ML20084D426

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Emergency Preparedness Exercise,REX-84,Emergency Scenario
ML20084D426
Person / Time
Site: Arkansas Nuclear  Entergy icon.png
Issue date: 05/01/1984
From:
ARKANSAS POWER & LIGHT CO.
To:
References
PROC-840501, NUDOCS 8405010341
Download: ML20084D426 (300)


Text

{{#Wiki_filter:- 1 / ARKANSAS POWER & LIGHT COMPANY ARKANSAS NUCLEAR ONE EMERGENCY PREPAREDNESS EXERCISE REX - 84 EXERCISE SCENARIO i 1 St{c6oI so 413 A e

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> i l l 4 t f INDEX !()) i 1. Exercise Rules And Participant Guidelines i j 11. Controller Instructions And Critique Sheets I i l I. Objectives l II. Narrative Scenario Summary III. Detailed Scenario IV. Exercise Hessages and contingency Messages i i ' j V. Appendices  ; ), Appendix A - Disabled Components f l Appendix B - Plant Parameter Data  ; j Appendix C - In-Plant Radiological Data  ! j Appendix D - Post-Accident Sampling Data and Radiological Release {'

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Appendix E - Meterological Data I l Appendix F - Offsite Monitoring Data i j Appendix G - Public Information Messages 4 i  ! 1 l  ! 1 < 4 i i j k , i i , t I i i

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WP84220
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  • O EXERCISE RULES AND PARTICIPANT GUIDELINES O

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WP84191 Page 1 ARKANSAS NUCLEAR ONE Q V ARKANSAS POWER & LIGHT COMPANY 1984 EMERGENCY PREPAREDNESS EXERCISE EXERCISE RULES AND PARTICIPANT GUIDELINES To define the " extent of play" of the exercise players and to meet the exercise objectives, the following exercise guidelines have been established:

1. The exercise will be conducted during March 1984, and will continue with-out suspension until terminated. Since exercise players will not be in-formed of the exercise start time or initiating events, all personnel should follow their normal routines prior to the exercise.
2. The exercise will commence with postulated conditions necessitating the declaration of appropriate emergency action levels.
3. Four groups of personnel will be in attendance at the exercise and will function as described below:

A. PARTICIPANTS are operators, chemistry personnel, maintenance person-net, etc., who have been assigned an " acting" role during the emer-gency exercise. These people serve to take necessary actions to mitigate, terminate, correct, and/or recover from the simulated emergency. O O B. CONTROLLERS are those predesignated AP&L or contractor personnel who serve an active role in the exercise by providing data to partici-pants. The CONTROLLERS may also serve to prompt or initiate certain actions in order to assure continuity of the events described in the exercise scenario, CONTROLLERS are the only personnel who will pro-vide information to the PARTICIPANTS; other inputs of information from personnel not designated as CONTROLLERS will be ignored by the participants. CONTROLLERS may also serve as EVALUATORS. C. EVALUATORS are personnel predesignated by AP&L, NRC, and FEMA to provide documentation and assessment of the exercise. They serve a passive function and will only note actions taken by PARTICIPANTS. These personnel have received specific instructions on what areas to consider in their evaluation of the exercise. EVALUATORS may ask questions or participants to clarify actions taken or procedural concerns but should g interfere with the flow of events. D. VISITORS are personnel who serve no evaluation, control, or parti-cipatory function in the exercise. Visitors from NRC, FEMA, state agencies, and other utilities are expected to be included as 08-SERVERS. OBSERVERS shall not interfere with EVALUATORS, and parti-cularly, PARTICIPANTS. Questions from OBSERVERS should be directed to a CONTROLLER. b a

WP84191 Page 2 Identification of personnel: A. CONTROLLERS: Red arm band. B. EVALUATORS: Yellow arn band. (NRC evaluators may be identified by their own identification badge, hat, etc.) C. OBSERVERS: Green arm band.

4. Personnel will be assigned'as controllers at all key functional areas to monitor and control the exercise. In addition, they will accompany radio-logical monitoring teams, plant health physics personnel and maintenance repair / rescue teams.
5. Message forms will be the mechanisms used to initiate, orchestrate, modify and complete the events comprising the overall scenario. The Controller will use the message forms to place the scenario events in effect and to trigger responses from the involved personnel.
6. Some exercise participants may insist that certain parts of the scenario are unrealistic. The Controllers have the authority, with the approval from the Lead Controller, to clarify any questions regarding scenario content. In some cases, it may be necessary to exercise " controller's prerogative" of countermanding participant actions to preserve the con-tinuity and objectives of the exercise. You must, however, accept his/

her word as final and proceed. Inappropriate actions can delay or speed up the entire exercise and impact other groups. O 7. Note that the scenario events are hypothetical. Any portions of the scenario depicting plant system operations transients are simulated events. NO Control Room actions, or reactions involving operation of plant systems, or affecting generation capability shall be initiated. All exercise scenario messages shall be prefixed and suffixed with the words: "TIIIS IS A DRILL".

8. postulated accident conditions may result in a simulated radiological release which necessitates the consideration of protective actions for the general public, and will provide the mechanism for offsite authori-ties to exercise their respective emergency response plans.
9. All onsite and offsite emergency response facilities may be manned to perform their prescribed functions as appropriate to the development of the exercise scenario.
10. Media centers may be manned and perform their prescribed functions.
11. The offsite Early Warning Siren System may be activated by the State.

O t m_. ___ _____.____ _ . _ . _ _ _ _ _ _ _ _ _ . _ . . _ _

WP84191 Paga 3

12. Key Participant Guidelines A. Participation by AP&L personnel directly involved in responding to an emergency shall be carried out to the fullest extent possible -

including the deployment of radiological monitoring teams, emergency repair and damage control teams, and other emergency workers. All actions are to be played out, as much as possible, in accordance with the Emergency Plan and Procedures as if it were a real emergency. Actions of participants should be identified to the Controller if not evident. B. Respond to Controller's questions. C. Plant / Monitoring Data: Participants should request from the Control-1ers any data which they feel is necessary for the performance of their function. Data will most likely be provided to any emergency teams ly a Controller after the participants have taken the required measurements. SPDS and GERMS data will most likely be automatic; however, if system failures occur, each Controller will have the time-related plant and radiological parameters of the exercise scenario. This information will be issued upon request to the appropriate exercise participants. D. You must play as if radiation 1cvels actually are present, in ac-cordance with the information you have received. This will require () that you wear radiation dosimeters, anti-contamination clothing, ob-serve good radiation protection practices, and be aware of and mini-mize your radiation exposure. Identify the individuals in the emer-gency response organization responsible for informing you of these items. Follow their instructions. E. If you are entering normal nuclear station radiation areas, observe all rules and procedures. No one (even the controller and federal evaluators) is exempt from normal station radiological practices and procedures. NOTE: DO NOT ENTER IIIGli RADIATION AREAS IN Ti!E PLANT WITIIOUT AUTl!0RIZATION FROM Tile CONTROLLER. FOLLOW ALARA PRINCIPLES. F. If you are in doubt, ask your controller for clarification. The con- i troller will not prompt or coach you. They will not provide informa-tion to players regarding scenario development or resolution of pro-blem areas encountered. The exercise participants are expected to obtain information through their own organizations and exercise their own judgement in determining response actions and resolving problems. l (~h l \~ 1 l l {

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13. Actual and Simulated Events: During the emergency exercise, certain (l

'd events / activities will be simulated rather than utilize the actual employ-ment of resources. Any question as to the simulation of actions should be directed to a Controller for approval.

  • Simulation - involves identification and utilization of requirements and procedures short of actual employment.
  • Actual - movement of resources and/or physical implementation for this exercise.

Example: The actual use of fire extinguishing agents would not be performed but simulated. Teams would respond but only perform a " walk-thru" of fire fighting actions.

14. Provisions for Actual Emergency: Exercise participants, controllers /

evaluators, and visitors should not take any actions which would preclude maintaining emergency readiness of the organization and community. If an actual emergency occurs during the exercise requiring a group to terminate its participation in the exercise, they should notify the Lead Controller. All messages concerning actual emergency events should be preceded with "TilIS IS NOT, REPEAT, NOT AN EXERCISE ?!ESSAGE".

15. Communications: Communications between all exercise participants shall occur in accordance with the procedures of all applicable emergency re-sponse plans. All communications, including initial telephone conversa-tions, radio transmittals, loudspeaker announcements, etc., should begin Cc and end with "This is a Drill".
16. Compliance With All Laws: Intentional violation of any laws is not per-mitted during any exercise. Exercise participants, controllers / evaluators, and observers should comply with all Federal, State and local restrictions.

Specifically all local traffic laws, such as speed limits, should be ob-served.

17. Avoid Property Endangerment: Exercise participants, controllers / evaluators, and observers should avoid endangering property (public or private), members of the general public or the environment.
18. flinimize Public Inconvenience: It is not the intent to arouse or incon-venience the public during the conduct of an exercise. Also all communi-cations, particularly in the public relations area, should be prefaced with "This is a Drill".
19. Closcout of Exercise l

The Lead Controller will notify and release all controllers and j participants not participating in the recovery. j n',i Q

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  • At the appropriate point in the exercise scenario, the Lead Control-d ler will initiate termination of the exercise. The Lead Controller  ;

l will notify all offsite points of contact to advise that the exercise is being terminated.

 .                        NOTE:   All simulated exercise events will be initiated under the direction
!                                                                                                                               l of the Emergency Planning Coordinator. Individuals are prohibited                              l from creating real or simulated situations that have not been pro-                            !
 )                                vided for in the scenario and approved by the Emergency Planning                              i Coordinator.                                                                                   '
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WP84190 INSTRUCTICNS FOR VISITORS r3 V 1. The event times and scenario are confidential and should be kept confidential during the exercise. Do not discuss them with the players.

2. Visitors should not participate in the exercise nor interfere in the actions taken by the exercise players, controllers, and evaluators.
3. Visitors must stay with their assigned escort and follow their es-cort's instructions.

4. Visitors must display their ANO visitor badge and other assigned means of identification (armband, etc.).

5. Within emergency response facilities, visitors must position them-selves such that status boards, charts, access to equipment, etc.

are not hindered / blocked. If congestion becomes a problem, visitors may be asked to leave temporarily by a controller. 6. Visitors should ask questions to their escort or a controller during the exercise, or ask questions to players only af ter exercise termi-nation.

7. Visitor safety responsibilities:

f") Safety takes precedence over all other exercise requirements. In cases of accidents / injury, report promptly to your escort or a controller, and assist as required. Report any hazardous condition to your escort or a controller. Cooperate in every respect with the plant safety program so

  • that operations may be conducted in a way that ensures safety.

Follow safety rules, take no unnecessary chances, use all safeguards and safety equipment provided, and make safety a part of your responsibility. In the case of fire or an actual emergency, follow the in-structions of your escort or a controller. O o a

__ .-e- . _ . , - . ,. # _ -- - -# w - a- + ,a.1 4 CONTROLLER INSTRUCTIONS l AND  ! l CRITIQUE SHEETS J l l. i i f J 11 C O

INSTRUCTIONS FOR CONTROLLERS O'V 1. Personnel are assigned as controllers or evaluators at all key functional areas to monitor and control the exercise, in addition, they will accom-pany radiological monitoring teams, plant health physics personnel, and maintenance repair / rescue teams.

2. The AP&L controllers will be coordinated by Lead Controller, Dennis Boyd in the TSC or ECC (ext. 3737 or 6601). lie will be responsible for the overall conduct of the exercise scenario. Fred VanBuskirk will provide controller coordination and should be contacted if the Lead Controller is unavailable.
3. tiessage forms and simulated data will be issued to initiate, modify, and complete the events comprising the overall scenario. Selected controllers will use the message forms ta place the scenario events in effect and to trigger responses from the involved emergency response organizations.

Each controller will have copies of the messages controlling the portion of the scenario for which he/she is responsible. Controlling messages will be presented to the designated exercise parti-cipant at the time specified in the event schedule. The controller abould follow up with an explanation of the message and answer questions to ensure that the participant understands the message. Two kinds of messages will be used: ()

  • Exercise flessage' Messages used as a primary means of implementing scenario events by hypothesizing conditions. These will be supported by simulated data where necessary.
  • Contingency Epfrcise tiessage tiessages used at the discretion of the controllers in order to maintain scenario schedule or continuity of simulated events.

These are not to be issued unless absolutely necessary. The Lead Controller should be advised when a Contingency ticssage has been issued.

5. Controllers shall not initially provide information to the partici-pants regarding scenario development or resolution of problem areas encountered. The participants are expected to obtain information through their own organization and exercise their own judgement in determining response actions and resolving problems. In the event of incorrect or incomplete responses, or if the participant indi-cates lack of knowledge of how to proceed, the controller will prompt the participant with neccanary instructions and will note the deficiency on his/her critique sheets.

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l l l .. 6. Note that the scenario events are hypothetical. Any portions of the I () scenario depicting plant system operational transients are simulated events. No control room actions, reactions involving operation of plant system or affecting generation capability will be initiated. If you are not clear as to what actions should be taken by the players or why, make sure you ask the Lead Controller, so that you understand the extent of the play. Controllers stationed at areas vital to maintaining generating capability should be especially aware and take extra precautions in issuing messages or giving instructions regarding the scenario events.

7. Players are not allowed to introduce items into the exercise or scenario. Some exercise participants may insist that certain parts of the scenario are unrealistic. The controllers have the au-thority, with approval from the Lead Controller, to clarify any 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. -
8. Controllers will only guide the actions of the players when it is obvious that unchecked actions will have a significant impact on the successful completion of the drill. Controller prompts should be kept to a minimum and avoided if at all possible.
9. Controllers and federal evaluators do not have to follow the ra-diation exposure control practices for the simulated radiation levels from the emergency exercise scenario. However, the players must follow the radiation protection rules. Controllers, federal-evaluators, and players entering normal nuclear station radiation areas must observe all normal radiation control practices.
10. Controller safety responsibilities:
  • Safety takes precedence over all other exercise requirements.
  • In case of accidents / injury, report promptly to the Lead Controller and get medical assistance without de,aly.
  • Report any hazardous condition to the Lead Controller. .
  • Follow safety rules, take'no unnecessary chances, use all safeguards and safety equipment provided, and make safety a part of your responsibility. Be sure to have a hard hat with you when entering the plant.
  • Know your exact-duties in case of fire or an actual emer-gency; suspend exercise related activities.

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11. The. federal, evaluators must. not issue " surprise" messages.or direct -
           " surprise" actions at the players. They must work through the con-b}        troller. This is, essentiali for:- th_e_ success ofy the s exercisett._
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12. C$It. rollers will:Iommence~ th'eir assignm nts at assembly loNtbas for players they are to observe , or as. directed by the. lead con-troller. Prior to commencement, all telecommunicationscshould.be tested to ensure satisfactory communications between the lead controllers and.all other controllers. . -

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13. All controllers will synchronize their watches to ensure that messages are delivered at the proper time. Times on messages are set relative to the beginning of the exercise, with delivery of the first message at;!'T.+ 0:00." > m e - m .: "-
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14. The emergency response exercise is tentatively scheduled for I termination at.1700. hours. The Lead Controller will7 initiate:he actual termination and ensure.all. controllers and plyers are advised.
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15. All . controllers < should complete their critique' sheets' and pre-paret aclistiof major findings:: :They:should;(gatherrallcrecords;...le generated _during the exercise and convey these records and their comments to Dennis Boyd.
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16. All Emergency. Managers / Directors / Team. Leaders / evaluators.and.

controllers should. return for the critique . Thursday, . March 22, yen () 198_4_, :at '.8:00 a.m. lin t the ECC auditorium. .0nly: substantiver comments should be expressed.with suggested; corrective actions,- mi since these are followed for commitment tracking _purgo_ses. Other comments should be noted and given to Dennis Boyd. NOTES: Sai n , t.o.e3 . i n e , 3, 6 . - r.ve r a l l otiier axercise requirements. Do's n , i .ir R...c. 1.m ,<. n . me un i.e n d

1. Know the overall. controller. organization..and how/wheretto con-tact the Lead Controller.
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2. Be sure you understand the players' scenario script and the master scenario.
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3. Be at your! post rat,least.20 minutes prior to any player actionn u commencement. Position yourself to maximize your effectiveness in issuing messages and observing the players.
4. Identify the phone (or radio for field teams) you will use to maintain communications with lead controller.

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5. Identify yourself at all times . to all players. Wear controller 4

(} identification, as provided.

6. Identify the players (by name and function) that you will be con-trolling.
7. Remember that there are two clocks: a scenario time and a clock time. ,
8. Keep the play on schedule by checking your script.

, 9. Stick to the time-line as far as giving 'out information is con-cerned. Contact the Lead Controller if significant delays.are encountered, so that scenario event timing can be adjusted i accordingly.

10. Issue the message on time or as otherwise directed by the Lead Controller. Make sure the players understand it.
11. Allow the players reasonable flexibility to do their functions and demonstrate their skill, knowledge, and initiative. .

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12. If you must intervene with player actions and the player dia-gram with your instructions, contact the Lead Controller to resolve the conflict.
13. Respond to Player's questions, yet be mindful of answers that

() would prompt players to take a' specific action. 3 14. Identify the federal evaluator (s). Make sure they are rea-sonably aware of all your actions and' those of the players. Attempt to defray any misconceptions of player / controller actions.

15. If a real emergency occurs in your area of play, suspend your portion of the exercise and notify the lead controller immediately.
16. Make notes on the strengths and weaknesses of response actions, suggestions for improvement. Use the Evaluator's Critique Sheets.
17. Attend the post-exercise critique' session to provide your.

i comments and recommendations to the Lead Controller. Don'ts

1. Don't le:ve your post at key times.
2. Don't prompt the players to take action.

O i WP84185 .Page 4 1 f e # , e- ~ , , , ,---w y- - . - - +-- n , - -

,                       3.         Don't. coach the players.
4. Don't criticize the player actions during the play.
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5. Don!t forget to call the Lead Controller to seek advice or help as necessary.
6. Do not allow federal evaluators to issue messages / instructions to participants. If they want to initiate actions, receive authorization from'the-Lead Controller before complying with their wishes. Players may, however, answer questions directed to them by federal evaluators. '

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7. Do not. allow participant: actions to continue. if they would ob-viosuly impair scenario continuity.
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CONTROLLERS / EVALUATORS (C) = Controllers (E) = Evaluators CONTROL ROOM PASS Joe Simmons (C) Randy Pool (C) Charlie Zimmerman (C) Dose Assessment l TSC l l Al Smith (C) Fred VanBuskirk (C) Tim Pugh (C) ECC Command Room Medical Emergency Dale James (C) ( Larry Parscale (E) Bob Jackson (E) LRSC/Eng. Center / Media Center Fire Emergency Kay McElveen (E)  ! Peggy Patrick (E) I Greg Storey (C) Pat Williams (E) Jim Montgomery (C) [~')

 %s Evacuation Team / Accountability                                                                                            LRCC l

Bob Jackson (C) Larry Parscale (C) l Onsite Radiation Team Public Inquiry Controllers I Ira Mosquito (C) Sharyn French (C) Steve Gallagner (C) Jeannie Walker (C) Drew Alexander (C) Offsite Radiation Team Roaming Observers Jeff Garren (C) Gary Casperson (C) Dennis Boyd (Lead Controller) Dave Hamblen (C) Dave Mardis -(E) Bill McKelvy (C) 5 - NRC (E) l O

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OBSERVER CHECKLIST g- . ARKANSAS NUCLEAR ONE OBSERVER v LOCATION / GROUP OBSERVED: CONTROL ROOM DATE DIRECTIONS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - Not Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - Needs Improvement 4 - Satisfactory 5 - Exceeds Criteria EVENT / CRITERIA RATING SCALE COMMENTS 0 1 2 3 4 5 I. LOCATION SPECIFIC ACTIVITIES A. CR operators responded quickly to personal injury incident. 0 1 2 3 4 5 CR operators responded quickly to fire alarm. 0 1 2 3 4 5 C. CR operators responded quickly to reactor trip. 0 1 2 3 4 5 D. CR operators responded properly to simulated operational events. 0 1 2 3 4 5 E. HP assistance was requested as needed. 0 1 2 3 4 5 F. Event classifications were timely, accurate and clear. 0 1 2 3 4 5 G. Notifications were timely and properly completed. 0 1 2 3 4 5 H. Communication networks were opera-tional and utilized efficiently. 0 1 2 3 4 5 I. Communication flow was adequate to ensure that information was timely, effective, and efficient. 0 1 2 3 4 5 J. Phone listings were available, com-plete and up-to-date. 0 1 2 3 4 5 K. General status announcements were made and updated periodically 7 throughout the drill. 0 1 2 3 4 5 ('~ 3 . Proper data flow was maintained

             >        between TSC and Control Room.                          0 1 2 3 4 5 M. Logs were maintained.                                  0 1 2 3 4 5 1

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            - OBSERVER CHECKLIST C0flT! FLUED:
      .-                EVENT / CRITERIA                  RATING SCALE       C0:f1E!!TS f]'                                                    O 1 2 3 4 5 l

N. 50P and emergency procedures were utilized. 0 1 2 3 4 5

0. Drill announcements were prefaced with, "This is a Drill ." 0 1 2 3 4 5 l P. Communications links were checked. 0 1 2 3 4' 5 Q. Adequate information was provided to the Control Room from support group for their assessment. 0 1 2 3 4 5 i

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           - OBSERVER CHECKLIST C0flTIrlUED:      GErlEPAL OBSERVATI0tlS

/ EVErlT/ CRITERIA, RATIrlG SCALE

d. 0 1 2 3 4 5 COMMENTS II. IrlITIAL & FOLLOW-UP tt0TIFICATI0tlS A. Timely? 0 1 2 3 4 5 B. Accurate / sufficient information provided? 0 1 2 3 4 5 C. Periodic updates provided? 0 1 2 3 4 5 D. Individuals kept informed? 0 1 2 3 4 5 III. DUTIES / RESP 0tiSIBILITIES & ASSIGilMErlTS A. Is person in charge clearly identified? 0 1 2 3 4 5 B. All personnel are aware of general duties / responsibilities? 0 1 2 3 4 5 C. All personnel are knowledgeable of initial actions (where to go, who to contact, what to do, etc.) 0 1 2 3 4 5 IV. PLAf1/ PROCEDURES A. Available in a timely fashion? 0 1 2 3 4 5
/         B.      Followed?                                 0 1 2 3 4 5 O          C. eersonnei femiiier with?                   0 1 2 3 4 5 D. If deviations occurred, were they appropriate?                              0 1 2 3 4 5 E. Situations addressed adequately?          0 1 2 3 4 5 V. C0!1f10tlICATI0fts A. Equipment available and working?           0 1 2 3 4 5 B. Adequate equipment for personnel?        '

O 1 2 3 4 5 C. Adequate logs kept? 0 1 2 3 4 <5 . D. Problems in using equipment / communicating messages resolved? 0 1 2 3 4 5 VI. EQUIPt1ErlT A. Adequate equipment available/ obtainable? 0 1 2 3 4 5 B. Equipment checked / functional? 0 1 '2 3 4 5 C. Equipment used properly? 0 1 2 3 4 5 VII. RADIOLOGICAL C0tiSIDERATI0tlS (where appli- . A. Contamination control measures'" taken? 0 1 2 3 4 5 ~

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B. Dosimetry provided/used? 0 1 2 3 4 5 C. Anti-C's & respiratory protection provided and used? 0 1 2 3 4 5 '

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 .                OBSERVER CHECKLIST C0flTIflVED:       GENERAL OBSERVATI0tl5 EVEtiT/ CRITERIA                                            RATIfG SCA E             COMMENTS 5
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RADIOLOGICAL CONSIDERATIONS (Continued) O. Health Physics coverage requested & - provided? 0 1 2 3 4 5 E. Briefings (re-entry / periodic) provided? 0 1 2 3 4 5 F. ALARA considerations? 0 1 2 3 4 5 G. Personnel / equipment monitored? 0 1 2 3 4 5 H. Limit / authorization of re-entry personnel? 0 1 2 3 4 5 I. Surveys / samples taken periodically and postings made? < 0 1 2 3 4 5 J. Personnel exposure records kept/ used? 0 1 2 3 4 5 K. Protective actions considered? 0 1 2 3 4 5 VIII. EMERGENCY CENTERS

      <      A. Emergency Centers contain only                                                                                 '

essential personnel. 0 1 2 3 4 5 l B. Crowding is controlled in the Emergency Centers. 0 1 2 3 4 5 C. Noise is controlled in the Emergency Centers. 0 1 2 3 4 5 C0l1MENTS: o. _-_A____-_____.__._ _

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GEllERAL OBSERVATI0flS OilSCELLAtlE0VS C0!tIEtlTS:

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OBSERVER CHECKLIST ARKAflSAS flVCLEAR ONE OBSERVER LOCATI0ft/ GROUP OBSERVED: OflSITE RADIATION TEAf45 DATE DIRECT!0flS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined . as follows: 0 - flot Applicable 1 - Event / Criteria tiissing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVErlT/ CRITERIA RATIfiG SCALE C0fNENTS 0 1 2 3 4 5 - I. LOCATI0ft SPECIFIC ACTIVITIES A. Onsite monitoring equipment was easily accessible and properly g r distributed. 0 1 2 3 4 5 Equipment was checked for proper [Vl - B. operability prior to its use. 0 1 2 3 4 5 C. Standard HP practices were employed for entry into actual or potential radiation areas. 0 1 2 3 4 5 D. Proper survey records, dosimetry, stay times, etc. were maintained during entry. Q1 2 3 4 5 E. Survey results were report to the appropriate personnel. 0 1 2 3 4 5 F. Follow-up actions were taken on survey results. 0 1 2 3 4 5 G. Pocket dosimeters were frequently checked and properly logged. 0 1 2 3 4 5 H. The TSC and ECC's habitability was , frequently monitored. 0 1 2 3 4 5 ', I. Team members had adequate understand-ing of proper utilization of equip- I ment (survey instruments, radios, , SCBA's,etc.). 0 1 2 3 4 5 ,,, l

 .<   J. The onsite radiation team leader re-                                                 J7

[ ._ ceived adequate feedback from.the TSC I ',

                                                                                                 '~'

V to perform his Junction. 0 1 2 3 4 5 K. Survey results were systematically re - corded by the onsite radiation team ' l eader.- 0 1 2 3 4 5  : U Nisxy , , ,, y

                                                                                   -m . _ . _          .

OBSERVER CHECKLIST ARKAflSAS flUCLEAR Of1E OBSERVER ~ 1

                                                                                                                                              '        ~

LOCATI0ft/ GROUP OBSERVED: 0FFSITE f40flITORIllG TEAf4S . DATE DIRECTI0flS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVEtiT/ CRITERIA RATIrlG SCALE C0fNEflTS 0 1 2 3 4 5 - I. LOCATI0fl SPECIFIC ACTIVITIES A. Initial team briefings were held. 0 1 2 3 4 5 B. Team assembled with field kits,

      /           vehicles and communications equipment
        -         in a timely manner.                                            0 1 2 3 45 C. Instruments checked for proper operability and current calibration.                           0 1 2 3 4 5 D. Teams receive explicit instructions of where to go and what to sample.                             0 1 2 3 4 5 E. Procedures for conducting offsite monitoring were consulted and followed.                                                      0 1 2 3 4 5 F. Vehicle checked for contamination after mission completed.                                       0 1 2 3 4 5 G. Sampling locations were readily located.                                                       0 1 2 3 4 5 H. Analysis of samples were perfonned outside the plume area.                                        0 1 2 3 4 5 I. Samples were properly packaged,                                                                                               ,.

identified and labeled. 0 1 2 3 4 5 . J. Pocket dosimeter's were periodically checked. 0 1 2 3 4 5 K. Pocket dosimeter readings were logged in upon return to the ECC. 0 1 2 3 4 5

      /
         ~
             .. Communications were maintained with the Offsite Monitoring Supervisor throughout sampling activity.                                  0 1 2 3 4 5 M. Team members followed good ALARA and HP practices.                                                  0 1 2 3 4 5
t.  ;
                                                                                 #" 2               l-   -

OBSERVER CHECKLIST C0ilTIflUED: r {p EVEtiT/ CRITERIA RATIrlG SCALE 0 1 2 3 4 5 C0:I1EtlTS H. Radio communications stated, "This is a Drill," or similar statement. 0 1 2 3 4 5

0. Team members completed data sheets in the proper manner. 0 1 2 3 4 5 -

P. Adequate comunications existed between the field teams and the Offsite Monitoring Supervisor. 0 1 2 3 4 5 i f O d e s

     /

t- . . _

                                                                               ?

% - -__- ' ------s .

OBSERVER CHECKLIST l

                                                                                                                                                                         l ARKAtlSAS flUCLEAR ONE lh'                                                                                                                 OBSERVER LOCATI0fi/ GROUP OBSERVED:                       MEDICAL TEAM DATE                              t DIRECTIONS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows:                                                                                                                         ,

0 - flot Applicable 1 - Event / Criteria Missing j 2 - Unsatisfactory j 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria . EVEllT/ CRITERIA RATIflG SCALE C0!NEllTS 0 1 2 3 4 5 - I. LOCATI0ft SPECIFIC ACTIVITIES A. Medical Team reaction / assembly was timely following notification. 0 1 2 3 4 5 f.. ,- B . Medical team assembled with the proper first aid equipment. 0 1 2 3 4 .5 O , C. Accident / injury assessment made by the medical team. 0 1 2 3 4 5 D. Team leader exerts control. 0 1 2 3 4 5 E. Medical assistance was rendered in a timely manner. 0 1 2 3 4 5 F. Appropriate decontamination measures were taken. 0 1 2 3 4 5 G. Maintained communication linkage with Control Room. 0 1 2 3 4 5 H. The HP escort reacted properly to the simulated event. 0 1 2 3 4 5

1. The request for and notification of ambulance was in accordance 0 1 2 3 4 5 to procedures.
                                                                                                                                                                     ?

J. Patient was made ready for transport by the medical team. 0 1 2 3 4 5 '. K. Dosimeter was left with the patient. 0 1 2 3 4 5 L. Adequate HP's coverage was provided at the hospital.

  ,                                                                                                             0 1 2 3 4 5 Patient's radiation doses are

( )~ M. monitored by HP personnel. 0 1 2 3 4 5 '

n. .,
                                                                                                                               .--e -

Pane 2 of 2 OBSERVER CHECKLIST CONTINUED: r EVENT / CRITERIA RATING SCALE l 0 1 2 3 4 5 C0:1:lENTS N. HP performed radiation survey of ambulance at hospital before vehicle was released. 0 1 2 3 4 5

0. Accident was classified as an Unusual -

Event through established procedures. 0 1 2 3 4 5 P. Consideration / measures were taken to prevent spread of contamination. 0 1 2 3 4 5 Q. Periodic status reports are provided to the Shift Supervisor as to the injured individuals status. 0 1 2 3 4 5 e (~ '1 . . L.) O

       /

(' ~ > . t- \ s s a ~ ~ -

                                                                  -         s

4. OBSERVER CHECKLIST ARKAtlSAS flVCLEAR OflE OBSERVER LOCATI0ft/GR00P OBSERVED: FIRE EMERGEllCY TEAM OATE DIRECTI0flS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVEflT/ CRITERIA RATIfiG SCALE C0!iMEflTS 0 1 2 3 4 5 - I. LOCATIO!1 SPECIFIC ACTIVITIES A. Reaction time between fire alarm and fire team activation is timely. 0 1 2 3 4 5

  ,_   ' 3. Fire fighting personnel response

(

      )-        time to the scene of the fire was timely.                                        0 1 2 3 4 5 C. Fire team members report to scene of fire with appropriate fire fighting gear and equipment.                             0 1 2 3 4 5 D. Fire brigade leader is clearly in charge until relieved by fire team leader.                                         0 1 2 3 4 5 E. Initial assessment of fire situation is adequately performed.                        0 1 2 3 4 5 F. Standard fire fighting procedures were followed.                                  0 1 2 3 4 5 G. When it is apparent AP&L team cannot control the fire, offsite support is requested and obtained in a timely manner.                                         0 1 2 3 4 5                        ,'

H. Communications are maintained between the fire team leader and the CR (Control Room). 0 1 2 3 4 5

1. Adequate information is provided by the fire team to the Control Room for their assessment. 0 1 2 3 4 5
\        ~ J. Smooth transition and coordination is made between plant fire team and local fire department.                          0 1 2 3 4 5
g. ..;

s _. - x

                                                            '                                                 i l

Paqe 1 of 1 l OBSERVER CHECKLIST C0flTIfiUED: l

    ~I EVEtiT/ CRITERIA O'                                                   RATIftG SCAi.E O 1    2 2 4 s C0.'I1Ef!TS K. Arrival of local fire department                                                         .      .

to fire scene is timely. 0 1 2 3 4 5

      =.                                                          "

0 . 9 O-

                              . t.                                     ..;
  ,                   ~                         . .            .,            .

OBSERVER CHECKLIST

 <$            ARKAtlSAS flVCLEAR OilE                          OBSERVER c:

LOCATI0ft/GP,0UP OBSERVED: EVACUATI0ff TEAf4 DATE DIRECTI0ilS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVErlT/ CRITERIA RATItiG SCALE C0"NEllTS 0 1 2 3 4 5 - I. LOCATIOlI SPECIFIC ACTIVITIES A. Evacuation Team assembles and is provided information in a timely

       '        manner.                                       0 1 2 3 4 5 I
         - 8. Portal monitors effectively utilized to monitor plant evacuees.                    0 1 2 3 4 5 C. Adequate instructions are provided to the evacuees.                              0 1 2 3 4 5 D. Plant personnel report to their specified parking lot area.                   0 1 2 3 4 5 E. Evacuated players are provided ade-quate instructions from the Evacua-tion Team to ECC.                             0 1 2 3 4 5 F. Evacuees are provided follow-up information by Recovery Manager.             0 1 2 3 4 5 G. Fishermen are provided adequate in-structions by the Evacuation Team.           0 1 2 3 4 5 H. HP coverage is adequate at exit points.                                       0 1 2 3 4 5                          ,

I. Accountability of evacuated personnel . is performed in a timely manner. 0 1 2 3 4 5 J. Adequate information is provided by the TSC for Security to perform accountability. 0 1 2 3 4 5

       /

Evacuation messages over the PA o uj

        - (.      system were clear and understandable.        0 1 2 3 4 5 t-                                             i w      -             %      ,
                                         ~                                   ,   -

w

OBSERVER CliECKLIST j ARKAtlSAS flVCLEAR 0!!E OBSERVER e TECH!!ICAL SUPPORT CErlTER DATE LOCATIOlI/ GROUP OBSERVED: DIRECTI0ilS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria . EVEtlT/ CRITERIA RATIrlG SCALE C0"NEflTS 0 1 2 3 4 5 I. LOCAT!0fl SPECIFIC ACTIVITIES A. The TSC assumes overall command and control when activated. 0 1 2 3 4 5 I 3. TSC takes responsibility for offsite (" ) - dose projections. 0 1 2 3 4 ~5

     C .       TSC takes responsibility for ilRC and other notifications.                         0 1 2 3 4 5 D. Recovery Manager / Technical Analysis Superintendent / Duty Emergency Coordinator should assign someone to perform notifications.                       0 1 2 3 4 5 E. The TSC is manned in a timely manner                            -

at the Site Emergency Action Level. 0 1 2 3 4 5 F. Dispatch liaison to TOCC (State 00H) 0 1 2 3 4 5 G. Assess damage due to fire. - 0 1 2 3 4 5 H. Assess make-up capability to RCS 0 1 2 3 4 5

             !. Conmand is clearly transferred from DEC to RM.                                   0 1 2 3 4 5                           ,

J. Special emphasis is given by main- ', tenance on getting HPSI pump back in service. 0 1 2 3 4 5 K. Offsite monitoring teams are dis-patched to the field at Site Emer-gency. 0 1 2 3 4 5 l

    'c         . Periodic update by RM is provided to TSC.                                         0 1 2 3 4 5 M. Followed up condition of injured person.                                      0 1 2 3 4 5 ft. RM made' periodic briefings to staff.        0 1 2 3 4 5
g. -}

__ m

                - OBSERVER CHECKLIST C0 tit!!!UED:                                                           1                   1 f

O EVEtiT/ CRITERIA RATIllG SCALE 0 1 2 3 4 5 C03EllTS O. Plant evacuation is coordinated . . between the Rti & Shift Supervisor. 0 1 2 3 4 5 P. Preparation is made to evacuate. 0 1 2 3 4 5 Q. Accountability is made following . evacuation. 0 1 2 3 4 5 R. Consultation with TSC b broken RCS line occurs.y CR on the , 0 1 2 3 4 5 S. Inplant radiological monitoring results are followed by the TSC. 0 1 2 3 4 5 T. Evaluation of individual doses of those individuals who remain in the plant is performed. 0 1 2 3 4 5 U. The TSC is provided with evaluating ) offsite dose readings. 0 1 2 3 4 5 -- V. Interface / communications with TSC and ECC staffs occurs frequently. 0 1 2 3 4 5 W. Transfer of command is made clear. 0 1 2 3 4 5 X. Coordination between AP&L and the f- State is carried out by tk.e . C prior \ to ECC activation. 0 1 2 3 4 5 t AA. TSC evacuation is conducted in an effective manner. 0 1 2 3 4 5 - AB. TSC, evacuation is coordinated with ECC. 0 1 2 3 4 5 AC. Smo~oth transition is made from the TSC to secondary TSC. 0 1 2 3 4 5 AD. Recovery actions are developed between TSC to ECC. 0 1 2 3 4 5 \' AE. ' Downgrading actions are developed. 0 1 2 3 4 5 AF. . change. Smooth transition is made on shift ' 0 1 2 34 5 , AG. Briefing is made to oncoming staff. 0 1 2 3 4 5 All. Person in charge is clearly identified. 0 1 2 3 4 5 ' l

  /                                                                                                                                                            .

i '.'

