ____                _____w....____.__..                                    _        __________._____..... _.                            _______ ___ .. ._...... .          .. _______ _____       ____

OPDER 12345678901234 PT-LN-200C TRANSMITTER, CONTAINNENT PRESSURE FOXCORO E11AH LN 1215 135 48 PT-LN-2006 TRANSNITTER, CONTAltiMENT PRESSURE FOXBORO EllAH LN 1215 135 48 PT-LM210D TRANSHITTER, COND. PRESSURE WIDE RANGE FOXDORO H-E11AH LH 1215 4 101 PT-LN210A TRANSHITTER, CONO. PRESSURE WIDE RANGE FOXDORO H-E11AH LN 1215 4 T01 FT-2414 TRANSMITTER, R5 ACTOR COOLANT FLOW L1 FOXOORO E130H RC 1010 2 5 W01 Os FT-2415 TRAi.5MITTER, REACTOR COOLANT FLOW L1 FOXBORO E13DN RC 1010 2 5 N01 h FT-2416 TRANSHITTER, REACTOR COOLANT FLOW L1 FOXCORO E150H PC 1010 2 5 W01 g p> ( W FT-2424 TRANSHITTER, REACTOR COOLANT FLOW L2 FOXBGRO E13DH RC 1010 2 5 W01 FT-2425 TRANSNITTER, REACTOR COOLANT FLOW

  • L2 FOXBORO E130H RC 1010 2 5 WO1 FT-2426 TRANSNITTER, REACTOR COOLANT FLOW L2 FOXBORO E130H RC 1010 2 5 W01 7
 ,      FT-2434                          TRANSHITTER, REACTOR COLLANT FLOW L3                                                          FOXBORO                     E13DH      RC 1010          2 5          WOI                           y hj FT-2435                          TRANSHITTER, REACTOR COLLANT FLOW L3                                                          FOXBORO                     E13DH      FC 1010          2 5          Wo1 7

FT-2436 TRANSHITTER, REACTOR COLLANT FLOW L3 FOROPO E13DH DC 1010 2 5 WO1 . PT-2474 TRANSHITTER, STEAN GEN. 1 PRESSURE FOXBORO E11GN NS 1010 5 WO3 PT-2475 TRANSNITTER STEAN GEH. 1 PRESSURE FOXBORO E11Gti NS 1010 5 WO3 Le w PT-2476 TwANSNITTER STEAN GEN. 1 PRESSURE FOXCORO E11GN NS 1010 5 NO3 g PT-2484 TRANSHITTER STEAN GEN. 2 PRESSURE FOXBORO E11GN NS 1010 5 WO3 V PT-2485 T"iHSMITTER STEAN GEH. 2 PRL SSURE FOXBORO E11GN NS 1010 5 WO3 PT-2486 TRANSMITTER STEAN GEH. 2 PRESSURE FOXBORO E11GN NS 1010 5 WO3 PT-2494 TRANSNITTER, STEAN GEN. 3 PRESSURE FOXBORO E11Gti NS 1010 5 W33 PT-2495 TR A'! SHIT T E R , STEAN GEH. 3 PRESSURE FOXCORO E11GN NS 1010 5 WO3 PT-2496 TRANSNITTER. STEAtt GEH. 3 PRESSURE FOXBORO E11GN NS 1010 5 H03 FT-FW200A TRAH5NITTER, AUX. FDWTR. DISCHARGE FOXCORO E13DN FW 4 *H/A O. TRANSHITTER. AUX. FDWTR. DISCHARGE FOXBORO E13DH FW 4 *H/A

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O , O DATE 8/20/81 VIRGstlIA ELECTRIC AND POWER COMPAtlY PAGE 17 NORTH ant 4A POWER STATION UNIT 2 EQUIPMENT QUALIFICATION HASTER LIST MANUFACTURER /F1tE SORT h o ORDER 12345678901234 FT-FW200C TRAtlSMITTER, AUX. FDWTR. DISCHARGE FOXBORO E13Dt1 FW 4 *H/A LT-QS-20 A .lRANSNITTER, RF WATER STORAGE TANK FOXBORO E13DN QS 1215 35 *H/A LT-QS-2008 TRANSNITTER, RF WATER STORAGE TA'IK FOXBORO E13DH QS 1215 35 *H/A LT-QS-200C TRANSMITTER, RF WATER STORAGE TAHK FOXBORO E13DM QS 1215 35 *tum LT-QS-2000 TRANSMITTER, RF WATER STORAGE TANK FOXBORO E13DN QS 1215 35 *H/A PT-MS-201B TRANSNITTER, MAIH STM LP II PRES Cot 3 TROL FOXBOM E11GN MS 1215 2 *H/A PT-MS-201C TRANSMITTER, MAIH STM LP III PPES CONTROL FOXBORO E11GN MS 1215 2 *H/A Os PT-MS-201A TRANSHITTER, MAIH STN LP I PRES CONTEOL FOXBORO E11GN HS 1215 2 *H/A e LT-RS-251A TRANSMITTER, CONT WATER LEVEL GEMS XM-36920 RS 1333 4 20 LT-RS-251B TRANSHITTER, CONT WATER LEVEL GFMS XH-36920 RS 1333 4 20 3 LIT-RS-251A TRANSNITTER, CONT WATER LF. VEL GEMS RE31300/31 RS 1333 4 49 O LIT-RS-251B GENS RE31320/31 RS 1333 4 49 S?

                                     }RANSNITTER, COHT WATER LEVEL                                                                                                                                                                               _

LT-DA210A TRANSMITTER, COHT SUMP LVL hANR?.i DANGE GENS XH-36496 DA 1133 4 TOS  ;,, LT-DA2108 TRANSNITTER, CONT SUMP LVL HARROW RANGE GSMS XN-36496 DA 1133 4 T08 LQ/LS-DA210A PWR SUP & S.4TCH, CONT SU D LVL NRRW RNGE GEMS RE-39425 DA 1333 4 T10 LQ/LS-DA210B PWR SUP & SWTCH, C0t4T SUMP LVL HRR.4 RNGE GEMS RE-42880 DA 1333 4 T10 NGA-10 CAB'.E,1/C 2000 NCH GENERAL CABLE HE0/ETH/PR ED 1255 8 10 HGA-12 CABLE, 3/C 1000 MCM ALUMINUt1 ARMOR GENERAL CABLE HE0/ETH/PR ED 1255 8 10 HGA-13 CABLE, 3/C 4/0 AWG. ALUMINUM ARMOR GENEPAL CABLE NE0/ETH/PR ED 1255 8 10 _HGA-3 CABLE, TRIPLEX 1000 MCH GENERAL CABLE HE0/ETH/PR ED 1255 8 10 NGA-4 CABLE, 3/C 500 MCt1 ALUMINUN ARMOR 1255 8 10 og EGA-5 CABLE, 3/C 1250 MCM STEEL ARMOR GENERAL CABLE GENERAL CABLE HE0/ETH/PR E0 HE0/ETH/PR ED 1255 8 10 e HGA-6 CABLE, 3/C 1250 MCN ALUt11 HUN ARMOR GENERAL C OLE HE0/ETH/PR ED 1255 8 O-CABLE, 1/C 1500 MCN GENERAL CABLE HE0/ETH/PR ED 1255 8 lb 10 e _HGA-9 O e O

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                                                                                                                                        *H/A
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2-EP-CD-04C CABINET, VITAL BUS CAB 2-3 GENERAL ELECTRIC lit 1IT SWITCH, PR C00LHT COLD LEG CF T ISO GORDOS MR8901 SS 34670 T15 ZS-SS-202A-1 LIMIT SWITCH, PR COOLHT COLD LEG COHT 150 GORDOS MR8901 SS 34670 T15 ZS-SS-202A-2 T15 g V ZS-SS-203A21 LIMIl SWITCH, RHR SAMPLING CONT 170 GORDOS MR8901 MR89;i SS SS 34670 34670 TIS e ZS-SS-233A-2 LIMIT SWITCH, RHR sat 1PLING C0t4T 150 GORDOS lit 1IT SWITCH, PR COOLNT HOT LEG CONT ISO GORDOS MR8901 SS 34670 T15 ZS-SS-206A-1 NR8901 SS 34670 TIS [ g ZS-SS-206A-2 lit 11T SWITCH, PR 000LHT HOT LEG COHT 150 GORDOS z_ lit 1IT SWITCH, PR COOLHT HOT LEG CONT 150 CORDOS MR8901 SS 34670 #15 J ZS-SS-20'8D-1 LIMIT SWITCH, PR COOLHT HOT LEG CONT ISO GORDOS 11P8901 SS 34670 T15 y ZS-SS-2080-2 e O ZS-SS-209A-2 LIMIT SWITCH, PR COOLHT COLD LEG CONT ISO GORDOS NR8901 SS 34670 34670 TIS T15 e. ZS-SS-209A-1 LIMIT SWITCH, PR COOLHT COLD LEG CONT ISO GCRDOS Mra901 SS LIMIT SWITCH, CNT ATHS SMPL FROM CNT IS V GORDOS t1R8901 SS 34670 T16 g n ZS-SS-1402A-1 W U Lit 1IT SWITCH, CNT ATHS SMPL FRON CNT IS V GOFDOS NR8901 SS 34670 T16 ZS-SS-1402A-2 O. ZS-SS-14028-1 LIMIT EWITCH, CNT ATMS St1PL FROH CNT IS V GORDOS t198901 SS 34670 T16 T16 e ZS-33-1402B-2 LIMIT SWITCH, CNT ATHS SMPL FRON CNT IS V GORDOS MR8901 SS 34670 LIMIT SWITCH, Cl4T ATHS SMPL TO CNT IS V GORDOS HR8901 SS 34670 T16 g n ZS-SS-1423A-2 W V NR8901 SS 34670 T16 ZS-SS-14238-2 LIMIT SWITCH, CNT ATHS SMPL TO CNT IS V GORDOS LIMIT SWITCH, CNT ATMS SMPL TO CNT IS V GORDOS (1R8901 SS 34670 T16 n ZS-SS-142?R-1 0 LIMIT SWITCH, CNT ATHS SMPL TO CHT IS ? GORDOS HR8901 SS t4670 T16 d-SS-1423 A-1 lit 11T SWITCH, RHR OUTBOARD CONT ISO GORDOS HR8901 SS 34670 T16 O-- IS-SS-2038-1 O LIMIT SWITCH, RHR Ot.'TBOARD CONT ISO GORDOS HR8901 SS 34670 T16 _ZhSS 430-2

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 -    ZS-HC-2030-2                                LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203s                                                             GORDOS                       MR8901  HC     34670                      T21
  • ZS-HC-202A-1' LINIT SWITCH, LIMIT SWITCH FOR TV-HC-202A DM ,

MR8901 HC 34670 T21 ZS-HC-201A-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201A GORDOS MR8901 HC 34670 T21 - LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203A GORDOS NR8901 HC 34670 T21 _ ZS-HC-203A-1 O

4h 0 O DATE 8/20/81 VIRGINIA ELECTRIC AtID POWER COMPANY PAGE 21 HORTH ANNA POWER STATION UNIT 2 O ' EQUIPMENT QUALIFICATI0tl MASTER LIST h MANUFACTURER / FILE SORT ORDER 12345678901034 2-BY-C-03 BATTERY CHARGER GOULD ED 1250 8 atVA 2-BY-C-04 BATTERY CHARGER GOULD ED 1250 8 *H/A 2-BY-C-05 BATTERY CHARGER GOULD ED 1250 8 *H/A 2-BY-C-07 BATTERY CHARGER GOULD FD 1250 8 *H/A s 2-BY-C-06 BATTERY CHARGER COULD ED 1250 8 atVA h 2-BY-C-02 BATTERY CHARGER , GOULD ED 1250 8 *tVA TS-HV196D TEMPERATURE S;1 ITCH, ENER GEN ROOM 2J HotlETELL T605A1016 HV 9 *tVA TS-HV2230 TEMPERATURE SWITCH HONEYWELL T605A1016 HV HA 2 64 MOD-HV163B NOD, CENTRAL AREA EXHAUST DISCH DAMPERS HONEYWELL M845A1027 HV 22436 23 1 60 MOD-HV163C MOD, CENTRAL AREA EtlAUST DISCH DAMFERS HONEYWELL M845A1027 HV 22436 23 1 66 h MOD, CENTRAL AREA EXHAUST DISCH DAt1PERS HONEYWELL M845A1027 HV 22436 23 1 66  ? O* M00-HV163A Si MOO-HV135 M00, CONTROL RN AC SYSTEM HollE)WELL M845A1027 HV 6 *tVA ~_ m rn,0-HV136 MOD, C0tlTROL RM AC SYSTEM HOtIEYWELL M345A1027 HV 6 *tVA g-V W NOD-HV137 MOD, UNIT 1 RELAY RM AC SYSTEM HONEYWELL M845A1027 HV 9 *ti/A MOD-HV138 MOD, Uti1T 1 RELAY Rt1 AC SYSTEM HONEYWELL M845A1027 HV 9 atVA Og 9

               'V235               MOD, CONTROL Rt1 AC SYSTEM                                                 HONEYWELL                             M845AIC27         HV                          6                *tVA
      . ,0-HV236                   MOD, C0ti1ROL RM AC SYSTEM                                                 HONEYWELL                             M845A1027         HV                          6                *H/A MOD-HV238                    MOD, UNIT 2 RELAY RM AC SYSTEM                                             HONEYWELL                             M845A1027         HV                                9          *H/A M00-HV237                    MOD, UNIT 2 RELAY RM AC SYSTEM                                             HONEYWELL                             M845A1027         HV                                9
  • tVA SOV, VALVE FOR 2-HV-P-22A HONEYWELL HV FIELD 9 atVA

_ 50V-HV-2200A n SOV-HV-22000 SOV, VALVE FOR 2-HV-P-22B HONEYWELL HV FIELD 9 *H/A V $ SOV-HV-2200C SOV, VALVE FOR 2-HV-P-22C HONEYWELL HV FIELD 9 *tVA m TCV-HV155 TEMP CNTRL VALVE, CONTROL RM AC SYSTEN HONEYWELL 1606 HV 6 *tVA g V w TCV-HV164 TEMP CNTRL VALVE, CONTROL RM AC SYSTEM HONEYWELL 1606 HV 6 *tVA

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d/^ pJ DATE (n) 8/2 6 1 n/ t VIRGINIA ELECTRIC AttD F0WEw"dOMPAt3Y PAGE 22 n l NORTH At:HA F0WER STATI0tl UtIIT 2 O EOUret1ENT auALIr1EATI0tt t14 STER tIST # t1ANUFACTURER/ FILE SORT ORDER 12345678901234 TCV-HV166 TEMP CNtRL VALVE, UNIT 1 RELAY Rt1 AC SYS HONEYWELL 1606 HV 9 *H/A TCV-HV167 TEMP CNTRL VALVE, UNIT 1 RELAY RH AC SYS H0tlEYWELL 1606 HV 9 *N/A m TCV-HV255 TEt1P CHTRL VALVE, CONTROL RN AC SYST .t1 HONEYWELL ~600 HV 6 *N/A U 1CV *iV264 TEMP CNTRL VALVE, CONTROL RN AC SYSTEN Hot 4EYWELL 1600 HV 6 WH/A TCV-HV266 TEMP CNTRL VALVE, UNIT 2 RELAY RN AC SYS H0tlE YWE LL 1600 HV 9 *H/A TCV-HV267 TEMP CitTRL VALVE, UNIT 2 RELAY RN AC SYS HONEYWELL 1600 HV 9 *H/A TS-HV-2229 TEMPERATURE SWITCH Hot 4EYWE LL T6051A1016 HV 3 *ti/A Oe O TS-HV1968 TEMPEEATURE SWITCH, Et1ER GEN ROON 2H HONEYWELL T6051A1016 HV 9 *ti/A TT-HV1013 TRANSHITTER, CONTROL RN AC SYSTEN H0t4EYWELL C7031D1021 HV 6 *H/A Of TT-HV1014 TRANSHITTER, CONTROL RN AC SYSTEN Gr H0t!EYWELL C703101021 HV 6 *ti/A }l TT-HV1015 TRANSHITTER, UNIT 1 RELAY RN AC SYSTEN H0tlE YWE LL C703101021 HV 9 *ti/A 7 0 TT.HV1016 TRANSHITTER, UNIT 1 RELAY RN AC SYS1EN HONEYWELL C703101021 HV 9 *H/A O! _ r TT-HV155 TRANSHITTER, CONTROL RN AC SYSTEN HONEYWELL C703101021 HV 6 *H/A i o TT-HV164 TRANSHITTER, CONTROL RH AC SYSTEN HONEYWELL C703101021 HV 6

  • ti/A O

n TT-HV166 TRANSHITTER, UNIT 1 RELAY RN AC SYSTEN HOllEYWELL C703101001 HV 9 *N/A g () w TT-HV167 TRANSHITTER, UNIT 1 RELAY RN AC SYSTEN HONEYWELL C7031D1021 HV 9 *H/A TT-HV2013 TRANSNITTER, 'OHTROL RN AC SYSTEN H014EYWELL C7031D1021 HV 6 *H/A TT-HV2014 TRANSHITTER, CONTROL RH AC SYSTEN HONEYWELL C7031D1021 HV 6 *tI/A TT-HV2015 TRANSt11TTER, Ut4IT 2 RELAY RN AC SfSTEN HONEYWELL C7031D1021 HV 9 *H/A _ TT-HV2016 TRANSHITTER, UNIT 2 RELAY RN AC SYSTE!1 HONEYWELL C703101021 HV 9 *H/A TT-HV255 TRANSHITTER, CONTROL RN AC SYSTEN HONEYWELL C7031D1021 HV 6 *H/A

          ,3                                                                                                                                                                                                                                                    g bl                                                                                                                                                                                                                                                     W TT-HV264                                                   TRANSHITTER, CONTROL RN AC SYSTEN                                                         HONEYWELL                C703101021 HV                         6             *H/A f_s     TT-HV266                                                   TRANSHITTER, UNIT 2 RELAY RN AC SYSTEN                                                    HONEYWELL                C703101021 HV                                9
  • ti/A -

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7 O O DATE 8/20/81 VIPGIllIA ELECTPIC APID POWER COMPANY PAGE 23 HORTH ANNA F0WER STATICH UNIT 2 h, EQUIPt1EHT QUALIFICATION HASTER LIST h MANUFACTURER / FILE SORT O niaK HO. DESCRIPT10H t1AttuFACTUaER nooEt t40. SYS PURCH. ACCIoEHT rut >CT OPDER 12345678901234 rite eAGE e 2-QS-P-li' PUMP, QUEllCH SPRAY PUt1P IB INGER$0L-R AtiD QS 1094 35 3 *H/A 2-QS-P-1A PUNP, QUENCH SPRAY PUt1P 1A Il1GERSOL-PAttD QS 1094 3S *H/A 2-EE-SS-03 SWITCHGEAR 480V (2H1) ITE ED 1088 8 31 2-EE-ST-01 SWITCHGEAR 480V (2H1) ITE ED 1088 8 31 2-EE-SS-04 SWITCHGEAR 480V (2J1) ITE ED 1088 8 75 2-EE-ST-02 TRANSFORNER 480V (2J1) ITE ED 1088 8 75 2-EE-SS-01 SWITCHGEAR, 480 V SS BUS 2H ITE ED 1088 8 *H/A 2-EE-SS-02 SWITCHGEAR, 480 V SS EUS 2J ITE ED 1088 8 *H/A 2-EE-SW-01 SWITCHGEAR, 4 KV DUS 2H ITE ED 1079 8 *N/A 2-HV-F-71A FAH, SAFEGAURDS AREA VENTILATIOH JOY NANUFACTURING 21-1A-450 HV 1201 0 21 y E' 2-HV-F-71B FAH, SAFEGAURDS AkEA VENTILATION JOY HANUFACTURING 21-1A-450 HV 1201 0 21 7 O 2-HV-F-68B FAH, IJ SUPPLY FAH JOY t1ANUFACTURING HV 1201 1 *H/A Si. 2-HV-F-68A FAH, 1H SUPPLY FAH JOY MANUFACTURIt1G HV ' ' ',1 1 *H/A = 1-EP-MC-20 NCC-1H1-2S KLOCKHER MOELLER ED 1176 8 22 1-EP-NC-22 NCC-1J1-2S KLOCKHER MOELLER ED 1176 8 22 1-EP-MC-21 MCC-1J1-CH KLOCKHER N0ELLER ED 1176 8 22 NCC-1H1-2H 1176 8 24 O-1-EP-NC-19 2-EP-NC-19 NCC-2H1-2H KLOCKt4ER HOELLER KLOCKHER N0ELLER ED ED 1176 8 22 e 2-EP-NC-20 NCC-2H1-2S KLOCKNER HOELLER ED 1176 8 22 _ 2-EP-MC-21 NCC-2J1-2H KLOCKi1ER NOELLER ED 1176 8 22 2-EP-NC-22 NCC-2J1-2S KLOCKNER N0ELLER ED 1176 8 22 2-EP-NC-12 HCC, 2H1-1A KLOCKHER-MOELLER ED 1176 8 *H/A 2-EP-NC-11 NCC, 2J1-1 KLOCKNER-t10ELLER ED 1176 8 *H/A _ 2-EP-MC-13 NCC, 271-1A KLOCKNER-H0ELLER ED 1176 8 *H/A O e O 0- O O e 11

Wo O l'" d V - 7 DATE C/2h.a VIRGINIA ELECTRIC AND POW 1c dOMPANY PAGE 24 U g NORTH ANNA PONER STATION UNIT 2 g V EQUIPMENT GUALIFICATION MASTER LIST W MANUFACTURER / FILE SORT

      ,                            ,                                                                                                                               ORDER    12345678901234 2-EP-NC-41                   NCC. 2H1-4                                                                                                                      1176               8 Of-2-EP-NC-10                ,MCC. 2H1-1 KLOCKNER-MOELLER KLOCKt1ER-MOELLER ED ED 1176               8
                                                                                                                                                                                             *H/A
                                                                                                                                                                                             *H/A e

LAWERANCE PUMP & ENG 6X8HED-M 1538 **4/A - 2-RS-P-38 2-RS-P-3A PUMP. CASING CLG RECIRC SPRAY PUMP PUMP. CASING CLG RECIRC SPRAY PUMP LAWERANCE PUMP & ENG 6X8HDD-M RS RS 1538 35 35 *H/A e MOV-QS-201A MOV. QUENCH SPRAY PUMP DISCH LIMITORQUE REL MTR-BI QS 1242 35 23 MOV-QS-2018 MOV. QUENC1. SPPAY PUMP OISCH LIMITORQUE REL MTR-BI QS 1242 35 23 1242 23 n 0 MOV-RS-2550 MOV-RS-256A MOV. RECIRC SPRAY SUCTION MOV. RECIRC SPRAY DISCH lit 1ITORQUE lit 1ITORQUE REL MTR-BI RS REL NTR-BI RS 1042 35 35 23 e MOV-RS-256B MOV. RECIRC SPRAY DISCH LIMITORQUE REL MTR-DI RS 1242 35 23 MOV-RS-255A MOV. RECIRC SPRAY SUCTION LIMITORQUE REL MTR-DI RS 1242 35 23 ?7 I NOV-SW-205A MOV. RECIRC SPRAY HEAT EXC. HEADER DUTLET lit 1ITORQUE REL MTR-DI SW 1194 35 50 e;}T MOV-SW-201C MOV. RECIRC SPRAY HEAT EXC. HEADER INLET LIMITORQUE REL MTR-DI SW 1194 35 50 _ k O-NOV-SW-201A MCV-SW-204A MOV. RECIRC SPRAY HEAT EXC. HEADER INLET MOV. SERVICE WATER FROM RECIRC SPRAY CLR LIMITORQUE LIMITORQUE REL NTR-BI SW REL MTR-DI SW 1194 1194 35 35 50 50 e. MOV. RECIRC SPRAY HEAT tiXC. HEADER OUTLET lit 1ITORQUE 1194 35 50 O-NOV-SW-205C MOV*SW-2050 NOV. RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL MTR-BI SW REL MTR-BI SW 1194 35 50 e NOV-SW-206A MOV. RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMIl0RQUE REL MTR-BI SW 1194 35 50

0. NOV-SW-206B MOV. RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMITORQUE . REL MTR-BI SW 1194 35 50 e

g MOV-SH-205B MOV. RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL MTR-BI SW 1194 35 50 g V W _ NOV-SW-201B NOV. RECIRC SPRAY HEAT EXC. HEADER IHLET LIMITORQUE REL MTR-BI SW 1194 35 50 g NOV-SW-203B NOV, SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE REL MTR-BI SW 1194 35 50 g V W MOV-SW-201D MOV. RECIRC SPRAY HEAT EXC. HEADER IHLET LIMITORQUE REL MTR-BI SW 1194 35 50 ,- NOV-SW-2040 HOV. SERVICE WATER FPoti RECIRC SPRAY CLR LIMITORQUE LMTTRQE-DI SW 1194 35 52 ( ' _HOV-SW-% 3D MOV. SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE L.71RQE-BI SW 1194 35 52 O e

m O,m ) DATE 8/20/81 VIRGINIA ELECTRIC Att0 POWER COMPANY PAGE 25 NORTH AHilA POWER STATION UtlIT 2 C.-s EQUIPMEt4T QUALIFICATICH HASTER LIST NANUFACTURER/ FILE SORT h MARK HO. DESCRIPTION MANUFACTURER NOOEL HO. SYS PURCH. ACCIDENT FUNCT FILE ORDER 12345678901234 PAGE h NOV-SW-203A NOV, SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LHTTRQE-BI SW 1194 35 52 NOV-SW-204B NOV, SERVICE WATER FRON RECIRC SPRAY CLR LINITORQUE LNTTRQE-BI SW 1194 35 52 NOV-SW-204C NOV, SERVICE WATER FROt* PECIRC SPPAY CLR LIMITORQUE LNTTRQE-BI SW 1194 35 52 NOV-SW-203C NOV, SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LHTTRQE-BI SW 1194 35 52 MOV-SW-208A NOV. INLET HEADER VALVE LIMITORQUE REL NTR-BI SW 1194 3 53 NOV-SW-2006 NOV. IHLET HEADER VALVE LIMITORQUE REL HTR-BI SW 1194 3 53 NOV-SW-213A NOV, FUEL PIT COOLER VALVE LIMITORQUE REL HTR-BI SW 1194 3 53 O-MOV-SW-213B NOV, FUEL PIT COOLER VALVE LIMITORQUE REL MTR-Li SW 1194 3 5? e MOV-RS-200A NOV, SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE REL HTR-BI RS 1242 35 57' NOV-RS-2006 NOV, SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE REL NTR-BI RS 1242 35 ST j. c MOV-RS-201A NOV. SUPPLY VALVE CC PECIRC SPRAY LIMITORQUE REL NTR-BI RS 1042 35 57 7 O NOV-RS-201B NOV, SUPPLY VALVE CC RECIRC 3 PRAY LIMITOPQUE REL NTR-BI RS 1242 35 57 7 NOV-HV-2000 NOV, RC PURGE SYSTEN VALVE LIMITORQUE HV 1198 1 59 b3 NOV, RC PURGE SYSTEN EXHAUST h. NOV-HV-200D LIMITORQUE HV 1198 1 59 NOV-HV-201 NOV, RC PURCE SYSTEN BYPASS 1198 59 n u NOV-HV200A NOV, C3HTAINNENT SUPPLY LIMITORQUE LIMITORQUE HV REL HTR-BI HV 198 1 1 65 o NOV-HV200C NOV, CONTAINNENT PURSE REL NTR-BI HV 198 65 0 MOV-SH-210A NOV, RECIRC, AIR COOLINC COILS LIMITORQUE LIMITORQUE LHTTRQE-BI SW 1194 1 3 73 e NOV-SW-214B NOV, RECIRC. AIR COOLING COILS LINITORQUE LNTTRQE-BI SW 1194 3 73 _ NOV-SW-214A NOV, RECIRC. AIR COOLItlG COILS LIN1 TORQUE LNTTRQE-BI SW 1194 3 73 NOV-SW-210B NOV, REC 1RC. AIR COOLING COILS LIMITORQUE LHTTRQE-BI SW 1194 3 73 dg h NOV-QS-200A NOV, REFUELING WATER STORAGE TANK lit 11 TORQUE REL NTR-BI QS 1242 35 74 , NOV-QS-200D NOV, RU UELIllG WATER STORAGE TANK LIMITORQUE REL NTR-BI QS 1242 35 74 NOV-2860A NOV, L.'SI PUNP SUCTION LIMITOR9Un REL-RH IN3 SI 1010 23 5 WOS O e 9 O 9 e o,il

