ML20117B033

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Emergency Exercise Manual,910515
ML20117B033
Person / Time
Site: North Anna  Dominion icon.png
Issue date: 05/15/1991
From:
VIRGINIA POWER (VIRGINIA ELECTRIC & POWER CO.)
To:
References
NUDOCS 9212010117
Download: ML20117B033 (629)


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MAY 15,1991 EMERGENCY EXERCISE ERRATA

SUMMARY

SECTION CHANGE

SUMMARY

Forward Added table of contents Emergency Respo..30 Updated table of contents to reflect Facilities drawings included. Conduct Guidelines Identified Controllers, Observers, and Information Control Cell personnel and added phone numoers. Assumptions Updated tims changes.- Simulations Added plastic protective clothing 7,S simulation. Participants Updated to reflect State input. Narrative Updated time changes. Initial Conditions Minor changes to reflect current technical conditions. Time-Line Updated time changes. Containment Gump Pump malfunction added. Deleted Recombiner malfunction. Mul.ti-Function Updated' time' changes and renumbered as hessam e/D.ta necessary. Ope . 0:m Updated time c' 'snoes. Mess e.ges/ Data Containment Sump Pump nialfunction added. Deleted Recombiner malfunction and renumbered as necessary. Damage' Control Updated time changes. Containment Sump hessagen/ Data Pump and RCP "D ' malfunctions added. Updated failure mechanisms. Renumbered as necessary. 7 All Radiological Up6ated title Changes. f(x. y ) Se'etions- - g /

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Chemistry Updated time changes. Medical Messages / Data Survey Map added. Security Messages / Data Updated time changes. Deleted auto-dial information. Rumor Control Updated time changes. i-Messages / Data Critique Process Added forms, and Forms s i (. l

rq VIRGINIA POWER -tf NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE O EXLRCISE MANUAL

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r3-VIRGINIA POWER x> . NORTH- ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE FOREWORD This exercise package was-developed to provide the basis for the s conduct _of a simulated radiological accident _at_ North Anna Power-Os Station located in Louisa County, Virginia through which - the - capabilities and effectiveness of the Virginia Power Emergency-Response Plans can be evaluated. The~ exercise controllers and - observers will use this package to initiate, control, and evaluate the activities of the exercise participants. Virginia Power approves this document as the standard for conduct in performance of the May 15, 1991 North Anna Emergency Exercise. b O _. .m. _

s VIRGINIA POWER O NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE TABLE OF CONTENTS S

1. Introduction
2. Travel Information
3. Emergency Response Facilities
4. Termination Criteria
5. References
6. Conduct Guidelines and Information
7. Assumptions B. Objectives
3. Scope
10. Simulations
11. Participants
12. Narrative
13. Initial Conditions ,
14. Time Line
15. Multi-Function Messages / Data
16. Operations Messages / Data
17. Damage Control Messages / Data
18. Radiological Monitor Messages / Data
19. Radiological Isotopic Messages / Data
20. Radiological In-Plant Messages / Data
21. Radiological On-Site Messages / Data
22. Radiological Off-Site Messages / Data
23. Chemistry Messages / Data
    -24. MedicalTMessages/ Data                       ^
    -25.   ' Fire-Messages / Data.

2 6. :. Security-Messages / Data

27. Media Messages / Data-
28. Rumor Control Messages /7ata
29. Critique Process and Forms
30. Critique Report and Disposition
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1 VIR INIA-POWER 0; NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE

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VIRGINIA POWER D' NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE INTRODUCTION In the interest of verifying that the health and safety of the general public surrounding North Anna Power Station (NAPS) are protected from an accident at this facility, it is necessary for Virginia Power to periodically cond*2ct emergency exercises. This exercise, scheduled to be conducted on May 15, 1991, may require the mobilization of state and local personnel and resources. Exercise " participants" will r t have prior knowledge of the nature of the simulated incident. The exercise will allow Virginia Power emergency response personnel to _ train and demonstrate the emergency response activities assigned to then by the current emergency preparedness plans and procedures. This package was developed to assist the exercise controllers and observers in the conduct and evaluation of the exercise. Furthermore, this package contains the information and data necessary to properly conduct the exercise in an efficient and coordinated manner. O O

VIRGINIA J'OWER O NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE TRAVEL INFORMATION O O

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(_j/ MAY 15, 1991 EMERGENCY EXERCISE TRAVEL ROUTES BY AIR: RIC Airport, Richmond, Virginia BY TRAIN: AMTRAK connections to Richmond, Virgiria BY BUS: Greyhound service to Richmond, Virginia s BY CAR: Refer to Plp on folicWing page NEARBY ACCOMMODATIONS Richmond (approximately 60 miles from station) Holiday Inn: 6331 West Broard Street (804) 285-0051 () 2000 Staples. Mill Road (804) 359-6061 3200 West Broad Street (804) 359-4061 Fredericksburg (approximately 30 miles from station) ' Ramada Inn: (703) 786-8361 Sheraton Inn: (703) 786-8321 ' Charlottesville (approximately.45 miles from station) Holiday Inn: North Charlottesville  ; (804) 293-9111 i South Charlottesville (804) 977-5100 I Ramada Inn: (804) 977-7700

VIRGINIA POWER g NORTH ANNA POWER STATION Q MAY 15, 1991 EMERGENCY EXERCIBS ROUTE TO NORTH ANNA POWER STATION The station is approximately 60 miles Northwest of Richmond. Take Interstate 64 West to the Gum Springs exit (Route 522). Take Route 522 North (right) to Route 33. Take Route 522/33 West (left) to Where Route 522 North again resumes. Take Route 522 North (right) to Route 700 and turn right on to Route 700. Take Route 700 to Routa 618. Turn right on to Route 618 and continue until Route 700 again resumes to the left. Take Route 700 to North Anna Power Station. NAPS e lu si / es j l l 708 e O umenAL m

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s VIRGINIA POWER NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE t EMERGENCY RESPONSE O. FACILITIES O

O DIAGRAMS OP FACILITIES Site Layout Control Room and Control Room Annex Simulator Control Room Technical Support Center Operational Support Center Health Physics and Chemistry-Local Emergency Operations Facility Corporate. Emergency Response Center Local Media Center O O

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3. ADMIN. BLDG.- 8. OPERATIONAL SUPPORT CENTER -
4. TURBINE BLDG. 9. AUXILIARY BLDG.~

5.CONTHOL ROOM 10. FUEL BLDG.

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1 4 VIRGINIA POWER O NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE 1 TERMINATION CRITERIA O 1 i.. I f._ O l ,.._...-.........-...._...-....-.---.....-..;.-._..._-...--_=.-....

VIRGINIA POWER NORTH-ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE EXERCISE TERMINATIO U RITERIA The exercise may be terminated under the following circumstances: 4

1. If all emergency response actions have been completed in accordance with the scenario sequence.
2. If actual plant emergency conditions develop coincident with the exercise.
3. If an actual off-site emergency occurs which impacts the response actions of exercise participants.

In the event of "2" occe -ing, the following actiona will be taken: (a) The Shift Sq u visor will contact the Station Emergency Manager (SDI) and inform him of plant status. (b) The SEM will inform the Recovery Manager (RM) of the plant status. The RM will inform the participants in the LEOF and the Corporate Response Manager of plant status and exercise status. (c) The Shif t Supervisor will, at his discretion or direction of the SEM, announce over the Gai-tronics that the exercise has been terminated or suspended. (d) The termination / suspension message will be followed immediately by an announcement concerning the "real" emergency. (e) The Drill Manager and/or Lead Controller will direci. exercise termination / suspension actions of the controllers and observers. In the event of "3" occurring, the following actions should,be taken: (a) The affected off-site agencies should establish direct contact with the Station Emergency Manager-(SDI). (b) The SEM will make necessary notifications and contact representatives of federal, state and local. agencies in the LEOF affected by the emergency. (c) A coordinated decision. by the SEM and the Recovery Manager will be made in conjunction with~ the l participating off-site authorities concerning the l ( continuation of the exercise. l l 4 -. - c .qqv.. g ...9wer - .-g. , . - - v y p. t-

(d) If the exercise is terminated / suspended, the SEM will ensure an announcement is made. (e) If the exercise is terminated / suspended, the Drill Manager and/or Lead Controller will direct exercise termination / suspension actions of the controllers and observers. (f) If the exercise is to continue without involvement of the affected federal, state or local agencies, the Drill Manager and/or Lead Controller will inform the controllers and observers of the changes and actions required to restore the exercise sequence. -O O

I VIRGINIA POWER u (} NORTH ANNA POWER STATION-MAY 15,1991 EMERGENCY EXERCISE . 1 REFERFNCES O 4

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VIRGINIA POWER (' NORTH ANNA POWER STATION - ( ,f ~ MAY 15, 1991 EMERGENCY EXERCISE REFERENCES

1. Corporate Emergency Response Plan
2. Corporate Plan Implementing Procedures
3. North Anna Power Station Emergency Plan
4. North Anna Power Station Emergency Plan Implementing Procedures
5. North Anna Power Station Updated Final Safety Analysis Report
6. NUREG 0654/ FEMA-REP-1, Revision 1, Criteria for Preparation and Evaluation of Radiological Emergency Response Plans and Preparedness in Support of Nuclear Power Plants
7. NUREG/CR-3365, Report to the NRC on Guidance for Preparing Scenarios for Emergency Preparedness Exercises at Nuclear Generating Stations
8. Federal Emergency Management Agency Guidance Memorandum EX-3,

[~) V Managing Pre-Exercise Activities and Post-Exercise _ Meetings

9. WASH-1400, Reactor Safet? Study
10. NUREG/CR 1918, Dose Rate Conversion Factors for External Exposure to Photons and Electrons
11. Reg Guide 1.109, Calculations of Annual Dose to Man- from Routine Releases of ReacL'r for the Purpose of Evaluation Compliance with 10CFR50, Appendix I
12. Reg Guide 1.111, Methods of Estimating Atmospheric Transport and Dispersion of Gaseous Effluents in Routing Releases from Light-Water-Cooled Reactors O

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VIRGINIA POWER NORTII ANNA POWER STATION MAY 15,1991_ EMERGENCY EXERCISE CONDUCT GUIDELINES & O INFORMATION-yo s a +

VIRGINIA POWER (" NORTH ANNA POWER STATION ( MAY 15, 1991 EMERGENCY EXERCISE CONDUCT GUIRELINES AND INFORMATION INDEX

1. Exorcino Controller Assignments
2. Exerciso Observar Assignments
3. Precautions and Limitations
4. Controller and Observer Instructions and Rules
5. Participant Instructions and Rules O

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VIRGINIA POWER I_s NORTH ANNA POWER STATION ks- ] MAY 15, 1991 EMERGENCY EXERCISE EXEEglfF CONTROLLER AfiSIGNMENTS prill MaDDuer (2421,2438) Rialth Physiga (2609) J.E. Collins Lead: D.M. Ross Asst: D.B. Lowman Lgad Controller (2473/2870) Asut: D.L. Horn Asst: K. Licklidor W.R. Madison Asst: R.H. Perrin Asst: E.A. Schnell 9_9n tr9l_.Ap_pjLSimu1a t or Asst: R.P. Lee Asst: T.J. Szymanski Lead: W.H. Neidermeyer Asst: M.L. Britt pecurity (2224,2222)  ; Data: T.N. Ferrando Sim Op: G.F. Winks, III Lead: H.D. Vaughan Asst: J.W. Yeatts Operatjons Field (2871/2508) LIDI (2619) Lead: J.R. Davies t'- Asst: T . P. . Crawford Lead: W.F. Renz Asst: K.M. Link Asst: G.N. Keeney Asst: G.B. Scott Data: T.L. Hito Technical _ gggpptt Center (2010) CERC/CEOF (3214) uead: J.H. Lusher Lead: S.A. Harrison Asst: J.D. Rayman Asst: D.J. Burke Data: S.H. Varner Data: T.O. Thompson Operalional Support Centet (2615,2G12) Lead: M.C. Asbury Asst: M.G. Wood Asst: H.M. Snoddy, Jr. Asst: R. Booth Asst: P.K. Hale Asst: D.C. Olson Asst: J.E. Padgett Asst: T.M. Meek Asst: R.W. Fleshman Chemistry (2805) l Lead: L.D. Lee L - Asst: J. Almond t_-

VIRGINIA POWER NORTH ANNA POWER STATION f~}/ x- MAY 15, 1991 EMERGENCY EXERCISE i EXERCISE OBSERVER ASSIGNMENTS Control Room Simulator CERC/CEDI Lead: J.C. Lencalls Lead: M.A. Smith Asst: R.E. Beckwith 9p_erations Field JPIC/ RUMOR CONTROL Lead: G.H. Harris Lead: T.J. Coombs Technica Lgypoort Center Local Media Center Lead: S.M. Wood Asst: M. Tower Lead S.E. Murphy Operational Support Copier Lead: J.B. Costello Asst: G.M. Seay Asst: V. Volgesang, Jr. Chemistry Lead: C.A. Tarantino Health Physics Lead: I. Seybold Asst: J.G. Rudmann Asst: E.J. Hellermann g_ecurity Lead: R.E. Craddock LEOF Lead: R.H. Kulp Asst: D. Phelps L

VIRGINIA POWER

    /O                                    h0RTH ANNA POWER STATION V                                MAY 15, 1991 EMERGENC'i EXERCISE EXERCISE CONTROL CELL ASJIGNMENTS dis Communicator (2780)

B.J. Slone , state and Local Communicator (NA)

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G.E. Pederson Vendor (3703) R.L. Tynan tLudia TBD [Lumor Control TBD

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EllECAUTIO_FS AND LIMIT &TJ_XS This section provides information relating to the rules and guidelines to be followed throughout the conduct of this exercise. Prior te initiation of the exercise, a pre-exercise briefing will be held to review the entire exercise process with all the exercise controllers and observers.

1. If an actual emergency situation develops during the conduct of this exercise, all activities related to the exercise will be suspended or terminated. It is the responsibility of any exercise controll2r, observer or participant, that becomes aware of an actual emergency, to suspend exercise response in their area and inform the Drill Manager and/or Lead controller. Upon notification of an actual emergency, the Drill Manager and/or Lead Controller will notify all controllers of the situation and the appropriate actions to perform.
2. If an exercise controller or observer witnesses an exercise participant attempt to perform an action which would, in the opinion of the controller or observer, place an individual or component jn an unsafe condition, the controller or observer is responsible for terminating the unsafe activity immediately. Upon termination of the activity, the controller or observer is responsible for informing the Drill Manager and/or the Lead controller of the activity terminated. The Drill Manager and/or Lead Controller will determine if the exercise or any portion of the exercise should be suspended or terminated.
3. Actual plant operating systems, valves, breakers or controls are not to be manipulated, with the exception of manipulation and line up of valves for a post accident sample from the PAFS/HRSS system. Fire hoses may be pulled but ILQT pressurized.

Controllers stationed at areas vital to maintaining station operation must be capccially aware and take extra precautions in issuing messages or giving instructions regarding scenario events.

4. All exercise related repair activities will be simulated with extreme caution emphasized around operating equipment, t
5. All communications relating to the exercise must begin and end with "This Is A Drill." If a controller or observer witnesses O a participant not following this practice, individual of the need to follow this procedure.

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6. If the exercise events require response by motor vehicle, all normal motor vehicle operating laws must be adhered to.
7. Exercise participants are expected to inject as much realism into the exercise as is consistent with its safe performance; however, caution must be used to prevent over reaction.
8. Exercise controllers and observers must exercise caution to assure that any non-participating individuals observing exercise activities or overhearing exercise communications are not misled into believing that un actual emergency exists.
9. Exercise controllers must ensure that observers and evaluators do not inject events into the exercise without prior approval by the Drill Manager and/or Lead Controller.

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VIRGINIA POWER NORTH ANNA POWER STATION C MAY 15, 1991 EMERGENCY EXERCISE 99HIRQJM_ILJ XD_QDSERVER INSTRUCTIONS AND RULES This section provides information relating to the instructions and rules to be followed by the controllers and observers throughout the conduct of this exercise. Ins _tructions:

1. Personnel are assigned as controllers and observers at all key functional areas, including the various in-plant and field teams. The controllers will control and monitor the exercise and the observers will evaluate the participant and control'-"

performance during the exercise.

2. The in-plant controllers will be coordinated by the Lead Controller, located in the Control Room simulator, via designated lead controllers in each functional area. Off-site field team :entrollers will be coordinated by the Health Physica controller, located in the Local Emergency operations Facility. The Drill Manager is responsible for the overall conduct of the exercise.

(d 3. The Control Room Simulator (CRS), in conjunction with message and data forms, will be used to initiate, alter and complete the exercise scenario events. The CRS will be run live-time to create plant operational data. However, in case of CRS f ailure and to supplement CRS data, selected controllers will use message and data forms to initiate scenario events and to trigger participant response actions. Three kinds of messages will be used:

             -   Scenetrig Used    to   provide  nypothesized    information to   the participants to cause participant actions and also, to provide information to participants in response to their actions.
             -   C_o_Dtincency Used at the discretion of a controller to prompt the participants to perform the major actions expected of them to meet the exercise objectives.         Also used to maintain scenario continuity and schedule.

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Blocking Used to prevent participant actions which would alter continuity of the scenario time-line. Messages and data will be presented to the designated exercise participants at the time specified on the message or data form. The controllers must provide any clarification necessary to ensure the participant understands the message and/or data. Controllers will not provide information to the participants regarding scenario development or problem resolution. The participants are expected to obtain information through their organization and exercise their own judgement in determining - response actions and resolving problems. In the event of incorrect or incomplete responso, or the participant indicates a lack of knowledge as to how to proceed, the controller will prompt the individual with the necessary instructions and the observer must note the deficiency on the critique form.

4. Controllers will have the time related plant and radiological parameter data of the exercise scenario. This information will be issued only to the participants norma).ly having access to the information.
5. Some exercise participants may insist that certain parts of the scenario are unrealistic. The controllers and observers have the authority, with approval of the Drill Manager and/or Lead Controller, to clarify questions regarding scenario content. In some cases, it may be necessary to exercise
        " controller's prerogative" to preserve the continuity and objectives of the exercise.
6. The controller organization communication system will be tested prior to commencing the exercise.
7. To ensure that messages and data are delivered at the appropriate times, controllers will synchronize their watches prior to commencing the exercise.

B. Participants are not allowed to introduce items into the exercise scenario.

9. Upon exercise termination, return all exercise manuals to the Lead Controller.
10. Upon exercise termination, return all controller and observer badges to the Lead Controller.
11. There are no breaks scheduled in the exercise. Participants, controllers and observers should be relieved to eat as time permits.
12. The lead observer and controller in each functional area must O attend the post-exercise critique session to provide their comments to the Lead controller.

Rules: Do's

1. Know the overall controller-and obsec%er organizations.
2. Identify the participants by name and their emergency response position.
3. Wear your controller or observer badge at all times to identify yourself to the participants.
4. Know the location of the communication system you will use to communicate with the controller organization.
5. Position yourself to maximize your offectiveness in issuing scenario information or observing the participants.
6. Know what the participants' response actions should be based on the scenario events.
7. Keep the play on schedule based on the time-line.

() 8. Deliver messages and data on time.

9. If the exercise is off schedule or if in doubt about what to do, call the Lead Controller or Drill Manager for advice. If necessary, intervene with participant actions to put the participants back on the exercise schedule.
10. Area lead controllers must keep the Drill Manager informed of the participants' response actions.
11. Allow the participants reasonable - flexibility to perform functions to demonstrate their skill, knowledge and-initiative.
12. Identify the federal evaluators and ensure they are aware of your actions and those of the participants (especially those actions which demonstrate exercise objectives).
13. Be at your assigned post well in advance of any expected participant response actions or as ~ directed by the Lead Controller.and/or Drill Manager-.
14. The observers need to make notes on good and bad points of participants' actions. Use the Critique Forms.

O 15. The observers need to keep a chronological record of events in their assigned area. _ _ _ _ _ - . . - . _ _ _ ~.

16. controllers and observers, even though exempt from exercise

/' scenario related protective measures, must observe all normal station protective measure requirements.

17. The lead observers in each functional area must-ensure that the participants in +. heir-area sign an attendance form.
18. Follow all normal station safety rules. Remember, safety takes precedence over all other requirements.-

Don'ts

1. Don't leave your assigned-post unless authorized by the-Drill Manager and/or Lead controller.
2. Don't prompt participants to take actions.
3. Don't coach the participants.
4. Don't allow external influences to distract the participants.

O D O

VIRGINIA POWER O NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE PARTICIPANT INS _TRUCTIONS AND RULES This section provides information relating to the instructions and rules to be followed by the participants throughout the conduct of this exercise. Prior to initiation of the exercise, all participants (at least the leaders of the participating groups) must read and follow these rules. This is important to the successful demonstration of emergency response capabilities.

1. When the exercise initiates, identify the controllers, observers, and evaluators in your area of participation (they will be wearing identification badges).
2. Identify yourself as a participant by name and function to the controllers and observers. Emergency response position badges will be available to identify many of the key positions in some of the facilities.
3. Perform all actions, is though it were a real emergency, in accordance with emergency plan and procedures. Unless otherwise directed by a controller, DO NOT simulate your actions. If directed to simulate an action, explain to the observer the process of performing the action.
4. Ensure the controllers, observers, and evaluators are aware of your actions. Speak out loud and identify your key actions and decisions and do not assume that a simulated or unobserved action worked. This may seem artificial; however, it is essential to the conduct and evaluation of the exercise.
5. If you need clarification concerning scenario information or your extent of play, ask the controller. Remember the controller can not provide you information considered to be prompting or coaching but can clarify information.
6. Controllers will periodically issue messages or instructions designed to initiate response actions. You must accept and respond to these messages immediately because they are essential to successful performance of the exercise.
7. If a controller intervenes in your activities, it is for a good reason. Unless safety is a concern, follow the controller's directions at all times. This is essential to the overall success of the exercise.
8. If you disagree with a controller, ask him to reconsider the O request or information provided.

controller's word is final. Remember though, the

I t

9. Respond to controller, observer and evaluator questions.
10. Do not accept messages or instructions from federal evaluators.

If evaluators want to initiate participant actions, they must work through the controller organization.

11. As an exercise participant, you must follow all exercise related radiological conditions as though they were real. Unless otherwise directed by a controller, you must exercise related protective measures.
12. Exercise controllers, observers, and evaluators are exempt from following protective measures established by the events of the exercise. Do not allow their exemption to confuse you or cause you to act unwisely.
13. If you are entering norni nuclear station radiological controlled areas, observe all rules and procedures. No one is exempt from normal station radiological practices and procedures.

NOTE: UNLESS AUTHORIZATION IS GRANTED DY THE PROPER AUTHORITY, DO NOT ENTER ANY TYPE OF RADIATION AREA FOR PURPOSES OF THIS EXERCISE. FOLLOW ALARA PRINCIPLES.