                                                                            ~

s - - ,

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

OBSERVER CHECKLIST ARKAtlSAS flUCLEAR ONE OBSERVER LOCATIO!!/ GROUP OBSERVED: Ef1ERGE!!CY C0!! TROL CErlTER (ECC) DATE DIRECTIO!15: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria riissing ' 2 - Unsatisfactory

                                            . 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria                 .

EVEf!T/ CRITERIA RAT!flG SCALE C0ft1ErlTS 0 1 2 3 4 5 -- I. LOCATIO!! SPECIFIC ACTIVITIES A. liaintain open communication linkage while enroute. 0 1 2 3 4 5 B. ECC is activated in a timely manner 6 following notification of IRD's trans fer. 0 1 2 3 4 5 C. IRD receives briefing prior to assuming command at ECC. 0 1 2 3 4 5 D. Transfer of command is made clear to TSC and LRSC. 0 1 2 3 4 5 E. Updated status boards are maintained. 0 1 2 3 4 5 F. Technical Support flanager receives timely and complete information regarding radiological monitoring. 0 1 2 3 4 5 G. Reference materials, supplies and resources are readily available and adequate. 0 1.2 3 4 5 - li. Communication flow is adequate. 0 1 2 3 4 5 I. Definite and effective leadership is maintained in the ECC. 0 1 2 3 4 5

  • J. ECC personnel were familiar with .

their responsibilities and carried out their ' duties effectively. 0 1 2 3 4 5

        'K. Radiological trends of the accident were established.                               0 1 2 3 4 5
      - L. Protection action recommendations were timely and accurate.                       0  1. 2 3 4 5 ti. Data were made available in a timely                                                     I manner and adequately distributed.              0 1 2 3 4 5
g. g .

e , - _ __ s. ._z _

                                                                              -      m                a

OBSERVER CHECKt!ST C0tlTIrlUED: EllERGEllCY C0!iTROL CEllTER (ECC)

      /             EVEllT/ CRITERIA RATIllG SCALE 0 1                    C0:1:1EflTS 2 3 4 5 fl. ECC participants were aware of their                                      .       .

responsibilities. 0 1 2 3 4 5

0. Communicators understood and used systems effectively. 0 1 2 3 4 5 P.

General status announcements and periodic updates were made throughout the drill. 0 1 2 3 4 5 Q. Appropriate procedures were used and periodically reviewed. 0 1 2 3 4 5 R. Communication and coordination activities made with the State were timely, accurate and frequent. 0 1 2 3 4-5 S. Contacts with outside support groups were made in anticipation of their assistance. - 0 1 2 3 4 5 T. Team work was evident. 0 1 2 3 4 5 U. Press releases were reviewed by IRD. 0 1 2 3 4 5

t. . ,. -

OBSERVER CHECKLIST ARKANSAS NUCLEAR ONE OBSERVER  ; {} LOCATION / GROUP OBSERVED: DOSE ASSESSMENT (ECC)/0FFSITE MONITORING (ECC) DATE DIRECTIONS: Circle the number on the rating scale that corresponds to the t judgment made by the observer. The Rating Scale is defined L as follows: 0 - Not Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - Needs Improvement 4 - Satisfactory  ; 5 - Exceeds Criteria t EVENT / CRITERIA RATING SCALE COMMENTS 0 1 2 3 4 5 - I. LOCATION SPECIFIC ACTIVITIES A. Initial and subsequent dose calculations were performed in a timely manner. 0 1 2 3 4 5 6 B. Computerized equipment was properly utilized. 0 1 2 3 4 5 C. Plume was defined and tracked. 0 1 2 3 4 5 D. Teams were contacted, briefed, and dispatched expeditiously. 0 1 2 3 4 5 . E. Communications were maintained with all teams. .0 1 2 3 4 5 F. Personnel was efficiently utilized. 0 1 2 3 4 5 G. Dose Assessment Supervisor initiated and provided periodic updates to the Technical Support Manager. 0 1 2 3 4 5 H. Status was maintained on team - exposure levels. 0 1 2 3 4 5 ' I. Offsite monitoring data were ' coordinated with State. 0 1 2 3 4 5 - J. Comparisons were made between . projected and actual field measurements. 0 1 2 3 4 5 K. Dose assessment offsite monitoring

   ,        supervisors were provided with

, s, adequate information to perform , their duties. 0 1 2 3 4 5 t-  ; . A

1 1

                                                                          -                                 1 OBSERVER CHECKLIST ARKAtlSAS flVCLEAR 0liE                            OBSERVER LOCATI0fi/ GROUP OBSERVED:       1-1EDIA OPERATI0tlS CEf'lTEP.

DATE DIRECTI0tlS: Circle the rumber on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - tieeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVEllT/ CRITERIA RAT!flG SCALE C0 fit 1EtlTS O 1 2 3 4 5 - I. LOCATI0tl SPECIFIC ACTIVITIES A. Information received was timely and accurate. 0 1 2 3 4 5

      ' B. flews releases were coordinated with s        appropriate ERO personnel.                    0 1 2 3 4 5 C. Press conferences were organized, publicized, and adequate in number.          0 1 2 3 4 5 D. Tiedia personnel were available for public inquiries.                             0 1 2 3 4 5 E. flews releases were prepared and disseminated in a frequent and timely basis.

0 1 2 3 4 5 F. Personnel which prepared news releases were familiar with the plant and plant terminology. 0 1 2 3 4 5 G. flews releases were accurate, easily understood and timely. 0 1 2 3 4 5 H. fleus releases were uniform, i.e., sequentially updating events. 0 1 2 3 4 5 . I. Technical advisors were available to

  • the media and others. 0 1 2 3 4 5 J. Visual aids were available and utilized. 0 1 2 3 4 5
k. Terminology used in news releases was understandable by the g' eneral h' L.

lay person. Tiedia were provided clear instruc-0 1 2 3 4 5 tions on building access and liedia Center operations. 0 1 2 3 4 5

t. -

s' . ~ =_-____-_-. -

               - OBSERVER CHECKLIST C0tlTIllVED: f1EDIACEllTEROpEkT10flS

]( EVEflT/ CRITERIA RAT!flG SCALE 0 1 2 3 4 5 COM'iErlTS M. tiews releases were cleared by the IRD . 0 1 2 3 4 5 11 . The Communications Superintendent was clearly in' charge of the ltedia Center operations. 0 1 2 3 4 5

0. Rumors and distorted information were dealt with in a satisfactory manner.

0 1 2 3 4 5 P. A smooth transition was made between the shift change at the ttedia Center. 0 1 2 3 4 5 Q. Logs of events and communications were maintained and updated. 0 1 2 3 4 5 . R. Supplies and equipment for press releases and fledia Center operations were adequate. 0 1 2 3 4 5 - S. Sufficient technical information was provided to the Utility Advisory Supervisor so that he could update the industry. r 0 1 2 3 4 5

  'f
     .                                                                                                      I
          .-_ _ - _ _ _ _ - - - - - - - - - - - - - - - - - -          --- - ---     L         _ _-

I OBSERVER CHECKLIST ARKAtlSAS flVCLEAR O'lE OBSERVER LOCAT10ft/ GROUP OBSERVED: Little Rock Support Center & LRCC DATE DIRECTI0flS: Circle the number on the rating scale that corresponds to the judgment made by the observer. The Rating Scale is defined as follows: 0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria , EVEflT/ CRITERIA RATIflG SCALE C0ItEllTS 0 1 2 3 4 5 .. I. LOCATIO!! SPECIFIC ACTIVITIES A. LRCC receives and transmits Unusual Event EAL in a timely manner. 0 1 2 3 4 5

           "' '""    ' ' '" ' """ '"""'* ^'""'

C3 's EAL in a timely manner. 0 1 2 3 4 5 C. LRSC is established in a timely manner. 0 1 2 3 4 5 D. IRD notifies appropriate personnel of Alert event. 0 1 2 3 4 5 E. Established communication linkage with Atl0 (TSC if activated). 0 1 2 3 4 5 F. Begins preparation of initial press - release. 0 1 2 3 4 5 G. Activates LRSC with phones and 5520 Display Writer. 0 1 2 3 4 5 H. Technical Support !!anager makes an assessment to activate offsite radiological monitoring teams. 0 1 2 3 4 5 I. Assess seriousness of situation and r - determine if further activation is * ' necessary. 0 1 2 3 4 5 - J. Communication equipment is operational and consistently manned. , 0 1 2 3 4 5 K. Control and transfer is clear, orderly, and timely. 0 1 2 3 4 5 OV ' L. LRSC contains only essential personnel. 0 1 2 3 4 5

11. Communications and events are logged according to procedures. 0 1 2 3 4 5 g.
                                                                                -}                        .

m _ -_ _ .

OBSERVER CHECKLIST C0!! tit!UED: {} EVEllT/ CRITERIA RATIfG SCALE 5 C0:!t'E!!TS N. Transfer of command is made clear to ' ' ECC at At:0 and LRSC staff. 0 1 2 3 4 5

0. Media team transfers to ECC site following initial press release. 0 1 2 3 4 5 P. Maintain ERO personnel tracking. 0 1 2 3 4 5 Q. Engineering Support staff is kept informed of events and has made -

appropriate contacts with vendors or other outside support groups. 0 1 2 3 4 5 R. Internal Communications Coordinator is kept up-to-date and provides AP&L staff updated information. 0 1 2 3 4 5 S. Internal Comunications Coordinator responds to outside calls following appropriate procedures. 0 1 2 3 4 5 r C-9

                                                                                .  ' 1
                                                                                 . l Q-t-                                       ,                 .

i OBSERVER CHECKLIST

        ,     ARKAtlSAS NUCLEAR ONE                         OBSERVER U
   .0 CATION / GROUP OBSERVED: flRC & GTHER STATE & LOCAL PARTICIPANTS         DATE DIRECTIONS: Circle the number on the rating scale that cor responds to the judgment made by the observer. The Rating Scale is defined as follows:

0 - flot Applicable 1 - Event / Criteria Missing 2 - Unsatisfactory 3 - fleeds Improvement 4 - Satisfactory 5 - Exceeds Criteria EVEllT/ CRITERIA RATING SCALE C0fiMENTS 0 1 2 3 4 5 ,,

     . LOCAT10fi/ RESPONSIBILITY SPECIFIC ACTIVITY OBSERVATION A. Resident flRC inspector reported to CR/TSO af ter Unusual Event EAL occurred.                                  0 1 2 3 4 5 s
       /a. Determines response mode and notifies TSC/ECC.                          0 1 2 3 4 5 C. Activates Initial Response !!ade in a timely manner.                        0 1 2 3 4 5 D. 050 (Director Site Operations) is clearly identifiable.                      0 1 2 3 4 5 E. Level of activation determination is made by regional administrator.         0 1 2 3 4 5 F. flRC players are properly identified.      0 1 2 3 4 5 G. Performs monitoring activities and coordinating procedures without unduly disturbing site team and EltR operations.                           0 1 2 3 4 5 H. Locates flRC base at the TSO.              0 1 2 3 4 5
           !. Performs radiological monitoring using flRC's model for dose assessment in accordance to EPA guidelines.                                0 1 2 3 4 5 J. NRC team stayed throughout REX '83.        0 1 2 3 4 5 K. Activated Expanded Response !! ode                                                i
   ,-(         in a timely manner and informs ECC/

(_) TSC. 0 1 2 3 4 5 L. Establishes the Deactivating flode t

               & informs ECC/TSC.                         0 1 2 3 4 5
                                                                                                 )

i s _ w

OBSERVER CHECKLIST C0flTIrl0ED: flRC & OTHER STATE & LOCAL PARTICIPAf1TS EVEflT/ CRITERIA RATIllG SCALE

   ))-                                                  0 1 2 3 4 5                       C0!-t'1EilTS fl. Establish and maintain open channel with regional flRC office.                 0  1. 2 3 4 5 fl. DSO used authority to waive interfer-ring procedures.                           0 1 2 3 4 5
0. Provide advice to ECC personnel. 0 1 2 3 4 5 P. Provided support in locating and/or obtaining expertise and/or special equipment. C 1 2 3 4 5 Q. Cooperated with other State, Local and Federal Agencies. 0 1 2 3 4 5 P. , Performed required technical activities for the purpose of recommending protection actions. 3 1 2 3 4 5 S. Delegated site responsibilities to appropriate licensee personnel . 0 1 2 3 4 5 )

T. Coordinated offsite non-technical matters with FEftA. 0 1 2 3 4 5 U. Coordinated offsite monitoring with DOE. 0 1 2 3 4 5

          . flRC limited role to monitoring and/or advisement.                                0 1 2 3 4 5 W. Ensured public media raceived non-distored information.                      0 1 2 3 4 5 l
     )

,i i .1, 0 4 1 6 r 1 1 i I. OBJECTIVES I t I. I a i !O i i i t 41 1 4 t 1 9 ( . J i 1, t 1 I t 1 l a j WP84210A i O i + 6 5 'i O

SCENARIO OBJECTIVES ANO 1984 Emergency Preparedness Exercise AP&L Exercise Objectives - Actions to be tested

1. Classifying and upgrading the emergency through the General Emergency EAL.
2. Notification of plant emergency response personnel.
3. Notification of appropriate Federal, State and local support groups.
4. Notification of corporate personnel assigned to the Emergency Response Organization.
5. Notification of appropriate vendor and consultant support groups.
6. Notification of elected public officials.
7. Formation of the initial AP&L corporate response in Little Rock.
8. Establishment of communications between LRSC, ECC, TSC, NRC, and State and local emergency response officials.
9. Preparation of an initial news release from Little Rock.

O 10. Activation of the Technical Support Center.

11. Activation of the Operational Support Center.
12. Activation of the Emergency Control Center.
13. Transfer of key members of the ERO from Little Rock to Russellville.
14. Activation of Little Rock laboratory personnel and transfer to
     .Russellville.
15. Demonstrate effective use of communication equipment during transfer of ERO personnel from Little Rock to ANO.
16. Activation of the Emergency Radiation Team.
17. Radiation monitoring of plant areas by the Emergency Radiation Team.
18. Activation of the Emergency Fire Team. Demonstration of communic;thns between the fire team and the Control Room.
19. Emergency Fire Team response to a simulated fire.
20. Activation of the Emergency Evacuation Team.

O 21. Evacuation of the plant and/or Exclusion Area.

                                     ,-w . . + * . - - - .
22. Personnel accountability following plant / exclusion area evacuation.

n U 23. Formation of an Emergency Recovery Team.

24. Activation of the Emergency Medical Team.
25. Emergency Medical Team response to a simulated injured individual.
26. Transportation of a simulated injured individual to St. Mary's Hospital.
27. Coordination between AP&L and St. Mary's Hospital staff for the handling of a simulated injured individual.
28. Transfer of responsibilities from the Initial Response Organization to the Emergency Response Organization.
29. Offsite radiological monitoring by AN0 Emergency Radiation Team.
30. Coordination of offsite radiological monitoring data with State personnel.
31. Coordination between Licensee and State field teams and dose assessment personnel.
32. Use of Offsite Dose Projection procedures. Display Dose Projections in the TSC and ECC.
33. Coordination between AP&L and the State on Protective Action O Recommendations.
34. Utilization of appropriate Emergency Operating Procedures.
35. Utilize GERMS and SPDS (that portion that is functional and can be used to contribute to the exercise).
36. Maintaining continuity while evacuating and relocating TSC and OSC personnel to ECC. '
37. Effective radiation / contamination monitoring of ECC.
38. Demonstrate the adequacy of emergency equipment and supplies.
39. Coordination between the Control Room, Technical Support Center, and the Emergency Control Center throughout exercise.
40. Coordination with State and local officials at the TOCC, ECC, and the four county Emergency Operations Centers as requested.
41. Activation of the Media Center.

3 (o m .

42. Production and delivery of information in joint AP&L, State, and federal (if in attendance) news conference from the ECC Media Center.

43. Control of access to the Exclusion Area (both land and water) and the establishment of road blocks.

44. Security of the Emergency Control Center.
45. Utilization of appropriate Emergency Plan Implementing and Contingency Plan Procedures.
46. Ability of Emergency Response Organization to maintain continuity of command and control throughout the exercise.
47. Demonstrate problem solving capabilities of the Emergency Response Organization.
48. Coordination with State and federal (if in attendance) agencies to downgrade the emergency.
49. Initial recovery and re-entry actions.
50. Utilize PASS facility to analyze the primary system (RCS).
51. Demonstrate the onsite personnel notification system (PA System).

O

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4 l 1 II. NARRAT'IVE SCENARIO

SUMMARY

1 4 f t 1 4 I i I O  ; I a t T I i 1 1 4 I i i 1 -h,a l 1 1 I i l i 1 1 i ,t J i t

                                                                                                                                                                                                                                                                         'l WP84210A

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ARKANSAS POWER AND LIGHT COMPANY ARKANSAS NUCLEAR ONE w) 1984 E!!ERGENCY PREPAREDNESS EXERCISE NARRATIVE

SUMMARY

OF EXERCISE SCENARIO The exercise scenario is based on a series of events resulting in a Steam Generator Tube Rupture through which much of the Reactor Coolant System (RCS) inventory is blown down into the Reactor Auxiliary Building j ultimately resulting in a significant offsite release of radioactivity. The exercise is planned to test AP&L's state of emergency preparedness 4 of Arkansas Nuclear One and State and local response organizations. The exercise will begin at approximately 0830 hours on Wednesday, March 21, 1984 with the following initial conditions:

1. Unit 1 is at 100% power and full load. The unit has been on-line for 200 days. *
2. "A" Make-Up Pump has been out-of-service for three days due to bad bearings. . . waiting on parts.
3. A small (~0.0S gpm) tube leak in "A" Once Through Steam Generator (OTSG) has existed for the past

(} two weeks. i 4. "A" Decay Heat Pump is inoperative having incurred 1 major mechanical damage due to bearing failure during a Surveillance Test at 0500 hours. i

5. Unit 2 is at 100% power and full load. The unit has been on-line for 46 days.

The initiating event for the exercise will occur at approximately 0845 with the injury and contamination of an individual, requiring offsite medical assistance and transport to an offsite medical facility. These conditions will require the declaration of a Notification of Unusual Event. Due to excessive operations activities on the previous shift (midnight shift), the Quarterly Surveillance Test on "C" Make-Up Pump was delayed until 0930. , NOTE: "B" Hake-Up Pump is aligned to the A-3 bus and is in a-

                                      " standby" mode during the test.

4

At approximately 1000 hours a fire occurs in the A-4 switchgear room. 7 'S The fire will be of such magnitude that the following groups will be ( ,) requested to respend:

1. Fire Brigade
2. Emergency Fire Team
3. Russellville Fire Department The delayed surveillance test on "C" Make-up Pump ensures that when the fire occurs in the A-4 Switchgear Room the A-3 bus is not faulted through the "B" Make-up Pump cable. The fire will last for approximately 45 minutes completely destroying the A-4 Bus. The A-4 Bus will be unavailable for the remainder of the exercise.

Simultaneously with the loss of the A-4

  • Jus the Reactor will trip at approximately 1005 hours. The operator response to the Reactor Trip will include the attempted start of "B" Make-Up Pump. The "B" Make-Up Pump will have an electrical fault in the cable (as a result of the fire in A-4) which runs between the pump and the A-4 switchgear. As a result of the operator action, the A-3 switchgear will be locked out by protecti'e v relays. This will result in the A-3 Bus being temporarily unavailable. Regardless of A-3 availability, "B" Make-Up Pump is un-available until the electrical fault is repaired, therefore Operations personnel have no make-up capability to the RCS.
/"'s   The next significant event occurs at approximately 1010 hours when "A"

(_,) OTSG main feedwater line develops an unisolatable rupture in the Upper South Piping Penetration Room. This will result in the loss of all inventory in "A" OTSG via blowdown into the Reactor Auxiliary Building. The blowdown results in excessive cooldown of the RCS causing the following:

                  *    -large tube-to-shell AT in "A" OTSG causing massive tube ruptures to occur a     loss of RCS pressurizer level                                     .
  • saturation of RCS Due to the preceeding events the following conditions will exist:

e an uncontrollable loss of RCS inventory into the Reactor Auxiliary Building a the eventual uncovering of fuel assemblies with resultant fuel damage the release of fission products to the atmosphere via plant ventilation systems (~% i 9 ( h *'o* "O'-' --

! A General Emergency will be declared due to the loss of two out of three fission product barriers with a potential loss of the third. This situation will continue until cooling is re-established to the core by either repairing the electrical fault on "B" Make-Up Pump or providing an alternate power supply to the "B" Decay Heat Pump (the RCS must be depressurized to utilize this method). The RCS inventory will continue to be lost until the RCS is depressurized, the "A" RCS loop is drained via the main feedwater line break and Decay Heat Cooling is established to the core. The General Emergency condi-tion will continue until a fission product barrier is re-established on the ruptured main feedwater line. Some release of radioactivity to the atmosphere will continue until levels decay and/or adequate decontamina-tion procedures have been completed. The Emergency Action Level can be de-escalated after re-establishment of a fission product barrier and after consideration of other EAL criteria, i.e., release rates, etc. Once the leakage of RCS has been actively stopped (~1530 hours), time constraints make it necessary to go to an accelerated time table. All exercise participants will be informed that it is 24 hours later and will be given the following information: The radiation levels in the Reactor Auxiliary Building have been reduced to acceptable levels such that an entry could be made. All protective action recommendations initially issued are still in effect. At this time, the radiation levels in the Reactor Auxiliary Building will allow corrective actions (such as an entry into the Reactor Auxiliary Building in order to weld a cap on the Main Feedwater Line) to be taken and considerations for downgrading and recovery will occur. The exercise will officially be terminated at approximately 1700 hours. l l, l l I,

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  ,      O                                                                             O                               .                                          O SCENARIO TIMELIh1 1

0310 0900 0930 1000 1030 1100 1130 1200 1230 1300 1330 1400 1430 1500 1530 1600 1700 I l l l l l l l l I l l l l l l l l'nus ua l Event A '* g General Emergency 3 _ _ _ _ _ _ _ _ yy i 1, Medical Drill Fire Drill - Plant Evacuation Cont.minated A-4 Switchgear injury Room l Offsite Releases , 2Hr time jump I l_ "A" OTSG l l l ,} ' Recovery Operations ,,l terminate Rx l feedline l RCPs start _ l "B" De- l "B" N keup l Releases Trip i rupture l N keup pump _ cay heati pump stop 1 minimal l _"B" available pump l Recirc. l_"A" OTSG avail- _ cooling tube rupture able established

    *An Alert may be declared at this time, however, the conditions will inmediately escalate to the General Emergency WP84221A i

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R O III. DETAILED SCENARIO O WP84210A O 4 O*

l 1 REX-84 O DETAILED DESCRIPTION OF EVENTS ANO-1 is operating at 100% power and full load. It has been on line for the past 200 days and a small (~0.05 gpm) tube leak has developed in "A" Once Through Steam Generator (OTSG) within the past two weeks. 1 ANO-2 is at 100% power and full load. It has been on line for 46 days. Current weather conditions are partly cloudy with southeasterly winds around 10 mph. ! The temperature is in the upper 50's. There are no abnormal conditions occurring on or offsite. COMPONENTS TAGGED OUT OF SERVICE FOR MARCH 21, 1984 Component Reason Tagged Out "A" Hakeup Pump lias been out-of-service for 3 days due to bad bearings... waiting on parts, i Electric Fire Pump O Out of service for Breaker repair... should be restored to service by 1400 "D" Circulating Water Pump Out of service for inspec-tion and repair... out for two weeks.

                                                  "A" Decay lleat Pump                                                                                                                     Inoperative having incurred major mechanical damage due 1

to bearing failure during i a surveillance test at 0500 hours. Chlorine System Out of service for maintenance for one week. Non-Tech Spec Problem Areas Small steam leak above EIA Feedwater Ifeater Packing leak on "A" IIcater Drain Pump Air-Side Hydrogen Seal Oil Pump out of service , [) Gland Seal Supply secured to "B" Moisture Separator Reheater Safety Valves j WP84221 Page 1 I

DETAILED DESCRIPTION OF EVENTS DATE: March 21, 1984

    ,O l                l                                               l                                                          ;

l l TIME l EVENT l ANTICIPATED RESPONSE l l l l 1 l l l l . l 0830 hrs. l The exercise is initiated with a medi- l Per procedure 1903.23 "Per-l l (T+00:00) l cal emergency. A plant worker is moni-l sonnel Emergency" the HP l l l toring the transfer of primary spent l providing the job coverage l l l resin into a shipping cask. The cask l should administer whatever l l l is sitting on a flat-bed trailer in thel immediate first aid he l l l Train Bay and the worker is located on l deems necessary. He shouldl l l a ladder which is leaning against the l then notify either units l l l cask. While checking the level in the l Shift Operations Supervisori l l cask, some resin / water mixture splashes l (SOS), remain with the vic-l l l on the worker resulting in his loss of l tim, and await arrival of l l l balance and fall from the ladder onto I the Emergency Medical Team l l l the Train Bay floor. The controller l l

l l will issue message #1 explaining the l Per procedure 1903.23, the l 1

l l extent of the injuries to the HP pro- l SOS, once notified, should l l l viding job coverage. Additional infor-l direct appropriate medical l l l mation concerning the extent of the l assistance to the injured l l l Victims injuries and vital signs will l individual. l j l l be provided in medital messages # 2, 3,1 l l l 4, and 5 from the controller to exer- l The Emergency Medical Team l l l l cise players. l should respond to the in- l 4 l l l jured individual and ad- l l l l minister appropriate first l j l l l aid as outlined in proce- l l l

l l dure 1903.23. Medical Teaml  !

l l Members unfamiliar with thel 1 I l l scene of the accident l l l l should request an escort ori 1 l l l directions to the scene perl l l l procedure 1903.42 " Duties l l l l of the Emergency Medical l l l l Team". l l l l l l l l Arrangements should then bel j l l l made to transport the in- l l l l jured individual to St. ! l l l l Mary's Hospital where he l l l l will be treated at a con- l l l l tamination patient (message l l l l #6). l l l l 0845 hrs. l Declaration of Notification of Unusual l A Notification of Unusual l l (T+00:15) l Event l Event should be declared byl l l l the SOS and appropriate l 4 l l l notifications made per pro-l l l l cedure 1903.10 " Emergency l g )l l l action Level Response". l 1 l l WP84221 Page 2

DETAILED DESCRIPTION OF EVENTS DATE: March 21, 1984 Os l l l l l l TIME l EVENT l l ANTICIPATED RESPONSE l l l l l j l 0935 hrs. l WC0 is sent into the Reactor Auxiliary l l l (T+01:05) l Building (Message #7 and 8) l l l l 1 l l 0950 hrs. l An electrical fault in the green 4.16 l When the operator hears l l (T+01:20) l KV switchgear A-4 causes overheating ofl the fire alarm on K-12 (Ex-l l l some electrical cables and results in al ercise Message #9) should l l l fire in the A-4 switchgear room. l immediately go investigate l l l l the cause. He will deter- l l l The blue Fire Protection Panel C-463 l mine the red alarm LED for l l l audibly alarms and concurrently, a loss l " North ES Switchgear Room l l l of indication and control of the major l is lit. (See message #10). l l l portion of the safety related green di-l Per procedure 1203.09 "Firel l l vision occurs. l Protection System Annunci- l l l l ator Corrective Action" thel l l l operator should either dis-l l l l patch an operator to the l l l l North ES Switchgear Room tol l l l check for evidence of fire /l l l l smoke (Message #11) or if l l l l presence of smoke / fire is l (~

 \

l l l confirmed go ahead and an- l l l l nounce over the PA System l l l l l that there is a fire in thel l l North ES Switchgear Room l l l l l and call for the Fire Bri- l l l gade and Fire Team to fight l l l l l the fire. l l l l l l l The Fire Brigade and Fire l l l l Team should respond to the l l l l scene of the fire and take l l l l the appropriate action to l l l l extinguish the fire per l l l l procedure 1903.22 " Fire or l l l l Explosion" and 1903.41 l l l l " Duties of the Emergency l l l l Fire Team". l l l l l l 0952 hrs. l l The Fire Brigade Leader l l (T+01:22) l l should report his assess- l l l l ment of the fire to the l l l l control room and request l l l l offsite fire support shouldl { l l l it be necessary. (Contin- l l l l gency Message #1). Addi- l l p )l l tional information concern l t l l ing the fire is contained l l l l message # 12. l l l 1 1 I WP84221 Page 3

                                                            . . . . _ _ _ _ _ _ _ _ _ _ _ _ _ - - - - _                         -               ]

DETAILED DESCRIPTION OF EVENTS Q DATE: March 21, 1984 V l l l l l TIME l EVENT l ANTICIPATED RESPONSE l l l l l l l l 1 l l The major impact of the fire will be l The responsibility for com-l l l the loss of the two remaining liigh l mand of the emergency re- l l l Pressure Injection (HPI) Pumps (B&C) l sponse should be assumed byl l l and "B" Low Pressure Injection Pump. l the Duty Emergency Coordi- l l l IIPI pump A is out of service as men- l nator (DEC). He should l l l tioned in the initial conditions (more l take action to assess the l l l data to be provided later). The criti-l damage caused by the fire. l l l cal control room parameters contained l l l l in Appendix B are for illustration l l l l only. The actual plant parameter data l l l l is programmed into the SPDS and will l l l l read out in " live-time". Parameters l l l l requested by players but not available l l l l from SPDS will be generated by the con-l The DEC should realize thatl l l trol room controllers. l either another EAL declar- l l l l ation needs to be made to l l l l offsite agencies per pro- l l l l cedure 1903.10 " Emergency l l Action Level Response" Ol Vl l l l (Fire in a vital area not l l I l l under control within 10 l l l l minutes) or an update l l l l should be provided for the l l l l the Unusual Event that was l l l l declared previously. l l 1 l l l 0955 hrs. l Reactor Trip due to A-4 bus being de- l The SOS should either dir- l l (Tt01:25) l energized as a result of the fire. l ect that the A-4 bus be de-l l l l energized to aid fighting l l l l the fire or the fire will l l l l cause an electrical fault l l l l which will de-energize the l l l l bus and cause the reactor l l l l trip. (Message #13 and 14)l l l l The operators should re- l l l l spond per procedure 1202.01l l l l " Reactor Trip" l l l l l l 0957 hrs. l Bus A-3 will be lost due to bus lockoutl The operator should attempt l l (T+01:27) l on electrical fault. This occurs when l to start the "B" Makeup l l l the operator tries to start the "B" l Pump in accordance with thel l l Makeup pump on the A-3 bus (Message # l followup actions of proce- l l l 15 and 16) l dure 1202.01 " Reactor Trip"l l l l If the operator fails to dol A l l this by 0957 he will be in-l (jll l l structed to do so by Con- l l l l tingency Message # 2. l l l l l WP84221 Page 4

DETAILED DESCRIPTION OF EVENTS DATE: March 21, 1984 l l l 1 l TIME l EVENT l ANTICIPATED RESPONSE l l l l l l l l l l l l The SOS should know the l l l l reason for A-3 bus lockout l l l l and order the bus lockout l i l l l reset and then instruct forl l l l A-3 to be re-energized. Ifl l l

                                                                                                '                                           l the SOS does not take this l l                                                                                                                                 l action by 1000 hours he         l l                                                                                     l                                           l will be instructed to do sol l                                                                                     l                                           l by Contingency Message #3. l l                                                                                      l                                           l                                l l 1005 hrs.                                                                            l A-3 bus re-energized.                     l The SOS should instruct thel I (T+01:35)                                                                             l                                          l Electrical Maintenance De- l l                                                                                      l                                          l partment to de-terminate          ,

l l l the A-4 cable to the "B" l l l l makeup pump motor. If thisl ' l l l is not done by 1008 the SOS l ! l l l will be instructed to do sol l l l by Contingency Message # 4.l l l l l ( l 1010 hrs. l "A" OTSG Main Feedwater Line develops l These two essentially sim- l l (T+01:40) l an unisolable rupture in the Upper i ultaneous events will causel l l South Piping Penetration Room. (The l the operator difficulty in l l l rupture occurs downstream of CV-2680). l using procedure 1202.01 l l l When "A" OTSG blows down into the Reac-l " Emergency Operating Pro- l l l tor Auxiliary Building a large tube-to-l cedures". However, the op-l l l shell AT occurs in the "A" OTSG result-l erators should stop all l l l ing in massive tube failures (Messa8es l RCP's when margin-to-satur-l l l #17 and 18). l ation is lost, proper veri-l l l l fication of SLIBC actuation l l l l should occur, and the "B" l l l l OTSG should be brought l l l l slowly to the 95% level by l l l l operate range indication l l l l with the Emergency Feed- l

l l l water System. If these l l l l actions are not performed, l t

l l l the operators will be in- l l l l structed to accomplish theml i l l l per Contingency Messages # l l l l 5 and 6. l l l l l l 1010 - 1036 l l The operators must be pre- l l hrs. l l vented from opening the l l (T+01:40) l l ERV, starting reactor cool-l l l l ant pumps, or depressuriz- l

   ]                                                                                         l                                            l ing the "B" OTSG. Contin- l l                                                                                        l                                            l gency Messages #7, 8, and 9l l                                                                                        l                                            l are available for this pur-l l