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U DATE C/2 w d VIRGINIA ELECTRIC Att0 POWir40NPANY PAGE 26 V NCRTH At;HA POWER STATI0t4 UNIT 2 O eQuIenENT QUALIrICATION nASTER L1ST NANUFACTURER/ FILE SORT o ORDER 12345678901234 n NOV-2860B NOV, LHSI PUNP SUCTION LIMITORQUE REL-RH INS SI 1010 23 5 WO5 U* NOV-2885A NOV, LHSI RECIRC VALVE LINITORQUE REL-RH INS SI 1010 23 5 WOS h NOV-?8850 NOV, LHSI RECIRC VALVE LIMITORQUE REL-RH INS SI 1010 23 5 WOS NOV-2380 NOV, RCP SEALWATER RETURN LIMITORQUE 1010 1 5 WO6 NOV-2890A NOV, LHS! LINE STOP VALVE LIMITORQUE E LTRC L-HI SI 1010 23 5 WOS NOV-28908 NOV, LHSI LINE STOP VALVE LINITORQUE REL HTR-BI SI 1010 23 5 WOS NOV-2862B NOV, LHS1 PUNP SUCTICH LINITORQUE PEERLSS-BI SI 1010 23 5 Wil 10V-2862A NOV, LHSI PUNP SUCTION LINITORQUE PE ER LSS-BI SI 1010 23 5 W11 NOV-28638 NOV, LHSI DISCH VALVE lit 1ITORQUE REL HTR-BI SI 1010 23 5 W14 NOV-2363A NOV, LHSI DISCH VALVE LIMITORQUE REL NTR-BI SI 1010 23 5 W14  % C HOV-2864A NOV, LHSI DISCH VALVE LINITORQUE PEERLSS-BI SI 1010 23 5 W15 g7 V Wj NOV-2864B UOV, LHSI DISCH VALVE LINITORQUE PEERLSS-BI SI 1010 23 5 WIS NOV-2115C NOV, CHARGING PUNP SUCT. FRON VCT LIMITORQUE PEL NTR-DI CH 1010 23 5 W16 6 NOV-2350 NOV, ENERGENCY BOPATION LIMITORQUE REL NTR-BI CH 1010 23 5 W17 NOV-2267B NOV, LHSI TO CHARGING PUNP LIMITORQUE REL HTR-BI CH 1010 23 5 W18 HOV-22698 f TOV. LHST & VCT TO CHARGING PUNP LIMITORQUE REL HTR 83I CH 1010 23 5 W18 NOV-22700 NOV, LHSI & VCT TO CHARGING PUMP LIMITORQUE REL NTR-BI CH 1010 23 5 WIS NOV-2370 NOV, CHARGING FUNP TO SEAL HATER RECIRC. LIMITORQUE REL NTR-BI CH 1010 23 5 W18 NOV . '3 NOV, CHARGING f*NP TO RECIRC. SV LINITORQUE REL NTR-BI CH 1010 23 5 W18 _NOV-2869A NOV, CHARGING PUNP SI STOP VALVE LIMITORQUE "5L HTR-BI SI 1010 23 5 W18 NOV-28698 NOV, CHARGING PUNP SI STOP VALVE LIMITORQUE REL NTR-BI SI 1010 23 5 W18 O NOV-2286C HOV, CHARGING PUNP OISCH. LINITORQUE REL NTR-BI CH 1010 23 5 W19 e NOV-2286A NOV, CHARGING PUNP DISCH. LINITORQUE REL NTR-BI CH 1010 23 5 W19 O, 9-_.' NOV-2286B NOV, CHARGING PUNP DISCH. LIMITORQUE REL NTR-BI CH 1010 23 5 W19 O e O g e

     - tru pm rh DATE C/20/G1                                                         VIPGIt4IA ELECTRIC AND POWER COMPANY                                                ,  PAGE 27 NORTH AtlNA POWER STATION Ut4IT 2 f.s O                                                                               EQUIPMENT QUALIFICATION NASTER LIST NANUFACTURER/ FILE SORT h
           ---.------------------------------------- -----------------------------------------------------------------~~--------------- -------

MARK No. DESCRIPTION MANUFACTURER NODEL NO. SYS PURCH. ACCIDENT FUNCT FIL OPDER 12345678901234 PAGE h

           ------------- ---.----------------------------------~~. -------------------- ---------- --- ------ -------------- ---.                                         ----

NOV-2287C MOV, CHARGING PUMP STOP VALVE LIMITORQUE REL NTR-DI CH 1010 23 5 W11 MOV-2287A NOV, CHARGING PUMP STOP VALVE LIMITOPQUE REL NTR-BI CH 1010 23 5 W19

 .        NOV-2287B             NOV, CHARGING PUNP STOP VALVE                                 LIMITORQUE                    REL NTR-BI CH    1010    23 5            W19 MOV-2267A             *t0V , LHSI TO CHARGING PUMP                                  lit 11 TORQUE                 REL NTR-BI CH    1010    23 5            H21

- NOV-2269A HOV, LHSI & VCT TO CHARGING PUMP LIMITORQUE REL NTR-BI CH 1010 23 5 W21 ( REL NTR-BI CH 1010 h NOV-2270A NOV, LHSI & VCT TO CHARGING PUMP lit 1ITORQUE 23 5 W21

 .-       NOV-2289B             NOV, CHARGING PUNP DISCH.                                     LIMITORQUE                    REL NTR-BI CH    1010    ~ 1 :,          W21 NOV-2289A             T10V, CHARGING PUMP OISCH.                                    LIMITORQUE                    REL HTR-BI CH    1010    23 5            W21 MOV-2115B            tt0V, CHARGING PUMP SUC FROM RWST                             LIMITORQUE                    REL NTR-BI CH    1010    23 5     1      W22 NOV-21159            NOV, CHARGING PUNP SUC FRON RWST                              LIMITORQUE                    REL NTR-BI CH    1010    23 5     1      W22            7 c

NOV-2867C MOV, CHARGING PUMP STOP VALVE lit 11 TORQUE PEERLSS-BI SI 1010 23 5 W24 2 b3 hj NOV-2867D MGV, CHARGING PUttP STOP VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 W25 NOV-28678 NOV, CHARGING PUNP STOP VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 W25 Qf. - Or NOV-2867A NOV, CHARGING PUMP STOP VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 H25 g NOV-2C65A NOV, ACCUMULATOR TANK 1 COLD LEG LIMITORQUE SI 1010 23 5 W28 s G NOV-2865B M W, ACCUt10LATOR TANK ' COLD LEG, LIMITORQUE SI 1010 23 5 W28 s NOV-2865C NOV, ACCUMULATOR TANK 3 COL LEG LIMITORQUE SI 1010 23 5 W28

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Mov24 6 NOV, COLD LEG CIRC VALVE LIMITORQUE SI 1010 23 5 W29 MOV-2275C NOV, CHARGING PUMP TO RECIRC. SV LIMIIORQUE REL NTR-BI CH 1010 23 5 W34 _ MOV-2275A NOV, CHARGING PUttP TO RECIRC. SV LIMITORQUE REL NTR-BI CH 1010 23 5 W34 e NOV-2381 NOV, SEAL WATER RETURN SV LIMITORQUE REL NTR-DI CH 1010 23 5 W35 N0Y-2115E HOV, CHARGING PUNP SUCT. FROM VCT LIMITORQUE REL NTR-BI CH 1010 23 5 W36

f. NOV-22758 MOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE REL NTR-BI CH 1010 23 5 437 g

( W _ HOV-2885C NOV, LHSI RECIRC TO CHARGING PUMP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W38 O # K .- _ .--- - _ -. . _

O' C\ f (% O DATE 6/2. VIRGINIA ELECTRIC AND POW - IOt'PSNT PAGE 28 NORTH AtatlA F0WER STATION UNIT 2 p) ( EQUIPMEPT QUALIFICATION MASTER LIST h NANUFACTURER/ FILE SORT ORDER 12345678901234 .

       -w    NOV-28850                                                             NOV, LHSI RECIRC TO CHARGING PUNP VALVE                    lit 1ITORQUE             PEERLSS-DI SI      1010               23 5          W38 N)

NOV-2890C NOV, CHARGING PUNP SUCT. FROM VCT LIMITORQUE REL NTR-BI SI 1010 23 b W39 h fs NOV-28900 NOV, LHSI LINE STOP VALVE LIMITOMUE REL NTR-BI SI 1010 23 5 W39 0 NOV-FN-2000 NOV. AUX STEAN GEH FD PP DISCH LIMITORQUE FW 1125 57 *H/A 9 s NOV-FW-200A NOV, AUX STEAN GEN FD PP OISCH LIttITORQUE FW 1125 57 *H/A NOV, AUX STEAN GEN FD PP DISCH VV h NOV-FW-200C lit 11 TORQUE FW 1125 57 *H/A NOV-QS-202I NOV, RF WATER CHEN. ADD TAHK LIMITORQUE QS 1181 35 *H/A NOV-QS-202B NOV, RF WATER CHEN ADD TAHK LIMITORQUE QS 1181 35 *N/A NOV-SW-100A t10V, SW PETURN TO RERVOIR ISOLATION LIMITORQUE SW 194 23 5 *H/A O-t',DV-SH-115B NOV. AUX SW PUNP 110 VALVE LIMITORQUE SW 19'+ 23 5 *H/A or) NOV-SW-117 HOV, CIRC WTR SW PUNP ISOLATION LINITORQUE. SW 194 23 5 *H/A T O es HOV-SH-118 t10V, CIRC WTR IHTAKE TO SW PUNP LIMITORQUE SW 194 f.3 5 *H/A MOV-SW-119 NOV, MAKE-UP ISOLATION LINITORQUE SW 194 23 5 *H/A Oc e, MOV-SW-115A NOV. AUX SW PUNP ISO VALVE LIMITORQUE SW 194 23 5 *H/A NOV-SW-1148 NOV, RECIRC. AIR COOLING COILS LIMITORQUE SW 194 3 *H/A NOV-SW-100B NOV, SW RETURH TO RERVOIR ISOLATION LIMITORQUE SW 194 23 5 *N/A NOV-SW-110A NOV, RECIRC. AIR COOLING COILS' LIMITORQUE SW 194 3 *H/A NOV-SW-110B NOV, RECIRC. AIR COOLING COILS LIMITORQUE SW 194 3 *H/A g.g NOV-SW-114A NOV, RECIRC. AIR COOLING COILS LIMITORQUE SW 194 3 *H/A (/ _ NOV-SW-200A NOV. SW RETURN TO RESERVOIR ISOLATION LIMITORQUE SW 1194 23 5 *H/A NOV-SH-220A NOV SW TO CIRC TUNNEL LINITORQUE SW 1194 3 *H/A NOV-SW-2000 NOV, SW RETURH TO RESERVOIR ISOLATION LIMITORQUE SW 1194 23 5 *H/A NOV-SW-220e MOV, SW TO CIRC TUNNEL LIMITORQUE SW 1194 3 *H/A .- U ' _ NOV-SH-215A NOV. AUX SW PUNP ISO VALVE LIMITCRQUE SW 1194 23 5 *H/A O e og e

O O DATE 8/20/81 VIRGINI A ELECTRIC At40 POWER COMPANY PAGE 29 f40RTH ANNA FO.JER STATION UtlIT 2 O tQu1PfiEnr QUALIrICir10N nASTER tIST 4 NAtCFACTURER/ FILE SORT ORDER 12345678901234 NOV-SW-217 410V, CIPC WTR SW PUMP ISOLAflota LIMITC7QUE SW 1194 23 5 *H/A O. MOV-SW-219 LIMITORQUE SW 1194 23 5 *ta/A 9

                               , MOV, MAKE-UP ISOLATION MOV-SW-215B                   MOV. AUX SW PUMP ISd VALVE                                                         LIMITORQUE                                  SW   1194    23 5                    *ti/A 2-SW-S-1A                     STRAINER, SW TRAVELING. WATER SCPEENS                                              LINK DELT Co.                               SW   l058    23 5                    *N/A 2-SW-S-1B                     STRAINER, SW TRAVELIllG WATER SCREENS                                              LINK DELT CO.                               SW   1058    23 5                    *N/A T3                             TERMINAL BLOCKS                                                            ,

MANY tt/A HA 9 32 2-SW-P-5 PUMP, RADIATION NONITOR a MARATH0H ELECT. 8H56T17051 SW 1083 4 41 us BM56T17D51 SW 1083 4 9 2-SW-P-6 PUMP, R\DIATION MONITOR MARATHON ELECT. 41 2-SH-P-7 PUMP, RADIATIDH MONITOR MARATH0H ELECT. 8H56T17D51 SW 1083 4 41 2-SW-P-8 PUMP, PADIATION MONITOR MARAluOH ELECT. 56T17D516 SW 1083 4 41  % I rw ZS-DA203B POSITION SWITCH. AUX BLOG TO CNT SUMP PMP HAMCO EA-180 DA 35085 1 T09 " d j ZS-0A203A POSITION SWITCH, AUX BLDG TO CNT SUMP PMP HAMCO EA-180 DA 35085 1 T09 7 ZS-HC-2048-1 LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180 1302 HC 35085 1 T23 = ZS-HC-205A-1 LIMIT SWITCH, HYDROGEN CONTROL NANCO E180-11302 HC 35085 1 T23 f ZS-HC-2058-1 LIMIT SWITCH, HYDROCrH CONTROL HAMCO E180-11302 HC 35085 1 T23 ZS-HC-204B-2 LIMIT SWITCH, HYDR (GEH CONTROL HANCO E180-11302 HC 35085 1 T23 g ZS-HC-205A-2 LIMIT SWITCH, HYDROGEN COHTROL NAMCO E180-11302 HC 35085 1 T23 ,g v w ZS-HC-206B-2 LIMIT SWITCH, HYDROGEN CONTROL NAMCO E180-11302 HC 35085 1 T23 ZS-HC-207B-1 LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 T23 _ ZS-HC-206A-2 LIMIT SWITCH, HYDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 rw ZS-HC-206B-1' LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 123 O ~

  ~ ZS-HC-207A-1'                  LIMIT SWITCH, HYDROGEN CONTROL                                                    NAMCO      ,                  E180-11302 HC      35085 1                           T23 ZS-HC-          4A-2          FIMIT SWITCH, HYDROGEN CONTROL                                                    HANCO                         E180-11302 HC      35085 1                           T23 ZS-HC-207B-2                  LIMIT SWITCH, HYDROGEH CONTROL                                                    HAMCO                         E180-11302 HC      35085 1                           T'3 O                                                                             ,

9

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   %                                                                                                                                                                                                                                                                                                                                                                       s DATE C/2L_,i                                                                                                                                                                    VIRGINI A ELECTRIC AND POWh-dOMPAtif                                                                                           PAGE 30 e                                                                                                                                                                                                     NORTH Atil3A POWER STATION UNIT 2 EQUIPMENT QUALIFICATION MASTER LIST                                                                                                                                              h MANUFACTURER / FILE SORT g

V MARK t10. DESCRIPTION MAttUFACTURER MODEL HO. SYS PURCH. ACCaDENT FUNCT FILE PAGE w OPDER 12345678901234 ZS-HC-204A-1 LIMIT SWITCH, HYDRGJEH CONTROL tlANCO E180-11302 HC 35085 1 T23 O- O ZS-HC-206A-1 LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 T23 ZS-HC-2050-t LIMIT SWITCH, HYDROGEN CONTROL . HAMCO E180-11302 HC 35085 1 T23 ZS-HC-207A-2 LIMIT SWITCH, HYDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 fm HCV-22000 lit 1J SWITCH, REGEH. HEAT OUTLET tlAMCO EA-180 CH 1010 1 WO4 U h HCV-2200C LIMIT SWITCH, REGEH. HEAT OUTLET , HAMCO EA-180 CH 1010 1 WO4 HCV-2200A LIMIT SWITCH, REGEN. HEAT OUTLET dAMCO EA-180 CH 1010 1 LO4 HCV-FN-200A LIMIT SWITCH, FW CONTROL TO STEAM GEtt 1A HAMCO (W 1125 57 *H/A e HCV-FN-2C0C LIMIT SWITCH, FW COHIROL TO STEAM GEH IC HAMCO FW 3125 57 *H/A Gr HCV-FW-200B LIMIT SWITCH, FW C @ TROL TO STEAM GEN 1B HAMCO FW 1125 57 *H/A h I LCV-2460B LCV, LOOP 2 LETDOWH LINE CONT. VV HANCO EA-180 CI 1 *ti/A LCV-2460A LCV, LOOP 1 LETDOW1 LINE cot 4T. VV HAMCO EA-180 CH 1 *H/A ZS-FW159A POSITION SWITCH, LIMIT SWITCH HAMCO 02400X FW 4 *H/A = ZS-FW159B POSITION SWITCH, LIMIT SWITCH HAMCO D2400X FW 4 *H/A e ZS-FW2008 POSITION SWITCH, .IMIT SWITCH HAMCO D2400X (W ^ *H/A 'N ZS-FW200C POSITICH SWITCH, LIMIT SWITCH HANCO D2400X FW 4 *H/A h ZS-FW200A POSIT 40H SWITCH, LIMIT SWITCH NANCO D2400X FW 4 *H/4 , NGA-20 CABLE, 1/C 250 MCN OKONITE NE0/ETH/PR ED 1128 8 06 g HGA-21 CABLE, 1/C 2/0 AWG. OKONITE HE0/ETH/PR ED 1128 8 06

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_ HGB-15 CABLE, TRIPLEX #4 AMG OkONITE HEO/ETH/PR ED 1128 8 06 HCB-16 CABLE, TRIPLEX #6 AWG OKOHITE NE0/ETH/PR ED 1128 0 06 NGB-17 CABLE, 3/C #8 AWG CK0HITE NE0/ETH/PR ED 1128 8 06 HOD-18 CABLE, 3/C #10 AWG OKONITE NED/ETH/PR ED 1128 8 06 - 8 MGB-19 CABLE, 3/C #12 AWG OKONITE NE0/ETH/PR ED 1128 26 O h

DATE 6/20/81 VIPGIllI A ELECTRIC AtlD POWER COMPAt4Y PAGE 31 Il0RTH Atit4A POWER STATI0t1 UNIT 2 bf. EQUIPMENT QUALIFICATI0t1 NASTER LIST h t1AlfUFACTURER/F ILE SORT ORDER 123456789012Ie FGA-13 CABLE, 3/C 4/0 AWG - OKONITE ED 1375 8 11 ffGA-14 CABLE, TRIPLEX 4/0 AWG OE0tlITE ED 1375 8 11 HGA-3 CABLE, TRIPLEX 1000 NCH OVONITE ED 1375 8 11 t:GA-4 CABLE, 3/C 500 NCH OKONITE ED 1375 8 11 HGB-11 CADLE, TRIPLEX 2/0 AWG OKOHITE NEO/ETH/PR ED 1384 8 12 NGB-12 CABLE, TRIPLEX #1 AWG OKONITE HEO/ETH/PR ED 1384 8 12 NGB-5 CADLE, TRIPLEX 500 NCH OK0t1ITE HEO/ETit/PR ED 1384 8 12 tGB-7 CABLE, TRIPLEX 250 NCH OKot1ITE tr.0/ETH/PR ED 1384 8 12 NGB-01 CABLE, 2/C #10 AWG OKOHi1E HYP XL PLY ED 1404 8 lu TT TERMINATIOtt TAPE OKOHITE HA tlA 9 33 1 c-SPLICES RAVCHEN WCSF/H COA N/A NA 9 34 i O- SP , ei Tti TERMINATIONS PAYCHEN HVT/HVt1C H/A N/A 9 39 7 NOV-HV-215-2 NOV, FLUSH VALVE RIGHT FOR STRAINER NYNot1D C0tiTROLS 9170K32 HV 1299 6 17 - NOV-HV-216-1 NOV, FLUSH VALVE LEFT FOR STRAINER RAYNONO CONTROLS 9170K32 HV 1299 6 17 NOV-HV-215-1 NOV, FLUSH VALVE LEFT FOR STRAINER RAYNOND CONTROLS 9170K32 HV 1299 6 17 t10V-HV-216-2 NOV, FLUSH VALVE RIGHT FOR STRAINER RAYNot3D CONTROLS 9170K32 HV 1299 6 17 1-HC-HC-1 HYDROGEtt RECOMBINER ROCFWELL IHT. 5DFC HC 1365 35 43 2-HC-HC-1 HYDROGEN REC 0t1BINER ROCKWELL IHT. 7404S HC 1365 35 43 FT-2474 TRANSt:ITTER. STEAN GEH. FLOW ROSEt10UNT 2DP6A93DP NS 1486 23 5 35 _ FT-2475 TRANSHITTER, STEAN GEN. FLOW ROSEt100NT 2DP6A93DP HS 1486 23 5 35 FT-2484 TRAttSHITTER, STEAt1 GEH. FLOW POSEN0Ut4T 2DP6A93DP NS 1486 23 5 35 FT-2485 TRANSNITTER STEAN GEN. FLOW ROSENOUNT 2DP6A930P HS 1486 23 5 35 FT-2494 TRANSNITTER STEAM GEH. FLOW ROSEN0UtlT 2DP6A93DP NS 1486 23 5 35 _FT-2495 TPAHSHITTER STEAN GEN. FLOW ROSENOUNT 2DP6A93DP NS 1486 23 5 35 O e O O O e o 11

                                                                                                                                                                                                                                          /

Urn n p p b] DATE 8/2E VIRG1HI A ELECTRIC AtiO PO!b--dOMPAtti PAGE 32 NORTH ANilA PCWER STATIOtt Ut41T 2 EQUIPMENT QUALIFICATION MASTER LIST MANUFACTURER / FILE SORT h ORDER 12345678901234 TE-AN-215 AMBIENT TEMP. Mot 4ITOR SERV. BLbG. POSEt10UNT 78-81-17 AN 1363 7 47 0-TE-AN-217B AM01ENT TEMP. t10t1ITOR SERV. BLOG. POSEMOUNT 78-81-17 AN 1363 7 47 h gs TE-AM-217A AMBIENT TEt1P. MONITOR SERV. BLDG. ROSEMOUHT 78-81-17 AN 1363 7 47 TE-AN-217C AMBIENT TEttP. MONITOR SERV. LLDG. POSEMOUNT 78-81-17 AN 1363 7 47 h g TE-AN-217D AMBIENT TE*1P. MOHITOR SERV. BLDG. ROSEMOUNT 78-81-17 AN 1363 7 47 0 TE-AN-21o AMBIENT TEMP. ft0NITOR SERV. BLOG. POSEMOUtiT 78-81-17 AM 1363 7 47 h LT-2475 TRANSMITTER, STEAN Gell. LEVEL POSEMOUNT 2DP4A92PB FW 1486 5 54 0f-LT-2484 TRAtlSMITTER, STEAN GEN. LEVEL ROSEMOUNT 2nP4A92PB FW 1486 5 54 h e LT-2485 TRANSMITTER, STEAN GEH. LEVEL ROSEMOUNT 2DP4A9208 FW 1486 5 54 LT-2496 TRANSHITTER, STEAN GEN. LEVEL ROSEt10UNT 2054A92PB FW 1486 5 54 h?;

C g LT-2474 TRANSMITTER, STEAM GEH. LEVEL ROSEMOUt4T 2DP4A92PB FW 1486 5 71 7

( i LT-2476 TRANSMITTER STEAN GEN. LEVEL ROSECUNT 2DP4A92PB FW 1486 5 71 _ a e LT-2486 TRAf4SNITTER, STEAN Gell. LEVEL ROSEt10UNT 2DP4A92PB FW 1486 5 71 LT-2494 TRANSMITTER, STEAN GEN. LEVEL ROSEMOUNT 2DP4A92PB FW 1486 5 71 h-LT-2495 TRANSMITTER, STEAN GEN. LEVEL ROSEMOUNT 2DP4A?2PB FW 1486 5 71 f-- V TT-AM-100B AND_ENT TEMPERATURE MONITORS ROSEMOUNT 76-81-17 AH 1363 8 72 h TE-AM-105B AMOIENT TEMPERATURE t10HITORS ROSEMOUNT 78-81-17 AN 1363 6 72 TE-AM-103A AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 q TE-AN-102B AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 o AMBIENT TEMPERATURE N0t41 TORS POSEMOUNT 78-81-17 AN 1363 8 72 h _TE-AN-107A

  .      TE-AN-1030                         AMBIENT TEMPERATURE MOHITORS                                                                   POSEMOUNT               78-81-17          AN  1363                 8                 72 TE-AN-105A                          AMBIENT TEMPERATURE MONITORS ROSEMOUNT               78-81-17          AN  1363                 8                 72 h

TE-AM-106A AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 _ _TE-AN-104B AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 At1 1363 8 72

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UVW- ' O , O DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPAt4Y PAGE 33 NORTH ANtlA F0HER STATION UNIT 2 O E=1rnEHr cuiurICATION MASTER uST MANUFACTURER / FILE SORT e

        ,                                                                                                                                                                ORDER 12345679901234 TE-AN-107B                      AMBIENT TEMPERATURE tt0HITORS                                                   ROSEt10UNT              78-81-17              AN 1363           8              72 TE-AN-104A                   . AMBIENT TEMPERATURE MONITORS                                                     ROSEMOUNT               78-81-17              AN 1363           8              72 TE-AN-101B                       AMBIENT TEMPERATUPE tiottITORS                                                 ROSEtt0VHT              78-81-17              AN 1363           8              72 TE-AN-108A                      ArtBIENT TEMPERATURE NottITORS                                                  ROSEtt0UNT              E7995/B               AH 1363           8              72 ROSEMOUtti                                    AN 1363           8              72 O.

TE-AM-loob TE-AN-10eB AMBIENT TEMPERATURE F10t4ITORS AMBIENT TEMPERATURE NOHITORS ROSEtt00HT 78-81-17 E7995/B AN 1363 8 72 e TE-AN-100A At1BIENT TEMPER ATURE M0tilTORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AM-101A AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AM 1363 8 72 s TE-AM-102A AMBIENT TEttPERATURE MONITORS ROSEtt0UNT 78-81-17 AN 1363 6 72

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TE-24128 RTD, RCS HARROW RANGE ROSEMOUNT 176KF RC 1010 1 345 W12 1 E

   -     TE-24120                         RTO, RCS HARROW RANGE                                                          ROSEtt0UNT             176KF                 RC 1010  1 345                  W12          7
                                                                                                                                                                                                                   )

TE-2422B RTD, RCS HARROW RANGE ROSEMOUNT 176KF RC 1010 1 345 W12 _ A TE-24220 , RID, RCS NAPROW RANGE ROSEMOUt4T 176KF RC 1010 1 345 W12 ,, TE-2432B RTD, RCS HARROW rat 4GE ROSEHOUNT 176KF RC 1010 1 345 W12 m TE-2432D RTD, RCS t1 ARROW RANGE ROSEMOUNT 176KF RC 1010 1 345 W12 U 1010 5 h TE-2410 RTD, RCS WIDE RAttGE ROSEMOUNT 176KS RC W27 TE-2413 RTD, RCS WIDE RANGE ROSEt10UtiT 176KS RC 1010 4 W27 TE-2420 RTD, RCS WIDE rat 1GE DOSEt10UNT + 176KS RC 1010 4 W27 TE-2423 RTD, RCS WIDE RANGE ROSEt10UNT 176KS RC 1010 4 W27 _TE-2430 RTD, RCS WIDE RAttGE ROSEMOUNT 176KS RC 1010 4 H27 TE-2433 RTD, RCS WIDE RANGE ROSEMOUNT 176KS RO 1010 4 W27 YY-VMS200A-2 LINE DM ER, PZR SAFETY VALVE POSITION Ut4HOLTZ-DICKIE 22CA-ZTR RC 1605 4 TOS YY-VMS200B-1 LINE DRIVER, PZR SAFETY VALVE POSIT 10ti UtfHOLTZ-DICKIE 22CA-ZTR RC 1605 4 TOS _ YY-VHS200C-1 LINE DRIVER, PZR SAFETY VALVE POSIT 10t1 Ut1HOLTZ-DICKIE 22CA-ZTR RC 1605 4 TOS t O e a-O O O e

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                                                                                                                                                                                                                        ?