14. Use status boards, logs, etc., according to procedure to document Os your actions and reports to your co-participants. This is very important in demonstrating your response actions.
15. Do not enter into casual conversations with anyone. Act out your response actions in the same professional manner as you would in a real emergency.
16. Begin and end all communications relating to the exercise with "This is a Drill." This is essential to prevent non-participating organizations from believing a real emergency exists.
17. Unless directed to do so by a controller, do not use real-time plant data.
18. Follow all normal station safety practices.
19. If the exercise events requires you to operate a motor vehicle, follow all motor vehicle operation regulations.
20. Emergency exercises often times reveals deficiencies in emergency plans, procedures, training or equipment. Document the' deficiency items as you-identify them during the conduct of the exercise.
21. After the exercise is terminated, area critiques will be conducted. Provide your identified deficiencies and other

.O feedback to the lead observer in your area. Your input is (_/ critical to the overall evaluation of the exercise.

1 i i VIRGINIA POWER O NORTH ANNA POWER STATION i i MAY 15,1991 EMERGENCY EXERCISE  : i-i I ASSUMPTIONS O ? A U i.

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

VIRGINIA POWER O NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE j ASSUMPTIONS An emergency exercise requires that significant effort be put forth in research and development to ensure that - the events depicted are as realistic and credible as possible. To create an- , exercise scenario two event categories are considered, human error ' and equipment malfunction. Human error is the easiest and more flexible category to identify in a scenario; however, no one likes to assume they will make a mistake, especially one which would cause significant plant damage or-off-site consequences. This does not, however, preclude using ' this means to provide input .into the scenario, since the possibility. for human error does exist based on the amount of human judgement involved in implementing emergency response actions for l off-normal plant conditions. Equipment malfunction is difficult to incorporate into a scisu rio, especially where it is needed to cause plant damage that creates a - serious problem to the off-site environment. This is true because of the designed reliability and redundancy of safety systems installed at nuclear power facilities. The Updated Final Safety O Analysis Report provides the analyzed capabilities of plant systems - to maintain control over radioactive _ material within the plant during off-normal plant incidents. Thus, to incorporate equipment malfunctions into a scenario, assumptions must be made which are , not consistent with design and analysis data. Additionally, the public's perception of an exercise scenario occasionally leads them to believe that these: events are probable. It must be known that if a sequence of-events presented in-this scenario were possible, an Unreviewed Safety Question.would exist and actions would be taken to rectify the situation. ' Thus, in order'to achieve a sequence of events to force participant actions to meet the objectives of an exercise, many improbable- ~ events must be factored in and: assumptions made'.- The following list' includes-.the assumptions- used to create this exercise: scenario. o , A's ~ + - - - .., v r- *rwen s. m. v es v-m e em n.-. ,-3 ..,--,c,--. r.wwv..--.-.,i.e .,e ,, c- --,--.-s-e -e e -,-,e- - . . w-,r, n---"=,--

r l VIRGINIA POWER NORTH ANNA POWER STATION U MAY 15, 1991 EMERGENCY EXERCISE ASSUMPTIONS

1. Values for data will be identified as "<" a value if the- i parameter is between the last mark on the gauge and "0".
2. 1-CH-P-1B is started at 0831.

t

3. Diesel is secured at 1002. -
4. CDA was manually initiated.
5. Ventilation flows are as follows :

Vent Vent A : 70,000 prior to shifting, 89,600 post shift. i Vent \ent B : 57,000 prior to shifting, 43,350 post shift. Process Vent : 300. Time of shift = 1054

6. Once Steam Generator pressure decreases to less than 175 PSIG then the steam driven AFW Pump will be secured.
7. Trend analysis was applied to data post 1041.

1 i O . 5 c,r r+1 - g ,mw,--4, e yyy-,*n- ge --r= .-,-e---vvyU,-- .- rpu, +-- --- r # U - er v , , - - - - + - < - -

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l 1 (O) VIRGINIA POWER COMPANY NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE RADIOLOGICAL DATA CONSTRUCT Sequence Description Core damage (40 % clad failure postulated) occurs when a locked rotor event results in loose parts circulating through the reactor vessel. Subsequently, a small LOCA resulting in about 60 GPM occurs and continues for about 21 minutes. Strippad gases (IAW Wash-1400 fractions) results la an upward trend of the containment radiation monitors and appropriate emergency classifications and notifications proceed. At about 0947, a LARGE LOCA occurs on "B" cold leg return. All ESF function and SI proceeds. The entire RCS volume ( and inventory ) leaks away during the six minutes following this leak while SI maintains level from RWST suction. All Containment Radiation Monitors alarm at their setpoints and appropriate classification and notifications should occur at this time. () At about 1949 when Low and High head Si pumps switch from RWST suction to Containment Sump recirc, a leak in the aux 11ary building is postulated to commence from NOV 1863 ( A or B). A junction weld breaks resulting in Containment Sump activity being releaced to the 244' elevation of the Aux Building. Leak rates were artificially elevated to very high volumes (400 GPM ) to compensate for the reduced activity of the Sump water which was previously stripped of about 95 % of the Noble Gas inventory and 50 % of the Halogens. The activity released to the Aux Building is modeled to behave in accordance with the standard physical gas laws. Diffusion occurs as a function of building ventilation rates. An exception is that the leak is postulated to occur within the vicinity of an exhauet vent which has a flow rate of 25,ooo CFM. Thus some linearity is modeled directly from the area where the gases are stripped from solution. r

() Ventilation Vent System radiation monitors alarm 2 minutes following the start of the leak. It is assumed for ventilation filtration efficiency computations that the category 1 emergency filtration train is engaged at 1954. Release rates and release rate concentrations are reduced as flow fractions are diverted to include Ventilation Vent "B" (Emerg. Filtration System Lineup) and then gradually increase as gas concentrations reach equilibrium with ventilation. Attachment 1 depicts the physical consbants and variables utilized for the radiological modeling. Few assumptions were made with respect to radiological computations; variables were introduced to modify some conditions to acheive a desired radiological value. O l .

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

                                                                                                                                   -                                 --...~-.-n-         n      . ~ ~ . -

r L Drill / Russcie# Phyalcel Constante i 841T8e 3/28/91 l MORTW ANNA FOWtk STAT!DN j

            \                                                                PtYSIC,AL / STRUCTUKAL _COM87 ANTS              , , .
          /

Conteinment Volume ( ce ' s _J_s 5.433+10 steen Genesstor Volueen f iff 6 Fwtt RCS Volume . ce's (During_operationj e f.77t+99 Shell 6tde . Ibe-meest

          '. es_sel Sump Volume . ce'e s 2.278409        shell $1de . Ce11ones steam Ceneretor Volume                                                                            shell Side . ec'et ec(ef_i,ne,h,jdering normal opnej e.                                                              R,CS_ volume _. Cal.                                 1.328494 3 Accutu_1stor6                ce*et                                              0.592457        _

j Rws? . ec*es 1.04t+99_ Auxilary building Free VolumagCu M): 2.292484 PRT . ee'es {___ 3.603487 safety _ Valve Flow Rates (Ibe/ hrs see notej ,_ SV-ns.181 - As 3.11B+95 { sV-MS-101 - D ' 3.71t+05 SV.MA-1,0_1 - Cs _ 3.71249 _5 '

          $V.Ms.381 - As                                                                    3.712495                _

EV.MS.281 - 88 3.712485 .l

                                                                                                                                                                         ~ ~

SV-MS.291 . Cs 3.71249$ [ EV.MS.192 . A s 0.398405 SV.H5 18) 9e 0.39t48$ SV-MS-182 . C : 0.392495 SV-MS-103 . At 0.198+85 GV-M8 lf3 - Bs 0.39t49% SV.MS-103 . Cs 0.393485

                                                                      ,f_
                                                                      ~

SV MS.194 . A t 9. 3 9 2 4 P 5_ SV-MS.194 . De 8.392405 '

          $ _V-MS.194        CI                                                             0.39t+0$

sv.MS.195 . A a 8.39340% SV.M8 195 . Bs f.39248S SV.Ms-185 . Cs 8.398+#$ g-($rth Anna Clad Failure Fractions 4 9. 8 8 t__ I \Fs RFT Volume /Dimenelone Co. Pts 3.03t*f2

k. /_ [ 6ee note A . 32) [

Filtration Train Rificioney a t (Wott A.34 964 Vent System Flow Rate (filtered) . CFM (see note A.35) Ventilation. Vent 'A' e 99999 ventilation Vent "B* e 43350 _ _ Turbine Bldg Venthletion Sys (Note A-30) Turbine _ Bldg d ahaust Fan Flowrate Twenty _fane totel) CFM per fans l '.98B404 Turb B1dg._ Dimensions ( ru. ft . es. b1dg. 4.638406 Approm Free Volume Dimensione l ' ( ce* e= es. b1dg sts NOTE A-4 3): 9.03E+10 _, Main 8 team Flow-rate _[1_bn/hr. Note A . 44) 4.302496 , conversio,n_ Factor = lbe/mase/hr CFMt $ . 9 8 t + 02_ [ MET' CONDITIO_NS Wind Speed ( mph le 2.7 Delta *T*(, Degrees ara): s.9s Direction (begreents I 349.6 a Fage 1 ,

 ,--    u.,,._._       . , _ . - . . , _ , . . , . , , - . . _ _ _ - ~ - - . . .                          J. A ,. a . - _ - -      .___....._...~.,....-u._,.,-..                - . - . - -- . - . . - -.:

i l briil / taercios Fhysical corstente . 1rvawtony- i , I q 1_ i 4_ 4___ l

       )                _ _ . _ -                _j Mars _mr_I                _1.__ _ t                               d              L __              _l
  • 3 a** PtML I car,.*'l'e se Fract ir no Avlease Fractions Grouped _ _

I_s ot ope in N rles I a,t,_ya _ ,ipy u_c or_e,J_ tj oyt_ epa l s4 jbyFbysicalProper_ti,6s _ l F(min) F(evg) Er . 85 4.44tef? 9.47E.95 6.992 04 F 4 n.a z ) 2.32E.53 total i

                                                                                                                    ]_  F(aart)             Flavt             F(sas)

Fr-SSm J 2.91t+07 3.832. fin 3.32E f4 1.f5t.93 Noble

                                                                                                                                                   ]                  ;

Kr.97 3.87F457 2.96t-f5 1 5.652-04 Cae Fract 1.22E.9 9.922-83 3.332 f2 2,... ... t.9, 3.94c.9 b 67E.f4 4..... . 4,F.94

     $b-129               2.35E+97                     3.t#1 95       1.222 94       4.121 94                Total to. u t              2.nt.c7                      2.sfr-95       1.nF-f 4       s.in.f e         _1 gin.

I'

  • I. I 5 8 _3'4.SE*f6j 1.Sft f5 j.22E.f4 4.127 84__ _Fract. , 1 242-f3__l.012 92 3.482 82 To.132 _ 1.ftr+80 1. Sit-99 3.223 94 4 12E.e4
     !.333            j1.49F497                       6.72E-94        5.462 03       1.942.f2                P.l s e .

1 132 1.97teet 7.272 95 S.912.f4 2.fft.03 malogens I

  • I_I I.._ _-.__ _ .I
  • II E
  • I b 4 ..-2.}H-f4 1.77t.93 5.992-93 Fract. 6.982-05 4.00F-84 1.652 83 n4 3.7er ee ] 4. ut-e3
                                                    . 1. 4 9E.e4 1 i .2 2 E.n
       -23s               3.42t+ee j__y 1.24r-94                      2.52t.n       3.442.f3
                                                                                                                                     }_                            _

x.. n i.

                         ..nr.f s 1               j 3.9.t.84          2. 58E.n      ..ut-n                                           j LTiii                2. 4TE.Fq               .

4.242 84 3.ut-9D1.iee92

     "? .P )a ._.. 4 '2 E* ' t Re.135 1   852dL_2         Hr-H j.ldtt 8_)   f        _Iotal 3.14E+97                     1.0fr.04        1.472-93. . 4.952 93              articulate Co.134              S.592+f6                     6.fft-96        4.588.#5      1.641.f4               Fraction        6.175' 96 Co.137              6.352496                     1. Sit.97       1.22E.f4 5.flF-85f1.69t94 4.112 06                                                             i 4

ha 149 1.32t+p8 3.$8E.99 1.22E.90 4.115 99 j C'e-144 8.18E4 97 ) 3.Sft.ff 1.22E.97 4.12B*f7 Total l Pr.144 9.24f4f7 1.5ft.ft 3.22F-88 4 112 00 Fractions '.32F-93 2.fSF-92 6.93F.f2 e t

 \

x l Page 2 i

Drill / 12srei;3 Phy:Ac31 C:nstante

                                      . IRAts Iw!r! AL core DA; tact VAuts' glaga11ge OK}{_ .

(p J __ .jtew . ....ei I I

                                                  -.+_..                                 1                    __

_ l_ y s 3-111 Does Equivalent et Mietous core Life ___ l _.), d._Ayt t v i ty. c. F. 131 D. E. l  ;{ uC&/cc ) 3 . 1 135 7.!tr+ft 1.pft+pf 7.10t+81 f j 1 112 {112F+01 3.61t.42 4.062-81 [ --.- .1' 0 L. L .' '*' 2 L 3: 'it .* ' 131." *!L .. 1-134 3.e6t+ft 1.692 92 6.19E.01 1 1-us 1 2.s n. 1

                                                                                           . . n t.n     2. nt...          _

1 70'I AL

  • 4.791491 m . .

s _ - - -. .p,_.-. _-__iPf3Lt-331 - _. Dome _ _. g valent at Average coreLLife C. F. *

     ---                               {,                                  ! Activity i                 -131 D.----E.            { .-

l 1 131 S.83t+#2 1.pst+99 ~5. 8 3 t + 0 21 ~ 1 132 9.13t+01 3.412 22 3.38t+f8 2 131 3 ett+f2 2.7pt-91 1.95t+t2 l _ j 1 134 3.01t+f2 1.691 92 5.098.+88

                                                              !< 135          2. mpg 4p;   g,3pg.t2      1.75t+ft TOTAL =        7.14t+82 k
                                                                        ,_1 I-.

RC8 1-111 been Equivalent at Maximum Core Life Activity C. F. -1J1 D. E. 6/k _ Q 2-133

                                                                          .fuci/ec].

l1.97t+03 _1. eft +r8 1132_{,3.99t+82 3.418 02 1.971*f3 1.12t+81 1.In 2.78t 01 3.Stt+02 {1.31E+03 2 114 1.02E+03 1.691-92 1.722+01 _.7 1_J 5 7.05t+02 8.383 87 _. _5.91R+01 TOTAL = 2.41t+03 [ - - - 1 1 i 1 g

  • ).

Page 5 i

Drill / R2cact:3 Ptyelcal Crestento I _j RCs source Ters at 198 Porrent Clad Failure _ av.ug. I 1 on . 1,.. . i,. . . 1., Energy F(min) _ r_(avg) F t r.aa )4, ( hev ) _( uti ) J uct ) ( uCi )J Er_. OS 3.76E+#9 3.67E*19 _ 3.9 3Ee .1 { Er 95m 7.7ft+94 C.27E+ft ,4 Er.07 7.97t+ft 6. 4 6 2 42.19E+18 9 91_2._11t + 19 Fr.88 1.672+99 1. 3 6 R+ 18 I 4. S S E

  • 19
                                                                     ~

l Bb.129 3.53R+tt 2.873+99 9.4 9 E 5 f[ l __T*.129 3.~474+80 ~ 2.82E+89 9.82t+ff l_To12Pm 5.18F+87 4.215488 1 42r+s9 l fe.112 3.t4B+99 1.itt+49 4.1)R418 1 131 4.97t+10 4.04F*11 1.36t+12 y 1 132 7.18t+99 4.32E+10 2.14E411

    )_1-13) _ 4_                3.31E+10      2.69t+11        9.19t+11
    * . 114                     2.let+10      2.rft+11        7.81t+11
1. 35 1.76t+10 1.4$2411 4.68t+11 n.m. __p i,s.. ...,.. 9 7..u+,,

22 133 4.32E;1f 5 12E+11 1.73t*12 t) 133m 6.37t+te $.243+ 4g 1.7?F+10 X).11$ S . 6 7.E+ # 9 t 4.62E+18 l. 1.65t*11 __C .334 $.15t+f7 4.19t+80 -1.48t+89 _ _ ce .13 7 9 511+45 7.74E+#4 -7.81E+87 Ba.148 1.988+05 1.81B+96 5.42N+f6

      ,Co.144                   A.23E+t6      p.9tB+p6 _3.16F+D7 Pa.144                  1.248406      1. f t t+56 - 3.398+84                                   *
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Drll! / S23rcl23 Phy34c31 Conettut3 e WAPS_ INITI AL kCE ACTIVITY { uti/ce) { See '.cto g ell T . 1) Camd Damage e .e 1 48.tet d Min Life Ave Life Man Life j [Kr . 85 5 433+88 4.438+0! 3.4ptit2 _Fr.05m 1 118498 9. 0 6 t+ t ej 3.95t+01 Er 97 1.15tve y 9.33t+8tj 3.16t+s1 __ Kr.00 2 412498l 1.94E+f1! 4.433491 l Sb.129 5.898 91 4.143488 1.488481 _ To.129 S.f98 01 4.978+PS 1. 3_7t+ f 1 l lTo.129m 7.4?f.02 6.00k.81 2 81t+88 I l To.132 3.275+80 1.85t+51 6.255481 1 *.31 1.10t+01 S.03t+f2 1.97t+83 1 132 1 128401 9.132481 3.99t+#2 L , 1 113 4.788+01 3.99t+02 1.31t+93 1 134 3.64t481 3.01t+e2 1. f t t_+ f,3 1 125 2 542+01 2.998+02 7.958+t2 ts.131m 3.69E.01 2.998+p9 1.912481 to.133 9.12t+91 1.49t+f2p 2.692403 23 133m 9.202 01 1. 4 3 t+ f f l 2.522491 te.135 0.168499 6.47t+81 2.24E-02 Co.134 7.445 92 6.959 81 2.ptt+f8 Ca.*39 1 3tt-81 1+12E.02 3.77E.02 ba.145 2.06E.84 2 128 03 - 7.832 83 Co.144 1.778 93 1.443.f2 4.855 92 Pr.144 1.7 95.D 4 -- 1.488 53 _4.983 51 Total _ uCi / cc 1.97t+02 2.582493 0.44t+81 Total g ,pe2enus 2.98t+f2 2.43E+93 9.28E403 gs These values are for dissolved,y ees in

\m. ,4hs RCG,           No or littleJ _as stripp g9 _has yet occurred...

m-M  !% h u's - c

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13sES 2.45E+5 6.995+3 2.38t+5 3.41E+1 1.47E+7 9.17E-82 1.ptt+e6 2.198-82 7.88E+95 2.82E+S5 1.37E+f5 4.19E+S f 13:E6 2.SSE+5 S.94E*3 2.82E+5 3.41E+1 1.25E*7 8.91E-82 9.45E+35 2.89E-82 6.81E+SS 2.46t+SS 1.282+S5 3.462+3 13:37 1.773+5 5.85E+3 1.72E+5 3.41E+1 1.86E+7 6.99E-82 S.2SE+S5 1.82E-82 5.95E+S5 2.15E+SS 1.95E+S5 3.198+5 l- 13:58 1.5eE+5 4.29E+3 1.46E45 3.4tE+1 9.91E+6 6.10E-82 7.2WE+SS 1.59E-82 S.19E*SS 1.87E*SS 9. '. 3E+#4 2.79E+S THIS IS A DRII.L

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TE16 1h'I OR1LL i i i i Mov 1963 *A* OR *B* Valve Body Leak Rate and 1sotopic A<tivity strip >ed f rom solution

cenario Er-85 Er-85m Er-87 Er-88 Ie-131m Ie-133 Es-133m 2e-135 1-131 1-132 1-133 1-134 1-135 co-134 co-137 ecas stripp h

_Tig? uci/see uci/see uci/sec uci/aec ocl/see uci/see uci/ree uci/see aci/see oci/see' oci/see aci/see sci /eee uci/see uct/see peg cia ,  ; I 18:49 1.2 5 E+ 1 2.282+8 1.76E45 4.71E+8 8.45E-1 2.88E+2 2.0fE+8 1.79E+1 4.11E+3 5.37E+2 2.YWE+3 1.31E+3 1.393+3 1.712-? 3.16E-3 3.79E44 18:5s 3.12E+3 5.69E+e 4.36E+E 1.17E+1 2.11E+8 5.21E+2 5.23E+8 4.482+1 1.93E+4 1.34E+3 6.74E+? 3.24E+1 3.46E+3, 4.27E-1 7.89E-3 9.46E44 i 19:51 6.24E+F 1.13E+1 8.64E+8 2.34E+1 4.23E+8 1.24E+3 1.95E+1 8.953+1 2.85E+4 2.46E+3 1.35E+4 6.49E+3 6.91E+3 8.54E-1 1.58E-2' 1.89E+5 18:52 9.36E+1 1.75E+1 1.28E+1 3.49E+1 6.34E+0 1.56E+3 1.57E+1 1.34E+2 3.e8E+4 3.97E+3 2.92E+4 9.48E+31 1.83E+4 1.28E+8 2.37E-2 2.84E+5 19:53 1.25E+2 2.26E+1 1.79E+1 4.64E+1 8.45E+8 2.88E+3 2.99E+1 1.79E+2 4.11E+4 5.263+3 2.69E+4 1.25E+4 1.38E+4 1.7.E+# 3.16E-2 3.798+5 19:54 1.56E+2 2.82E+1 2.10E+1 5.77E+1 1 96E+1 2.698+3 2.61E+1 2.23E+2 5.13E+4 6.55E+3 3.36E+4 1.54E+r 1.72E44 2.14E+e 2.95E-2 4.73E+5 [ 18:55 1.87E+2 3.37E+1 2.582+1 6.9BE+1 1.27E+1 3.12E+3 1.13E+1 2.67E+2 6.16E+4 7.81E+3 4.93E+4 1.82E+4 2.06E+4 2.54E+8 4.748-2 5.69E45 19:56 2.5fE32 4.48E+1 3.3st+1 9.16E+1 1.69E+1 4.17E+3 4.18E+1 3.56E+2 8.21E+4 1.84E+4 5.38E+4 2.48E+4 2.74E+4 3.42E45' 6.312-2 7. 5 7E+ 5 [ 18:57 3.12E+2 5.59E+1 4.89E+1 1.14E+2 2.11E+1 5.21E+3 5.22E+1 4.44E+2 1.83E+5 1.29E+4 6.72E+4 2.96E+4 3.42E+4 4. 2 7E+ 9l 7.89E-2 9.44E+5 10:58 3.74E+2 6.69E+1 4.86E+1 1.36E+2 2.54E+1 6.25F+3 6.26E+1 5.32E+2 1.23E+5 1.54E+4 8.86E+4 3.58E+4 4.89E+4 5.12E+# 9.47E-2 1.14E+4 . t

   '18:59      4.37E+2     7.78E+1  5.62E+1  1.58E+2   2.96E+1      7.29E+3    7.31E+1    6.28E+2      1.44E+5   1.79E+4   9.39E+4   4.83E+4   4.77E+4   5.98E+8    1.18E-1        1.32E+6         !