1 l pose. l l l l WP84221 Page 5 I

,                                                         DETAILED DESCRIPTION OF EVENTS
p DATE
March 21, 1984 i

i U I l- l l TIME l  ! l l EVENT l ANTICIPATED RESPONSE - l l l l l i l l l l } l l l Per procedure 1903.10 l l l l " Emergency Action Level Re-l i l l l sponse a General Emergency l I l l EAL should be declared due l . l l l l due to a loss of 2 out of 31 ' i l l l fission product barriers l l l l with a potential loss of l ) l l l the third. Appropriate no-l ] l j l l tifications should be made l l l l per procedure 1903.10 l

I l l " Emergency Action Level Re-l
!       l                                   l                                            l sponse." A protective                                        l

, l l l action recommendation to 1 l l l l shelter within a two mile l i

;       I                                   l                                            l radius of the plant and                                      l l                                    l l

l five miles downwind should l l l be made to the State of l ] l l l Arkansas. l 1 l l l l l l l If not already accomplished l l! l l l as a result of the signi- l ' i l 1 l l ficance of the fire in the l l l l A-4 switchgear room, the l { l l l Duty Emergency Coordinator l j l l j l (DEC) will activate the TSCl l l l and OSC staffs and prepare l l 1 l l i l to assume full command and l , l l l control of the emergency. l t { l l l

  • l -

j l l l Actions should immediately l l l l begin to determine whether l  :

l l l 'or not conditions warrant l {

l l l a plant evacuation. In l l I l l plant and offsite radiation l i i I l l teams should immediately bel , I l l l dispatched. l ' l l l l l 1025 hrs. l Fire in the A-4 Switchgear Room is out.l Fire Team Leader should l l (T+01:55) l l give assessment of damage l 1 l l l to the SOS (message # 19) l l l l An assessment of damage andl } l l l repair time estimates are l 1 l l l available upon request fros! j l l , l the Electrical Maintenance l 1 l l Superintendent (messages l J) l l #20 and 21). l t l l l l l l l

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DETAILED DESCRIPTION OF EVENTS q DATE: March 21, 1984 V I l l I l TIME l EVEN1 l ANTICIPATED RESPONSE l

l l l l l l l l l l ~1030 hrs. l The Little Rock Control Center is noti-l The Little Rock Control l l (T+02
00) l fled of General Emergency. l Center (LRCC) when notified l l l l of the General Emergency l l l l should notify the Little l l l l Rock Corporate Official l ,

l l l (LRCO) per Contingency Plan! l l l Procedure #3. The LRCO l l l l l should in turn notify the l l l l l Incident Response Director l l l l l l l (IRD) [If the first indi- l l l l vidual contacted is not thel l l l l IRD). Once notified the l l l IRD should contact ANO for l l l l further details and in- l l l l struct that the ECC be l l l l fully activated. One of l l l l l the initial steps by the I l l l Corporate portion of the l l l l Emergency Response Organi- l l l zation might be to prepare l QV ll l l and issue a news release l l l l l f rom the Corporate Of fice. l l l l l l l l The IRD should maintain l l l l radio contact with the TSC l l l l staff while he is enroute l l l l to the ECC. Upon his ar- l l l l rival he should have a l l l l good understanding of the l l l l situation and thus expe- l l l l dite his ability to assume l l l l overall command and controll l l l of the emergency. l ! l l l ' l i l 1036 hrh. l A RCP in "B" Loop is bumped. l The operators should take l l l (Tt02:06) l l these actions in accordancel l l l l with the " Inadequate Core l l l l l Cooling" tab of procedure l l l l l 1202.01. Contingency Mes- ! l l l sage 10 is avellable to l l l ensure this action is l l l accomplished. l l l l l O' V WP84221 pg7

DETAILED DESCRIPTION OF EVENTS DATE: March 21, 1984 V l l 1 I l TIME l EVENT l ANTICIPATED RESPONSE l l l l l 1 l l l l 1041 hrs. l One RCP is started in each loop. l Contingency Messae #11. l l (T+02:11) l l l l l l l l 1042 hrs. l The repairs to "B" Hakeup Pump are com-l "B" makeup pump should be l l (Tt02:12) l pleted. l started in order to put l l l l BWST water into the core. l l l l (Message #22 and Contin- l l l l gency Message #12). l l l l l l 1041 hrs. l Turbine Building radiation levels reachl Whenever it is determined l l (T+02:12) l plant evacuation criteria (ref. Appen- l that radiation levels have l l l dix C) see message #23. l reached or exceeded the l l l l limits specified in proce- l l l l dure 1903.30 " Plant Evacu- l l l l ation" a plant evacuation l l l l should be declared by the l l l l SOS. An announcement shouldl l l l be made over the PA system l l l and the plant evacuation l Oll l l l l alarm should be sounded. l The Emergency Evacuation l l l l l Team should assist security l l l l in the evacuation of plant l l l l personnel. Accountability l l l l of personnel should be con-l l l l ducted following the plant l l l l evacuation. l l l 1 l l l l The TSC and OSC staffs do l l l l not evacuate hence in- l l l l creased monitoring of thesel l l l areas should be done fol- l l l l lowing the evacuation and l l l l should continue as long as l l l l TSC/OSC's are manned. The l l l l integrated doses of the in-l l l l dividuals in these centers l l l l should be tracked. l l 1 l l l 1042 hrs. l Offsite Monitoring Activitics/ Dose l Aesessment of the leak out-l l (T+02:12) l Assessment l side of containment and ital l l l impact offsite should be l l l l conducted by the TSC dose l l l l assessment team and the I (N l l offsite Radiation Team. l (j l l Further protective action l l l l recommendations should be l l l l made utilizing procedure l l l l l WP84221 Page 8

DETAILED DESCRIPTION OF EVENTS DATE: March 21, 1984 O l l l l l TIME l EVENT l ANTICIPATED RESPONSE l l__ l l 1 l l l 1 l l l l 1904.07 " Protective Action l l l Recommendations". The Gas-l l l l eous Effluent Radiation l l l l Monitoring System (GERMS) l l l l l will be utilized for dose l l l assessment. " Canned" l l l l meteorology (actual data l l l l from past history files) l l l l will be utilized. Should l l l l the GERM system fail then l l l l release rate data and l l l l meteorological data will bel l l l provided from Appendix D l l l l and Appendix E. The dose l l l l assessment personnel will l l l l use procedures 1904.01 l l l l "Offsite Dose Projections -l l l l Germs Computer Graphics l l l l Method" or in the event l l l that backup procedures are l Oll l l required, 1904.02 "Offsite l l l l Dose Projections - Pocket l l l l Computer Method". l l l l l l 1100 hrs. l Various News Media /Public inquiries to l News Media inquiries to thel l (T+02:30) I be made to management personnel and l plant should be referred tol l l switchboard operators. These Media andl the Little Rock Media Cen- l J l Public Inquiry messages are listed in l ter until the ECC Media l l Appendix G. l Center is fully staffed. l 1 1 I I l 1100 - 1300 l On going actions to power "B" Decay l Operations, Electrical l l (T+02:30) l Ileat. Pump from the A-3 bus. l Maintenance and Engineering l l l l should be working together l l l l in order to restore "B" l l l l Decay lleat Pump to service.l l l l During this time, pressur- l l l l izer level will ramp up l l l l slowly, OTSG 1evel will l~ l l l ramp very slowly, the leak l l l l rate into the Reactor Aux- l l l l iliary Building will be l l l l nearly constant and the l l l l offsite radiological re- l l l l leases will continue. l ] pl i I I O WP84221 Page 9

DETAILED DESCRIPTION OF EVENTS DATE:  ?! arch 21, 1984 V l l l l l TIffE l EVENT l ANTICIPATED RESPONSE l l l l l l l l l l ~1200 hrs. l The ECC and tiedia Center should be l The responsibility for is- l l (T+03:30) l operational. l suing protective action I i l l reenmmendations should be l l l l turned over to the IRD oncel l l l the ECC is fully opera- l l l l tional. The ECC staff l l l l should also assume the re- l l l l sponsibility for Dose l l l l Assessment and Offsite No- l l l l tifications from the TSC l l l l staff. l l l l l l 1230 hrs. l B-6 bus repaired, and available to bc l Operators should energize l l (T+04:00) l cross-fed from B-5 (Pfessage #24). l B-6 from B-5. l l l l l l 1300 hrs. l "B" Decay ifeat Pump becomes operable l A recovery team should l l (T+04:30) l from A-3 bus (Contingency tiessage #13) l enter the Reactor Auxiliary l l l l Building in order to line ' l l l l up "B" Decay ifcat Suction l pl vl l l to the RCS. The radiation l l l levels in this part of the l l l l Reactor Auxiliary Building l l l l are such that an entry is l l l l feasible (see Appendix C). l l l ECC evacuation may be considered based l The recovery team should l l l on plume direction (Contingency tiessagel follow the guidelines in l l l #14). l procedure 1903.33 " Recovery l l l l and Re-entry" and 1903.44 l t l l l " Duties of the Emergency l l l l Recovery Team" (tfessage # l l l l 25). Consideration should l l l l be given for the Adminis- l l l l tration of Potassium Iodide l l l l to recovery team members l l l l per procedure 1903.34 l l l l " Administration of Potas- l l l l slum Iodide." l l l l l l ~1325 hrs. l "B" Decay heat pump lineup complete. l l l (T+04:55) l (Pfessage #26). l l l l l l l l l l A U WP84221 Page 10

DETAILED DESCRIPTION OF EVENTS March 21, 1984 O(>DATE:  ! l l l l l TIME l EVENT l ANTICIPATED RESPONSE l l l l l l l l l l ~1330 hrs. l "B" Decay Heat Pump is started to re- l The "B" makeup pump should l l (T+05:00) l circulate the RCS. The leak in the l be stopped and the RCS be l l l Main Feedwater Line should stop. l allowed to drain down whichl l l l will stop the main feed- l l l l l water leak. l l l l l l l From this point, the RCS l l l l level will drop, OTSG IcVell l l l l will stabilize at the l l l l height of the break and thel l l leak will stop when the RCSl l l l l level is below the Main l l l Feedwater Line Break ele- l l l l l vation. l l l l l l l l The releases to the public l l l will continue but decrease l l l l in magnitude until the l l l l break is capped and the l l l primary coolant system O*ll l l boundary is re-established.l l l l l l Offsite Monitoring Field l l l l Team data should be coordi-l l l l nated between the Utility l l l l Field Teams and the State l l l Field Teams. l

l. l l l l 1500 hrs.

l (T+06:30) l Time Break occurs in the scenario. A11l Actions should be taken to l l players will be informed that there is I develop a general recovery l l l a time break in the scenario. They l action plan. l l will be told to assume that it is ex- l tion in message The 27 informa-l l l l actly 24 hours later and will be given l plus current plant condi- l l l a new set of conditions (Hessage #27). l tions should be- used to l l l l l evaluate relaxation of pro-l l l l tective action recommen- l l l 1600 hrs. l dations to the State. l l Downgrade only af ter the Main Feedwaterl Discussions on downgrading l l (T+07:30) l Line is capped. l the emergency should occur l l l l (Hessage #28). l l l l l l 1700 hrs. l Terminate exercise. l Hessage #29. l l l l l O LJ WP84221 Page 11

IV. EXERCISE HESSAGES i 'l j AND a 4 CONTINGENCY MESSAGES j .i i r J j WP84210A ( 6

i MESSAGES \ l v Controlling messages will be presented to the designated exercise par-ticipant at the time specified in the event schedule. The controller should follow up with an explanation of the message and answer ques-tions to ensure that the participant understands the message. Two kinds of messages will be usedt

  • Exercise Message Messages used as a primary means of implementing scenario events by hypothesizing conditions. These will be supported by simulated data where necessary.
  • Contingency Exercise "essage Messages used at the discretion of the controllers in order to maintain the scenario schedule or continuity of simulated events. These messages will be on yellow paper for identi-fication and are not to be issued unless absolutely necessary.

The Lead Controller should be advised when a Contingency Mes-sage has been issued. The use of the Safety Parameter Display System (SPDS) may possibly 7_ necessitate the use of a larger than normal number of Contingency () Messages. The accident scenario and subsequent sequence of events have been programmed on to magnetic tape to allow the use of SPDS and will therefore respond independently of operator actions. Every possibic effort will be made by the Control Room Controllers to ensure that Contingency Messages are not issued unicas absolutely necessary. The SPDS system is unabic to function as a simulator (i.e., react to operator actions), therefore, certain contingency messages may be necessary in order to keep the scenario on sched-u!c. A " pause" feature has been programmed into the SPDS scenario tape enabling the Controlle.s to halt the action (all data will then straight-line) until the command in given to continue the program. There may be other possible modes of recovery, however, if a Contingency Message must be issued in order to keep the sce-nario on schedule then the actions / decisions of the players will be noted on the Controller / Evaluator Observation Forms and the personnel will be instructed to follow the directions in the Contingency Message. The primary factor in the decision to une SPDS was the greater degree realism that it introduces into the Exercise. Players will be able to react more readily to the trends and data plots made available through this system. Additionally, the data will be available simultaneously in all three emergency centers; the Control Hoom, Technical Support Center and the Emergency Control Center. A V WP84220

l l ' REX-84 EXERCISE MESSAGE N0. 1 l n Q T0: Health Physics Tech FROM: Medical Drill Controller LOCATION: Train Bay I TIME: 0830 hours (T + 00:00) MESSAGE:

                                **********************************************i*

A THIS IS A DRILL A Do not initiate actions affecting normal *

                                ; pTant conditions.

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA You are an HP Tech providing health physics coverage for a worker transferring Unit 1 primary spent resin into resin cask in the Train Bay. The worker has just been splashed with the resin / water mixture and has fallen () from the resin cask. He is unconscious and bleeding from the head. i l l l l l v WP84222-2

                                                                             ..-...__...-m   . . . . . . . . . . . _

REX-84 EXERCISE MESSAGE NO. 2

\_   /

T0: Health Physics Tech FROM: Medical Drill Controller LOCATION: Train Bay TIME: 0830 hours (T + 00:00) MESSAGE: Initial survey measurements of injured person before any decon actions.

                                           ****AAAAAA*AAAAAAAA****AA**A***AAA****AAAAAA***

THIS IS A DRILL s A A

  • Do not initiate actions affecting normal  %

l pTant conditions. l AAAAAAAAAAAAAAA*AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA sb'" Bleeding laceration to forehead. llead & neck contamination s .f, 12,000 cpm or 2.5 mR/hr f) w General upper body contamination l 45,000 cpm or 6 mR/hr l l

          '                                                     llands contamination
                           ,/.f Offscale (cpm); 10 mR/hr on contact f
                   #                   1
                  /  s                                     -Suspected broken leg General lower body contamination tsi                              30,000 cpm or 5 mR/hr l

L 2 00 p r /hr G

                              .s*

g N

\

WP84222-3 1 - - . . ~ _ _ _ _ _ _ . _ - g

REX-84 EXERCISE MESSAGE NO. 3  ! O i T0: Medical Team Leader FROM: Medical Drill Controller LOCATION: Train Bay i TIME: Upon medical team examination of injured person MESSAGE:  !*********************************************! A THIS IS A DRILL i A 2 Do not initiate actions affecting normal i

                                           ! iiTant conditions.

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA*AAAAAAAA 2 j ist - Laceration to fore Vital Signs 3, head, bleeding, Blood Pressure: 110/65 A t swollen O ' Jg i Head / neck euise: its i q 12,000. cpm Respirations: 16/ min General upper body General Condition: Skin l I 45,000 cpm cold and clammy, bilateral i pupils normal, semi-d ' Arm & wrist conscious jf g f

  • Swollen
                                 '/f                                                  Injuries:    Compound frac-Hands, offscale (cpm) ture of left leg with 1                    [                                           10 mR/hr contact      bleeding; left leg and foot swollen; left arm and wrist swollen, pos-hi                       Suspected broken      sible fracture; possible
                                           -                    leg                   concussion from fall
                          +                    i F'

y Feet, 20,000 cpm

                                                                                                                      \

l O ', G ' l WP84222-4 , f l 1 1 f  % -. . ,J L - -- - .

                                                                                                              .m'

REX-84 EXERCISE MESSAGE NO. 4 O T0: Medical Team Leader FROM: Medical Drill Controller LOCATION: As appropriate TIME: Upon removal of patient's protective clothing MESSAGE:  ;*********************************************! l A THIS IS A DRILL i A Do not initiate actions affecting normal i

                                 ; iiTant conditions.

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA )

                       "                           Head & Neck              Vital Stans 2,000 cpm               Blood Pressure:      112/68 O                        I s

wou"d 150-200 cpm euise: tto f

                       }I                                                   Respirations:     18/ min and 1

Q General Upper labored l ( 00 cpm General Condition: or 2 mR/hr Pallor of the skin, cold / p clammy; semiconscious;

   /
                            //        \,                                   pupils normal
                           /                      Hands
                     ;4                           4 mR/hr or
           '                                                               Injuries:      Compound 20,000 cpm on            fracture of left leg

[ contact evident; severely swollen

  • left arm and wrist evident; General Lower minor laceration on forehead evident
                  #       5 g >J                  Compound Fracture 100-150 cpm                D
                         -                        Feet 2,000 cpm For PC's removed t

o . . WP84222-5 ( _. .. s _

                                                                                                 ~

HEX-84 t EXERCISE MESSAGE N0. 5 O T0: Medical Team Leader / Ambulance Attendant 1 FROM: Medical Drill Controller

LOCATION
Ambulance TIME: Upon transfer to ambulance, and/or in transit to hospital, and/or arrival at hospital i

MESSAGE: l*********************************************!

                                                   !*               THIS IS A DRILL                        2 l Do not initiate actions affecting nor. mal           i
                                                    ; iiTant conditions.                                   I
; r**********************************************

e N p. ,.. . - Jt Head & neck Vital Signs , 1 I Q 20 cpm Blood Pressure: 116/72 2 O ,\ 1 1 Generei onner aody 100 cpm euise: 10s l

              /
                          )        ,

ff \ Respirations: 20/ min ., I, 3A

                                  /               H                                              General Condition:
                                     /                                                            Becoming more alert; Hands                        complaining of headache, l                     [                                             2,000 cpm                     left leg and arm pain; i

pallor of skin, cool j g\ ) General Lower Body but not as clammy 40 cpm Injuries: Same j , g ( # ,, / >-

                                        ?'                        = Feet i                                              --

5 cpm (Contamination levels after removal of PC's and after de-contamination efforts) i O j WP84222-6

                <            -               ~                                _ _ - ,                    -                    - - -

1 i REX-84 EXERCISE MESSAGE NO. 6 O T0: ANO Medical Drill Controller LOCATION: St. Mary's Emergency Room TIME: At appropriate time MESSAGE: The controller will give the following information to hospital staff when appropriate:

1. After emergency room staff have performed decontami-nation of the patient, radiation measurements of the patient now show no detectable activity.
2. Af ter emergency room staff have examined and per-formed initial medical care, and when the emergency room physician decides to transfer the patient to surgery, the medical drill will be TERMINATED.
3. Announce that there will be no other simulated injured persons from ANO during the exercise today.

The medical portion of the ANO exercise is finished. A V I i O WP84222-22

rex-84 EXERCISE MESSAGE N0. 7 T0: Shift Operations Supervisor 4 FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 0935 hours (T + 01:05) MESSAGE: *********************************************** l THIS IS A DRILL

  • Do not initiate actions affecting normal i
                    ; pTani conditions.

AAAAAAA>tAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA I Instruct your Waste Control Operator to line up and pump the Dirty Waste Tanks to the Clean Waste Receiving Tanks. Also instruct him to bypass all filters. O (/ WP84222-23

REX-84 l EXERCISE MESSAGE NO. 8 O v T0: Waste Control Operator FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 0935 hours (T + 01:05) MESSAGE: 2*********************************************2 l= THIS IS A DRILL i*

                     ; Do not initiate actions affecting normal        *
  • pTant conditions.

i i Leave the Unit One Control Room and simulate lining up the Dirty O Waste Drain Tanks to pump water to the Clean Waste Receiving Tanks. NOTE: Due to ALARA considerations, it is not necessary to actually make an entrance to the Reactor Auxiliary Building. At 1005, the simulated line-up will be completed and you will have started the Dirty Waste Drain Pumps. You hear the Main Steam Safeties lift (as a result of a Reactor Trip) and you immediately go to the Control Room to offer assistance. Do not discuss / reveal this command message to any plant personnel and do not return to the Control Room prior to 1000 hours. O WP84222-24

l REX-84 EXERCISE MESSAGE NO. 9 O T0: Unit One Operator FROM: Control Room Controller LOCATION: C-463

TIME: 0950 hours (T + 01:20) l MESSAGE: 2*********************************************2 i THIS IS A DRILL i A A Do not initiate actions affecting normal
  • i pTant conditions. 2 AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAt*

The " Fire" alarm on K-12 (A-2) comes in. 1 { O WP84222-30

4 REX-64 EXERCISE MESSAGE NO. 10 0 T0: Unit One Operator FROM: Control Room Controller LOCATION: Unit One Control Room, Panel C-463 TIME: 0950 hours (T + 01:20) when panel checked. i MESSAGE:  ;*********************************************l l A THIS IS A DRILL 0 A

                    ; Do not initiate actions af fecting normal          ;
                    ; 'pTant conditions.                                 :

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA j i Red alarm LED for " North ES Switchgear Room" is lit. I

    ,                                                                      L i

j I l 4 C i l

!                                   WP84222-26 I

f 1

                                                                                                                                                                                                                                                                                                        -._.4 REX-84 EXERCISE MESSAGE NO. 11

( TO: Unit One Operator FROM: Fire Orill Controller , LOCATION: Upon Arrival of Unit One Operator at the Scene of the Fire (A-4 Switchgear Room)  ; TIME: 0952 hours (T + 01:22) l MESSAGE:  ;*********************************************l 0 A THIS IS A DRILL i A Do not initiate actions affecting normal 0 l pTant conditions.  : < AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA I J () Upon opening the door to the A-4 Switchgear Room, the operator is driven back by smoke and is forced to immediately close the door. The smoke is too dense for any visual observation of equipment. i f U WP84222-27 _ _ . _ _ _ . - _ _ _ _ _ - _ _ - _ _ _ _ - - - _ _ _ . _ . _ _ _ _ _ _ _ _ _ _ . _ _ _ . . _____.___.__-m___ - . _ _ _ _ . _ _ _ _ _ _ - . - - - . . - - - _ . . _ _ _ - _ _ _ _ _ - _ _ _ . _ _ _ ____-_-___--______m____. _m._-.___.______.__.______m_ _ _ _ _ _

  • _._-

REX-84 EXERCISE MESSAGE h0. 12 O T0: Fire Brigade Leader / Fire Team Leader FROM: Fire Drill Controller LOCATION: Scene of the Fire (A-4 Switchgear Room) TIME: When initial entry into room and attempts made to extinguish fire MESSAGE: 1*********************************************! l* THIS IS A ORILL  % l Do not initiate actions affecting normal *

                    ; pTant conditions.

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA c i A-4 switchgear engulfed in heavy smoke and giving off a lot of heat. All attempts to extinguish fire at this time fail. Fire continues to burn heavily, i i I 1 WP84222-11

                                ~~-~

REX-84 CONTINGENCY MESSAGE N0. 1 O T0: Fire Brigade Leader / Fire Team Leader FROM: Fire Drill Controller

                                                                              ~

LOCATION: Scene of the Fire (Outside A-4 Switchgear Room) TIME: As Appropriate (-0952 hrs.) MESSAGE:  %*********************************************2* i THIS IS A DRILL A A i Do not initiate actions affecting normal i l i pTani conditions, i AAAAAAAAAAAAAAAAAA*WAAAAAAAAAAAAAAAAAAAAAAAAAAA l l l () Fire out of control. Contact the Control Room and request assistance I from the Russellville Fire Department. l l l I l WP84197-2

I l REX 84 EXERCISE MESSAGE NO. 13 O T0: Unit One Operators FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 0955 hours (T + 01:25) MESSAGE: l*********************************************l* 2 THIS IS A DRILL

  • A 1 Do not initiate actions affecting normal l
  • iiTant conditions. l
                                                                                                                    **AAAAAAAAAAAAAAAAAAAAA*AAAAAAAAAAAAAA*AAAAAAAA In addition to numerous annunciator alarms you observe the following:
1. Audible indication of main steam safeties lifting.
2. 61 control rods on P.I. panel have green lights.

O WP84222-13

rex-84 EXERCISE MESSAGE N0. 14 O v T0: Control Room Operators FROM: Control Room Controller LOCATION: Control Room TIME: 0955 hours (T + 01:25) MESSAGE: *********************************************** A THIS IS A DRILL l A Do not initiate actions affecting normal l plani conditions.

  • AAAAAAAA444AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA The following annunciators are in alarm:

K01 K02 K05 K09 7-

  • Diesel Gen.
  • 500 KV Bkr
  • Turbine
  • RCS Pressure

(' '3) 1DG 2 5114 Trip Trip Hi/ Low Trip

  • 500 KV Bkr
  • EH System
  • Diesel Gen. 5118 Trip Control Power K10
                                                                    ~~-

10G 2

  • 6.9 KV Bus Off Not Avail. Feed Bkr
  • Service Water
  • Diesel Gen. Trip K07
                                                  --~

Pump Trip 10G 2 ACB

  • 6.9 KV Bus
  • Reactor Trip Fall Autoclose Auto Transfer
  • Feedwater
  • CRD System Power
  • 480 V MCC B55
  • 4.16 KV Bus Reactor Off
          -856                  Feed Bkr.           Limited
  • React. Prot.

Undervoltage Trip

  • Unit Master System Trouble
  • 480 V ES Bus
  • 4.16 KV Bus in Tracking
  • CRD Motor Power Undervoltage Auto Transfer
  • Mn FW Pump Off
  • Load Center
  • 4.16 KV Bus IP1A Turbine
  • HPI Pump Trip Trans. Bkr IA4 Lockout 1K2A Trip Trip Relay Trip
  • DC Bus 102 K08 Charger trouble K04
                                                    ~~~
  • Inverter 1Y22
  • RCP 1P32 Trouble
  • Generator Seal Water .
  • Inverter 1Y24 Lockout Flow Lo l Trouble Trip
  • RCP's Total I
  • Computer Inverter Seal Flow Lo i Trouble '
 ,-s
  • Inst. AC Panel Y2 Undervoltage l U;

t l WP84222-8 I

rex-84 EXERCISE MESSAGE N0. 15 l l ( 1 t . TO: Unit One Operator 1 , FROM: Control Room Controller t LOCATION: Unit One Control Room i TIME: 0957 hours (T + 01:27)

'                                                                                                                                                                                                         l i

MESSAGE: l********************************************** i i THIS IS A DRILL i a

                                                                     ;* Do not initiate actions affecting normal l                                                                                       ,

plant conditions. l t AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA ' J l l i () Simultaneously, with starting "B" Hake up Pump a loss of indication and control of the major portions of the safety related " green" division system has just occurred. { 1 I I i I l WP84222 25

rex-84 EXERCISE f1ESSAGE NO. 16 l'D V T0: Control Room Operators FROM: Control Room Controlter LOCATION: Control Room TIME: 0957 hours (T + 01:27) MESSAGE: **************"******************************** THIS IS A DRILL *

  • A Do not initiate actions affecting normal l*
ETaREconditions.

AmAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA The following ADDITIONAL annunciators are in alarm: K01 K02 K07 ()

  • Diesel Gen.

10G 1

  • 4.16 KV Bus 1A3 Lockout
  • Steam Gen.

1E 24A Trio Relay Trip Lo level

  • Diesel Gen. Limit 10G 1
  • Steam Gen.

Not Avail. 1E 240

  • Diesel Gen. Lo Level IDG 1 ACB Limit Fail Autoclose
  • Inst. AC Panel Y1 Undervoltage
  • Inverter 1Y11 Trouble
  • Inverter 1Y13 Trouble m

WP84222 9

hex-64 CONTINGENCY MESSAGE NO. 2 O l TO: Unit One Operators l FROM: Control Room Contro11 - LOCATION: Unit One Control Room TIME: 0957 hours (T+01:27) , l 1 l i l MESSAGE:  ?********************************************** l l A THIS IS A DRILL 2 f

                                  ; Do not initiate actions affecting normal ;
                                  ; ETai1Tconditions.                                                                                                       2 AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA J

l Attempt to start the "B" Make-Up Pump from the A-3 power supply. WP8419/-1 l l

REX-84 , CONTINGENCY MESSAGE NO. 3 i i i T0: Shift Supervisor FROM: Control Room Controller LOCATION: Unit One Control Room 4 TIME: 1000 hours (T + 1:30) i MESSAGE: l*********************************************!* R THIS IS A DRILL A

; Do not initiate actions affecting normal  ;
pIanE conditions. i AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA4AAAAAA I '

I j Direct operators to reset lockout of A-3 Bus and to re energize A-3 Bus. 1 4 I l 1 WP04197-3

rex-84 CONTINGENCY MESSAGE N0. 4 n v TO: Unit One Shif t Supervisor FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 1008 hours (f + 01:38)  ; i MESSAGE:  ;*********************************************; A THIS IS A DRILL 2 A i Do not initiate actions affecting normal i

                   ; pTant conditions.                                        ;

AAAAAAPAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA*AAAAAAA i i i Request immediate support to restore the "B" Make-Up Pump from the A-3 Bus. i i l l 1 i l l O l WP84197-4 i

    =

rex-84 EXERCISE MESSAGE NO. 17 f) U T0: Control Room Operators FROM: Control Room Controller LOCATION: Control Room TIME: 1010 hours (T + 01:40) MESSAGE: *********************************************** A THIS IS A DRILL

  • A Do not initiate actions affecting normal pia E conditions. 2 ARRRAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA The folicwing ADDITIONAL annunciators are in alarm:

K01 K09 K10 K11 (m) _,

  • Steam Gen.
  • Pressurizer * "SLBIC"
  • LP Injection IE 24A Level Trouble Flow Loop A Level to Lo Lo
  • Ch 1 Hi Lo
  • Main Steam
  • Low Margin HP Injection
  • Lo Pressure Press to Sat. Temp. Flow Hi Lo Injection Ch 3 Hi Lo Channel A/B
  • Ch 2
  • Hi Pressure
  • RC Press. HP Injection Injection Ch 1 Lo Lo Flow Hi Lo
  • Pri Makeup
  • Pri Makeup Pump IP36A Pump 1P36B ES Failure ES Failure
  • LP Injection K12 Flow Loop B Hi Lo
  • EFW Pump
  • Pri Makeup P7A Disch.

Pump 1P36C Press. Hi Lo ES Failure

  • EFW System
  • Lo Press Actuation InjectionCh4
  • Hi Press Injection Ch. 2 c'

WP84222-10

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

EXERCISE MESSAGE NO. 18 TO: S.A.A. FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 1010 hours (T + 01:40) i MESSAGE: **********************************************! THIS IS A DRILL i A A Do not initiate actions affecting normal l pTa E conditions. O AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA*AAAAAAA I

  ,       A phone call reports " load roaring noise and steam filling the 335' level of the reactor auxiliary building." Caller was very excited and did not give his name.
O 4

i t O WP84222-7

HEX-84 C0f4TINGEf1CY MESSAGE fl0. 5 O T0: Unit One Operators t FROM: Control Room Controller LOCATI0ft: Control Room TIME: 1011 hours (T + 01:41) MESSAGE: ***********************************************

                                                      ;                   THIS IS A ORILL                                                              l A                                                                                                A l Do not initiate actions affecting normal 0 0 pTant. conditions.                                                                             2 AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA Stop all RCP's when margin-to-saturation is lost.

4 o l WP84197-5 l l l 1 l

rex-84 CONTIt.GENCY f4ESSAGE NO. 6 O T0: Unit One Operators FR0ft: Control Room Controller LOCATION: Unit One Control Room TIfiE: 1012 hours (T + 01:42) ffESSAGE: **********************************************!

= THIS IS A DRILL
  • Do not initiate actions affecting normal
  • l pTant conditions.

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA ' () Feed the "B" 0TSG to 95% on the operate range level indication using the EFW system. (A-4 is deenergized at this time). 4 1 J O,4 WP84197-6

REX-64 CONTINGENCY MESSAGE NO. 7 O LJ TO: Unit One Operators FROM: Control Room Controller LOCATION: Unit One Control Room

TIllE
1010 - 1036 hours (T + 01:40)

MESSAGE: 2********************************************** 0 A THIS IS A DRILL 2 Do not initiate actions affecting normal 2

                                                         ; pTant conditions.
  • AAAAAAA*AAAAAAAAAAAAAAAAAAAAAAAAAAAAA**AAAAAAAA i

Do NOT open the ERV until a make up pump is operable. 1 i

\                                                                                           ,

1 I O LJ WP84197-9

REX-84 l CONTINGENCY MESSAGE N0. 8 T0: Unit One Operators FROM: Control Room Controller LOCATION: Unit One Control Room TIffE: 1010 - 1036 hours (T + 01: 40) MESSAGE:  ;********************************************** ) THIS IS A DRILL  ;

                                                                                                                                                ; Do not initiate actions affecting normal     2 piant conditions.                          O MAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA I

Do not start any RCP's unless the criteria of 1202.01, Inadequate Core Cooling Tab are met. i 1 1 4 i

                                                                                                                                                                                         ~

4 I I i i O WP84197-7

l

l. REX-64 CONTINGENCY !!ESSAGE NO. 9 O

l l l TO: Unit One Operators l l FROM: Control Room Controller LOCATION: Unit One Control Room  ! TIME: 1010 - 1036 hours (T + 01:40) MESSAGE: ***********************************************

  • 0 THIS IS A DRILL
  • A A Do not initiate actions affecting normal i
                                                                                                               ; iiTant conditions.                                                          :

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA Do NOT depressurize the "B" OTSG. i l ( . O WP84197-8

l _ rex-84 EXERCISE MESSAGE NO. 19 O l l T0: Fire Brigade Leader / Fire Team Leader f i FROM: Controller l LOCATION: Scene of the Fire (Outside A-4 Switchgear Room) I l l TIME: -1025 hours (T + 01:55) I l l MESSAGE: ********************************************* . 2 A THIS IS A DRILL  :,  ! 2 Do not initiate actions affecting normal l* ETaEIconditions. AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA l f Attempts to extinguish fire are successful. O Damage assessment indicates A-4, and inverters are completely des-I troyed. B-6 has minor superficial damage. ) } MCC-55 and 56 untouched. 1 l l t ! WP84222-29

l HEX-84 l EXERCISE MESSAGE NO. 20 i O l ( T0: Electrical Maintenance Superintendent i FROM: TSC Controller (By telephone if necessary) [ LOCATION: Electrical Maintenance Superintendent's Of fice TIME: As appropriate (-1045 hours) i MESSAGE:  ;********************************************** i !

  • i l

a THIS IS A DRILL la t

                                          ; Do not initiate actions affecting normal      *

! l pla T conditions.  ; l l namnan*manamannanaannannannananmaman I  ! ! l Report from electricians is that A-4 bus is not recoverable. However. B-6 bus could be checked out (to verify that no grounds - exist) within 2-4 hours. O t I i i O I l WP34222-18 i \  ! l l  !

rex-64 , EXERCISE MESSAGE NO. 21 l l lO l t ! TO: Electrical Maintenance Superintendent ' FROM: TSC Controller (Oy telephone, if necessary) i I LOCATION: Electrical ttaintenance Superintendent's office As appropriate (-1045 hours) Tif1E: I i i l l-tESSAGE: *************************"********************  ;

                                                                                                                                                                                                                                                                   ;                THIS IS A DRILL                !     l 4                                               4     .
Do not initiate actions affecting normal * '
pTa s conttitions.

