ML20128K630

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Forwards marked-up Draft SAIC-85/1516-1, Review of Licensee & Applicant Responses to NRC Generic Ltr 83-28,Item 1.2, 'Post-Trip Review:Data & Info Capabilities,' Catawba Nuclear Station Unit 1. Addl Info Requested
ML20128K630
Person / Time
Site: Catawba Duke Energy icon.png
Issue date: 05/16/1985
From: Adensam E
Office of Nuclear Reactor Regulation
To: Tucker H
DUKE POWER CO.
References
GL-83-28, NUDOCS 8505310190
Download: ML20128K630 (16)


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j NUCLEAR REGULATORY COMMISSION WASHINGTON, D. C. 20555 g ....+ ,/ May 16, 1985 vDocket:Nos:: 150-4137 eTand { 502414[

Mr. H. B. Tucker, Vice President Nuclear Production Department Duke Power Company 422 South Church Street Charlotte, North Carolina 28242

Dear Mr. Tucker:

SUBJECT:

DRAFT TECHNICAL EVALUATION REPORT (TER) FOR SALEM ATWS ITEM 1.2 (GENERIC LETTER 83-28)

Re: Catawba Nuclear. Station, Unit 1 The staff has completed a preliminary review to assess the completeness and adequacy of licensee responses to Generic Letter 83-28 Item 1.2. For the Catawba Nuclear Station Unit 1, your response was found to be incomplete in three of the areas evaluated.

The enclosed TER provides a technical evaluation representing the staff's initial judgment of the areas evaluated. Pen anc ink changes have been made to the TER by your project manager to make the wording consistent with our approach.

In order to preserve our present review schedul_e, we would appreciate your cooperation in obtaining additional information that will permit us to complete our review. It would appear that the needed information on your facility could be obtained by telephone conference within one week of your receipt of the DRAFT TER. Your project manager will be working with you to arrange an acceptable time to conduct the necessary conference calls.

2 Sincerely.

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- Ii p Elinor G. Adensam, Chief Licensing Branch No. 4 Division of Licensing

Enclosure:

DRAFT TER on Salem ATWS Item 1.2 DESIGN TED ORIGIN.ti, cc w/ enclosure: Certified By JM [( h% g See next page [/

8505310190 850516 PDR- ADOCK 05000413 P pg

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4 ENCLOSURE 1 SAIC-85/1516-1 REVIEW OF LICENSEE AND APPLICANT RESPONSES TO NRC GENERIC LETTER 83-28 t

(Required Actions Based on Generic Implications of Salem ATWS Events), Item 1.2

" POST-TRIP REVIEW: DATA AND INFORMATION CAPABILITIES" FOR CATAWBA NUCLEAR STATION, UNIT 1 (50-413 )

i Technical Evaluation Report

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Prepared by Science Applications International Corporation 1710 Goodridge Drive

. McLean, Virginia 22102 Prepared for U.S. Nuclear Regulatory Commission Washington, D.C. 20555 Contract No. NRC-03-82-096 l

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e -se , j-4 FOREWORD This report contains the technical evaluation of the Catawba Nuclear Station Unit I response to Generic Letter 83-28 (Required Actions Based Review: onData Generic Implications of Salem ATWS Events). Item 1.2 " Post Trip and Information Capabilities."

For the purposes of this evaluation, the review criteria, presented in part are: 2 of this report, were divided into five separate categories. These 1.

The paremeters monitored by the sequence of events and the time history recorders, 2.

The performance characteristics of the sequence of events recorders, 3.

The performance characteristics of the time history recorders,

4. The data output fonnat, and S.

The long-term data retention capability for post-trip review material.

All available responses to Generic Letter 83-28 were evaluated. The plant for which this report is applicable was found to have adequately responded to, and met, categories 2 and 3.