11:89 4.99E+2 i 8.87E+1 6.36E+1 1.898+2 3.38E+1 8.33E+3 8.35E+1 7. pee +2 1.64E+5 2.0 3E4 4 1.87E+5 4.55E+4 5.44E+4 6.83E+9: 1.26E-1 1.51E+6 11:81 4.99E+2 8.85E+1 6.3fE+1 1.79E+2 3.38E+1 8.33E+3 8.35E+1 7.97E+2 1.641+5 2.82E+4' 2.97E+5 4.49E+4 5.43E+4 _4.?tE+8 1.26E-1 1.51E+6 , 11:02 4.99E+2 8.82E+1 6.2SE+1 1.79E+2 3.38E+1 8.33E+3 8.35E+1 7.86E+2 1.64E+5 2.81E+4 1.875+5 4.43E+4 5.42E+4 6.">E+8 1.26E-1 1.53E+6 i 11:03 4.99E+2 8.80E+1 6.19E+1 1.78E+2 3.38E+1 8.33E+3 8.34E+1 7.85E+2 1.64E+5 2.98E+4 1.87E+5 4.37E+4 5.41E+4 6.83E+9 1.26E-1 1.51E+6

    '11sf4     4.95P+2     8.78E+1  6.13E+1  1.77E+2   3.38E+1      8.32E+3    8.34E+1    7.94E+2      1.64E+5   1.99E+4   _.07E+5   4.31E+4  5.4fE+4   6.83E+fl 1.24E-1          1.51E+6 11:05     4.99E+2     8.76E+1 6.98E 1   1.76E+2   3.38E+1      8.32E+3    8.34E+1    7.93E+2      1.64E+5   1.98E+4   1.57E+5  4.LSE+4   5.39E+4   6.83E+8l 1.26E-1          1. 51E +6 11396     4.99E+2     8.73E+1  6.82E+1  1.76E+2   3.38E+1      8.32E+3    8.34E+1    7.83E+2      1.64E+5   1.97E+4   1.P'E+5  4.2SE+4   5.383+4   6.83E+8     1.26E-1       1.51E+6 11:87     4.99E+2     8.71E+1  5.97E+1  1.75E+2   3.38E+1      8.32E+3    8.34E+1    7.92E+2      1.64E+5   1.96E+4   1.hME+5  4.14E+4   5.37E+4   6.83E+9     1.26E-1       1.51E+" '~

11:58 4.99E+2 8.69E+1 5.91E+1 1.74E+2 3.38E+1 8.32E+1 8.34E+1 7.f1E+2 1.64E45 1.95E+4 1.97E+5 4.99E+4 5.36E+4 6.83E+e 1.26E-1 1.51E-+ i 11399 4.99E+2 8.672+1 5.84E+1 1.74E+2 3.38E+1 8.32E+3 8.33E+1 7.882+2 1.64E45 1.94E+4 1.872+5 4.93E+4 5.35E+4 6.839+9 1.26E-1 1.53E+6 11:19 4.99E+2 8.54E+1 5.81E+1 1.73E42 3.38E+1 0.32E+3 8.33E+s 6.99E+2 1.64E+5 1.93E+4 1.87E+5 3.98E+4 5.34E+4 '4.83E+8 1.26E-1 1.51E+6 11:11 4.99E+2 8.62E+1 5.75E+1 1.72E+2 3.38E+1 8.32E+3 8.33E+1 6.98E+2 1.44E+5 1.92E+4 1.87E+5 3.93E+4 5.33E+4. 6.83E+# a.26E-1 1.51E+6 11:22 4.99E+2 8.6pE+1 5.78E+1 1.71E+2 3.382+1 8.32E+3 8.33E+1 6.97E42 1.64E+5 1.91E+4 1.078+5 3.88E+4 5.32E+4 6.83E+8 1.26E-1 1.51E66 11:13 4.99E+2 8.588+1 5.65E+1 1.71E+2' 3.38E+1 8.32E+3 8.33E+1 6.96E42 1.64E+5 1.98E+4 1.872+5 3.03E+4 5.32E+4 6.83E+P 1.26E-1 1.51E+6 t 11:14 4.99E+2 8.56E+1 5.68E+1 1.78E+2 3.38E+1 8.32E+3 8.32E+1 6.f6E+2 1.64E+5 1.89E+4 1.86E+5 3.77E+4 5.31E+4 6.83E+F 1.26E-1 1.51E+6 11:15 4.99E+2 8.53E+1 5,ASE+1 1.69E+2 3.38E+1 8.37E+3 8.32E+1 6.95E+2 1 44E+5 1.88E44 1.06E+5 3.* -4 5.38E+4 6.83E+8 1.26E-1 e1.51F+6 .i 11:16 4.99E+2 8.51E+1 5.5fE+1 1.69E+2 1.38E+1 8.32E+3 8.32E+1 6.94E+2 1.64E+5 1.87E+4 1.06E+5 3.6 4+4 5.29E+4 6.83E+S, 1.26E-1 1.51E+6 11:17 4.99E+2 8.49E+1 5.45E+1 1.68E+2 3.38E+1 8.31E+3 8.32E+1 6.93E+2 1.64E+5 1.16E+4 1.86E+5 3.63E+4 5.28E+4 6.83E+f 1.24E-1 1.51E+6 "' 11:18 4.99E+2 8.47E+1 5.48E41 1.67E+2 3.38E+1 8.31E+3 8.32E+1 6.92E+2 1.64E+5 1.85E+4 1.96E+5 3.58E+4 5.273+4 6.83E+8 1.26E-1 1.51E+6 l 11:19 4.99E+2 8.45E+1 -5.35E+1 1.67E+2 3.38E+1 '8.31E+3 8.32E+1 6.91E+2 1.64E+5 1.85E+4 1.865+5 3.53E+4 5.26E+4 6.83E+e 1.26E-1 1.51E+6 1*s28 4.99E42 8.42E+1 5.3eE+1 1.66E+2 3.38E+1 8.31E+3 8.31E+1 6.98E+2 1.64E+5 1.84E+4 1.86E+5 3.49E+4 5.25E+4 6.83E40 1.26E-1 1.51E+6 [ 11:21 4.99E+2 8.48E+1 5.25E+1 1.65E+2 3.38E+1 8.31E+3 8.31E+1 6.892+2 1.64E+5 1.93E+4 1.86E45 3.44E+4 5.24E+4 6. 8 3E+ f 1.26E-1, 1.53E+6

11:22 4.99E+2 8.38E+1 5.2fE+1 1.64E+2 3.38E+1 8.31E+3 8.31E+1 6.89E+2 1.64E+5 1.82E+4[ 1.863+5 3.39E+4 5.23E+4 4.83E+8 1.26E-li 1.51E+6 ,

11:23 4.99E+2 8.36E+1 5.15E+1 1.64E+2 3.38E+1 8.31E+3 l B.31E+1 6.88E+2 1.64E+5 1.81E+4! 1.86E+5i 3.35E+4i 5.22E+4, 6.83E+#. 1. 26 E-1! 1.51E+6 TEIS 15 A DRILL i

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s / TEIS fJ'% DRILL a l l l l Mov 186 3 *A* OR *S* Valve Body Leak Rate and Isotopic Activity Striped f roen Solution teenario Er-85 Kr-85m Er-87 Kr-88 Xe-131m Xe-133 Ie-133m (e-135 1-131 1-132 1-133 1-134 1-135 co-134 Co-137 ee's Stripped Time uci/see uci/see uci/see uCi/see uC1/eee aci/see uci/see aci/see uci/see uclisec aci/see uC*Joec aci/see uci/see uCi/see per min _.11:24 4.99E+2 8.34E+1 5.11E+1 1.63E+2 3.38E+1 8.31E+3 8.31E+1 6.87E+2 1.64E45 1.8SE+4 1.865+5 3.31E+4 5.21E+4 6.83E+8 1.268-1 1.51846 11:25 4.99E+2 0.32E+1 5. 8 6 E + 1, 1.62E+2 3.38E+1 8.31E+3 8.35E+1 6.84E+2 1.64E+5 1.79E+4 1.86E+5 3.265+4 5.2SE+4 6.33E+9 1.262-1 1.51E+6 11:26 4.99E+2 8.29E+1 5.81E+1l 1.62E+2 3.38E+1 0.31E+3 8.30E+1 6.85E+2 1.64E+5 1.782+4 1.86E+5 s.22E+4 5.2SE+4 6.83E+9 1.26E-1 1.51E+6 11:27 4.99E+2 8.27E+1 4.97E+1l 1.61E'2 4 3. 38Ee 1 8.31E+3 8.3SE+1 6.84E+2 1.64E+5 1.77E+4 1.965+5 3.18E+4 5.19E+4 6.83E+9 1.26E-1 1.51E+4 11:28 4.99E+2 8.25E+1 4.92E+1l 1.69E+2 3.38Es1 8.31E+3 0.38E+1 6.83E+2 1.64E+5 1.76E+4 1.06E+5 3.14E+4 5.18E+4 6.83E+8 1.26E-1 1.51E+4 11:29 4.99E+2 8.23E+1 4.88E+1 1.6SE+2 3.38E+1 8.31E+3 8.30E+1 6.83E+2 1.64E+5 1.75E+4 1.86E+5 3.89E+4 5.178+4 6.83E+f 1.26E-1 1.51E+6 11:38 4.99E+2 8.21E+1 4.83E+1 1.59E+2 3.38E+1 8.31E+3 8.38E+1 6.82E+2 1.64E+5 1.74E+4 1.06E+5 3.85E+4 5.16E+4] 6.83E+8 1.268-1 1.51E+4

  • 11:31 4.99E+2 8.19t+1 4.79E+1 1.58E+2 3.38E+1 8.398+3 8.29E+1 6.81E+2 1.64E+5 1.74E+4 1.85E+5 3.SIE+4 5.15E+4! 6.835+8 1.26E-1 1.51E*6 11:32 4.99E+2 8.17E+1 4.75E+1 1.58t+2 5.38E+1 8.382+3 8.298+1 6.8SE+2 1.64E+5 1.73E+4 1.85E+5 2.97E+4 5.14E*4! 6.83248 1.26E-1 1.51E+6 11:33 4.99E+2 8.15E+1 4.7BE+1 1.57E+2 3.38E+1 8.3SE+3 8.29E+1 6.79E+2 1.64r+5 1.72E+4 1.85E45 2.91E+4 5.13E+4l 6.83E+8 1.2EE-1 1.51E+6

! 11:34 4.99E+2 8.13E+1 4.66B+1 1.57E+2 3.38E+1 8. 3 9 t+ 3 8.29E+1 6.72E+2 1.64E+5 1.71E+4 1.SSE+5 2.98E+4 5.12E+4 6.83E+8 1.24E-1 1.51E+6 11:35 4.99E+2 9.18E+1 4.62E+1 1.56E+2 3.38t+1 8.382+3 8.298+1 6.77E+2 1.64E+5 1.78E+4 1.85E+5 2.86E+4 5.11E+4 6.83E+8 1.26E-1 1.51E+4 11:36 4.99E+2 8.88E+1 4.58E+1 1.55E+2 3.38E+1 8.3SE+3 8.29E+1 6.77E+2 1.64E+5 1.69E+4 1.85E+5 2.82E+4 5.1SE+4 6.83E48 1.268-1 1.51E+6 11:37 4.99E+2 8.86E+1 4.53E+1 1.55E+2 3.38E+1 8.382+3 8.282+1 6.74E+2 1.64E<5 1.68E+4 1.SSE45 2.78E+4 5.18E+4 6.83E48 1.262-1 1.51E+6 11:38 4.99E+2 8.84E+1 4.49E+1 1.54E+2 3.36E+1 8.30E+i 8.28E+1 6.75E+2 1.64E+% 1.68E+4 1.SSE+5 2.75E+4 5.898+4 6.83E+8 1.26E-1 1.51E+6 11:39 4.99E+2 8.82E+1 4.45E+1 1.53E+2 3.38E+1 8.3SE+3 8.28E+1 6.74E+2 1.64E+5 1.67t+4 1.S$E+5 2.71E+4 5.88E+4 6.83E+8 1.268-1 1.51E+6 " 11848 4.992+2 8.SSE+1 4.41E+1 1.53E+2 3.37E+1 8.3SE+3 8.28E+1 6.73E+2 1.64E+5 1.66E+4 1.S$E+5 ' 2.67E+4 5.87E+4 6.83E+9 1.262-1 1.51E+6 11:41 4.99E+2 7.98E+1 4.37F+1 1.52E+2 3.37E+1 8.3SE43 8.282+1 6.72E+2 1.64E+5 1.65E+4 1.85E+5 2.64E+4 5.96t+4 6.83E+9 1.26E-1 1.51R+6 11:42 4.99E+2 7.96E+1 4.33E+1 1.53E+2 3.37E+1 8.3SE+3 8.272+1 6.71E+2 1.64E+5 1.64J+4 1.SSE45 2.6SE+4 S.SSE+4 6.83E+8 1.26E-1 1.51E+6 ' 11:43 4.99E+2 7.94E+1 4.29E+1 1.51E+2 3.37E+1 8.30E+1 8.27E+1 6.71E+2 1.64E+5 1.63E+4 1.SSE+5 2.5" '4s 5.84E+4 6.83E+8 1.26E-1 1.51E+6 11:44 4.99E+2 7.92E+1 4.25E+7 1.SSE+2 3.37E+1 8.29E+3 8.27E+1 6.78E42 1.64E+5 1.63E+4 1.SSE+5 2.5 , .S'E+4 6.83E+9 1.26E-1 1.51E+6 4 11:45 4.99E+2 7.90E+1 4.21541 3.58E+2 3.17E+1 8.29E+3 8.27E+1 6.692+2 1.64E+5 1.62E44 1.05E+5 2 58E+4 5.82E+4 6.83E+8 1.26E-1 1.51E+6 11:46 4.99E42 7.88E+1 4.17E+1 1.49E+2 3.372+1 8.29E+3 8.27E+1 6.68E+2 1.64E+5 1.61E+4 1.SSE+5 2.47E+4 5.82E+4 6.83E+8 1.26E-1 1.51E+6 11:47 4.99E+2 7.86E+1 4.14E+1 1.48E+2 3.37E+1 8.295+3 8.27E+1 6.67E+2 1.64E+5 1.6SE+4 1.SSE+5 2.44E+4 5.81B+4 6.83E+8 1.2EE-1 1.51E+6 ' 11:48 4.99E+2 7.84E+1 4.18E+1 1.48E42 3.37E+1 8.295+3 8.263+1 6.66E+2 1.64E+5 1.59E+4 1.84E+5 2.4SE+4 5.SSE+4 6.83E+9 1.26E-1 1.51E+6

,   11:49   4.99E42   7.82E+1 4.96E+1         1.47E+2    3.37E+1    8.29E+1       8.26E+1    6.669+2      1.64E+5      1.58E+4  1.84E+5  2.37E+4   4.99E+4  6.83E+9  1.26E-1   1.51E+6

! 11:59 4.99E+2 7.88E+1 4.92E+1 1.46E+2 3.37E+1 8.29Ee3 8.26E+1 6.65E+2 1. 6 4 E

  • 5 1.58E+4 1.84E+5 2.34E+4. 4.98E+4 6.83E+8 1.26E-1 1.51E+6 1 11:51 4.99E+2 7.78E+1 3.99E+1 1.44E+2 3.37E+1 8.29E+3 8.26E+1 6. 4E+2 1.54E+5 1.575+4 1.94E+5 2.31E+4 4.97E+4 6.83E+8 1.26E-1 1.51E+6 11:52 4.998+2 7.76E+1 3.95E+1 1.45E+2 3.37E+1 8.29E+3 8.26E+1 6.63E+2 1.Est+5 1.56E+4 1.84E+5 2.288+4 4.96E+4 6.83'E+8 1.268-1 1.51E+6 11:53 4.992+2 7.74E+1 3.92E+1 1.45E+2 3.37E+1 8.29E+3' 8.25E+1 6.62E+2 1.64E+5 1.55E+4 1.84E+5 2.25E+4 4.95E+4 6.83E+8 1.26E-3 1.51E+6 i 11:54 4.992+2 7.72E+1 3.88E+1 1.44E+2 3.37E+1 8.29E+3 8.25E+1 6.61E+2 1.64E+5 1.54E+4 1.94E+5 2.22E+4 4.95E+4 6.83E+8 1.26E-1 1.51E+6 11:55 4.99E+2 7.78E+1 3.S.E+1 1.44E+2 3.37E+1 8.29E+3 8.25E+1- 6.61E42 1.64E+5 1.54E+4 1.84E+5 2.195+4 4.94E+4 6.83E+8 1.265-1 1.51E+6 11:56 4.99E+2 7.68t+1 3.81E+1 1.43E+2 3.37E+1 8.29E+3 8.25E+1 6.68E+2 1.64E+5 1.53E+4 2.16E+4 4.93E+4 6.83E+9 1.26E-1 1.51E+6 1.84_E+5
  . 11:57  4.99E+2   7.66E+1  3.77E+1        1.4JE+2     1.375+1    8.19E+3       8.25E+1    6.59E+2      1.64E+5      1.52E+41 1.S+E+5  2.13E+4  4.92E+4   6.83E+9  1.26E-1  1.51E+6 11:58  4.99E+2   7.64E+1  3.74E+1        1.42E+2     3.37E+1-   8.19E+3       8.25E+1    6.58E+2      1.64E+5      1.51E+4l 1.84E+5  2.11E+4  4.91E+4   6.83E48  1.26E-1  1.51E+6 TEIS .5 A DRILL

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  . ciconario        Kr-85     Er-85m      Rr-87   -Fr-88      Be-131m     Ie-133     Ee-133m     In-135     1-131        1-132       1-133      1-134           I-135     co-134          C4-137 ee*e stripped         '

Time uCi/see uCi/see uci/see taci/see sci /cee uC1/see uci/see uci/see aci/see uci/eec aci/sec acl/see acl/see uci/see uci/see - per ein i i 11:59 4.99E+2, 7.62E+1 3.71E+1 1.41E+2 3.37E+1 8.283+3 8.24E+1 6.57E+2 1.64E+5 1.51E+4 1.84E+5 2.98E+4 4.9eF44 6.83E48 1.26E-1 1.51546 12:39 4.99E+24 7.69E+1 3.67E+1 1.41E+2 3.37E+1 8.28E+3 8.24E+1 6.5eE+2 1.64E+5 1.5tr+4 1 1.e4E+5 S.95E+4 4.89E+4 6.83E+p; 1.26E-1 1.51E+6 i 12 91 4.99E+2' 7.58E+1 3.64E+1 1.4pr+2 3.37E+1 8.28E+3 l 8.24E+1 6.56E+2 1.64E+5 1.49E+4' 1.84E+5 4.02E+4 4.89E+4 6.83E+9) 1.26E-1 1.51E+6 12382 4.99E+2 7.56E+1 3.61E+1 1.39E+2 3.37E+1 8.28E+3 6.55E+2 1.64B+5 1.48E*4 1. 9 0+ 5 2.8tE+4 4.88E+4 6.83E+#f 1.26E-1 1.51E+6 f8.24E+1 1 12:03 4.99E+2 7.54E+1 3.57E61 1.39E42 3.37E41 8.28E+3 8.24E+1 6.54E+2 1.64E+5 1.48E+4, 1.84E45 1.97E+4 4.87E+4 6.8 3E.8f 1.26E-1 1.51E+6 t

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$ 12:54 4.99E+2 7.52E+1 3.54E+1 1.38E+2 3.37E+1 8.28E+3 8.24E+1 6.53E+2 1.64E+5 1.47F+4l 1.94E45 1.94E+4 4.86E+4 6.83E4Sj 1.263-1 1.51E+6 12sf5 4.99E+2 7.58E+1 3.53E+1 1.38E+2 3.37E+1 8.2BE+3 8.23E+1 6.52E+2 1.64E+5 1.46E44! 1.93E+5 1. ? 2 E+ 4j 4.85E+4 6.83E+8; 1.24E-1 1.51E+6 12:86 4.99E+2 7.48E+1 '3.48E+1 1.37E+2 3.372+1 8.28E+3 8.23E+1 6.51E+2 1.64E+5 1.45E+4l 1.83E+5 1. 8 9 E+ 4l 4.84E+4 6.83E+Si 1.262-1 1.51E+6  ! 12:07 4.99E+2 7.46E+1 '3.44Ps1 1.378+2 3.37E+1 8.28E+3 8.23E+1 6.51E+2 1.64E+5i 1.45E44\ 1.83E+5 1.87E+j 4.83E44 6.83E*S 1.26E-1 1.51E+6 ' ' 12:88 4.99E+2 7.44E+1 3.41E+1 1.36E+2 3.37E+1 8.28t+3 8.23E+1 6.58E+2 1.64E+5 1.44E+4 1.03E+5 1.84E+4! 4.83E+4 6.83E+9 1.26E-1 1.51E+6 T 12:59 4.99E+2 7.42E+1 3.38E+1 1.35E+2] 3.37E+1 8.28E+3 8.23E+1 4.49E+2 1.64E+5 1.43E+4 1.83E+5 1.82E44 - 4.82E44 6.83E+8 1.26E-1 1.51E+6 12:18 4.99E+2 7.48E+1 3.35E+1 1.35E+2. 3.37t+1 8.27E+3 8.22E+1 6.48E+2 1.64E45 1.42E+4 1.53E+51 1.8tE+4 4 .81E+4 r 6. 8 3E+5} 1.26E-1 1.51E+6 h 12:11 4.99E+2 7.39E+1 3.32E+1 1.34E+2 3.37E+1 8.27E+3 8.22E+1 6.47E+2 1.64E+5 1.42E+41 1.9JE+5l 1.77E+4 4.89E+4 6.83E+8l 1.24E-1 1.51E+6 - 12:12 4.99E+2 7.37E+1 3.29E+1 1.34E+2 3.37E+1 8.27E+3 8.22E+1 6.47E+2 1.64E+5 3.41E+4 1.83E+5j 1.75E+4 4.79E+4 6.83E+9) 1.26E-1 1.51E+6 12:13 -4.99E+2 7.35E+1 3.268+1 1.33E+2 3.37E+1 8.27E+3 8.22E+1 6.462+2 1. 6 4 E+ 5l 1.48E+4 1.83E+5l 1.73E+4 4.78E+4 6.83E+9I 1.262-1 1.51E46 I 12:14 4.99'*2 7.33E+1 '3.23E+1 1.33E+2 3.37E+1 8.278+3 8.22E+1 6.45E+2 1.64E+5 1.40E+4 1.e3E+5 1.78E+4 4.78E+4 6.83E+# 1.26E-1 1.51E*6 12:15 4.99E42 7.31E+1 3.28E+1 1.32E+2 3.373+1 8.27E+3 8.22E+1 6.44E+2 1.64E+5 1.39E+4 1.83E+5 1.68E+4 4.77E+4 6.8 3E+8 1.26E-1 1.51E+6 12:16 4.99E+2 7.29E+1 3.17E+1 1.32E42j 3.37E+1 8.27E+3 8.21E+1 6.43E+2 1.64E+5 1.38E+4j 1.83E+5 1.66E+4 4.76E+4 6.83E+ej 1.2 6 E- 1; 1.51E*6 12:17 4.99E+2 7.27E+1 3.14E+1 8.27E+3 8.21E+1 6.428+2 1.63E+5 1.37E+4 1.83E+5 1.64E+4 4.75E+4 6.83E+5j 1.26E-Il 1.51E+6

1. 31 E+2Q. 3 7E+ 1 12:18 4.99E+2, 7.25E+1 3.11E+1 1.38E+2 3.372+2 8.27E+3 8.21E+1 6.42E+2 1.63E+5 1.37E+4 1.83E+5 1.62E44 4.74E+4 6.83E+8 1.26E-1l 1.51E+6 -!