4444444444444444444444444444444444444444444444A I i Report from electricians is that, the work required to power the "B" decay heat pump from the "A" Decay Heat Pump breaker will take about 3 to 4 hours to complete, l o l I l I l I 1 lO WP84222 16

REA-e4 CONTINGENCY MESSAGE fl0. 10 0 TO: Unit One Operators FR0ft: Control Room Controller LOCATION: Unit One Control Room TIllE: 1036 hours (T + 02:06)

   !!ESSAGE:        *******""*********"**"********************
l. THIS IS A DRILL Do not initiate actions affecting' norm.11
BTa *
                 . a n e n .F. . .c.o... n.d. .i .t .i o.n
                                         .n==an=====       s a..............

Dumo one RCP in the "B" loop. t lO l WP84191 10 t _w

REX-84 CONTINGENCY MESSAGE NO. 11 O T0: Unit One Operators FROM: Control Room Controller LOCATION: Unit One Control Room TIME: 1041 hours (T + 02:11) MESSAGE: *********************************************** i THIS IS A DRILL i i Do not initiate actions affecting normal i i Mantconditions..

                       ***********************************************i Start one RCP in each loop.
                                                                                                   .s s

a ' ss

                                                                                          .   -3 0                                                                              .\,-

x,, WP84197-11 a

                                                                                 .N              _3

REX-84 EXERCISE MESSAGE NO. 22 O TO: Unit One Operators FROM: Electrical Maintenance LOCATION: Unit One Control Room TIME: 1042 hours (T + 02:12) MESSAGE: *********************************************** i THIS IS A DRILL s s n Do not initiate actions affecting normal  ;

                                             ; pTant conditions.                             O nnssannsnnsnsnssssssannnssssssss***nsssssssssen Efforts to restore the "B" Make-up Pump from the A-3 bus is complete.

i, s7) "B" Make-up Pump is now operable. s

          '\
              > \

x,

  .( (,_~1':,      '

j' .

                                   ,                       WP84222-29 4
                                       .(

i k REX-84 i ! CONTINGENCY MESSAGE NO. 12 () 3 Unit One Operators T0: FROM: Control Room Controller , LOCATION: Unit One Control Room TIME: 1042 hours (T + 02:12) l MESSAGE: i*********************************************2 i THIS IS A DRILL i i Do not initiate actions affecting normal i

i pTant conditions. i ll l

.l l Open the ERV and start the "B" Make-Up Pump. 1 l l - 1 o I i

                                                                                                                )

l hf r .{*l{ l l

                                                                                                          ~

WP84197-12 s (

                 --n..-,    -
                                                                             .   . ,    ,     e

REX-84 EXERCISE MESSAGE N0. 23 U T0: Unit One Operators FROM: Control Room Controller LOCATION: Unit One Control Room TIME: When decision is made to declare a Plant Evacuation MESSAGE: l*********************************************2 THIS IS A DRILL 0 l* Do not initiate actions affecting normal l pTant conditions.  ; If a Plant Evacuation is necessary do not simulate any actions. All plant personnel using the Main Guard House should evacuate to the South Parking Lot. All plant personnel using the Secondary Guard House (-)) m should evacuate to the West Parking Lot. Do not evacuate to the ECC. c) l WP84222-17 l

REX-84 ). EXERCISE MESSAGE NO. 24 9 l ()- 1 T0: Electrical Maintenance Superintendent , FROM: TSC Controller (By telephone if necessary) ! LOCATION: Electrical Maintenance Superintendent's Office i TIME: 1230 hours (T + 04:00) i - i l 1 MESSAGE: (*********************************************! i THIS IS A DRILL i

  • Do not initiate actions affecting normal i i 2 plant conditions.
                                **********************************************s*

l B6 repairs complete. () l ) i .i i r L A a d l 1 I

                                                                                       .=

4 WP84222-19 > I l

           ~

1 i

REX-84

CONTINGENCY MESSAGE NO. 13

() TO: Electrical Maintenance Superintendent

!                                     FROM:                   TSC Controller (By telephone if necessary) i l

LOCATION: Electrical Maintenance Superintendent's Office TIME: 1300 hours (T + 04:30) i MESSAGE: $*********************************************$ i THIS IS A DRILL i A A s Do not initiate actions affecting normal i i pTant conditions.  ; l

                                                              ***AAAAAAAAAAAAA****AAAAAAAAAAAAAAAAAAAAAAAAAAA                                                                                     !

l t

                                      "B" Decay Heat Pump may now be powered from the A-3 Bus.

i i 5 0 4 1 6 i V 6 4 e+

                                                                                                                                                                                            .. [
                                                                                                                                                                                   < qy , '

WP84197-13. 6

  • f
      -,-e-.---  -.- . , ,   -e  -
                                                              ._,__.-w._   m  r ,,    m._  .,,,,..,m.mm-,--           ..---e,--     .- ..m. . -      #+ - , .-    --rw.., v,-      rve--*     1
                  . . _ _ _       -_.            ._   _               __     -.   -            . _ =

REX-84 CONTINGENCY MESSAGE NO. 14 O T0: Incident Response Director FROM: ECC Controller i LOCATION: ECC TIME: As Deemed Necessary r MESSAGE: i*********************************************!

                                            !a              THIS IS A DRILL                  i i Do not initiate actions affecting normal       2 i pTant conditions.                              ;

, assn *ns***ssanss**ssrs*sn****ssss**nn**nns**nks - () If a decision has been made to evacuate the ECC (or any portion of it), simulate actions only. Make ECC staff and press aware of what actions would occur during an ECC evacuation. Since ECC evacuation was not an objective of this year's exercise, maintain ECC operations for the duration of this exercise at the Training Center. i l if% WP84197-14

                                                                                ~
'_____________m__

REX-84 EXERCISE MESSAGE NO. 25

 ,~

10: Recovery Team Leader FROM: Onsite Radiation Team Controller LOCATION: Recovery Team Assembly Area TIME: When recovery team is formed (~1300 hours) MESSAGE: 2********************************************** i THIS IS A DRILL i i Do not initiate actions affecting normal i i plant conditions.

                     **********************************************l*

DO NOT simulate the re-entry. Enter the Reactor Auxiliary Building, but due to ALARA considerations DO NOT make an entry into the "B" Decay Heat Vault. Terminate the re entry at the door to the "B" Decay Heat Vault. O I \ %. / WP84222-15

rex-84 EXERCISE MESSAGE NO. 26 ( ~. \_.) TO: Re-entry Team FROM: Onsite Radiation Team Controller LOCATION: At the door to the "B" Decay Heat Vault TIME: ~1325 hours (T + 04:55) MESSAGE: s********************************************** l* THIS IS A DRILL 0 Do not initiate actions af fecting normal l plant conditions.

                     **********************************************i*

Lineup for "B" decay heat pump suction is complete. O /O L d \g' WP84222-14 1

l REX-84 EXERCISE MESSAGE NO. 27 l 1 v T0: Shift OPS Supv./ Recovery Manager /IRD FROM: Lead Controller LOCATION: Control Room /TSC/ECC TIME: ~1500 hours (T + 06:30) MESSAGE:  ;*********************************************2 i* THIS IS A DRILL 2

                          ** Do not initiate actions affecting normal        i PIant conditions.
                           **********************************************0*

For approximately the next 1l' hours carry out actions to downgrade (if appropriate) and to demonstrate recovery and re-entry capabilities. Assume: () 1. It is now 24-hours later. (~1500 March 22, 1984)

2. The radiation levels in the Reactor Auxiliary Building have been reduced to acceptable levels such that an entry could be made.
3. All protective action reccmmendations initially issued are still in effect.

PLANT CONDITIONS:

  • Plant is stable
              *   "B" decay heat system is in operation
  • RCS loops are drained down to the level of the RCPs
  • RCS temp. is 80 F
  • RCS pressure is O psig
              *   "A" 0TSG pressure is 0
              *   "A" OTSG level is 240" w/

WP84222-21

REX-84

EXERCISE ltESSAGE NO. 28 O

t ! T0: Offsite Monitoring Supervisor ! FROM: ECC Controller [ LOCATION: ECC

TIME:

1600 hours (T + 07:50) s i j MESSAGE: 2*********************************************s i

THIS IS A DRILL .i i *
  • i l Do not initiate actions affecting normal l 0 pTant conditions.  ;
j. ***********************************************

1 1 l i All field monitoring results now indicate background levels. h

O
l
                                                                                                                                                                                                                        'k i1 1

I 1 f l 1 i I, I r , i

O 1 i

1. WP84222-20

REX-84 EXERCISE MESSAGE NO. 29 O) G T0: Initial Response Director / Recovery Manager FROM: Lead Controller LOCATION: ECC/TSC TIME: 1700 hours (T +09:30) MESSAGE: 0*********************************************0 0 THIS IS A DRILL s A A l* Do not initiate actions affecting normal

  • I pTant conditions.  ;

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA The exercise is now terminated. Announce over PA systems to advise all personnel. O v I i WP84222-12

O d V. APPENDICES e 4 0 ( WP84210A

 ~ ~      ~ - - - - . _ - . . _ . - _ _ _ _ _ _ _ _ _ _ _ _ _ _      - - - - _ _ _ _ _ _ _ _ _ _ _ _              _ . _ _ _
     -_ _                u_ m ._- _a_ ~~

O APPENDIX A DISABLED COMPONENTS l l i O I I WP84210A 1 O

A-4

  • Service Water P4C
  • Service Water P4B
  • RB Spray P35B
  • Decay Heat P34B
  • MU Pump P36C
   -
  • MU Pump P36B 1

O 0 O WP84214 O

1 l l l B-6 480 VOLT LOAD CENTER

  • RB Cooler VSFF1-1C
  • Control Room Chiller VCII-2B
  • CRD 480 Supply
  • Switchyard Supply
  • RB Cooler VSFr!-ID O

l' l I I l O l WP84214

_ . - _ . . . _ . _ _ _ . . _ . . _ _ _ _ . ~ _ _ _ . . . . . _ .__ .___ F DISABLED MCC-55 AND 56 COMPONENTS o i j

  • VUC-13B Evap. B1.ower i
  • VUC-13A Evap. Blower l
  • VElB Cond. Unit I
i
  • VEIA Cond. Unit
  • Spent Fuel Pool Cire. Pump PM-40B
  • RC Pump Seals Inlet Iso. Valve CV-1206 l
  • Comp. Inverter Y-26

{

)
  • Emer. FW Pumps Crossover Valve CV-2814 l
;
  • CV-3809, SW to E-39B and VUC-7B '

1 l

  • Boric Acid Pump PM-39A i

I

  • ES Switchgear Rm. Unit Cooler VUCM-2A 1

5 ,

  • CV-2420 "B" Core Flood Vent Valve O - ES Switcasear Beem unit Ceeier vuCM-2C l
 !
  • CV-2419 "B" Core Flood Discharge Valve l  !
  • Boric Acid Pump PM-39B

]

  • Primary Makeup Iso. Valve CV-1234 i

j i

                   *         "A" Core Flood Vent Valve
)
  • Instrument Air Dryer, M-1 1

j

  • Battery Charger, DOS a ,

j

  • Turb. Gen. Bearing Lift Pump, PM-76 i
  • Turb. Gen. Emerg. Bearing Oil Pump PM-20
  • RCP Backup Back Stop Lube Pump PM-82A

] j

  • RCP Backup Back Stop Lube Pump PM-82B 1

j e RCP Backup Back Stop Lube Pump PM-82C

  • i
  • RCP Backup Back Stop Lube Pump PM-82D i O 1

WP84214 l

i . DISABLED MCC-55 AND 56 COMPONENTS

  • Turbine Generator Turning Gear, KM-6 i t
  • Control Room Air Emergency Filter Fan VSFM-9
  • RB Elevator, MM-6
  • Control Room Air Emergency Cooler VUCM-9 i

j

  • Computer Inverter Transfer Switch Y-25 1

1

  • Computer Inverter Y-25 i
  • Auxiliary Building Lighting Panel IPC

!

  • Lighting Transformer XL-7

{

  • Primary Makeup Pump Aux. LO Pump PM-64B t

!

  • Primary Makeup Pump Rm. Cooler VUCM-7B I

[

  • DH Removal Iso. Valve CV-1404 j
  • Service Water Pumps, Discharge to ACW Loop CV-3643

)()

  • CRD Cooling Water Iso. Valve CV-2235
  • CV-2415 "A" Core Flood Discharge Valve

[ j

  • Prz. Heater RUB-14 1
  • Control Room Emergency Standby Air Filter Fan 2VSF-9 i

i. i 1 i 1  ; .I 4  ! i i I l(2) i i I 1 1 WP84214 I i

                                                                                                                                                 .l
  , _ _ _ _ . _ _ _         m_ __ _ _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ _              ______m._____

l [ MOTOR CONTROL CENTER B61

  • RCP Seal Return Iso. Valve CV-1274 l
  • Makeup Letdown Cooler Iso. CV-1221
  • DH Loop B to RCS Iso. CV-1400
  • RB Sump Iso. CV-1415
  • BWST Outlet Block CV-1408
  • RB Sump Iso. CV-1406
  • RB Spray Loop B Discharge Iso. CV-2400
  • MS "B" Atmos. Dump Iso. Valve, CV-2619
  • CFT, T2B, Bleed Valve, CV-2418 Emergency Feedwater Pump P-7A Condensate Supply, CV-2802
  • Piping Heat Tracing
  • Emer. FW Pump P-7A SW Valve, CV-2806

()

  • SW Loop II Supply to ICW Coolers CV-3811
  • Decay Heat Cooler E-35A SW Supply CV-3821
  • SW Pumps Disch. to SW Loop II CV-3641
  • Emer. FW Pumps SW Valves CV-3851 s

Letdown Coolers ICW Return Iso. CV-2215 CRD/RCP ICW Return Iso. CV-2221 NA0H Tank Disch. Valve CV-1617

  • Primary MU Pump Recire. Valve CV-1300 l

l

  • DG2 Soak Back Pump P-106B3 1
  • VCH-4A Compressor
  • RB SW Cooling Coil Inlet Iso. Valve CV-3813
  • Instrument Air Compressor CM-2B '

l WP84214 ) e

_ . _ . _ ._. ._. _._- _ _.. . . . _ . _ . _ . . _ _ . _ .._._._ . _ . = _ .. . _ . _ . _ l MOTOR CONTROL CENTER B61  !

  • Diesel Generator #2 Air Compressor CM-4B2
i j
  • Diesel Generator #2 Air Compressor CM-4B1  !

2

                    *'         Diesel Generator #2 Oil Circ. Pump PM-106B2
  • Diesel Generator Fuel Transfer Pump PM-16B 3
  • Primary Makeup Pump Auxiliary Lube Oil Pump PM-64C
  • Diesel Generator #2 Water Heater
  • Inverter Y22 >

i

                             ~ Diesel Generator Room Exh. 123 Fan VEFM-24C b

l Diesel Generator Room Exh. Fan VEFM-24D Steam Generator E-24B FW Iso. Valve CV-2630 *

  • Relay Room Unit Cooler VUCM-4B 1
  • Decay Heat Removal Unit Cooler VUCM-IC j
  • Decay Heat Removal Unit Cooler VUCM-1D

(} f J

  • Emergency FW Auto. Recire. CV-2816
                   *          "B"  Battery Room Cooler'VUC-14A i                           North Elec. Penet. Room Cooler VUC-14B
  • Steam Gen. E-24B, EFW Valve CV-2620
 '                                                                                                                                                                                              i
  • ERV Block Valve, CV-1000 t
 )
  • Battery Charger D04
  • Instrument AC Transformer X6B i

4

  • Pzr. Proportional Htr's RUB-38 and RUB-39 I
!
  • Inverter Y24 t
 !
  • Battery Room Exh. Fan VEFM-34 HP Injection Loop B Iso. Valve CV-1227 d
  • HP Injection Loop B Iso. Valve CV-1228 4

WP84214 O _..___.____._________________1_.__ _______ _ _ _ _ _ _ _ _ _ . _ _ _ . _ _ _ _ _ + _ _ _ _ _ _ _

MOTOR CONTROL CENTER B62 O i

  • RB Backdraft Damp CV-7472
  • DH Room Cooler, VUC-ID, SW Inlet CV-3800
  • CV-3810, SW to E-39C & VUC-7C
  • Stack Rad. Monitor RE-7400
  • Steam Gen. E24A Sampling Iso. CV-1820
  • RB Bypass Damper SV-7412
  • Service Water System Crossover Valve CV-3640
  • Service Water System Crossover Valve CV-3642 i

!

  • D.G. Jacket Cooler E28B SW Supp. CV-3807
  • DH Room Cooler, VUC-1C, SW Inlet CV-3802
  • Primary MU Pump Rm. Unit Cooler VUCM-7C
  • Decay Heat System Rad. Monitor RE-3810 4

()

  • Service Water System Radiation Monitor RE-3815 Emergency Feedwater Pump Turbine Steam Supp. CV-2617 4
  • Sluice Gate SG 6
  • Rx. Bldg. Fire Water Iso. Valve CV-5611 t
  • Steam Generator E24B Sampling Iso. CV-1826 1
  • Switch Gear Room Cooler VUC-2D
  • Sluice Gate SG-7
  • RB Bypass Damper SV-7413

{

  • Sluice Gate SG-2
  • OTSG, E-24A, Main FW Block Valve, CV-2625 l
  • OTSG, E-24B, Low Load Block Valve, CV-2674 i
  • Decay Heat Return Iso. Valve CV-1410 0 1 WP84214

MOTOR CONTROL CENTER B63 O

  • Standby H9 Purge Heater VEH-6B
  • Penetration Room Exhaust Fan VEF-38B
  • CV-2133, Penetration Room Filter Discharge
  • CV-2126, Penetration Room Filter Discharge
  • H9 Purge Supply Fan VSFM-30B
  • H9 Purge Exh. Fan VEF-37B
  • CV-7445, H9 Purge Supply Iso.
  • CV-7444, H@ Purge Supply Iso.
  • CV-7449, H0 Purge Supply Iso.
  • CV-7452, VEF-37B Suction
  • CV-7448, H9 Purge Exh. Iso.
  • Emergency FW Pump Turbine Steam Supply CV-2666 O -

cv-74ss. a.a. Air e <t. ne iter exa.

  • Sluice Gate SG-4
  • OTSG E24A Emer. FW Bypass, CV-2627
  • Unit 2 Side of Cold Sample Room MCC-B-64 O

WP84214 _J

 .  ,. . -. -.. _   = . -.           . - _    . _ -___- - - -         ...    . . _       .-  . . .

I I YO2 120V VITAL AC O  !

  • PA and Plant Intercom System GAI '
  • Paging and Pax Telephone System I i
  • Main Trans. SC and Spare Gas Monitor
  • Signal Converter Power "C23"
  • Pressurizer Heaters Control "C04" '
  • Signal Converter Power Supplies "C27" ,
  • i MU Filter Condensate Water Valve "C04" '
  • ICW Pump Valves "C30"
                                                                                                   +
  • ICW Pump Auxiliary Control "C09" l 4
  • Sodium Analyzer Panel "C302"
  • Main FWP Trip Control "C02"
  • Sodium Analyzer Panel "C302" t O - n i rWe trip coutret "co2"
  • Control Power in "C26"
  • Condenser Steam Dump Valves "C02" Air Particulate Monitor "C360" Main FW Pump PIA and PIB Suction and Discharge Control Cir-cuit "C03" and "TB440" i

L i , i I l l lO l . WP84214 ' 1 -

                                                                                                    \

t . l

3

/

i i YO2 120V VITAL AC  ! ()) i i

  • Evacuation Warning System "C25 '

i

  • Emergency Feedwater Supply Auto Transfer "C12"  !

Evacuation Warning System "C25"

  • RCP, P-32C & D Speed Control Panels "C158" and "C159" I
  • Radwaste Annunciator "C-112"
!.
  • ICW Makeup SV's "C-30" and "T40A" Auxiliary Relays i
  • Radwaste Panel Annunciator "C-113" l

J

  • Main and FW Turbine Auxiliary Devices "C-21"

, Radwaste Panel Annunciator "C-115 l

  • Dampers for D.G. Exh. Fans VEF-24C and D
  • ICS Fan Bus "C-46"
  • SV-3805, "C-19" 1

()

  • Non-Nuclear Instr. Back-up Supply "C-47" <

To Solor Trans. Bypass Switch XY-234 (To ICS Y Bus) C-499 RB SW Flow and C-502 DH Check Valve Pressure. i s

  • Mini Computer i j
  • i Control Room and Relay Room Emergency Control Air Isolation Valves "C-141" .I J i
  • Mini Computer  !
  • T/C Signal Converter "T08A" i

i

  • Rad. Monitoring Panel "C-24" and "C-25" 4

4 f A IO WP44214 I

    -                   -.                   _.-- - .                   . _ - . .. _ _ - - .                               . .. _=- . .. __..

P 4' i O ,i J i APPENDIX B PLANT PARAMETER DATA I 3 O I l i .I 1 l l l l i l WP84210A 4 e O _ _ . _ _ _ , _ _ .,_,.-_..___._,_______._-_-_-._m___..y, -

_ . . - . - . - . - - . _ . . . - - . . = - . ~ . _ - - - . - - . _ - . . - _ _ - . . - - . _ . . . - . . . . _ . , _ _ - . J '

                                                                                                                                          \

t J F

.                                                                                                                                          i i                                                                                                                                             i l

!O l l i  ! i [ i j The following data is information for key plant parameters obtained i i from a simulator run of the ANO scenario. This data was utilized I ) to develop ANO Unit I scenario plant parameters to obtain near real- } l istic time frames and close coordination of transient events. SPDS f j data has been developed from this information for actual display  ! j and player utilization for the exercise.  ! 1 i

i L

J I I w , ! ( 1  ! 1 i l. i O i 3  : I i t 1 l I t 4 I l t i i i i t 1 i I I  ! I i i a I - i O i i , i l f e

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

                                                                                                                ~

g i ' I t. 000 t n U e 8s 13.125_ E t I1 i; ,

                                            .                                                                                                                                                              g 3

88 258 2 - '-

                                                                                                                                             /

E PLOT NUMBEfl - I w n S.375. C i s u [

7. 500_ '

l r Z l C i o tS2,_ D i o . w' u  ! C , O 3.750_  ! u I i l i 8.375, f

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e er: I e i . . . i , i i

                      .CO       3.734              7.533                            13.332                                15.476     15.970    22.764 25.553                   30.352         34.Ie6   37.S43
                                          .                                                                                  TIME ISEC1                  Ix 10 21 i

TUBE LEAK - 128 LB/SEC WITH ICC f __ -_

                                              ~

< O O O s: c:: ) 0 8s 52.s :_  ; o

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                .      3.734   7.533   31.332   I5.176     35.17: 22.764 25.553      33 352   34. 46     37.S4:

TIME ISEC1 (Y 10 23 TUBE LEAK - 128 LB/SEC HITH ICC

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                                                         -. 000         3.734 7.533   18.332   15.476     18.970 22.764 26.553      30.352  3a.a45 37.9,0 TIME (SEC1               IX 10 2:

TUBE LEAK - 128 LB/SEC WITH ICC

() f~ ks ,_)h V (- E sa. ec: a 0 5 52.sco_ 3

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                .000                                           3.794   7.535   11.332   15.176    18.370 22.764 26.553     30.352  34.846 37.940 TIME (SEC)              IX10 2:

TUBE LEAK - 128 LB/SEC WITH ICC

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l . l x b l 59.500_ 3 I & PLOT NUMBER - l o . w 5s.250_ 1 o i 57.000_ { I a. ! o o 5s.750_ 2 i o r c f c l c ! Z '

      -         54.500 o

! I t .- l 53.250 5***** i i i i e i i i

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22.764 26.553 30.352 34.146 37.940

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_ . . _ . ._.._ _ . . . ..-. __ _ . _ _. _ __ .._. _ ______ _ _ __ _- _ _ _ -_ _._ . . . _ _ _ . . . . . =. . . _ _ _ . _ _ _ i s I l i lO i I  ! t, , f s (l i

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} ' 1 i , 4 1i l , i APPENDIX C l- ! IN-PLANT RADIOLOGICAL DATA i I l I 1 1 > J s

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IN-PLANT AREA RADIATION DATA r~T U Controller Notes:

1. All data is assumed to be net data after accounting for background.
2. Areas for which data is not given or available during a time period shall be assumed to have radiation levels equal to actual, measured values at that time.
3. This Appendix consists of the following:
  • Attachment 1 Whole body dose rates (mR/hr)
  • Attachment 2 Page 1 Airborne particulate raw data (cpm above bkg.)

for the indicated sample size. Page 2 Airborne particulate concentrations (pCi/cc) corresponding to player calculations for the given sample size and efficiency of 10%.

  • Attachment 3 Airborne gaseous concentrations (pCi/cc) cor-responding to anticipated player calculations for the given sample size and efficiency of 10%.

p) (_

  • Attachraent 4 Page 1 Airborne I-131 raw data (cpm above bkg) for the indicated sample size corresponding to antici-pated player calculations for the given sample size and efficiency of 5.5%.

Page 2 Airborne I-131 concentrations (pCi/cc) corres-ponding to anticipated player calculations for the given sample size and efficiency of 5.5%.

  • Attachment 5 Radiological data for particular hot spots and centrol room fot the indicated times.
  • Attachment 6 Area Radiation Monitor Date (by radiation zone)
  • Plant H.P. Maps indicate radiation zones corresponding to survey maps the appropriate zone / time combination for Attach-ments 1-5 above, which will reflect the proper radiological data parameters for that location and time.

l NOTE: All areas of the Turbine Building and all areas of the Admin-l l 1stration Building will have the same respective area radiation l l values per the appropriate times in Attachments 1 through 4. l l Emergency Control Center radiological readings for the exercise l

,-~.       l_shall be actual background.                                              l

( ) v WP84210 PAGE 2 O

lWP84210 AITACHMENT 1 l l Whole Eody Dose (mR/hr) l l ALoare Actual Background l l I i l i i i i l i i Turb i Adnt l l ZONE: l 1 l 2 l 3  ! 4 l 5 l 6 l 7 l 8 l Bidg. l Bldg. l l l Time l l l  ! I I i l l l l 1 1 I i 1 1 I I I I l I l Before 1010 l Ekg i Bkg l Bkg l Ekg l Bkg l Bkg i Bkg l Bkg l Bkg l Ekg i I i i i i i i l i i i l l 1010 to 1020 1 100,000 I offscalel 9,000 1 Ic.500 l 900 1 400 l 40 l 40 l 1I skg i i l i i I i i i i l I l l l 1021 to 1040 l 400,000 l offscalel offscale! 66,300 l 3,500 l 1,600 l 160 l 80 l 2l Ekg i

I I I I i i l I I I I l l

l 1041 to 1100 1 500,000 l offscalet offsealel 84,000 l 4,200 l 2,100 1 200 1 100 l 5l 11 I I i i i i l I I I I I l 1101 to 1120 l 600,000 l offscalel offscale! 100.500 l 5,600 l 3,490 l 340 l 170 1 5l 11 I I I I I I I I l l l 1

   -1 1121 to 1140                        l 620,000 I offscalel offscalel 105,000 l                                5,800 l         3,600 l                                              350 l                        170 l          5l          11 I                                    I                     I          I                       I           I             I             I                                                                    I          I           I           I i 1141 to 1200                       l 610,000 I offsealel offsealel 105,600 1                                5,660 l         3,520 l                                             350 l                         170 l          5l          1l l     1                                    1                     1          1                       I           I             I             I                                                                    I          I           I           I i 1201 to 1220                       l 600,000 l offscalel offscalel 104,500 l                                5,630 l         3,500 l                                            350 l                          170 l          5l          11 I                                    I                    I           I                       I           I            I             I                                                                    I          I            I           I l 1221 to 1240                       l 550,000 l offsclael offscalel 103,100 l                                5,150 l         2,600 l                                            260 l                          130 l          5l          11 1                                   1                     l           l                       1           1            I             I                                                                    I          I            I           I i 1241 to 1300                      l 500,000 I offscalel offscalel 101,700 l                                 4,690 l         2,340 l                                            230 l                          100 l          5l          1l 1                                   1                     I           I                       I           I            I             i                                                                    i          i l                                                                                                                                                                                                                                       i           1 l 1301 to 1320                      l 480,000 l offscalel offscalel 100,100 l 4,500 l         1,900 l                                             190 l                          85 l          5l          11 I                                   I                     I           !                       I           I            l             l                                                                    I          I           I           I l 1321 to 1340                       l 400,000 l offscale! offscalel 99,500 l                                  3,750 l         1,100 l                                             110 l                          65 l          5l          11 I                                    I                     I           I                      I            I            I             I                                                                    I          I           i           I l 1341 to 1400                       l 350,000 l ofiscalet of fscalel 98,800 l                                 3,290 l           700 l                                                     40 l                   35 l          5l          11 I                                    I                    i           i                       i           i             l             i                                                                    l          i           i           l i 1401 to 1420                       l 300,000 I offscalel offsealel 98,200 1                                  2,820 l           300 l                                                     20 l                   35 l          5i       skg I l    l                                   1                     1           I                       I           I             I             I                                                                    i          1           1           I l    I 1421 to 1440                      I 200,000 l offscalel offscalel 97.900 i                                   1,870 1           200 1                                                      10 1                  35 l         5l        ska l l*   I                                   i                     l           i                       i           l             i             i                                                                    l          i           i           I l 1441 to 1500                      l 100,000 l offscalel                  9,340 l 97,400 l                       930 l          190 l                                                                5l          30 l      Ekg l        Bkg l l                                   l                     l           1                       i           i            i              i                                                                    i          i           i           I l 1501 to 1520                      1     50,000 l             8,300 l     4,670 l 97,100 l                      460 l           185 l                                                                5l          30 l      skg i        skg i i

i i i I i i i l i i i i I i 1521 to 1540 l 25,000 1 4,160 i 2,340 1 96,800 I 230 l 170 i 5I 30 l skg i skg I l 1 1 I I I I I I I I I I l 24 hours later l 500 1 400 l 90 l 85,200 l 10 l 5l 5l skg l skg l Bkg I

lll i~ l ' '  ;' l lIIilIl1IIlll1lllIi1[1IlillllI1IIIlIlIllI _ c g g 5 3 8 7 0 1 3 9 0 8 8 0 2 1 3 7 0 6 c 6 6 6 6 7 6 6 5 6 5 5 6 5 5 4 3 2 3 . - 6 md k 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 _ i E dl B d y I AB n c _ i n _ O e i z c i i e li ' c llll Il 0 0 0 Il il il il llll illlIlIlIlllI1 I1 ll 5 0 5 s f c bg g 0 3 2 0 8 0 0 0 s 0 9 8 7 6 7 6 7 6 6 6 6 6 5 6 5 5 5 5 3 1 f 6 rd k 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 _ e e E ul B 1 1 l p % I TB m 0 a 1 l1lIl llllIl Ilil Il il llll il llIlIl Illl Il Illl _ s d n n c 8 2 2 0 5 0 7 6 4 4 0 2 2 2 1 2 5 7 _ c a c g 0 7 9 8 4 8 9 7 2 6 6 6 5 5 6 5 4 4 _ 6 8 k 1 5 7 9 1, 2, 3, 2, 9 1 1 1 1 1 1 1 1 1 _ d d E B _ e e I 1 1 1 1 _ s t _ a a _ B c liH 1 IlIl Il IlIl ll il llilil IlIl IlIlllIl Ilil _ c g 9 8 8 8 4 8 0 2 6 4 2 0 5 4 8 8 0 7 c 3 9 2 3 0 2 3 3 4 0 8 5 5 5 4 3 3 2 6 7 k 2, 7, E B 1 6, 8, 6, 4, 2, 9 7 6 5 1 1 1 1 1 1 I 1 1 1 1 1 1 1 i il U IlIl Il Il il il il il Il1I IlIl Il Ilil Il Il ll _

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O O O 1 (met ep )(0/c) ATTA N M 2, Page 2 l c c l (2.2E6)(vol.in ec) Airborne Particulate (pCi/cc) { l l I i ~1 -l l I I I I Turb i Acts l I ZONE: l 1 l 2 l 3 l 4 l 5 l 6 7 l 8 Bldg. l Bldg. l f I The 1 I i l 1 1 I I l 1 ( l I I i i i l I i i i I  ; i Before 1010 l Ekg l Bkg l Big l Bkg l Bkg l Bkg l Bkg l Bkg l Bkg l Bkg I I i 1 l l 1 1 1 1 1 1 I i 1010 to 1020 1 1.4 E-6 l 1.9 E-7 l 5.8 E-8 l 5.1 E-9 l <1 E-9 l <1 E-9 l <1 E-9 l <1 E-9 l < E-9 l < E-9 l l l 1 1 I i l i i i l l l l 1021 to 1040 l 9.1 E-2 l 3.5 E-3 l 3.4 E-3 l 3.2 E-4 1 4.2 E-6 l 4.1 E-8 l 5.9 E-9 l 2.6 E-9 l < E-9 l < E-9 I i i i l i I i i i l i l i i i 1041 to 1100 l 1.3 E-1 l 1.4 E-2 i 6.3 E-3 l 6.8 E-4 l 6.7 E-6 I 6.5 E-8 1 7.4 E-9 l 3.6 E-9 l < E-9 l < E-9 l l 1 i i l i i i l i i l I i 1101 to 1120 l 1.5 E-1 l 1.5 E-2 l 6.5 E-3 l 6.5 E-4 1 6.8 E-6 l 6.9 E-8 l 7.9 E-8 l 4.5 E-9 i < E-9 l < E-9 I [ l l I I I I I I I i i I ' 1 1121 to 1140 l 1.3 E-1 l 1.4 E-2 l 6.2 E-3 l 6.1 E-4 l 7.1 E-6 l 7.1 E-8 l 8.2 E-9 l 5.2 E-9 l < E-9 l < E-9 I I I I l l 1 l l 1 l l 1  ; i 1141 to 1200 1 1.2 E-1 l 1.3 E-2 1 6.1 E-3 l 5.6 E-4 l 7.6 E-6 l 7.3 E-8 l 7.4 E-9 l 5.8 E-9 l < E-9 l < E-9 l