H?-XCV-1423A SOV, C0tti ATMOS Si1PL FRot1 CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 . N2-XCV-1402B SOV, CONT ATMOS SMPL FROM CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 H2-XCV-1402A SOV, CONT ATMOS St1PL FRON C0 tit - C0 fit ISO VALCOR V526568319 SS 34670 1 T12 H2-XCV-1423B SOV, CONT ATMOS St1PL FROM CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 TV-SS-202B SOV, PRIt1ARY COOLANT COLD LEG COHT ISO VALCOR V526568319 SS 34670 1 T12 SOV, RHR OUTBOARD CONTAINNENT ISOLATION O TV-SS-203B VALCOR V526568319 SS 34670 1 T12 TV-SS-206B SOV, PRIMARY COOLANT HOT LEG CONT ISO VALCOR V526568319 SS 34670 1 T12 _ TT-SS-207A SOV, RHR CUTLET SAMPLING CotiT ISO VALCOR V526568319 SS 34670 4 T13 TT-SS-207B SOV, RHR IHLET SAMPLING CONT ISO VALCOR V526568319 SS 34670 4 T14 dc TV-HC-2028 SOV, HYDROGEH ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 9 g .g TV-HC-201B SOV, HYDROGEH ANALYZER SYSTEM VALCOR V526529531 NC 34670 T20 V ' _ TV-HC-200A SOV, HYOROGEH ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 O e

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tru I $v \ , DATE 8/20/81 VIRGINI A ELECTRIC AND POWER COMPAt1Y PAGE 35 m t10RTH AtINA POWER STATION UtfIT 2 O EQUIPi1ENT CUALIFICATIOtl NASTER LIST h NAt3UFACTURER/ FILE SORT o ORDER 1234567e901234 TV-HC-203A SOV, HYDROGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 TV-HC-202A SOV, HYDROGEH ANALYZER SYSTEN VALCOR V506529331 HC 34670 T20 TV-HC-2038 SOV, NYDROGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 0-TV-HC-201A SOV, HYDHOGEH ANALYZER SYSTEN VALCOR V526529531 HC 34670 T20 9 TV-HC-2008 SOV, HYDROGEH ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 0, 0 2-HV-E-4A CHILLER, CONTROL AND RELAY ROON WESTINGHOUSE PC088W10 HV 1247 6 01 2-HV-E-4B CHILLER, CONTROL AND RELAY ROOM WESTINGHOUSE PC089W10 HV 1247 6 01 2-HV-E-4C CHILLER, CONTROL AND RELAY ROON WESTINGHOUSE PC088W10 HV 1247 6 01 1-HV-F-6A FAH, AUX BLDG EXHAUST WESTINGHOUSE TAAN HV NUS-71 23 1 45 1-HV-F-0B FAH, AUX BLOG EXHAUST WESTINGHOUSE TAAN HV HUS-71 23 1 45 - C 1-HV-F-8C FAH, AUX BLDG EXHAUST WESTINGHOUSE TAAN HV NUS-71 23 1 45 7 b 2-SI-P-1A RUMP, LOW HEAD SAFETY INJECTION WESTINGHOUSE ABDP SI 1010 2 5 W13 _ 2-SI-P-1B PUMP, LOW HEAD SAFETY INJECTION WESTINGHOUSE ARDP SI 1010 2 5 W13 O, 2-CH-P-1C PUMP, CHARGING (HHSI) WESTINGHOUSE CH 1010 2 5 N20 O. 2-CH-P-1B PUMP, CH ARGING (HHSI) WESTINGHOUSE CH 1010 2 5 W20 Qe 9 2-CH-P-1A PUMP, CHARGING (HHSI) WESTINGHOUSE CH 1010 2 5 N20 RN-SH-226 RADIATIOtl NOHITORS, SW RAD NOHITORS WESTINGHOUSE 1655 SW 1200 4 *H/A RN-SW-225 RADIATION NOHITORS, SW RAD N0HITORS WESTINGHOUSE 1655 SW 1200 4 *H/A PM-SW-224 RADIATION MOHITORS, SW RAD N0HITORS WESTINGHOUSE 1655 SW 1200 4 *H/A _ RN-SH-227 RADIATION NONITORS, SW RAD N0HITORS WESTINGHOUSE 1655 SW 1200 4 *N/A ,-S 1-SW-P-1A PUMP, SW PUMP MOTOR A WESTINGHOUSE SW 1059 23 5 *H/A g V W 1-SW-P-1B PUMP, SW PUMP MOTOR B WESTINGHOUSE SW 1059 23 5 *H/A 1-SW-P-4 PUMP, AUX SERVICE WATER PUMP WESTINGHOUSE SW 1059 23 5 *H/A 1-SW-S-1B STRAINER, SW TRAVELING WATER SCREENS WESTINGHOUSE SW 1058 23 5 *H/A O e o m O O O e 11

n" O DATE C/2 w i n O VIRGPII A ELECTRIC AND POwin-40MPAtlY PAGE 4 ('~') tl0RTH AtitlA PONER STATIC:, '94IT 2 (q> EQUIPMENT CUALIFICATIOtt NASTER LIST g W MANUFACTURER / FILE SORT OPDER 12345678901234 1-SW-S-1A  !)RAINER, SW TRAVELING WATER SCREENS 1058

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2-EI-CB-52 CABINET, PROCESS RACK 2 WESTINGHOUSE WESTINGHOUSE SW ED 1010 23 5 133

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O O DATE 8/20/81 VIRGINIA ELECTRIC At1D POWER COMPAtlY PAGE 37 tt0RTH At1NA POWER STATION Ut1IT 2 O EculPnEnI cuatIrICATION NASTER LIST NANUFACTURER/ FILE SORT e ORDER 12345678901234 . 2-EI-CB-06B CABIt1ET, AUX SHUTDOWN PAtlEL WOLFE & NAt1H ED 1307 2345 *H/A 2-EI-CB-02 CABINET, NA1H COtiTROL E0ARD WOLFE & NANtl ED 1226 2345 *N/A 2-EI-CB-08A CAB 1tiET, ENER GEN 2H C0;. TROL PANEL WOLFE & NAttti ED 1307 8

  • t1/A 2-EI-CB-03 CABINET, NAIN CONTROL BOARD WOLFE & NANN ED 1226 2345 *N/A 2-EI-CD-05 CABItlET, NAIN CollTROL 00ARD WOLFE 8 Natal ED 1226 2345 *H/A 2-EI-CB-07 CABINET, VENTILATION CONTROL BOARD WOLFE A MANtl ED 1307 6 9 *N/A 2-EI-CD-085 CABINET, ENER GEN 2H CONTROL PANEL WOLF E & NAint ED 1307 8
  • ti/A 2-EI-CB-06A CABINET, AUX SHUTDOWN PANEL WOLFE & NANN ED 1307 2345 *N/A O 872 RECOPDs PRINTtD er E.

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DATE O/20/81 VIRGINIA ELECTRIC At4D POWER COMPAt4Y PAGE 1 NORTH AN!4A POWER STATION UNIT 2 O Eau 1Pt<ENT auAtIr1 CAT 10t> MiSTEa LIST SYSTEN/ FILE SORT e O MARK NO. DESCRIPTIOtt MANUFACTURER MODEL t40. SYS PURCH. ORDER ACCIDENT FUNCT FILE 12345678901234 PAGE h MOV-2380 NOV, RCP SEALWATER RETURtl LIMITORaUE 1010 1 5 WO6 EP HCV2186 E/P FOR HANO cot 4TPOL VALVE HCV-2186 FISHER 546 W31 2-EI-CD-4vA CABINET, AUXILIARY RELAY WESTINGHOUSE *H/A 2-EI-CB-4e8 CABINET, AUXILIARY RELAY WESTINGHOUSE *H/A 2-EI-CB-64A CABINET, SOLID STATE PROT AUX RELAY RACK WESTINGHOUSE *N/A 2-EI-CB-64B CABINET, SOLID STATE PROT AUX RELAY RACK WESTINGHOUSE *N/A TE-AM-215 AMBIENT TEMP. WHITOR SERV. BLDG. ROSEMOUNT 78-81-17 AN 1363 7 47 TE-AN-216 AMBIENT TEMP. MONITOR SERV. BLDG. ROSENCUNT 78-81-17 AN 1363 7 47 TE-AN-217A AMBIENT TEMP. MONITOR SERV. BLDG. ROSEMOUNT 78-81-17 AN 1363 7 47 TE-AN-2170 AMBIENT TEMP. MONITOR SERV. BLDG. ROSEMOUNT 78-81-17 AN 1363 7 47 }E TE-AN-217C AMBIENT TEMP. NONITOR SERV BLDG. ROSEMOUru 78-81-17 AN 1363 7 47

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TE-AN-2170 AMBIENT TEMP. MONITOR SERV. BLOG. ROSEMOUNT 78-81-17 1N 1363 7 47 _ TE-AN-100A AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 = T E- A!1-1000 AMDIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AM-101A AMBIENT TEMPERATURE NOt4ITORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AN-101B AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AN-100A AMBIENT TEMPERATURE MONITORS POSEMOUNT 78-81-17 AN 1363 8 72 TE-AN-102B AMBIENT TEMPERATURE NOHITORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AN-103A AMBIE?:T TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AH 1363 8 72 _TE-AN-103B AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 TE-AN-104A AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 bc TF-AN-104B AMBIENT TEMPERATURE NOHITORS ROSEHOUNT 78-81-17 AN 1363 8 72 h TE-AN-105A AMBIENT TEMPERATURE MO'lITORS ROSEMOUNT 78-81-17 AN 1363 8 72 _ TE-AN-105B AMBIENT TEMPERATURE MONITORS ROSEMOUNT 78-81-17 AN 1363 8 72 O O O O

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  • O DATE 6/2 d VIRGINIA ELECTRIC AND POW 1 OMPANY PAGE 2 HORTH AffHA POWER STATION Ut4IT 2 df~ EQUIPt1ENT QUALIFICATION MASTER LIST SYSTEt1/ FILE SORT h

U ORDER 12345678901234

     ,TE-AM-106A                        AMBIENT TEt1PERATURE MOtlITORS                                                              ROSEMOUNT                          78-81-17   AN     1363                     8     72 TE-AN-106B                       AMBIENT TEt1PER ATURE MOttITORS                                                             ROSEt10UNT                         78-81-17   AN     1363                     8     72 TE-AN-107A                       AMBIENT TEMPERATURE tiOtiTTORS                                                                                                            Ari    1363                      8    72 O       TE'-AN-107B                      AMBIENT TEMPERATURE NONITORS ROSEt10UNT ROSEMOUNT 78-81-17 78-81-17   AN     1363                     8     72 e

TE-AN-108A AMBIENT TEMPERATURE mot 41 TORS POSEt10UNT E7995/8 AN 1363 8 72 TE-AN-108B AMBIENT TEMPERATURE MONITORS ROSEMOUNT E7995/B AN 1363 8 72 FS-eD-2030 FLOW SWITCH, STN GEt1 BLWDH TO TK BARTON 288A DD 1257 6 *H/A FS-DO-203J FLOW SWITCH, STr1 GEN BLWDH TO TK B AR TOtt 288A BD 1257 7 *tI/A FS-BD-203F FLOW SWITCH, STri GEN BLWDH TO TK BARTON 288A DD 1257 6 all/A FS-BD-203B FLOW AITCH, STN GEH BLWDH TO TK BARTON 282A BD 1257 6 *H/A } FS-BD-203G FLOW W ITCH, STN GEN BLWDH TO TK BARTOtl 288A DD 1257 7 *H/A 7 b FS-BD-203H PLOW SWITCH, STN GEN BLWDH TO TK BARTOH 288A BD 1257 7 *H/A 2 SOV-2311 SOV, AUXILIARY SPRAY LINE ASCO HT831654 CH 4010 5 41 d,, h-E/P FC-2122 E/P, CHARG1ttG FLOW CONTROL COPES-VULCAt1 CH 61 HCV-2200A LIMIT SWITCH, REGEH. HEAT OUTLET HAMCO EA-180 CH 1010 1 WO4 0, HCV-2200B LIMIT SWITCH, REGEN. HEAT OUTLET HAhCO EA-180 CH 1010 1L WO4 9 g HCV-2200C LIMIT SWITCH, REGEN. HEAT OUTLET NAMCO EA-180 CH 1010

  • WO4 O O P10V-2115C NOV, CHARGIt4G PUMP SUCT. FRON VCT LIMITORQUE REL NTR-BI CH 1010 23 5 W16 NOV-2350 t10V, EMERGENCY BORATION LIMITORQUE REL NTR-BI CH 1010 23 5 W17

_ NOV-2267B MOV, LHSI TO CHARGING PUMP LIMITORQUE REL NTR-BI CH 1010 23 5 W18 MOV-22698 MOV. LHSI & VCT TO CHARGING PUt1P LIMITORQUL REL NTR-BI CH 1010 23 5 W18 NOV-2270B MOV, LHSI & VCT TO CHARGING PUMP LIN1TORQU( REL NTR-BI CH 1010 23 5 W18 NOV-2370 NOV, CH APGING PUMP TO SEAL HATER RECFC. LTMITORQUE REL NTR-BI CH 1010 23 5 W18 _HOV-2373 MOV, CHARGING PUMP TO RECIRC. SV LIMITORGUE REL NTR-BI CH 1010 23 5 W18 O e fI

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DATE 3/20/81 VIRGINIA ELECTRIC aHO POWER COMPANY PAGE 3 HORTH ANNA F0WER STAT 10tt UNIT 2 O EQUIrriENT QuALIrICAT10H tiiSTER t1ST SYSTEM / TILE SORT 4 ORDER 12345678901234 NOV-2286A NOV, CHARGING PUt1P 015CH. LIMITORQUE REL NTR-BI CH 1010 23 5 W19 NOV-22868 NOV, CHAPGING PUMP DISCH. LIMITORQUE REL NTR-DI CH 1010 23 5 419 tt0V-2286C NOV, CHARGING PUt1P DISCH. LIMITOPQUE REL NTR-DI CH 1010 23 5 W19 MOV-2287C NOV, CHARGING PUMP STOP VALVE LIMITORQUE REL N1R-DI CH 1010 23 5 W19 NOV-2287A tt0V, CHAPGING PUMP STOP VALVE LIMITORQUE REL MTR-BI CH 1010 23 5 W19 HOV-2287B MOV, CHARGING PUMP STOP VALVE LIMITORQUE REL NTR-DI CH 1010 23 5 W19 n 2-CH-P-1A PUMP, CHARGIttG (HHSI) WESTINGHOUSE CH 1010 2 5 H2O () 2-CH-P-1B . PUMP, CHARGING (HHSI) WESTINGHOULE CH 1010 2 5 W20 4 2-CH-P-1C PUMP, CHARGING (HHSIl WESTINGHOUSE CH 1010 2 5 W20 NOV-2267A MOV, LHSI TO CHARGING PUMP LIMITORQUE REL NTR-DI CH 1010 23 5 W21 i MOV-2269A NOV, LHSI & VCT TO CHARGING PUMP LIMITORQUE REL MTR-DI CH 1010 23 5 H21 7 b NOV-2270A NOV, LHSI & VCT TO CHARGING PUttP LIMITORQUE REL NTR-DI CH 1010 23 5 W21 y A tt0V-2289A MOV, CHARGING PUt1P DISCH. , lit 1ITORQUE REL HTR-BI CH 1010 23 5 H21 = MOV-2289B NOV, CHARGIllG PUMP DISCH. LIMITORQUE REL NTR-BI CH 1010 23 5 H21 NOV-2115'J MOV, CHARGING PUMP SLt FROM RWST LIMITORQUE REL NTR-BI CH 1010 23 5 1 W22 km) t10V-2115B NOV, CHARGING PUMP SUI F 3h RWST* LIMITORQUE REL NTR-BI CH 1010 23 5 1 W22

                                                                                             CIRC. SV                                                                           1010 g

v MOV-2275A N0f*2275C NOV, CHARGING FGMP . NOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE LIMITORQUE REL HTR-BI CH REL NTR-BI CH 1010 23 5 23 5 W34 W34 e q NOV-23e1 MOV, SEAL WATER RETURN SV LIMITORQUE REL NTR 'I CH 1010 23 5 W35 g a W _MOV-2115E MOV, CHARGING PUt1P SUCT. FRON VCT LINITORQUE REL NTR-r! CH 1010 23 5 W36 NOV-22750 NOV, CHARGING PUMP TO RECIRC. SV LIMITORQUE REL MTR-BI CH 1010 23 5 W37 HC-2186 E/P FOR SEAL HATER FLOW CONTROL CH 2 5 *H/A fg LCV-2460A LCV, LOOP 1 LETDOWN LINE CONT. VV HANCO EA-180 CH 1 *H/A g (.) W _ SOV-0G-200A SOV, PRIMARY DRAIN TRANSFER PUMP DISCHARG ASCO HB830281U CI 1125 1 15 og # # # e

DATE 8/2 L d D n VIRGINI A ELECTRIC AND POW 1.,~0MPAtlY PAGE 4 L f- NORTH AtlHA POWER ST ATI0t1 Ut1IT 2 ()- EQUIPt1Et4T QUALIFICATION MASTER LIST SYSTEM / FILE SORT h O MARK tlO. DESCRIPTION MANUFACTURER MODEL tio. SYS PUPCH. ACCIDEtlT rUttCT FILE PAGE ORDER 12345678901234 SOV-DD-200A SOV STEAtt GEN. BLOWDOWil ISOLATI0H ASCO HT8321A5 CI 1125 1 30 SOV-BD-200C SOV, STEAM GEH. BLOWOOWH ISOLATION ASCO HT8321a5 CI 1125 1 30 p SOV-BD-200E SOV, STEAM GEN. BLOWDOWil ISOLATION ASCO HT8321A5 CI 1125 1 30 O h SOV-CC-200A SOV, RECIRC. AIR COOLER CUTLET CUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-2000 SOV, RECIRC. AIR COOLER OUTLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-200C SOV, RECIRC. AIR COOLER OUTLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 q SOV-CC-201A SOV, RCP THERMAL BARRIER RET HEADER ASCO HT8321A5 CI 1125 1 30 o SOV-CC-202A SOV, RCP COOLER RETURH HEADER ASCO HT8321A5 CI 1125 1 30 9 SOV-CC-202C SOV, RCP COOLER PETURH HEADER ASCO HT8321A5 CI 1125 1 30 SOV-CC-202E SOV, RCP COOLER RETURtl HEADER ASCO HT8321A5 CI 1125 1 30 )C SOV-CC-203A SOV, RHR HEAT EXCH RETURH ASCO HT8321A5 CI 1125 1 30 SOV-CC-203B SOV RHR HEAT EXCH RETURN ASCO HT8321A5 CI 1125 1 30 _ A SOV-CC-204A-1 SOV, RCP COOLER IHLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 = SOV-CC-204A-2 SOV, RCP COOLER IHLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204B-1 SOV, RCP COOLERS IHLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204B-2 SOV, RCP COOLERS IHLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204C-1 SOV, RCP COOLERS INLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-CC-204C-2 SOV, RCP COOLERS INLET OUTSIDE ASCO HT8321A5 CI 1125 1 30 SOV-DA-200A SOV, RC SUMP PUNP DISCHARGE ASCO HT8321A5 CI 1125 1 30 0f SOV, CONTAIHt1ENT INST AIR ISOLATI0tl ASCO HT8321A5 CI 1125 1 30 9 _ SOV-IA-201B g SOV-IA-202A Sr"', CONTAIHMENT INSTRUMENT AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 Q SOV-IA-202B SOV, CONTAIHMENT INSTRUMENT AIR ISOLATION ASCO HT8321A5 CI 1125 1 30 - SOV-RN-200A SOV, E JJIATION mot 31TORING ASCO HT8321A5 CI 1125 1 30 -- _ SOV-RM-2000 SOV, PADIATION MONITORING ASCO HT8321A5 CI 1125 1 30 O e O

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O O DATE 0/20/81 VIRGINIA ELECTRIC AND POWER COMrAHY PAGE 5 NORTH ANilA POWER STATION UNIT 2 O Ecu!PnEru ouAurICATICH nASTER t1ST SYSTEN/ FILE SORT 4 g d MARK NO. DESCRIPTION MANUFACTURER NODEL NO. SYS PURCH. ACCIDENT FUttCT FILE PAGE W ORDER 12345678901234 SOV-RN-2000 SOV, RADI ATION NotlITORING ASCO CI 1125 1 30 0- 9 SOV-SI-200A e 50V, HITROGEN SUPPLY LINE ASCO 'HT8321A5 CI 1125 1 30 SOV-SI-2008 SOV. HITROGEH SUPPLY LINE ASCO HT8321A5 CI 1125 1 3u SOV-SI-201 SOV, HITROGEH SUPPLY LINE ASCO HT8321A5 CI 1125 1 30 SOV-VG-200A SOV, PRINARY ORAIH TRANSTER TANK VENT ASCO HT8321A5 CI 1125 1 30 50V-SS-2008 SOV, PRESSURIZER LIQUID SPACE . ASCO HB830281U CI 1163 1 37 SOV-SS-201B SOV, PRESSURIZER VAPOR SANPLE

  • ASCO HB830281U CI 1163 1 37 SOV-SS-203A SOV, RHR OUTDOARD IS0t/ TION VALVE ASCO HB830281U CI 1163 1 37 SOV-SS-203B SOV, RHR OUTBOARD ISOLATION VALVE ASCO HD830281U CI 1163 1 37 SOV-SS-2040 SOV, PRESSURE RELIEF TANK SANPLE ASCO HB830281U CI 1163 1 37 SOV-SS-2128 SOV, STEAM GEH SANPLE ISOLATION ASCO HB830281U CI 1163 1 37 7 O ei W".* SS-2 0 2B SOV, PRIMARY C00Litq COLD LEG SANPLE ASCO HB830281U CI 3163 1 38 SOV-SS-206B SOV, PRINARY COOLANT HOT LEG SANPLE ASCO HB830281U CI 1163 1 4 38 b-SOV, CONTAINNENT LEAKAGE NOMITOR h=

50V-LN-200A ASCO HT83?0A102 CI 1163 1 40 SOV-LN-2006 SCV, CONTAlt4NENT LEAKAGE MONITOR ASCO HT8320A102 CI 1163 1 40 SOV-LN-200C SOV, COHTAINNENT LEAKAGE Not41 TOR ASCO HT8320A102 CI 1163 1 40 SOV-LN-2000 SOV, CONTAlt1HENT LEAKAGE NONITOR ASCO HT8320A102 CI 1163 1 40 . SOV-LN-200E SOV, CONTAINMENT LEAKAGE MONITOR ASCO HT8320A102 CI 1163 1 40 SOV-LN-200F SOV, CONTAINNEt4T LEAKAGE Not41 TOR ASCO HT8320A102 CI 1163 40 _ SOV-LN-200G SOV CONTAltit1ENT LEAKAGE N0f t1 TOR ASCO HT8320A102 CI 1163 40 SOV-LN-200H' SOV, C0tlTAINMENT LEAKAGE NONITOR ASCU HT8320A102 CI 1163 1 40 g p/ s_ .,

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                                    ,                                                                                                                                OPDER    1234L678901234 SOV-HS-213A-1                   SOV, STEAM GEtt TRIP                                                            ASCO                             HT8321A5   CI 1125     1               51 SOV-MS-213A-2 50V, STEAN GEN TRIP                                                               ,

ASCO HT8321A5 CI 1125 1 51 50V-MS-2138-1 SOV, STEAN GEtt TRIP ASCO HT8321A5 CI 1125 1 51 50V-MS-2138-2 SOV, STEAN GEH TRIP ASCO HT8321A5 CI 1125 1 51 SOV-MS-213C-1 SOV STEAM GEH TRIP ASCO HT8321A5 CI 1125 1 51 0e h 50V-MS-213C-2 SOV. STEAM GEtt TRIP ASCO HT8321A5 CI 1125 1 51 SOV-MS-209A SOV, STEAM GEN TRIP ASCO HT8321A5 CI 1125 1 51 (q

>                                                                                                                                                                                                            h SOV-SV-203                      SOV, AIR REMOVAL SYSTEM                                                         ASCO                             Hi8321A5   CI 1125     1               51 r-     SOV-SV-202-1                    SOV AIR EJECTOR VENT                                              '

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SOV-IA-201A SOV, C0t4TAINMENT IttSTRUMENT AIR ASCO HC2068322U CI FIELD 1 55 l-r- SOV-SS-207A SCV, RHR SAMPLE LINE ASCO HV20029920 CI 1163 1 56  ? Oe hi SOV-SS-207B SOV, RHR SAMPLE LIHE ASCO HV2002992U CI 1163 1 56 7 SOV-CC-2020 SOV, RCP EEARING COOLING ASCO HD830281U CI 1125 1 58 = SOV-CC-202D SOV, RCP BEARIt4G C00LIllG ASCO HBS302810 CI 1125 1 58 SOV-CC-202F SOV, RCP BEARIttG COOLING ASCO HB830281U CI 1125 1 58 SOV-MS-201A-1 SOV, HAlte STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 SOV-MS-201A-2 SdV, NAlti STEAM LINE TRIP ASCO HT8316047 CI 1009 1 60 50V-MS-201A-4 SOV, NA1H STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 SOV-MS-201A-5 SOV, NAlti STEAN LIttE TRIP ASCO HT8316047 CI 1009 1 60 _ SOV-MS-2018-1 SOV, HAIN STEAM LIttE TRIP ASCO HT8316D47 CI 1009 1 60 SOV-MS-201B-2 SOV, HAIH STEAN LINE TRIP ASCO HT8316047 CI 1009 1 60 SOV-t1S-2018-4 SOV, H%1H STEAN LINE TRIP ASCO HT8316D47 CI 1009 1 60

-      SOV-NS-201B-5 SOV, HAIN STEAM LINE TRIP                                                                        ASCO                             HT8316D47  CI 1009     1               60               -

_ SOV-NS-201C-4 SOV, MAIH STE At1 SINE JRIP ASCO HT8316D47 CI 1009 1 60 h

hw. I) U DATE 0/20/81 VIRGINI A ELECTRIC AND POWER COMPAHf PAGE 7 HORTH ANilA POWER STATI0t1 Ut4IT 2 O EQuientHT OUAtIFICATI0ti nASTER t1Sr SYSTEN/ FILE SORT e ORDER 12345678901234 50V-MS-201C-1 50V, MAIH STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 60 SOV-MS-201C-5 SOV, MAIN STEAM LINE TRIP ASCO HT8316D47 CI 1009 1 6S 50V-MS-201C-2 SOV, NAIN STEAM LINE TRIP ASCO HT8316047 CI 1009 1 60 b<s SOV-CC-201B SOV, RCP THERMAL BARRIER HEADER ASCO HB830231U CI 1125 1 62 h

     ,,     SOV-CC-205A                      SOV, RECIRC AIR COOLERS OUTLET INSIDE                                         ASCO                                        H0830281U  CI  1125       1              62 SOV-CC-2050                      SOV, RECIRC AIR COOLERS OUTLET INSIDE                                         ASCO                                        HD830281U  CI  1125       1              62 SOV-CC-205C                      SOV, RECIRC AIR COOLERS OUTLET INSIDE                                         ASCO                                        HB8302810  CI  1125                      62 0f.

50V-DA-200B SOV, CONTAINMENT SUttP DISCH ISOLATION ASCO HB830281U CI 1125 1 1 62 e SOV-DG-2008 SOV, PRIt1ARY DRAIN TRAt4SFER PUNP DISCHARG ASCO 2068322U CI 1125 1 62 , SOV-RM-200C SOV, RADIATI0tl N0t4ITORING ASCO HB830281U CI .1125 1 62 S-c;

      --    SOV-SS-200A                      SOY, PRESSURIZER LIQUID SPACE                                                 ASCO                                        HS830281U  CI  1163       1              62                   ?