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     ~12:19        4.99E+2    7.24E+1     3.89E+1   1.39E+2    3.3?E+1    8.27E+3    8.21E+1    6.41E+2     1.63E+5     1.362+4      1.83E+5   1.59E+4         4.73E+4     6. 8 3 F+3. 1.26E-1   1.51E+6
  • 1 12:48 4.99E+2 7.22E+1 3.862+1 1.29E+2 3.37E+1 8.27E+3 8.21E+1 6.4fE+2 1.63E+5 1.35E+4 1.83E+5 1.57E+4 4.73E+4 6.83E+p 1.268-1 1.51E+6 3 12:21 4.99E+2 7.2EE+" 3.83E+3 1.29E+2 3.37E+1 8.27E+3 8.2BE+1 6.39E+2 1.63E+5 j 1.35E+4 1.83E+5 1.55E+4 4.72E+4 6.83E+9 1.26E-1 1.51E+6 12:22 4.99E+2 7.18E+1 3.ffE+1 1.28E+2 3.37E+1 8.27E+3 8.28E+1 6.38E+2 1.63E+5! 1.34E+4 1.93E+5 1.53E+4 4.71E+4 6.83E+Sj 1.26E-1 1.51E+6 l 12:23 4.99E+2 7.16E+1 2.97E+1 1.28E+2 3.37E+1 8.27E+3 8.292+1 6.38E+2 1.63E+5 1.33E+4 1.82E+5 1.51E*4 4.79E+4 6.83E+fl 1.262-1 1.51E46

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      . 12:24      4.99E+2    7.14E+1     2.95E+1  1.27E+2     3.37E+1    8.26E+3    8.20E+1    6.37E+2     1.63E+5     1.33E+4      1.82E+5   1.49E+4         4.69E+4     6.83E+5] 1.26E-1          1.51E+6

. 12:25 4.99E+2 7.12E+1 2.923+1 1.27E+2 3.37E+1 8.26E+3 8.28E+1 6.36E+2 1.63Ev5 1.32E+4 1.52E45 1.478+4 4.68E+4 6.83E+6l 1.26E-1 1.53E+6 3

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! 12:26 4.99E+2 7.11E+1 2.892+1 1.26E+2 3.37E+1 8.26E+3 8.28E+1 6.35E+2 1.63E+5 1.31E+4 1.92E+5 1.45E+4 4.68E+4 6.83E+8l 1.26E-1 1.51E*6

        ~2:27      4.99E+2    7.s9E+1     2.87E+1  1.26E+2     3.37E+1    8.26E+3    8.19E+1    6.34E+2     1.63E+5     1.31E+4     1.92E+5    1.43E+4         4.67E+4     6.83E49l 1.26E-1          1.51E*6

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J VIRGINIA POWER O NORTH ANNA POWER STATION i MAY 15,1991 EMERGENCY EXERCISE OBJECTIVES O .[ .

l VIRGINIA POWER f' NORTH ANNA POWER STATION N MAY 15, 1991 EMERGENCY EXERCISE ODJECTIVES

SUMMARY

The purpose of this exercise is to demonstrate the adequacy of the North Anna Power Station Emergency Plan, the Corporate Emergency Response Plan, and associated implementing procedures. The objectives of this Emergency Exercise are to demonstrate by actual performance a number of key emergency preparedness functions as they relate to the North Anna Power Station Emergency Plan. The simulated accident will involve: emergency classification, notifications of company and off-site organizations, simulated actions to correct the emergency condition, and initiation of accident assessment and protective actions as necessary to cope with the event. The event will include a simulated off-site radiological release. As applicable to the events developed by the exercise scenario, the North Anna Power Station and Corporate Emergency Response Facilities (ERF) will be activated. Each ERF staff will demonstrate functions described in the implementing procedures. Emergency response functions which are impractical to demonstrate will be simulated.

       ']      The following North Anna Power Station and Corporate facilities will be sta f fed by the Emergency Response Organization (ERO) for this exercise:

(1) Control Room Simulator (CRS) (2) Technical Support Center (TSC) (3) Operational Support Center (OSC) (4) Local Emergency Operations Facility (LEOF) (5) Corporate Emergency Response Center (CERC) (6) Joint Public Information Center (JPIC) (7) Local Media Center (LMC) Other ERO Groups participating in this exercise, but not responding to the above facilities, include Chemistry, Health Physics, Operations, and Security.

VIRGINIA ~ POWER

NORTH ANNA POWER STATION

.- MAY 15, 1991 ENERGENCY EXERCISE OBJECTIVES The following objectives establish the scope of the May 15, 1991 Emergency Exercise. The objectives ensure that required events are included in the exercise scenario and establish appropriate exercise evaluation criteria.

1. Demonstrate the ability to analyze station conditions, assess Emergency Action Level- (EAL) parameters, and classify, the emergency.

The CRS and TSC ERO will demonstrate this objective ~ by initiation and use of EPIP-1.01 and appropriate operational - procedures. Status forms detailing radiological monitor and operational data may be issued at periodic intervals to facilitate conduct of the scenario. The ability to acquire data using the Emergency Response- Computer System (ERCS) or .by :back-up methods will be demonstrated in appropriate facilities.

2. Demonstrate the ability to notify, mobilize, and sustain the North Anna Power Station and Corporate' Emergency Response Organizations.  ;

The CRS staff, Station Security, and Corporate Security will notify and mobilize the Emergency, Response Organizations. Station ERO notification will be conducted in accordance with the appropriate ' Station EPIP's. . Corporate . Security Lwill initiate their Emergency Notification Procedure to call-out the corporate ERO. Sustain continuous response capability will be demonstrated by the TSC, LEOF, CERC, and JPIC by formulating shift relief rosters. In addition, the process for obtaining logistical and technical ,upport for the Emergency Response personnel may be demonstrated.

3. Demonstrate the ability to notify the -state and: local-governments and the NRC within established time constraints.

The CRS, TSC, and.LEOF ERO will demonstrate this objective by. providing up-to-date information to federal, state, and local governments within required time' limits.

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a. . State and Local Government Notification Information.for'these notifJcations will be-identified and= recorded by an' Emergency Communicator (EC) on'EPIP-- =

2.01,- Attachment _1 (Report of ' Emergency to~ State - and - Local Governments), .and Attachment _2 (Report- of_ Radiological Conditions to the State). Upon approval by. the Station Emergency Manager (SEM) or the Recovery Manager (RM), the EC will transmit the information to the - state'and/or local governments. The start time - for completing the 1 5 - m i n u t e --i n i t i a l notification will commence when the SEM declares the-emergency classification. Follow-up communications ;will be maintained using EPIP-2.01, Attachment 1, and will occur at about 30 minute intervals or as conditions  :) change. As conditions warrant, the ability to transmit Protective Action Recommendations (PARS) to the State will be demonstrated in accordance with EPIP-1.05 and appropriate notification procedures. The-EC will transmit the-initia) Meport of Radiological Conditions (CDIP-2.01, Attachment 2) to the state following data cssimilation, recording,-and approval.

 ~

Follow-up notifications on radiological conditions will occur at about 30 minute intervals or as conditions change. The SEM retains responsibility. for state and local g7vernment notifications until - the LEOF is activated. Following LEOF activation, responsibility- for notification is transferred to the~ Recovery Manager (RM)'. r onc e state and local notification-responsibility has bcca trensferred to the LEOF, 'a ' demonstration of .back up coumunications will be conducted with the-state or one of ' tre. local governments. , b. ~ ARC Notification Information for these notifications will be identified and recorded by the EC on EPIP-2.02, Attachment 1 (NRC Event ' Notification Worksheet) , : Attachment 2, (NRC- Emergency Communication _ Log)', and EPIP-4.03, Attachment'1 (HPN Communications)._ Upon approval by the SEM, the ECs will transmit the information-to the NRC. The start time for completing' the! 1-hour initial-notification commences when the SEM declares the O. emergency classification. The initial _ notification will 1 be performed -from- the CRS. Following initial

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notification and unless directed otherwise, the EC will maintain continuous communications with NRC Operations to

 ,N transmit plant condition changes. Communication dialogue highlights will be documented.

Responsibility for NRC Notifications in accordance with EPIP-2.02 will remain with the TSC ERO. Responsibility for Health Physics Network'(HPN) communications will be transferred to the LEOF following activation of that facility.

4. Demonstrate the ability to conduct assembly and accountability of personnel within the Protected Area.

The Station Security Staff will demonstrate this objective in accordance with EPIP-5.09 and EPIP-5.03. Also, to support the overall accountability process, the Assembly Area Leaders will perform area accountability in accordance with EPIP-5.03, Attachment 1 (Assembly Area Leader Instructions).

5. Demonstrate the ability to assemble, dispatch, and control on-site emergency teams to perform response activities.

As appropriate, the CRS, TSC, and OSC staffs will demonstrate this objective by dispatching and controlling teams- in response to scenario events within the Station Protected Area. Also, the ability to brief emergency teams and establish O appropriate protective measures and communications will be demonstrated. Prior to Emergency Response Facility activation, the CRS staff will demonstrate this objective by initiating applicable procedures. Following facility activation, the TSC and OSC staffs will demonstrate this objective by implementing-EPIP-3.02, EPIP-3.03, and EPIP-5.08.

6. Demonstrate the ability to assess conditions and implement appropriate protective measures: for emergency response personnel, including site access control, contamination control,-exposure control, use of protective devices and, as appropriate, the process for authorization of potassium iodide (KI) administration.

This objective will be demonstrated through an interface among the CRS, TSC, and OSC ERO in which the TSC staff will monitor and authorize protective measures for site access, contamination control, and exposure control.- The TSC organization, via the Radiation Protection Supervisor (RPS) located in the Health Physics area, will dispatch and direct monitoring teams within the bounds of the site property - per EPIP-4.01 and EPIP-4.02 and associated procedures to O assess radiological conditions. Protective measures V appropriate for conditions will be developed and/or

implemented for site emergency response personnel. Security will implement access control measures in accordance with EPIP-5.09 and EPIP-5.04. The OSC Staff and other site personnel will implement any necessary actions associated with protective equipment requirements and in-plant access control. If necessary, in response to scenario events, the CRS and/or TSC and OSC staffs will demonstrate the process for requesting and authorizing exposure extensions, to include. emergency exposure authorization in accordance with EPIP-4.01, EPIP-4.04, EPIP-5.06 and EPIP-5.08. Also, if necessary, the TSC staff will demonstrcte the KI authorization process per EPIP-4.01 and EPIP-5.07. If necessary, in response to scenario events, the TSC will demonstrate the planning and notification process for evacuating non-essential personnel in accordance with EPIP-4.07 and EPIP-5.05.

7. Demonstrate the ability to develop appropriate Off-site Protective Action Recommendations (PARS) based on assessment of plant conditions and off-site dose projections and/or measurements.

As appropriate, this objective will be demonstrated by the SEM from the CRS or TSC or by the RM in the LEOF. The CRS, TSC, and LEOF organizations will monitor plant conditions and perform off-site dose projections to support formulation of PARS. Responsibility for PAR development is transferred to the LEOF following activation of that facility. Radiological parameter data generated during the development of this scenario may be artificially elevated and may not represent the degree of fuel failure and radiological release commensurate with the plant dynamic events. This may be necessary to demonstrate this exercise objective.

8. Demonstrate the ability to perform off-site dose assessment.

As appropriate, this objective will be demonstrated by CRS, TSC, and LEOF staffs. The ability to perform initial dose assessment will be demonstrated through the implementation of

- EPIP-4.01 and associated dose assessment procedures.

Field monitoring teams will be dispatched per EPIP-4.01,' EPIP-4.02, and associated procedures to support the dose assessment effort. As appropriate, these teams will be directed by the RPS and/or'the TSC and LEOF staffs.

9. As appropriate, demonstrate the ability of Health Physics and Chemistry to conduct radiological monitoring activities,

including exposure rate surveys, sample collection, and sample analysis. As required, radiological monitoring, sampling, and analysis for in-plant and/or on-site activities will be initiated in accordance with EPIP-4.02. Post Accident Sampling activities will be performed in accordance with EPIP-4.22 and EPIP-4.23. The field monitoring teams will perform radiological monitoring activities in accordance with EPIP-4.15 and EPIP-4.16. Reactor coolant and/or containment samples shall be obtained utilizing the High Radiation Sampling System ("RSS). Radiological data necessary to test response and monitoring capabilities will be provided by the controller during sample collection. Isotopic analysis data will be provided following demonstration of proper sample preparation and upon expiration of spectrum collection and analysis times,

10. Demonstrate the ability to effectively activate the emergency _

response facilities and associated emergency response processes. Activation of facilities and emergency processes-by the TSC, OSC, LEOF, CERC, JPIC, and the LMC, will be demonstrated in accordance with the appropriate procedures. As appropriate, activation of emergency processes will be demonstrated by Health Physics, Chemistry and Security.

11. Demonstrate that facility layout and equipment adequately support emergency response activities in each facility.

This objective will be demonstrated in the CRS, TSC, OSC, LEOF, CERC, JPIC, and LMC. In addition, Security, Health Physics and Chemistry f acilities will demonstrate this objective.

12. Demonstrate the ability to establish and maintain effective communications.

The CRS, TSC, OSC, LEOF, CERC, JPIC, LMC staffs, and Field Teams will demonstrate this objective. In addition, Security, Health Physics and Chemistry f acilities will demonstrate this objective. Use of-backup communications systems will be demonstrated. A primary communication link will be failed during the course of the exercise between the LEOF and the state or a local government.

13. Demonstrate the ability to maintain command and control of the emergency response. effort.

The SEM will demonstrate on-site emergency response command and control from the CRS and TSC. The RM will demonstrate command and control of the emergency response effort associated with the LEOF upon activation of that facility. The SEM will ensure personnel within the Protected Area are informed of emergency event statun by the use of emergency alarms and the plant paging system (Gai-tronics). Remaining site personnel will be notified by other verbal communication methods. All announcements will be preceded and terminated with the phrase: "This is a drill." The CRS, TSC, and LEOF ERO will demonstrate the ability to transfer appropriate command and control functions,

a. The CRS functions that will transfer to the TSC include:

(1) Notifications to the state, local governments, and NRC. (2) Developing and providing PARS to the state. (3) Determining the emergency classification. (4) Authorizing emergency exposures.

b. The TSC functions that will transfer to the LEOF are:

(1) Notifications to the state and local governments and to the NRC via the HPN. (2) Developing and transmitting PARS to the state.

14. Demonstrate the ability to coordinate preparation, review, and release timely and accurate information to the public.

The CERC, JPIC, LEOF, and LMC staffs will demonstrate this objective. Press releases will be prepared and edited at the,CERC and transmitted to the LEOF for technical review. Following approval by the RM and/or the Corporate Response Manager, the process for issuing press releases will be demonstrated. The JPIC Director will be cognizant of all press releases and make them available to the media in the JPIC and LMC.

15. Demonstrate the ability to establish and operate rumor control functions.

Public Af fairs will demonstrate this objective by establishing an emergency hotline in accordance with CPIP-2.1 and CPIP-2.3. Questions will be called into the Public Information Room requiring response.

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16. Demonstrate the ability to provide basic life support and to package and transport a contaminated injured person to an off-
 ,_       site facility.-

This objective will be demonstrated by the First Aid Team implementing procedures appropriate for the victim's level of injury and by Radiological Protection employing the necessary radiological controls in accordance with EPIP-5.01 and EPIP-4.20 to remove the victim from the accident scene. As necessary, Station Security will implement applicable sections of EPIP-5.09 to summons off-site support. An off-site rescue unit will demonstrate the ability to respond to the station. The contaminated injured person will be transported to an off-site facility.

17. Demonstrate the ability to conduct a self-critique and to identify areas for improvement.

T?.e CRS, TSC, OSC, LEOF, CERC, JPIC, LMC, Security, Chemistry, Radiological Protection, Operations, and Field Monitoring Teams will conduct a self-critique to identify weaknesces and improvement items. O O

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VIRGINIA POWER

 ~o NORTH- ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE                                             -'

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VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE EXERCISE SCORE Virginia Electric and Power Company will demonstrate its ability to implement both the Corporate and North Anna Power Station Emergency Plans on May 15, 1991. The purpose of this exercise is to activate and evaluate major portions of the North Anna Emergency Plan, associated implementing procedures, and selected portions of the Corporate Emergency Response Plan in accordance with 10CFR50.47 (b) (14). This exercise will be held in conjunction with small scale emergency response demonstrations by the Commonwealth of Virginia, and the counties of Louisa, Spotsylvania, Hanover, Orange, and Caroline. The exercise will demonstrate that those individuals and agencies assigned responsibilities in a radiological emergency are capable of providing the necessary protective measures to ensure the health and safety of the public in the event of an accident at North Anna Power Station. The exercise will demonstrate responses to the emergency classes, commensurate with the stated exercise objectives, established by NUREG-0654, Criteria for Preparation and Evaluation of Radiological O Emercency Response Plans Preparedness in Support of Nuclear Power Stations. Free play is encouraged and controllers will only interfere with participants' responses if the exercise lags behind schedule, if emergency response personnel take inappropriate actions to carry them to the next event, or if action is taken that would correct the expected simulated response earlier than scheduled by the scenario. At no time will the exercise be permitted to interfere with the safe operation of the station. Station management may, at their discretion, suspend the exercise for any period of time necessary to ensure this goal. Exercise participants will not hava prior- knowledge of the simulated incident, except the exercise date. l l i ()

VIRGINIA POWER O NORTH ANNA POWER STATION-MAY 15,1991 EMERGENCY: EXERCISE - SIMULATIONS - O O f

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VIRGINIA POWER h V NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE SIMULATION 8 Simulations of certain actions will occur where and when it is impractical or not possible to perform the actions for purposes of this exercise. So that the scenario events will a71ow the participants to fulfill the requirements of the exercise objectives, the actual times required to perform come of the actions may also be extended or compressed. The following list includes those actions which may be simulated:

1. Procurement of food for emergency personnel.
2. Procurement of additional personnel or equipment for field monitoring activities and in-plant support.
3. Manipulation of actur' plant controls and equipment, with the exception of manipulacions required for the PASS \HRSS sample.
4. Use of full protective clothing and respiratory protection equipment outside the Radiological Control Area, with the exception of cotton inserts and gloves.
5. Collection of plant and radiological stat s information from plant parameter irdicators and the Emergency Response Computer System (ERCS). Plant and Radiological Status sheets and scenario messages will be available at all locations having access to the ERCS, i.e., CRS, TSC, LEOF, and CERC. However, participants will demonstrate the ability to access data using the ERCS.
6. Entrance into actual contaminated, high radiation, or extreme high radiation areas to simulate repair of damaged equipment or conduct surveys.
7. Issue and distribution of potassiur iodide (KI). The process for authorization will be demonstruted.

l i 8. Establishing and maintaining contact with the NRC via the ENS l and HPN communications networks. Except for the initial and l termination call via the ENS or commercial line, a Controller l will serve as the NRC, unless the NRC requests open line communications.

9. If and when required, participants are expected to don SCBA units. Wearing of the facepiece may be simulated; however, the participant must initially describe how to obtain, don and use the equipment.

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 / 10. If required, fire f3ghting activities will be simulated,-

except for donning protective equipment, pulling hoses (hoses are not to be pressurized), preparing extinguishing equipment for use, entry strategic.4, ac.J chtioning firewatches.

11. Site evacuation. Tho'proceas for making notifications for site evacuation will be demonstrated. This simulation does not '

affect the evacuation of the OSC, which will be demonstrated.

12. The Control Room Simulator will be used as the Control Room rather than the actual Control Room.
13. Press releases to the Associated Press and United Press International. The process for press releases will be demonstrated.
14. If plastics are required by Health Physics for dress-out, for purposes of today's exercise the plastics will be simulated.

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VIRGINIA POWER. NORTH ANNA-POWER STATION MAY 15,1991 EMERGENCY EXERCISE , PARTICIPANTS Q ( O

I l VIRGINIA POWER I ('/

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     )                        NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE                  )

PARTICIPANTS The following organizations, agencies, and political subdivisions may participate in the North Anna Power Station Emergency Exercise: A. Virginia Power

1. Innrbrook Technical Center, Glenn Allen
2. North Anna Power Station B. State Agencies, Commonwealth of Virginia
1. Agriculture and Consumer Services, Department of
2. Emergency Services, Department of
3. Health, Department of (Eureau of Radiological Health)
4. State Police, Department of S. Water Control Board, Virginia C. Local Governments
1. Caroline County
2. Hanover County
3. Louisa County
4. Orange County
c. Spotsylvania County D. Federal Agencies
1. Nuclear Regulatory Commission (potentially)

E. Special Facilities

1. Louisa County Volunteer Rescue Squad
2. Medical Collece of Virginia Hospital O

VIR INIA POWER O NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY- EXERCISE i 1 a NARRATIVE L p ,. l

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i VIRGINIA POWER NORTH ANNA POWER STATION \ MAY 15, 1991 EMERGENCY EXERCISE SCENARIO FARRATIVE A full scale pl. ao pathway exercise is scheduled to be conducted at the North Anna Power Station on May 15, 1991. For the purposes of the exercise, Unit 1 is designated as the affected unit. Unit 1 is operating at 100 % full power equilibrium near end of life. Unit 2 is operating at 100% full power equilibrium conditions with no equipment out of service. The exercise initiates at 0715. At 0742 an individual is injured and contaminated when changing out a filter in the Auxiliary Building. The necessity to transport the individual to an off-site facility requires the declaration of Notification Of Unusual Event (NOUE). At 0824 RCP "B" indicates, high vibration and high current. One minute later the pump trips causing a reactor and turbine trip. A small reactor coolant leak develops at this time. Shortly there after at 0827 Hi and Hi - Hi Letdown alarms are received, the N readings are off scale high. The locked rotor which leads to reactor coolant high radiation readings requires the declaration of an ALERT. At 0947 a 400 gpm leak is initiated. Shortly thereaf ter the leak is increased to 6000 gpm. 1-CH-P-1B charging pump is started to maintain pressurizer level. Level cannot be maintained, which warrants manual Safety Injection to be initiated. The RCS leak, which is greatcr then 300 gallons per minute, necessitates 'the declaration of a SITE AREA EMERGENCY (BAE). Containment pressure increases and CDA is initiated. When CDA is actuated, Casing Coolant Pump 1-RS-P-3B fails. Once the leak occurs and the containment conditions worsen, the SEM may declare a GENERAL EMERGENCY (GE) based on Tab M-4 (SEM judgement). RWST level decreases until 1049 when the Low Head Safety Injection suction is switched form the RWST to the containment sump. At this time of switching, the piping upstream of 1-SI-MOV-1863A or B fails and a release commences. This breach results in leakage into the Auxiliary Building and subsequent release to the environment through the Ventilation Vent Systems.