                                                                                                                                                                                      ~

l i I I i l 1 l l l l l l 1201 to 1220 l 1.0 E-1 l 1.1 E-2 ( 4.3 E-3 l 4.5 E-4 I 8.5 E-6 l 7.5 E-8 l 6'.5 E-9 l 6.3 E-9 l < E-9 l < E-9 i  ; I i l l- l l l l 1 1 I I i 1221 to 1240 1 6.8 E-2 l 6.4 E-3 l 6.4 E-4 l 6.3 E-5 l 5.8 E-6 l 5.6 E-8 l 5.6 E-9 5.8 E-9 l < E-9 l < E-9 1  ; I l l l l 1 l I 1 l l  ! I 1241 to 1300 l 3.5 E-2 l 4.4 E-3 l 4.3 E-4 l 4.6 E-5 l 1.3 E-6 l 1.7 E-8 l 4.3 E-9 l 4.2 E-9 l < E-9 l < E-9 i I I I i i l I I i i i l i 1301 to 1320 l 1.8 E-2 l 1.5 E-3 l 1.7 E-4 l 1.6 E-5 l 8.9 E-7 l 8.2 E-9 l 3.2 E-9 l <1 E-9 l < E-9 l' < E-9 I [ l i I i 1 1 I i i 1 l 1  ! I 1321 to 1340 l 9.7 E-3 l 9.4 E-4 l 9.5 E-5 I 9.1 E-6 l 4.3 E-7 l 4.1 E-9 l 3.1 E-9 l <1 E-9 l < E-9 l < E-9 l l i l I i i l i l I i i i i  ! I 1341 to 1400 l 5.2 E-3 l 5.1 E-4 l 5.1 E-5 l 5.0 E-6 l 9.7 E-8 l 3.5 E-9 l 2.5 E-9 l <1 E-9 l < E-9 l < E-9 l 1 1 I I I l I I I I i i I I 1401 to 1420 l 2.8 E-3 l 3.0 E-4 l 3.0 E-5 l 2.9 E-6 l 4.3 E-8 l 3.1 E-9 l <1 E-9 <1 E-9 l < E-9 l < E-9 l [ l I i i i l l l l l l I 1 1421 to 1440 l 1.5 E-3 l 1.7 E-4 l 1.6 E-5 l 1.5 E-6 l 2.1 E-8 l 2.8 E-9 l <1 E-9 <1 E-9 i < E-9 l < E-9 1 ' I I i i i I I I I I I

i. I 1441 to 1500 l 8.3 E-4 l 8.1 E-5 1 7.9 E-6 l 7.8 E-7 l 8.3 E-9 1 2.6 E-9 l <1 E-9 l <1 E-9 l < E-9 < E-9 I j

!!  ! l 1 I I I i 1 l l , I i 1501 to 1520 l 4.5 E-4 l 4.1 E-5 l 3.8 E-6 i 3.6 E-7 l 6.5 E-9 l 2.3 E-9 l <1 E-9 l <1 E-9 l < E-9 l < E-9 l i l I I i i l i l i I i l i 1521 to 1540 l 2.5 E-4 l 2.1 E-5 l 1.6 E-6 l 1.2 E-7 l 3.7 E-9 l 1.8 E-9 l <1 E-9 <1 E-9 l < E-9 l < E-9 l r I i i i i l I i , I I I t

1 24 hours later l 2.2 E-9 l 1.1 E-9 l <1 E-9 l <1 E-9 l <1 E-9 l <1 E-9 l <1 E-9 i <1 E-9 l < E-9 l < E-9 I t

( _

O O O l ATTACHMEllT 3 l l l l Gaseous Activity (pCi/cc)

                                                                                 ~~

l l 1 ZOflE-1 l 2 l 3

                                                                                                -T                 I              I              I             l            l Turb       l Adm      l l     1       l              l              l   4       l    5               6        l    7              8      l Bldg.         Eldg. I I Time                             l              l              l           l                             l                          l                       [

l l I i l l 1 l l l l l Before 1010 l Ekg l Bkg Bkg l Bkg l Bkg l Bkg l Bkg Bkg ' Bkg l Bkg l l l l l l l l l 1 l 1010 to 1020 l 1.9 E-5 l 2.3 E-3 l 6.7 E-4 l 2.84E-5 l 1.45E-5 l 8.4 E-6 l 5.3 E-9 l 1.55E-9 l <1E-9 l <1E-9 I I I I I l l l l l l l 1 l 1021 to 1040 l 7.1 E+0 l 4.25E-3 1 1.24E-3 l 5.25E-5 l 2.68E-5 l 1.55E-5 i 9.8 E-9 l 1.57E-9 l <1E-9 l <1E-9 I I I I i 1 l l l l 1 1 I l 1041 to 1100 l 1.3 E+1 l 5.96E-3 l 1.74E-3 ' 7.36E-5 l 3.75E-5 l 2.18E-5 l 1.37E-8 l 1.19E-9 <1E-9 l <1E-9 I l l 1 l 1 1 1 1 I i 1 1 1101 to 1120 l 1.9 E+1 l 7.34E-3 l 2.14E-3 l 9.06E-5 l 4.62E-5 l 2.68E-5 l 1.69E-8 l 1.13E-9 l <1E-9 l <1E-9 l l l l 1 1 I I l l l l 1

                                   -l 1121 to 1140           2.0 E+1 ' 8.53E-3 l 2.46E-3 l 1.05E-5                   5.38E-5 l 3.12E-5 l 1.97E-8 l 1.32E-9 l <1E-9                      l <1E-9    l l                                ,

I l l l l l l 1 l 1141 to 1200 l 2.0 E+1 l 9.55E-3 l 2.78E-3 l 1.38E-5 l 6.02E-5 1 3.49E-5 2.2 E-8 l 1.47E-9 l <1E-9 <1E-9 l 1 1 I i l I 1 , I I I I 1201 to 1220 l 1.9 E+1 l 1.04E-2 l 3.04E-3 l 1.29E-5 6.57E-5 l 3.81E-5 2.4 E-8 l 1.61E-9 l <1E-9 l <1E-9 l 1 1 I I I I I I I I i 1221 to 1240 l 1.4 E+2 l 1.12E-2 l 3.25E-3 l 1.38E-6 l 7.03E-6 ' 4.07E-5 l 2.57E-8 l 1.72E-9 l <1E-9 <1E-9 l l l l l l 1 I I I , I i 1241 to 1300 l 7.3 Et0 l 1.18E-2 l 3.43E-3 l 1.45E-6 l 7.42E-6 4.3 E-5 l 2.71E-8 1.82E-9 <1E-9 l <1E-9 l 1 1 I I i l I i I l 1301 to 1320 l 3.9 E+0 l 7 E-5 l 5 E-5 3 E-5 2 E-6 1 E-6 5 E-9 1.8E-9 <1E-9 <1E-9 I I l 1 1 , i l l 1321 to 1340 l 2.8 E-0 1 E-6 l 8 E-7 l 7 E-7 l 6 E-7 l 5 E-9 5 E-9 l 1.5E-9 ' <1E-9 <1E-9 l l l 1 1 I I I , l l l 1341 to 1400 l 2.1 E-0 l 5 E-7 l 4.4 E-7 2 E-7 l 8 E-8 4 E-9 2 E-9 1.2E-9 l <1E-9 <1E-9 l l l 1 I i , I l l 1401 to 1420 8.1 E-1 3 E-7 l 1 E-7 8 E-8 l 5 E-8 2 E-8 2 E-9 l 1.2E-9 <1E-9 l <1E-9 l 1 1 I , I i i I l 1421 to 1440 l 4.5 E-1 8 E-8 l 5 E-8 2 E-8 1 E-8 i 9 E-9 <1 E-9 <1 E-9 l <1E-9 <1E-9 l I I I i i I l 1441 to 1500 l 3.1 E-1 ' 5 E-8  ! 2 E-8 1 E-8 ' 9 E-9 l 7 E-9 1 E-9 l <1 E-9 l <1E-9 <1E-9 I I I I I I I I i 1501 to 1520 1 2.3 E-1 l 2 E-8 l 1 E-6 l 9 E-9 l 7 E-9 l 1 E-9 l 1 E-9 l <1 E-9 l <1E-9 <1E-9 l I i l i l i l I i l I 1521 to 1540 l 1.1 E-1 1 E-8 l 9 E-9 l 7 E-9 1 E-9 l <1 E-9 <1 E-9 l <1 E-9 l <1E-9 <1E-9 l I I I I I I I l l l 24 hours later l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l < IE-9 l l

I O O O lWP84210 ATTAQDfENT 4, Page 1 I Net cpm = (pci/cc)(vol)(2.2Es)(.055) , , Aithorne I-131 (cpm above bkg) !aEIN sed *$@o IfI$EIeE I SAMPLE SIZE: l IE4cc l 1E4cc l 5E5cc l IE5cc l IE6cc l IE6cc l IE6cc l IE6cc l IE6cc l IE6cc I l l l i i i l I l l Turb i Adm i I ZONE: 1 1 l 2 l 3 l 4 l 5 l 6 1 7 l 8 i Bldg. l Bidq. I l Time l l I l l l 1 l l l l 1 1 I  ! I I i 1 1 I I I i 1010 to 1020 l 231,990 l 24 l 2 l Bkg i Bkg l Bkg i Bkg l Bkg i Bkg l Bkg I l I offscalel i I l l l l l l l l 1021 to 1040 l(8.6E+6) 1 732,600 l 39,683 l 73,260 l 879 l 211 1 10 l 20 l 139 l 97 I I I offscalel offscale! I offsealel l I I I I I i 1041 to 1100 l(1.3EP) l(1.2E7) l 915,750 l(1.3E-6) l 15,873 l 4,578 l 15 l 26 1 160 l 150 I I I offscalel I i i I i i l I l i 1101 to 1120 I(1.95E8) I offscalel 915,800 I offscalel 17,094 l 5,800 1 23 1 43 1 170 l 170 I j i l I i offscalel l i i l I I I l l 1121 to 1140 l Offscalel offscalel(1.5E6) l offscalel 25,641 l 6,410 l 29 l 51 l 200 1 185 I l .I I I I I I I I I l l I l l 1141 to 1200 l offscalel offscalel Offscalel offsealel 30,525 l 7,936 l 41 l 79 l 240 l 197 I l i I I l l I I I I I I l 1201 to 1220 l offscalel offscalel Offscalel offscalel 30,570 l 7,631 l 46 I 89 l 256 l 200 l I I I I I I I I I I I I i 1221 to 1240 l offscalel offsealci, offscalel offscalel 20,757 I 5,800 l 44 l 83 l 244 l 186 I l i I I I Offscalel offscalel i I I I I I I i 1241 to 1300 I offscalel offscalel(1.1E6) I 1.?E-6 l 14,652 l 3,358 l 42 l 76 l 200 l 154 I I I I I i l i i i i l i I l l 1301 to 1320 l offscalel offscatel 305,250 l 61c,500 l 5,250 1 1,252 1 36 l 67 l 175 l 163 I I I I i i i l l I I I I I i 1321 to 1340 I offscalel offscatel 139,260 l 366,300 l 4,157 l 1,007 l 26 l 51 l 163 l 159 l I I I offscalel i I I I I I I I i 1341 to 1400 l offscalel(2.6E6) l 122,100 l 231,990 l 2,197 l 518 l 22 l 43 1 149 l 143 i I I I I I I I I I I I I i 1401 to 1420 I offscalel 976,800 1 42,735 l 83.028 I 805 l 198 l 15 l 28 l 138 l 137 I I I I I I I I I I i i l I 1^21 to 1440 I offsealel 488,400 1 27,473 I 56,166 l 525 l 128 l 13 1 26 l 100 1 132 I I I l i I I I I I I I i l, i 1441 to 1500 l offscalel 280,830 1 12,210 l 24,420 1 256 I 61 1 10 l 20 I 98 l 125 l l l 1 I I i l I l 1 I i 1 l l 1501 to 1520 I offscalel 158,730 l 15,263 1 30,525 l 280 l 58 l 81 15 l 105 1 10s l l 1 1 I i i l i I I I I I l 1521 to 1540 1 818,000 l 73,260 1 3,663 l 7,326 l 72 l 18 l 10 l 12 1 96 l 111 1 I 24 hours later l l l l l l l l l l l l (IE6 cc vol) 1 496 l 278 l 85 l 93 l 61 l 59 l 57 l 67 l 81 1 65 1

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(vol.in cc)(.055)(2.222E ) Airborne I-131 (pci/cc) l I I i ~~ l I l l l l Turb i Adm l l ZONE: 1 2 3 4 l 5 6 7 8 Bldg. Bldg. I I Time i I l 1 i I l l 1 l l Before 1010 l Bkg Bkg Bkg Bkg l Bkg l Bkg l Bkg Bkg Bkg Bkg i i I 'i  ! l l l 1 l l l 1010 to 1020 1.9 E-5 l 2.0 E-7 2.0 E-9 <2 E-9 ' <2 E-9 l <2 E-9 <2 E-9 <2 E-9 l <2E-9 Bkg l l l 1 I l l l l l 1021 to 1040 l 7.1 E-1 6.0 E-3 l 6.5 E-5 6.0 E-5 7.2 E-7 l 6.9 E-8 <2 E-9 l <2 E-9 <2E-9 l <2E-9 I I I I I I l l l l 1041 to 1100 l 1.1 E+1 1.0 E-1 1.5 E-3 i 1.1 E-3 1.3 E-5 l 1.5 E-6 2.4 E-9 l 2.1 E-9 <2E-9 l <2E-9 I 1 l l I ,

                                                                                                                                                     !                               I             I l 1101 to 1120 l 1.6 E+1            1.5 E-1          1.5 E-3           1 1 E-3 l 1.4 E-5                1.9 E-6 l 3.7 E-9 l 3.5 E-9 l <2E-9                        l <2E-9       I I                        I               ,

I l 1 1 I I l l l 1121 to 1140 l 2.0 E+1 l 2.0 E-lj 2.5 E-3 l 2.0 E-3 l 2.1 E-5 l 2.1 E-6 4.8 E-9 l 4.2 E-9 l <2E-9 l <2E-9 l l l 1 I I I I I I I I i 1141 to 1200 l 2.0 E+1 l 2.C E-1 [ 2.5 E-3 l 2.3 E-3 l 2.5 E-5 l 2.6 E-6 6.7 E-9 6.5 E-9 <2E-9 <2E-9 l . l l l 1  ! I I i 1 1 1201 to 1220 2.0 E+1 2.1 E-1 2.5 E-3 l 2.3 E-3 2.5 E-5 2.5 E-6 l 7.5 E-9 l 7.3 E-9 l 2.1E-9 <2E-9 l l i i , I l 1 I l 1221 to 1240 l 1.9 E+1 l 1.9 E-1 l 2.0 E-3 l 1.5 E-3 l 1.7 E-5 1.9 E-6 l 7.2 E-9 l 6.8 E-9 2.0E-9 l <2E-9 l l l l 1 1 , I I I I i 1241 to 1300 l 1.8 E+1 ' 1.7 E-1 l 1.8 E-3 l 1.0 E-3 ' 1.2 E-5 l 1.1 E-6 l 6.8 E-9 l 6.2 E-9 ' <2E-9 <2E-9 [ l l l l l l l I i 1301 to 1320 1 5.3 E+0 l 5.0 E-2 1 5 0 E-4 l 5.0 E-4 l 4.3 E-6 l 4.1 E-7 l 5.9 E-9 l 5.5 E-9 l (2E-9 l <2E-9 l 1 1 I i i I I I l l 1321 to 1340 2.8 E+0 l 3.0 E-2 ! 3.1 E-4 l 3.4 E-4 l 3.4 E-6 1 3.3 E-7 4.2 E-9 4.2 E-9 <2E-9 <2E-9 l l l . l l I i 1341 to 1400 2.1 E+0 l 2.1 E-2 l 2.0 E-4 l 1.9 E-4 l 1.8 E-6 l 1.7 E-7 l 3.6 E-9 l 3.6 E-9 <2E-9 l <2E-9 l I I I I l l I I l 1401 to 1420 8.1 E-1 l 8.0 E-3 l 7.0 E-5 l 5.8 E-5 6.6 E-7 l 6.5 E-8 2.4 E-9 i 2.3 E-9 ' <2E-9 <2E-9 l l 1 l l l , i l l 1421 to 1440 l 4.4 E-1 l 4.0 E-3 l 4.5 E-5 l 4.6 E-5 4.3 E-7 1 4.2 E-8 2.1 E-9 l 2.1 E-9 l <2E-9 1

                                                                                                                                                                                        <2E-9    l
  . I                         I             I                 I                I                                 i                i i                                l l 1441 to 1500                  2.3 E-1          2.3 E-3 l 2.0 E-5 i 2.0 E-5                         2.1 E-7         2.0 E-8      ' <2 E-9          <2 E-9  ~ <2E-9                 <2E-9    I I                                       l                 l                l l

l 1501 to 1520 1 1.3 E-1 l 1.3 E-3 1 2.5 E-5 l 2.5 E-5 ' 2.3 E-7 l 1.9 E-8 l <2 E-9 l <2 E-9 l <2E-9 l <2E-9 I I , I I I I I I I I I i 1521 to 1540 l 6.7 E-2 l 6.0 E-1 6.0 E-6 l 6.0 E-6 l 5.9 E-8 5.9 E-9 l <2 E-9 l <2 E-9 l <2E-9 <2E-9 I I l l I 1 1 I I I I 24 hours later l 4.1 D-9 l 2.3 E-9 ! <2 E-9 j <2 E-9 l <2 E-9 l <2 E-9 l <2 E-9 l <2 E-9 l <2 E-9 l <2 E-9 l

                                                                                                                                                                                       -_-___________D

ATTACHMENT 5 ,7 \ s/ m Radiological Data for Hot Spots & Control Rooms Location / Description Time Parameters Aux. Bldg. Sump Pumps After 1020 600R/hr on contact Aux. Bldg. Sump Transfer After 1020 600R/hr piping is waste tanks Waste Tanks T-20A & B After 1020 600R/hr on contact Penetration Area Ventilation After 1020 50R/hr fans and ductwork Penetration Room Exhaust 1010-1100 50R/hr charcoal filters 1100-1200 125R/hr 1200-1300 300R/hr () 1300-1400 750R/hr 1400-1500 1000R/hr Contral Rocm 1010 1540 <1 mR/hr

                                                           <1E-9 pCi/cc of I-131 (35 cpm for 106 cc simple)

\_ WP84210 PAGE 1 e

i ATTACHMENT 5 (continued) Third Floor Administration Building CAM Trend Data (cpm above background) Time Particulate (cpm) Gaseous (cpm) Before 1010 BKG BKG 1010 to 1020 BKG BKG 1021 to 1040 BKG BKG l 1041 to 1100 BKG BKG j 1101 to 1120 BKG BKG

!      1121 to 1140                                      BKG                                BKG 1141 to 1200                                      BKG                                BKG

, 1201 to 1220 BKG BKG () 1221 to 1240 BKG - BKG 1241 to 1300 BKG BEG 1 1301 to 1320 BKG PKG l 1321 to 1340 BKG BKG

 ,     1341 to 1400                                      SKG                               BEG 4

( 1401 to 1420 BKG BKG l 1421 to 1440 EKG BKG 1441 to 1500 BKG BKG 1 1501 to 1520 BKG BKG 1521 to 1540 BKG BKG f 24 hours later BKG BKG l

'                                                                                                  ~

WP84210 PAGE 2 0

i t ATTACHMENT 6 AREA RADIATION MONITORS I

  • Zone for Corresponding i Number Detector Location Detector Data with Time RE-8004 General Area 5 i Elev. 317' f

RE-8011 Make-up Pump Area 3 Elev. 335' 3 RE-8012 Elevator 3 Elev. 335' - l l RE-8005 Sample Room Hall 5 ,

!                                 Elev. 354'                                                                             >

l RE-8006 Radiochem Lab 5  ! 1 Elev. 354' . , RE-8007 Stairway Vestibule Area 6 j Elev. 372' i RE-8013 Emer. Feed Pump 2 Elev. 335' RE-8014 CZ Pump Room 5  ! Elev. 326' j 1 RE-8010 Elevator 7 l Elev. 386' l RE-8008 Decon Room 7 i Elev. 386' RE-8015 Ccndensate Demin. 3 } 1 Elev. 335' } RE-8016 SF Filter Area 3 i Elev. 335' I RE-8001 Control Room 10 Elev. 386' i RE-8009 Spent Fuel Pool Area 8 Elev. 404' l i  ! RE-8003 Machine Shop 9

Elev. 354' Turb. Bldg.

i O  ! 1 WP84210 PAGE 3 i ) . J l

N ATTACHMENT 6 (continued) AREA RADIATION HONITORS

  • Zone for Corresponding Number Detector Location Detector Data with Time RE-8002 Relay Room 9 Elev. 372' RE-8017 Fuel Handling Equip. 1 Rx Bldg.

RE-8018 Personnel Access Hatch 4 Elev. 386' RE-8019 Incore Inst. 1 Rx Bldg. RE-8020 Equip. Hatch 4 Rx Bldg. [ t AUse Attachment I to obtain detector data, i 1 l t c i D

WP84210 .

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M APPENDIX D POST-ACCIDENT SAMPLING DATA AND RADIOLOGICAL RELEASE PARAMETERS i O 9 l WP84210A

9" ? \ t"~- Senette 1984 Cao Cap Release:?t% ruel Overheat Release't $% Time (minutes from ttspl  ! Caseous Efttuent Release Rates Rel33e4 (Cliseel: 0.005 00 183105 (Cliseel 0.00t 00* RCS activity tuolimli Iel3tm 4.30E-03 Iel33m 4.00E-03 Rel33 3.90te00 Isl35 7.49t 06 Kttle 1.34t-01 Kitt 3.005-03 Ret? l.15t-04 Kt00 1.642-08 1831 3.005-03 1833 1.llt-06 1833 0.93E-03 1834 1.54t-01 1835 8.838-08 Rhet 3.095-01 Cel34 8.llt-03 Cel37 3.90E-03 Cellt 3.35t-06 RCS enettyesettvity fattet (CleMeVielt 1.995-04 Altberne settetty in leak area twelimil Isl3tm 0.00t.00 Isl33m 0.00te00 Isl33 0.00te00 Retal 0.005 00 Kt05m 0.00t*00 Kitt 0.00Ee00 Krt? 0.00E*00 Kete 0.00t+00 Illt 0.005 00 Ital 0.00te00 1833 0.00t+00 1834 0.00t*00 1835 0.00t,00 Rb80 0.00t.00 Cel34 0.00E*00 Cel37 0.00E*00 Cellt 0.00t.00 Leak stes altborne enettyesettwity taetor (CleMeV/ mil 0.00te00 Leak area liquid energy *aettvity laster (CleMeV) 0.00t 00 Time Eminutes fees tilpt 1 Cseeeue tfiluent Release Rates Isl33eq ICliseel 0.00t.00 Il3lDE (Cliseel 0.00te00* RCS settvity luettall Rel3la 4.30E 03 Rel33m 4.00t-03 Isl33 3.902 00 tellt 7.40t 01 Kttle 1.355-08 Kttl 3.00t-03 Ret? l.34t-Ol Kt08 l.64t=0L

 ,_s                     1831 3.00E-03        1833 4.155-08              1833 0.98t 03    1834 1.13t 04 1831 1.13E 08

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'x ,j)                   Rhet 3.705-01      Cel34 8.llt-03 Cel37 3.908-03 Celat 3.385-05 RCS enettyesettvity fastet (CleMeVimil l.943 04 Altbetne settwity in leak area tuollmil
                  '      Estlin 0.00te00 tellan 0.00te00 2e133 0.00t+00 Isl35 0.00t 00 Kttla 0.00t*00       Katl 0.00t.00               Ret? 0.00te00   Mete 0.00t*00 1838 0.005 00       1833 0.00t 00               1833 0.00Ee00    1834 0.00te00 1831 0.005 00 Rhet 0.00te00 Cel34 0.005 00 Col 3? 0.00te00 Cel30 0.005 00
  • Leak aree althorne energyeastivity faster (CleMeVlall 0.005 00 s .

Leak area liquid enettyeestletty lastet (CleMeV) 0.00te00 dtf-(s < b. e Time telnutes item telps 3

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  • Caseeve Effluent Rolesse Rates
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Iel33eq (Cliesel: 0.002 00 183808 (Cliseel 0.00Ee00* T2 f

  • RCS settvity fuel / mil l

Isl3tm 4.30t-03 Rel33m 4.00E-03 Mel33 3.90te00 Rel39 f.40t=06 Kttle 1.35t-01

  • Kett 3.002-03 Ret? 1.38t-01 Kret 1.43t-01 list 3.00t 03 1833 1.548-08 1833 0.98t 03 Ll34 6.508-01 litt 1 llt 01
  • Rhet 3.478-01 Cel34 l.118 03 Coll? 3.902 03 Cel30 3.148 06 RCS enettyonettetty fastet (CleMeVlall 1.908 04 Altbetne activity in leak area tutlimil Estila 0.00te00 Rollta 0.00te00 Isl33 0.00te00 Isl31 0.008,00
               )        Metin 0.00t+00       Kett 0.00t*00              Ret? 0.00te00    Kret 0.00t+00 e        1836 0.00t.00        1833 0 00t*00              1833 0.00t+00 Rhet 0.00te00 Coll 4 0.00t*00                                    1834 0.00t+00 1839 0.00t+00
             '                                                       Col 37 0.00t+00    Cel30 0.00t+00 Leak sten althorne energyesegguity fastet (CaeMeVimit 0.00te00 i        Leek etea          liquid onestyeastivity feelet (CleMeVI 0.00to00 ei

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( ) er: L_J Time Eminutes from tilph 4 Ceeeeus tillment Rolesee Retes tel33e4 tCliesel: 0.00t 00 Illiot (Cliesel 0.00te00' RCO settwity Eveltall Rollla 4.308 03 Mel33m 4.00t=03 Rella 3.90t*00 Rel31 f.47t.01 Reels l.358 01 Rett 3.002 03 Reef 1.38E.06 Kate 1.418 06 1838 3.005 01 1831 1.14t.06 1833 0.90t.03 1834 8.488 08 1885 l.llt.0L Rtte 1 17t.08 Cal 34 1.515 08 Cel37 3.908 08 Cel30 1.63t.0L RCA energyesetivity testet (CleMeVfall l.04t.04 Altbeene estivity in leen etes tuolimil Iol3la 0.00te00 Nel33m 0 002 00 Mel33 0.00Ee00 Mel31 0 00te00 Retin 0 00te00 Rett 0.00Ee00 Ret? 4.00te00 Rete 0 00te00 1836 0 00t*00 1833 0.005 00 1833 0 00t*00 1834 0 00te00 1835 0.00te00 Rble 0.00te00 Cel34 0.00te00 Coll? 0.00te00 Cel30 0.00te00 Leek sees althorne energyesetsvety feeter ICleMeVIell 0 00te00 Leak stee liquid onestyesettetty teetet (CleMeV8 0 00te00 Time telnutes item tilp) 1 Casseue tittuent Release Rates g3 Bellleg (Citesel- 0.005 00 183l0E (Cliseet 0,00te00* ( 1 is/ RCO selevity luelfall tellte 4 tot.03 Nel33m 4.00t.01 Isill 1.90t*00 Bellt f.448 01 Reelm I 348 01 Krel 3 005 03 Rett 8,308 06 Kret 1.418 08 1888 3.00s.08 1838 l llt 08 1833 0 90t 01 1834 1.448 06 183% l.llt.01 Rhet 8.478 08 Cel34 l.llt.08 Cel37 3.948 03 Cel30 8.0ft.01 RCB enetgysestivity leetet (CleMeVisil 8.038 04

  • Althetne settelty in lesh eget tuelimil
  • Isitte 0.00t*00 Mel33m 0.00t*00 tel33 0.00te00 Bellt 0.008 00 Rette 0,00t*00 Rett 0.00te00 Ret? 9.00te00 Kree 0 Sete00 lill 4.00t.00 1888 0.00te00 1133 0.00te00 list 9, ie00 1815 0.003 00 b Rble 0.00te00 Cellt 0.001000 Coll? 4.003 00 Collt 0.00t*00
        ,
  • Leak sees althetne e enstgr selgelig festet (CleMeViell 0.00te00 l Leek etse liquid energre estletty festet (CleMeVI 0,00t*00 l Time telnutes item telpt 0
  • Ceeeeve Effluent Relesee Ratee Rel33eg IClieselt 0.00te00 183108 (Cliotel 4.000000' RCO tellettf fueltall .

Bellte 4.10t.03 tel33m 4,ftt 08 tella 3.90te00 Rollt f.418 06 Retin 4.34t.08 Reel 3 003 03 Reef I.itt.06 Rett 1.418 08 l ! j 1838 3.005 01 1833 1.13t.06 1833 0.098 08 litt 6.448 01 list l,633 06 R600 1.378 08 Cello 1.993 03 Collt 3.908 03 Colle 3.038 06 e RCS enettfeestiellt festet ICleMeViell l.798 00 Altbetne selleitt in leet stee fuelimil u tv 3 tellia 0.00te00 Rollan 0.00t.00 Islas 0.005,00 Bellt 0.00te00 Reelm 0.00te00 Riel 0.003 00 i p Rett 8.00t 00 Rett 0.00t600

    '       j         till 0.00te00       till 0.00te00    1893 0.00t.00    1834 0.00te00 list 4,00te00

('kT) R600 0.00te00. Cellt 0.00te00 Cell? 8.008600 Colle 0.00te00 . Lset esse altbetne enettyeestielly festet ICleMeViell 0.00E000 Leah etes liquid enettfesellettv feelet (CleMeV) 0,00to00 N'9f i ese l f. WP D

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r a v) g=== Time telnutes teem tesps  ? Ceeeeve tittwent Release Rates Islaaeg (Cl/seel 0.005 00 ll3tDE ICliseet 4.00te00* RCS settesty tuesimit tellin 4.let 03 Est33m 4 tot 01 Isl33 8.90Co00 tellt ? 49t.01 Reeta l 14t.08 Keel 3.00t.03 Kit? 8.30t.04 Kett i 405 04 1834 1 00t.08 1831 l.638 01 1833 0.09t.01 1634 1.415 04 1839 1.llt.08 Rble I let.08 Cel34 4 lit.08 Celt? 3,908 03 Cel30 1.998 06 RCS enettyesettvity feetos (CleMeVimil l.ftt.04 Altteene estivity in test etet tuolimil tellla 0.00t*00 Est33m 0 00te00 talla 0.00te00 Relll 0 00 tete hello 0 00te00 Kell 0 00te00 Ret? 0.00te00 Kete 0 00t*00 litt 0 00Ee00 1l31 0 00te00 1833 0 00te00 1834 0.00te00 1831 0 00t*00 Rhee 0 00te00 Collt 0 00te00 Cel39 0,00te00 Cette 0.00te00 Lees etee elebeene enestr e ettleety tester (CteMeViell 0.00t 00 Leet essa ligute onettyesettesty testet (CleMeV8 0.00te00 Time telnutes from tespa 0 Caseove Rifluent Rolesee Retse

   ~^                                          teilleg (Cliesell l.438 01 till0E (Citsee1 9.l48.l0'                                           .

x ,) RCS settvity tuettel1 Reille 4 30t*03 Reilla 4 ftt=08 talat 3,90te00 tellt f.448 08 l Reelm 6.338 01 Rttl 3s 005 03 Rett t 34t=01' Rett 1.40t.04 i Illi 3 005 08 till l.168 08 1833 0.00t.01 til4 l.40t.01 llat l.let.06 l

  • Rble 3.10f.el Cel34 1.918. 08 Coll? 3.908 01 Collt 1.918 01
                .                              RCS enettyeestivity 14eles (CleNeVisil l,flg.04 i

l Alteetne setteltf in lest seet twelimit Rollta 3.908 07 tel33m 4 548 04 tel33 3.f48 04 tellt f.0lt.09

                                              .Ritte 1.848 01 Rtel 8,448 0f'                                  Reef 1.let.01                 Rete 1,983 09 till 5.04t.10                      1833 t,098 01               till 0.445 00                 1834 t,39t.0? 1831 l.092 09 y                                Rble 4.005 00 Cel34 l.4ft 09 Coll? 3.49t.09                                                 Collt 8.048 00
      ,        ,                               Lees etes altbethe enestyeestivity teetet ICleMeViell l,148 18 Leet etse                         liquid emettyeastielt? leetse (CleMeVI 3.098 01 Time (minutes item leipt                                  9 e

Ceeeeve tillment Rolesee Rates tel33e6 (Clieselt 3.49t-09 183808 ICliesel 3.184 09' RCS sellettf twelimll Solsta 4 308 03 teille 4.19t.01 seill 8,90te00 Rollt 9,438 01

              !                                Reets t.38t=0L                     Rett 3.00t.03               Rett i,81t.0L                 Ret) t,99t.01 Illi 3,00t.08                      1831 l. lit.08              lits 0.0ft.01                 tilt 1.39t.08 illt 1,l08 08 e

Rtte 1, lit.08 Cel34 l.998 01 Cellt 3,908 08 Colle 4.968 08 l RCO enestyeestieltf teetet (CleMeViell 1.00t.04 e e Alteenne sellollt in leet etes 4velist) g teille 9.918 07 tel33m t.llt.01 tells 4.ftt 04 teill 1,738 04

                ,                              Regia I Set.el Rett 4.918 09                                   Reef 8,90t.01                 Rett 3,083 09 i

till 4 94t.00 till 3.17t.09 1833 3.04t.07 list 3,llt*0f 1839 3,993 07 t' s . R400 4.093 00 Cell 4 3.19t.09 Cell? 9.03E 09 ( ) , t. 6 stee sitteen. en.te,eeein.ii, etei.t (CioMov,mii Colle 4.4,18 s. ft.ii 00 - Leah esse liquid onestfeeell,ilf lealet (CleHeyl 4,938 08 e b h hM

W"'"" g ( ) e-= V Time (minutes from tilpt le Caseous titivent Rolesee Ratee tel33eq LCitesel- 5.stt-01 ll3lCC (Citeee) 3.70t=09' RCS setivtty fuelimli Iellin 4.10t 03 Mel33m 4.79t.01 Xel33 1.90Ee00 Xellt f.48t.01 Rella L.318 01 Matt 3.001-03 Ret? 1,14t.0L Rett 1.let.08 1834 3 002 01 1831 l.805-01 1433 8.87t.01 1834 1.375 01 1831 1.10E-On Abet 1.035 0L Cel34 1.11E.03 Coll? 3.90E-01 Cel30 1.0ft.01 ACS energyeastavity testet (CleMeVimil l.49t-04 Altbetne settvity in leek sees twelimil tel3lm 1,432 04 Nel33m l.06C 01 Nel33 1.135 03 Xellt 1.00t-04 Retle 1.83t-01 Reel 1.let.04 Ret? 4.815 01 Rett 4.lat-01 183l l 145 07 1838 4 87L 07 1833 3.44t-07 1834 1.30E-07 1139 4,145 07 R606 7 eft.04 Cel34 4 00t.09 Cel37 6.llt-06 Cel38 f.145-04 Leak eees altborne energy *4ettelty teater (CleMeViell 4.438-11 Lost etes liquid energy *estivity teetet (Cl*MeV1 1.43t*00 Time telnutes item tript il Ceeeeve Ettluent Rolesee Ret es Isl33eg (Cilseel' 9 445 05 tillDE (Citesel S.ftt-09* [__ \ ( ) tCs settvity suelistl Seille 4.10t.03 Mellan 4.ftt.01 tel33 1.90te00 Xelat f 4tt 0% Etele l alt 01 Rett 3.00t 03 Rett 8.335 01 Rett 1.50L.01 1834 3.00E 01 litt 5.10t-01 1833 8.84t=08 1834 l.358-08 Illt 1.105-01 Able 1.918 08 Cel34 t,llt.03 Cel37 3.90t.01 Cellt 1.03t 08 RCS energyesetgelty leetet (C68MeViell n.415 04 Altbeene eellvity in test etet fuelimit Reilla 3.155 04 Mel33m 3.938 01 Rel33 l.fot 03 Rollt 4.948-04 Reelm 0.818 41 Reel l.03t.04 Ret? f,49t.01 Rett 9.40t.05 litt l.038 07 1938 4.448 07 1893 9.40t-07 1834 4.11t-07 1831 4.498-07 b Rtte i 198 07 Collt 9.438 09 Cell? 1.378-06 Calat 1.118 07

  *
  • Leak stee althorne energreestivity testet (CleMeViell 7.tet-il Leak stee 184444 energyseetivity featet (CleMeV) 8.ftte00 j Time (minutes from telpi it Caseeve Eftluent Release Relee
         . Estateg ICliseet       6.308 04 18380t (Cliesel 8.712,.09'                          '

e RCS sellvity fuelimit e teilla 4.49t.09 Reela Nellla3,008 1,388 01 Rett 4.ftt.01 03 tel33 3.902 00 Isl35 f.40t=0i Ret? l.188 08 Rett 1.lff=08 Illi 3.005 03 list 1.098 08 1833 0.818 01 g 1834 l.33E.01 183% l. net-Gl e Rhet 1.448 08 Cel34 8.918 03 Coll? 3.90t=03 Cel30 l.798 08 RCS energyesellvily festet (CleMeVimil 1.192 04 e Altborne eelletty in lost tree tualimil Seille 3.048 04 settle 4.41t-01 tella 3.478 03 tellt 4.032-04 Retta 4.18t.04 f' 1836 1.748 0? Rett 1.fot.04 Rett t.ltt.04 Rett l.498-04 j 1831 1.04t.84 list 0.448 07 1834 1.338 04 1831 l.013 04

,r's           Rtte l,fst.0? Collt l.438 00 Cell? 3.198 00 Colle 1.418 07

! ) Leak stee 44therne energyesellvity festet ICleMeViell 4.108 10 , \ /  ! Leon seen liquid onestyeaetletty festet (CleMeVD 3.99te00 -

                                                                                                     ===.

s.