(4VittJ C/l btri A-The report describes the specific methods used to dete gorization of the responses to Generic Letter 83-28. Sint thisine the cate-evaluation report was intended to apply to more than one nuclear pow plant s regarding how each plant met (or failed to meet) the :, '-----':pecifics presented. are not Instead, 'the evaluation presents a categorization of the responses which are not.

according to which categories of :, 'm:C are satisfied and The evaluations are based on spe ific criteria (Section 2) derived from the requirements as stated in the g eric letter.

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TABLE OF CONTENTS Section Page Introduction. . . . . . . . . . . . . . . . . . . . . . . . . I

1. Background. . . . . . . . . . . . . . . . . . . . . . . . . . 2
2. Review Criteria . . . . . . . . . . . . . . . . . . . . . . . 3
3. Evaluation. . . . . . . . . . . . . . . . . . . . . . . . . . 8
4. Conclusi..). ......................... 8
5. Re fe re nc e s . . . . . . . . . . . . . . . . . . . . . . . . . . 10 (o . $pread2xV pocHMenT Pod. MCOM - ~ - ~

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INTRODUCTION git),'J SAIC has reviewed the,subetttals prepared in response to Generic Letter 83-28, item 1.2 " Post-Trip Review: Data and Information Capability" The submittat (see references) contained sufficient information to determine that the data and information capabilities at.this plant are acceptable in the following areas.

e The sequence-of-events recorder (s) performance charac-teristics.

e The time history recorder (s) performance characteris- ,

tics.

However, the data and information capacilities, as described in the submittal, either fail to meet the review criteria or provide insufficient information to allow determination of the adequacy of the data and information capabilities in the following areas, i

j e The parameters monitored by both the sequence-of-events i and time history recorders.

e The output format of the recorded data, o The long-term data retention, record keeping, capa--

bility.

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1. Background On February 25, 1984, both of the scram circuit breakers at Un{t 1 of the Salem Nuclear Pow' e r Plant failed to open upon an automatic reactor trip signal from the reactor protection system. This incident occurred during j the plant startup and the reactor was tripped manually by the operator about 4 30 seconds after the initiation of the automatic trip signal. The failure of the circuit breakers has been determined to be related to the sticking of the under voltage trip attachment. Prior to this incident; on February 22, 1983; at Unit 1 of the Salem Nuclear Power Plant an automatic trip signal was generated based on steam generator low-low level during plant startup.

In this case the reactor was tripped manually by the operator almost coinci-dentally with the automatic trip. At that time, because the utility did not have a requirement for the systematic evaluation of the reat ~ or trip, no investigation was performed to determine whether the reactor was tripped automatically as expected or manually. The utilities' written procedures required only that the cause of the trip be determined and identified the responsible personnel that could authorize a restart if the cause of the 4

trip is known. Following the second trip which clearly indicated the problem with the trip breakers, the question was raised on whether the circuit breakers had functioned properly during the earlier incident. The most useful source of information in this case, namely the sequence of events printout which would have indicated whether the reactor was tripped 4

automatically or manually during the February 22 incident, was not retained after the incident. Thus, no judgment on the proper functioning of the trip system during the earlier incident could be made.

Following these incidents; on February 28, 1983; the NRC Executive Director for Operations (EDO), directed the staff to investigate and report on the generic implications of these occurrences at Unit 1 of the Salem Nuclear Power Plant.* The results of the staff's inquiry into the generic implications of the Salem Unit incidents is reported in NUREG-1000 " Generic Implic tions of ATWS Events at the Salen Nuclear Power Plant." Based on the results of this study, a set of required actions were developed and included l in Generic Letter 83-28 which was issued on July 8,1983 and sent to all licensees of operating reactors, applicants for operating license, and construction permit holders. The required actions in this generic letter

! consist of four categories. These are: (1) Post-Trip Review, (2) Equipment 2

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Classification and Vender Interface. (3) Post Maintenance Testing, and (4) l Reactor Trip System Reliability Improvements.

The first required action of the generic letter, Post-Trip Revihw, is the subject of this TER and consists of action item 1.1 " Program Description .

and Procedure" and action item 1.2 " Data and Information Capability." In the next section the review criteria used to assess the adequacy of the utilities' responses to the requirements of action item 1.2 will be discussed.