This leak constitutes-a breach of_the three (3) . fission product barriers, requiring declaration of a General' Emergency. (')S The - escalation through the applicable emergency classifications will provide activities designed to exercise both on-site'and off-site response organizations. Sufficient time will be permitted to allow the response organizations to perform the required assessment and appropriate response actions. The release will terminate when the applicable ~ charging pump suction line valve is isolated at approximately 1315. [v

VIRGINIA POWER O NORTH ANNA POWER STATION

              - MAY 15,1991 EMERGENCY EXERCISE i

i INITIAL CONDITIONS. LO w- - - ----.-. < <

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b VIRGINIA POWER p NORTH ANNA DOWER STATION

 '(j              MAY 15, 1991 EMEi3ENCY EXERCISE
                           , INITIAL CONDITIONS SHIFT SUPERVISOR SUPERINTENDENT OPERATIONS STATION MTNAGER CORPORATE MANAGEMENT O

NOTE: If at any time, ,in the judgement of the Operations Shift Supervisor,.this emergency-exercise' interferes-with thei safe operation of the station, the exercise will ~ be suspende - until . station conditions are returned: to-normal. O

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G-I -- VIRGINIALPOWER s_ . NORTH-ANNA POWER STATION > MAY 15,t- 1991 EMERGENCY-EXERCISE

                                      - INITIAL PLANT CONDITIONS (oooo 05/15/91)
1. Unit 1 Reactor A. Reactor power: 100% (Equilibrium Xenon), 958 MWe B. Core burnup: 14,000 MWD /MTU, T AVE = 582.5 C. Boron concentration: 85 ppm D. Rod height (D bank): 221 steps E. Primary leakage: Identified = 1.60 gpm Unidentified = 0.04'gpm F. S/G blowdown; flow: 30/30/30 gpm G. N 16 Monitors.:< 1 gpd.

U' F. Coolant activity: 7.63 E-3 uCi/gm Dose' Equivalent I

                                                 -5.23 E-1 uCi/gm Gross; Activity.
2. Unit-1 system Line-UDs / FlowDaths /Eauioment Status A. Normal charging and letdown flows. 4-CH-P-1A_-is-runningf with one 60 gpm orifice.

B. All Main Steam PORVs, Steam Dumps,.and'S/G Safeties are operable. C. All Pressurizer Code Safeties and PORVs 'are operable with L the associated block MOVs:openzand. operable. , D. All Station Service,- Reserve- Station : Service, and Emergency Buses ~are' operable with normal full power line-ups. E. 1H and 1J Emergency Diesel Generators are operable and in-AUTO REMOTE. F. "A" BAST is in service o- "M-P-2A, j

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                       "B" BAST is on recirc us              -CH-P-2B.

t () INITIAL _ PLANT CONDITIONS (CONTINUED 1 (0000 05/15/911

3. Unit.2 Reactor A. Reactor power: 100% (Equilibrium Xenon), 965 MWo B. Core burnup: 8,000 MWD /MTU C. Boron concentration: 770 ppm D. Rod height (D bank): 228 steps E. Primary leakage: Identified = 1.5 gpm Unidentified = 0.1 gpm F. S/G blowdown flow: 30/30/30 gpm G. Coolant activity: 9.55E-3 uC1/gm Dose Equivalent I" 2.5E-1 uC1/gm Gross Activity
4. Unit 2 System Lire-Ups / FlowDaths /EcuiDment_E1AIMA ,

A. Normal charging and letdown flows. 2-CH-P-1A is running with one 60 gpm orifice. B. All Main Steam PORVs, Steam Dunps, a7d S/G Safeties are operable. C. All Pressurizer Code Safeties and P7RVs a 'perable with the associated block MOVs open and operab D. All Station Service, Reserve Station Service, and Emergency Buses are operable with normal full power line-ups. E. 2H and 2J Emergency Diesel Generators are operable and in AUTO. F. "C" BAST is in service on 1-CH-P-2D. G. Auxiliary Steam loads are being supplied by Unit 2 Point Extraction Steam. H. CC cor on loads are supplied by Unit 2. . O

L INITIAL PLANT CONDITLQB8 (CONTINUED) (0000 05/15/91)

5. BAALoastive Effigent_S._talup.

A. Liquid Waste is in normal system valve line up with DURATEK secured. B. The "A" and "B" liigh Level LW tanks are 55% and are lined up to fill. The low level liquid waste tank level is 42%. C. No gaseous releases are in progress. "A" 0 aste Gas Decay Tank is at 60 psig and is the "in-service" tank. The "B" Wasto Gas Decay Tank is isolated at 2 psig.

6. Yepli13 tion Status ,

A. Vent Stack "A" flow is 70,000 cfm with 2 Central and 2 General exhaust fans in service. B. Vent Stack "B" flow is 57,000 cfm with Fuel Building, 1 Decon Building and 2 Safeguards exhaust fans in service (1 per unit). C. Process Vent system flow is 300 cfm, D. Air Ejector flows are 2/1 scfm for each unit.

7. Maintenance Items A. Equipment Out-of-Service
1. 1-DA-P-4A does not pump water. Indications outside '

containment are normal. Investigation to occur during next containment entry. Breaker 1Al-1F5 for 1-DA-P-4A is tagged out. B. Maintenance In Progress

1. Mairtenance in the Auxiliary Building. Unit 2 Letdcwn Filter is tagged out and is scheduled for chtngeout this mcrning.
2. Miscellaneous minor maintenance items.

l l l l i l O b INITIAL PL&NT CONDITIONS (CONTIHQED1 ' l (0000 05/15/91) J l 1

0. *orecast A. Winds from the NNW at 5 mph.

B. Chance of rain is 30% with scattered showers in the PM. C. Regional Stability class "E". D. It is a cloudy day. O t

h VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EXERGENCY EXERCISE MESSAGE NO: MF-1 - SCENAEIO MESSAGE TO: ALL PARTICIPANTS CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Ensure that the lead narticinants in each area receive thic inf.grmation. TIME Becinninc of exercise THIS IS A DRILL For purposes of this exercise the actual Control Room will not participate. When communicating with the Control Room you will need to communicate with the Simulator using the s appropriate automatic ring-down circuits or the following phone numbers: PBX Extensions: 2714 2717 2706 2709 OPX Extension: 273-3841 Commercial: 703-894-5179 703-894-2714 O T]fIS IS A DRTLL

6 t VIRGINIA POWER  : t NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE  ; r 'i I c i i TIME LINE  ; O Y W

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    ,)                               NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE TIME LLHE NOTE:        TIMES ARE APPROXIMATE TIliE                                  EVENT 0700       -

Lead Controllers and Observers positioned. Selected controllers perform necessary participant briefings (ie, exemptiens or message and or data formats). Operations Department participants positioned in the Control Room Simulator and the Operator Assembly Area. 0730 - Simulator run started. ,

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0742 - An individual is contaminated and injured when performing 2-CH-FL-5 filter charige out in the AuxiliaTy Building. 0747 - 1-FW-FI-1476 falls low. (Main Feedwater flow indicator to "A" Steam Generator) 0812 - NOUE (Tab F-1), declared due to the transportation of a () 0824 - contaminated injured person to an ofi-site facility. 1-RC-P-1B Hi vibration alarm, also high current indicated. 0825 - 1-RC-P-1B trips on phase overcurrent. Reactor and Turbine trips. loose parts alarm is received for the lower reector vessel region. 0826 - RCS leak of approximately 60 gpm begins. 1-DA-P-4B fails upon auto start. 0827 - Hi and Hi - Hi Intdown Radiation Monitor Alarm is received, reading indicates off scale high. 0833 - Letdown secured. 0838 - Source Range energizes. 0847 - ALERT (Tab B-3) declared, based on RCP locked rotor leading to fuel damage or (Tab B-5) RCS leak rate exceeds 50 gpm.

  /    0903       -

1-FW-FI-100C indicator fails low, Auxiliary Feed Flow for ( "C" Steam Generator.

TIER _LINE (cont.), 0947 - LOCA occurs on "B" RC Loop Cold Leg. Safety Injection, Phase "A" isolation occurs. 111 Diesel does not start. 0950 - CDA is manually actuated. All Reactor Coolant Pumps are secured. Casing cooling pump 1-RS-P-3B fails to start. 1007 - BITE AREA EMERGENCY (TAB B-6) declared based on "RCS leak rate exceeds 300 gpm leak, as indicated by loss of reactor coolant and pressurizer level can not be maintained with 2 or raore charging /SI pumps in operation". 1015 - Bomb threat called in for Maintenance Building. Evacuation of the OSC is expected. 1043 - Start swapping LHSI pump suction from RWST to Containment Sump. 1049 - Safety Injection alignment to recirculation phase completed. Release starts, from the Low Head Safety Injection piping to the Hi Head Safety Injection pump suction in the Auxiliary Building. Leak ir upstream of 1-SI-MOV-1863 A or B at piping level. POST 1049 - The first Iow Head Pump shu'down (A or B) and leak isolation will not stop leak. Due to 1-SI-MOV-1864 A or B fails to close. Also 1-SI-1890 A or B fails to open. 1109 - General Emergency (Tab B-11) declared due to loss of 2/3 fission product barriers with potential loss of the third barrier. .c 1315 - 1-SI-MOV-1864 A or B is repaired and is closed, the leak is isolated. 1330 - Terminato emergency on-site, restore Emergency Response Facilities. 1400 - Commence Area Critiques in all areas. 1500 - Complete Area Critiques. O

                      ""     ' N' ^ " "E" O            NORTIl ANNA POWER STATION                      !

MAY 15,1991 EMERGENCY EXERCISE 4 L MULTI-FUNCTION O messioEs/nira  : 1 LO

    ,, - -~ -       ,  ,  ,-   wp--- n - -- -s

VIRGINIA POWER NORTII ANNA POWER STATION [ MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO BCENARIO MESSAGE TO: CONTINGENCY MESSAGE TO: [ DLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS: Use as reauir.g,d for messane channes or-additions. Ensure Lead controller accroves orlor to issuance. TIME: TjiIS IS A DRILL O For purpocos of the drill use the following information (Controller write in): I ( l O -23 TIS IS A DRILL P 1

VIRGINIA POWER NORTII ANNA POWER STATION

   )                                       MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO:

SCENARIO MESSAGE TO: CONTINGENCY MESSAGE TO: . BLOCKING MESSAGE Tot CONTROLLER INSTRUCTIONS Use only if the " Time Line" or

                     Objectives" would be altered.

TIME: T11IS IS A DJLIJ4 For purposes of maintaining the Time Line and/or supporting the objectives of this exercise, Do or DO NOT (circle one)- O perform the following action (Controller write in): O' THIS 10 A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION I MAY 15, 1991 EKERGENCY EXERCISE MESSAGE NO: MF-1 c BCENARIO MESSAGE TO: ALL PARTICIPANTS CONTINGENCY MESSAGE TO: O anoexrno assa^om roi CONTROLLER INSTRUCTIONS Ensure that the lead narticipants in each area receive this information e TIME Beninninc of exerclse THIS IS A DRILL For purposes of this exercise the actual Control Room will not participate. When communicating with the Control Room i you will need to communicate with the Simulator using the appropriate automatic ring-down circuits or the following phone numbers: PBX Extensions: 2714 2717 2706 2709 OPX Extension: 273-3841 Commercial: 703-894-5179 703-894-2714

 ')                         THIS IS A DRILig

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: lie-2 SCENARIO MESSAGE TO: LEAD CONTROLLERS CONTINGENCY HESSAGE Tot

       ]      BLOCKING MESSAGE TO:

CONTROLLER INSTRUCTIONS: Use the followina when settina up the Controller chone net. TIME: Prior to the start of the drill THIS IS A DRILL Follow the sequence below to set up the controller phone nett (Q> (1) Lead Controller picks up phone receives dial tone. (2) Lead Controller dials number for first person that is to be added to the phone net. (3) After first person answers, there are two people on the net. To add another person go to step (4). (4) Lead controller hits " flash (switch hook)" receives high pitch tone and dials second person to be added to the phone link. The second person answers, then the Lead controller hits " flash star 4", the phone link now has three people connected. (5) Continue step (4) as many times as necessary to add personnel to the phone link (max total 7 personnel). If personnel are disconnected or hang-up and then want to reconnect, they must hit " flash star 1". -

  • THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 ENERGENCY EXERCISE MESSAGE NO: MF-3 SCEUARIO MESSAGE TO: NRC ENS COMMUNICATORS CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Provide when needed. TIME: When nakino notifications THIS IS A DRILL Except for the initial and termination report, contact with the NRC via the ENS phone will be simulated. Make the simulated notifications to the NRC using a normal phone to one of the following numbers: 81 - 2780 or 804 - 273 - 2780 l l' IHIS IS A DRILL

      -   r   --             +  y--rw          v       --

rv-tv -w g--* ---w ""

VIRGINIA POWER NORTH ANNA POWER STATION g MAY 15, 1991 EXERGENCY EXERCISE MESSAGE NO: lif-4 g SCENARIO MESSAGE TO: HPN COMMUNICATOR CONTINGENCY MESSAGE TO BLOCKING MEBBAGE TO: CONTROLLER INSTRUCTIONS: Provide as necessarv. TIME: When makina HPN notifications THIS IS A DRILL For purposes of this exercise, calls to the NRC via the HPN phone will be simulated. Make HPN notifications using a normal phone to the one of the following numberst 81 - 3699 or 804 - 273 - 3699 THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION I MAY 15, 1991 EKERGENCY EXERCISE MESSAGE NO: MF-5

            ,            SCENARIO MESSAGE TO:     MATERIAL REOUISITIONERS CONTINGENCY MESSAGE TO:

[ DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Provide as necessarv. TIME When contactinct vendors I) TIS IS A DRILL For purposes of this exercise, actual calls to Virginia Power locations or vendors to obtain parts and material will be simulated. J Make the requests using a normal phone to the one of the following numbers! 81 - 3703 or 804 - 273 - 3703 _ TRIS IS A DRILL

q i VIRGINIA POWER NORTH ANNA POWER STATION i MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not PF-6 ' l BCENARIO MEBBAGE TO: CONTROLLER CONTINGENCY MESSAGE TO: DLOCKING MESSACE TO: ' CONTROLLER INSTRUCTIONS: TSC Lead Controller to issue as necessarv. vthen evacuation _ process of the site is to be conducted. TIME: WHEN NEEDEQ THIS IS A DRILT; For the purposes of today's exercise make all phone calls O and plant announcements, as required by procedures. When taaking said phone calls and announcements DO NOT physically evacuate. I repeat, p_q_EQI physically evacuate. Modify messaga content of phone calls and announcements to ensure no physical evacuation. l I L I i THIS IS A DRILL l l-

VIRGINIA POWER NORTH ANNA POWER STATION [ MAY 15, 1991 EMERGENCY EXERCISE HESSAGE NO: lie-l BCENARIO MESSAGE TO: CONTINGENCY MESSAGE TO 513 BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS TSC Lead Controller, alve thira mposaac to the SEM only if the action has not been taken DI_ip not beina taken. TIME: 1QQ2 THIS IS A DRILL Declare a " Site Area Emergency" por EPIP-1.01, Tab D-6. O o THIS IS A DRIT4

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGEE0Y EXERCISE MEBBAGE Not MF-8 SCENARIO MEBBAGE TO: CONTINGENCY HESSAGE TO ffE DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONSt TSC Lead Controller, oive this message to the SEM only if PASS samnle results are known, _the action has not been taken or is not_ belma taken, and the Lead Controller reauests this messace be civen. TIME: POST 1109. AS DIRECTED BY THE LEAD CONTROLLER THIS IS A DRIL,L Declare a " General Emergency" per EPIP-1.01, Tab B-11. IRIS IS A DRILL

k VIRGINIA POWER NORTH ANNA POWER STATION O V MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: lie-2 SCENARIO MESSAGE Tot l CONTINGENCY MESSAGE TO BM BLOCIING MESSAGE TO: CONTROLLER INSTRUCTIONS If a PAR is not insued or beinc 10 sued per EPIP-1.05. orovide thp_followinc. TIME: }iithin 15 mJnutes pf._93. declaration 17G.D_18 A DRIkL Issuo PAR number 6 tD the state per EPIP-1.05 Attachment 1. O THIS IS A DRILL

l l VIRGINIA POWER i NORTH ANNA POWER STATION l (] MAY 15, 1991 EMERGENCY EIRRCISE I MESSAGE NO: MF-10 l l BCENARIO MESSAGE Tot LEAD CONTROLLER CONTINGENCY MESSAGE TO: DLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS Notify the applicable Ptate or L/293.LR9IJonnel when demonEtration of back-uo communications will be initiated, TIME AS NEEDED THIS IS A DRILL Contact designated jurisdiction and inform them that for purposes of today's exercise do not answer the Insta-phone for a designated period of time. (v3 THIS IS_A DRILL. y .

VIRGINIA POWER NORTH ANNA POWER STATION - MAY 15, 1991 EMURGENCY EXERCISE MEBBAGE NO: MF-11 SCENARIO MESSAGE TO: HET CONTROLLER CONTINGENCY MESSAGE To: DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Provide ___the followina to the Meteorolocical Department as today's wtather forecast for Louisa County. TIME: AFTER CERC ACTIVATED HIS IS A DRILL The weather ferocatst for this exercise is as follows: Louisa County and surrounding areas:

1. Daytime high 82 degrees fahrenheit and overnight low in the mid 50's.
2. Partly cloudy with a 30% chance of rain.
3. Scattered showers in the PM.
4. Winds from the NNW at 5 miles per hour.
5. Regional stability class "E".

THIS IS A DRILL

VIRGINIA POWER NORTII ANNA POWER STATION r^s

 !  )                    MAY 15, 1991 EMERGENCY EIRRCISE MESSAGE NO:    MF-12
              SCENARIO MESSAGE TO:    LEAD CONTROLLER CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO:

CONTROLLER INSTRUCTIONS: Make the followina announcement on the Gai-Tronics at the time indicated. Make the announcement twice. TIME: 121Q THIS_IS A DRILL This is a drill. The exercise is terminated. All area lead observers conduct area critiques with participants at 1400. Participants must turn in all procedures and exercise documentation to their area lead controller. Restore the Emergency Response Facilities in accordance with procedures. This is a drill. NOTE: Remember to call the LHC and let them know that 3 the exercise is terminated. 1 O" THIS IS A DRILL f 1..

[ t VIRGINIA POWER , NORTH ANNA POWER STATION j MAY 15,1991 EMERGENCY EXERCISE  ; i L OPERATIONS g MESSAGES / DATA

- < , -   y      .m. _. .,,,-  y..,      w.,.,,-.,.,,.,._.w.,-,.,,,.7,,...y._.   ,,,v._,n_., . m .,e . . , ,,s..<,.m.,,,--,,_,, ,,,'..,.. -s.m.--..,. . , _ . _-. . . , , .. .

VIRGINIA POWER NORTH ANNA POWER STATION O MAY 15, 1991 EKERGENCY EXERCISE HESSAGE NO: OPS-1 SCENARIO MESSAGE TO: CRO/SRO CONTINGENCY MESSAGE TO: DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: If simulator fails, issue at the indicated time. TIME: 0747 TRIS _Ij_h. DRILL Indicator 1-FW-FI-1476 has just gone to the bottom O of its scale. Receive annunciator : FD1 (STM GEN 1A FW-STM FLOW Cil III-IV) Receive status light : MDB (SG 1A LO FF SF/FF MISMATCH CHNL IV) O THIS IS A DRILL

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EKERGENCY EXERCISE O MESSAGE NO: OPS-2 SCENARIO MESSAGE TO: CONTINGENCY MESSAGE TO: SHIFT SUPERVISOR BLOCKING MESSAGE TO: . CONTROLLER INSTRUCTIONS Provide to the SS only if the action has not been taken or is not beina taken. Issue only with the authorization of the Lead Controller. TIMEt 0812 THIS IS A DRILL Declare a " NOTIFICATION OF UNUSUAL EVDIT" per EPIP-1.01 O v Tab F-1. i I l l O Tsze 1 eR1LL l L i i i _ . . - . _ , - . . _ _ . . . -, _ - , - -

i l VIRGINIA POWER NORTH ANNA POWER STATION (- k MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not OPS-3 SCENARIO MESSAGE TO: CONTROLLER CONTIh?ENCY MESSAGE TO BLOCKI'. J MESSAGE TO: CONTROLLER INSTRUCTIONS: If simulator fails, issue datat as necessary, at the indiceted time. TIME: REli THIS IS A DRILL

  ,r ~     Receive the following indications:

(._.}/ 1-RC-P-1B vibrations : Proximity = 15 mils Seismic = 3 alls Proximity red alert light is blinking. 1-RC-P-1B lube oil annunciators are clear. Seal leak off - slight oscillation. Motor bearing temperatures are as.follows: Upper radial bearing - 126 deg F Lower radial bearing - 137 deg F NOTE : Bearing temperatures can only be accessed by use of the P-250 computer. O IRIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION

 \

MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-4 SCENARIO MESSAGE TO: CRO/SRO CONTINGENCY MESSAGE TO: BLOCKING MESSAGE Tot CONTROLLER INSTRUCTIONS If simulator fails. issue at the indicated time. TIME: 9121 THIS IS A DRILL (q') Receive the following:

1. Annunciator : AE6 (RCP 1B VIBRATION ALERT / DANGER)
2. 1-RC-P-1B Amps = 0
3. Receive normal reactor and turbine trip annunciators.
4. In addition you receive the foll wing annunciators:

DAB (RCP 1A-B-C 'iOTOR AUTO TRIP) CD6 (RC LOOP 1B RTD BYPASS LINE LO FLO) CH6 (RC LOOP IB LO FLOW CH I-II-III) LB5 (RC LOOP 1B LO FLOW CHNL I) LB6 (RC LOOP IB LO FLOW CHNL II) LB7 (RC LOOP 1B LO FLOW CHNL III)

5. 1-RC-P-1B breaker disagreement light is on.