SOV-SS-201A SOV, PRESSURIZER VAPOR SPACE SAMPLE ASCO HB830281U CI 1163 1 62 O! fS SOV-SS-204A SOV, PRESSURIZER RELIEF TANK GAS SPACE ASCO HB830281U CI 1163 1 62 u SOV-SS-212A SOV, STEAN GEN SAMPLE ASCO HE830*810 CI 1163 1 62 9= SOV-VG-200B SOV, PRIMARY ORAIH TRANSFER tat 1K VENT ASCO HD830281U CI 1125 1 62 SOV-BD-200D SOV STEAN GEN BLOWDOWH ISOLATION VALVE ASCO HB830281U CI 1125 1 7 63 fs 50V-BD-200B SOV, STEAN GEH BLOWDOWtl ISOLATION VALVE ASCO HB830281U CI 1125 1 7 63 0 SOV-ED-200F SOV, STEAN GEN BLOWDOWN ISOLATION VALVE ASCO HB830281U CI 1125 1 7 63 9 f SOV-CD-200G SOV, STEAM GEH EdOWOOWil ISOLATICH VALVE ASCO HB830281U CI 1125 7 63 _ SOV-BD-200H SOV, STEAN GEti BLOWOOWH ISOLATION VALVE ASCO HB8302814 CI 1125 7 63 SOV-DD-200J SOV, STEAN GEH BLOWDOWN ISOLATION VALVE ASCO 2003322U CI 1125 7 63 SOV-CV-250A SOV- CONTAINt1ENT VACUM PUMP SUCTION ASCO HT8321A5 CI 1125 135 67 f- SOV-CV-2500 SOV, C0t4TAlHMENT VACUM PUMP SUCTION ASCO HT8321A5 CI 1125 135 67 SOV, CONTAINMENT VACUM PUMP SUCTION h _ SOV-CV-250C ASCO HT8321A5 CI 1125 135 67 O e 11 _. . __ _ _ __ _

UU f DATE 8/2bd VIRGIt4IA ELECTRIC AND POWhx4 0MPANY PAGE 8 140RTH ant 4A POWER STATION Ut4IT 2 b- EQUIPt1ENT CUALIFICATION MASTER LIST h SrSTEN/ FILE SORT ORDER 12345678901234 SOV-CV-2500 SOV, CONTAINt1ENT VACUt1 PUMP SUCTIOt4 ASCO HT8321A5 CI 1125 135 67 SOV-SS-202A %0V, PRIMARY C00LAt4T COLD LEG sat 1PLE ASCO HD830210 CI 1163 1 68 m 50V-SS-206A SOV, PRIMARY COOLANT HOT LEG S AMPLE ASCO HD83021U CI 1163 1 68 g U T SOV-Lll-201A SOV, C0t4TAINMEt4T LEAKAGE 10t4ITOR ASCO 6320A102 CI 1163 1 69 SOV-LM-201B SOV, CONTAINMEtIT LEAKAGE ttot41 TOR ASCO 8320A102 CI 1163 1 69 50V-LM-201C SOV, CONTAINMENT LEAKAGE MONITOR ASCO 8320A102 CI 1163 1 69 SOV-LM-2010 SOV, Cot 4TAINMENT LEAKAGE MONITOR ASCO 8320A102 CI 1163 1 69 SOV-2200A-1 SOV, LETDOWtl LINE ASCO HV202302IR CI 1010 1 WO9 SOV-22008-1 SOV, LETDOWN LINE ASCO HV202302IR CI 1010 1 WO9 SOV-2200C-1 SOV, LETDOWt1 LINE ASCO HV202302IR CI 1010 1 WO9 } E SOV-2460A SOV, LETDOWN LINE LOOP 1 & 2 ASCO HT831654 CI 1010 1 W10 T O SOV, LETDOWil LINE LOOP 1 & 2 NT831654 CI 1010 Gi SOV-2460B ASCO 1 W10 - A SOV-2859 SOV, SAFETY It4JECTIOtt ACCUMULATOR ASCO HT831654 CI 1010 1 W26 = SOV-2200A-2 SOV, LETDOWN LINE ASCO HV202302IR CI 1010 1 W32 SOV-22000-2 SOV, LETDOWN LINE ASCO HV202302IR CI 1010 1 W32 0g SOV-2200C-2 SOV, LETDOWti LINE ASCO HV202302IR CI 1010 1 W32 9 SOV-2936 SOV ACCUMULATOR VENT lit 1E FLOW ASCO HV2023031R CI 1010 1 W33 SOV-2842 SOV, RADIATION Mot 4ITORING LINE ASCO HT830654 CI 1010 1 W40 LCV-24600 LCV, LOOP 2 LETDOWt4 LINE CONT. VV NAMCO EA-180 CI 1 *H/A _ SOV-CV-200 SOV, C0t4TAINMENT VACUUtf EJECT INLET ASCO CI 1125 1 *N/A SOV-HV-215A-1 SOV, FLUSH VALVE SERVICE BLDG STRAINER CI 1 *N/A O SOV-HV-215A-2 SOV, FLUSH VALVE SERVICE BLOG STRAINER CI 1 *N/A O SOV-HV-2158-1 SOV, FLUSH VALVE SERVICE BLDE STRAINER CI 1 *N/A d-r _ SOV-HV-215B-2 SOV, FLUSH VALVE SERVICE BLDG STRAltER CI 1 *H/A 4 V

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r% dr - U DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPAt3Y PAGE 9 NORTH ANT 4A PCWER STATION UNIT 2 hf. EQUIPttEt4T GUALIFICATI0tl t1 ASTER LIST SYSTIN/ FILE SORT ORDER 12345678901234 SOV-MS-210A SOV, MAIN STEAM LINE DLOWDOWt1 ASCO CI 1125 1 *N/A SOV-MS-210B *SOV, MAIN STEAM LINE BLOWDOWN ASCO CI 1125 1 *N/A SOV-DA203A SOV, AUX. BLOG. TO C0t4T. SUttP PUMP ASCO HP831654E DA 1125 1 T07 SOV-DA203B SOV, AUX. BLDG. TO CONT. SUMP PUt1P ASCO HP831654E DA 1125 1 T07 LT-DA210A TRANSt1ITTER, cot 4T SUMP LVL HARROW RAtlGE GENS XM-36496 DA 1133 4 TOS LT-DA2108 TPAHSMITTER, CONT SUMP LVL HARROW RANGE GEMS XM-36496 DA 1133 4 T08 ZS-DA203A POSITION SWITCH, AUX BLDG TO CNT SUMP PHP HAttCO EA-180 DA 35085 1 T09 ZS-DA203B POSITION SWITCH, AUX BLOG TO CNT SUMP PMP NAMCO EA-180 DA 35085 1 T09 e LQ/LS-DA210B PWR SUP & SWTCH, Cot 4T SUt1P LVL NRRW RNGE GENS RE-42880 DA 1333 4 T10 LQ/LS-DA210A PWR SUP & SWTCH, C0 TIT SUMP LVL HRRW RNGE GENS RE-39425 DA 1333 4 T10 }E 2-DB-P-10A PUMP, CHILLER ROOM SUMP ALLIS-CHALMERS TYPE RGZV DB 1421 6 05 O PUMP, CHILLER ROON SUMP TYPE RGZV 1421 6 05 e!") 2-DB-P-10B ALLIS-CHALMERS DB - HGA-20 CABLE, 1/C 250 FICM OKONITE NE0/ETH/PR ED 1128 8 06 = NGA-21 CABLE, 1/C 2/0 AWG. OKONITE HE0/ETH/PR ED 1128 8 06 f3 HGO-15 CABLE, TRIPLEX #4 AWG OKONITE NE0/ETH/PR ED 1128 8 06 V O NGB-16 CABLE, TRIPLEX #6 AWG OKONITE HE0/ETH/PR ED 1128 8 06 tiGB-17 CABLE, 3/C #S AWG OKONITE HE0/ETH/PR ED 1128 8 06 g s/

  • W NGB-18 CABLE, 3/C #10 AWG OKONITE HE0/ETH/PR ED 1128 8 06 '

q HGB-19 CABLE, 3/C #12 AWG OKONITE HE0/ETH/PR ED 1128 8 06 g sf W tnA-15 CABLE, TRIPLEX 250 MCM CEPRO WIRE NEO XL PLY ED 1359 35 07 NGA-19 CABLE, 2/C #2 AWG CEPRO WIRE HE0 XL PLY ED 1312 8 08 NGA-34 CABLE, 1/C #14 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08 NGA-35 CABLE, 2/C #14 AWG CERRO WIRE HE0 XL PLY ED 1312 8 09 HGA-36 CABLE, 7/C #14 AWG CEPRO WIRE NED XL PLY ED 1312 8 08 g o G O O ,

DATE D/2Leol VIRGINIA ELECTRIC Aff0 POWdsedOMPAtIY PAGE 10 ftCRTH AtlHA PCWER ST ATION UtlIT 2 O Ecu!PnEnT oVAtIrICiT1C-i nAsTER tI5r SYSTEN/ FILE SORT e

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U NARK HO. DESCRIPTI0t1 Nat1UFACTURER MCDEL to. SfS PLH CH . ACCIDENT FUf!CT FILE PAGE CRDER 12345678901234 tSA-37 CABLE, 5/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 8 05 Os ICA-35 CABLE, 7/C #14 AWG CERRO WIRE HE0 XL PLs CD 1312 8 08 e NGA-39 CABLE, 9/C #14 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08 tCA-40 CABLE, 12/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 HGA-44 CABLE, 1/C #12 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08 O itGA-45 CABLE, 2/C #12 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 e itGA-47 CABLE, 4/C #12 AWG CERRO WIRE HE0 XL PLY ED I312 8 08 0-NGA-49 CABLE, 7/C #12 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 e CAELE, 4/C #10 AWG CERRO WIRE HED XL Pt.Y ED 1312 8 08 O NGA-57 NGA-77 CABLE, 4/C #10 AWG CERRO WIRE HE0 XL PLY ED 1312 8 08

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tGB-41 CABLE, '/C #S ARG CERRO WIRE HE0 XL PLY ED 1312 0 05 O e;? ISB-44 CABLE, 2/C #6 AWG CLRRO WIRE NEO XL PLY ID 1312 8 08 _ NGB-45 CABLE, 4/C #6 AWG CERRO WIRE HE0 XL PLV ED 1312 8 08 . NGA-67 CABLE, 19/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGA-68 CABLE, 12/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 tCA-69 CABLE, 2/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGA-70 CABLE, IS/C #16 AWG EIN NEO XL PLY ED 1265 2345 09 NGB-35 CABLE, 2/C #16 AWG BIH NEO XL PLY ED 1265 2345 09 NGB-39 CABLE, 3/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 _100-40 CABLE, 4/C #16 AWG BIN tlEO XL PLY ED 1265 2345 09 NGB-55 CF , 45/C #16 AWG BIH NEO XL PLY ED 1265 2345 09 t4GA-10 CABLE, 1/C 2000 NCH GENERAL CABLE HE0/ETH/PR ED 1255 8 10 NGA-12 CABLE, 3/C 1000 MCN ALUM 1f1UN ARMOR GENERAL CABLE NE0/ETH/PR ED 1255 8 10 - NE0/ETH/PR ED _HGA-13 CABLE, 3/C 4/0 AWG. ALUM 1 HUN ARMOR GEt3ERAL CABLE 1255 8 10 O e< O g e

O - O DATE 6/20/81 VIRGINIA ELECTRIC Ato POWER COMPANY PAGE 11 P10RTH AtlNA PCHER STATION Uti1T 2 O EQUIPt1ENT QUALIFICATI0H MASTER LIST SYSTEt1/ FILE SORT e ORDER 12345678901234 CABLE, TRIPLEX 1000 MCM GEllER/. O?BLE HE0/ETH/PR ED 1255 8 10 O ,HGA-3 HGA-4 ' CABLE, 3/C 500 MCM ALUMItlUM art 10R GEllERAL CABLE tlE0/ETit/PR ED 1235 8 10 e tiG A-5 C*BLE, 3/C 1250 MCM STEEL ARMOR GENERAL CABLE tlE0/ETH/PR ED 1255 C 10 O NGA-6 CABLE, 3/C 1250 MCM ALUMINUN ARMOR GENERAL CABLE NE0/E7td/PR ED 1255 8 10 e HGA-9 CABLE, 1/C 1500 MCM GE"ERAL CABLE HE0/ETH/PR ED 1255 8 10 O% HGA-13 CABLE, 3/C 4/0 AWG OXOtlITE ED 1375 8 11 e g HGA-14 CABLE, TRIPLEX 4/0 AWG OKOHITE ED 1375 8 2 g v W HGA-3 CABLE, TRIPLEX 1000 MC9 OK0tIITE ED 1375 8 11 NGA-4 CABLE, 3/C 500 MCM OKOfiITE ED 1375 S 11 Om NGB-11 CABLE, TRIPLEX 2/0 AWG OK0tlITE HE0/ETH/PR ED 1384 8 12 or h00-12 CABLE, TRIPLEX #1 AWG G ONITE tlEu ETH/PR ED 1384 8 12 e,O NGB-5 CABLE, TRIPLEX 500 t1CM Gh0 NITE HE0/ETH/PR ED 1384 8 12 '_ NGB-7 CABLE, TRIPLEX 250 MCM OKONITE t1E0/ETH/PR ED 1354 8 12 . EGA-67 CABLE, 19/C #16 AWG CERRO WIRE 11EO XL PLY ED 1392 123456 13 NGA-68 CABLE, 12/C #16 AWG CERRO WIRE HE0 XL PLY ED 1392 123456 13 t:GA-70 CABLEr 18/C #16 AWG CERRO WIRE HE0 XL PLY ED 1392 123456 13 flGB-35 CABLE, 2/C #16 AWG CERRO WIRE NEO XL PLY ED 1392 2345 13 de h tEB-39 CABLE, 3/C #16 AWG CERRO WIRE NEC XL PLY ED 1392 123456 13 p HGB-11 0 CABLE, TRIPLEX 2/0 AWG CABLE, TRIPLEX #1 AWG GEllERAL CABLE GEllERAL CABLE NE0/ETH/PR ED HE0/ETH/PR ED 1256 1256 8 8 14 14 e _tIGG-12 NGB-5 CABLE, TRIPLiX 500 MCM GEllERAL CABLE tie 0/ETH/PR ED 1256 8 14 NGC ' CABLE, TRIPLEX 250 MCM GENERAL CABLE NE0/ETH/PR ED 1256 8 14 NGB-01 CABLE, 2/C #10 AMG OKONITE HYP XL PLY ED 1404 8 16 _ 1-EP-NC-19 f1CC-lH1-2H KLOCENER MOELLER ED 1176 8 22 O e O # # # e g

n f\ V V V VIRGIt4I A ELECTPIC AffD POWLc40MPAtif PAGE 12 DATE 8/2w 4 O-f 40RTH Af 3HA POWER STATIOi4 Ut41T 2 E0ulPntHT CuAtirIC4110H nAS1ER tISr e SfSTEN/ RILE SORT ORDER 12345678901234 KLOChilER MOELLER ED 1176 8 22 g g 1-EP-MC-20 MCC-1H1-ES W i

 %/                                                                                                                                                      8         22 1- E P-t1C-21          t1CC-1J1-2H                                               KLOCKNER MCELLER                   ED    1176 NCC-1J1-25                                                VLOCKriER MOELLER                  ED    1176                   8         22 1-EP-t1C-22 MCC-2Ji-2H                                                KLOCKt1ER MOELLER                  ED    1176                   8         22 2-EP-t1C-21 MCC-2H1-2H                                                KLOCKt:ER tt0ELLER                 ED    1176                   8         22 2-EP-MC-19 MCC-2H1-23                                                KLOCKHER tt0ELLER                  ED    1176                   8         22 2-EP-t1C-20 1

lO 2-EP-MC-22 NCC-2J1-2S KLOCKt4ER MOELLER ED ED 1176 1313 8 8 22 24 e TYPE IA 514U' TAT 10H ASSEMBLIES (INSTRUMENTATION) CONAX CONAX ED 1313 8 24 f-4, TYPE IB PENETRATICH ASSETTLIES (CotiTROL) h2 pet 4ETRATIOta ASSEMBLIES (LOW VOLTAGE PWR) C0 flax ED 1313 6 24 h TYPE IC a CONAX ED 1313 8 24 n TYPE IIA PENETRATI0tl ASSEMBLIES ( LOW VOLTAGE PWR ) h ,75 U TYPE IIB pet 4ETRATION ASSEMDLIES (LOW VOLTAGE PWR) CatlAX EU 1313 8 24 '. k C0tlAX ED 1313 8 24 . g TYPE IIC PEHETPATICtl ASSEMBLIES ( LOW VOLTAC4 PWD) W U ED 1313 8 24 TYPE IID PLHETRATICH ASSEMBLIES (LOW VOLTAGE PWR) COHAX pet 1ETR ATI0tl ASSEMBLIES ( LOW VOLTAGE PWR ) CON 4X ED 1313 8 24 TYPE IIE C0tlAX ED 1313 8 24 TYPE III PENETRAT10tl ASSET 10 LIES (TRIAXIAL) 24 O TYPE IV PEHETRATI0tl ASSET 1BLIES (THERMOCOUPLES) C0t1AX ED ED 1313 1313 8 8 25 e TYfE IA PENETRATI0tl ASSEMBLIES (INSTRUMENTATION) CONAX PEtlETRATIOta ASSEM3 LIES (C0tiTROL) C0t1AX [0 1313 8 25 TYPE IS g V h PEHETRATI0tl ASSEMBLIES ( LOW VOLTAGE PWR) CONAX ED 1313 8 25 _ TYPE IC pef 4TRATICH ASSEMBLIES ( LOW VOLTAGE PWR) CCHAX ED 1313 8 25 TYPE IIA CotlAX ED 1313 8 25 TYPE IIB PEtlETRATION ASSEMBLIES ( LOW VOLTAGE PL C0t1AX ED 1313 8 25 - - - PENETRATION ASSEMBLIES (IOW VOLTAGE PWR) 9

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          .fPE IIC O                              PENETRATICH ASSEMBLIES (LOW VOLTAGE PWR)                  CONAX                             ED    1313                   8         25

_ TYPE IID O e O e 31

DATE 8/20/81 VIPGINI A ELECTRIC ArtD POWER COMPAtlY PAGE 13 HORTH AtitIA POWER STATION U* LIT 2 O Eau 1Pnt4T OuAtIrICATIori nASTER tIST SYSTEN/ FILE SORT e ORDER 12345678901234 TYPC IIE PENETRATICH ASSEMBLIES ( LCW VOLTAGE PWR I CotIAX ED 1313 8 25 2-EE-SS-03 SWITCHGEAR 480V (2H11 ITE ED 1088 8 31 2-EE-ST-01 SWITCHGEAR 400V (2H1) ITE ED 1088 6 31 2-EE-SS-04 SWITCHGEAR 480V (2J11 ITE ED 1088 8 75 2-EE-ST-02 TRAftSFORMER 450V (2J1) ITE ED 1088 8 75 PS-EG-2JA PRESSURE SWITCH, EMER GEN 2J COMP ALLEH BRADLEY 836-C9A ED FIELD 8 *tVA PS-EG-2JB PRESSURE SWITCH, EMER GEH 2J COMP ALLEN BRADLEY 836-C9A ED FIELD 8 *N/A RPS-EG-2HA PRESSURE SWITCH, EMERG GEN 2H COMP ALLEN BRAulEY 836-C9A ED 8 *tVA RPS-EG-2HB PRESSURE SWITCH, ENERG GEtt 2H COMP ALLEtt BRADLEY 836-C9A ED 8 *tVA 2-BY-B-01A eATTERY, STATIG4 BATTERY 2-1 CSD BATTERY ED 1262 8 *H/A S-BY-B-01B BATTERY, STAT 10ft BATTERY 2-1 C&G BATTERY ED 1262 8 *tVA O e?: 2-BY-B-02A BATTERY, STATIDI BATTERY 2-2 C80 BATTERY ED 1262 8 *H/A 7 2-BY-B-028 BATTERY, STATI0tl BATTERY 2-2 CSD BATTERY ED 1262 8 *H/A = 2-BY-B-03B BATTERY, STATIM 4 BATTERY 2-3 CfD BATTERY ED 1262 8 *H/A 2-BY-B-03A BATTERY, STATION BATTERY 2-3 C80 BATTERY ED 1262 S *H/A 2-BY-C-02 BATTERY CHARGER GOULD ED 1250 8 *ti/A 2-BY-C-03 BATTERY CHARGER GOULD ED 1250 8 atVA 2-BY-C-04 BATTERY CHARGER GOULD ED 1250 8 *H/A O-2-BY-C-05 BATTERY CilARGER BATTERY CHARGER GOULD GOULD ED ED 1250 1250 8 8

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                                                                                                                                                                                                                      *H/A e

_ 2-BY-C-07 q 2-BY-C-06 BATTIRY CHARGER COULD ED 1250 8 *tVA a ts W 2-EE-EG-02A GENERATOR, EMERGENCY GEN 2H COLT INDUSTRIES ED 1220 8 *H/A 2-EE-EG-02B GEt4ERATOR, EMER GEN 2H C0t1TRDL BDX COLT INDUSTRIES 1220 8 ED *H/A g 2-EE-EG-02C GENERATCR, EMER GEN 2H CONTROL CAB COLT INDUSTRIES ED 1220 8 *H/A O e O # # # e g

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                           ,g DATE 6/2                                                                                                  VIRGINIA ELECTRIC AfD POWke CMPAt(Y                                                PAGE 14 t10RTH ANtiA POWER STATION UNIT 2 p) x_                                                                                                               EQUIPMEllT QUALIFICATION MASTER LIST                                                               g SYSTEM / FILE SORT g

d MARK HO. DESCRIPTIOff NANUFACTURER N00EL HO. SYS PURCH. ACCIDEtIT FUtiCT FILE PAGE W ORDER I2345678901234 m 2-EE-EG-4A GENERATOR, EMERGEtiCY GEt1ERATOR 2J COLT ItOUSTRIES ED 1220 8 *H/A a V W 2-E E-EG-4B ' GENERATOR, EMERG GEtt 2J CCHTROL 00X COLT ItOUSTRIES ED 1220 8 *tVA 2-CE-EG-4C GENERATOR, EMER GEH 2J CONTROL CAB COLT ItOUSTRIES ED 1220 8 *H/A 2-EE-SS-02 SWITCHCEAR, 480 V SS COS 2J ITE ED 108S 8 stVA ,.q 2-EE-SS-01 SWITCHGEAR, 480 V SS CUS 2H ITE ED 1088 8 *tVA g %.) w 2-EE-SW-01 SWITCHGEAR, 4 KV DUS 2H . ITE ED 1079 8 *tVA 2-EG-AC-2HB COOLER, AFTER COOLER EMER GEN POOM IH ED 8 *tVA 2-EG-AC-2JA COOLER. AFTER COOLER EftERG GEN ROOM 2J ED 8 *tVA p 2-EG-AC-2JB COOLER, AFTER COOLER ENERG GEN ROOM 2J ED 8 *H/A A COOLER, AFTER COOLER ENER GEN ROOM 2H h[ 2-EG-AC-2HA ED 8 *tVA E E

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2-EG-B-02B GENERATOR, EMER GEN 2H BATTERY COLT It0USTRIES ED 1220 8 *t1/A 7 2-EG-B-4D GEtF.RATOR, EMER GEN,2J BATTERY COLT INDUSTRIES ED 1220 8 *H/A h} _ 2-EG-C-2HA COMPRESSOR. EMERG GEN AIR COMP 1 COLT It00STRIES EC 1220 8 *H/A = 2-EG-C-2HB COMPRESSOR, EMERG GEN AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A 2-EG-C-2)B COMPPESSOR, EMERG GEN AIR COMP 2 COLT It0USTRIES ED 1220 8 *tVA 2-EG-C-2JA COMPRESSOR, EMERG GEtt AIR COMP 1 COLT INDUSTRIES ED 1220 8 *H/A 2-EG-P-2HB PUMP, EMERGEffCY GEH EH FUEL OIL PUMP DELAVAL TUPBINE ED 0812 8 *H/A = 0-2-EG-P-2JB PUMP, EMERGEtiCY GEH 2J FUEL DIL PUMP DELAVAL TURBINE ED 0812 8 *tVA 9 2-EG-P-2JA PUMP, EMERGEt1Cf GEH 2J FUEL OIL PUMP DELAVAL TUPDINE ED 0312 8 att/A G.g G _ 2-EI-CB-01 CABINET, NAIH CONTROL BOARD WOLFE A NAHti ED 1226 2345 *ti/A 2-EI-CB-02

  • CABINET, MAIf4 CotiTROL BOARD WOLFE & NUlH ED 1226 2345 aft /A 2-EI-CB-04 CABINET, NAIll COtiTROL DOARD WOLFE 8 NAt!N ED 1226 2345 *tVA 2-EI-CB-05 CABIllET, NAIN C0t4 TROL BCOD WOLFE & MANil ED 1226 2345
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2-EI-CB-06A CABINET, AUX SHUTDOWN PAtlEL WOLFE & MANt1 ED 1307 2345 *H/A O . O

tru O O DATE 6/20/01 VIRGINI A ELECTRIC Atto POWER C0t1PAHf PAGE 15 f fl0RTH At#1A POWER STATI0t4 Ut4IT 2 (.) EQUIPt1EtlT QUALIFICATI0tl NASTER LIST h SYSTEN/ FILE SCRT e ORDER 12345678901234 c 2-EI-CD-07 CABIt1ET, VEtiTILATICH C0t4 TROL BOARD WOLFE & mat #1 ED 1307 6 9 *t1/A b 2-EI-CD-08A CABIHET, ENER SEH EH CONTROL PANEL WOLFE & NAt#1 ED 1307 8 *H/A w 2-EI-CD-000 CABItiET, ENER GEtt 2H CoflTROL pat 1EL WOLFE O t1At#1 ED 1307 8 ati/A h 2-EI-CB-156B C ABP:ET, CCHIROL CAB FOR AIR SYS ED 6 ett/A 2-El-CB-23A CABItlET, PROCESS RACK WESTIt4GHOUSE ED 1291 2345 *tt/A 0r- 9 2-EI-CB-23B CABItlET, PROCESS RACK

  • WESTINGHOUSE ED 1291 2345 *t3/A f-2-EI-CB-23D CABINET, PROCESS RACK WESTINGHOUSE ED 1291 2345 *ti/A h

2-EI-CB-47A CABItiET, SOLID STATE PROTECTI0tt WESTIlfGHOUSE ED 1010 135 *H/A es 2-EI-CB-47B CABINET, SOLID STATE PROTECTION WESTINGHOUSE ED 1010 135 *H/A U 4? 2-EI-CD-47E CABIttET, SOLID STATE PROTECTION WESTINGHOUSE ED 1010 135 *H/A - 2-EI-CB-156A CABItlET, CONTROL CAB FOR AIR SYS ED 6 *H/A 2-EI-CD-47D CABINET, SOLID STATE PROTECTIDH WESTIllGHOUSE ED 1010 135 *H/A _ f3 2-EI-CB-51 CABINET, PROCESS RACK 1 WESTIt4GHOUSL ED 1010 135 *H/A a= V W 2-EI-CB-52 C ABIt4ET, PROCESS RACK 2 WESTINGHOUSE ED 1010 135 *H/A 2-EI-CB-54 CABINET, PROCESS RACK 4 WESTINGHOUSE ED 1010 135 *H/A 2-EI-CB-47C CABINET, SOLID STATE PROTECTION WESTINGHOUSE ED 1010 135 *N/A 2-EI-CB-23C CIBINET, PROCESS RACK WESTINGHOUSE ED 1291 2345 *H/A 0r- 9 2-EI-CB-06B CABINET, AUX SHUT 00WH PAtlEL WOLFE & NAt#1 ED 1307 2345 *N/A eS 2-EI-CD-03 CABINET, HAlta CONTROL BOARD WOLFE & mat #1 ED 1226 2345 *H/A V h _ 2-EI-CB-47F CABIHET, SOLID STATE PROTECTION WESTINGHOUSE ED 1010 135 *H/A es 2-EI-CD-53 CABINET, PROCESS RACK 3 WESTIllGHOUSE ED 1010 135 *H/A v G 2-EP-CB-80C CABINET, INST DISTRIBUTION PANEL 3 GENERAL ELECTRIC ED 1302 8 *H/A m 2-EP-CB-00A CABIttET, trtST DISIFIBUTION PANEL 1 GEtiERAL ELECTRIC LD 1302 8 *H/A g U W 2-EP-CB-120 CABINET, DC CABItlET 2e4 CEHERAL ELECTRIC ED 1266 8 *H/A O e O O # # e _II

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DATE 6/2 sed VIPGINIA ELECTRIC A:40 POWErdOMPAttf PAGE 16 q tt0RTH A!!?tA POWER STATION UNIT 2 g V EQUIPMENT QUALIFICATION NASTER LIST W SYSTEN/ FILE SORT k/ ..................-== NARK t10. DESCRIPTION MANUFACTURER HODEL NO. St , *JeCH . ACCIDENT FUNCT FILE PAGE W ORDER 12345678901234 m U 2-EP-CB-20A 2-EP-CD-23A CABIt4ET, AUX RELAY CABIt4ET A CABINET, DC DISTRIBUTION PAtlEL 2A GENERAL ELECTRIC ED ED 1266 23 5 78 8

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2-EP-CB-12A CABINET, DC CABINET 2-1 1266 8 GENEPAL ELECTRIC ED *tVA g 2-EP-CB-04A CABIllET, VITAL BUS CAB 2-1 GENERAL ELECTRIC ED 1302 , 8 *tVA CABIllET, VITAL BUS CAD 2-2 1302 8 2-[P-CB-04D GEtlERAL ELECTRIC ED *ti/A g 2-EP-CD-04C CABINET, VITAL BUS CAB 2-3 GENERAL ELECTRIC ED 1302 8 'N/A 2-EP-CD-04D CABINET, VITAL BUS CAB 2-4 GEt1ERAL ELECTRIC 1302 p/ w ED 8 *ti/A g W 2-EP-CB-128 CABIrlET, DC CABINET 2-2 GENERAL ELECTRIC ED 1266 8 *ti/A 2-EP-CB-12B1 CABINET, DC DISTRIBUT10tl PANEL 2-2A GEtlERAL ELECTRIC ED 1609 8 *N/A 2-EP-CB-12C CABINET, DC CABItlET 2-3 GEllERAL ELECTRIC ED .1266 8 *tl/A h 2-EP CD-1201 CABIllET, DC DISTRIBUTI0tl PANEL 2-4A GEllERAL ELECTRIC ED 1609 8 *N/A 2-EP-CB-19A CABIllET, VITAL SOV PAtlEL GEllERAL ELECTRIC ED 1302 8

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2-E P-CD-19B CABINET, VITAL SOV pat 1EL GEtiERAL ELECTRIC ED 1302 8 *N/A = 2-EP-CD-238 CABINET, DC DISTRIBUTI0tl PANEL 2B GENERAL ELECTRIC ED 1266 8 *tVA g 2-EP-CD-28 J' ABINET, AUX RLY CAB CASIIIG CLNG (PS2 A1 [D 2 *tt/A . 2-EP-CD-28 CABINET, AUX RLY CAD CASING CLtlG (PS2B) ED 2 *H/A 2-EP-CB-28B CABINET, AUX RELAY CABIt1ET B ED E3 5 78 *N/A 2-EP-CD-34 CABINET, CONTROL PANEL FOR CC'4 TROL RN AC ED FIELD 6 *H/A 2-EP-CD-35 CABItlET, CCHTRGL FriEL FOR CONTROL RN AC ED TIELD 6 *H/A _ 2-EP-CD-80B CABINET, INST DISTRIEUTION PANEL GENERAL ELECTRIC ED 1302 8 *tt/A 2-EP-CB-800 CABINET, INST DISTRIBUTION PANEL 4 GENERAL ELECTRIC 1302 *H/A u 2-EP-NC-12 NCC, 2H1-1A KLOCKNER-NCELLER ED ED 1176 C 8 *N/A e 2-EP-NC-10 NCC, 2hl-1 KLOCKNER-MOELLER ED 1176 8 *N/A 2-EP-NC-13 NCC, 271-1A KLOCKNER-N0ELLER ED 1176 8 *H/A O e 0, , e