2. Review Criteria l The intent of the Post Trip Review requirements of Generic Letter 83-28 l

1s to ensure that the licensee has adequge procedures and data and information sources to understand the caust and progression of a reactor trip. This understanding should go beyond a simple identification of the course of the event. It should include the capability to determine the root cause of the reactor trip and to determine whether safety limits have been exceeded and if so to what extent. Sufficient information about the reactor trip event should be available so that a decision on the acceptability of a i

reactor restart can be made.

The following are the review criteria developed for the requirements of Generic Letter 83-28, action item 1.2:

The equipment that provides the digital sequence of events (SOE) record and the analog time history records of an unscheduled shutdown should pro-v'ide a reliable source of the necessary information to be used in the post trip review. Each plant variable which is necessary to determine the cause(s) and progression of the event (s) following a plant trip should be monitored by at least one recorder buch as a sequence-of-events recorder or a plant process computer for digital parameters; and strip charts, a plant process computer or analog recorder for analog (time history) variables}

Ea.ch device used to record an analog or digital plant variable should be described in sufficient detail so that a determination can be made as to whether the following performance characteristics are met:

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t e Each sequence-of-events recorder should be capable of detecting and recording the sequence of events with a sufficient time discrimination capability to ensure that the time ressionses. asso-ciated with each monitored safety-related system can be ascer-tained, and that a determination can be made as to whether the time response is within acceptable limits based on SSAR Chapter 15 Accident Analyses. The

, recommended guideline for the SOE time discrimination is approxi-mately 100 usec. If current SOE recorders do not have this time discrimination capability the licensee or applicant should show that the current time discrimination capability is sufficient for an adequate reconstruction of the course of the reactor trip. As a minimum this should include the ability to adequately recon-struct the accident scenarios presented in Chapter 15 of the plant FSAR.

o Each analog time history data recorder should have a sample inter-val small enough so that the incident can be accurately 3 reconstructed following a reactor trip. As a minimum, the licensee or applicant should be able to reconstruct the course of the accident sequences evaluated in the accident analysis of the plant FSAR (Chapter 15). The recommended guideline for the sample interval is 10 sec. If the time history equipment does not meet this guideline, the licensee or applicant snould show that the current time history capability is sufficient to accurately recon-struct the accident sequences presented in Chapter 15 of the FSAR.

e To support the post trip analysis of the cause of the trip and the proper functioning of involved safety related equipment, each analog time history data recorder should be capable of updating and retaining information from approximately five minutes prior to the trip until at least ten minutes after the trip.

e The information gathered by the sequence-of-events and time history data collectors should be stored in a maaner that will allow for retrieval and analysis. The data may be retained in either hardcopy (computer printout, strip chart output, etc.)

or in an accessible memory (magnetic disc or tape). This il

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.9 information should be. presented in a readable and meaningful format, taking into consideration good human factors, practices (such as those outlined in NUREG-0700).

s All equipment used to record sequence of events and time history information should be powered from a reliable and non-interruptible power source. The power source used need not be safety related.

The sequence of events and time history recording equipment should monitor sufficient digital and analog parameters, respectively, to assure that the course of the reactor trip can be reconstructed. The parameters monitored should provide sufficient information to determine the root cause of the reactor trip, the progression of the reactor trip, and the response of the plant parameters and systems to the reactor trip. Specifically, all input parameters associated with reactor trips, safety injections and other safety-related systems as well as output parameters sufficient to record the proper functioning of these systems should be recorded for use in the post trip review. The parameters deemed necessary, as a minimum, to perform a Post-trip review (one that would determine if the plant remained within its design envelope) are presented on Tables 1.2-1 and 1.2-2. If the appli-cants' or licElsees' SOE recorders and time history recorders do not monitor all of the parameters suggested in these tables the applicant or licensee should show that the existing set of monitored parameters are sufficient to establish that the plant remaine,d within the design envelope for the appro-i priate accident conditions; such as those analyzed in Chapter 15 of the plant Safety Analysis Report.