THIS IS A DRILI, 4

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-5 SCENARIO MESSAGE TO: CRO/SRO CONTINGENCY MESSAGE TO: BLOCKING HESSAGE TO: CONTROLLER INSTRU *.' IONS: If_giinulator fails, issue at the indicated time. TIME: 98_2d TKXE IS A DRII4 neceive annunciator: ADS (LOOSE PARTS TROUBLE) [D~ IBIS IS A DRILL i w e- d

VIRGINIA POWER NORTH ANNA POWER STATION V MAY 15, 1991 EMERGENCY RIERCISE MESSAGE Not OPS-6 SCENARIO MESSAGE TO: OPERATOR

      ]     CONTINGENCY MESSAGE TO:

BLOCKING MESSAGE TO: CONTROLLER INSTRUCTLONS: 1paue data a- Jsary, upon investigation of loose carts a]Trph TIME: POST 0825 THIS IS A DRILL p Unit 1 Channel 1 lower vessel indication V Vibration light on left is off. Loose parts light on rignt is flashing. 4 > r v,, T;d!J IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION o MAY 15, 1991 EMERGENCY EXERCISE-MESSAGE NO: OPS-? , SCENARIO MESSAGE TO: CONTROLLER CONTINGENCY MESSAGE TO i i l BLOCKING MESSAGE TO: I CONTROLLER INSTRUCTIONSt If simulator fails, use the -l fpl ..wina data at the indicated time. TIME: 0826 i THIS IS A DRILL I ff Receive annunciator : JA6 (RX CONT SUMP HI LEVEL)  !

            .-DA-P-4B   trips, the fault is in the pump motor.

Indicating lights for 1-DA-P-4B are red out and green out. I l HIS IS A DRILL i

VIRGINIA POWER NORTH ANNA POWER STATION [] -L) MAY 15, 1991 EMERGENCY WYRDCISE MESSAGE NO: OPS-8 BCENARIO MESSAGE TO: CRO/SRO/BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLWA INSTRUCTIONS: If simu1ator fails'or cannot model. issue at the indicated time. TIME 0_B2_2, THIS IS A DRILL Receive annunciators : KD4 (RAD MONITOR SYS HI - HI RAD LEVEL) KD2 (RAD MONITOR FYSTEM HI RAD LEVEL) RM-CH-128 is in HI and HI HI Alarm. RM-RMS-159 is in rfI alarm. RM-RMS-160 is in HI alarm. RM-RMS-163 is in HI alarm. THIS IS A DRILL P

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

VIRGINIA POWER NORTH ANNA POWER STATION-MAY 15, 1991 nunGENCY H ERCISE-MESSAGE NO: OPS-9

        .,     SCENARIO MESSAGE TO:                           BKBD OPERATOR CONTINGENCY MESSAGE TO:                                                                                                       :

BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: Upon investication of RM-CH-128. RM-RMS-159, 160, and 163 alarms issue data 2 TIME: P_OST 0822 THIS IS A DRILL-21M-CH-128 indicates > 1.00 E 6 CPM. RM-RMS-159 indicates 2.18 E 4 CPM. RM-RMS-160 indicates 2.91 E 3 CPM. 3 RM-RMS-163 indicates 5.93 E -2 R/hr.

                                                                                                                     ;     J Os                                    THIS IS A DRILL r    .-           ,n,             -< - ns.     . - . . . ,
                                                       .       . - , -          v-,  -- . - - ~                        -     ,       . , , -

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY-EXERCISE MESSAGE NOt. OPS-10 SCENARIO MESSAGE TO: CRO/SRO/BKBD OPERATOR

      ]     CONTINGENCY MESSAGE TO:

BLOCKING MESSAGE TO:

  • CONTROLLER INSTRUCTIONS: If simulator fails or cannot model, issue at the indicated time.

TIME 06?A THIS IS A DRILL RM-RMS-159 is in HI HI alarm. RM-RMS-160 is in HI HI alarm. RM-RMS-162 is in HI alarm. RM-RMS-163 is in HI-HI alarm. l l l THIS IS A DRILL I'

VIRGINIA POWER NORTII ANNA POWER STATION

 ,                    MAY 15, 1991 EMERGENCY EXERCISE
 ?x MESSAGE NO:   OPS-11 SCENARIO MESSAG?,TO:      BKBD OPERATOR CONTINGENCY MESSAGE TO:                                     ,

BLOCKING MESSAGE TO: CONTROLLER INSTRUCTION 82 Issue upon investicration of RM-RMS-159, 160, 162, and 163 alarms. TIME: POST 0828 THIS IS A DRILL RM-RMS-159 indict.tes 8.18 E 4 CPM. F RM-RMS-160 indicates 1.09 E 4 CPM. RM-RMS-162 indicates 3.41 E -1 R/hr. RM-RMS-163 indicates 1.71 E ~1 R/hr. T] IIB IS A DRILL

VIRGINIA POWER NORTH. ANNA POWER STATION MAY 15, 1991 EKERGENCY RIERCISE MESSAGE NO: OPS-12 SCENARIO MEBBAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: If simulator fails or cannot model. issue at the indicated time. TIME: 232 2 THIS IS A DRILL RM-RMS-162 is in HI HI Alarm. O

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EKERGENCY EXERCISE MESSAGE NO: OPS-13 SCENARIO MESSAGE TO: .BKBD OPERATOR CONTINGENCY MESSAGE TO DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS Issue uoon investication of RM-RMS-162 alarm. TIME POST 0829 THIS IS A DRILL RM-RMS-162 indicates 7.98 E -1 R/hr. 4 e 5 THIS IS A DRILL

VIRGINIA POWER NO'RTH ANNA POWER STATION MAY-15, 1991 EKERGENCY EXERCISE-

 %/

MESSAGE NO: OPS-14 SCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: If simulator fails or cannot-model. issue at the indicated time. TIME: 0831 THIS IS A DRILL RM-RMS-164 is in HI Alarm. O

                         -VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EDutRGENCY EXERCISE MESSAGE Not    OPS-15

, BCENARIO MESSAGE Tot BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO:

  • CONTROLLER INSTRUCTIONS: Issue upon investication of RM-Elis-164 alarm.

TIME: POST 0831 THIS IS A DRILL RM-RMS-164 indicates 6.85 E -2 R/hr. O T I. 1. ,eR m

VIRGINIA POWER NORTH-ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-16

,     SCENARIO MESSAGE TO    BKBD OPERATOR CONTINGENCY MESSAGE TO:

BLOCKING MESSAGE TO! - CONTROLLER INSTRUCTIONS Issue if the simulator fails or can not model. issue at the indicated time. TIME: 932 1 TBJJ IS A DRILL RM-RMS-164 is in HI HI Alarm. . THIS IS A DRILL

1 VIRGINIA POWER NORTH- ANNA POWER STATION KAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-17 BCENARIO MESSAGE TO: SKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue upon investiciation of RM-RMS

     -164 rad alarm.

TIME: POST 0833 THIS IS A DRILL RM-RMS-164 indicates 1.92 E -1 R/hr. O DIS IS A DRILL

VIRGINIA POWER - NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-18 BCENARIO MESSAGE TO: CRO/SRO CONTINGENCY MESSAGE TO: DLOOKING MESSAGE TO: CONTROLLER INSTRUCTIONS: If simulator fails, issue at the IDsljcated time. TIME: 0838 THIS IS A DRILL Source Range energizes : N31 = 1.5 E4 cps peak, N32 = 1.5 E4 cps peak, 't then begin decreasing. A .V THIS IS A DRILL

u VIRGINIA POWER NORTH ANNA POWER STATION , MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS SCENARIO MESSAGE TO: CONTINGENCY MESSAGE TO: SEM BLOCKING MESBAGE TO: - CONTROLLER INSTRUCTIONS:. PI_qy'de to the SEM only if the action has not been taken or is not beina taken. TIME! 0847 THIS IS A DRILL Declare a " ALERT" per EPIP-1.01 Tab B-3'or Tab B-5. O x THIS IS A DRILL

VIRGINIA POWER NORTH ANNA-POWER STATION MAY 15, 1991 100tRGGCY EXERCISE [ m . . MESSAGE NO: OPS-20 BCEEARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: 1ps?le if the simulator fails or can not model, irsue at the indicated time. TIME: 0850 2]IIS IS A DRILL RM-RMS-161 is in HI Alarm. ,O V O ,,1. I ,O ILL

VIRGINIA POWER NORTH ANNA POWER STATION-MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO OPS-21

         ~

SCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue upon investication of RM-RMS

           -161 rad alarm.

TIME: POST 0850 THIS IS A DRILL p RM-RMS-161 indicates 2.46 E -2 R/hr. _.O . THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION O MAY 15, 1991 EMERGENCY EXERCISE

 !N)                                                                 _

MESSAGE NO: OPS-22 BCENARIO MESSAGE TO: CRO/SRQ CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: If simulator falls, issue at indicated time. TIME: 0903 THIS IS A DRILL You receive the following indications : (1) Flow indication FW-FI-100C = 0 GPM. (2) Pump FW-P-3B amps are normal. (3) Level in "C" Steam Generator is increasing. THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE FO: OPS SCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue if the simulator fails oI can not model, issue at the indicated time. TIME: 21LQ TgJS IS A DRILL RM-RMS-165 is in HI Alarm. I THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-24

       ;  SCENARIO MESSAGE TO:                                       '

EEED OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: i i CONTROLLER INSTRUCTIONS: Issue upon investication of RM-FMS

      -165_ rad alarm.

TIME 2 POST 0910 THIS IS A DEILL (g RM-RMS-165 indicates 2.55 E 2 R/hr. n O THIS IS A DRILL

                                       - _ . ~     . .

VIRGINIA POWER NORTH ANNA-POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-25 SCENARIO MESSAGE TO RERQ OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MEBBAGE TO: CONTROLLER INSTRDCTIONS: Issue if th'e simulator fails or can not model, issue at the indicated time. TIME: 2113 THIS IS A DRILL RM-RMS-166 is in HI Alarm. O 9-

VIRGINIA POWER NORTH ANNA POWER STATION M,Y 15, 1991 EIGRGENCY REERCISE -O, . . - - - MESSAGE NO: OPS-26 BCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: C2TIROLLER INSTRUCTIONS: Issue uoon investication of RM-RMS _L66 rad alarm. TIME: POST 0,,R,L4, THIS IS A DRILL RM-RMS-166 indicates 2.5 E 2 R/hr. O ,,18 I ,o. m

VIRGINIA POWER NORTH ANNA POWER STATION (N MAY 15, 1991' EMERGENCY EXERCIBE MESSAGE Not OPS-27 BCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS: Issue if the simulator failg_gr can not model, issue at the indicated time,_ TIME: 0924 HIS IE A DJ.U4 RM-RMS-161 is in HI HI Alarm. O V l l l l xj THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 1$, 1991 FMERGENCY EXERCISE MESSAGE NO: OPS-28 SCENARIO MESSAGE TO: EBD OPERATOR CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONSt Issue upon investication of RM-RMS

          -161 rad alarm.

TIME POST 0924 THIS IS A DRTIL RM-RMS-161 indicates 6.04 E -2 R/hr. , O THIS IS A DRILL

4 ,. - - ., a .r..._.. ,_ . - . VIRGINIA POWER NORTH ANNA POWER STATION n C MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-29 SCENARIO MESSAGE TO: CRO/SRO CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: If simulator fails, issue at tan indicated time. TIME: 0947 TJIIB IS A DRILL

1. Normal alarms and annunciators associated with

[)) SI initiation are received.

2. Normal indications for Phase "A" isolation occur.
3. 1H Diesel indicates Zero (0) RPM.
4. Receive the following :

First out : DB3 (PRZ LO-LO PRESS SI-RX TRIP) THIS IS A DRILL

J VIRGINIA POWER NORTH ANNA POWER STATION J( MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO OPS-30 BCENARIO MESDAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS: If simulator fails or cannot model. issue at the indicated time. TIME 0947 THIS IS A DRILL RM-RMS-165 is in HI HI Alarm. RM-RMS-166 is in HI HI Alarm. L l THIS IS A DRILL l

VIRGINIA POWER NORTH ANNA POWER STATION N MAY 15, 1991 EMERGENCY EXERCISE \ MESSAGE Not OPS-31 SCENARIO MESSAGE TO BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS Issue upon investication of RM-RMS-165 and 166 alarms. TIME: E9ST 0947 THIS IS A DRI,LL m RM-RMS-165 indicates 2.24 E 3 R/hr. RM-RMS-166 indicates 2.02 E 3 R/hr. THIS IS A DRILL

l VIRGINIA POWER l NORTH ANNA POWER STATION MAY 15, 1991 EKERGENCY EXERCISE 1 MESSAGE NO OPS-32 SCENARIO FESSAGE Tot CRO/SR_Q CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS If the simulator fails. issue at the l'ndicate?. time. TIME 0950 IRIS IS A DRILL You receive normal annunciators for CDA activation. O THIS IS A DRILL

VIRGINIA POWER

 .j-NORTH ANNA POWER STATION MAY 15, 1991 EMEkGENCY EXERCISE MESSAGE NO   OPS-33 g     SCENARIO MESSAGE TO:     CRO/SRO CONTINGENCY MESSAGE TO:

BLOCKING MESSAGE TCt CONTROLLER INSTRUCTIONS: If simulator fails issue at the indicated tirne. TIME 0.2jlq MS IS A DRU4 [ The indication for 1-RS-P-3B is red light off, green light off. The white power available light is off. THIS IS A DRILL

l VIRGINIA POWER NORTII A.NNA POV,7R STATION MAY 15, 1991 IDGERGENCY EXERCISE HESSAGE NO: QPS-34 SCENARIO MESSAGE TO CRO/SRO CONTINGENCY HESSAGE TO l DLOCKING HESSAGE TO: CONTROLLER INSTRUCTIONS: If simulator fails, issue _at the indicated tim h TIME: 1Q25 , IRIS IS A DRILL When flydrogen Analyzer is put in service, Hg indicates

   .65 %.

O ,RI. I, , e m ,

               ,e,s   -   - - - . -     ,      ,p,., . ,        -v r-, a      .,   ,.,,a. , ,    .,   m .,

VIRGINIA POWER NORTII ANNA POWER STATION i G V MAY 15, 1991 EKERGENCY EXERCISE MESSAGE Not QPS-35 1 BCENARIO MESSAGE TO JB l CONTINGENCY MESSAGE TO O atoexzna "caa^or roi CONTROLLER INSTRUCTIONS: 22LijLJnessace is left intentionally l hlADZ , l 3 TIMEt IM T][1.8 18 A DRILL This message is left intentionally blank. !O THIS IS A DRILL ( 1

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not OPS-36 , SCENARIO MESSAGE TO: CRO/SRO/BKBD OPERATOR ' CONTINGENCY MESSAGE Tot BLOCKING MEBBAGE TO - CONTROLLER INSTRUCT 20NOt If simulator fails, insue at the indicated time. TIM 2t 101Q 11IS IS A DRILL You receive the following annunciator JA2 (RWST LO LEVEL) (o

)                                          THIS IS A DRILL

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EKERGENCY EXERCISE NESSAGE NO: OPS-37

  • l BCENARIO HESSAGE TO CRO/SRO CONTINGENCY MESSAGE TO:

BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS: If simulator fails. issue when realionment to recire occurA TIME: WifEN SI REALIGNS TO RECIRC IHD_18 A DRILiv All ind.ications are normal. O i l l THIS 18 A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE a MESSAGE Not OPS-38 , 1 SCENARIO HESSAGE TO CRO/SRO/BKBD OPERATOR CONTINGENCY MESSAGE TOs j BLOCKING MESSAGE TO . CONTROLLER IN4TRUCTIONS If simulator fails or cannot  : model, lagus at the indicated time. l TIME: 1j)_42 2'PJS IS A DRILL RM-VG-179-1 is in 11I Alarm. O RM-VG-105-4 is in !!I and III III Alarm. O RM-VG-105-6 is in III and liI !!I Alarm. RM-VG-106-4 is in III and ill llI Alarm. RM-VG-106-6 is in III and liI III Alarm. RM-VG-103 is in HI and HI III Alarm. RM-VG-104 is la III and III III Alarm. THIS IS A DRILL

VIRGINIA POWER  ; NORTII ANNA POWER STATION i MAY 15, 1991 EKERGENCY EXERCISM _) _ MESSAGE Not OPS-39 BCENARIO MEDSAGE TO BKBD OPERATOR CONTINGENCY MEBBAGE Tot

        ]     BLOCKING MESSAGE Tot                       .

CONTROLLER INSTRUCTIONS: Issue upon investination of listed rad alarms.

                              --4 cy < - c ana. : ,-              a TIME:  POST 1049 7HIF__IS A DRILL RM-VG-179-1 indicates 1.2 E -4 uCi/cc, 3.95 E3 uCi/sec.

RM-VG-105-4 indicates 2.62 E 4 CPM. RM-VG-105-6 indicates 2.69 E 4 CPM. RM-VG-106-4 indicates 2.92 E 3 CPM. RM-RMS-106-6 indicates 1.83 E 3 CPM. RM-VG-103 indicates 1.6 E 4 CPM. RM-VG-104 indicates 8.28 E 3 CPM. r' (j) THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO OPS-40 SCENARIO MESSAGE TO: D}iHD OPERATOR O cour2"orwer xtsaxon roi DLOCKING HESSAGE TO: CONTROLLER INSTRUCTIONSI Ji_the simulator fails _or can nat_nndrL_.ittue at ths indica.ted time. TIMEt ljlQ THIE_IfLA_ DRILL RM-VG-179-1 is in 11I III alarm. RM-GW-101 is in HI and ifI HI alarm. RM-GW-102 is in 111 alarm. RM-GW-178-1 is in HI alarm. O IRIB I8 h_DylLL I c1

E VIRGINIA POWER NORTH ANNA POWER STATION v MAY 15, 1991 EMERGKNCY RIDCISE MESSAGE NO: OPS-44 SCENARIO MESSAGE TO: BKBD OPERATOR CONTINutNCY MESSAGE TO BLOCKING MESSAGE Tot 4 CONTROLLER INSTRUCTIONS: Ipsy m n invegligation of FM-YG 179-1, GW-1Q1. GW-102, and GW-178-1 rad alarms. TIME POST 1050 TKl6__IR_.h_DAILL RM-VG-179-1 indicates 3.98 E -4 uCi/cc, 1.31 E4 O uCi/sec. RM-GW-101 indicates 1.99 E 5 CPM. RM-GW-102 indicates 1.33 E 4 CPM, P.M-GW-178-1 indicates 4.37 E 2 uCi/sec. v TRIR_lS__A DRILL i

VIRGINIA POWER NORTH ANNA POWER STATION O MAY 15, 1991 EMERGENCY REERCISE MESSAGE NOt OPS-42 SCENARIO MESSAGE Tot DXDD OPERATOR CONTINGENCY MESSAGE Tot BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: If the simulator fail _s or can not ingdel, issue at_the indicated time. TIME: 1Q12. TRIB_J#_A-DRILL RM-GW-102 is in HI !!I alarm. D O TN18 IS A_ DRILL

VIRGINIA POWER NORTH ANNA POWER STATION ~ MAY 15, 1991 EMERGENCY EXERCIDE MESSAGE NO: QES-41 SCENARIO MESSAGE TO B}iBy OPEPAT.QB CONTINGENCY MESSAGE TO:

                              ]     BLOCKING MESSAGE Tot CONTROLLER INSTRUCTIONS    Innue upsn investication of PR-GW
                                -102 rad alarna TIME   POST 1052

};'{ TRIS _IF A DRILL RM-GW-102 indicates 1.55 E 5 CPM. 1 O TIIIB IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION n-U MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-44 BCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING HEDSAGE TO: CONTROLLER INSTRUCTIONS: If the simulator fails or can not model, issue at the indigAted time. TIME 1Q51 THip IS A DRU4 RM-VG-180-1 is in HI and HI HI alarm. RM-VG-112 is in HI and HI HI alarm. RM-VG-113 is in HI and HI HI alarm. RM-GW-178-1 is in HI HI alarm. O 2116 IS A DRIT.L g ,--

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-45 SCENARIO MESSAGE Tot BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUC"IIONS: Issue upon investigAt.lon of RM-VG

     -112. 113, 180-1, and GW-178-1 rad alarms.

TIME POST 1055 IRIS._16._.P DRILL RM-VG-180-1 indicates 1.4 E -3 uC1/cc, 2.83 E4 uCi/sec. RM-VG-112 indicctes 1.52 E 5 CPM. RM-VG-113 indicates 5.33 E 5 CPM. RM-GW-178-1 indicates 7.9 E 3 uCi/sec. O IRIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION O MAY 15, 1991 EMERGENCY EXERCINE MESSAGE Not QPS-46 SCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: ' CONTROLLER INSTRUCTIONS: If the s_imulator fails or can  ; not mojel, issue _et the indicated time. TIME: 1253 THIS IS__A NRILL RM-VG-173 is in HI alarm. O IJfX8 IS A DR_ILL

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EMERGhMCY EXERCISE MESSAGE NO: OPS-47 BCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS Issue upon investigation of RM-VG

    -173 rad alarm.

TIME POST 1058 UfIS IS A DRIL1 7~ RM-VG-173 indicates 4.09 E O mR/hr. NJ m THIS IS A DRILL

VIRGINIA POWER ._ NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE l MESSAGE NO: OPS-48 SCENARIO MESSAGE TO: BKBD OPERATOR CONTINGENCY MESSAGE TO: I BLOCKING MESSAGE TO:  ; 1 CONTROLLER INSTRUCTIONS: If the simulator fails pr_qr,a l not model, issue at the indicated time.  ! TIME: 1Q1E THIS IS A.D31LL RM-VG-173 is in HI HI alarm. Os IlfIS IS A DR_I.LL

VIRGINIA POWER NORTH ANNA POWER STATION () MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO OPS-49 l SCENARIO MESSAGE TO: DJBD OPERAIQB CONTINGENCY HESSAG2 TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue uoon investictation_of RM-VG

      -173 rad alarm.

TIME: POST.101% Dip IS.A DRILL RM-VG-173 indicates 5.07 E O mR/hr. i J O DIS IS A DRILL 1

VIRGINIA POWER NORTH ANNA POWER STATION O MAY 15, 1991 EMERGENCY EIERCISE MESSAGE NO: OPS-50 SCENARIO MESSAGE TO: CONTROLLEB CONTINGE!)CY MESSAGE Tot BLOCKING MESSAGE Tot CONTROLLER INSTRUCTIONS: If simulator fails And/or 1-SI-P-1A is selected to be the first atte. mot at stooping _the leak. ILqtify when final isolation ett1_emnt is made. TIME: AS llEEDED THIR_IF A DRILL DO NOT HAND OUT THIS MESSAGE

1. After rtopping 1-SI-P-1A red light off, green light on.
2. Amps indicate 0.
3. After closing 1-SI-MOV-1863A red light off, green light on.
4. After checking closed 1-SI-MOV-1890A red light off, green light on.
5. After closing 1-SI-MOV-1864A red light off, green light on.
6. After closing 1-SI-MOV-1862A red light off, green light on.
7. Leak still exists.