O O DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMP &t4Y PAGE 17 f 40RTH AtiNA POWER STATIOff UtlIT 2 O EwIPnoiT =Aur1 CAT 10H nASTER uST 4 SYSTEM / FILE SORT ORDER 12345678901234 2-EP-NC-11 MCC, 2J1-1 KLOCVt4ER-MOELLER E0 1176 8 *H/A 2-EP-MC-41 MCC, 2H1-4 KLOCKilER-MOELLER ED 1 '6 8 *H/A 2-HV-AC-08 COOLER, AFTER COOLER EMER GEH ROOM 2H ED 6 *H/A 2-HV-AC-09 COOLER, AFTER COOLER EMER GEta POOM 2H ED 6 ati/A 2-VB-I-03 ItiVERTER, VITAL EUS IflVERTER 2-3 ED 6 *H/A 2-VB-I-01 **ERTER, VITAL BUS It4VERTER 2-1 ED 8 *H/A 2-VB-I-02 ItiVERTER, VITAL DUS INVERTER 2-2 ED 8 a.1/A 2-YB-I-v4 INVERTER, VITAL BUS INVER1ER 2-4 ED 8 *H/A LT-2475 TRANSMITTER, 01EAM GEH. LEVEL ROSEMOUNT 20P4A92PB FW 1486 5 54 LT-2484 " RAH!t1ITTER, STEAM GEH. LEVEL POSEMOUNT 2DP4A92PB FW 1486 5 54 7-. I

    . LT-2485                                                                                                                TRANSMITTER, STEAM GEN. LEVEL                             ROSEMOUNT                2DP4A92PE         FW 1486            5                       54 h -T LT-2496                                                                                                                TRAtlSMITTER, STEAM GEH. LEVEL                            ROSEMOUt4T               2054A92PB         FW 1486            5                       M            )

LT-2474 TRAttSMITTER, STEAN Gell. LEVEL ROSEtt0VHT 20P4A92PB FW 1486 5 71 Oe 9-LT-2476 TRANSMITTER, STE At1 Gell. LEVEL ROSEMOUNT 2DP4A92PB FW 1486 5 71 LT-2486 TRANSMITTER STEAN GEN. LEVEL ROSEMOUNT 2DP4A92PB FW 1486 5 71 LT-2494 TRANSMITTER, STEAM GEN. LEVEL ROSEMOUNT 2DP4A92PB FW 1486 5 71 LT-2495 TRANSMITTER, STEAM GEN. LEVEL ROSEt10UNT 2DP4A92PB FW 1486 5 71 FT-FW200A TRA'ISMITTER, AUX. FDWTR. DISCHARGE FOXBORO E13DM FW 4 *H/A FT-FW2008 T R At4SMITTER , AUX. FDWTR. DISCHAli ;E FOXBORO E130M FW 4 *H/A _FT-FW200C TRAt1SMITTER, AUX. FDWTR. DISCHARGE FOXBORO E13DM FW 4 *ti/A HCV-FW-200A LIMIT SWITCH, FW C0t4TR0s. TO STEAM GEtt 1A P4At1CO FW 1125 57 ' VA O HCV-FN-200B LIMIT SWITCH, FW CONTROL TO STEAM GEN iB HAMCO FW 1125 57 UA HCV-FN-200C LIMIT SWITCH, FW C0tiTROL TO STEAN GD4 1C HAMCO FW 1125 57 UA _ MOV-FW-200C M0'/, AUX STEAM GEH FD PP DISCH W LIMITORQUE FW 1125 57 *N/A O 9 O O O

O g - g q O DATE 0/2 k 1 VIRGINI A ELECTRIC AND POWh%0MPAtlY PAGE 10 ilORTH AH!lA POWER STATION Ut1IT 2 O, EQUIPt1Etli QUALIFICATICH MASTER LIST h SYSTEM / FILE SORT ()

  • MAPK tlO. DESCRIPTI0tl MAttVFACTURER MODEL NO. SYS PURCH. ACCIDEtlT FUtiCT FILE ORDER 12345678901234 PAGE w F10V-F W-2 0 08 MOV, AUX STEAM GEtt FD PP DISCH LIMITORQUE FW 1125 57 *H/A F10V-FW-200A ,
  • MOV. AUX STEAM GEN FD PP DISCH LIMITORQUE FW 1125 57 *H/A w ZS-FW159A POSITIOtt SWITCH, lit 11T SWITCH 11AMCO D2400X FW 4
  • t 4/A POSITI0t4 SWITCH, LIMIT SWITCH D2400X 4 6

ZS-FW159B HAMCO FW *H/A ZS-FW200A POSITI0t4 SWITCH, LIMIT SWITCH t4AMCO D2400X FW 4 *H/A ZS-FW2000 POSITICH SWITCH, LIMIT SWITCH t4AMCO D2400X FW 4 *H/A ZS-FW200C POSITIOtt SWITCH, LIMIT SWITCH HAMCO D2400X FW 4 *H/A O- O 2-FW-P-3B PUt1P, STM GEtt AUX DP NOT B ALLIS-CHAlt1ERS FW 1022 57 *H/A 2-FW-P-3A PUt1P, STM GEN AUX DP t10T A ALLIS-CHALMERS FW 1022 57 *H/A H2A-HC-100 HYDROGEH ANALYZER bet! DIX E-10SS HC 1332 4 42 } L n H2A-HC-200 HYDROGEH At1ALYZER BENDIX E-10SS HC 1332 4 42 V h'! 1-HC-HC-1 HVDROGEN REC 0t1 BILLER ROCKWELL IHT. SDFC HC 1365 35 43 _ e 2-HC-HC-1 *HYDROGEH REC 0hDItlER ROCKWELL INT. 7404S HC 1365 35 43 O- e ,, H2A-HC-201-1 HYDROGEtt .24ALYZER COMSIP-DELPHI K III HC T19 H2A-HC-201-2 HYDROGEtt At1ALYZER COMSIP-DELPHI K III liC T19 TV-HC-200A SOV, HYDROGEH AilALYZER SYST. VALCOR V526529531 HC 34670 T20 TV-HC-2008 SOV, HYDROGEtt AtiALYZER SYSTEM VALCOR V526529531 HC 34670 T20 0s TV-HC-201A SOV, HYDROGEH AHALYZER SYOTEM VALCOR V526529531 HC 34670 T20 9 TV-HC-2010 SOV, HYDROGEtt ANALYZER SYSTEM VALC7R V526529531 HC 34670 T20 SOV, HYDROGEtt AtlALYZER SYSTEM VALCOR V526529531 HC 34670 T20 h _ TV-HC-202A TV-HC-20 u SOV, HYDROGEtt ANALYZER SYSTEM VALCCR V526529531 HC 34670 T20 TV-t ' -?038 SOV. HYDROGEN AtlALYZER SYSTEt1 VALCOR V526529531 HC 34670 T20 TV-HC-202B SOV HYDROGEtt ANALYZER SYSTEM VALCOR V526529531 HC 34670 T20 - ZS-HC-201A-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201A 00PDOS MR0901 HC 34670 T21 O e O e

A O %)  %/ DATE G/20/61 VIPGINIA ELECTRIC A!!D 00MER COMPANY PAGE 19 tt0RTH ANilA F0WER STATION U? LIT 2 () EQUIPMEt4T OUALIFICATICf3 MASTER LIST SYSTEM / FILE SORT h ORDER 12345678901234

       .___ ........                 r.............__...__    .......__...._..... ..._.._.___.......__ ...___ ... ___ _..... .__....___.___ ..__. ._..

- ZS-HC-200A-l' LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-200A GORDOS MR8901 HC 34670 121 U ZS-NC-200A-2 LIMIT SWITCH, LIMIT SWITCH FCR TV-HC-200A GORDOS MR8901 HC 34670 T21 h ZS-HC-2000-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2008 00PDOS MR8901 HC 34670 T21 ZS-HC-2000-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2003 GORDOS MR8901 HC 34670 T21 ZS-HC-201A-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201A GORDOS MR8901 HC 34670 T21 O3 ZS-HC-2018-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2010 GORDOS MR8901 HC 34670 T21 9 ZS-HC-2018-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-201D GORDOS MR8901 34670 T21 O-ZS-HC-202A-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202A GORDOS MR8901 HC HC 34670 T21 e ZS-HC-2028-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202B GORDOS MR8901 HC 34670 T21 b- h[ ZS-HC-2028-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-2028 GORDOS MP8901 HC 34670 T21 - p IS-HC-203A-2 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203A GORDOS IN8901 HC 34670 T21 T U ZS-HC-2038-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203D GORDOS MR8901 HC 34670 T21 Si _. O-ZS-HC-2038-2 ZS-HC-203A-1 LIMIT SWT*',H LIMIT SWITCH FOR TV-HC-2038 CORDOS LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-203A GCRDOS MR8901 MR8901 HC HC 34670 34670 T21 T21 e. f~ Z5-NC-202A-1 LIMIT SWITCH, LIMIT SWITCH FOR TV-HC-202A GORDOS MR8901 NC 34670 T21 0 SOV-HC-204A ASCO HP831654E HC 35085 1 T22 9 SOVi HYDROGEH REC 0f1BINER

        $0V-HC-204B                  SOY, HYDROGEH RECOMBINER                                          ASCO                                      HP831654E   HC      35085    1                          T22 SOV-HC-207A                  SOV, HYDROGD8 PEE :?INER                                          ASCO                                      HPS31654E   HC      35085    1                          T22 SOV-HC-206B                  SOV, HYDROGEN RECOMDINER                                          ASCO                                      NP831654E    HC     35085    1                          T22 g                                                                                                                                                                                                                    m v                                                                                                                                                                                                                    W

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DATE 8/2L~i VIRGItlIA ELECTRIC Ato POWIWOMPANf PAGE 20 ,, HORTH At:tlA PCWER STATION UtlIT 2 l EQUIPMENT QUALIFICATIC"4 MASTER LIST SYSTEM / FILE SORT h U MARK HO. DESCRIPTION g MAtlVFACTURER MODEL tt0. SYS PURCH. ACCIDEtIT FUtlCT FILE OFDER 12345678901234 PAGE h f3 .ZS-HC-206B-1 LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 T23 V E180-11302 HC 35085 T23 h ZS-HC-205A-1 LIMIT SWITCH, HYDROGEN CONTROL llAMCO 1 p ZS-HC-204A-2 LIMIT SWITCH, HYDROGEN CONTROL HANCO E180-11302 HC 35085 1 T23 a t1 . W ZS-HC-204B-1 LIMIT SWITCH, HYDROGEH CONTROL HAMCO E180-11302 NC 35085 1 T23 ZS-HC-204B-2 LIMIT SWITCH, HYDROGEN C0t4 TROL HAMCO E180-11302 NC 35085 1 T23 23-HC-205A-2 LIMIT SWITCH, HYDROGEM C0t41ROL HAMCO E180-11302 HC 3508S 1 T23 gq ZS-HC-205B-1 LIMIT SWITCH, HYDROGEN C0tlTROL tlAMCO E180-11302 HC 35085 1 T23 g \J w ZS-HC-2058-2 LIMIT S4 ITCH, HYDROGEN C0tiTROL HAMCO E180-11302 HC 35085 1 T23 ZS-HC-206A-2 LIMIT SWITCH, HYDROGEM CONTROL HAMCO E180-ll302 HC 35085 1 T23 ZS-HC-2068-2 LIMIT SWITCH, HYDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 1 5-ZS-HC-207A-2 LIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 T23 r O- h; ZS-HC-207B-1 IIMIT SWITCH, HYDROGEN CONTROL HAMCO E180-11302 HC 35085 1 T23 1 A IS-HC-207B-2 LIMIT SWITCH, HfDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 .- ZS-HC-203A-1 LIMIT SWITCH, HYDROGEH CONTROL HAMCO E180-11302 HC 35085 1 T23 <s ZS-HC-2044-1 LIMIT SWI1CH, HYDROGEN CONTROL HAMCO ElBO-11302 HC 35085 1 T23 U 2-HV-E-4B CHILLER, C0t4 TROL AND RELAY ROOM WESTINGHOUSE PC088W10 HV 1247 6 01 h 2-HV-E-4A CHILLER, C0t41ROL Ato RELAY POOM WESTIllGHOUSE PC088W10 HV 1247 6 01 df-2-HV-E-4C CHILLER, COMTROL AND RELAY ROOM WESTlHGHOUSE PC088W10 HV 1247 6 01 h n 2-HV-S-1A STRAINERS, CHILLER POOM ELLIOT MAR 25104 HV 1299 6 02 V STPAINERS, CHILLER POOM ELLIOT MAR 25104 HV 1299 6 02 h _2-HV-S-1B 2-HV-F-24 FAH, EQUIPMENT ROOM SUPPLY AEROVENT FAH CO. 7-216 IN F HV 1241 6 03 2-HV-P-20B PUMP, CHILLER R00t1 A/C BINGHAM-WILLIAMETTE TBDP HV 1276 6 04 2-HV-P-22A PUMP, CHILLER ROOM A/C BIllGHAM-WILLIAMETTE TEDP HV 1776 6 04 - _ 2-HV-P-20A PUMP, CHILLER ROOM A/C BI C .4M-WILLIAMETTE TBDP HV 1276 6 04 b O h 5 -

. . g DATE 8/20/81 VIPGINIA ELECTPIC AND POWER COMPANY PAGE ?1

,                                                                                               ilOR1H AtitlA POWER STATIO?1 Ut41T 2 EQUIPttENT QUALIFICATI0tl t1 ASTER LIST SYSTEM / FILE SORT ORDER        12 %5678901234 2-hY-P-200                    PUNP, CHILLER P00t1 A/C                                               BIflGHAN-WILLIANETTE                  TBDP       HV     1276                      6       04 Os 04 O

2-HV-P-?28 PUMP, CHILLER ROOM A/C BItlGHAM-WILLIANETTE TDDP HV 1276 6 2-HV-P-22C PUt1P, CHILLER ROOM A/C BIllGH AM-WIL LI At1E TT E TBDP HV 1276 6 04 NOV-HV-215-1 t10V, FLUSH VALVE LEFT FOR STRAINER RAYttO?ID C0tiTROLS 9170K32 HV 1299 6 17 ttOV-HV-216-1 NOV, FLUSH VALVE LEFT FOR STRAINER PAYNotID COtliROLS 9170K32 HV 1299 6 17 NOV-HV-216-2 t10V, FLUEH VALVE RIGHT FOR STRAINER RAYtt0t40 C0tlTROLS 9170K32 HV 1299 6 17 t10V-HV-215-2 NOV, FLUSr! VALVE RIGHT FOR STRAINER PAYNotlD COtiTPOLS 9170K32 HV 1299 6 17 0f 2-HV-F-408 FAN, SAFEGAURDS AREA VEtlTILATIO?1 BUFFALO FORGE 680810lG57 HV 1296 0 16 e

  . 2-HV-F-40A                    FAti, SAFCGAURDS toEA VENTILATION                                     BUFFALO FORGE                         6800101G57 HV     1296                        0     18 2-HV-F-71A                    FAN, SAFEGAURDS AREA vet 4TILATICH                                    JOY ttAt4UFACTURING                   21-1A-450  HV     1201                        0     21 h5i 2-HV-F-71B                    FAN, 3AFEGAURDS APEa VENTILATI0tt                                     JOf NAtlUFACTURIllG                   21-1A-450  HV     1201                        0     21          T h}

C tlUS-71 23 45 1-HV-F-8A FAN, AUX BLDG EXHAUST WESTINGHOUSE TAAN HV 1 _ 1-HV-F-88 FAN, AUX BLDG EXHAUST , WESTIllGHOUSE TAAN HV NUS-71 23 1 45 . 1-HV-F-8C FAN, AUX BLDG EXHAUST WESTINGHOUSE TAAN HV NUS-71 23 1 45 NOV-H /-2000 NOV, RC PURGE SYSTEN EXHAUST LIMITORQUE HV 1198 1 59 NOV-HV-201 NOV, RC PURGE SYSTEN BYPASS LIMITORQUE HV 1198 1 59 t10V-HV-2008 MOV, RC PURGE SYSTEN VALVE LIMITORQUE HV 1198 1 59 TS-StV2230 TEt1PERATURE SWITCH H0tlEYWELL T605A1016 HV t4A 2 64 NOV-HV200A NOV, C0t4TAItit1ENT SUPPLY lit 1ITORQUE REL NiR-BI HV 198 1 65 _ NOV-HV200C NOV, C0tlTAINNEllT PURGE LIMITORQUE REL NTR-BI HV 198 1 65 m t100-HV163A N00 CENTRAL AREA EXHAUST DISCH DAt1PERS HotlEYWELL ttS45A1027 HV 22436 23 1 66 U G NOD-HV163C' NOD, CEtlTRAL AREA EXHAUST DISCH DAt1PERS HONEYWELL tt345A1027 HV 22436 23 1 66 N00-HV1638 N00, CENTRAL AREA EXHAUST DISP 1 DANPERS HCHEYWELL M845A1027 HV 22436 23 1 66 _ SOV-HV115B-2 SOV, IODINE FILTER BANK ISN eIOtt VALVE ASCO HV FIELD 0 76 O 9 O O O O e

O V O V g DATE 0/2b VIRGINIAELECTRICAPIDPOWk OMPANY PAGE 22 f3 ff0RTH ant 4A POWER STATION UNIT 2 g V EQUIPMErlT QUALIFICATI0tl MASTER LIST W SYSTEM / FILE SCRT () MARK HO. DESCRIPTICH MAtlVFACTURER MCDEL HO. SYS PURCH. ACCIDEtiT FUNCT FILE PAGE w OPDER 12345678901234 50V-HV115B-1 SOV, IODIrlE FILTER BAtlK ISOLATION VALVE ASCO HV FIELD 0 76 FS-HV-2207A FLOW SWITCH, BATTERY ROON 2-1 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A Qf~ FS-HV-2207B FS-HV-22070 FLOW SWITCH, BATTERY ROON 2-2 vet 4T FLOW SWITCH, BATTERY ROOM 2-4 VENT FLUID COMP FLUID COMP 12-64-3 12-64-3 HV HV FIELD FIELD 9 9

                                                                                                                                                                     *N/A
                                                                                                                                                                     *H/A e

FS-HV-2207C FLOW SWITCH, DATTFRY ROOM 2-3 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A N00-HV127A-1 MOD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A MCD-HV127A-2 NCD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *ti/A MOD-HV127A-3 MOD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A M00-HV127A-4 MUD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A N00-HV1270-1 MCD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A 4 i M00-HV1278-2 MOD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A T 3 M00-HV1278-3 N00, SERVICE WATER PUMP HOUSE DAMPER HV 4 *H/A MOD-HV1270-4 McD, SERVICE WATER PUMP HOUSE DAMPER HV 4 *t1/A ., MOD-HV134 MOD, SCREEllWASH YENTILATICH HV 4 *H/A M00-HV135 MOD, CCHTROL RN AC SYSTEN M845A1027 HV 6 Os N00-HV137 MOD, UNIT 1 RELAY RN AC SYSTEr1 Hot 4EYWELL H0tlEYWELL M845A1027 HV 9

                                                                                                                                                                     *ti/A
                                                                                                                                                                     *H/A e

g M00-HV138 MOD, Ut3IT 1 RELAY RN AC SYSTEM Hof4EYWELL M84541027 HV 9 *H/A g U T MOD-HV136 MOD, CCtlTROL RN AC SYSTEN HONEYWELL M845A1027 HV 6 *H/A M00-HV237 t10D, Ut4IT 2 RLLAY RN AC SYSTEN H0t1EYWELL M845A1027 HV 9 at4/A _ M00-HV235 MM, CO*lTROL RN AC SYSTEN HotlEYWE LL M845A1027 HV 6 *H/A N00-HV236 M00, C0tiTROL Rf1 AC SYSTEN hot 4EYWELL M845A1027 HV 6 *H/A N00-HV238 MOD, UtlIT 2 REL#.Y RN AC SYSTEN HONEYWELL M845A1027 HV 9 *H/A M00-HV269 MOD, AUX FEECWATER VENTILATICH HV 4 *H/t. - _ NOD-HV272B MOD, AUX FEEDWATER VENTILATI0tl HV 4 *H/A O e ll

n pJ t) DATE S/20/31 VIRGItlIA ELECTRIC Att0 POWER COMPAt4Y PAGE 23 tt0RTH AtatlA F0WER STATI0tl Ut4IT 2 O EQUIPt1ENT QUALIFICATI0tl HASTER LIST h SYSTEM / FILE SORT ORDER 12345678901234 N00-HV272A MOD, AUX FEE 0 WATER VEtlTILATIO.1 HV 4 *ti/A M00-HV270 ' MOD, AUX FEEDWATER VENTILATI0tl HV 4 *N/A MO3-HV271A t100, AUX FEE 0 WATER VENTILATIOtl HV 4 *ti/A h N00-HV2718 MOD, AUX FEE 0WAT2R VEllTILATION HV 4 *H/A MOV-HV-104-2 MOV, EMERGEtlCY cot 4 TROL ROOM AC 6 m u MOV-HV-104-1 MOV, EMERGEtlCY cot 4 TROL ROOM AC

  • HV HV 6
                                                                                                                                                                                                                                                              *N/A
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NOV-HV-204-1 *t1/A O MOV-HV-204-2 MOV, C0tlTROL R00tl Et1ER AIR SUPPLY MOV, C0tlTROL ROOM EMER. AIR SUPPLY HV HV 7 7 *H/A e NOV-HV118-1 r10V, UtlIT 1 EMERGEl?CY RELAY ROOM AC HV 9 *ti/A LS Gr MOV-HV118-2 MOV, UtlIT 1 EMERGENCY RELAY ROOM AC HV 9 *ti/A 4 MOV-HV218-1 MOV, UtlIT 2 Et1ERGENCY RELAY ROOM AC HV 9 *tVA MOV-HV218-2 MOV, UNIT 2 EMERGENCY RELAY ROOM AC HV 9 *tVA _ 30V-HV-161-1 SOV, CCt4 TROL APID RELAY ROOM DAMPER ASCO HV FIELD 6 *tt/A = SOV-HV-160-1 SOV C0tlTROL APID RELAY POOM DAMPER ASCO HV FIELD 6 *tt/A n SOV-HV-160-2 SOV, CO!! TROL AtO RELAY ROOM DAMPER ASCO HV FIELD 6 *ti/A g kl W SOV-HV-161-2 50V, C0tlTROL Atl0 RELAY ROOM DAMPER ASCO HV FIELD 6 *tVA SOV-HV-23000 SOV, BOTTLED AIR SYSYTEM ATK0MATIC SLWP-2300 HV 6 *ti/A = SOV-HV-2300B SOV, BOTTLED AIR SYSTEM ATK0MATIC SLWP-2300 HV 6 *tVA SOV-HV-2300A SOV, BOTTLED AIR SYSTEM , ATK0MATIC SLWP-2300 HV 6 *tt/A _ SOV-HV-2200C SOV, VALVE FOR 2*HV-P-22C HOtlEYWELL HV FIELD 9 atVA em SOV-HV-2306A SOV, BOTTLED AIR SYSTEM ASCO HV 6 *!VA a (J. - - w SOV-HV-22003 SOV, VALVE FOR 2-HV-P-22B H0tlEYWELL HV FIELD 9 *tVA y- SOV-HV-2306S SOV, BOTTLED AIR SYSTEM ASCO HV 6 *tVA g _ SOV-HV-2200A SOV, VALVE FCR 2-HV-P-22A HONEYWELL HV FIELD 9 *N/A O , e O O 8 # e n ,

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(q) O DATE 6/2Cm1 VIRGINIA ELECTRIC AND POWEa~COftP4t4Y PJ.GE 24 m fl0RTH ANllA F0WER STATIOtl Ut!!T 2 EQUIPMEtli QUALIFICAT10tl MASTEP LIST SYSTEN/FILC SORT

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V f1 ARK NO. DEECRIPTION MAtlVFACTURER NODEL No. SYS PURCH. ACCIDEtli FUtlCT FILE PAGE T e ORDER 12345678901234 eg SOV-HV-2300C SOV, BOTTLED AIR SYSTEt1 ATK0MATIC SLWP-2300 HV 6 *H/A a O W SOV-HV228-1 SOV, EXHAUST TO 10DIllE FILTER BANK ASCO HV FIELD 23 5 *N/A SOV-HY228-2 SOV, EXHAUST TO IODINE FILTER BAtid ASCO HV FIELD 23 5 -- VA SOV-HV2301B SOV, SAFEGUARDS EXHAUST SYSTEM ASCO 8320A22Y HV O - . .< a SOV-HV2301A SOV. SAFEGUARDS EXHAUST SYSTEN ASCO 8320A22Y HV O *H/A TCV-HV155 TEMP CNTRL VALVE, C0tlTROL RN AC SYSTEN

  • HONEYWELL 1606 HV 6 *H/A TCV-HV164 TEMP CtiTRL VALVE, CONTROL RN AC SYSTEN HONEYWELL 1606 HV 6 *tVA TCV-HV166 TEMP Ct4TRL VALVE, UtlIT 1 RELAY RN AC SYS HotlEYWELL 1606 HV 9 *N/A p TCV-HV167 TEMP CNTRL VALVE, UNIT 1 RELAY RN AC SYS HONEYWELL 1606 HV 9
  • tVA g, d
  • Wi TCV-HV255 TEMP CNTRL VALVE, CotlTROL RN AC SYSTEN MWEYWELL 1600 HV 6 *H/A N TCV-HV264 TEMP CNTRL VALVE, CONTROL RN AC SYSTEN HONEYWELL 1600 HV 6 *tVA 7 GS ei TCV-HV267 TEMP CNTRL VALVE, UNIT 2 RELAY RN AC SYS HOMEYWELL 1600 HV 9 *tVA _

fS TCV-HV266 T"1P Ct4TRL VALVE, Ut4IT 2 RELAY RN AC SYS H0tlE YWE LL 1600 HV 9 *tVA g= V w TS-HV-2229 TEMS 2ATURE SUITCH HOtlEYWELL T6051A1016 HV 3 *N/A TS-HV1968 TEMPERATURE SWITCH, EMER GEN R00f1 CH H0tlEYWE LL T6051A1016 HV 9 *N/A TS-HV1960 TEMPERATURE SWITCH, EMER GEtt POON 2J H0t:EYELL T605A1016 HV 9 *H/A 6 O- TT-HV1013 TT-HV1014 TRAtlSF1ITTER, C0tlTROL RN AC SYSTEN TRANSMITTER, COtlTROL RN AC SYSTEt1 HotlE1WELL HONE 1WELL C7031D1021 HV C703101021 HV 6

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TT-HV1015 TRAtlSNITTER, UtlIT 1 PELAY RN AC SYSTEN HONEYWELL C7031D1021 HV 9

  • tVA

_ TT-HV1016 TRAtlSHITTER, UNIT 1 RELAY RN AC SYSTEN HONEYWELL C7031D1021 HV 9 *N/A TT-HV155 TRANSMITTER, C0tiTROL RN AC SYSTEN H0flEYWELL C703101021 HV 6 *tVA TT-HV164 TRAtlSt1ITTER, C0t4 TROL RN AC SYSTEN HOtlEYWELL C703101021 HV 6 *N/A TT-HV166 TRANSMITTER, UNIT 1 RELAY RN AC SYSTEN H0tlEYWELL C7031D1021 HV 9 *H/A TT-HV167 TRANSHITTER, UNIT 1 RELAY RH AC SYST[H HONEYWELL C703101021 HV 9 *H/A O e O e - ll - _ _ _ _ _

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  • tVA 1-HV-AC-1 COOLER, C0tlTROL RN AC SYSTEM HV 6 *tVA dc h[l!