                                                                                               '~

r (O V

    )

tr-l Time (minutes tres telp) 13 Caseous Effluent Reneese Rates Iel33eq (Citese): 1.93t 04 183105 (Clises) 1.335 00* RCS activity tueltal) Isl3tm 4.lft-03 Isl33m 4.78t-03 Iel33 3.89te00 Bel 35 S 40t-01 Ke81m i alt.01 Kt03 3.00t.03 Ket? 1.38E-01 Kret 1.54t-01 1138 3.99t-03 1833 1.09t-08 1833 8.85t-01 8134 1.3tt-01 8135 1.09E 01 Rble 1.415-01 Col 34 1.55t.03 Cel37 3.905-03 Cel38 1.75t 01 RCS energy *aativity faster (CleMeViml) 1.845-04 Alsterne settvity in leak area tuelfall Isl35m 5,4tt-04 Isl33m 4.17t-05 Isl33 3.73t.03 Isl35 9.54t-04 Krtle 1.70E-04 Krts 3.87t.04 Krt? l.14E-04 Kret 3.08t 04 1831 3.04t-07 8133 1.40E-04 Il33 1.14C-04 1834 1.70t-04 5131 1.412-04 Rhet 3.338 07 Cel34 3.00t.00 Cel37 5.03t-08 Cel38 3.348 07 Leak area airborne energy'astavety fastet (Cl*MeVint) 1.53t-10 Leak area liquid energy *4ettwity faster (CleMeV) 3.55t*00 Time (minutes from trip) 14 Casseue Effluent Release Rates Est33eq (Citees): 3.53E-04 18310E (Citese) 1.58t-08' RCS settwity tueltall Eelain 4.198 03 Isl33m 4.785 03 Est33 3.09t*00 Isl35 7.39t.01 Kt45m t.38t-01 Krtl 3.002-03 Krt? 1.30t.01 Kt48 1.54t.01 Illi 3.995-03 1833 l.08E 08 1833 0.04t.03 1834 1.308 01 8135 1.09E.08

          . Rb84 4.748 08 Cel34 1.55t-03 Cel37 3.90t-03 Col 38 1.738 01 RCS energyeastivity lastet (Cl*MeVimil l.13E-04 Althorne activity in lesh area tuellmil
  • Islain 7.075 04 Bel 33 4 0.072-08 Isl33 4.00t.03 3el35 8.358 43 Kesta 3.312-04 Kt41 3.08t.04 KtS7 1.035-09 Kres 2.438 04
            '1831 S.05t.07       1833 1.03t.04      1833 1.492-04   1834 3.198 04 1835  1.048-04 Rb88 3.938-07 Cel34 3.445 00 Cel37 4.578 08 Cel30 2.905-07 b     Leak area altberne energyeaetletty faster (CleMeVtal3 3.005-10 Leak area         14guld energreactivity faster (CleMeV) 4.15Ee00 Time Eminutes from tript il Casseue Effluent Release Rates e

tel33eg (Cliseelt 3.092 04 18380t (Clisee) 1.93t.es* '

        . RCS settvety tuelfel)

{

       '      Isl3tm 4.19t.03 Islaan 4.788 03 5e833 3.09te00 Int 3Si?.388 08                                '
  • Kalla 1.388 08 Kt41 3.00t.03 Kat? l.let-OL Kett 1.53t.01 1838 3.99t.03 Illt 1.075 06 1833 8.038 03 1834 1.30E-01 1839 1.09t-01 e
  • Rb88 8.478 0L Cel34 1.18t.03 Cel37 3.89t=43 Colle 1.482 0%

RCS emergyesettwity fattet (Cl*MeVisil 1.508 04 ] t Altborno settetty in leak atoa tualimit I fallin 0.488 04 Islaan 9.90E.05 Isl33 S.99E.03 Iellt 1.838 03 KeSte 3.?tt.04 Keel 4.388 04 l Kt87 3.458 04 Kett 3.115 84  ! 1838 4.30t.07 litt 1.338 04 1833 1.035-04 1834 1.418 04 1835 3.345-06 r~s [ Rble 3.44t=0? Cel34 3.30t.08 Cel37 0.04t.00 Col 38 3.48t.07 l ( ) Leak atos alebotne enettyeestivity festet (CleMeViel3 3,438 80

  • j

(_/ [ Leak area liquid emettyeastivity faster (CleMevt 3,qttage r

                                                                                                         ,i I

e ---.

                                                                                             ' .Y . . .
                                                                                                 . c .c
                                                                                                 #          l l

1

                                                                                       -d

l l (N i 6 U/ F Time (minutes from trip) le Caseous Ettluent Release Rates Re133eq ECiteac): 3.42t-04 ItalDE (Citees) 2.24t-08' RC3 settetty tutt/mt) Isl3tm 4.19t-03 Rel33m 4.74t-02 Ret 33 2.89t*00 Est35 7.37t-01 Kr45m 1 30E-01 Kr85 3.005-03 Kr87 1.17t-01 Kr88 1.54t-01 Il31 2.99t-02 1831 1.07E-01 1833 8.83t-02 1834 1.24t-01 !!35 1.09E-01 Rb88 1.elt-01 Cel34 1.SSt-02 Cel37 3.89t-02 Cel38 1.45t-01 RCS energy

  • activity faster (Cl*MeV/ml) 1.47t.04 Airborne activity in leak area tuettml)

Ist3tm 1.02t-05 Isl33m 1.14E-04 Re133 7.02E-03 Rel35 1.79t-03 Kr45m 3 let-04 Krt$ 7.27t 04 Kr87 2.85t-04 Kr48 3.74t-04 113l 7.27t-07 1833 2.5tt-04 1833 2.14t-04 1834 3.07t-04 1135 2.44t-04 Rb88 3.905-07 Ce134 3.745 08 Cet37 9.45t.00 Ce138 4.00E-07 Leak area atrborne energy

  • activity factor (CleMeVlat) 3.84t-10 Leak area liquid energy
  • activity factor (Cl*MeV) 4.29t+00 Time (minutes from trip) 17 Caseeve Eftluent Release Rates
 ~,

Ie433eq (Cateee): 4.14t-04 ItalDE (Citsee) 2.58E-00* ( ,) RCS settwity tuettall Iettim 4.19t Kr85m 03 Isl33m 4.78t.02 1.30t=0! Isl33 3.89E*00 Iel35 7.34E-01 Kr85 2.99E-03 Kr87 1.145 01 Kret 1.54t.01 1831 3.99t-02 1832 1.04t.01 Il33 8.83E-02 1834 1.3St.01 It3S 1.098-01 Abet 1.54E-On Colle t.SSE-02 Cel37 3.89t.02 RCS energyesettvity factor (Cl*MeV/mt) 1.45t-04 Cells 1.4tt.01

  • Airborne settwity in leak area (wellml)

Isl3tm 3.42t-04 Kr85m 1.172-05 Kr81 Isl33m 1.33t-04 tel33 0.055 03 Isl35 2.05t.03 4.34t=04 Kr87 3.34E-04 Kret 4.28t-04 It31 0.39t.07 1832 2.943-04 1833 2.44t.04 Il34 3.472 04 Il35 3.01E-04 g Rb88 4.30E-87 Cel34 4. Sit-08 Cel37 1.00E-07 Cel38 4.49t-07 Leak area ateborne energyesettwity faster (CteMeV/nt) 3.20t=10 Leak area liquid energy *aettetty faster (CleMeV) 7.07t+00 8

          ,    Time (minutes from trip) 18
  • Caseeve Effluent Release Ratee
  • Rel33eq (Citeoul: 4.72E-04 Il3tDE (Citese) 3.935 0$*

RCS settvity fuentet)

         . Estala 1.30t.04 Krt$m   4.19t.03 Ist33m 4.778-03 Rel33 3.89E*00 E.138 7.39E.08 Kr85 3.99t-03        Kr87 8.lSt-08   Keet 8.53t.01 1834 2.99t-03      Il33 1.04E-08        1833 8.83t.03 Rb88 1.49E-01 Cel34 1.55t-01 Cel37 3.89t=03 Cel38        1834 1.235 08 1835 1.088-01 1.58t-01 RCS energy *astivity faster (CleMeVtall 1.438-04 Airborne sattutty in teak area luettel)                                                   .

Islain4.18t-04 Kttla 1.335 05 Ist33m 1.$32 04 Rel33 9.888-03 Isl35 1.348-83 i Kr$5 9.512 04 Kat? 3.44E-04 Rett 4.84t-84

      <        1831 9.508 07      1832 3.348 04        1833 3.005 04 yS                                                                    1834 3.982 04 183S 3.448 04

( ) Rbte 4.738 07 Colle 4.918 00 Cel37 8.345 07 Cel30 S.0tt.07 Leak area altborne energre aettvity faster (CgeMeypog) 3,73t.40 N/ Leak area liquid energyesttletty faster (CleMeV) 7.98E 00 o m

t*"~' O i i

'd Time (minutes from telp)      19 Caseous Effluent Release Rates Ie133eq (C4/see): ,5.39t-04, ll310t ( C 4 ,l s e e ,) 3.33E-08'      ,

RCS settwity (ueltal) Istate 4.19E-03 Isl33m 4.77t-02 Isl33 1.89t+00 Isl35 7.34E-Ol Kr85m 1.19t-01 Kr85 3.99t-03 Kr87 1.14t-01 Kr88 1.53E-01 1831 2.99t-02 1831 1.05E-Ol 1833 8. Sit-02 1134 1.28t-01 1833 1.08t-01 Rb88 1.43t-01 Cel34 1.55E-02 Cel37 3.89E-02 Cel38 1.55t-01 RCS energyeactivity tatter (CleMeVint) 1.40E-06 Airborne aettwity in teak area (vettal) Iet3la 1.52E-05 Isl33m 1.74t-04 Isl33 l.05C-02 Isl35 1.47t-03 Kr85m 4.70E-04 Kr85 1.095-05 Ket? 4.15E-04 Kr88 5.54E-04 1131 1.09t-06 1832 3.82t-06 1t?3 3.20E-06 1834 4.42t-06 !!35 3.93E-06 Rb88 5.19E-07 Col 34 S.43t-04 Cot 37 l.43t-07 Cel38 5.63t-07 Leak area attborne energy

  • activity tatter (Cl*MeVint) 4.24t-10 Leak area liquid energy
  • activity tactor (CL*MeV) 8.48t+00 Time (minutes trem trip) to Caseous Rifluent Release Rates Ie133eq (Ct/sec): 4.13t-04 It310E (Citsee) 3.77t-00*

O  ! \ RCS activity (uct/mt)

  '~'

Ie13tm 4.19E-03 Ist33m 4.77E-01 Ie133 1.89t+00 Nel31 7.33t-01 Kr85m 1.29t-01 Kr85 2.99E-03 Kt07 1.13 E .' 01 Krte 1.32t-01

               !!31 3.99E-02     IlJ3  1.05t-01     1833 8.00E-02          1834 l.20E-0. 1135 1.08t-01 Rb88 L.37t-01 Cel34     1.55t-03 Cel3? 3.89t-03 Cel38 1.135-01 RCS energy *astivity   taetor (CleMeVInt) 8.378-04 Altberne settvity in leak area tuettal)

Ie131m 1.73t-05 Iel33m 1.978-04 Rel33 8.19t-03 Iel35 3.03E-03 Kt45m S.'33E-04 Kr85 1.34E-05 Kt07 4.47t-04 Kr88 4.17t-04 113' l.44t-04

                   .              1832 4.312-04     1833 3.44t=04          list 4.95E-04 1835 4.44t-04 g  Rb88 5.44t-07    Cel34 4.391-04 C e l 3 7. i.elt-07 Sette 4.37t-07               1 -
     '      ,  Leak area altborne energy *aettvity faster (Cl*MeVint) 4 .~ $ 4 t - l O Leak area        liquid energv e astitity faster (CleMeV) 9.9tt+00 e

Time (minutes trem trip) 11 Casseue Ettluent Release Rates Fel33eq, (Cl/ seep: 4.95E-04 183102 (Cl/see) 4.345-00* RCS settvily fueltal)

           '   Rel3tm 4.192-03 Isl33m 4.77t-03 Iet33 5.89t*00 Est35'7.33t-01
           ,   Ketta 1.195-01 Kt45     3.998-03     Ret? 4.11t-01          Kt08 1.51t-01 1831 3.998-08     It31  l.04E-Ol     1833 8.80C-01          Itat 1.18t 01 1835 1.00t=08 6  Ab88 1.32t-01 Cel34     8.S$t-02 Cel37 3.89t-03 Cel38 1.485 01 l   RCS energy *aettvily   faster (Cl*MeV/st) 1.3St-04 0   Airbotne activity in leak area tweltal)

Islain 1.975-05 Rel33m 2.34t=04 Isl33 1.345 03 Iel3S 3.44t-03 Krtle 4.utt-04 Kr48 1.40E 05 Kre? S.345-04 Kt08 7.092 04 [f 1838 l.40E-04 1833 4.898-04 1833 4.lat-04 Rb48 4.30t-07 Cel34 7.345-08 Cel37 1.838 07 Cel38 4.97t-07 1834 S.SSE-04 1835 1.045-04 7- s r ) ' Leak area airbetne energyesettetty faster (CleMeVtal) S.485-10 * ( ,/ _ Leak etea inquid energyfaattetty faster (Cl*MeV) 1.10t*01 0

                                                                                                       . ~
                                                                                                      , ? c'.
                                                            -.       .n-an

V g.- J Time tatnutes from trip) Il Casseus Effluent Release Rates Xe133eq (Cateet): 7.83t-04  !!310E (Citese) 4.79E.00* RCS activtty (uelfall Xel31m 4.19E-03 Rel33m 4.77t 02 Xel33 3.89t*00 Rel3S 7.32t.01 Kr8Sm i 18E-01 Kr85 2.99t-03 Kr87 l.11t-01 Kr88 l.10E-01 1831 1.99t.02 1831 1.045-01 1833 8.79t.02 1134 1.175 01 1135 1.08E-On Rb88 1.17E-On Cel34 1.SSt.01 Col 37 3.49E-02 Cot 38 1.45t.01 RCS ener0yesettwity factor (CleMeVint) 1.325 04 Airborne aettetty in leak area tue6/ml) Xel31m 3.21t-05 Xel33m 3.53E.04 Xel33 1.53t.02 Xel35 3.87t 03 Krt$m 4.79t-04 Kr45 1.30E-05 Kr87 S.40t.04 Kr48 7.94t.04 1111 t.S8t-04 1831 S.44t-04  !!33 4.45t-04 1834 4.18E-04 1835 S.70E-04 Rbte 4.73t 07 Cel34 8.19E.04 Cel37 2.04t-07 Ce138 7.70E-0? Leak area attborne energy *acttwity factot (Cl*MeV/ml) 4.475-10 Leak area liquid enet0y*4ettvity taetor (Ct*MeV) 1.3tE*04 Time (minutes from trip) 33 Caseous Effluent Release Ratee fs Xel33ee (Catseel: 8.40t-04 11310E (Citesel S.34t-00' _ RCS attivLty fueltal) Xel3tm 4.145 03 Xellan 4.??t-03 Xel33 3.09t*00 Xel3S ?.312-01 K 8Sa 1.28E-Ot KrSl 3.99t-03 Kt0? 8.10E-04 Kr8S 1.50t.01 1831 3.99t-01 1831 l.03t=04 1833 8.78t.03 1834 1.tSt 01 Illl l 07t-01 Rbet 1.13t-01 Cel34 1.555 01 Col 37 3.09R-03 Colle 1.43t-01 RCS ener0y* activity feetor (CleMeVimit t.308 04 Altberne aettvity in leak area tuettml) totalm 3.50E-01 Xel33m 1.84s=04 Xel33 8.71E-03 Fel35 4.34t=03 Kr8Se f.ett.04 Ktt3 f 70E-05 KtSt 4.145 04 Kret 8.912 04 1831 1.78t.04 y Inst 4.14t.04 Rb80 7.38t-07 Collt 9.135-04 1833 S.34t 04 1834 4.878-04 Ital 4.40E-04 Cet37 1.33t-07 Cel30 0.448 07 Leak area altborne energy *aeltvity faster (CgeMeViel) 4.938-10 Leak area liquid ene 0yeaettetty taster (CleMey g,33ge01 E Time (minutes from telp) 34 Caseous Effluent Release Rates . Rel33eq IC4/ses): 9.03t.04 ItalDE (Clisee) 1.97E.00* RCS sattutty foettall

         '    Xetala 4.let 03 Xel33m Keelm 1.37t.01 4.748-03 Xel33 1.09t.00 Xellt't.30t 08 Kitt 3.99t.03        Ret? l.09t-08   Kate 1.495-08 1838 3.99t=08     1831 1.01E.Ol       1833 0.78t-03   1834 1.145-08   1135 1.0ft-06 Rhet 1.l?t.01 Cel34 8.85E.01 Cot 37 3.093 03 Cel34         1.395-48
         #,   RCS enet0yeastletty faster (CleNeVint) 4.18t.04 e

8 Anthetne settetty in leak area twelimil

        .*    Xelsla 1.798-05 Xel33m 3.let=04 Xel33 l.938 03 Xellt 4.8?r.33 Ketta 8.90E-04   Kr85 3.00t.01        Ret? ?.178 04   Rett 9.945 04 f     1834 l.99E-04     1833 4.03t-04       1833 1.41t.04   1834 7.588 04 Ital ? llt-to f"'S    4      Rhet 7.04t=0?   Cet34 6.03t.07      Coll? 3.59t=0?   Colle 9.30t.07

( Leak sees altherne enet0yesettvity lastet (CleMevtal) 7.?tt-80

     )    '

4 Leak area liquid enet0gesetivity fester (Cl*MeV) 1.48t*06 0

                                                                                                     *a {
                                                                                                 ;e j l

r

 !     )                                                                                                9".".".

U Time tannutes from telpt 3! Casseue Effluent Release Ratee Isl33eq (Clleses; l.10t-03 1831DC (Citeset 4.445 00* RCS activity tuslimil Mel3tm 4.188-03 Xel33m 4.74t-03 tel33 1.ett*00 Mel3S ?.19t-01 RetSe 1.27t.01 Rett 1.99t.03 Rte? 1.04t-05 Rett l.40t.0L ll31 3.99t-02 1833 l.03t-01 1133 4 ??t-03 1834 1.135 08 1835 1.07t.08 Rb88 l.l3t.01 Cel34 1.34t.01 Cel37 3.495-03 Col 38 1.34t.08 RCS energy *settvety taster (CleMeViml) 8.let-04 Althorne settetty in leak atos fuelimil Xel3tm 3.431 05 tel33m 3.191-04 Mel33 1.llt-03 Rel35 1.43E.03 Rt03m 9.47t=04 Rett 3.835-0$ Ete? 4.04t-04 Rett l.llt 03 1831 1.21E-04 litt ?,192 0a 1833 4.53E-06 1834 8.31t.04 1835 f.9ft.04 Rb88 4.4tt-Of Collt 1.15t.97 Col 3? 8.90E-67 Collt t 018 04 Lesh stes altborne enstgyesettvity factet (Cl*MeVtall 6.48t-60 Leak area lituld enetgyesettetty laster (Cl*MeVB l 43t*06 Time tal.sutes from telps to Caseeve Elfluent Release Ratee Rel33e4 tCitseel: l.312-03 18340t (Cliseel f 33t.00'

       \

q ,) RCS attivity twelfall Xettle 4.l85-03 Xel33m 4.fet.01 Rel33 1.40t*00 tel31 f.let 0L Rttle 4.37t.08 Rttl 3.998-03 Ret? 1.07t-01 Rett 1.408 08 litt 1.948-03 1833 1-048 01 till 4.74t-03 litt l.llt.06 1839 l.0ft 06 Rbte 1.098-06 Cel34 l.145 01 Cel37 3.ett-03 Cellt 1.34t ft RCS enetgr e settwity laetet (CleMeVimil l.14t-04 Althetne nellvity in leak sees tuolimil I Estain 3.448 05 Ael33m 3.94E-04 Isl33 3.345 03 Nel39 4.438 03 l Reeta 1.018 03 Reel 1.4ft.01 Rett 4.848 04 Rett l.388 03 i 1838 3.47t.04 till 0.388 04 1833 7 15t 04 1834 9.llt=04 till 4.018 04 f Rhet 4.98t=0? Cel34 1.30t-07 Coll? 3.185 07

           ,   Leak  tree alsterne energy *aativity faster (CleHeyjnt)1,.40t.44 Colle     , ggt.lg Leak  area       liquid energyeastielty fastet 4CleMeV) l.fftett f   Time (minutes item trip) 37 Casseue Elfluent Release Rates Rel33eg IClfesel: 1.34t.03 183108 (Clfseen 4.078 00*

RCS settetty twelfall

          ,'   Estlin 4.let.03 Isl33m 4.fot-01 Rel33 3. tit *04 tellt'?.lft tl Rttle l.14t 01 Real 3.9tt.03        Reef l.04t=0i            Rett 1.47t.08 litt 1,98t.08     1831 l.01t.08     1833 0.fot.03
  • list 1.098 01 till l.47t.08 Rble 1.04t.01 Collt 8.145 03 Coll? 3.092 03 Colle 1.388 01 l RCS enettyeestivity festet (CleHeVfall 1.13t-04 e

e Althetne attivity in test stea twelfall tellim 3.438-89 Roll 3m 4 318-04 Rel33 3.448 01 Neill 4.458 03

             ' Rttle 6.148 03 Real 3.f38 09        Ret? 9.498 04            Rett 8.34t.03 i     till 3.ftt.04     litt 9.338 04     1833 0.018 04            1834 9,94t.04 1839 9.ftt.04
   ,-'s  <

hbet 9,958 07 Cel34 l.468 07 Coll? 3.195 07 Collt 1.10t.04 i

   \
       )       Leak sees alcheine emeter e aettelt? lastet (CleMeysell I,03t.09
  • Leak stea liquid onestyeselleitt festet ICloneyl l,93 teel e ..
                                                          ..m   ,w,.s.a.,.m                      a.

F"""2 {7

  /

LJ j Time telnutes item trept il Caseeve titluent Rolesee Relee Iellleg (Clleset i 48 tall IlllDC ICliesel 0.09t.40' RCs selletty twelimil Xellla 4 80t.03 teille 4 74t.01 tellt I totett sollt f $48 01 Relle l 145 04 Rett 3.9es.03 Ett? l.018.el Rett i 448 01 1896 3 948 41 till l tot.tl llil 4,715 45 litt t tit.04 Illt 6 04t.0% Ante t.let.tl Collt l.145 01 Cell? I 448 08 Colle 1 361 06 RCS emettyesettelly festet ICleMeVimil l.let.04 Altleene settetty in laat etes twelfall tellte 4 ilt.tl teille 4 tit 64 teill 8 91t.03 tellt f lit.49 Kelle 6 148 08 Estl a tit.01 Ettf 1.048 01 Rett i 4e8 09 Illt I tit.04 litt i Glt.tl Illt 0 Glt.44 1814 4 09t.4% llil l Get OS Rett t tit.to Cellt i 14t.07 Cell? 3 915 07 Colle i 308 04 Lees etee setterne onestyeset69 sly feetet ICleMeViell l lefatt Leet stee legute enettyeetlevity feeles ICleMeVI l 09 teel Time talnutee item telpt 19 Caseeve Efftwent Relates Reles Belltet (Cliesel' l 418 08 tillet ICitesel 9.448 40' [ } RCs tellolly twelisti

  \m /              Rollta 4 168 8) Mollte 4 918 08 teill 1 005e00 Rollt f.llt.06 Rolle t.848 01 Reel l 998 01        Ret? t,848 01   Rett 4.448.el 1891 8 945 01     till 9 908 08     Illt 0 f4t.08   tilt 4.045 46 till i tot tl Rhet 9 448 01 Collt i 148 41 CollF 3 808 08 Colle 6,818 01 RCS enestyesellvily lettet (CleMeViell I let.44 Atenetne eeltellt in test efee Iwelfall e      dellta 4.708 09 seille 6.818 04 teill 9.34t.01 Bellt 6 84t.09 Rella 4 448 45 Reel 1.leteel        Rett 1.175 09   Rett i 44t.69 1898 3 348 04     litt l.lltatt      Ills 9 848 04   life 1.168 0% 1898 l,lttatl Rtte 6 09t.44 Coll 4 l.ftt Of Cellt 4.178 49 Colle i 468 04, b        lees stee eliteene enettv e selloll, feeler ICleMevieil I.393 0
      *
  • Leet etee 184444 enettgesellolly testet (CleMeW6 l.lttell l Tlee toinulee item tripi le 14eeeve ttfluent Rolesee Roles
           ,        teille4 ICliseet! l. tit.tl    tillet ICitseel 1.sti, 0f'
            ,       R P. R telleltf Iwelimit teille 4 let.43 Rollin 4 fit.el tellt 8.068e40 Bellt f,898 04 e        Attle 6.858 04 Rett 3.998 49         Rett t 898 08   Rett 4,49t*44 lill I tet.tl     till 9 915 01      Illt 4 f48 48   Ille 1.098 41 Illt l,048 01
              ,     Rhet 9.Itt.08 Cellt 6.948 03 Collt 3.00t.48 Cellt 8.898 06 s     RCS enettgeselletty feelet ICleMeVimil 8,148 44 e
             #      Altteene sellollt la leet etes Iwelimil teills 9,118 4% lollin t 945 04 sella 3.448 48 Rollt 9 < titatl e      Reele 6.198 09 Reel 3. fit.01        tet? 4,198 49   2000 l 888 08 1       till S.ftt.04     litt i.14t.49      till 1,09t.09   tilt tilliatt fllt lilitell
    ~
            '       Rhet l.148 04 Cellt l,938 0f Collt 4,elt.49        Colle 0.948*04

( 'T Lean etet eithetne emettyeeeltellt feetat ICleMeViell l.488 09 (  ! > Lost ette li4 eld onettyssetteilt laetet ICleMeVI 35988881

  • e ."
                                                                                                        .c

a r** y, v Time telnutee iteh tilpi il 04eeeve tiftwent Relette Retse telliet tC6/seel 0 448 08 18360t tC6desel 4.498 41' RCS sette6ty 4wetlell Reille 4 19 teel tellte I etteel tella l letett tellt f.letell Kelle 4 liteel Etel I liteel kee? 1.llteel Rett i etteel Illt e titeel till 4 letett Illt i titeet 1894 4 liteel Illt 4 14 Fell Atle 4 otteel Cellt 1 otteel Coll? 4 titeel Collt I liteel RCS enettgesetteltg festee ICseMovinil 4 lit.tl Altbeene settelt, in lesh eles twelfall teille i lat.tl teilla l 145 08 Reill I totete Wollt 1 438 01 Rolle 4 185 08 Reel i 178 01 Rett 6.498 03 Rett i 145 04 1818 l tit.el Illi l 44t.09 1893 f fit.01 1884 4.elt.tl Illt 4,098 08 Abte i tit.tl Cellt 4 lit.4% Collt I 318 0% delle I lit.04 Leen etes sittegne eneteyseettetty feetet ICleMevleil 4 44t.44 Lees stee litute emetsgoestietty testet (CteMeV6 4 liteel Time teinwlse it em le t pl Il 6seeeve Efftwomi Polesse Metse telliet (Cllesel i 19t.06 lillDB ICitseet i 488 44'

   -~3

(\' ) MCG settetty Iwe6ftil {

   ~

Rollin 4 10 teel tellte f attell teill I fltett tellt 4.49te64 Reele i 44 teel Atti e liteel j Attf I Bfteel Rett I 94 teel llit i liteet Illa e lateel till I effect Illt t.lltett Illt I litett l Atte i Iftall Cellt I litell Collt 8 etteel Collt 4 Sftell RCS emettfesellvily festet 4CleMeVimit t 938 41 Attbetse settellt le lash etes twelimil tellte i let.el Rollte e fft.tl folli 4.letett cellt 9,leteet Rette l 448 01 t#01 9 44t.01 Reef 5.446 01 Rett t.98t.04 illt I Set.el till i 198 08 till i ett.el litt 6,438 45 list i,9tt.tl b Able i 918 04 Cellt i olt 04 Collt i 88t.04 Cellt 9,998 04 Leet else entteene emettposetteelt feetet (CleMeV# ell 1.44t.0f Leen else ligold ehettyagelgesty feelet segeMeyp l qttett g flee delnutes item leipt il 6eeee64 tillwent Rolesee Retee telliot IClieseli f.elt.46 tillot 4Cliesel 9.078. 04'

            '    RCt settell, testimil e

follia 6I 44 Attim afteel teelteilla Rett e ffteel teill t liteel 4 44 Rett Bellt 1.llte44 pett 8.letset 1691 8. tite 64 2000 % 98tett till I litett till 9 lete84 till l.titeet lill 1.96te64

            ;    Rtte emete,seeiivli, Rea    6.04te99 tellt ietetet etteeliCioMovi.ii Cellf 4.930ett i.Ilt.ti Collt 9.4eteel a

8

            '    Altbeene settetty in leal eves twelimil 4

lollte $ lit.el teille I litall Reill i Ottell dellt 9,letect 1 Rette 4 tit.el tett 1.llt.tl Reef 0.168 01 Atte l,etteet till 4 tit.at 1899 f.tet.48 1884 4.448 08 01 lill 4.fttall lill 9.498 08

 /

J Abit 4 141 44 tellt 4.44t.04 tellf 1.918 04 Collt 1,948

      ')         Leet etet eit6 erne enettfotellelly lettet liteMeysqll 4,tft.cf Leet 4004          litete emeiggesellvilt testet teleMeWe 4.00 test                  '

F""

 \        l                                                                                                t**

O Time eminutes from leepl 14 oseeeme Effluent Rolesee Retse teillet ICideset 4 49tett tillet IClfesel ? 148 44' ett settetty Iwelimit teille i titeel tellte i effett sella 1 49te64 Reill I totect Reela I lateel Reel l Ifteel Met? 4 44Eell Ritt f tetell ills i estee4 lill i ette84 till 4 lite 64 ille i letelt lill I etteet Rtte I litell Collt I lateel Cellt i fftett Colle l late 84 RCB enestyeseitellt feetot (CgeMeysalt t tit.tl Altbeene selively in lose ette twe48488 Rollte 6 80t.01 teille 4 098 06 seill l titell tellt i ettell Retie i let.66 Ritt 4 44t.06 Ret? I letett Rete a fltete 1891 9 49t.43 till l fet.el till l 44t.06 litt 4 14t.01 Illt e ett.tl Rtte 9 14t.04 Colle f ett.04 Collt a lit.04 Collt 4 40t=48 Lees stee estbetne enetgreettle449 festet 4CleMeVimil l 118 04 Lees stee liteld emetetese18,649 festet tCleMeWI L liteel Time iminutse feem tilps il Geeeeve tillment Rolesee Rolee 7y L ) Reillet ICidesea 5 49te00 169108 tCliesel l.86t.49'

   \_/                 RCS setteit,      Iweiteli Iellte i litell tellte l 44tell teill Rttle 4 Oftest Real I ltteil 4 titeet Bellt i litett Rett 1,llteel      Rett 9 fetell 1814 I latest      lill I tote 64  till l letett      til4 8 tite 64 1911 8.Ille64 Rtte    i titell Colle a titell Collf 4.llte05 Collt 1.94te64 RCB enetg,eeell,ily lettet (CleMovinnt I 6f8 01
  • Al#6eene eettelt, in test etes twelfall i

teilla i 418 01 teille 6 698 01 tellt 8.llte86 Rollt 1.40to06 l Rolle i titeet Reel 9 448 44 Rett I ottete Rett 4 etteet till i 14t.46 till 9 448 49 till $.480 06 litt i 198 01 till 4,68t.06 [ Rtte 4 lit.tl Collt i lit tl Collt 1,84t.05 Colle f.118 09

        .         i Leet else altteene enettgesenteetv feelet itseMevleil 9.498 04 Leet stee         litwit onettro nettetty feste, ICleMevi l titell Tlat 4minutet item letpt le
                 '     6eseeve titivent telease Reise teillet (Cliesel- a fetett tillet IClisesI        l. tit.49' RCS settetty Iweltall teille i ifteli Iellte i fileti Iellt e liteet teill,4.800 44 Rolle 4 effett Reel I.titeel        Rett e lftell      Ritt 1.lftett 8

Illi 4 titect till 8 44teet lill 4 69te64 1994 0,49t 04 list 9,etteet e Alle l liteel Collt I liteel Cellt i ell *04 RC8 enestyeeelleely leeler ICleMevisit 1.94t.46 Collt l>ttlett I nitteen. esiis n , in i.et etse i.eismit 6 feilla 4.19t.01 teilla i ettett teill 4.0ftell tellt i lltell J kille i 90tatt Rett I litete Rett 0.918 04 Rett 4.998400

              ;'       li t t 1.40t.tl

[~') Rttl till i 44t.46 till i ett.01 I 948 09 Collt 8.titall Cellt i 99t.09 Colle 1884 9.04t.06 lill I lltett 1.00t.08 ( < Leet else elfteens onettfeeeltellt festet ICleMevieil 9,498 44 i Leon esse liteit eneettesellfily festet (CleMevt i efteel i C7%

4'"" (p) v flee tannutes item trapi St Ceeeeve Efftwent potesse metoe Rolllet IC6fece6 l 98 tete 183608 tCitseei 3 ett.el' RCS settesty 4welimit tellte I lfteel telaim i fltell Bellt 0 itteet Xellt 4 Sete44 Rttle 4 44 teel Ritt i titeel Rett 4. lite 48 kett i late 44 lill 4 titett lill 8 445 44 till 4 ltteet lit 4 i 418 04 1889 3 Otteet Rhet i 14 teel Collt i letell Coll? 8 49 teel Collt i fetect RCS enettyeestletty festet efteMeViell 3.14t.06 Altheine esttelty in lett etes 4welimit tellte I 14t.04 Fellta t 498 00 tellt 4.44 teel Nellt i ettell Reele 4 titect Reel I 448 00 Ret? 1 44te00 Rett o 718 44 1986 i let.01 till i ettall Illt t.let.el lite 3 49t.08 Illt i lit.48 R600 t alt.el dellt 3 048 43 Collt I 11t.03 Collt 4.4st.el Lose seet elebeene onestyeest6vity fastet (CleMeVimit 4 44t.06 Leet esse litw64 enettyesellolly feelet IC6eMevt 4 Glteel Time im6nwese teen lesel it Oseeeve tillwent helenee Retse

   ~s teillet (Catesel e totete illlDE ICliseei 4.fft.el'
 's)                                Ret esi e ,     Iwei,.i.