(Leak on inlet piping to 1-SI-MOV-1863B and 1-SI-MOV-1864B will not close and 1-SI-MOV-1890A will not open) TILTS IS A DRILL I

VIRGINIA POWER NORTII ANNA POWER STATION n V- MAY 15, 1991 ENERGENCY EXERCISE _s MESSAGE Not OPS-51 SCENARIO MESSAGE Tot CONTROLLER O co"22"oraov xessaa= ro BLOCKING MESSAGE Tot CONTROLLER INSTRUCTIONS If simulator failp and/or 1-SI-P-1B is selected --.to be thtf.irst attemot at stoopina the 15;AL, Notify when final isolation atternet is made. TIME AS NEEDED E p IS A DBILL DO NOT HAND OUT THIS MEEP3.GE

1. After stopping 1-SI-P-1B red light off, green light on.
2. Amps indicate O.
3. After closing 1-SI-MOV-1863B red light off, green light on.
4. Af ter checkirg closed 1-SI-MOV-1890B red light of f, green light on.
5. After closing 1-SI-MOV-1864B red light off, green light on.
6. After closing 1-SI-MOV-1862B red light off, green light on.
7. Leak still exists.

(Leak on inlet piping to 1-SI-MOV-1863A and 1-SI-MOV-1864A will not close and 1-SI-MOV-1890B will not open) l lO ( M S._IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPS-52 SCENARIO MESSAGE TO CONTROLLER CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Jf simulator fails, issue when 1-SI-MOV-1890A/B is attempted to_be opened. ReDeat informa1LQn if valve tried more than once. 1 TIME: AS NEEDED IRLS IS A DRILL O) ( 1-SI-MOV-1890A/B indicating lights are green on, red off. m u u.,m> _ -- y m y ,wed -

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not Or$S- 5 3 SCENARIO MESSAGE TO: CONTROLLER [ CONTINGENCY MESSAGE Tot h BLOCKING MESSAGE TO:  ! CONTROLLER INSTRUCTIONS: H&91ctor f ails, igsue when MOV-1864 A or B.ls attM ated to close. Dost reDair. Ensure Authorization by Le__ad Controller._ TIME: POST 1315 TJIS 18 A DRILL 1-SI-Mov-1864 A/B green light is on, red light is off. O THIS I8 A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE m. MESSAGE Not OPSF-0 SCENARIO AESSAGE Tot 1-RC-P-1B CONTROLLER CONTINGENCY MESSAJE TO BLOCKING HESSAGE TO: CONTROLLER INSTRUCTIONS: Issue, as necessary, upon investiaation of 1-RC-P-1B breaker 15B3. TIME: POST 0825 IIRS IS A DRIL_L

1. The breaker la in the tripped position.
2. The overcurrent red flag is indicated.
3. Instantaneous overcurrent phase A is indicated.

THIp_IS A DRILL

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not QPST-1 l 9CENARIO MESSAGE TO: AUX OPERATOR CONTINGENCY MEBLAGE TO:

     ]    DLOCKING MESSAGE TO                                                                         .

CONTROLLER INSTRUCTIONS: Issue upon investication of Ernercency Diesel 1H. TIME: EOST 0947. AT SCENE IIIIS IS A DRIM

1. Diesel is not running.
2. All other indications are normal.

O ze 1e A oR m

VIRGINIA POWER ' NORTII ANNA POWER STATION MAY 15, 3991 EMERGENCY EXERCISE MESSAGE NO: OPSF-2 BCENARIO MEBBAGE TO: CONTROLLER CONTINGENCY MESSAGE TOs BLOCKING MESSAGE TO: - CONTROLLER INSTRUCTIONS: Issue upon investictation of RS-P-TIME POST 0950 T][IB IS N DRILL

1. 1J1-2S breaker G4 is in the tripped position.
2. If attempts are made to reset the breaker, the breaker will not resot.
3. If shaft rotation is attempted, shaft will not move.

O THIS'IS A DRILL s

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

VIRGINIA POWER NORTII ANNA POWER STATION . MAY 15, 1991 EKERGENCY RIERCISE MESSAGE NO: OPSF-3 SCENARIO MESSAGE TO: AUX OPERATOR CONTINGENCY MESSAGE TO: O noocxtuo "cas^a= ro - CONTROLLER INSTRUCTIONS: Issue upon investication of CB-3 breaker. Breaker is located inside lower rear section of Unit I liv _dronen Recombiner Control Panel cabinet. TIME: PM T 1005 T]fIS IS A DIR@ r CB-3 is in the tripped position. l

j. r)

J' THIS IS A DRILL t (

VIRGINIA POWER - NORTil A.NNA POWER STATION MAY 15, 1991 kMERGENCY EXERCISE  ! MESSAGE NO OPSF-4 SCEN.*.RIO MESSAGE TO: CONTROLLER h CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO CONTROLLER INSTRUCTIONS: Issue when investiaation of b_rgn}:er 1J-2NK1 for MOV-1864B or 111-2NH3 for MOV-1864 A is ' conducted. If atteigats are made to reset the breaker, the breaker will not reset. The valve breaker will be repairec} and returned to service at 1315. TIME: POST 1049 THL8_IB A DRILL Breaker is in the tripped position. O THIS IS A_DAILL

 ..                                 -s

VIRGINIA POWER NORTII ANNA POWER STATION [J MAY 15, 1991 EMERGENCY EXERCISE HESSAGE NO QPSF-5 SCENARIO MESSAGE TO: CONTR'%I&B CONTINGENCY MESSAGE TO BLOCKING HESSAGE TO: CONTROLLER INSTRUCTIONS: Issue upon attemotina to reset breaker MOV-1890A or for MOV-1890B. Fill in the blanks dependina on the applicable valve. This valve is stuck closed. TIME POST 1049 THIS 18 A DRILL Breaker for MOV-1890 Will reset, but immediatly trips tempted to open electrically. O 2')f I S I S A D R I L L b

VIRGINIA POWER NORTII ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: OPSF-6 BCENARIO MESSAGE TO: CONTROLLEk O courzuocner neaanos ro DLOCKING HEBBhGE TO . CONTROLLER INSTRUCTIONS: Issue if MOV-1890A or B is investictated at valve. This valye is stuck closed and will not open for this drill. TIME: POST 1049 [ IlflE_M_A_DRUJa You find the following . O 1. Clutch engages.

2. Valve handwheel will not turn with out excessive force.
3. If excessive force is used, the pin on operator breaks allowing handwheel to spin free, but valve does not InoVo.

4, If pin replaced, valve handwheel will not open valvo. I THIS IS A DRILL

VIRGINIA POWER NORTII ANNA POWER STATION KAY 15, 1991 EMERCENCY EXERCIBE HESSAGE Not OPSF-7 SCENARIO HESSAGE TO: CONTROLLER CONTINCENCY MEDUAGE TO: DLOCKING HESSAGE TO CONTROLLER INSTRUCTIONS lisile when statuo of 2-C; FL-5 is rectuested, after First Aid Drill has been started. TIME: AS MEEDED LHIS ID A DRIJ4 The status of 2-Cit-FL-5 is as follows:

1. Isolation is as per procedure.
2. Procedure step 2-MOP-8.25 step 5.1.9.b was in progress.
3. Vent valvo 2-Cll-114 is open.
4. Drain valve 2-Cll-113 is open.
5. Water is splashing out of drain.

THIS IS A DRILL

VIRGINIA PO~WER NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE 6 DAMAGE CONTROL Q AESSAGES/ DATA i L O ' L

               ,q                    e- -v 7's ---
                                                   *v

VIRGINIA POWER

             -NORTH ANNA POWER STATION O-                  MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not    DC-1 SCENARIO MESSAGE TO:       1-FW-FI-1476 CON 7 ?,'iRB.    '

CONTINGENCY MESSAGE TO: DLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Incue, as necessarv. data reuardinct investication of 1-FW-FI-1476 indication oroblem. TIME: POST 0747 THIS IS A DRILL

1. Meter reading is off scale low.
2. Tovis and parts are available on an "as is" basis.
3. Time for repairs is to be real.
4. Driver card inputs are below normal.

S. Driver card output is zero.

6. Transmitter input to instrument racks is significantly below normal.
7. If local input for transmitter is checked, input is normal.
8. Transmitter output is significantly low, indicating transmitter malfunction.

.f) L THIS IS A DRILL

                        -VIRGINIA POWER NORTH ANNA POWER STATION w,
't)                 MAY 15, 1991 EMERGENCY EXERCISE MEBBAGE Not  DC-2 BCENARIO MESSAGE TO:     DIESEL CONTROLLER CONTINGENCY MESSAGE TO DLOCKING MESSAGE TO:

CONTROLLER INSTRUCTIONS: Issue, as necesqary, to control the Emerciency Diesel #1H electrical oroblem. TIMEt POST 0947 THIS IS A DRILL

1) Diesel is not running.

>p) b

2) Diesel will not manually start.
3) Times for troubleshooting and repair are to be real.
4) Prior to allowing the equipment to be brought on line coordinate with the LEAD CONTROLLER in the Control Room Simulator.
5) The input to start the diesel is not available. The cause is failure of SE contacts 1 and 2. Contacts read infinite resistance.
6) The last time the diesel was operated the SE contacts for relay SE were opened, therefore SE contacts 1 and 2 for starting are inoperable. They need to be replaced.
7) Tools and parts are available on an "as is" basis.

THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION n} V MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: DCE-3 SCENARIO MESSAGE TO: CASING COOLING PUMP CONTROI&EB CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue data , as necessary, recardina investication and repair of Casina coolina Pumo 1-RS-P-3B. TIME: POST 0950 THIS 18 A DRILL

1. 1J1-2S G4 is in the tripped position and will not reset.
2. Parts and tools are available on an "as ie" basis.
3. Time for repairs is to be real.
4. If pump shaft is attempted to rotate, shaft will not move. If coupling between the motor and the pump shaft is removed, the pu:..p shaft will rotate. The motor shaft is extremely hard to turn. A scraping sound is heard from motor when turning.
5. You can smell and odor of " apparent" hot windings, the motor is hot-to touch.
6. Electrical readings indicate "open" motor windings.

In addition one portion of the windings is " shorted" to ground. The motor is inoperable, p-O THIS IS A DRILL

VIRGINIA- POWER NORTH ANNA POWER STATION C'i MAY 15, 1991 EMERGENCY EXERCISE MESSAGE Not DC-4 SCENARIO MESSAGE TO: 1-FW-FI-100C CONTROLLER CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO CONTROT.LER INSTRUCTIONS: Issue, a p_, n e c e s s a r y , upon the " Jnvestiaation of 1-FW-FI-100C in racks in back cabinets gf the CONTROL ROOM SIMULATOR. Only aive out data that is pertainina to the troubleshootina techniaues discussed. TIM 3 POST 0903 TifIS IS A DRILL O

   'Q                  1. Driver card inputs are normal.
2. Driver card output is zero (0),
3. Other checks are normal.
4. Tools and parts are available on an "as is" basis.
5. Ensure coordination is maintained with the LEAD CONTROLLER / SIMULATOR OPERATOR prior to bringing back equipment.

THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION p)

   !                 MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: DC-5 SCENARIO HESSAGE TO:     1-RC-P-1B CONTROLLER CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO:

CONTROLLER INSTRUCTIONS: Issue, as necessarv. to control the 1-RC-P-1B breaker 15B3 problem. TIME: POST 0825 THIS IS A DILT1L

1) Tools are available on an "as is" basis.

O V 2) The breaker is in the tripped position.

3) The overcurrent red flag is indicated.
4) Instantaneous overcurrent phase A is indica.ed.
5) Upon completion of checks there is nothing wrong, all checks are normal.

J THIS IS A DRIL_I,

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE (w] MESSAGE NO DC-6 SCENARIO MESSAGE TO 1- A-P-4B CONTROLLEB CONTINGENCY MESSAGE TO BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS Issue upon the investication of - 1-DA-P-4B. Ensure that data is only aiven for techniaup_g applied. TIME: POST 0826 IIIIJ_IS A DRILL

1. Readings indicated that the motor leads are open.

[]

 '%/
2. Lead is open at the pump motor.
3. The pump is powered from breaker MCC-1B1-2 (1-EP-MC-15) breaker # E-5.
4. Times for troubleshooting are to be real.
5. Tools and parts are available on an "as is" basis.
6. Do not allow this pump to return to service for the entire exercise.

THIS IS A DRILL

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15, 1991 EMERGENCY EXERCISE MESSAGE NO: DC-7 SCENARIO MESSAGE TO MOV 1864 CONTROLLER CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONS: Issue, as necessary, to control the MOV 1864 problem. Repair time is to be approximately

   ,1315. Slow or speed up, as necessary, to maintain the timeline.

TIME: POST 1049 _TFJ_S IS A DRILL

1) Tools are available on an "as is" basis. ,
2) Parts are available on an "as is" basis.
3) Times for troubleshooting and repair are to be real. )
4) Prior to allowing the equipment to be brought on line -

coordinate with the LEAD CONTROLLER in the Control Room Simulator.

5) Breaker 1J-2NK (MOV-1864B) or 1H-2NH3 (MOV-1864A) will not reset.
6) Closing contactor coil is inoperable.
7) The valve motor lead is burnt off at the breaker. ,

THIS IS A DRILL l

VIRGINIA POWER NORTH ANNA POWER STATION

   -g                                                            MAY 15, 1991 EKERGENCY EXERCIS?

U MESSAGE Not DC-8 SCENARIO MESSAGE Tot MOV-1890 CONTROLLER CONTINGENCY MESSAGE TO: BLOCKING MESSAGE TO: CONTROLLER INSTRUCTIONSt Issue, as necessarv. the followina information reaardina the reDair effort of MOV-1890A or _ B. This valve will be inoperable for the entire drill. TIMEt POST 1049 THIS IS A DRILL

1) Visual inspection indicates all conditions are normal.
2) If manual control is attempted, clutch engages, but handwheel will not move valve stem. Pin in operator breaks if excessive force is used.
3) Valve is stuck closed. "1
4) Tools and parts are available on an "as is" basis. .
                                                                                                                       ~
5) Timeframe for repairs are to real.
6) If operator has previously attempted to open this valve and they used excessive force, pin is broken and #

handwheel spins free but does not move stem. rO Q HIS IS A DRILI,

VIRGINIA POWER NORTH ANNA POWER STATION MAY 15,1991 EMERGENCY EXERCISE t - \ RADIOLOGICAL MONITOR g MESSAGES / DATA 5 .= _ O

IMIS tS V GutIT eartsia oes- t s i - oes-ter Ae-1L( om-ILS-1 om-tLS-E ots-t t e-E om-its-E MS-itS MS-ILI saS-T LE MS-tt9 SA-lET 4Tuo -saw saw muyys asifos naT/sem naT/ap naT/ses ew/42 sav/42 mu/4J uM/4J 34W desEg - f*613+E E'983+C S

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{1.15E-4 11:53 >1.9E*6 >1.9E*6 1.24E+1 9.99E-3 7.1mE+4 8.SSE+8 9.8sE+8 1.19E-1 1.19E-1 1.29E-1 1.15E-4 3.51E*1 11:51 >1.fE46 >1.9E+6 1.24E+1 8.98E-3 7. 9 9 E+ 4.- . S . 9 9 E + f.- -y S.._9 0. E + 8. . 1.19E-1 1.18E-3 1.2FE-1 ' 1.15E-4 3.516*1 11:52 l >1.9E+6 31.SE*6 1.24E+1 8.87E-3 7.98E+4 S.ESE+9 l S.SWE*8 1.18E-1 l 1.15E-1 1.29E-1 , 1.15E-4 3.51E+1 THIS IS A DRILI.

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                          >1.9E46  1.24E*1     9.94E-3  7.56E+4  S.SSE+S     8.SSE+S        1.let 1 11:54      >1.SE+4                                                                                                            1.15E-6   3.52E41 1.23E+1     9.83E-3  7.95E+4  p.99E48     0.est+e        1.18E-1    1.10E-1     1.295-1 l11:55       >1.SE+6       >1.0E66                                                                                              1.15E-4   3.52E+1 S.99E+9     S.SSE*S        1.18E-1    1.IfE-1     1.298-1 (11:55       >1.8E+6       >1.fE+6  1.23E+1     S.02E-3  7.f4E+4 S.SSE+8        1.18E-1    1.15E-1     1.2fE-1     1.15E-4   3.52E+1 1.23E+1     0.818-3  7.53E44  0.0SE+9 (11:5'       >1.fE+6       >1.fE+6 f

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1 L SW :07 SW 199 SW 19 9 GL 12 4 9W12S - Sh 12 6 SW12 7 Scenario CH-128 88-122 80 123 ! Ss.124 Lw 119 Lw.111 8W-138 _ CC-128 CPM CPM CPM CPft CPP CPM CPM CPM CPM CPet CPet CPM _ Time CPM CPM CPM 5.97E+8 3.98E+1 6.47E+1 a.94E41 9.57348 1.29E+1 1.09E+1 98:23 1.99E+2 1.29E42 6.97E+1 1.99E+2 2, 3 2.395+2 2.99E+1 6.97E+1 2.02E+1 6.58E+1 5.64E+s 3.76261 6.11E*1 S.46E+1 - S.28 5+# _ 1.22E+1 1.f3E+1 98:24 1.992+2 1.22E+2 6.58E41 1.88E+2 2.63B+3 2.26E+2 6.72E+1 5.76E49 3.84E+1 6.18E+1 S.64E*1 ' 5.37E*F : 1.24E+1 1.e5E+1 88s25 4.37E+2 1.24E+2 6.72E+1 1.92E+2 2.69E+3 2.38E42 2.StE*1 4.22E48 9.33E+1 5.89E49 1.24E+1 1.14E+1 SSs26 2.14E*3 1.34E+2 7.262+1 2.97E+2 2.95E+3 2.49E+2 3.11E+1 7.26E+1 4.14E+1] 6.4 7E* 1 6.93E+9 4.92E61 6.47E+1 9.95E+1 5.62E*S 1.3SE+1 1.18E+1 99:27 >1.95E+6 1.39E+2 7.04E+1 2.81542 2.82E+3 2.41E+2 3.92E+1 7.94E41 6.33E+r 4.22E+1 5.91E+8 1.37E*1 1.16E+1 98:29 >1.988+6 1.37E+2 7.39E41 2.11E42 2.96E+1 2. 5 3E42 3.17E+1 7.39E+1 6.9fE+1 {9.588+1 3.18E-1 7.41E+1 4.35E 8 4.23E+1 6.81E+1 9.53E41 5.92E+9 1.37E+1 l 1.15E41 98 29 >1.00E46 1.37E+2 7.41E+1 2.12E+2 2.97E+3 2.54E*2 6.36E*8 4.24E+1 6.33S+1 9.53E+1 5.94E+8 1.37E+1 1.16E*1 80:30 >1.89E46 1.37E42 7.43E+1 2.12E+2 2.97E+1 2.55E+2 3.19E+1 7.43E41 6.3eE*8 4.25E41 6.85E+1 9.57E*1 5.95E+6 1.39E+1 1.173+1

            >1.08E+6     1.38E+2                7.45E41   2,13E+2 2.98E+3            2.55E42      3.28E+1      7.45E+1 88:31 7.46E41           6.39E+8     4.26E+1              6.87E+1   9.69t+1    5.97E45       1.3AE+1    1.17E*1    j 88:32  >1.SSE+6     1.39E+2                7.46E41   2.13E+2 2.99E+3            2.56E+2      3 29E+1 l

b41E+f 4.27E+1 6.88E+1 9.62E+1 5.98E49 1.39E+1 1.17E+1 99:33 >1.88t+6 1.39E+2 7.48E+1 2.14E+2 3.88E+1 2.57E42 2.21E41 7.49E+1 6.43E+9 4.28E+1 6.99E+1 9.65E*1 6.98E49 1.39E+1 1.18E61 1.39E+2 7.5sE+1 2.14E+2 3.22E+1 7.59E+1 88:34 >1.90E+6 1. 50E+ 3] ' 2. 5 7E+2 6.44E+f 4.29E41 6.92E+1 9.67E+1 6.S'948 1.39E+1 1.19E+1 7.52E+1 2.15E+1 3.SIE+1 2.58E+2 3.2 3E+ 1 7.52E+1 00:35 31.89E+6 1. 39 E

  • 2 6. f ? '+9 1.49E+1 1.1e8+1 2.59E+2 3.24E41 7.54E+1 6.46E+S 4.31E+1 6.94P+1 9.69E41 09:36 >1.09E*6 1.4SE+2 7.!4E+1 2.15E+2 3.82E+3 1.49E+1 1.;eE+1 3.24E41 7.56E*1 6.48E*S 4.32E+1 6.95241 9.72E*1 6.9 4. +8
            >1.99E46     1.48t+2                7.56E+1   2.16E+2 3.83E+3            2.59E+2
 -.-*3:37 6.49E E     4.33E+1              6.97E+1   9.74E*1    6.96E S      1.4sE+1     1.19E+1 1.4eE+2                7.58t+1   2.16E*2 3.83E+3            2.69E+2      3.25E+1 g 7.58E+1 88 39  >1.98E+6                                                                                                                         4.34E+1              6.99E+1   9.77E+1    6.97E S       1.41E*1    1.19E+1 2.1?E+2 3.e4E+3            2.6pr+2      3.26E+1 ) 7.60E+1              6.51E+8 09 39  >1.ssE46     1.41E+2                7.4tr+1 9.79E+1    6.993 9       1.41E*1    1.19E*1 2.61E+2      3.27E+1      7.62E+1           6.52E+9     4.s5E+1              7.90E+1 88:48  >1.90E+6     1.41E+2                7.62E+1   2.17E+2 3.SSE+3
4. 36 E+ 1 7.82E+1 9.92E41 6.1924.' 2.41E+1 1.29E+1 2.18E+2 3.96E+3 2.62E+2 3.2 8E+1 7.63E+1 6.54E+9 4 9"s41 >1.092+6 1.41E+2 7.63E+1 6.12E.3 1.42E+1 1.2eE+1 1.42E+2 7.65E+1 2.19E+2 3.86E+3 2.62E*2 3.29E41 7.65E+1 6.56E*8 .4.37E*1 j 7.84E*1 9.ses+1 58 42 >1.80E+4
                                                                                                                                                                                               .w-6.57E49      4.38E+1 a            7.96E+1   9.87E+1    6.13E+3 _ 1. 4 2_E 61    !.29E41 7.67E+1   S.19E+2 3.97E43           2.63E, _42_3. _29E. _+1    7.67E+1 09:43   >1.fWE+6     1.42E+2                                                                                                                           %