1-HV-AC-6 COOLER, UtlIT 1 RELAY RN AC SYSTEN HV 9 *ti/A il C; Cs 3 1-HV-AC-2 COOLER, 00tiTROL RH AC SYSTEM COOLER, UNIT 1 RELAY FN AC SYSTEr1 HV HV 6 9 ott/A

                                                                                                                                                                                *t1/A eii_j 1-HV-AC-7
                                                                                                                                                                                                'l CHILLER, EMERGENCY C0!ITet0L ROOM AC                                                    HV                   6                                         *tVA U-1-HV-E-30 S'    '

1-HV-E-31 CHILLER, UNIT 1 EMERGEtlCY RELAY ROOM AC HV 9 *t1/A i i 1-HV-F-22B FAN, EXHAUST FAtt ENER GEtt ROON 2H AEROVENT FAtt CO. HV 1241 9 *N/A p J G 1-HV-F-220 F Atle EXHAUST FAtt EhER GEN ROOM 2J AEROVENT FAH CO. HV 1241 9 *tVA i 1-HV-F-41 FAti, EMERGEt1CY C0t4 TROL ROON AC HV 6 *tt/A O ei ' FAtt, Ut4IT 1 EMERGEilCY RELAY ROON AC HV 9 *tt/A 1-HV-F-42. 1-HV-F-61 FAN, SCREEllWASH VEllTILATI0tt HV 4 *tVA n V h BATTERY, STATI0tl BATTERY 2-4 CSD BATTERY HV 1262 8 sti/A _ 2-DY-B-040 2-BY-B-04A BATTERY, STATICN BATTERY 2-4 CSD BATTERY HV 1262 8 *H/A h 2-HV-AC-06 COOLER, EMERGEtiCY SWITCHGEAR ROOM A/C BUFFALO FORGE HV 1269 9 *tVA HV 1269 9 *tVA o U 2-HV-AC-07 COOLER, EMERGEllCY SWITCHGEAR ROON A/C CUFFALO FORGE S CHILLEri, EMERGEt1CY C0tiTROL ROON AC HV 6 *tVA _2-HV-E-30 O e v G O e e R .

m DATE 8/Ned n n VIRGIti!A ELECTRIC AffD POWie dOMPAttf PAGE 26 (7 It0RTH ArntA POWER STATI0tl UtlIT 2 b- EQUIPMENT Q'JALIFIC ATI0tl H ASTER LIST 8 SYSTEM / FILE SORT ORDER 12345678901234 q 2-HV-E-31 CHILLER, Utili 2 EMERGEtlCY RELAY R00f1 AC HV 9 *H/A a V W 2-HV-F-42 F Alle EMERGEtlCY SWITCHGEAR VENT BUFFALO FORGE HV 1296 9 *H/A 2-HV-F-41 F/L C0tlTROL ROOM EMER VEtli SUFFALO FORGE HV 1296 6 *H/A 2-HV-F-570 F Atle BATTERY ROOM 2-4 EXHAUST FAH AEROVENT FAN CD. HV 1241 9 *H/A 2-HV-F-57A FAti, BATTERY ROOM 2-1 EXHAUST FAH 1241 9 *H/A Os 2-HV-F-570 F Att , BATTERY ROOM 2-2 EXHAUST AEROVENT FAH CO. AEROVENT FAN CO. HV HV 1241 9 *H/A e 2-HV-F-57C FAN, BATTERY ROOM 2-3 EXHAUST AEROVENT FAN CO. HV 1241 9 p) b

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2-HV-F-69 FAti, AUX FEEDWATER VEtlTILATION HV 4 *H/A 2-HV-F-68B FAfi, IJ SUPPLY FAft JOY MAtlVFACTURING HV 1201 1 *tt/A Qg 2-HV-F-68A FAH, 1H SUPPLY FAtt JOY MANUFACTURING HV 1201 1 *tl/A er 5 2-HV-F-70B FAH, AUX FEEDWATER VEtlTILATION HV 4 *H/A O e'T; 2-HV-F-70A FAN, AUX FEEDWATER VEtlTILATION HV 4 *N/A _ A f O-PT-LM-200A PT-LN-2003 TRANSMITTER, CCHTAltit1ENT PRESSURE TRAt10r1ITTER, CONTAIllMENT PRESSURE FOXBORO FOXBORO E11AH EllAH LM LM 1215 1215 135 135 48 48 e. PT-LN-20CC TRAf1SMITTER, C0tlTAltiMENT PRESSURE FOXBORO EllAH LM 1215 135 48 PT-LN-2000 TRAtlSMITTER, CONTAINMENT PRESSURE FOXBORO E11AH LM 1215 135 48 PT-LM210A TRANSMITTER, C0t10. PRESSURE WIDE RAtlGE FOXBORO H-EllAH LM 1215 4 T01 PT-LM210B TRANSMITTER, CotID. PRESSURE WIDE RAtlGE FOXBORO H-EllAH LM 1215 4 T01 FT-2474 TRAtlSMITTER, STEAN GEN. FLOW ROSEf100tlT 20P6A93DP HS 1486 23 5 35 _ FT-2475 TRAtlSMITTER, STEAM GEH. FLOW ROSEMOUtlT 2DP6A930P MS 1486 23 5 35 TRANSt1ITTER STEAM GEN. FLOW ROSEMOUtIT 2DP6A93DP MS 1486 23 5 35 O FT-2484 - O FT-2485 TRANSMITTER, STEAM GEN. FLOW ROSEMOUtlT 2DP6A93DP MS 1486 23 5 35 FT-2494 TRANSMITTER, STEAM GEN. FLOW ROSEMOUNT 2DP6A93DP MS 1486 23 5 35 -- O FT-2495 TRANSMITTER, STEAM Gell. FLOW ROSEHOUNT 2DP6A93DP HS 1486 23 5 35 G ' O e 11 -

tru DATE 0/20/01 VIPGINIA ELECTPIC tt10 POWEP COMPAtif PAGE 27 tt0PTH At:tIA POWER ST ATION UNIT 2 h E701PitENT QUALIFICATI0tl NASTER LIST SYSTEN/ FILE SORT h OPDER 12345678901234 SOV-NS-211A SOV, AUX FEED PUNP TUFB DRIVE ASCO HT8344A71 HS 1125 2 67 36 SOV-MS-2118 ,

  • SOV, AUX FEE 0 PUt1P TURB DRIVE ASCO HT8344A?1 MS 1125 2 67 36 PT-2474 TRAtiSf1ITTER, STEAN GEtl.1 PRESSURE FOXBORO E11GN 1010 5 HO3 g tis m

W V PT-2475 TRANSf1ITTER, STEAM GEN. 1 PRESSURE FOXBORO E11GN NS 1010 5 H03 PT-2476 TRAtlSHITTER, STEAN GEN. 1 PRESSURE FOXBORO E11GN NS 1010 5 WO3 PT-2484 TRANSHITTER, STEAN GEN. 2 PRESSURE FOXBf)RO E11GN NS 1010 5 WO3 PT-2485 TRAtiSNITTER, *>TEAN GEH. 2 PRESSURE FOXB1R3 E11Gti MS 1010 5 NO3 PT-2426 TRANSr1ITTER, STEAN GEN. 2 PRESSURE FOXFJR0 E11GN NS 1010 5 WO3 f PT-2494 TRAtlSHITTER, STEAN GEN. 3 PRESSURE FOXEORO E11GN NS 1010 5 W33 5 PT-2495 TRANSHITTER, STEAN GEH. 3 PRESSURE FOXBORO E11GN NS 1010 5 WO3 p PT-2496 TRANSMITTER, STEAN GEtl. 3 PRESSURE FOXBORO E11GN NS 1010 5 WO3 T b3 hi PT-t!S-201 A TRAtiSNITTER, NAitt STN LP I PRES C0tlTROL FOXBORO E11GN NS 1215 2 *H/A h PT-MS-2010 TRAtlSMITTER, NAlti STN LP II PRES CONTROL FOXBORO E11GN NS 1215 2 afi/A = PT-NS-201C TRANSNITTER, MAIN STti LP III PRES C0ilTROL FOXBORO E11GN NS 1215 2 *H/A g TB TERNIHAL ELOCKS C0tlNECTICH INC. NSS3 PLYSL N/A 1313 9 19 g V W SP SPLICtS CONAX KAPTON IMS N/A 1313 9 26 SPL1SES C0tlAX KAPTON INS N/A 1313 9 27 O- SP TB TERNINAL BLOCKS NAH( N/A HA 9 32 9 PLICES WCS.~/H COA N/A HA 9 34 Os SP RAYCHEN PATCHEN HVT/HVMC N/A N/A 9 39 e _TN TERT 11 NATIONS TT TEPt1INATI0tl TAPE OKONITE HA HA 9 33 N0Y-QS-201A NOV, QUENCH SPRAY PUt1P DISCH LIMITORQUE REL NTR-BI QS 1242 35 23 NOV-QS-2010 NOV. QUENCH SPRAY PUNP DISCH LINITCPQUE REL NTR-BI QS 1242 35 23 NOV-QS-200A NOV, REFUELIllG NATER STORAGE TANK LINITORQUE REL NTR-BI QS 1242 35 74 O O o m O O O e

( ,) O DATE C/2L~1 (o) VIRGINI A ELECTRIC A!!D POHI--,;0MPANY i 0RTH ANilA POWER STATIOil UtlIT 2 PAGE 20 h g U EQUIPMEllT QUALIFICATION MASTER LIST SYSTEM / FILE SORT h U  : ARK HO. DESCRIPTION MANUFACTURER MODE L 180. SYS PURCH. ACCIDENT FUtlCT TILE ORDER 12345678901234 PAGE h NOV-QS-2008 MOV, REFUELING HATER STORAGE TAttK LIMITORQUE REL NTR-BI QS 1242 35 74 q o LT-OS-200A TRANSMITTER, RF HATER STORAGE TAttK FOXBORb E13DM QS 1215 35 *N/A e p L1-QS-2008 TRAtlSMITTER, RF HATER STORAGE TANK FOXCORO E13DM QS 1215 35 *ti/A o LT-QS-200C TRANSMITTER, PF HATF STORAGE TANK FOXBORO E13DM QS 1215 35 *ti/A 9 f LT-QS-2000 TRAttSMITTER, RF WATER STORAGE tat 4K FOXBORO E13DM QS 1215 35 *!1/A i t0",'-QS-20 2 A MOV, RF HATER CHEM. AD3 TANK 1181 35

  • tt/A h

LIMITORQUE QS MOV-OS-202B MOV, RF HATER CHEN ADD TAttK lit 1ITORQUE QS 1181 35 *N/A O-, O 2-QS-P-1A PUMP, QUENCH SPPAY PUMP 1A IttGERSOL-Raft 0 QS 1094 35 *t1/A q 2-QS-P-1B PUt1P, QUEt;CH SPRAY PUMP IB Ill3ERSOL-rat 3D QS 1094 35 3 *N/A g_ V W{ YE-VMS200B-1 ACCLLER0t1ETER, PZR SAFETY VALVE POSITION ENDEVC0 2273AM20 RC 1605 4 T02 y en YE-VMS200A-2 ACCELEROMETER, PZR SAFETY VALVE POSITION Et0EVC0 2273AM20 RC 1605 4 T02  ? U YE-VMS200C-2 ACCELER0tiETER, PZR SAFETY VALVE POSITION EtiDEVC0 2273At120 RC 1605 4 T02 h} ._ A p U YE-VMS200B-2 YE-VMS200A-1 ACCELEROMETER, PZR SAFETF VALVE POSITION ACCELERot1ETER, PZR SAFETY VALVE POSITICH Et:DEVC0 EttDEVCF 2273AM20 2273AM20 RC RC 1605 1605 4 4 T02 T02 e. m YE-Vt15200C-1 ACCELEROMETER, PZR SAFETY VALVE POSITION ENDEVC0 2273AM20 RC 1605 4 102 L) YE-VMS2018-1 ACCELER0t1ETER, PZR PORV POSITI0tl ENDEVC0 2273AM20 RC 1605 L T03 YE-VMS201A-1 ACCELEROMETER, PZR PORV POSITION Et:DEVC0 2273AM20 RC ".605 4 T03 YE-VMS2FIL-2 AU ELERot1ETER, PZR PORV POSITION EttDEVC0 2273At120 RC 1605 4 T03 YE-VMS201A-2 ACCELEROMETER, PZR PORV POSITION EICEVC0 2273AM20 RC 1605 4 T03 O- O _ Lt:0 CABLE, HARDLIllE COAXIAL LOW NOISE CABLE ENDEVC0 3075M6 RC 1605 4 TC4 YY-VMS200A-2 lit 4E DRIVER, PZR SAFETY VALVE POSITION Ut010LTZ-DICKIE 22CA-ZTR RC 1605 4 105 YY-VMS200B-1 LINE DRIVER, PZR SAFETY VALVE POSITION UNHOLTZ-DICKIE 22CA-ZTR RC 1605 4 TOS YY-VMS200B-2 LItiE DRIVER, PZR SAFETY VALVE POSITION Ut4HOLTZ-DICKIE 22CA-ZTR RC 1605 4 Tc5

,3 u                                   LINE DRIVER, PZR SAFETY VALVE POSITION                                               UNHOLTZ-DICKIE           22CA-ZTR     RC  1605      4              T05 ei-'

_ YY-VMS200C-2 U_

(D mj (3) DATE 8/20/01 VIRGIllIA ELECTRIC AtlD POWER COMPAHf PACE 29 f- NORTH At#tA FCMER STATI0tl Ut3IT 2 EQUIPMENT GUALIFICATICil MASTER LIST SYSTEM / FILE SORT ORDER 12345678901234 m .YY-VMS200C-1 LINE DRIVER, PZR SAFETY VALVE POSITI0t1 Uf1HOLTZ-DICKIE 22CA-ZTR RC 1605 4 TO5 U YY-VMS200A-1 LItlE DRIVER, PZR SAFETY VALVE POSITION Ut#1LTZ-DICKIE 22CA-ZTR RC 1605 4 TOS h YY-VMS201A-2 LINE DRIVER, PZR PORV POSITION UtniC '.TZ-DICKIE 22CA-ZTR RC 1605 4 T06 0 YY-VMS2018-1 LINE DRIVER, PZR PORV POSITION Utn10LTZ-DICKIE 20CA-ZTR RC 1605 4 T06 h g YY-VMS201A-1 LINE DRIVER, PZR PORY POSITI0t1 UtD{0LTZ-DICKIE 20CA-ZTR RC 1605 4 106 d YY-VMS2018-2 lit 1E DRIVER, PZR PORV POSITI0tt Ut#10LTZ-DICKIE 22CA-ZTR RC 1605 4 T06 h FT-2414 TRANSMITTER, REACTOR COOLANT FLOW L1 FOXBORO E13DH RC 1010 2 5 W01 O,, FT-2415 TRAtlSMITTER, REACTOR COOLANT FLOW L1 FOXBORO EI3CH RC 1010 2 5 W31 h n FT-2416 TRANSMITTER, REACTOR C00LAtlT FLOW L1 FOXC090 E130H RC 1010 2 5 Wo1 V FT-2424 TRAttSMITTER, REACTOR COOLANT FLOW L2 FOXBORO E13DH RC 1010 2 5 WOI h2 - r FT-2425 TRAftSMITTER, REACTOR COOLANT FLOW L2 FOXDORO E13DH RC 1010 2 5 WOI FT-2426 TR ANSMITTER, REACTOR COOLANT FLOW L2 FOXBORO E130H RC 1010 2 5 N01 1 FT-2434 TRANSt11TTER, REACTOR COLLAtlT FLOW L3 FOXBORO l'130H RC 1010 2 5 WO1 ., FT-2435 TRANSMITTER, REACTOR COLLANT FLOW L3 FOXBORO E130H RC 1010 2 5 WOI n FT-2436 TRAf1SMITTER, REACTOR COLLAT 1T FLOW L3 FOXBORO E13DH RC 1010 2 5 WOI C h LT-2459 TRANSMITTER, PRESSURIZER LEVEL BARTON 764 RC 1010 23 5 WC2 LT-2460 TRANSMITTER, PRESSURIZER LEVEL BART0t1 386/752 RC 1010 23 5 WO2 h LT-2461 TRANSMITTER, PRESSURIZER LEVEL BARTON 386/752 RC 1010 23 5 WO2 n PT-2455 TRANSMITTER, PRESSURIZER PRESSURE BARTON 763 LOT 1 RC 1010 23 5 WO7 V h _PT-2456 TRANSMITTER, PRESSURIZER PRESSURE BARTON 763 LOT 1 RC 1010 23 5 WO7 n PT-2457 TRAN3MITTER, PRESSURIZER PRESSURE BARTON 763 LOT 1 RC 1010 23 5 WO7 U RTD, RCS NARROW RANGE h TE-2412B ROSEMOUNT 176KF RC 1010 1 345 W12 f- g TE-24100 RTD, RCS HARROW RAtlGE ROSEMOUNT 176KF RC 1010 1 345 W12 V h _ TE-24228 RTD, RCS NARROW RANGE ROSEMOUNT 176KF RC 1010 1 345 W12 o m O O O e il

DATE 8/2 6 1 [ VIRGINIA ELECTRIC At1D P0ki-4 0MPAtif PAGE 30 NORTH AttNA PCWER STATI0t1 UtiIT 2 O tQu1Pnttir ouAtirICiTICti nsSTtR tIST SYSTEM / FILE SORT e ORDER 123

      ...........__ _____....__.._________________..___....__ ..... .............. .. ....... ___ ..____ .._ _'+56 78 9012 34 ___._ .__.                                             ____....__

TE-2422D RTD, RCS tlARROW RA!!GE 176KF 1010 es U TE-2432B RTD, RCS NARROW RAttGE ROSEMOUt4T POSEMOUNT 176KF RC RC 1010 1 345 1 345 W12 W12 , e TE-2432D RTD, RCS t:ARRCW RANGE ROSEMOUNT 176KF RC 1010 1 345 W12 TE-2410 RTD, RCS WIDE rat:GE ROSEMOUNT 176KS RC 1010 5 H27 TE-2413 RTD, RCS WIDE rat GE ROSEMOUNT 176KS RC 1010 4 W27 Gs TE-2420 RTD, RCS WIDE RA!!GE ROSEMOUt4T 176KS RC 101C 4 W27 e TE-2423 RID, RCS F0E RANGE ROSEMOUtiT 176KS RC 1010 4 H27 O TE-2430 RTD, RCS WIDE RANGE ROSEt10UNT 176KS RC 1010 4 W27 e TE-2433 RTD, RCS WIDE RANGE ROSEMOUNT 176KS RC 1010 4 W27 O-LT-RS-251B TRANSMITTER, CONT WATER LEVEL GEMS XM-36920 RS 1333 4 20 Gr1 1 LT-RS-251A TRAN!MITTER, cot 4T WATER LEVEL GEMS XM-36920 RS 1333 4 20  ? b% hi MOV-RS-255B NOV, RECIRC SPRAY SUCTION LIMITORQUE REL NTR-BI RS 1242 35 23

                                                                                                                                                                                                                         }_

MOV-RS-256A MOV, RECIRC SPRAY DISCH . LIMITORQUE REL MTR-BI ES 1042 35 23 , NOV-RS-256B NOV, RECIRC SPRAY DISCH LIMITORQUE REL MTR-BI RS 1242 35 23 MOV-RS-255A MOV, RECIRC SPRAY SUCTI0tt LIMITORQUE REL NTR-DI RS 1242 35 23 O 2-RS-P-1A PUMP, ItiSIDE RECIRC. SPRAY

  • GENERAL ELECTRIC SK6319XJ1D RS 1355 35 28 e

2-RS-P-1B CUMP. INSIDE RECIRC. SPRAY GENERAL ELECTRIC SK6319XJ1B RS 1355 3 28 O 2-if5-P-1A PUT1P, IllSIDE RECIRC. SPRAY GENERAL ELECTRIC SK6319XJ10 RS 1355 35 29 O 2-RS-P-1B PUMP INSIDE RECIRC. SPRAY GENERAL ELECTRIC SK6319XJ1B RS 1355 3 29 g v _ 2-RS-P-28 PUMP, RECIRC. SPRAY GENERAL ELECTRIC SK6319XJ1B RS 1127 3 44 e 2-RS-P-2A PUT1P, RECIRC SPPAY GENERAL ELECTRIC SK6319XJ10 RS 1127 3 44 LIT-RS-251A TRANSMITTER, C0 tit WATER LEVEL GENS RE31320/31 RS 1333 4 49 LIT-RS-2518 TRANSMITTER, C0 tit WATER LEVEL GEMS RE31320/31 RS 1333 4 49 - _ _ NOV-RS-200A F10V, SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE REL MTR-BI RS 1242 35 57

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O e 11

a3 O O DATE 8/20/81 VIRGIt4I A ELECTRIC AtlD POWER C0t1PANY PAGE 31 fl0RTH AlltlA PCWER STATION UtlIT 2 bm EQUIPMEllT QUALIFICATICfl MASTER LIST SYSTEt1/ FILE SORT CFDER 12345678901234 NOV-RS-201B F10V, SUPPLY VALVE CC RECIRC SrRAY lit 11 TORQUE REL t1TR-BI RS 1242 35 57 O-MOV RS-2008 MOV, SUPPLY VALVE CC RECIPC SPRAY LIMITORQUE REL MTR-BI RS 1242 35 57 4 MOV-RS-201A MOV. SUPPLY VALVE CC RECIPC SPRAY LIMITORQUE REL MTR-BI RS 1242 35 57 2-RS-P-3S PUMP, CASING CLG RECIRC SPRAY PUT1P LAWERANCE PUMP 8 ENG 6X8HDD-M RS 1538 35 *N/A 2-RS-P-3A PUMP, CASING CLG RECIRC SPRAY PUT1P LAWERANCE PUt1P & Et4G 6X8HBO-M RS 1538 35 *t1/A O, O MOV-2860B t10V, LHSI DUMP SUCTION lit 1ITORQUE REL-RH INS SI 1010 23 5 WO5 NOV-2860A F10V, LHSI PUMP SUCTIOf1 LIMITORQUE REL-RH INS SI 1010 23 5 WC5 MOV-2885B MOV, LHSI RECIRC VALVE LIMITORQUE REL-RH IttS SI 1010 23 5 WO5 NOV-2885A MOV, LHSI RECIRC VALVE LIMITORQUE REL-RH INS SI 1010 23 5 WOS bf. MOV-28908 t10V, LHSI lit 4E STOP VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 WOS h5 p MOV-2890A MUV, LHSI LINE STOP VALVE LIMITORQUE E LTRC L-HI SI 1010 23 5 WOS m? V Wj MOV-2862B t10V, LHSI PUt1P SUCTI0ti LIMITORQt;E PEERLSS-BI SI 1010 23 5 W11 _ MOV-E862A MOV, LHSI PUt1P SUCTION LIMITORQUE PEERLSS-BI SI 1010 23 5 Wil = Z-SI-P-1B PUMP, LOW HEAD SAFETY INJECTION WESTINGHOUSE ARDP SI 1010 2 5 W13 2-SI-P-1A PUMP, LOW HEAD SAFETY INJECTION WESTINGHOUSE ABDP SI 1010 2 5 W13 ttOV-28(34 MOV, LHSI DISCH VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 W14 NOV-2863B MOV, LHSI CISCH VALVE LIMITORQUE REL NTR-BI SI 1010 23 5 W14 MOV-2864A MOV, LHSI DISCH VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W15 t10V, LHSI DISCH VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W15 O~ MOV 28648 O _NOV-2869A MOV, CHARGING PUMP SI STOP VALVE LIMITORQUE REL FITR-BI SI 1010 El 5 W18 MOV-2869B MOV, CHARGING PUMP SI STOP VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 W18 be hi FT-2940 TRANSMITTER, SI HEADER FLCW HOT LEG BARTON 334 SI 1010 f .43 m FT-2943 TRAN3MITTER, BORON INJ, TK. HEADER FLOW BARTON 384 SI 1010 W23 U h _NOV-2867C t10V, CHARGING PUt1P STOP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W24

tJU g DATE 6/2 VIRGINIA ELECTRIC AND POWiu- Ot1PANY PAGE 32 - NORTH AfDIA POWER STATI0tl LHIT 2 FQUIPriEtiT GUALIFICATI0tl MASTER LIST h SYSTEN/ FILE SORT ORDER 12345678901234

        "~**                    " "' '"*" '"' """ *' " ""'                                      ' """'                              " " "'"~        *~        " ' '        "*'

C) O N0Y-2867D ' tiOV, CHARGING PUt1P STOP VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 W25 NO7-2867A NOV, CHARGING PUt1P STOP VALVE LIMITORQUE REL F1TR-BI SI 1313 23 5 W25 G3 G MOV-2865B t10V, ACCUr1ULATOR TANK k COLD LEG LIMITOLGUE SI 1010 23 5 H28 m NOV-2865A NOV, ACCUt1ULATCR tat 1K 1 COLD LEG lit 1ITORQUE SI 1010 23 5 W28 U h NOV-2865C NOV, ACCU!1ULATOR TANK 3 COLD LEG

  • LIMITORQUE SI 1010 23 5 W28 MOV-2836 ft0V, COLD LEG CIRC VALVE LIMITORQUE SI 1010 23 5 W29 SOV-2884C SOV, BORON INJECTION TAttK TO BATCH TK ASCO LBS31654 SI 1010 23 5 W30 f3 SOV-2884A SOV, BOR0ff IllJECTIOtt TANK TO BATCH TK ASCO LB831654 SI 1010 23 5 W30 g V WE SOV-28843 SOV, BORON INJECTION TA!!K TO BATCH TK ASCO LB831654 SI 1010 23 5 W30 h I

s MOV-28850 ff0V, LHSI RECIRC TO CHARGIttG PU!iP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W38 h ;" t10V-2885C ff0V, LHSI RECIRC TO. CHARGING PUNP VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 W38 f k MOV-2890C F10V, CHARGING PUMP SUCT. FRON VCT LIMITORQUE REL NTR-BI SI 1010 23 5 W39 - NOV-28900 t10V, LHSI LINE STOP VALVE LIN1 TORQUE REL NTR-BI SI 1010 23 5 W39 TV-SS-202A SOV, PRIMARY COOLANT COLD LEG CotiT ISO VALCOR V526568319 SS 34670 1 T11 be TV-SS-203A 34670 h SOV, RHR SAT 1PLING C0t4TAINNENT ISOLATI0tl VALCOR V526568319 SS 1 T11 g TV-SS-2080 SOV, PRIttARY COOLANT HOT LEG CONT ISO VALCOR V526568319 SS 34670 1 T11

  • g V W TV-SS-209A SOV, PRINARY CCOLANT COLD LEG CONT ISO VALCOR V526568319 SS 34670 1 Til TV-SS-206A SOV, PRIt1ARY COOLANT HOT, LEG C0t1T ISO VALCOR V526568319 SS 34670 1 T11 0- SOV, CONT ATt105 SNPL FROM CONT - CONT ISO VALCOR V526568319 SS 34670 1 T12 9

_ N2-XCV-1402A n H2-XCV-14235 SOV, CO!4T atrio 3 St1PL FRot1 Colli - CONT ISO VALCOR V526568319 SS 34670 1 T12 U-t12-XCV-1402B SOV, C0!1T ATt103 SNPL FROM C0t4T - CCHT ISO VALCOR

  • V526568319 SS 34670 1 T12 h

g3 U N2-XCV-1423A SOV, CONT ATif03 SMPL FROM C0t1T - CONT ISO VALCOR V526568319 SS 34670 1 T12 i-W _ TV-SS-206B SOV, PRINARY COOLANT HOT LEG COtlT ISO VAL. V526568319 SS 34670 1 TIL O - O Og , e

UU O O DATE 0/20/81

  • VIRGINIA ELECTRIC #ND POW 2R COMPAtif PAGE 33 NORTH AN!IA POWER STATIOt1 UNIT 2 b- EQUIPt1ENT GUALIFICATION MASTER LIST h SYSTEM / FILE SORT b, MARK t10. DESCRIPTIOt1 t1ANUFACTURER MODEL NO. SYS PURCH. ACCIDENT FUNCT FILE Pt.GE h ORDER 12345678901234 g TV-SS-2028 SOV, PRIMARf C00LAtiT COLD LEG CONT ISO VALCOR V526568319 SS 34670 1 T12 m V W TV-SS-2038 SOV, RHR CUTBOARD CONTAlte1ENT ISOLATI0tl VLLCOR V526568319 SS 34670 1 T12 TT-SS-207A SOV, RHR CUTLET sat 1PLING CCtlT ISO' VALCOR V526568319 SS 34670 4 T13 O- 9 TT-SS-2078 SOV, RHR INLET sat 1PLIt!G CONT ISO VALCOR V526568319 SS 34670 4 T14 o ZS-SS-20P LIMIT SWITCH, PR C00Lt1T NOT LEG C0 TIT ISO GORDOS t1R8901 SS 34670 TIS U $

ZS-S? -2 LIr1IT SWITCH, PR COOLNT COLD LEG cot 1T ISO GORDOS MR8901 SS 34670 TIS Z' -209A-1 lit 11T SWITCH, PR COOLNT COLD LEG CONT ISO GORDOS t1R8901 SS 34670 T15 0e 9 43-SS-206A-1 LIMIT SWITCH, PR COOLNT HOT LEG CONT ISO GORDOS MR8901 SS 34670 TIS n ZS-SS-20SD-2 LIMIT SWITCH, PR COOLNT HOT LEG CONT ISO GORDOS MR8901 SS 34(.70 TIS V

  • h5 ZS-SS-203A-1 LIMIT SWITCH, RHR sat 1PLING CCHT ISO GORDOS tiR8901 SS 34670 TIS ZS-SS-203A-2 LIMIT SWITCH, RHR sat 1PLING CONT ISO GORDOS MRS901 SS 34670 T15 h!