Rollte I ifteel tellte i fltell selli 4.19t.44 sollt 4.ltte64 kiele 4 teteel Roll i titell Reef 4.49tell Rett i 14tett till 4 titect till I titect till 4 lete64 litt t 40tett till i eftett Rtte I titell Cellt I letett Coll? 8,etteel Colle 6 f4te64 RC8 emettyetettetty feelet ICleMeVimil i 14t.el Altbetne settetty in leet even twelimit a I tellin 1.04t.04 Rollte 1 48tett teill 4.llteel tellt 4,48 teel Rttle f liteet Ret 4 3.44 tete Ret? 9.45te00 Rett t.ftteil till 4 ett.el 1898 9 438 06 1999 e lit.tl list t.ett.el 1999 1.ftt.tl A6le 4 188 00 Collt 9,018 01 Cellt 9 918 09 Colle 3.198 08

      '                             '  Leet etse altbeene emettyssettellt feelet ICleMeVsell 9,93t.04 Leet etes       litund enettr e sellesty testet IClenove f.ettell i   Time teenstee teen titel 19 Caseeve tillment Rolesee mates telliet (C6fesel: 1,99 teel ll1408 (Clfesel 9 41$.48' RCS selletty tweifell teille 3.lfteel Reille i titeel telli t 19te64 tellt 4 ltte64 Regla 4 titeel Rett 1.ttfell       Rett 4.89 teel   Rett lilltett Illi 4 titett     lill I.48te84    till e itteet    litt 9,lete64 till 3.0fte64 e

Abte 1 90 teel Cellt i lttell Cellf 3,49t*49 Collt i.ftteet l RCS eneet,seettellt feelet (CleMevtall 3.988 01 Altbetne selloll, in test etc. Iwelimit teille f,94t.4l seille t 418 00 tell) 1.llteel tellt 1.lltest fE Attle i 49 teel Rell 9,0ftete Rett l.9fteel Rett 9 ltteel Illi l.itteet litt t 4lt.01 till 1.90 tete litt 6.04teet till I lftett l

      '3                               R600 0.948 41 Cellt i 848 09 Coll? 4 19t.09 Colle 9.Ilt.el
        ':                             Leet et . entiseR. enettv e selleti, leeise ICieMevs.it i. alt.li
                                ,      Last etee       litutd onettyeeelletty feelet (CleMeWD l.498004 e

e-m

o C m-Time tannutes item teipt 40 Cassewe tillwent Reletoe Rolee Mel33eq (C6feeel I lateel 183108 (Cidesel l,13t.08' RCS settosty 4welimli Iellia 3 17te03 Wel33m t.fttell Xell3 e ltte64 Bellt 4 30te04 Rttle 4 titeel Rett i 90te03 Rett e.13te03 Rett i liteet 1891 4 03t.04 Illt I titeet till 4.lfte84 1634 3 liteet flat 1.04te64 Rbei 3.19t*03 Cel34 3.30 teel Cellt 1.45te03 Collo 1.4 fleet RC0 energfeness,6ty festet (CleMeViell 1.498 0l Alsteene setivity in lost stee Iwelimil Rollte e 408 08 Mellte 4 145 00 Rolll I titeel tellt l.llteel Retin i flteel Reel e.ftte00 Ret? I liteel Rett 4 10 teel Illt t 44te00 till 0 108 0% llll I 10te00 1894 4.40te00 till 1.30te00 9600 9 97E.01 Con 34 I lit.03 Coll? 9 415 03 Colle i 992 08 Leet ases entterne enestyeestlesty testet ICleMeVisit t 098 01 Lost etee liquit enestyosettelty teetet ICleMeVI l.44te64 Tlee telnutee item 4:199 48 Sesoewe tittwent Releeto Retse

,s               teillet (C6tesel I lifell 189108 tCliseel B.84t.01'

/ i (_,,/ RC0 estavety twelimit tellte I lfteel tell3m i feteel Reill 0.l98 04 Rollt 4.30t.04 Rt45m 4 Glteel Reel l.94 teel Ret? 4.letett Ritt I,l4te64 till 4 03t 04 till 1 39to04 litt 4 lftett 1884 9 Iftett lill 4.09te84 R600 8 49 teel Cellt 3 10te01 Coll? I otte03 Colle i. ele *04

  • RC0 enestyonetivity feetet ICleMeVlell 8,498 01 Altteene settetty in lost sees twelimit Iellte l.eltett tellte f teteet tell3 1,178400 Bellt l.ftteel Rella l. 988601 Reel f.99t*00 Reef l.10 teel Rf00 4.leteel till I,eltete till 9.948 01 till 3,44t*00 1894 l itteet lill 4.948,00 p Rb80 8.0ft-05 Colle i.818 03 Coll? l.048 08 Cellt 4.918 05
    ,        ,  Leet etee sittetne enettyesellvety festet (CleMeysell 1,483 0g Lost stee        liquid onestyeestletty testet ICleMeVI l.04te84 e

Ti.. i.in. .. fee. itiOI 4: Caesewe Rifluent Rolesee Reise Sellleg ICiteseli 3.938 06 189608 (Cliesel 1.978 01' RC6 selleety tveifall

           ,    fellte 5.lfteel tell3m i fatett Asill 0 leto04 Bellt 4.948004 Rttle 4.99to01 Rftl B.90te03       Ret? 4 llteel    Atle 4.84te84 Illi 4 Olte04     Illt 3,3ste04    Illi 4.848 04    tilt 1.39t604 8835 3,09t,00 j   A600 1.lete03 Coll 4 3,leteel Cell? 1.stteel Cellt i.ettelt e   RC0 enetgyeettletty testet ICleMeVlall 3,498 04 Altteene setietty in test etes twelimil
           ;    tellte i.lltett Rollte f 40te00 telll 3.995e01 Rollt l.04 teel 3    Rolla 3.0fteel Reel 4.14te00       Ret? 1.49t*06    Rett 4.088600 j     till l.fttete     lill f.eltete    1889 1.493 00    litt 4.40te00 1839 6.443,00 f              Rbli l,688 08 Cel34 l-44t.08      Cellt 8,898 01 Cellt 4.938 03 Leak sees altbeene emettyeettivity festet 4CleMeViell 9.348*09

! ) .' 4 Leah atee liggld enestyeastivity festet tCleMeV8 1.00t*04 e e lN

                                                                                                .p t
                                                                                                 i

e""* s C' tr*: Time (minutee feem telps 43 Caseeve Effluent Rolesee Retse teilleg (Clfsese i teteel IlllDt (Cliesel I 44t.el' RCS selletty twelimil Bellta 8.l?tell teille I teteel Mellt 8.lete44 Rollt 4 Sete64 Retim 4 feteel Reel l 90t.03 Reef a lateel Reel I litett 1898 4.elte44 Illi 1 liteet 1899 4.letect 1884 3 letect lili 8 44telt R644 1 40 teel Cellt i leteel Cell? S.elteel Collt I liteet RCS enestyeastivity testet (CgeHeyfal 3,43g.el Ale %eene settetty in lean etes twelfall Reilla l 86 tete Eellin e etteet tella 3 ffteel tellt t 90 teel kella l leteel Reel 4 74te64 Rte? I titeel Rett 5.18t.48 llan i etteet 1638 i Setect Illt i etteet litt I tatste 1881 i fatest Rble l 148 01 Cellt I 118 08 Coll? I lit.48 Colle 7.30t.48 Leon sees enebotne emeter e astielty testes (CleNeVimil 1 41t.6% Leah evea ligule enestyeselletty feeler ICleMeVe I tetete Tlee telnutes teem tespl 44 ("'N Casseue Elftwent Rolesse Rates Rollleg ICelesetr 1.48 teel 189108 4Cliesel 6.988 03' RCS settetty 4wetteli Iellte 8.lfteel Eellim i feteel tellt 6.lete64 Nellt 4 Sete64 Reelm 4.ffte43 Reel l 90 teel Rett 4 liteel Rett t.lltest lill 4 ette44 1898 1.lete64 Illi 4.llte44 init 3.ltte44 illt S.titeht Rbte I lttell Cellt 1.llteel Cellt 3.elteel Collt 1.lltett RCS ene*0yeestsellt feetoe ICleNeVimil 8,488.el

                  . Altheene sellolly in leet etes Iweltall Reilla 1.248 00 Rollim 9.44teet Neill 9.99tett Rolll 3,0ftell Rella 1,leteel Reel 9 lfte44        Rett 1.94 teel      Rett 1.448 46 till 1.94teet     Illt I liteet     lill I totect b                                                          tilt 1.l18 08 lill 1.4%tett Rhet l,lltati Collt I alt.el Cellt 1.802 43 Colle f.398 48 e

test sees elebeene onestyeestielty feetet ICleMoviell 8 tit.09

  +

Leak stee liquet enestre sellolly festet (CleMevt 3.lftett Time telnvles teen telpt 49 g,e Caeeeve 'ifluent Release Relee

        %           Rollleg ICifseel* 3,llteel 183808 4Celesel 1.ltt. ele RCS settelty 4Weltall
        "*e                                                                       ,

teilla a lf teel tellte i .f ttetl Rett Rella 4 fotoel Reel t.90 teel tellt 4.49tell t itteet Rollt 4.ltte64 Rett 1,lltett

                ,   1896 4.49te64      till 3.ltteet    illa 4 Ilte64       litt 3.letect inst 3.eltest e

Abet 9.ltteel Cellt 3.leteel Cellt i alteel Colle 6.96te08 RCS enestreeellvily testee ICleMeViell 1.398 04 Altbeene eettellt in test etee Iwelimil e t Eellte 4.80te00 f ollte 4, fite64 Reill 4. 44t ell Rollt 3. ltt eel Reelm 3.leteel Reel 9,44te00 Reet 9.titeel Reet t.440 01 j s ' litt 3.04te84 Init i lftets till 9.44teet 1884 3,t4tett flit 1,tetett ( Rtte 1.448 08 Cellt t 468 08 Collf 1.398 03 Colle f.4ft.48 ('  ! Leet asse elebotne onestr settelty feelee (CleMevseli 3,$lt.4% o Leen etee $14446 eneetteestiellt lettee (CleMeVe 8.lltete e _ _ _ _ _ _ W

9" ( _

            !                                                                                                                 GP!

Time telnutes item tilps to Ceeeeve Elftwent gelesee Retse Rolllet 4Clienei 1.lete6l 183l08 (Cliesel l 99t.01' RCS settetty twelimit Xelllm i Sfteel Roll 3m i 145 03 Mellt 4 tete 64 Nellt 4.38te64 Fftle 4 74 teel Rtll 4 teteel Ret? 5.99te03 Reel l.888 04 in34 4 03t.04 till I liteet 1833 4 litect 1884 n.04te64 1831 3 08t604 R6te I.llteel Celft 3 30te03 Col 3? I flteta Collt i titete ACS enestysettlenty teater (CleMeVimil 1.318 01 Altterne settetty in test stee 4welfall fellte i Intete teilla 0 948 00 tel33 4.145 01 tel39 3.19t 01 Reelm I titeel Meet 9 otteet Rett 3 Oltett Mett i feteet Illi i Otteet Illt l leteet 1833 3 i3 tete 1834 l.letett flal 4.94te00 R6tl I l38 08 Cel34 1 788 03 Cel37 8.312 08 Colle f 49t.08 Leen etes eleterne emettyeet46etty feetet tCleMeVinti 8. eft.0% Leet atoe ligvl4 emettyeestielly faster (Cgegevt 3 get,te Time eminutes iten tilps 47 6ee, eve Elfluent Roleete Relee

 ,-~                                Rollleg 4Clisee a 3 Ifteel IlllDE IClfesei 4.412 48' k         )                       RC8 settetty ivelimil Rollte I lfteel teille I . f ot oel tella 8.lltett Nellt 4.38te64 Rttle 4 fiteel Attl 1 90 teel          Rett 6.94tett   Rett l lltett lill 4.09te64        Illt 8 Sitete     lill 4.ltte64    1634 3, tite 64 1838 3.ttte64 R640 3.llteel Colle a leteel Cell? 3,elteel Collt l 44tett RC6 eneettesettetty feater ICleMeVimil 8.39t.01
  • Alttetne settetty in teet etes twelimit Rollie i 145e00 Islain 9 lltett tel39 4.lf teel Hellt 8,84 teel Rttle litetell Rett 9,96 tete Rett 3.0fteel Rett l.titell Illt 1.ltteet 1898 l litect litt 3 lttete y R6te 6.llt.08 Collt l.f48.tl lite l.lftett lill l.99tett Collt 1.388 08 Colle f.llt.03 Leet etes eliteene enettpeettieltf feeler (CleMeViell 1.ftt.49 Leon etes ligvid onettve selletty feater (CleMeVs 8,ltte64 Time tainslee item ttips 40 Geseeve Effluent Rolesee Retse Rolllet ICliesent 3,34tett 189108 (Cliseel 1.458 08' RC6 settetty twelimit e tellin 1,lfteel sollte I.fotoel tell) 0,918e04 Rollt 4,altete keelm 4 fltett Rett t 908 43 Rett 9.09te03 Atle l,iltet4 till 4 tite 64 1818 8.883 04 llal 4.lete64
                             ,'    R6te i ettet$ Collt I letsel Cellt 1,49 teel Collelitt        3,90te64 1.4tte64      litt 3,063 00 e

9tl emettfesettellt festet (CleMeViell 1.938 08

                            ,'     Al'6etne setietty in leet elee twelimil leelle 1.378e00 Reilla 9 aftett fellt 4.ltteel Estal 8,$tteel
                              ,    Attta 1.llteel Reel 1,4ttell           Rett 9,lttell   Rett 9.fttett
 ,x                              till I liteet        1898 1.lltete     1933 3 Iftete    list 1.lttelt lill 5, tite 64 ptet t 098 43 Coll 4 t,tet.tl         Coll? 1,418 08 Colle 7,93E.48 test seen elebeine enettv      e  selleil, testet (CleMeViell 3.ftt.09 Leen este i

liguld onettyonettetty festet (CleMeVI 1,alte64 ' i

                                                                                                                      ' ' oUt '

9'*" (J \ en: Time (minutes from trip) 49 Caseous E f t t u e r.t Release Rates Ke133eq (C1/sec): 3.42E+01 It31DE (C1/sec) 1.69E-02' RCS activity (uctim!) Xe131m 2.57E+02 Xe133m 1.76E+03 Xe133 8.21E+04 Xel35 4.31E+04 Kr8,$m 4.71E+03 Kr85 1.90E+03 Kr87 5.83E+03 Kr88 1.11E+04 1131 4.03E+04 1132 2.30E+04 1133 6.14E+04 1134 2.94E+04 1135 3.80E+04 Rb88 1.97E+03 Cst 34 3.38E+03 Cot 37 2.65E+03 Cst 38 t.38E+04 RCS energy

  • activity factor (Ci*MeV/ml) 2.32E-01 Airborne activity in leak area (ucilml)

Xe13tm 1.41E+00 Xe133m 9.60E+00 Xe133 4.48E+02 Xe135 2.35E+02 Kr85m 2.57E+01 Kr85 1.04E+01 Kr87 3.18E+01 Kr48 6.04E+01 1131 1.20E+00 1132 1.25E+00 1133 3.35E+00 1134 1.61E+00 1135 2.07E*00 Rb88 1.07E-02 Cs134 1.85E-02 Cat 37 1.45E-02 Cs138 7.55E-02 Leak area airborne energy

  • activity factor (CleMeVint) 2.85E-05 Leak area Itquid energy
  • activity factor (Ci*MeV) 2.36E+06 ,

i Time (minutes from trip) 50 Caseous Effluent Release Rates

  ~

Xe133eq (C1/sec): 3.51E+01 It3tDE (Citsec) 1.72E-02* RCS activity (ucilmt) Ke13tm 2.57t+02 Xe133m 1.76E+03 Ke133 8.21E+04 Xe135 4.31E+04 Kr85m 4.69E+03 Kr85 1.90E+03 Kr87 5.78E+03 Kr88 1.10E+04 1831 4.03E+04 1132 2.29E+04 1133 6.13E+04 1134 2.91E+04 1135 3.79E+04 Rb88 1.89E+03 Cst 34 3.38E+03 Cst 37 2.65E+03 Cs138 1.35E+04 RCS energy

  • activity factor (CleMeVtal) 2.30E-01 Airborne activity in teak area (ucilml)

Xe131m 1.44E+00 Xe133m 9.84E+00 Xe133 4.40E+02 Xe135 2.4tE+02

             .Kr85m 1.43E+01 Kr85 1.07E+01             Kr87 3.23E+01               Kr48 6.17E+01 1831 2.25E+00        1132 1.28E+00      1133 3.43E+00 p-  Rb88 1.06E-02 Cs134 1.89E-02 1134 1.63E+00 1135 2.12E+00 Cs137 1.48E-02 Cst 38 7.58E-02 Leak area airborne energy
  • activity tactor (CgeMeVlat) 2.91E-05 Leak area liquid energy
  • activity factor (Ci*MeV) 2.40E+06 Time (minutes from trip) 51 Caseous Effluent Re ase Rates Xe133eq (Citsec): 3.59E+01 1131DE (Citsec) 1.76E-02*

RCS activity (ucital)

        .'    Xe131m 1.57E+02 Xe133m 1.76E+03 Xe133 8.2tE+04 Xe13 5 '4. 3 t E+0 4 Kr85m 4.68E+03 Kr85 1.90E+03             Kr87 5.73E+03               Kr88 1.10E+04 1131 4.03E+04       1132 2.27E+04       1133 4.13E+04 Rb88 1.82E+03 Cst 34 3.38E+03 Cs137 2.45E+03 Cs138                   1134 2.87E+04 1135 3.79E+04 1.33E+04                     I RCS energy
  • activity factor (CleMeV/mt) 2.28E-01 Airborne activity in leak area (ucitat)

Xe131m 1.48E+00 Xe133m 1.01E+01 Kel33 4.72E+02 Ke135 2.47E+02 Kr85m 2.69E+01 Kr85 1.09E+01 Kr87 3.29E+01 Kr88 4.30E+01

        <     1131 2.31E+00        1132 1.3tE+00       1133 3.52E+00

/' 'T 0 Rb88 1.04E-02 Cs134 1.94E-02 1134 1.45E+00 1135 2.t?t+00 Cs137 1.52E-02 Cs138 7.42E-02 ( l

\~')   i Leak area airborne energyeactivity factor (Cl*MeVtal) 2.98E-05 Leak area                                                                                              l liquid energyeactivity tactor (CleMeV)-2.44E+06                                    '

I l e--- 1 I 1 N- Ml Time (minutes from trip) 52 Caseous Ettluent Release Rates Xe133eq (Citsec): 3.48E+01 113tDE (C1/sec) 1.80E-02* RCS activity (uct/mt) Xe131m 2.57E+02 Xe133m 1.76E+03 Xe133 8.22E+04 Xel35 4.3tE+04 Kr85m 4.47t+03 Kr85 1.90E+03 Kr87 5.67t+03 Kr84 1.09E+04 1131 4.03E+04 1132 2.26E+04 1133 6.12E+04 1134 2.83E+04 1135 3.78E+04 Rb88 1.75E+03 Cs134 3.38E+03 Cs137 2.65E+03 Cs138 1.30E+04 RCS energy

  • activity factor (Ci*MeV/ml) 2.24E-01 Airborne activity in teak area (uctim!)

Xe131m 1.52E+00 Xe133m 1.04E+01 Xe133 4.84E+02 Xe135 2.54E+02 Kr85m 2.75t+01 Kr85 1.12E+01 Kr87 3.34E+01 Kr88 6.44E+01 1131 2.37E+00 1132 1.33E+00 1833 3.61E+00 1134 1.47E+00 1135 2.23E+00 Rb88 1.03E-02 Cst 34 1.99E-02 Cs137 1.56E-02 Cst 38 7.65E-02 Leak area airborne energyeactivity factor (CleMeV/ml) 3.06E-05 Leak area liquid energy

  • activity factor (C4*MeV) 2.49E+06 Time (minutes from trap) 53 Caseous Effluent Release Rates 7g Xe133eq (C1/sec): 3.77E+01 1131DE (C&/sec) 1.85E-02*
  .s-          RCS activity     (uct/mt)

Xe131m 2.57E+02 Xel33m 1.7aE+03 Xe133 8.22E+04 Ke135 4.3tE+04 Kr85m 4.66E+03 Kr85 1.90E+03 Kr87 5.42E+03 Kr88 1.09E+04 1131 4.03E+04 1132 2.25E+04 1133 4.12E+04 Rb48 1.68E+03 Cst 34 3.38E+03 Cst 37 2.65E+03 Cel38 1134 2.79E+04 1135 3.77E+04 1.27E+04 RCS energy

  • activity factor (Ci*MeV/mt) 2.24E-01
  • Airborne activity in leak area (ucitat)

Xe131m 1.56t+00 Xe133m 1.06E+01 Xe133 4.97E*02 Xe135 2.41E+02

             .Kr85m 2.StE*01      Kr85 1.15E+01      Kr87 3.40E+01    Kr88 6.58E+01 1131 2.43E+00      !!32 1.36E+00      1133 3.70E+00 y   Rb88 1.02E-02 Cst 34 2.04E-02 Cst 37 1.40E-02 Cs138     1134 1.69E+00 1135 1.28E+00 7.69E-02 Leak area airborne energy
  • activity factor (CleMeV/mt) 3.13E-05 Leak area 11guld energy
  • activity factor (CleMeV) 2.53E+06 Time (minutes from trip) 54 1
  • Caseous Effluent Release Rates 1 Xe133eq (Cilsac): 3.87E+01 tt31DE (Ct/sec) 1.89E-02*

RCS activity (uctimt)

       -      Xe131m KrB5m     2.57E+02 Xel33m 1.74E+03 Xe133 8.22E+04 Xe135 .4.31E+04 4.44E+03   Kr85 1.90E*03      Kr87 5.57E+03    Kr48 1.00E+04 1

1131 4.02E+04 1133 2.24E+04 1133 6.12E+04 , Rb88 1.62E+03 Cs134 3.38t+03 Cst 37 2.65E+03 Cs138 1134 2.76E+04 1135 3.77E+04 1.25E+04 e RCS energy

  • activity factor (CleMeVlmt) 2.23E-01  !

Airborne activity in teak area tucitat) Xe131m Kr85m 1.40E+00 Xe133m 1.09E+01 Xe133 5.10E+02 Xe135 1.48E+02 2.88E+01 Kr85 1.18E+01 Kr87 3.46E+01 Kr88 6.72E+01 1131 2.50E+00 1132 1.39E+00 1133 3.7tt+00 Rb88 1.00E-02. Cs134 2.10E-02 1134 1.7tt+00 1135 2.34E+00 [)j \

         ;                                         Cel37 1.64E-02g Cst 35 7.73E-02
  • U Leak area airborne energy
  • activity factor ( C i elleV / mt ) 3.2tE-05 Leak area liquid energy
  • activity factor (CleMeV) 2.58E+06

V-l \ l r"x e" : (' Time (miautes from trip) 55 Caseous Ettluent Release Rates Xe133eq (Ct/sec): 3.97E+01 It3tDE (Citsec) 1.93E-02* RCS activity (uctimt) Xe131m 2.57E+02 Xe133m 1.76E+03 Xe133 8.22E+04 Xe135 4.31E+04 Kr45m 4.63E+03 Kr85 1.90E+03 Kr87 5.52E+03 Kr88 1.08E+04 1131 4.02E+04 1132 2.23E+04 1133 4.1tE+04 1134 2.72E+04 1135 3.76E+04 Rb88 1.56E+03 Cs134 3.38E+03 Cs137 2.65E+03 Col 38 1.22E+04 RCS energy

  • activity factor (Ci*MeVint) 2.21E-01 Altborne activity in leak area (uctim!)

Xe131m 1.44E+00 Xe133m 1.12E+01 Xe133 5.24E+02 Xe135 2.75E+02 Kr85m 1.95E+01 Kr85 1.21E,01 Kr87 3.51E+01 Kr88 6.87E+01 1131 2.56E+00 1132 1.42E+00 1133 3.89E+00 1134 1.73E+00 1135 2.39E+00 Rb88 9.9tE-03 Cs134 2.15E-02 Cs137 1.49E-02 Cst 38 7.77E-02 Leak area atrborne energy

  • activity factor (Ct*MeV/mt) 3.29E-05 Leak area liquid energy
  • activity factor (Ci*MeV) 2.43E+06 Time (minutes from trip) 56 Caseous Ettluent Release Rates
    ,x          Xe133eq (Ct/sec): 4.07E+01     113tDE (Cifsec) 1.98E-02*

N,, RCS activity (ucilml) Xe131m 2.57E+02 Xe133m 1.76E+03 Xe133 8.23E+04 Xet35 4.3tt+04 Kr85s 4.62E+03 Kr85 1.90E+03 Kr87 5.47E+13 Kr84 1.07E+04 1131 4.01E+04 1832 2.22E+04 1113 6.1tE+04 1134 2.69E+04 1135 3.75E+04 Rb88 1.50E+03 Cs134 3.38E+03 Cat)7 2.45E+03 Cs138 1.20E+04 RCS energy

  • activity factor (Ci*MeVint) 2.19E-01 Airborne activity in leak area (uct/mt)

Xe131m 1.68E+00 Xe133m 1.15E+01 Xe133 5.38E+02 Xe135 2.82E+02

               .Kr85m 3.01E+01 Kr85 1.24E+01       Kr87 3.58E+01    Kr88 7.03E+01 1131 2.63E+00     1132 1.45E+00    1133 3.99 +00    1134 1.76E+00 1135 1.45E+00 y    Rb88 9.79E-03 Cst 34 2.1tE-02 Cst 37 1.73E-02 Cs138 7.82E-02
     ,      ,   Leak area airborne energy
  • activity tactor (Cl*MeVlal) 3.37E-05 Leak area liquid energy
  • activity factor (CteHeV) 3.48t+06 l

Time (minutes from trip) 57 Gaseous Ettluent Release Rates j Xe133eq (C1/sec): 4.18E+01 It31DE (C1/sec) 2.03E-02* RCS activity (ucilmt)

  • Xe13tm 2.57E+01 Xel33m 1.76E+03 Xe133 8.23E+04 Xe135 4.3tt+04 Kr85m 4.61E+03 Kr85 1.90E+03 Kr87 5.42E+03 Kr88 1.07E+04 l 1131 4.02E+04 1832 2.20E+04 1133 6.11E+04 1134 2.45E+04 1135 3.75E+04 1 Rb88 1.44E+03 Cs134 3.38E+03 Cst 37 2.65E+03 Cs138 1.17E+04 RCS energy
  • activity factor (CleMeVimi) 2.18E-01 e

8 Airborne activity in leak area (uctial)

          ;     Xet31m 1.73E+00 Xe133m 1.18E+01 Xel33 5.52E+02 Xel35 2.90E+02 i

p Kr85m 3.09E+01 Kr85 1.28E+01 Kr87 3.64E+01 Kr88 7.19E+01 i 1831 2.70E+00 1832 1.48E+00 1133 4.10E+00 1134 1.78E+00 1135 2.51E+00

  /~'g          Rb88  9.66E-03 Col 34 2.27E-02 Cs137 1.78E-02 Cs138 7.86E-02

(,'/ h Leak area airborne energy

  • activity factor (CleMeVlal) 3.46E-05
         $      Leak  area       liquid energyeacttwity factor (CleMeV) 2.73E+06 o                                                                                       ---

9 L +4

9""~ O U e-Time (minutes from trip) 58 Caseous Effluent Release Rates Xe133eq (Ci/sec): 4.19E+01 1131DE (Citgec) 2.07E-02* RCS activity (uc!Iml) Xel31m 2.57E+02 Xe133m 1.76t+03 Xe133 8.23E+04 Xe135 4.32E+04 Kr85m 4.60E+03 Kr85 1.90E+03 Kr87 5.37E+03 Kr88 1.07E+04 1131 4.02E+04 1132 2.19E+04 1133 6.10E+04 1134 2.42E+04 1135 3.74E+04 Rb88 1.38E+03 Cs134 3.38t+03 Cs137 2.45E+03 Cst 38 1.15E+04 RCS energy

  • activity factor (Ct*MeVtml) 2.16E-01 Airborne activity in leak area (uct/mt)

Xe131m 1.77E+00 Xe133m 1.2tE+01 Xe133 5.67E+02 Xe135 1.98E+02 Kr85m 3.17E+01 Kr85 1.3tE+01 Kr87 3.70E+01 Kr88 7.35E+01 1131 2.7?E+00 1132 1.51E+00 1133 4.21E+00 1134 1.80E+00 1135 2.58E+00 Rb88 9.54E-03 Cst 34 2.33E-02 Cs137 1.82E-02 Cs138 7.9tt-02 Leak area airborne energy

  • activity factor (Ci*MeV/mt) 3.54E-05 Leak area 11guld energy
  • activity factor (C1*MeV) 2.78E+06 Time (minutes from trip) 59 Caseous Effluent Release Rates Xe133eq (Cifsecs: 4.40E+01 113tDE (Citsec) 2.12E-02*
  ,,            RCS activity (uctInt)

Xe131m 2.57E+02 Xe133m 1.74E+03 Xe133 8.23E+04 Xel35 4.32E+04 Kr85m 4.58E+03 Kr85 1.90E+03 Kr87 5.32E+03 Kr88 1.06E+04 1131 4.01E+04 1132 2.18E+04 1133 4.10E+04 1134 2.58E+04 1135 3.73E+04 Rb88 1.33E+03 Cs!34 3.38E+03 Cs137 2.65E+03 Cs138 1.12E+04 RCS energyeactivity factor (Ci'MeVlmt) 2.15E-01 Airborne activity in leak area (uct/ml) Xe131m 1.82E+00 Xel33m 1.25E+01 Xe133 5.83E+02 Xel35 3.04E+02 Kr85m 3.25E+01 Kr85 1.25E+01 Kr87 3.77E+01 Kr88 7.51E+01 1131 2.85E+00 1132 1.54E+00 1133 4.32E+00

           . Rb88 9.43E-03 Cs134 2.39E-02 Cst 37 1.87E-02 Cst       1134 1.83E+00 1135 2.64E+00
            #                                                             38 7.95E-02
    *
  • Leak area airborne energy
  • activity factor (CitMeV/mt) 3.63E-05 Leak area liquid energyeactivity factor (CleMeV) 2.83E+06 Time (minutes from trip) 60 Caseous Effluent Release Rates Xel33eq (Citsec); 4.51E+01 1131DE (C1/sec) 2.17E-02*

RCS activity (ucilmt)

  • Xe131m Kr85m 2.57E+02 Xe133m 1.76E+03 Xe133 8.23E+04 Xe135 4.32E+04 4.57E+03 Kr85 1.90E+03 Kr87 5.27E+03 Kr88 1.06E+04 1131 4.02E+04 1132 2.17E+04 1133 6.09E+04 e

Rb88 1.28E+03 Cs139 3.38E+03 Cs137 2.65E+03 Cs138 1134 2.55E+04 1135 3.73t+04

          ',                                                                1.10E+04 RCS energy
  • activity factor (CleMeVtal) 2.13E-Ol Airborne activity in leak area (uct/mt)

Xe131m Kr85m 1.87E+00 Xe133m 1.28E+01 Xe133 5.99E+02 Xe135 3.14E+02 3.32E+01 Kr85 1.38t+01 Krt? 3.83E+01 Kr88 7.48E+C1 1131 2.92E+00 1832 1.58E+00  !!33 4.43E+00 s Rb48 9.31E-03 ~ Cs134 2.44E-02 1134 1.85E+00 1135 2.7tt+00 i l Cst 37 1.92E-02 Cs138 8.00E-02 g N- l Leak area airborne energy

  • activity factor (Ci*MeV/st) 3.73E-05

[. Leak area 11guld energyeactivity factor (Cl*MeV) 2.89E+06 o

                                                                                         .%m'.e W U   .M*

1 l Pi C(~% Time (minutes frca trip) 70 Caseous Effluent Release Rates Ist33eq (C1/sec): 7.StE+01 1131DE (Ct/sec) 3.60E-02* RCS activity (uctimt) Ze13tm 2.48E+01 Iel33m 1.70E+03 Xe133 7.95E+04 Xe135 4.14E+04 Kr85m 4.29E+03 Kr85 1.83E+03 Kr87 4.63E+03 Kr88 9.76E+03 1131 3.87E+04 1832 1.99E+04 1133 5.83E+04 1134 2.15E+04 1135 3.52E+04 Rb88 8.35E+02 Cs134 3.25E 03 Cs137 2.55E+03 Cst 38 8.40E+03 RCS energy

  • activity factor (Cl*MeVimt) 1.9tE-01 Airborne activity in teak area (ucilmt)

Ye13tm 2.37E+00 Xe133m 1.42E+01 Xel33 7.60E+02 Xel35 3.98E+02 Kr85m 4.10E+01 Kr85 1.75E+01 Kr87 4.43E+01 Kr88 9.33E+01 1131 3.70E+00 1131 1.90E+00 1133 5.58E+00 1134 2.04E+00 1135 3.37E+00 Rb88 7.98E-03 Cst 34 3.11E-02 Cst 37 2.43C-02 Cs138 8.22E-02 Leak area airborne energy

  • activity factor (C4*MeVimt) 4.65E-05 Leak area  !! quid energy
  • activity factor (Ct*MeV) 3.41E+06 Time (minutes from trip) 80 Caseous Effluent Release Rates rs Xel33eq (Ct/sec): 8.57E+01 113tDE (Ct/sec) 4.02E-02*

f \w- / RCS activity (uctim!) Ee13tm 2.39E+02 Xe133m 1.64E+03 Xel33 7.68E+04 Xe135 4.01E+04 Kr85m 4.02E+03 Kr85 1.74E+03 Krt? 4.07E+03 Kr88 9.02E+03 1131 3.72E+04 1131 1.82E+04 1833 5.58E+04 1134 1.82E+04 1135 3.33E+04 Rb88 5.44E+02 Cst 34 3.13E+03 Cst 37 2.45E+03 Cs138 6.73E+03 RCS energy

  • activity factor (Ct*MeV/mt) 1.73E-01
  • Airborne activity in leak area (ucital)

Ie13tm 2.72E+00 Xet33m 1.87E+01 Ee133 8.76E+02 Xe135 4.58E+02 Kr85m 4.59E+01 Kr85 2.01E+01 Kr87 4.44E+01 Kr84 1.03E+02 1131 4.25E+00 1132 2.07E+00  !!33 6.37E+00 1134 2.07E+00 1135 3.8tE+00 p Rb88 4.2tE-03 Cst 34 3.57E-02 Cs137 2.80E-02 Cst 38 7.48E-02 Leak area airborne energy

  • activity factor (Ct*MeVtal) 5.28E-05 Leak area liquid energy
  • activity factor (Cl*MeV) 3.67E+06
          ,    Time (minutes from trip) 90
  • Caseous Effluent Release Rates '

Ee133eq (C11sec): 9.17E+01 113tDE (Clisec) 4.26E-02* RCS activity (utt/mt)