9.89E+1 4.15E+P 1.42E+1 1.JPE+1 3.39E+1 7.69E+1 6.59E46 4.39E+1 7.STE+1 08:44 >1.088+6 1.42E+2 7.69E+1 2.282+2 1.08E*3 2.64r+2 1.43E*1 1.21E+1 i 6.61E4s 4.4??+1 7.89E+1 9.91E*] 4.16E+8 1.43E+2 7.71E+1 2.29E+2 3.99E+1 2.64E+2 3.31E+1 7.71E+1 l S$s45 >1.SSE+6 7.11P+1 9.94E41 4.18E*8 1.43E+1 1.21E+1 3.09E+3 3.32E*1 7.73E61 6.62E+8 4.41E41 88346 >1.99E46 1.43E+2 7.73E*1 2.21E+2 2.65E*2 1.43E+1 1.21E+1 7.75E+1 6.64E*S 4.42E41_ 7.13E+1 9.96E+1 J.19E*S 88:47 >1.9fE+6 1.43E+2 7.75E+1 2.21E*2 3.19E+3 2.64E+2 3.33E41 7.77E+1 4.44E+1 7.15E41 9.99E+1 6.21E+9 1.44E+1 1.22E*1 88s48 >1.SSE46 1.44E+2 7.77E+1 2.22E+2 3.11E d 2.66E+2 3.33E61 6.66E+9 F.22E+9 1.4( 3+ 1 1.22E+1 3.34E+1 7.79E41 6.67E+8 4.454+1 7.14E+1 1.90E+2 . 98:49 >1.98E+6 1.44E42 7.79E+1 2.22E+2 3.12E+3 2.67E+2 7.1RE+1 1.99242 m.24E40 1.22E*1 7.81E+1 2.23E+2 3.13E+3 2.69E*2 3.35E+1 6.69E+8 ._4.46E+1 _1.45E+1 80s58 >1.SSE+6 1.45E+2 7. 81 E_+ m 1 1.81E+2 6.24E49 1.45E+1 1.23E+1 3.13E+3 2.69E+2 3.36E*1 7.83E+1 6.71E+8 4.47E+1 7.2fE+1 98:51 >1.SSE+4 1.45E+2 7.03E+1 2.23E42 2.49E42 3.372+1 7.95E+1 6.72E48 4.48E61 7.22E+1 1.81E+2 _6.2tE45 1.45F+1 { 1.23E*1 98:52 >1.9fE+6 1.45E42 7.85E+1 2.24E+2 3.14E+3 4 1 4.49E*1 7.24E+1 1.91E+2 4 29E49 1.46E+1 1.23E41 2.25E+2 3.15E+3 2.79E+2 3. 39E41 7.97E+1 6.74E+e 88:53 >1.etE*6 1.46E+2 7.87E+1 6.39E49 1.46E+1 ' 3.24E+1 3.16E+3 2.78E+2 3.39E+1 7.89E+1 6.76E+8 4.5fE+1 7.25E+1 1.91E*2 98:54 >I.SSE+6 1.46E+2 7.99E+1 2.25E*2 1.46E+1 1.24E+1 2.71E42 3.39E41 7.91E+1 6.77E+# 4.51E*1 7.27E61 1.82E42 6.12E+9 88:55 >1.99E*6 1.46E+2 7.91E+1 2.26E42 3.16E+3 1.47E+1 1.24 S 1 2.72E+2 3.4fE+1 7.93E+1 6.79E+8 4.53Et1 7.29E+1 1.92E42 6.13E+9 89:56 >1.SEE66 7.93E+1 2.26E+2 3.17E+3 1.4FE+1 1.24E+1 { 1.47E+2 3.19E+3 2.72E42 3.41E+1 7.95E+1 4.81E49 4.54E+1 7.31E+1 1.92E+2 6.35E+9 08:57 >1.99E+6 { 1.47E*2 7.95E+1 2.27E42 THIS IS A DR111

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I L 1 l { l i SW-IST SW-109 Sw-199 SW-124 -- Ser+129 SW-126 Sw-127 CE-128 89-122 SS-123 35-124 Lw.118 Lw-111 Ew.13e CC.120 %cesario CPM CPM CPM CPM CPM CPM CP91 CPM CPM Tisme CPM CPM CPM CPM CPM CPM i 8.97E+8 5.91E+1 9.S2E+1 1.33E*2 0.27E*8 1.92E+1 1.62E+1 ) 2.96E+2 4.14E+3 3.55E+2 4.44E+1 1.34E+2 10:43 2.162+2 1.175+2 1.33E+2 S.29E49 1.92E+1 1 63E+1

            > 1. f_e E + 6 4.15E+3     3.56 E 62      4.4*T*1       1.84E42       0.99E48  5.93E*1        9.55E+1 l ICs44      >1.SSE+6          2.17E+2 1.17E+2 2.96E+2                                                                                                                      1.93M*1     1.63E+1 3.57E+2        4.47E+1       1.94E+2       0.91E+9  5.94E+1        9.575+1   1.34E+2     8.31E+8 I 10:45      >1.982+6          2.17E41 1.17E+2 2.97E+2    4.16E+3                                                                                                                       1.63E+1 1.94E+2       8.94E*S  5.94E*1        9.59E+1   1.34E+2     S.34E+G      1.93E+1 2.18E+2 1.18E+2 2.98E+2    4.18E+3     3.58E+2        4.48E+1 13:45    >1.88E+6                                                                                                                              1.34E42     9.36E+8      1.94E+1     1.64B+1 4.19E+3     3.59E+2        4.49E+1       1.05E+2       8.96E+f  5.97E41        9.42E+1 i

l 10:47 >1.995+6 2.19E*2 1.18E+2 2.99E+2 > 1 i I. 9.98E48 5.*9E41 9.64841 1.35E+2 9.388+8 1.94E+1 1.64E*1 I 2.19E+2 1.19E+2 2.99E+2 4.2fE+3 3.59E+2 4.52E+1 1.SSE*2 ! 10:43 >1.SSEe6 1.35E*2 9.4f8+8 1.95E*1 1.65E+1 1.85E+2 9.89E49 6.PSE+1 9.678+1 b 13:49 l

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3.62E+2 4.53E*1 1.86E42 9.95E+8 6.83E+1 9.71E+1 1.36E62 S.44E+8 f 19:51 >1.SFE+6 1.95E+2 1.06E+2 3.82E+2 4.23E+3

8. 4 6E +6 . 96E+1 1.66E+1 4.54E+1 1.86E+2 9.87849 . 8 5E+ 1 9.74B+1 1.36E+2 3:52 >1.99E46 1.96E+2 1.96E+2 3.02E+2 4.24E+3 3.63E+2 1

6.96E+1 9.765+1 1.35E*2 9.48E48 1.96E+1 1.64E+1 3.64E+2 4 56E+1 1.06E*2 9.89E+5

            >1.SSE+6          1.96E+2 1.868+2 3.83E+2    4.25E+3 1.67E41

( 13:53 4 16E+1 3.65E+2 4.57E+1 1.84E+2 9.12E+8 6.38E+1 9.79841 1.378+2 8.598+G 1.97841 ! 10:54 31.08846 1.97E+2 1.96E+2 3.94F+2 9.53E*S 1.97E+1 1.47E+1 % 1.87E+2 9.14E49 6.99E+1 9.91E+1 1.37E+2 l 10 >1.88E+6 1.97E+2 1.07E+2 3.05E+2 4.27E+1 3.66E42 4.58E+1 1.68E41 1.39E+2 S.55E45 1.988+1 b :55 i 19:55 >1.398+6 1.90E+2 1.87E+2 3.d5E+2 4.2SE+1 3.47t+2 4.59E+1 1 87E+2 9.16E+9 9.1@E+9 6.111+1 6.12E+1 9.94E+1 9.96E+1 1.39E+2 8.578+S 1.99E+1 1.4SE+1 1.87E+2 3.96E+2 4.29E+3 3.69E+2 4.6SE+1 _1_8 7. _E + 2.~ ( 19:57 >1.SSF+6 1.9EE+2 . 1 9.21E+9 6.14E+1 9.89P+1 1.30E+2 9.59E*8 1.99E+1  !.69E*1 1.87E+2 3.87E+2 4.19E+3 3.69t+2 4.61E+1 1.87E+2 I 19:59 31.99E+6 1.99E+2 9.91B+1 1.39542 j 8.61E+S 1.99E*1 1.49E+1 3.00E+2 4.31E+3 3.69E+2 4.62E41 1.f9E42 9.23E+d 6.15E+1 h 19:59 >1.SSE+6 1.99E+2 1.98E+2

4. 32E+ 3 3.79E+2 4.64E+1 1.89E+2 9.25E40 6.17E+1 9.94E*1 1.39E+2 +l 9.61E*8 2.ffE+1 1.69E+1 DI.00E+6 2.SWE+2 1.98E+2 3.88E42 r 11sCG 1.SSE+2 9.29E+0 6.18E+1 9.96E+1 1.39E+2 S.65E+9 2.99E+1 1.798+1
            >1.SSB+6          2.8SE+2 1.89E+2 3.ffE+2    4.33E+3     3.71E+2        4.65E+1 l 11:01                                                              3.72E+2        4.66E+1       1.S*E+2       9.3fE+9  6.2 SE+ 1] 9.9 9E+ 1     1.4SE42     S.68E49      2.81E*1     1.78E*1
            >1.08E46                  1.89E+2 3.19E+2    4.35E+3 l 11:02                        2.81E*2 I                                                                                                                                                  1.49E42                              1.78E*1 h

3.11E+2 4.36E+3 3.73E42 4.67E+1 1.99E+2 9.32E*S 6.21E _+1 1.ffE42 S.792+0 . _2 . 91.E+ 1 2.01E+2 1.99E+2 (-11:03 1.71E+1

            >1.SSE.+6                                                                                           9.35E+9  6.23E*1        1.9fE+2   1.49E+2     0.72E+9      2.82E+1 1.99E+2 3.12E+2    4.37E+3     3.74E42        4.6fE41       1.89E+2 l 11:54      >1.88E+6          2.f2E+2 3.7)E+2        4.69E+1       1.89E+2       9.37E+8  6.25E*1        1.SIE+2   1.41E+2     E.74E+9      2.92E+1     1.71E+1
            >1.08E+6          2.82E+2 1.89E+2 3.12E+2    4.39E43 f 11:05                                                               3.76E+2        4.71E+3       1.1SE+2       9.39E+8  6.26E+1        1.81E+2   1.41E+2     0.76E+9      2.03E+1     1.72E*1 I 11:08      >1.SSE+6          2.81E+2 1.18E+2 3.13E+2    4.39E+3 2.93E+1     1.72E+1 3.77E*2                                    9.42E+8  6.28E+1        1.01E+2   1.41E+2     9.78E*S
            >1.00E+6          2.83E+2 1.18E+2 3.14E+2    4.40E+3                    4. 72 E
  • 1Q 1.18 E42 l 11:07 4 1.42E42 9.81E+G 2.94E+1-+ 1.73841 j 3.79E+2 4.73E+1 1.1SE+2 +1 9.44E48 +l 6.29E+1 1.91E42 11.19 >1.998+6 2.84E+2 1.18E+2 3.15E+2 4.41E+3 2.54E41 1.73E+1 ,

3.79E+2 4.74E+1 1.1SE+2 9.46E+8 6.31E41 1.82E*2  ?.42E+2 8.83E48 3.15E+2 , 4.42E+3 l 11sG9 % >1.90E+6_. 2.84E42 1.19E42 4.75E+1 9.49E+S 6.32E+1 1.02E+2 1.42B42 S.85E49 2.95E+1 1.73841 1.11E+2 3.idE+2 4.43E+3 1.11 E. + 2 l 11:19-

            >1.SSE46          2.85E*2 1.11E+2 3.17E42   '4.44E+1
3. 9_f E._*2 _

3.81F+2 4.76E41 1.11E42 9.51E*S 6.34E+1 1.82E+2 1.43E+2 S.87E48 2.95E*1 1.74E+1

11
11 >1.88E+6 2.85E+2 1.82E+2
  • 43E+2 8.89E+0 2.36E+1 1.74E+1 4.46E*3 3.82E+2 4.78E+1 1.11E+2 9.54E*S 6.3fE+1
            >1.90E+6          2.96E+2 1.11E+2 3.18E+2 l 11:12 1.93E+2   1.41E+2     9.92E40      2.87E+1     1.75E*1 l

4.47E+3 3.83E+2 4.79E+1 1.12E+2 9.56E+8 6.37E+1 ( 11:13 >1.88E+6 2.87E+2 1.12E+2 3.1 tr+2 1.44E+2 9.94E*S 2.57E*1 1.75E+1 3.94E+2 4.89E+1 1.12E+2 9.58E49 6.39E+1 1.83E+2 [ 11:14 >1.882+6 2.973+2 1.12E+2 3.19h2 4.49E+3 1.44E+2 1.76E+1 3.85E+2 4.81E+1 1.12E*2 9.61E+t 6.4fE+1 1.83E+2 8.96E*8 Q.88E+1 11:15 >1.SSE+6 2.89E+2 1.12E+2 3.298+2 4.49E+3 9.9eE*8 2.98E+1 1.76E+1 3.86E+2 4.82E+1 1.12E+2 9.63Ee# 6.42E+1 1.03E+2 1.45E+2 11:16 >1.fSE+6 2.88E+2 1.12E42 1.21E+2 4.58E+3 2.89E+1 1.77E+1 9.66 Esp 6.44E+1 1.04E+2 1.45E+2 9.51Ese

                                      !.13E+2 1.22E42    4.51E43     3.84E+2        4.84E41       1.13E+2 11:17    >1.00E+6          2.09E+2

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   !tsC4                                                                                                                           t*643+I l i*E93+Z_ 6*653+e
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  • E83+ A
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                                                                                                                 **tt3+C             s'153+i                                                                                                                   r*EE3+i            i*ad;+i 11:91         <!*883+9                                                E*tE3+C           t*ee3+(                                                                                                                          t*553+E         6*913+0 t tc3+t           i*ts3+C                                                                                                                   9*843+I               !*!t3+C                                           E'ZE3+i            I*463+I tisec        <I*se3+9                                                                                                                            I*t83+C        t*eE3+1                                                  I*SG3+C        6*9E2+8 t* State            t"!t3+C            G*f93+1                                           9*se3+I                i*tt3+Z                          6*993*e         E'ZD3+I            1*063+5 E*9E3tE                                                                     1*tI3+t        I*eE3+I                                                  I*GE3tf C*fE3+C           1*E83+C                                              >"IE3+C             G
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                     <t*883+9               Z*TE3+C                                                                                                                      t*et3+1        9*653+t                                                 6 *t93+8        t*E93+i IE3PL                                                                                                                         S'ZE3+I            f*rt3+C                                               I*!EB*f           f*St3+C                                            I*623+I t"9t3+(            t*ta3+C                                               E*s53+i        9 *643+1                                                6*ts3+0         t*Et3+1 1*tE3+C       E*t83+t                                                  5*293+1            I*lt3+C                                               1*lE3+Z           I*Gt3+C                                            t*etaet
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ti8t6 1*rt3+C C*963+C 5*Clati t*tE3+K I*IE3+I 1*583*f

                      -i*883+9              C*rt3+C                                              t*6t3+(            >*2t3+C                                               E"853+1        L*sE3+E its5s                                                 1*tE3+(       E'583+C                                                   5*t83+I            I*ZE3+C
                      <t*383+9               t*t43+C                                             t*6C3+(             t*2t3+C itsSI                                                  I*CE3+t      E*St3+C
                      <i*8e3+9               C*ts3+I                                                                                                                                                                                                                                             I, tlasE 1315 tS V GuIIT

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                >1.4SA+6              2.12B+2  1.15E42 3.27E*2 4.59E+3        3.93E42 2.13E*1    1.SSE+1 g     11:24 4.93E+1        1.15E42        9.85E*S       6.57E+1       1.86E+2        1.488+2  9.19E+9 31.88246              2.13E+2  1.15E+2 3.2SE+2 4.6SE43        3.94E42 2.13E+1    1.81E+1 11:25                                                                                                               9.07E+9       6.5SE+1        1.96E+2       1.4SE42  9.21E48 1.15E+2 3.29E+2 4.61E+1        3.95E+2      4.95E+1        1.1'E+2 1.81E+1 11:26      >1.80246              2.13E+2                                                                                                         1.86542       1.49E+2  9.23E+S   2.14E+1 4.63E+1        3.96E+2      4.96E+1        1.14E+2        9.99E+9       6.6SE+1 11:27      >1.SSE+6              2.14E*2  1.16E+2 3.38E42 1.07542       1.49E42  9.26E+S   2.14841    1. 81E_+ 1 1.16E+2 3 31E+2                3.9FE+2      4_.__9_7 E + 1 1.16_E._+_2p._9. 9_2 E + 9                                                              1.82B41 11:28      > 1. S S_E + 6    _ 2_. lee +2 1.16E42 3.32E+2
4. 6 4 E.+ 3 4.65E+3 3.99E*2 4.968+1 1.16E+2 9.95E+9__ _6.6]E+1 6.63E+1 1.07E*2 1.49E+2 9.2SE*# 2.15E+1 1.52E+1 11:29 >1.SSE+6 2.15E+2 6.65E41 1.57t+2 1.5SE42 9.3SE+8 2.15E+1 4.66E+3 3.96E+2 5.SSE+1 1.16E42 9.97E*S 91.SSE+6 2.15E+2 1.16E+2 3.32E42 2.16E+1 1.83E+1 11:32 1.17E+2 1.SSE+1 6.66E+1 1.07t+2 1.59E+2 9.33E+8 1.173+2 3.33E+2 4.67E*3 4.SSE42 5.SIE+1 1.83E+1 11:31 sf.98E+6 2.16E+2 1.SSE+1 6.69E41 1.SSE+2 1.5SE+2 9.35E45 2.17E+1 3.34B+2 4.4SE+3 4.91P+2 5.82E+1 1.17E*2 i

11:32 > 1. SSP 4 6 .. . 2.17E+2 1.17E+2 e 6.7pE*1 1.SSE*2 1.51E+2 9.37E+9 2.172+1 1.84E+1 1.SSE+1 N+4 3.35E+2 4.79E+3 4.92E+2 5.83E+1 1.17E+2 11:33 >1.888+6 2.17E+2 1.17E+2 1.SSE+2 1.stE+2 9.48E+9 2.18E+1 1.84E+1 4 4.71E+3 4.93E+2 5.85E+1 1.18E42 1.81E+1 6.71E+1 11:34 >1.82E+6 2.18E+2 1.1SE42 3.36E+2 1.52E+2 9.42E+8 2.18E+1 1 SSE+1 4.84E+2 5.56E+1 1.18E+2 1.S!E*1 6.73E+1 1.088+2 1.18E+2 3.3FE+2 4.72E+3 l 11:35 >1.SSE+6 2.18E+2 4.73E+3 4.95E+2 _5.87E+1 1.18E42 1.SIE+1 6.75E41 1.99E+2 1.52E42 9.44E+8 2.19E+1 1.85E*1 'f 11:36 >1.fSE+6 2.19E+2 1.19842 3.37B+2 1.89E+2 1.52E+2 9.47E+8 2.19E+1 1.86E+1 3,3SE42 4.74E*3 4.86E+2 5.SSE+1 1.10E+2 1.81E+1 6.76E+1 ! 11:37 >1.SSE*6 2.19E+2 1.18E+2 1.99E+2 1.53E+2 9.49E*S 2.2SE+1 1.86E+1 4.75E+3 4.87E+2 5.10E+1 1.19E+2 1.92E+1 6.79E+1 11:38 31.SSE+f 2.2SE42 1.19E+2 3.39E*2 1.15E*2 1.53E+2 9.52E+9 2.2SE+1 1.S+E+1 4.77E+1 4.SSE42 5.11E+1 1.19E+2 1.52E+1 6.SSE+1

                >1.SSE+6              2.2SE+2  1.19E+2 3.4wE+2                                                                                                                         2.21E+1    1.97E41 11:39                                                                                                                                            1.15E+2       1.53E+2  9.54E45 1.19E+2 3.41E+2                4.59E+7      5.12E+1        1.19_E + 2 .+ 1_. 9_2 E + 1__6 . 8__2 E._+ 1._                                          1,97E41 4.7B _E+3 j     11:48      > 1._S S. _E + 6____21E+2                                                                                 1.SJE+1      6.83E+1        1.18E+2       1.54E*2  9.56E+8   2.21E+1 4.79E+3        4.ISE+2      5.14E+1        1.2SE+2 1.2SE+2
                >1.SSE+6              2.21E+2          3.42E*2                                                                                                                         2.22E*1    1.SSE+1 11:41 5.15E+1        1.2SE+2        1.93E+1       4.85E+1        1.18E+2       1.54E*2  9.59E*S
                >1.SSE+6              2.22E+2  1.2SE+2 3.43E42 4.SSE+3        1.11E42 i     11:42 f                                                                                                                                                      1.11E.2       1.55E*2  9.61E+8   2.23E+1    1.SSE*1 6.81E+3        4.12E+2      S.!6E+1        1.2SE+2        1.93E+1       6.87E+1 11:43      >1.SSE+6              2.23E+2  1.2SE+2 3.43E42                                                                                                      1.55E+2  9.633*8   2.23E+1    1.89E+1 1.21E+2        1.83E+1       6.SSE+1        1.11E+2 2.23E+2  1.21E+2 3.C.s+2 4.SJEA3        4.13E+2   f5.17E+4                                                                                       2.24E+1    1.89E+1

{ 11:44 31.SSE 6 . 4.94E+3 1. 21 f.+ 2 1.94E41 6.90E+1 1.11E+2 1.55E+2 9.66E*8 11:45 >1.SSE+6 2.24E+2 1.21E+2 3.45E+2 4.14E+2 {5.19E+1 1.54E42 9.6SE+G 2.24E+1 1.90E*1 l 1.21842 3.84E+1 6.92E41 1.11E*2 1.21E+2 3.46842 4.85E+1 4.15E+2 5.2SE+1 1.98E+1 11:46 >1.SSE+6 2.24E+2 6.94E+1 1.12E+2 1.56E+2 9.71E+8 2.25E+1 4.86E+3 4.17E+2 5.21E+1 1.21E+2 1.84E41 11:47 >1.SSE+6 2.25L+2 1.21E+2 3.47E+2 1.12E+2 1.57E*2 9.73E+8 2.25E+1 1.91E+1 5.23E+1 1.22E+2 1.84E+t 6.95E+1

                >1.SSE46              2.25E+2  1.22E+2 3.482+2 4.87E+3        4.18E+2 9.76E+8              1.91E+1 11:43                                                                                                1.22E+2         1.95E+1      6.9 E*1        1.12E-        1.57E42            2.26E*1 1.22E+2 3.49E+2 4.99E+3        4.19E42      5.24E+1                                                                                                1.92E+1 11:49      >1.SSE+6              2.26E+2                                                                                          6.99E*1        1.13E42       1.57E+2  9.7pE*S   2.27E+1 4.98E+1        4.20E+2      5.J5E*1        1.22E*2 j       1.SSE+1 11:50      >1.39E+6              2.27E+2  1.22E*2 3.49E+2                                                                                                      1.58E+2  9.SSE+8   2.27E+1    1.92E+1 4.21E+2      5.27E*1        1.23E+2         1.85E41      7.81E+1        1.33E+2 31.SSE+6              2.27E+2  1.23E+2 3.5SE42 4.91E*3 1.5SE*2  9.83E+8   2.2Sa+1    1.93E+1 11:51 1.23E+2         1.95E+1      7. *2r
  • 1 ) 1.13E+2
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