I Information gathered during the post trip review is required input for future post trip reviews. Data from all unscheduled shutdowns provides a valuable reference source for the determination of the acceptability of the plant vital parameter and equipment response to future unscheduled shut--

I downs. It is therefore necessary that information gathered during all post trip reviews be maintained in an accessible manner for the life of the plant.

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Table 1.2-1. PWR Parameter List SOE Time History .

Recorder Recorder Parameter / Signal (I) x Reactor Trip (1) x Safety Injection x Containment Isolation

. (1) x Turbine Trip x Control Rod Position (1) x x Neutron Flux, Power x K Containment Pressure (2) Containment Radiation x Containment Sump Level (1) x x Primary System Pressure (1) x x Primary System Temperature

, (1) x Pressurizer Level (1) x Reactor Coolant Pump Status (1) x x Primary System Flow (3) Safety Inj.; Flow. Pump / Valve Status x MSIV Position x x Steam Generator Pressure (1) x x Steam Generator Level (1) x x Feedwater Flow (1) x x . Steam Flow (3) Auxiliary Feedwater System; Flow, Pump /Value Status x AC and DC System Status (Bus Voltage) x Diesel Generator Status (Start /Stop.-

On/0ff) x PORY Position (1.): Trip parameters (2): Parameter may be monitored by either an SOE or time history recorder.

(3): Acceptable recorder options are: (a) system flow recorded on an SOE recorder, (b) system flow recorded on a time history recorder, or (c) equipment status recorded on an SOE recorder.

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Table 1.2-2. BWR Parameter List SOE Time History -

Recorder Recorder Parameter / Signal x Reactor Trip x Safety Injection x Containment Isolation x Turbine Trip x Control Rod Position x (1) x Neutron Flux, Power x (1) Main Steam Radiation (2) Containment (DryWell) Radiation x (1) x Drywell Pressure (Containment Pressure)

(2) Suppression Pool Temperature x (1) x Primary System Pressure x (1) x Primary System Level

[ x MSIV Position x (1) Turbine Stop Valve / Control Valve Position x Turbine Bypass Valve Position x Feedwater Flow x Steam Flow (3) Recirculation; Flow. Pump Status I

x (1) Scram Discharge Level x (1) ,

Condenser Vacuum x AC and DC System Status (Bus Voltage)

(3)(4) Safety Injection; Flow. Pump / Valve Status x Diesel Generator Status (On/Off.

Start /Stop)

(1): Trip parameters.

(2): Parameter may be recorded by either an SOE or time history recorder.

(3): Acceptable recorder options are: (a) system flow recorded on an SOE

. recorder (b) system flow recorded on a time history recorder, or (c) equipment status recorded on an SOE recorder.

(4): Includes recording of parameters for all applicable systems from the following: HPCI. LPCI LPCS, IC, RCIC.

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3. Evaluation The parameters identified in part 2 of this report as a part of the revice criteria are those deemed necessary to perform an adequate post-trip review. The recording of these parameters on equipment that meets the guidelines of the review criteria will result in a source of information that can be used to determine the cause of the reactor trip and the plant response to the trip, including the responses of important plant systems.

The parameters identified in this submittal as being recorded by the sequence of events and time history recorders do not correspond to the parameters specified in part 2 of this report.

The information provided in the submittal indicates that the equipment used to monitor the digital and analog parameters meets the. minimal requirements set forth in part 2 of this report. The sequence of events and analog time history recorders are powered from a non-interruptable power supply. The monitoring characteristics are all within the guidelines of the review criteria.

The data and information recorded for use in the post-trip review should be output in a format that allows for ease of identification and use of the data to meet the review criterion that calls for information in a readable and meaningful format. The information contained in this submittal does not indicate that this requirement is set. .i .

(r LCf rton The data and information used during a post-trip review should be retained as part of the plant files. This information ould prove useful during future post-trip reviews. Therefore one n;M, xxt presented in part 2 of this report is that information used during a post-trip review be maintained in an accessible manner for the life of the plant. Information contained within this submittal does not indicate that this criterion will be met.