ZS-SS-202A-2 lit 1IT SWITCH, PR COOLHT COLD LEG CONT ISO GORDOS t1R8901 SS 34670 T15 _ m ZS-SS-2020-1 LIMIT SWITCH, PR COOLNT HOT LEG CONT ISO GOPDOS t1R8901 SS 34670 TI5 g= V w ZS-SS-C02A-1 LIMIT SWITCH, PR COOLNT COLD LEG CONT ISO GORDOS MR8901 SS 34670 T15 Z3-SS-14238-2 LIMIT SWITCit, CNT ATriS St1PL TO CtIT IS V MR8901 SS 34670 T16 GORDOS g Z3-SS-1423A-2 lit 1IT SWITCH, CNT ATriS SMPL TO CNT IS V GORDOS MR8901 SS 'A670 T16 ZS-SS-1402A-1 Lir1IT SWITCH, Ct1T ATMS Sf1PL FROM CNT IS V GORDOS t1R8901 SS 34670 T16

  • Oe 9 ZS-SS-1423A-1 lit 1IT SWITCH, Ctli ATMS SMPL TO CNT IS V GORDOS MR8901 SS 34670 T16 g ZS-SS-1402A-2 lit 1IT SWITCH, CNT ATriS SMPL FROM CNT IS V GORDOS t1R8901 SS 34670 T16 m v W

_ ZS-S*.,-14028-1 LIMIT SWITCH, CNT ATMS ST1PL FRott CNT IS V GORDOS F1R8901 SS 34670 T16 Z5-53-14238-1 LIMIT SWITCH, CNT ATMS SttPL TO CNT IS V CORDOS MR8901 SS 34670 T16 ZS-SS-1402B-2 LIMIT SWITCH, CNT ATMS SMPL FROM CitT IS V GORDOS t1R8901 SS 34670 T16 ZS-SS-2023-1 LIMIT SWITCH, PR C00LHT COLD LEG C0t1T ISO GORDOS MR8901 SS 34670 T16 0e 9 _ Z3-SS-2068-1 LIMIT SWITCH, PR C00LtIT HOT LEG C0 TIT, ISO GORDOS P1R8901 SS 34670 T16 O e o # # # e 11

58 (3 w.) Q.J V DATE G/2Lui VIPGIllIA ELLCiRIC APID POWie dOMPANY PAGE 34 q v t10RTH Afft1A POWER STATION UNIT 2 EQUIPt1ENT QUALIFICATI0t1 MASTER LIST g SYSTEM / FILE SORT ORDER 12345678901234 34670 ZS-SS-2028-2 LIMIT SWITCH, PR C00LtiT COLD LEG C0!IT ISO CORDOS ttR8901 SS T16 g ZS-SS-2033-2 LIMIT SWITCH, RtR OUT20ARD CONT 150 CORDOS MR8901 SS 34670 T16 ZS-SS-2038-1 LIMIT SWITCH, RHR OUTBOARD C0tlT ISO GORDOS MR8901 SS 34670 T16 g ZS-SS-2068-2 LIMIT SWITCH, PR C00Lt4T HOT LEG CONT ISO GCRDOS NR8901 SS 34670 T16 T17 ZS-SS-207A-1 LIMIT SWITCH, RHR OUTLET SMPLNG CNT ISO V GORDOS MR8901 SS 34670 g ZS-SS-207A-2 LIMIT SWITCH, RHR CUTLET SMPLNG Ct1T ISO V GORDOS NR8901 SS 34670 T17 ZS-SS-2078-2 LIMIT SWITCH, RHR IllLET SMPLNG CNT ISO V GORDOS MR8901 SS 34670 TIS ZS-SS-2078-1 LIMIT SWITCH, RHR IllLET SMPLNG CNT ISC V GORDOS ttR8901 SS 34670 TIS 2-SW-P-5 PUt1P, RADIATION ff0tlITOR , MARATHON ELECT. 8H56T17D51 SW 1083 4 41 2-SH-P-6 PUMP, RADIATION MONITOR NARATHON ELECT. 8M56T17D51 SW .1083 4 41 h i p 2-SW-P-7 PUMP, RADIAT!0t4 Mot 41 TOR NARATHON ELECT. 8H56T17D51 SW 1083 4 41 7 V 2-5W-P-8 PUMP, RADIATI0t4 Mot 4ITOR HARATHON ELECT. 56T170516 SW 1083 4 41 h! _ p MOV-SW-205C NOV, RECIRC SPRAY HEAT EXC. HEADER OUTLET LIMITORQUE PEL MTR-BI SW 1194 35 50 d h. MOV-SW-205B t10V, RECIRC SPRAY HEAT E AC. HEADER CUTLET LIMITORQUE REL MTR-BI SW 1194 35 50 NOV-SW-201D MOV, RECIRC SPRAY HEAT EXC. HEADER IllLET LIMITORQUE REL MTR-BI SW 1194 35 50 bf-NOV-SW-205D MOV, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORQUE REL NTR-BI SW 1194 35 50 h MOV, RECIRC SPRAY HEAT EXC. HEADER INLET LIMITCRQUE REL NTR-BI SW 1194 35 50 O- MOV-SW-201C NOV-SW-203B MOV, SERVICE WATER TO "ECIRC SPRAY COOLER LIMITORQUE REL HTR-BI SW 1194 35 50 h HOV-SW-201B MOV, RECIRC SPRAY HEAT EXC. HEADER INLET Lit 1ITORQUE REL NTR-BI SW 1194 35 50 (,s) NOV, RECIRC SPRAY HEAT EXC. HEADER OUTLET lit 11 TORQUE REL t1TR-BI SW 1194 35 50 h _ NOV-SH-206B NOV-SH-205A MOV, RECIRC SPRAY HEAT EXC. HEADER OUTLET LIttITORQUE REL MTR-BI SW 1194 35 50 NOV-SW-204A MOV, SERVICE WATER FROM RECIRC SPRAY CLR LIMITORQUE REL HTR-BI SW 1194 35 50 NOV-SH-206A MOV, RECIRC SPR AY HEAT EXC. HEADER OUTLET LIMITORQUE REL HTR-BI SW 1194 35 50 - _ MOV-SW-201A MOV, RECIRC SPRAY HEAT EXC. HEADER IHLET LINITORQUE REL NTR-BI SW 1194 35 50 Og h

O O DATE 6/20/81 VIRGINI A ELECTRIC AND POWER C0f1PANY PAGE 35 m t;0RTH ANNA FCMER STATION Ut(IT 2 d EQUIPMEllT QUALIFICATICH MASTER LIST SYSTEt1/ FILE SORT h ORDER 12345678901234 MOV. SERVICE WATER FROM RECIRC SFPAY CLR lit 11 TORQUE LitTTRGE-BI SW 1194 35 52 o- MOV-SW-204B MOV-SW-203C MOV SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LHTTRQE-BI SW 1194 35 52 e MOV-SW-203A MOV, SERVICE WATER TO RECIRC SPRAY COOLER lit 11 TORQUE LMTTRQE-BI SW 119(+ 35 52 MOV-SW-204C MOV, SERVICE WATER FR0t1 RECIRC SPRAY CLR LItfITORQUE LHTTRGE-BI SW 1194 35 52 g MOV-SW-2030 MOV, SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LMTTRQE-BI SW 1194 35 52 g V w t1GV-SM-2040 NOV SERVICE WATER FR0t1 RECIRC SPRAY CLR LIMITORQUE LHTTRQE-BI SW 1194 35 52 MOV-SW-208B MOV. INLET HEADER VALVE LIMITORQUE REL MTR-BI SW 1194 3 53 MOV-SW-208A MOV. INLET HEADER VALVE LIMITORQUE REL t1TR-BI SW 1194 3 53 N0Y-SH-2138 MOV, FUEL PIT COOLER VALVE LIMITORQUE REL HTR-BI SW 1194 3 53 MOV-SW-213A MOV, FUEL PIT COOLER VALVE LIMITORQUE REL HTR-BI SW 1194 3 53 y I SOV-SW-201A-1 SOV. AIR COOLER EMERG SUPPLY ASCO HC830281U SW 1125 3 70 C3; SOV-SW-2018-2 50V, AIR CDOLER EMERG SUPPLY ASCO EllGM SW 1125 3 70 e?i

                                                                                                                                                                                                                                                        ]

SOV-SW-201A-2 SOV. AIR COOLER Et1 ERG SUPPLY ASCO HSS30281U SW 1125 3 70 . 50V-SW-2018-1 SOV. AIR COOLER EMERG SUPPLY ASCO E11GN SW 1125 3 70 MOV-SW-214B NOV, RECIRC. AIR COOLING COILS lit'ITORQUE LMTTRQE-BI SW 1194 73 fm O MOV-SW-210B MOV, RECIRC. AIR COOLING COILS LIMITORQUE L*1TTRQE-BI SW 1194 3 3 73 e MOV-SW-214A MOV RECIRC. AIR COOLING COILS lit 11 TORQUE Lt1T TRQE-BI SW 1194 3 73 MOV-SW-210A MOV, REC 1RC. AIR COOLING COILS LIMITORQUE LHTTRQE-BI SW 1194 3 73 MOV-SW-117 MOV, CIRC WTR SW PUMP ISOLATION LIMITORQUE SW 194 23 5 PN/A _ MOV-SW-ll4A MOV, RCCIRC. AIR C00 Lits (DILS LIMITORQUE SW 194 3 *H/A t10V-SW-118 t10V, CIRC WTR INTAK2 TO SW PUMP LIMITORQUE SW 194 23 5 *H/A MOV-SW-110A MOV, RECIRC. AIR COOLING COILS LIMITORQUE SW 194 3 *H/A

 ,      MOV-SW-114B                                                 NOV, RECIRC. AIR C00 LIM COILS                                                    LIMITORQUE                                   SW  194                              3 *H/A

_ NOV-SW-115B N0Y, AUX SW PUt1P ISO VALVE LIMITORQUE SW 194 23 5 *N/A o 8' # # e

g. O O O ( p >p G b r < DATE C/2 L. VIPGINIA ELECTRIC AND F0Wi M OMPAN( PAGE 36 d. tiCRTH Atit4A POWER STATI0ti UNIT 2 O EQu1Pf1Etii QUitirICATICri t1* STER tISr h SfSTEM/ FILE SORT ORDER 12345678901234 MOV-LW-115A MOV, AUX SW PUtiP ISO VALVE LIMITORQUE SW 194 23 5 *N/A MOV-SW-1004.

  • MOV, SW RETURN TO RERVOIR ISOLATI0ti LIMITORQUE SW 194 23 5 *ti/A MOV-SW-1108 MOV, PECIRC. AIR COOLIt!G COILS LIMITORQUE SW 194 3 *ti/A Gs MOV, SW RETURtl TO RERVOIR ISOLATION h

MOV-SW-100B LIMITORQUE SW 194 23 5 *ti/A p MOV-SW-119 MOV, MAKE-UP ISOLATION LIMITORQUE SW 194 23 5 *H/A d NOV, MAKE-UP ISOLATI0tJ *H/A h MOV-SW-219 lit 1ITORQUE SW 1194 23 5 MOV-SH-215A MOV, AUX SW PUt1P ISO VALVE LIMITORQUE SW 1194 23 5 *

  • f/A b>g MOV-SW-220B NOV, SW TO CIRC TUtit1EL LIMITORQllE SW 119'6 3 *ti/A h

MOV-SW 200A MOV, SW RETURN TO RESERVOIR ISOLATICN LIMITORQUE SW 1194 23 5 *N/A (q/ h[S MOV-SW-217 MOV, CIRC WTR SW PUt1P ISOLATION LIMITCPQUE SW 1194 23 5 *N/A t10V-SW-2 M A t10V, SW TO CIRC TUtiNEL LIMITORQUE SW 1194 3 *N/A 7 Os hi MOV-SW-2158 f10V, AUX SW PUMP ISO VALVE Lt1ITORQUE SW 1194 23 5 *H/A 1 3 g MOV-SW-2006 't0V, SW RETURti TO RESERVOIR ISOLATION LIMITORQUE SW 1194 23 5 *N/A O RM-SW-226 RADIATID?4 Mot 4ITCRS, SW RAD MONITORS WESTINGHOUSE 1655 SW 1200 4 *tt/A h. RM-SW-224 RADI ATIOf1 t10NITORS. SW RAD MCt1ITORS WESTINGHOUSE 1655 SW 1200 4 *H/A RN-SW-225 RADIATION MONITORS, SW RAD HCtlITORS WESTINGHOUSE 1655 SW 1200 4 *H/A RM-!W-227 RADIATI0tlt10HITORS, SW RAD F10t4ITORS WESTINGHOUSE 1655 SW 1200 4 *H/A O TV-SW-101B EtiER SUP, TO CCliTAINMENT AIR COOLER FISHER SW 1125 3 *ts A h g TV-SH-101A EMER SUP, TO CONTAItif1ENT AIR COOLER FISHER SW 1125 3 *N/A C Et1ER SUP, TO CONTAltiMENT AIR COOLER FISHER SW 1125 3 *ti/A h _ TV-SH-201B

 . TV-SW-201A                       Et1ER SUP, TO CONTAINt1EtiT AIR COOLER                                                     FISHER                                SW       1125                      3 *ti/A 1-SW-P-1B                       PUMP, SW PUMP MOTOR D                                                                      WESTIt!GHOUSE                         SW       1059       23 5             *ti/A 1-!W-P-1A                       PUMP, SW PUMP F10 TOR A                                                                    WESTINGHOUSE                          SW       1059       23 5             *tt/A               -
          -SW-P-4                       PUt1P, AUX SERVICE WATER PUMP                                                              WESTIt!GHOUSE                         SW       1059       23 5             *N/A O                                                                                                                                                                                                                              h O                                                                                                                                                                                                                              h

O O DATE 8/20/81 VIRGINIA ELECTRIC AtlD PCWER COMPANY PAGE 37 flORTH Atit!A FOL:ER STATION UtlIT 2 O EcuIrnEni cuAurICArIDH niSrER uST SYSTEM / RILE SORT 4 ORDER 12345678901234 1-SW-S-1B STRAINER, SW TRAVELIrlG WATER SCREEtlS WESTIllGHOUSE SW 1058 23 5 *N/A 1-SW-S-1A STRAINER, SW TRAVEL 1tiG WATER SCREENS WESTI!2GN00*E SW 1058 23 5 *tt/A 2-EG-P-2HA PUMP, EMERGEi4CY GEN 2H rUEL OIL PUMP DELAVAL TURBIllE SW 0812 8

  • ti/A 2-SW-P-1B PUMP, SW PUMP MOTOR B WESTINGHOUSE SW 1059 23 5 *H/A 2-SM-P-1A PUMP, SW PUMP MOTER A MESTIt!GHOUSE SW 1059 23 5 *tVA 2-SW-P-4 PUMP, AUX SERVICE WATER PUFF WESTIttGHOUSE SW 1059 23 5 *H/A 2-SW-S-1A STRAINER, SH TRAVELIllG WATER SCREENS lit 1K EELT CO. SW 1058 23 5 *N/A 2-SW-S-1B STRAINER, SW 1 RAVELING MATER SCREE,NS lit:K BELT CO. SW 1058 23 5 *tt/A O 872 RECORoS vaINTro eri O . ei=

e O O O e O e O e O e O e W O e II -

O O DATE G/20/81 VIRGINIA ELECTRIC AND FOWER COMPANY PAGE 1 m V flCRTH At:ttA PCWER STATIOtt UNIT 2 EQUIFMENT GUALIFICATICH t1 ASTER LIST m W MAFK tilRfCER SCRT ORDER 12345678901234 E/P FC-2122 E/P. CHARGIt1G FLOW C0tiTROL COPES-VULCAN CH 61 EP HCV2186 E/P FOR HAND CONTROL VALVE HCV-2186 FISHER 546 W31 FS-ED-20IB FLCW SWITCH. STM GEN BLWDN TO TK BARTON 28SA ED 1257 6 *N/A dc h FS-CD-203D FLCW SWITCH, STM GEN BLMDN TO TK BARTOtt 28SA CD 1257 6 *tVA q FS-CD-203F FLOW SWITCH. STM GEi1 BLWDN TO TK BARTON 288A CD 1257 6

  • tt/A a V W FS-CD-203G FLOW SWITCH STM GEN BLWDN TO TK BARTON 28SA BD 1257 7 *tVA FS-CD-203H FLOW SWITCH, STM GEN BLMDN TO TK DART'1 288A CD 1257 7 *tVA be h FS-ED-203J FLOW SWITCH. STM GEN BLWDN TO TK BARTON teSA ED 1257 7 *tVA FS-HV-2207A FLCW SWITCH. BATTERY ROOM 2-1 VENT FLUID COMP 12-64-3 HV FIELD 9 *H/A FS-HV-22078 FLOW SWITCH. DATTERY ROCM 2-2 VENT FLUID COMP 12-64-3 HV FIELD 9
  • tVA FS-HV-2207C FLOW SWITCH. EATTERY ROOM 2-3 VENT FLUID COMP 12-64-3 HV FIELD 9
  • tVA
!         FS-HV-2207D                   FLOW SWITCH BATTERT R00'12 4 VENT                                                FLUID COMP                       12-64-3             HV   FIELD               9           *tVA FT-FW20t,A                    'RAtiSMITTER. AUX. TDWTR. DISCHARGE                                              FOXCORO                          E130M                FW           4                      *tVA 1

dly- g FT-FW2003 'NSMITTER. AUX. FDWTR. DISCHARGE FOXE'ORO E13DM FW 4 *tVA FT-FW200C J TTER. AUX. FCWTR. CISCHARGE FOXCORO E13DM FW 4 *N/A FT-2414 " WCTTER. REACTOR COOLANT FLOW L1 FOXDORO E13DH RC 1010 2 5 WOI n FT-2H 3 1RAN5MITTER, REACTOR COOLANT FLCW L1 FOXEORO E130H RC 1010 2 5 WO1 O FT-::416 TRANSMITTER, REACTOR COOLANT FLOW L1 FOXBOPO E13DH RC 1010 2 5 WO1 h FT-2424 TRANSMITTER. REACTCR COOLANT FLOW L2 FOXBORO E130H RC 1010 2 5 W31 _FT-2425 TRANSMITTER. REACTOR COOLANT FLOW L2 F02CR0 E13DH RC 1010 2 5 WO1 FT-2426 TRANSMITTER. REACTOR COOLAt4T FLOW L2 FOXBORO L130H RC 1010 2 5 WD1 , FT-2434 TRANSMITTER. REACTOR COLLANT FLOW L3 FOXEORO E13DH RC 1010 2 5 WOI p FT-2435 TRANSMITTER. REACTOR COLLANT FLOW L3 FOXCORO E130H RC 1010 2 5 t*21 o TRANSMITTER REACTOR COLLANT FLCW L3 FOXEOPO E13DH RC 1010 2 5 WO1 h _FT-2436 O h u O. O O h II ---- -------- _ __

0' q p O DATE 0/2 A 1 VIRGINIA ELECTRIC AND FOW k iOMPANY PAGE 2 (') v t:0RTH At:NA F0WER STATION UNIT 2 C- EQUIFitENT GUALIFICATIDH MASTER LIST MARK NUttDER SORT h ORDER 123 5678901234 L.._____..___ ...______.....__________________.__._.... ..............______ ______. __ ___ ...... .._____...... ..... .... FT-2474 TRANSMITTER, STEAM GEN. FLOW POSEtt0UNT 2DP6A930P 1486 23 5 35 O. FT-2475 , TRANSMITTER, STEAM GEN. FLOW ROSEMOUNT 2DP6A93DP MS tts 1486 23 5 35 e FT-2484 TRANSMITTER, STEAM GEN. FLOW ROSEtt0UNT 2DP6A930P MS 1486 23 5 35 FT-2485 TRANSMITTEF, STEAM GEN. FLOW ROSEMOUNT 2DP6A930P MS 1486 23 5 35 g FT-2494 TRANSMITTER, STEAM GEN. FLOW ROSEtt0UMT 2DP6A93DP MS 1486 23 5 35 v FT-2495 TRANSMITTER, STEAM GEH. FLOW ROSEtt0Ut4T 2DP6A93DP MS 1486 23 5 35 9 FT-2940 TRANSMITTER, SI HEADER FLOW HOT LEG 384 SI 1010 O FT-2943 TRANSMITTER, 00RCH IHJ, TK. HEADER FLOW BARTON DARTON 384 SI 1010 W23 W23 e

  • HC-2186 E/P FOR SEAL WATER FLOW CONTROL CH 2 5 *H/A

. O, HCV-FW-200A LIMIT SWITCH, FW CONTROL TO STEA*1 GEN 1 A HAMCO FW 1125 57 *N/A 9 HCV-FW-200B LIMIT SWITCH, FW CONTROL TO STEAM GEH IB HAttCO FW 1125 57 *H/A

  • tt/A HCV-FW-200C lit 1IT SWITCH, FW CONTROL TO STEAM GEN IC HAMr" FW 1125 57
 >n          HCV-2200A                       LIMIT SWITCH, REGEN. HEAT OUTLET                                                    NAMCO                           EA-180     CH  1010     1                             WO4 V                                                                                                                                                                                                                           h HCV-2200D                       LIMIT SWITCH, REGEN. HEAT DUTLET                                                    tlArtCO                         EA-180     CH  1010     1                             WO4 m     HCV-2200C                       LIMIT SWITCH, REGEN. HEAT CUTLET                                                    NAMCO                           EA-180     CH  1010     1                             WO4         m V                                                                                                                                                                                                                           W H2A-HC-100                      HYDROGEH \tlALYZER                                                                  DENDIX                          E-10SS     HC  1332           4                         42 H2A-HC-200                      HYDROGEN ANALYZER                                                                   bet: DIX                        E-10SS     HC  1332           4                         42 H2A-HC-201-1                   HYDROGEN ANALYZER                                                                   C0ftSIP-DELPHI        .         K III      HC                                         T19 n     H2A-HC-201-2                   Hf0ROGEN ANALYZER                                                                   CortSIP-DE LPHI                 K III      HC                                         T19 u                                      LCV, LCOP 1 LETDOWN LINE CONT. VV                                                  HArtCO                          EA-180      CH 9

_ LCV-2460A 1 *tt/A LCV-2460B LCV, LOOP 2 LETDOWN lit:E CONT. W HAttCO EA-180 CI 1 *tt/A LIT-RS-251A TRANSMITTER, CONT WATER LEVEL GEMS RE31320/31 RS 1333 4 49 LIT-RS-251B TRANSMITTER, CONT WATER LEVEL GEMS RE31320/31 RS 1333 4 49 _ LHC CABLE, HARDLINE COAXIAL LOW NOISE CAOLE ENDEVCO 3075tt6 RC 1605 4 T04 O O O 9

O O' DATE 8/20/81 VIRGIt3IA ELECTRIC At1D POWER COMPAtlY PAGE 3 l n i;0RTH AttflA POWER STATI0t1 UtlIT 2 i U EQUIPt1Ef4T GUALIFICATION NASTFR LIST NAPK I;Uf1 DER SCRT i HARK tiO. DESCRIPTICH t1Af;UFACTURER P100EL t10. SYS PURCH. ACCIDElli FUC T FILE PAGE h ORDER 1234M78901234 LQ/LS-DA210A PWR SUP S SWTCH, CONT SUMP LVL liRRW RtJGE GENS RE-39425 DA 1333 4 T10 LQ/LS-DA2108 PWR SUP S SWTCH, C0!iT SUt1P LVL t:RRW Rt1GE GEt13 RE-42880 DA 1333 4 T10 m LT-DA210A TRAtlSMITTER. CONT SUMP LVL tlARROW rat 1GE GEt1S XN-36496 DA 1133 4 TOS m L/ W LT-DA210B TRAtiSNITTER C0t4T SUMP LVL HARROW rat 1GE GENS Xit-36496 DA 1133 4 T08 LT-QS-200A TRANSMITTER, RF WATER STORAGE TAtlK FOXDORO E13DH QS 1215 35 *H/A LT-QS-2008 TRAtlSNITTER. RF WATER STORAGE tat:K FOXCORO E130H QS 1215 35 *H/A LT-GS-200C TRAtist1ITTER. RF WATER STORAGE TAtIK FOXBOPO E13DN QS 1215 35 *H/A LT-GS-2000 TRAtlSNITTER. RF WATER STORAGE tat 4K FOXECR0 E13CH QS 1215 35 *H/A TRAtlSt1ITTER. C0tti WATER LEVEL GEtis XN-36920 RS 1333 4 20 f3 LT-RS-251A h. l U LT-RS-251B TRAtlSt1ITTER. CONT tlATER LEVEL GEt13 Xti-36920 RS 1333 4 20 LT-2459 TRAtist1ITTER PRESSURIZER LEVEL BARTON 764 RC 1010 23 5 WO2 E bs h. l

 ~

LT-2460 TRAt1SMITTER. PRESSURIZER LEVEL BARTON 386/752 FC 1010 23 5 WC2

   .s LT-2461        TRAtiSHITTER. PRESSURIZER LEVEL                                   BART0ti              386/752 2DP4A92PB RC FW 1010 1486 23 5 5

WC2 71 e

LT-2474 TRAtiSNITTER. STEAtt GEH. LEVEL ROSEtt0Ut4T LT-2475 TRAt4SNITTER. STEAN GEH. LEVEL ROSEN0Ut1T 2DP4A92PB FW 1486 5 54 LT-2476 TRANSt1ITTER. STEAN GEtl. LEVEL ROSEt10UtiT EDP4A92PB FW 1486 5 71 LT-2484 TRAt1SNITTER. STEA?1 GEN. LEVEL ROSEN0UNT 2DP4A92PB FW 1486 5 54 LT-2485 TRAtist1ITTER. STEAN GEtl. LEVEL ROSEt10UNT 2DP4A92PB FW 1486 5 54 LT-2486 TRAtJSt!ITTER. STEAtt GEH. LEVEL ROSEt10Ut1T 2DP4A92PB FW 1480 5 71 TRAL 4SMITTER. STEAN Gell. LEVEL ROSEt!OUtiT 2DP4A92PD FW 1486 5 71

_ LT-2494 o- LT-2495 TRANSt1ITTER. STEAN GEN. LEVEL ROSEt10UNT ROSEMOUNT 2DP4A92PB 2054A92PB FW FW 1486 1486 5 5 71 54 e LT-2496 TRAtlSHITTER. STEAN GEH. LEVEL t100-HV127A-1 N00. SERVICE WATER PUMP HOUSE DANPER HV 4 *H/A t100. SERVICE WATER PUNP HOUSE D ANPER HV 4 *H/A _ NCD-HV127A-2 O O O e O. nn _ _ _ _ _ _ - - _

O m O DATE 8/2 6 1 ( ) e) VIRGINIA ELECTRIC At1D F0WL d OMPAtlY PAGE 4 ( O-NORin ANtiA FOWER STATIOtt UtlIT 2 O EcuIPtiEnr cuAtirICAT10H nASTER 15T MARK tiUtiBER SORT e o CRDER 12345678901234 MOD-HV127A-3 N00. SERVICE WATER FUttP HOUSE DAttPER HV 4 *tt/A MOD-HV127A-4 . MOD. SERVICE WATER FUMP HOUSE DAt1PER HV 4 *fi/A MOD-HV1270-1 t 00, SERVICE WATER FUtiP HOUSE DAt1PER HV 4 *H/A N00-HV1278-2 ft00. SERVICE WATER PUttP HOUSE DAMPER HV 4 *N/A MOD-HV1275-3 MOD. SERVICE WATER FUMP HOUSE DAttPER HV 4 *H/A M00-HV1278-4 ff00. SERVICE WATER FUMP HOUSE DAMPER HV 4 *H/A M03-HV134 M00. SCREENWASH VENTILATION HV 4 *H/A Oe M00-HV135 N00. C0tiTROL RN AC SYSTEM HONEYWELL MS45A1027 HV 6 *H/A h m MOD-HV136 NC" C0tiTROL RM AC SYSTEtt HONEYWELL MS45A1027 HV 6 *H/A ,U M00-HV137 NCD UtlIT 1 RELAY RM AC SYSTEM HONEYWELL M845A1027 HV 9 *H/A h MOD-HV138 tt00. UNIT 1 RELAY Rt1 AC SYSTEM NONEYWELL MS45A1027 HV 9

  • tt/A 1U M00-HV163A HONE)WELL M845A1027 HV 22436 23 1 66 h

QCD CEtiTRAL AREA EXHAUST DISCH DAMPERS 22436

O
.i MOD-HV1638 MOD-HV163C MOD CEt4 TRAL AREA EXHAUST DISCH DAMPERS MOD CEllTRAL AREA EXHAUST DISCH DArtPERS HollEYWELL HONEYWELL MS45A1027 M345A1027 HV HV      22436 23 23 1

1 66 66 e N00-HV235 N00. CCNTROL Rtt AC SYSTEM Hof fEYWE LL M345A1027 HV 6 *ti/A MOD-HV236 tt00. CONTROL RM AC SYSTEM hcl!EYWELL M345A1027 HV 6 *tt/A M03-HV237 MOD, UtfIT 2 RELAY RM AC SYSTEM H0t!EYME LL tt845A1027 HV 9

  • tt/A M00-HV238 MOD. UNIT 2 RELAY Rt1 AC SYSTEM HONEYWELL M845A1027 HV 9 *ti/A O-M00-HV269 MOD. AUX FEEDWATER VENTILATIDH MOD AUY FEEDWATER VENTILATI0tt HV HV 4

4

                                                                                                                                                                                                              *ti/A
                                                                                                                                                                                                              *N/A e

_ MOD-HV270 MOD-HV271A MOD, AUX FEEDWATER VEtiTILATIOff HV 4 *H/A 4 *H/A MOD-HV271B MOD AUX FEEDWATER VEllTILATION HV n MOD-HV272A MCD. AUX FEECHATER VEtiTILATIOli HV 4 *H/A U 4 *H/A h _ MOD-HV272B N00. AUX FEEDWATER VENTILATI0tl HV O e O e

O O DATE 8/20/81 VIRGINIA ELECTRIC AND POWER COMPAtlY PAGE 5 N0dTH ANtlA POWER STATION UtJIT 2 O EQUIPriENT QUALIFICATION MASTER LIST h MARK tu!BER SORT ORDER 12345678901234 MOV-FW-200A tt0V, AUX STEAff GEN F0 PP DISCH LIMITORQUE FW 1125 57 g/ b