4. Conclusion -

The information supplied in response to Generic Letter 83-28 indicates l that the current post-trip review data and information capabilities are adequate in the following areas:

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1. The SOE recorders meet the minimum performance characteristics.
2. The time history recorders meet the minimum performance" char.acter-1stics.

The information supplied in response to Generic Letter 83-28 does not indicate that the post-trip review data and information capabilities are adequate in the following areas:

1. As described in the submittal, sufficient analog and digital parameters are not recorded for use in the post-trip review.

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2. As described in the submittal, the recorded data may not be output in a readable and meaningful format.
3. The data retention procedures, as described in the submittal, may not ensure that the information recorded for the post-trip review is maintained in an accessible manner for the life of the plant.

It is possible that the current data and information capabilities at thig #

nuclear power plant are adequate to meet the intent of these #, '

but were not completely described. Under these circumstances, the licensee should provid? an updated, more complete, description to show in more detail the data and information capabilities at this nuclear power plant. If the information provided accurately represents all current data and information capabilties, then the licensee should either show that the present data and information capabilities meet the intent of the criteria in part 2 of this r'eport, or detail future modifications that would enable the licensee to meet the intent of the evaluation criteria.

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REFERENCES .

NRC Generic Letter 83-28. " Letter to all licensees of operating reactors, applicants for operating license, and holders of construction permits regarding Required Actions Based on Generic Implications of Salem ATWS Events." July 8, 1983.

NUREG-1000 Generic Implications of ATWS Events at the Sales Nuclear Power Plant, April 1983.

Letter from H.8. Tucker, Duke' Power Company, to D.G. Eisenhut, NRC, dated November 4,1983 Accession Number 8311150312 in response to Generic Letter 83-28 of July 8,1983, with untitled attachment.

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1. Parameters recorded: Unsatisfactory See attached table for discrepancies.
2. SOE recorders performance characteristics: Satisfactory Sequence of Events Recorder: Ims time discrimination with a non-interruptible power supply An alarm typer is also used.
3. Time history recorders performance characteristics: Satisfactory

, Plant process computer: sampling rate of I sec for the period from 10 minutes before to 30 minutes after the trip with a non-1 interruptible power supply

4. Data output format: Unsatisfactory SOE data output includes time of event and data input point (sensor ID)

Analog data output includes time, parameter name ar.d value, and sensor ID

5. Data retention capability: Unsatisfactory Data is retained but for an unspecified period of time.

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": ;h. 2 PWR Parameters for Post Trip Review (circled parameters are not recorded)

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SOE Time History

  • Recorder Recorder Parameter / -Signal x Reactor Trip (1) x Safety Injection

@ Containment Isolation (1) Turbine Trip Control Rod Position (1) x Neutron Flux, Power h Containment Pressure (2) Containment Radiation

@ Containment Sump Level (1)@ Primary System Pressure (Vessel Pressure, PressurizerPressure)

(1) x x Primary System Temperature (1) x Pressurizer Level (1) Reactor Coolant Pump Status (1) x Primary System Flow Safety Inj.; Flow. Pump / Valve Stt.ius MSIV Position x Steam Generator Pressure (1) x Steam Generator Level (1) x Feedwater Flow (1) x Steam Flow (4) Auxiliary Feedwater System; Flow.

Pump /Value Status x AC and DC System Status x Diesel Generator Status

@ PORY Position (1): Trip parameters; pressurizer or primary pressure is a trip parameter (depending on plant).

(2): Parameter may be monitored by either an SOE or time history recorder.

(3): Acceptable recorder options are: (a) reactor vessel pressure recorded on both an SOE and time history recorder, or (b) pressurizer pressure recorded on both an SOE and time history recorder.

(4): Acceptable recorder options are: (a) system flow recorded on an SOE recorder (b) system flow recorded on a time history recorder, or (c) equipmer.t status recorded on an SOE recorder.

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