                                                                                                                                                                                                                                                   *tt/A g

w MOV-FW-2008 MOV. AUX STEAli GEtt FD PP DISCH LIMITORQUE FW 1125 57 *ti/A n tiOV-FM-200C MOV, AUX STEAM GEtt FD PP DISCH VV LIMITORQUE FW 1125 57 *N/A a V W MOV-HV-104-1 MOV, EMERGENCY CONTROL POOM AC HV 6 *t1/A MOV-HV-104-2 MOV, EttERGENCY CollTROL P00t1 AC HV 6 *N/A MOV-HV-2008 tt0V, RC PURGE SYSTEtt VALVE LIMITORQUE HV 1198 1 59 MOV-HV-2000 MOV RC PURGE SYSTEM EXHAUST lit 1ITORQUE HV 1198 1 59 tt0V-HV-201 it0V, RC PURGE SYSTEtt B1 PASS lit 1ITORQUE HV 1198 1 59 MOV-HV-204-1 tt0V, C0t4 TROL R00tl EttER AIR SUPPLY HV 7 *t1/A MOV-HV-204-2 MOV C0tlTROL R00t1 EMER AIR SUPPLY HV 7 *ti/A g t10V-HV-215-1 MOV FLUSH VALVE LEFT FOR STRAINER RAYMotlD C0t1TROLS 9170K32 HV 1299 6 17 g ~;\J , W t10V-HV-215-2 MOV, FLUSH VALVE RIGHT FOR STRAltlER RAYttortD C0t1TROLS 9170K32 HV 1299 6 17 1 MOV-HV-216-1 MOV, FLUSH VALVE LEFT FOR STRAINER RAYMOND CONTROLS 9170K32 HV 1299 6 17

,U-                                                                                                                                                                                                                                                                                                G tt0V-HV-216-2                                      MOV, FLUSH VALVE RIGHT FOR STRAINER                                          RAYMOND CONTROLS              9170K32       HV      1299                       6                           17 MOV-HV118-1                                       MOV, Ut1IT 1 Ef1ERGEllCY RELAY ROOM AC                                                                                   HV                                       9                  *N/A e
     -s u       MOV-HV118-2                                                                                                                                                                HV                                       o                  *N/A MOV, UtlIT I Et1ERGE!1CY PELAY ROOM, AC MOV-HV200A                                        tt0V, C0t4 TAINT 1ENT SUPPLY                                                 lit'ITORQUE                   REL MTR-BI HV           198                                                  65 n

v MO%-HV200C MOV, C0t1TAItit1ENT PURGE u1MITORQUE REL MTR-BI HV 198 1 1 65 e MOV-HV218-1 tt0V, UtlIT 2 ErfERGEt1CY RELAY ROOM AC HV 9 *ti/A _ HOV-HV218-2 MOV, Ut1IT 2 EttERGEtlCY RELAY ROOM AC HV 9 *N/A tt0V-QS-200A ttOV, REFUELIllG WATER STORAGE TANK LIMITORQUE REL MTR-BI QS 1242 35 74 MOV-QS-2008 MOV, REFUELItJG WATER STORAGE TANK LIMITORQUE REL MTR-BI QS 1242 35 74 MOV-QS-201A MOV. QUENCH SPRAY PUtP DISCH LIMITORQUE REL MTR-BI QS 1242 35 23 _ MOV-QS-201B MOV, QUENCH SPRAY PUttP DISCH LIMITORQUE REL MTR-BI QS 1242 35 23 O e O O O e oil _ _ _ _ _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ _ - - _ - _

1AJ Ou o o q () t DATE C/2 VIRGINIA ELECTRIC AND POW -40MPANY PAGE 6 fl0RTH AtitlA POWER STATI0t1 UtlIT 2 O eQU1rneHT QuALIrICATIOri nASTER LIST # MARK t1 UMBER SORT U HARK tio. DESCRIPTI0tl MAtlUFACTURER tt0 DEL NO. SYS PURCH. ACCIDENT FUtiCT FILE PAGE W CRDER 12345678901234 tt0V, RF WATER CHEM. ADO TAttK LittITORQUE QS 1181 35 *H/A b, tt0V-QS-202A t10V-QS-2028 MOV, RF WATER CHEN ADD tat:K LIMITORQUE QS 1181 35 *H/A h l MOV-RS-200A MOV, SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE REL MTR-BI PS 1242 35 57 l HOV-RS-200B MOV. SUPPLY VALVE CC PECIPC SPRAY LIMITORQUE REL MTR-BI RS 1242 35 57 tt0V, SUPPLY VALVE CC RECIRC SFRAY REL MTR-BI RS 35 57 O. NOV-RS-201A MOV-RS-201B MOV, SUPPLY VALVE CC RECIRC SPRAY LIMITORQUE LItfITORQUE REL MTR-BI RS 1242 1242 35 57 e MOV-RS-255A MOV, RECIRC SFRAY SUCTIO!4 LIMITORQUE REL MTR-BI RS 1042 35 23 fJ.~ G MOV-RS-255B MOV, RECIRC SrRAY SUCTION LIMITORQUE REL MTR-BI RS 1242 35 23 q MOV-RS-256A tt0V, RECIRC SPRAY DISCH LIMITORQUE REL MTR-BI RS 1242 35 23 b h MOV-RS-256B tt0V, RECIRC SPRAY DISCH LIMITORQUE REL MTR-BI RS 1242 35 23 MOV-SW-100A tt0V, SW RETURN TO RERVOIR ISOLATICH LIMITORQUE SW 194 23 5 *H/A t10V, $W RETUR!! TO RERVOIR ISOLATION 23 5

 ~

MOV-SW-1003 LIMITORQUE SW 194 *H/A MOV.SW-1154 tt0V, RECIRC. AIR COOLING COILS LItfITORQUE SW 194 3 *H/A J he h t10V-SM-110B tt0V, RECIRC. AIR COOLING COILS lit 1ITORQUE SW 194 3 *H/A MOV-SW-114A tt0V, RECIRC. AIR COOLING COILS lit 1ITCRQUE SW 194 3 *H/A MOV-SW-114B tt0V, RECIRC. AIR C00'.IHG COILS LIMITORQUE SW 194 3 *H/A MOV-SW-115A tt0V, AUX SW PUMP ISO VALVE - LIMITORQUE SW 194 23 5 *H/A O- 9 MOV-SW-1158 tt0V, AUX SW PUMP ISO VALVE LIMITORQUE SW 194 23 5 *H/A MOV-SW-117 MOV, CIRC WTR SW PUttP ISOLATION LIMITORQUE SW 194 23 5 *H/A _ MOV-SW-118 MOV, CIRC WTR It1TAKE TO SW PUMP LIffITORQUE SW 194 23 5 *H/A tt0V-3W-119 MOV, itAKE-UP ISOLATI0H LIMITORQUE SW 194 23 5 *H/A MOV-SW-200A tt0V, SW RETURei TO RESERVOIR ISOLATION LIMITORQUE SW 1194 23 5 *N/A p fiOV-SM-2008 MOV. SW RETURH TO RESERVOIR 130LATICH LIMITORQUE SW 1194 23 5 *H/A g V w _ MOV-SW-201A MOV, RECIRC SPRAY HEAT EXC. HEADER INLET LIMITORQUE REL MTR-BI SW 1194 35 50 O e 11

 .. g n                                                                                                                                                                                                                                n V                                                                                                                                                                                                                                 U DATE 8/20/81                                                                              VIRGINIA ELECTRIC AND POWER COMPANY                                                                                   PAGE 7 fm,                                                                                                   NORTH ANNA F0WER STATI0tl UllIT 2                                                                                          m U                                                                                                EQUIPMENT GUALIFICATICH MASTER LIST                                                                                             W MARK tlUMBER SORT ORDER     12345678901234 g NOV-SM-201B                             POV. RECIRC SFRAY HEAT EXC. HEADER IllLET                          LIMITORQUE                            REL NTR-BI SW                     1194        35                    50        m V                                                                                                                                                                                                                                W MOV-SW-201C                    , MOV. RECIRC SFRAY HEAT EXC. HEADER INLET                             LIMITORQUE                         . RE L NTR-BI SW                     1194        35                    50 0      t10V-SW-2010 HOV-SW-203A MOV. RECIRC SFRAY HfAT EXC. HEADER IHLET MOV. SERVICE WATER TO BECIRC SPRAY COOLER LIMITORQUE LIttITORGUE                           REL NTR-BI SW LHTTRQE-BI SW 1194 1194 35 35 50 52 e

MOV-SW-203B MOV. SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE REL NTR-BI SW 1194 35 50 MOV-SW-203C MOV. SERVICE WATER TO RECIRC SPRAY COOLER LIMITORQUE LMTTRQE-BI SW 1194 35 52 MOV-SW-2030 110V SERVICE WATER TO RECIRC SPRAY $00LER LIMITORQUE LMTTRGE-BI SW 1194 35 52 MOV-SW-204A tt0V. SERVICE WATER FROM RECIRC SPRAY CLR LIMITCRQUE REL NTR-BI SW 1194 35 50 MOV-SW-204B tt0V. SERVICE WATER FRCN RECIRC SPRAY CLR LIMITORQUE LMTTRGE-BI SW 1194 35 52 MOV-SW-204C MOV. SERVICE WATER FROM RECIRC SPRAY CLR LIMITORQUE LitTTRQE-BI SW 1194 35 52

 'p      MOV-SW-2040                        MOV. SERVICE WATER FROM RECIRC SPRAY CLR                           LIMITORQUE                            LNTTRQE-BI SW                     1194        35                    52 t)                                                                                                                                                                                                                               h MOV-SW-205A                        MOV. RECIRC SFRAY HEAT EXC. HEADER OUTLET LIMITCRQUE                                                     REL NTR-BI SW                     1194        35                    50 MOV-SW-205B                        tt0V, RECIRC SPRAY HEA' EXC. HEADER CUTLET LIttITCRQUE                                                   REL NTR-BI SW                     1194        35                    50
- 0<~                                                                                                                                                                                                                              0 MOV-SW-205C                        MOV. RECIRC SPRAY HEAT                C. HEADER OUTLET LIMITORQUE                                        REL NTR-BI SW                     1194        35                    50 MOV-SW-2050                        tt0V, RECIRC SPRAY HEAT EXC. HEADER CUTLET LIMITORGUE                                                    REL HTR-BI SW                     1194        35                    50 C,s MOV, RECIRC SFRAY HEAT EXC. HEADER CUTLET LIMITORQUE                                                     REL NTR-BI SW                     1194        35                    50 h

MOV-SW-206A fm it0V-SW-2068 MOV. RECIRC SFRAY HEAT EXC. HEADER OUTLET LIMITORQUE REL HTR-BI SW 1194 35 50 V REL MTR-BI SW 1194 3 53

                                                                                                                                                                                                                                  *O MOV-SW-208A                        MOV. INLET HEADER VALVE                                            LIMITCRQUE
   -s    MOV-SW-2088                        HOV. INLET HEADER VALVE                                            LIttITORQUE                           REL tiTR-BI SW                    1194                            3 53 U                                         MOV, RECIRC. AIR C00LItlG COILS                                    LIMITORQUE                             LMTTRGE-BI SW                    1194                            3 73 h

_ MOV-SH-210A g MOV-SW-2108, MOV RECIRC. AIR COOLING COILS LIttITORQUE LNTTRQE-BI SW 1194 3 73 m V - W

      - NOV-SW-213A                         MOV. FUEL PIT COOLER \/ALVE                                        LIMITORQUE   ,

REL NTR-BI SW 1194 3 53 n MOV4W-213B MOV. FUEL PIT COOLER VALVE LIttITORQUE REL HTR-BI SW 1194 3 51 V tt0V, RECIRC. AIR C00 lit!3 COILS LMTTRQE-BI SW 1194 3 73 h _ MOV-SW-214A LIMITORQUE 0 ' 9 m u 9 O 9 e il

n ,o V i

                             ,- y i                                                                                                              p)
                                                                                                                                                 ,                                                                   p)

( V DATE 8/2bsd VIRGIllIA ELECTRIC At!O POWk< JOttPAt4Y PAGE 8 tiORTH AN!1A POWER STATI0tl Ut1IT 2 d,-

  • EQUIPl!ENT QUALIFICATI0tl MASTER LIST G ttARK !! UMBER SCRT O,, ttARK t10. DESCRIPTICti NAtiUFACTURER tt00EL tiO. SfS PURCH. ACCIDEt1T FUt!CT FILE PAGE h OPDER 12345678901234
          .__...._.....              e._._............. __..._.............. _.                      .................... . _......_ _.. ...._. ...__ ........ ..... ....

MOV-SW-214E MOV, RECIRC. AIR COOLIttG COILS LIMITORQUE LMTTRQE-BI SW 1194 3 73 t10V-SW-215A tt0V, AUX SW PUMP ISO VALVE LIttITORQUE SW 1194 23 5 *H/A MOV-SW-215B tt0V, AUX SW PUt1P ISO VALVE , LIMITORQUE SW 1194 23 5

  • t1/A MOV-SW-217 MOV CIRC WTR SW PUMP ISOLATION lit 1ITORQUE SW 1194 23 5 *t1/A MOV-SW-219 tt0V, NAKE-UP ISOLATI0tl LIMITORQUE SW 1194 23 5 *t1/4 Of G MOV-SM-220A tt0V, SW TO CIRC TUtit:EL lit 1ITORQUE SW 1194 3 *N/A
 ,- 3     tt0V-SW-220B                 t:0V, SW TO CIRC tut 4NEL                                                           LIMITORQUE                                     SW   1194               3     *t1/A                g V                                                                                                                                                                                                                           w MOV-2115B                    MOV, CHARGIllG PUMP SUC FROM RWST                                                   LIMITORQUE                        REL NTR-BI CH     1010    23 5     1        W22 MOV-2115C                    tt0V, CHARGING PUttP SUCT. FRoa VCT                                                 LIMITORQUE                        REL NTR-BI CH     1010    23 5               W16

.O- h MOV-21150 MOV, CHARGIt!G PUMP SUC FR0tt RWST LIttITORQUE REL NTR-BI CH 1010 23 5 1 W22 MOV-2115E MOV, CHARGIt1G PUttP SUCT. FROM VCT LIMITORQUE REL NTR-BI CH 1010 23 5 W36 Of tiOV-2267A tt0V, LHSI TO CHARGIt!G PUtiP LIMITORQUE REL NTR-BI CH 1010 23 5 W21 h 7 MOV-2267B t:0V, LHSI TO CHARGING PUttP lit. TORQUE REL NTR-BI CH 1010 23 5 W18 MOV-2259A tt0V, LHSI & VCT TO CHARGING PUMP LIMITORQUE REL HTR-BI CH 1010 23 5 W21 g t!OV-22698 ttOV. LHSI 2 VCT TO CHARGING PUMP LIMITORQUE REL HTR-BI CH 1010 23 5 WIS , g V w tiOV-2270 A tt0V, LHSI & VCr TO CHAPGING PUMP LIMITORQUE REL ttTR-BI CH 1010 23 5 W21 HOV-2270B tt0V , LHSI A VCT TO CHARGIt4G PUtiP LIMITORQUE REL NTR-BI CH 1010 23 5 W18 p)

   %                                                                                                                                                                                                                         h MOV-2275A                    tiOV, CHARGIllG PUMP TO RECIRC. SV                                                 LIMITORQUE                        REL HTR-BI CH     1010    23 5              W34 m tt0V-2275B                         MOV, CHARGItlG PUttP TO RECIRC. SV                                                 LIttITORQUE                       REL HTR-BI CH     1010    23 5              W37 U                                                                                                                                                                                                                         S

_ MOV-2275C MOV CHARGIt4G PUMP TO RECIRC. SV LIMITORQUE REL NTR-BI CH 1010 23 5 W34 M01'-2286 A MOV, CHARGING PUMP DISCH. LIMITORQUE REL NTR-BI CH 1010 23 5 W19 b~ h NOV-2286B tt0V, CHARGIt1G PUttP DISCH. LIMITOPQUE REL NTR-BI CH 1010 23 5 W19 MOV-2286C MOV, CHARGIt1G PUttP DISCH. LIMIT 07QUE REL NR-BI CH 1010 't 5 W19 u g h _NOV-2267A tt0V, CHARGING PUMP STOP VALVE LIMITORQUE REL NTR-BI CH 1010 23 5 W19 O e O e 11

D O O DATE 8/20/81 VIRGIt1IA ELECTRIC AND POWER COMPA!1Y PAGE 9 m i:CRTH AtittA F0WER STATION Ut1IT 2 g d EQUIFt1EtiT QUALIFICATICil t1 ASTER LIST T ttARK t: UMBER SORT ORDr.R 12345678901234 MOV-22878 t107. CHARGItJG PUt178 STCP VALVE , lit 1ITCRQUE REL MTR-BI CH 1011 23 5 W19 g MOV-2287C MOV. CHARGItiG PUMP STOP VALNE lit 1ITORQUE REL MTR-BI CH 1010 23 5 W19 ff0V-2289A MOV CHARGItiG FUttP DISCH. LIMITORQUE REL MTR-BI CH 1010 23 5 W21 g MOV-2289B MOV. CHAPGIffG PUttP DISCH. LIttITORQUE REL ttTR-BI CH 1010 23 5 W21 REL MTR-BI CH 1010 MOV-2350 ft0V. Et1ERGEttCY CCRATION LIMITORQUE 23 5 W17 g MOV-2370 ft0V. CHARGING FUtiP TO SEAL WATER RECIRC. LIMITORQUE REL MTR-BI CH 1010 23 5 WIS ft0V CHARGIt?G PUMP TO EECIRC. SV 1010 NOV-2373 LIMITCRQUE REL MTR-BI CH 23 5 W18 g MOV-2380 ff0V RCP SEAll1ATER RETUFt1 lit 1ITCRQUE 1010 1 5 WO6 MOV-2381 t!OV. SEAL WATER RETURtl SV LIMITORQUE REL MTR-BI CH 1010 23 5 W35 MOV-2836 MOV. COLD LEG CIRC VALVE LIMITORQUE SI 1010 23 5 W29 MOV-2E60A tt0V LHSI PUMP SUCTICN LIMITORQUE REL-RH Itts SI 1010 23 5 WO5 ^

  • MOV-2860B MOV. LHSI PUt1P SUCTICt1 LIMITCRQUE REL-PH Iris SI 1010 23 5 W35 PEERLSS-BI SI O

MOV-2862A MOV-2862B tt0V LHSI FUMP SUCTICt1 tt0V. LHSI PUMP SUCTION LIttITCRQUE LIMITORQUE PEERLSS-BI SI 1010 1010 23 5 23 5 Wil Wil e MOV-2863A P10V LHSI DISCH VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 W14 M0!-2863B tt0V. LHSI DISCH VALVE LIMITCRQUE REL MTR-BI SI 1010 23 5 W14 MOV-2o!4A MOV. LHSI DISCH VALVE LIMITCRQUE PEERLSS-BI SI 1010 23 5 W15 MOV-2864B MOV. LHSI DISCH VALVE LIMITORQUE PEERLSS-BI SI 1010 23 5 WIS MOV-2865A MOV, ACCUMULATOR TAttK 1 COLD LEG LIMITORQUE Si 1010 23 5 W28 _MOV-2865B tt0V ACCUMULATOR TAtK 2 COLD LEG LIMITORQUE SI 1010 23 5 W28 MOV-2865C tt0V. ACCUt:ULATOR TA!X 3 COLD LEG LIMITORQUE SI 1010 23 5 W28 b.. MOV-2867A MOV. CH ARGIttG FUti' STOP VALVE LIttITORQUE REL NTR-BI SI 1313 23 5 W25 h g MOV-2867B MOV. CHARGIt:G FUMP t70P VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 W25 , V W _ MOV-2867C tt0V CHARGING PUMP STCP VALVE LIMITCRQUE PEERLSS-BI SI 1010 23 5 W24 0 9 9 O O e1 a,11

r in p" / (%) (J^) (-) DATE 8/2LJ VIRGIt1IA ELECTRIC Atl0 F0WEWOMPANY PAGE 10 t:0RTH AtitIA F0WER STATI0ft UNIT 2 O EQUIPntnT QuitIrICATION niSTER tIST MARK NUMBER SCRT e ORDER 12345678901234 MOV, CHAFJING FUMP STOP VALVE LIMITORQUE REL NTR-BI SI 1313 23 5 W25 b, MOV-22670 h MOV-2269A itOV, CLARGIt:G PUt1P SI STOP VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 ,il o f3 MOV-28698 MOV, CHARGIttG FUt1P SI STCP VALVE lit 1ITORQUE REL MTR-BI SI 1010 23 5 W18 g () W MOV-2885A MOV, LHSI RECIRC VALVE LIMITOROUE REL-RH It4S SI 1010 23 5 WO5 MOV-2885B MOV, LHSI RECIRC VALVE 1010 23 5 g b MOV-2885C MOV, LHSI RECIRC IO CHARGItiG FUMP VALVE LIMITORQUE LIMITORQUE REL-RH It1S SI PEERLSS-BI SI 1010 23 5 WO5 W38 e MOV-28850 MOV, LHSI RECIRC TO CHARGIt!G PUMP VALVE LIMITORGUE PEERLSS-BI SI 1010 23 5 W38 b% MOV-2890A MOV, LHSI LINE STOP VALVE LIMITORQUE ELTRCL-HI SI 1010 23 5 W38 h MOV-28908 MOV, LHSI lit:E STOP VALVE LIMITORQUE REL MTR-BI SI 1010 23 5 WOS

.bg                                                                                                                                                                                                                                                                                h MOV-2890C                                                                                                        MOV, CHAPGIt1G PUMP SUCT. FROM VCT                             LIMITORQUE              REL MTR-BI SI     1010       23 5                   W39 MOV-28900                                                                                                        MO'. , LHSI LIttE STOP VALVE                                   LIMITORQUE              PEL MTR-BI SI     1010       23 5                   W39

~ t1GA-10 CABLE, 1/C 2000 MCM GEt1ERAL CABLE HE0/ETH/FR ED 1255 8 10

     -    NGA-12                                                                                                          CABLE, 3/C 1000 MCM ALUMINUM ARMOR                             GEt4ERAL CABLE          HE0/ETH/FR ED     1255                 8              10 10                                                                                                                                                                                                                                                                             h NGA-13                                                                                                          CABLE, 3/C 4/0 AWG. ALUMINUM ARMOR                             GEtiERAL CABLE          NE0/ETH/PR ED     1255                 8              10 NGA-13                                                                                                          CABLE, 3/C 4/0 AWG                                             OMOMITE                             ED    1375                 8              11 NGA-14                                                                                                          CABLE, TRIPLEX 4/0 AWG                                         OKON!TE                             ED    1375                 8              11 NGA-15                                                                                                          CABLE, TRIPLEX 250 MCN                                         CERPO WIRE              NEO XL PLY ED     1359        35                      07 NGA-19                                                                                                          CABLE, 2/C #2 AWG                                              CEPPO WIRE              NEO XL PLY ED     1312                 8              08 NGA-20                                                                                                          CABLE, 1/C 250 MCM                                             OMONITE                 HE0/ETH/PR ED     1128                 8              06

_NGA-21 CABLE, 1/C 2/0 AWG. OK0tJITE NE0/ETH/FR ED 1128 8 06 NGA-3 CABLE, TRIPLEX 1000 MCM GENERAL CABLE NE0/ETH/PR ED 1255 8 10 NGA-3 CABLE, TRIPLEX 1000 MCM OKONITE ED 1375 8 11 NGA-34 CABLE, 1/C #14 AWG CEPRO WIRE NEO XL PLY ED 1312 8 08 NGA-35 CABLE, 2/C #14 ANG CEPPO WIRE NEO XL PLY ED 1312 8 08 O e e O

O . O DATE 8/20/81 VIRGIflIA ELECTRIC Att0 POWER C0ttPANY PAGE 11 O-14GRTH At:NA F0WER STATION Ut1IT 2 EQUIFt1ENT QUALIFICATION t1 ASTER LIST MARK #1UttBER SCRT e ORDER 12345678901234 NGA-36 CABLE, 3/C #14 AWG CER'?O WIRE NEO XL PLY ED 1312 8 08 11GA-37 , CABLE, 5/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-38 CABLE, 7/C #14 AWG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-39 CABLE, 9/C #14 AWG CERRO WIRE ItEO XL PLY ED 1312 8 08 flGA-4 CABLE, 3/C 500 MCM ALUt11NUM ARttOR GENERAL CABLE I4E0/ETH/FR ED 1255 8 10 NM-4 CABLE, 3/C 500 ttCN OKONITE ED 1375 8 11 NGA-40 CAELE, 12/C #14 AMG CERRO WIRE I4E0 XL PLY ED 1312 8 08 HOA-44 CABLE, 1/C #12 AMG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-45 CABLE, 2/C #12 AWG CERRO WIRE 11EO XL PLY ED 1312 8 08 NOA-47 CABLE, 4/C #12 AUG CERRO WIRE flEO XL PLY ED 1312 8 08 t4GA-49 CABLE, 7/C #12 AMG CERRO WIRE NEO XL PLY ED 1312 8 08 ^ NGA-5 CABLE, 3 C 1250 MCN STEEL ARMOR GENERAL CABLE NE0/ETH/PR ED 1255 8 10 NGA-57 CABLE. 4/C #10 AWG CEwRO WIRE NEO XL PLY ED 1312 8 08

  ~pJ NGA-6                        CABLE, 3/C 1250 ftCN ALUt1INUM ARMOR                      GENEPAL CABLE                     NE0/ETH.FR ED      1255                         8   10 NOA-67                       CABLE, 19/C #16 AMG                                       BIW                               NEO XL PLY ED      1265            2345             09 NGA-67                       CAEiE, 19/C #16 AWG                                       CERRO WIRE                        HEO XL PLY ED      1392          123456             13 g     NGA-68                       CABLE, 12/C #16 AMG                                       BIN                               NEO XL PLY ED      1265            2345             09 0     NCA-68                       CABLF. 12/C #16 ARG                                       CERRO WIRE             .          NEO XL PLY ED      1392          123456             13 9

NGA-69 CABLE, 2/C #16 AWG DIW NEO XL PLY ED 1265 2345 09 _NGA-70 CABLE, 18/C #16 AWG BIW NEO XL PLY ED 1265 2345 09 NGA-70 CABLE, 18/C #16 AWG CERRO WIRE 140 XL PLY ED 1392 123456 13 N%A-77 CABLE, 4/C #10 AMG CERRO WIRE NEO XL PLY ED 1312 8 08 NGA-9 CABLE, 1/C 1500 ftCH GENERAL CABLE NE0/ETH/PR ED 1255 8 10 _NGB-01 CABLE, 2/C #10 AWG OKONITE HYP XL PLY ED 1404 8 16 O e O e

                            /

t h }s t ( DATE 8/L VIRGIllIA ELEC'RIC At3D POWkMOMPANY PAGE 12 - NORTH AtalA F7WER STATION ut1IT 2 O EQUIPMENT QuALJFICATION 11 ASTER LIST itARK .! UMBER SORT O MARX NO. DESCRIPT10N nAnurACTuRER n0DEt i,0. STS PuRCH. ACC1DEt4T runCT rite ORDER 12345678901234 PAGE o NGG-11 CABLE, *RIPLEX 2/0 AWG OGtiITE NE0/ETH/PR ED 1384 8 12 NGB-11 CABLE. TRIPLEX 2/0 AWG GEt1ERAL CABLE NE0/ETH/PR ED 1256 8 14 NGB-12 CABLE, TRIPLEX #1 AWG OK0llITE NE0/ETH/PR ED 1384 8 12 NGB-12 CABLE, TRIPLEX #1 AVG GEtlERAL CABLE NEO/ETH/PR ED 1256 8 14 NGB-15 CABLE, TRIPLEX #4 AWG OKONITE NE0/ETH/PR ED 1128 8 06 O. NGB-16 CABLE. TRIPLEX #6 AWG OK0t1ITE NE0/ETH/PR ED 1128 8 06 e NGB-17 CABLE. 3/C #8 AWG OKONITE NE0/ETH/PR ED 1128 8 06 NGB-18 CABLE, 3/C #10 AWG OKONITE HE0/ETH/PR ED 1128 8 06 NGB-19 CA8LE. 3/C #12 AWG OK0t4ITE 11E0/ETH/PR ED 1128 8 06

  .O.                                                                                                                                                                                                  G NGB-35                       CABLE.           2/C #16 AWG                        BIN                                             NEO XL PLY ED         1265     2345            09 p     flGB-35                      CABLE, 2/C #16 AWG                                  CEPPO WIRE                                      NEO XL PLY ED         1392     2345             13 1d NGB-30                       CABLE,            3/C #16 AWG                       BIW                                             NEO XL PLY ED         1265     2345            09 h
NCB-39 CABLE, 3/C #16 AMG CERRO WIRE NEO XL PLY ED 1392 123456 13 O- O NGB-40 CABLE, 4/C #16 AWG BIH NEO XL PLY ED 1265 2345 09 NGB-43 CABLE, 2/C #8 AMG CERRO WIRE NEO XL PLY ED 1312 8 08 NGB-44 CA8LE. 2/C #6 AWG CERR0 WIRE NEO XL PLY ED 1312 8 08 NGB-45 CABLE, 4/C #6 AWG CERRO WIRE NED XL PLY ED 1312 8 08 NGB-5 CABLE. TRIPLEX 500 MCM OKONITE NE0/ETH/PR ED 1384 8 12 n NGB-5 CABLE, TRIPLEX 500 MCM GENERAL CABLE NE0/ETH/PR ED 1256 8 14 V

NGB-55 CABLE, 45/C #16 AMG BIW NEO XL PLT ED 1265 2345 09 h q NGB-7 CABLE, TRIPLEX 250 NCH OK0tlITE NE0/ETH/PR ED 1384 8 12 g

     \./                                                                                                                                                                                               W NGB-7                        CABLE. TRIPLEX 250 MCM                               GENERAL CABLE                                   NE0/ETH/PR ED        1256          8           14 N2-XCV-1402A                 SOV, CONT ATMOS SMPL FRON CONT - C0 tit ISO VALCCR                                                   V526568319 SS        34670  1}}