         -     Re13tm 2.30E+02 Ie133m 1.58E+03 Ie133 7.4tt+04 Xe135 3.87E*04 Kr85m 3.77E*03 Kr85 1.70E.03          Kr87 3.58E+03    Kr88 8.33E+03
               !!31 3.58E+04      1132 1.66E+04      1833 5.35E+04    1134 1.53E+04 1135 3.15E+04
          ,'   Rb88 3.55E+02 Cs134 3.0tt+03 Cet37 2.36E+03 Cst           38 5.24E 03 RCS energy
  • activity factor (CleMeVlat) 1.57E-01 e '

Airborne activtty in leak area (uctist) Ie13tm 2.97E+00 Xe133m 2.04E+01 Xe133 f.57E+02 Xe135 5.00E+02

        }

i Kr85m 4.8BE+01 Kr85 2.19E+01 Kr87 4.62E+01 Kr88 1.08t+02 1831 4.42E+00 1832 2.15E+00 1833 4.9tE+00 1134 1.98E+00 1135 4.07E+00 /~~h Rbt8 4.5tE-03 Cs134 3.89E-02 Cat 3? 3.05E-01 Cst 38 6.80E-02 $ l e

'   O Leak  area airborne energr activity factor (CteMeVist) 5.68E-05 Leak  area       liquid energy
  • activity factor (CleMeV) 3.74E+04 o

7

o. . ;

V f] d y Time (minutes from trip) 100 Caseous Effluent Release Rates Xe133eq (C1/ sect: 9.71E+01 113tDE (Cilsec) 4.36E-02* RCS activity (uct/mt) Xel3tm 2.21E+02 Xet33m 1.53E+03 Xel33 7 15E+04 Xe135 3.73E+04 Kr85m 3.54E+03 Kr85 1.63E+03 Kr87 3.14E+03 Kr88 7.69E+03 1831 3.44E+04 1132 1.52E+04 1133 5.12E+04 1134 1.30E+04 1135 2.98E+04 Rb88 2.3tt+02 Cst 34 2.90E+03 Cs137 2.27E+03 Cst 38 4.I2E+03 RCS energy

  • activity factor (CleMeVtat) 1.43E-01 Airborne activity in leak area (uctimt)

Xe13tm 3.13E+00 Xe133m 2.16E+01 Xe133 1.01E+03 Xel35 5.27E+02 Kr85m 5.01E+01 Kr85 2.31E+01 Kr87 4.44E+01 Kr88 1.09E+02 1831 4.87E+00 1132 2.tSE+00  !!33 7.24E+00 1134 1.83E+00 1135 4.22E+00 Rb88 3.27E-03 Cst 34 4.10E-02 Cs137 3.2tE-02 Cs138 5.82E-02 Leak area airborne energy

  • activity factor (CleMeVial) 5.92E-05 Leak area itqukd energy
  • activity factor (Cl*MeV) 3.75E+06 Time (minutes from trap) 110 Caseous Effluent Release Rates
 ,/'"x            Xel33eq (Cilsec): ?.94E+01       It3tDE (C1/sec) 4.38E-02*

6

  \w-             RCS activity     (uct/mt)

Xel3tm 2.13E+02 Xe133m 1.47t+03 Xet33 6.9tE+04 Xe135 3.59E+04 Kr85m 3.32E+03 Kr$5 1.57E+03 Kr87 2.76E+03 Kr88 7.10E+03 1131 3.31E+04 1132 1.39E+04 1133 4.90E+04 Rb88 t.Stt+02 1134 1.09E+04 1835 2.82E+04 Col 34 2.79E+03 Cst 37 2.19E+03 Cst 38 3.12E+03 RCS energy

  • activity factor (Cl*MeVim!) 1.3tE-Ol
               ,  Airborne activity in teak area (uct/mt)

Xe13tm Kr85m 3.23E+00 Xe133m 2.73E*01 Iet33 1.05E+03 Xe135 5.44E+02 5.03E+01 Kr85 2.38E+01 Kr87 4.18E+01 Kr88 1.08E+02 1131 5.01E+00 1832 2.tlE+00 1133 7.4tt+00 b Rb88 2.28E-03 Cst 34 4.23E-02 Cet37 3.31E-02 Cel38 1134 1.66t+00 1835 4.27E+00

      .
  • 4.87E-02 Leak area airborne energy
  • activity factor (CleMeVint) 6.04E-05 Leak area inquid energy
  • activity factor (Ci*MeV) 3.67E+04 Time (minutes from trip) 120 Cassous Effluent Release Rates Xel33eq (Citsec); 1.00E+02 113tDE (Cassec) 4.33E-02*

RCS activity (ucilmt)

            +
  • Xel3tm3.12E*03 Kr85m 2.05E+02 Xe133m 1.42E+03 Xe133 6.67E+04 Xe135 3.46E+04 Kr85 1.5tt+03 Kr87 2.42E+03 Kr88 4.56E+03
             ,   1131 3.19E+04      It32 1.37E+04      !!33 4.69E+04 s

Rb88 9.44E+01 Cst 34 1.69E+03 Cst 37 2.10E+03 Cs138 1134 9.24E+03 It35 2.67E*04 e 2.52E+03

            ,    RCS energy
  • activity factor (Cl*MeVlat) 1.20E-01
            '    Althorne activity in leak area (uct/mt)

Xel31m 3.27E+00 Xe133m 2.2aE+01 Xel33 1.06E+03 Xe135 5.52E+02 Kr85m 4.97t+01 Kr85 2.412+01 Kr$7 3.87t+01 Kret 1.05E+02 1831 5.08E+00 1132 2.03E+00  !!33 7.47t+00 [ j t Rb88 1.57E Cel34 4.28E-02 Cel3? 3.35E-02 Cst 1834 1.47E+00 1835 4.24E+00 38 4.0tE-02 * ( ,/ [ Leak area airborne energyeactivity factor (CleMeV/mt) 6.07E-05 I Leak area Inquid energy

  • activity factor (CgeneV) 3.54E,06

l O'~~ S 4 g--

 .V Time (manutes from trip) 130 Caseous Effluent Release Rates Xel33eq (Ct/sec): 9.99E+01     tt3tDE (Citese) 4.23E-01' RCS activity    (uct/mt)

Xe13tm 1.98E+02 Xel33m 1.37t+C3 Xe133 4.44E+04 Xel35 3.33E+04 Kr85m 2.92E+03 Kr85 1.46E+03 Kr87 2.13E+03 Kr88 6.06E+03 1131 3.06E+04 1132 1.17t+04 1833 4.49E+04 1134 7.8tE+03 1135 2.53E+04 Rb88 6.42E+01 Cst 34 2.59E+03 Cst 37 2.02E+03 Cst 34 1.97t+03 RCS energyeacttwity factor (Cl*MeV/mt) 1.11E-01 Airborne activity in leak area (uct/mt) Xe13tm 3.28E+00 Xe133m 2.27t+01 Xel33 1.07E+03 Xe135 5.53E+02 Kr85m 4.85E+0! Kr85 2.41E+01 Kr87 3.54E+01 Kr88 1.0tt+02 1831 5.09E+00 1131 1.94E+00 1133 7.45E+00 1134 1.30E+00 1135 4.19E+00 Rb88 1.07E-03 Col 34 4.29E-02 Cst 37 3.36E-02 Cet38 3.27E-02 Leak area airborne energy

  • activity factor (CleMeVtat) 6.03E-05 Leak area liquid energy *ectivtty factor (Cl*MeV) 3.39E+06 Time (minutes from trip) 140 Caseous Effluent Release Rates
   -s             Xe133eq (Ct/sec): 9.88E+01      tt31DE (Ct/sec) 4.10E-02*
 \ ,/             RCS activity     (uctimt)

Xe13tm 1.90E+02 Xel33m 1.32E+03 Xe133 4.2tE+04 Xel35 3.21E+04 Kr85m 2.74E*03 Kr85 1.40E+03 Kr47 1.87E+03 Kr88 5.40E+03 1831 2.95E+04 1832 1.07E+04  !!33 4.30E+04 1134 4.59E+03 1135 2.39E+04 Rb88 4.18E+01 Cs134 2.49t+03 Cst 37 1.95E+03 Cat 38 1.54E+03 RCS energy

  • activity factor (CteMeVim!) 1.02C-01 Airborne activity in leak area (ucitat)

Xe13tm 3.24E+00 Xel33m 2.24E+01 Int 33 1.06E+03 Xe135 5.50E+02

                 .Kr85m 4.70E+01 Kr85 2.40E+01        Kr87 3.21E+01    Kr88 9.59E+01 1131 5.05E+00     1132 1.83E+00 Rb88 7.t?E-04 Col 34 4.26E-02 8133 7.36E+00    1134 1.13E+00 1135 4.09E+00 1                                       Cst 37 3.34E-02  Cst 38 2.44E-02 Leak area attborne energy
  • activity factor (Ci*MeVint) 5.94E-05 Leak area liquid energy
  • activity factor (Ci*MeV) 3.24E+06 Time (minutes from trip) 150
  • Caseous Effluent Release Rates Xe133eq (Ct/sec): 9.72E,01 113tDE (Citsec) 3.95E-02*

RCS activity (uettal) Xel31m 1.83E+01 Xel33m 1.27t+03 Xe133 4.00E+04 Xe135 3.09E+04 Kr85m 2.57t+03 Kr85 1.35E+03 Kr87 1.44E+03 Kr88 5.17t+03 1831 2.84E+04 1132 9.74E,03 1133 4 llE+04 j Rb88 2.73E+01 1134 5.57E+03 8135 2.24E+04 Cat 34 2.40E*03 Cs137 1.88E+03 Col 38 1.20E+03 e RCS energy

  • activity facter (CleMeVint) 9.48E-02 Airborne activity in leak area (uct/st)
           ;      Xel3tm 3.22E+00 Xel33m 2.24E+01 Xe133 1.05E+03 Xe135 5.43E+02 i
               ,  Kr85m 4.53E+01    Kres 2.37E+01     Kr$7 2.89E+01    Kr88 9.08t+01 It31 4.98t+00     1132 1.71E+00     8133 7.22E+00    1834 9.78E-01 1135 3.97t+00

('N ( Rb88 4.79E-04 Cst 34 4.3tE-02 Cel37 3.29E-02 Cel38 2.12E-02 ( ) , Leak area airborne energy

  • activity factor (CleMeV/mt) 5.82E-05
  ' ' '   e       Leak area       liquid energy
  • activity factor (CleMeV) 3.07t+04

9"" { \ U V Time (minutes from trip) 160 Caseous Effluent Release Rates Xe133eq (C1/sec): 7.17E+01 113tDE (Cifsec) 2.85E-02* RCS activity (ucilm!) Xe13tm2.51E+03 Kr85m 1.83E+02 Xel33m 1.28E+03 Xe133 6.0tE+04 Xe135 3.09E+04 Kr85 1.35E+03 Kr87 1.50E+03 Kr48 4.96E+03 1131 2.83E+04 1832 9.28E+03 1833 4.09E+04 Rb84 1.85E+01 Cst 34 2.40E+03 Cs137 1.88E+03 Cs138 1134 4.88E+03 1135 1.22E+04 9.79E+02 RCS energy

  • activity factor (CleMeVtml) 9.15E-02 Attborne activity in leak area (ucilmt)

Ke131m 2.38E+00 Xe133m 1.64E+01 Xet33 7.82E+02 Xe135 4.02E+02 Kr81m 3.26E+01 Kr85 8.75E+01 Kr87 1.95E+01 Kr88 4,45E+01 1831 3.69t+00 1132 1.21E+00  !!33 5.32E+00 Rb88 2.40E-04 Cs134 3.12E-02 Cst 37 2.44E-02 Cst 1134 6.35E-01 !!35 2.89E*00 38 1.27E-02 Leak area airborne energyeactsvity factor (Cl*MeVint) 4.28E-05 Leak area liquid energy

  • activity factor (Ci*MeV) 2.19E+06 Time (minutes from trip) 170 t

Caseous Efttuent Release Rates Xe133eq (C1/sec): 5.29E+01 113tDE (Citseep 2.06E-02*

                                                                   )         RCS activity      (uctist)

Xet3tm2.44E+03 Kr85m 1.83E+02 Xe133m 1.28t+03 Ke133 6.03E+04 Xe135 3.09E+04 Kr85 1.35E+03 Kr87 1.37E+03 Kr88 4.76E+03 1131 2.83E+04 1132 8.82E+03 1133 4.07E+04 Rb88 1.25E+01 Cs134 2.40E+03 Cst 37 1.88E+03 Cs138 1134 4.29E+03 1135 2.18E+04 l 7.95E+02 RCS energy

  • activity factor (Ca*MeVtal) 0.86E-02 Airborne activity in leak area (uct/mt)

Xe13tm1.35E+01 Kr85m 1.77t+00 Me133m 1.23E+01 Xe133 5.81E+02 Xe135 2.97t+02 Kr85 1.30E+01 Kr87 1.32E+01 Kret 4.58E+01 1131 2.73E+00 1132 8.49E-01 1133 3.9tt+00 Rb88 1.21E-04 Cs134 2.3tE-02 1134 4.13E-01 1135 2.10E+00 k Cst 37 1.stt-02 Col 38 7.46E-03

                                                                 *
  • Leak area airborne energy
  • activity factor (CleMeVlal) 3.15E-05 Leak area 11guld energy
  • activity factor (Ci*MeV) 1.57E+06 Time (minutes from trip) 180 Caseous Effluent Release Rates Ke133eq (C1/sec): 3.90E,01 113tDE (Cissec) 1. 4 9 E,- 0 2
  • RCS activity (uctimt)
                                                                       '    Xet3in 2.38E+03 Kr85m   1.84E+02 Xet33m     1.28E+03 Xel33 6.05E+04 Xel35 3.00E+04 Kr85 1.35E+03
                                                                      ~

Kr87 1.25E+03 Kret 4.57t+03

                                                                            !!31 2.83E+04       !!32 8.39E+03     1833 4.04E+04 Rb88 8.48t+00 Cst 34 2.40E+03 Cs137 1.88E+03 Col             1134 3.76E+03 1135 2.15E+04
                                                                       ;                                                                     38 6.46E+02 RCS energy
  • activity factor (CteMeVlmt) 8.59E-02 Airborne activity in teak area (uct/mt)

A Xe131m Kr85m 1.3tE+00 Xe133m 9.14E+00 Xel33 4.3tt+02 Xe135 2.20E+02 1.70E+01 4 Kr85 9.elt+00 Kr87 8.9tt+00 Kr88 3.25E+01 j 1831 2.03E+00 1132 3.98E-01  !!33 2.88E+00 7s Rb88 4.04E-05 Cel34 8.7tt-02 Cs137 1.34E-02 Cal 1134 2.48E-01 1135 1.53E+00 I j t 38 4.6tt-03 (s _,/ Leak area alsborne energy

  • activity factor (Ci*Movial) 2.32E-05 ,

[ Leak area 11guld energy

  • activity factor (CleMeV) - 1.13 E + 0 6 o
                                                                                                                                                                   .. m t ma

r ,O e= i \ N-i Time (minutes from trip) 190 Caseous Ettluent Release Rates Xel33eq (Ct/sec): 2.88E+01 1131DE (Citsec) 1.08E-02* RCS activtty tucilml) Xe131m 1.84E+02 Xe133m 1.28t+03 Xe133 6.06E+04 Xe135 3.08E+04 Kr85m 2.32E+03 Kr85 1.35E+03 Kr87 1.14E+03 Kr88 4.38E+03 1131 2.83E+04 1832 7.97t+03 1833 4.02E+04 1134 3.30E+03 1135 2.1tE+04 Rb88 5.75E+00 Cst 34 2.40E+03 Cst 37 1.88E+03 Cst 38 5.25E+02 RCS energy

  • activity factor (CleMeViml) 8.35E-02 Altborne activity in teak area (uct/mt)

Xe131m 9.69E-01 Xel33m 6.78t+00 Xe133 3.20E+02 Xe135 1.63E+02 Kr85m 1.22E+01 Kr85 7.11E+00 Kr87 6.01E+00 Kr88 2.31E+01 1131 1.49E+00 1132 4.21E-01 1133 2.12E+00 1134 1.74E-01 1135 1.11E+00 Rb88 3.03E-05 Cs134 1.24E-02 Cs137 9.89E-03 Cs138 1.77E-03 Leak area airborne energy

  • activity factor (CteMeViml) 1.70E-05 Leak area  !! quid energy
  • activity factor (Ci*MeV) 8.09E+05 Time (minutes from trip) 200 Caseous Ettluent Release Rates
  ~~s              Xe133eq (C1/sec); 2.13E+01         113tDE (C1/sec) 7.85E-03*
 \-   ')           RCS activity         (uct/mt)

Xe131m 1.84E+02 Xe133m 1.29E+03 Xe133 4.08E+04 Xe135 3.08E+04 Kr85m 2.24E+03 Kr85 1.35E+03 Kr87 1.04E+03 Kr88 4.21E+03 1131 2.83E+04 1132 7.58E+03 1133 4.00E+04 1134 2.89E+03 1835 2.07E+04 Rb88 3.89E+00 Cs134 2.40E+03 Col 27 1.88E+33 Cs138 4.27E,02 RCS energy

  • activity factor (Ct*MeV/ml) 8.13E-02
               ,   Attborno activity in teak area (uct/mt)

Xe13tm 7.19E-01 Xet33m 5.03E+00 Xel33 2.37t+02 Xe135 1.20E+02

                 ' Kr 8 5m 8. 8 3 E+00   Kr85 5.27E+00     Kr87 4.07t+00   Kr88 1.64E+01 1131 1.10E+00        1132 2.96E-01     1133 1.56E+00   1134 1.13E-01 1135 8.10E-01
             >     Rb88 1.52E-05       Cs134 9.35E-03 Cs137 7.32E-03  Cst 38 1.67E-03 e

Leak area airborne energy

  • activity factor (Cl*MeV/ml) 1.26E-05 Leak area liquid energy *aettwity factor (CteMeV) 5.83E+05 5

Time (minutes from trip) 210 Caseous Ettluent Release Rates Xe133eq (Ct/sec): 1.57E+01 Il3tDE (C1/sec) 5.49E-03* RCS activity (uctist) - e Xat3tm 1.84E+02 Xe133m 1.29E+03 Xe133 4.10E+04 Xel35 3.08E+04 Kr85m 2.21E+03 Kr85 1.35E+03 Krt? 9.5tt+02 Kr88 4.04E+03

             ,     1831 2.83E+04         1132 7.2tE+03     1133 3.98E+04 s      Rb88 2.44E+00                                           1134 2.54E+03 1135 2.04E+04 e

Col 34 2.40E+03 Cst 37 1.88E+03 Cs138 3.47E+02

           ,       RCS energy
  • activity tactor (CleMeVim!) 7.92E-02 e

Airborne activity in leek area (uct/st)

           'e
           'P      Xe131m 5.3tt-01 Xe133m 3.73E+00 Xet33 1.74E+02 Xet35 8.89E+01 Kr85m 4.37E+00        Kr85 3.90E+00     Kr87 2.75E+00   Kr48 1.17E+01 j'        1831 8.17E-01         1132 2.08E-01     1133 1.15E+00 p~'T              Rb88 7.62E-06       Col 34 4.92E-03 1134 7.34E-02 1135 5.89E-01
       /     v Cet37 5.42E-03  Cs138 1.00E-03 s
             '     Leak area altborne energy
  • activity factor (CleMeVint) 9.25E-04 Leak area liquid energy
  • activity factor (CteMeV) 4.20E+05 e

e 1 i n

l l N

  /~%

(v ) W" Time (minutes from trip) 220 Caseous Effluent Release Rates Ie133eq (C1/sec): 1.14E+01 1131DE (Citsac) 4.13E-03* RCS activity (uctimt) Ie13tm 1.84E+02 Xe133m 1.19E+03 Est33 6.tlE+04 Xe135 3.07E+04 Kr85m 2.15E+03 Kr85 1.35E+03 Kr87 8.69E+02 Krat 3.87E+03 1831 2.82E+04 1132 6.85E+03 1133 3.96E+04 1134 2.23E+03 1835 1.00E+04 Rb88 1.79E+00 Cs134 2.40E+03 Cs137 1.88E+03 Cst 38 2.82E+02 RCS energy

  • activity factor (CteMeV/mt) 7.74E-02 Airborne activtty in leak area (uct/mt)

Ie13tm 3.94E-01 Xe133m 2.77E+00 Xel33 1.31E+02 Xet35 6.57E+01 Kr85m 4.60E+00 Kr85 2.89E+00 Kr87 1.86E+00 KrS8 8.28E+00 1131 6.04E-01 1132 1.47E-01 1833 8.47E-01  !!34 4 77E-02 1835 4.29E-01 Rb88 3.82E-06 Cs134 5.13E-03 Cs137 4.01E-03 Cst 38 6.03E-04 Leak area atrborne energyeactivity factor (Ci*MeV/mt) 6.82E-06 Leak area liquid energy

  • activity factor (CteMeV) 3.03E+05 Time (minutes from trip) 230 Caseous Effluent Release Rates Ie133eq (Citsec): 8.57E+00 113tDE (Cilsec) 3.00E-03*

(,, O). RCS activity (uctral) Ie131m 1.84E+02 Xe133m 1.29E+03 Iet33 6.13E+04 Xel35 3.07E+04 Kr85m 2.09E+03 Kr85 1.35E+03 Kr87 7.93E+02 Kr88 3.72E+03 1131 2.82E+04 1132 6.51E+03 1133 3.93E+04 1134 1.96E+03 1135 1.97E+04 Rb88 1.21E+00 Cs134 2.40E.03 Cs137 1.88E+03 Ce138 2.29t+02 RCS energy

  • activity factor (Cl*MeVim!) 7.57E-02 Airborne activity in leak area (ucital)

Xe131m 2.91E-01 te133m 2.03E+00 Isl33 9.7tE+0! Xel35 4.86E+01 Kr45m 3.32E+00 Kr85 2.14E+00 Kr87 1.26E+00 Kr88 5.89E+00 1131 4.47E-01 1132 1.03E-01  !!33 6.23E-01 1134 3.10E-02 1135 3.12E-01 y Rb88 1.92E-06 Cs134 3.79E-03 Cs137 2.97E-03 Cst 38 3.43E-04 Leak area airborne energy

  • activity factor (CteMeVint) 5.02E-06 Leak area liquid energy
  • activity factor (Ci*MeV) 2.19E+05 Time (minutes from trip) 240 Caseous Effluent Release Rates Ze133eq (Ct/ sect: 6.33E+00 Il3tDE (Cirsec) 2.18E-03*

RCS activity (uct/st) Iel35m 1.84E+02 Mel33m 1.30E+03 Xe133 4.15E+04 Xe135 3.06E+04 Kr85m 1.04E+03 Kr85 1.35E+03 Kr87 7.24E+02 Kr88 3.57E+03 It31 2.82E+04 1132 6.19E+03 1833 3.9tt+04  !!34 1.72E+03 1135 1.94E+04

           ,'    Rb88 8.20E-01    Cst 34 2.40E+03   Cst 37 1.88E+03  Cs138 1.86E+02 RCS energy
  • activity factor (CteMeVim!) 7.4tt-02 Althorne activity in leak area (ucital)

Isl31m 2.14E-01 Xe133m 1.52E+00 te133 7.2tt+01 Eel 35 3.59E+01 Kr85m 1.39E+00 Kr85 1.58E+00 Kr87 8.48E-01 Kr88 4.18E+00 It31 3.3tE-01 1132 7.26E-02 It33 4.59E-01

   <*N     ,     Rb88 I134 2.01E-02 1135 9.6tt-07. Cel34 2.8tE-03 Cs137 1.20E-03 Cs138 2.18E-04 2.27E-01 f     )   L     Leak  area etrborne ener0yeactivity factor (CteMevtal) 3.70E-06
  \~ /   U       Leak  area       liquid energyeactivity fact:r (CleMeV) 1.59t+05 o

l

r p g Time (minutes from trip) 250 Caseous Effluent Release Rates Xe133eq (C1/sec): 4.68E+00 1131DE (Citsec) 1.58E-03* RCS activity (ucital) Xe131m 1.84E+02 Xel33m 1.30E+03 Xe133 6.16E+04 Xe135 3.06E*04 Kr85m 1.99E+03 Kr85 1.35E+03 Kr87 4.61E+02 Kr88 3.42E+03 1131 2.82E+04 1132 5.89E+03 1133 3.89E+04 1134 1.51E+03 1835 1.90E+04 Rb88 5.54E-01 Cs134 2.40E+03 Cst 37 1.88E+03 Cs138 1.5tt+02 RCS energy

  • activity factor (Ci*MeV/mt) 7.24E-02 Airborne activity in leak area (uct/mt)

Xe131m 1.40E-01 Xe133m 1.13E+00 Xe133 5.35E+01 Xe135 2.65E+01 Kr85m 1.73E+00 Kr85 1.17E+00 Kr87 5.73E-01 Kr88 2.97E+00 1131 1.45E-01 1132 5.11E-02 1133 3.38E-01 1134 1.31E-02 1135 1.45E-Ot Rb48 4.82E-07 Cs134 2.08E-03 Cst 37 1.63E-03 Col 38 1.31E-04 Leak area airborne energy *activLty factor (Ct*MeV/mt) 2.73E-06 Leak area liquid energy *activtty factor (C1*MeV) 1.15E+05 Time (minutes from trip) 260 Cameous Effluent Release Rates f-~g Xe133eq (C1/sec): 3.46E+00 1131DE (C1/sec) 1.15E-03* f Ns RC5 activity (uctimt) Xe131m 1.84E+02 Xe133m 1.30E+03 Xel33 4.18E+04 Xe135 3.05E+04 Kr85m 1.94E+03 Kr85 1.35E+03 Kr87 6.03E+02 Kr88 3.28E+03 1131 2.82E+04 1132 5.40E+03 1133 3.87E+04 1134 1.32E+03 1135 1.87E+04 Rb88 3.76E-01 Cs134 2.40E+03 Cs137 1.88E+03 Cs138 1.23E+02 RCS energy

  • activity factor (CteMeV/mt) 7.13E-02
           ,   Attborno activity in leak area (ve! Int)

Xe131m 1.18E-01 Xe133m 8.36E-01 Xe133 3.97E+01 Xe135 1.94E+01

             - Kr85m 1.25E+00    Kr85 8.46E-01      Kr87 3.87E-01     Kr48 2.11E+00 1131 1.81E-01     1132 3.59E-02      1133 2.49E-01      1134 8.48E-03 1835 1.20E-01
b. Rb88 2.42E-07 Cst 34 1.54E-03 Cs137 1.20E-03 Cs138 7.89E-05 Leak area airborne energyeactivity factor (CleMevtal) 2.02E-04 Leak area liquid energy
  • activity factor (CteMeV) 8.37E+04 t

[ Time (minutes from trip) 270

  • Caseous Effluent Release Rates Xe133eq (C1/sec): 2.56E+00 1131DE (Citsee) 8.38E-04*

RCS activity (uct/mt) Xe13tm 1.84E+02 Xe133m 1.30E+03 Xe133 4.19E+04 Xe135'3.04E+04 Kr$5m 1.89E+03 Kr85 1.35E+03 Kr87 5.50E+02 Kr88 3.15E+03 1131 2.82E+04 1132 5.32E+03 1133 3.85E+04

        )     Rb88 2.55E-01 Cst 34 1134 1.14E+03 1135 1.44E+04 3.40E+03   Cst 37 1.88E+03    Calat 9.90E+01 e

RCS energy

  • activity factor (Ci*MeV/mt) 7.00E-02 Airborne activity in leak area (ucilml) 9 Xel31m 8.77E-02 Xe133m 4.20E-01 Xel33 2.95E+01 Xe135 1.45E+01 Kr85m 8.99E-01 Kr85 6.4tt-01 Kr87 2.42E-01 Kr88 1.50E+00 i

1131 1.34E-01 1132 2.53E-02 1133 1.83E-01 It34 5.51E-03 1135 8.74E-02 , S b Rb88 1.21E-07 Cst 34 1.14E-03 Cs137 8.92E-04 Cst 38 4.75E-05

') U
c. Leak area airborne energy
  • activity factor (CleMeVint) 1.491 06 Leak area liquid energyeactivity factor (CleMeV) 6.08t+04 s

u -

C -f%,i e-= V Time (minutes from trip) 280 Caseous Ettluent Release Rates Me133eq (Cifsect: 1.89E+00 113tDE (Cifsec) 4.10E-04* RCS activity (uctim!) Ee131m 1.85E+02 Xe133m 1.3tE+03 Xe133 6.2tE+04 Me135 3.04E+04 Kr85m 1.84E+03 Kr85 1.35E+03 Kr87 5.03E+02 Kr48 3.02E+03 1131 2.81E+04 1131 5.06E+03  !!33 3.83E+04 1134 1.02E+03 1135 1.81E+04 Rb84 1.73E-01 Cst 34 2.40E+03 Cst 37 1.88E+03 Cst 38 8.1tE+01 RCS energy

  • activity factor (CteMeVimt) 4.88E-02 Airborne activity in leak area (uct/mt)

Xe131m 6.50E-02 Xe133m 4.40E-01 Xel33 1.19E+01 Xe135 1.07E+01 Kr85m 6.49E-01 Kr85 4.75E-01 Kr87 1.77E-01 Kr88 1.04E+00 1131 9.90E-02 1132 1.78E-02 1133 1.35E-01 1834 3.58E-03 1135 6.36E-01 Rb88 4.08E-08 Cst 34 8.43E-04 Cel37 6.60E-04 Cst 38 2.86E-05 Leak area airborne energy

  • activity factor (CleMeVim!) 1.10E-06 Leak area liquid energy *activsty factor (CleMeV) 4.42E+04 Time (minutes from trip) 290 Caseous Effluent Release Rates f3 Xe133eq (C1/sec): 1.40E+00 It3tDE (C1/sec) 4.44E-04*

/ \ (_,/ RCS activity (uctimt) Xe13tm 1.85E+02 Xe133m 1.3tt+03 Xe133 4.22E+04 Xe135 3.03E+04 Kr85m 1.80E+03 Kr85 1.35E+03 Kr87 4.59t+02 Kr48 2.90E+03 1131 2.81E+04 1832 4.81E+03 1133 3.8tE*04 1134 8.92E+02 1135 1.74E+04 Rb88 1.t?E-01 Cst 34 1.40E+03 Cst 37 1.88E+03 Cs138 4.59E+01 RCS energy

  • activity factor (Ci*MeV/mt) 4.77E-02 Airborne activity in leak area (uct/mt)

Xel3tm 4.8tE-02 Xe133m 3.4tE-01 Xe133 1.42E+01 Xel35 7.89E+00 Kr85m 4.48E-01 Kr85 3.5tE-01 Kr87 1.20E-01 Kret 7.54E-01 1131 7.33E-02 1132 1.25E-02 1133 9.92E-02 1134 2.33E-03 1135 4.63E-02

          ., Rb88 3.05E-08 Cst 34 4.24E-04 Cs137 4.89E-04 Cs134 1.72E-05
   ,      ,  Leak area airborne energy
  • activity factor (Ci'MeVtml) 8.10E-07 Leak area  !! quid energy
  • activity factor (CleMeV) 3.12E+04 Time (minutes from trip) 300 Caseous Effluent Release Rates Xe133eq (Cifsec): 1.03E+00 11310E (Citsec) 3.24E-04*

RCS activity (uc!#mt) Mel3tm 1.85E+02 Xel33m 1.31E+03 Xe133 4.24E+04 X e l 3 5 ' 3. 01E + 0 4 Kr85m 1.75E+03 Kr85 1.35E+03 Kr87 4.19E+02 Kr48 1.78t+03 1131 2.8tt+04 1132 4.57t+03 1133 3.79E+04  !!34 7.83E+02 1135 1.75E+04 l Rb88 7.93E-02 Cs134 2.40E+03 Cs137 1.48E+03 Cot 38 5.34E+01 RCS energy

  • activity factor (C1'MeVim!) 4.47E-01 Airborne activity in leak area (vettat)

Xe131m 3.54E-02 Xel33m 2.53E-01 Xe133 1.20E+01 Xel35 5.83E+00

        )    Kr85m 3.38E-Ot    Kr85 2.60E-01     Kr87 8.08E-02     Kr88 5.37E-01 i    1131 5.42E-02     1132 8.82E-03     1133 7.30E-02     1134 1.5tE-03 1135     3.37E-02 0

/N Rb88 1.53E-05 Col 34 4.62E-04 Cs137 3.42E-04 Cel38 1.03E-05 ( ) ( Leak area airborne energyeactivity factor (CleMeVint) 5.98E-07

'   o     Leak area        liquid energyeactivity tactor (CgeMeV) 2.34E+04 o

l

r

 ,m

{ ^ \

      )                                                                                            t=~

Time (minutes from trip) 310 Caseous Effluent Release Rates Xel33eq LCitsec); 7 64E-Ot 113tDE (C1/sec) 2.36E-04* RCS activity (uctimil Xel3tm 1.85E*02 Xel33m 1.31E+03 Xe133 6.25E+04 Xel35 3.01E+04 Kr85m 1.7tt+03 Kr85 1.35E+03 Kr87 3.82E+02 Kr88 2.67E+03 1831 2.81E*04 1132 4.34E+03 1833 3.77t+04  !!34 6.87E*02 1135 1.72E+04 Rb88 5.37E-02 Cst 34 2.40E+03 Cat 37 1.88E+03 Cst 38 4.35E+01 RCS energy

  • activity factor (Ct*MeV/mt) 6.57E-02 Airborne activity in teak area (ucitall Xe13tm 2.64E-02 Xe133m 1.88E-01 Xel33 8.93E+00 Xel35 4.30E+00 Kr85m 2.44E-01 Kr85 1.93E-01 Kr87 5.46E-02 Kr88 3. Sit-01 1131 4.01E-02 1132 6.20E-03  !!33 5.38E-02 1834 9.8tE-04 1135 2.45E-02 Rb88 7.67E-09 Cst 34 3.42E-04 Cal 37 2.68E-04 Col 38 6.22E-06 Leak area airborne energy
  • activity factor (Ca*MeV/mt) 4.4tt-07 Leak area  !! quid energy *activsty factor (Ct*MeV) 1.71E+04 Time (minutes from trip) 320 Caseous Effluent Release Rates g3 Xe133eq (Citsect: 5.65E-01  !!3tDE (Clisec) 1.72E-04*

(

\m-            RCS activity tuctial)

Xel3tm 1.85E+02 Xe133m 1.32E+03 Xel33 6.27t+04 Xet35 3.00E+04 Kr85m 1.46t+03 Kr85 1.35E+03 Kr87 3.49E+02 Kr88 2.54E+03 1831 2.8tE+04 1832 4.13E+03 1133 3.74E+04 1834 6.03E+02 1135 1.69E+04 Rb88 3.44E-02 Cs134 2.40E+03 Cot 37 1.88t+03 Ce138 3,54t*01 RCS energy

  • activity factor (CleMeVtml) 6.48E-01
             , Airborne activity in leak area (uctInt)

Xel3tm 1.95E-02 Xst33m 1.39E-01 Xel33 4.63E+00 Xel35 3.18t+00 Kr85m 1.76E-01 Kr85 1.43E-01 Kr87 3.69E-02 Kr88 2.7tt-01 1131 1.97E-01 Il32 4.37E-03  !!33 3.96E-02 1834 6.37E-04 1135 1.78E-02 k Rb88 3.85E-09 Col 34 1.53E-04 Cst 37 1.98E-04 Cs138 3.74E-06 Leak area airborne energy

  • activity factor (Cl*Movial) 3.26E-07 Leak area Itquid energy
  • activity factor (CleMeV) 1.25E+04 Time (minutes from trip) 330
  • Caseous Effluent Release Rates Xe133eq (Ct/ sect: 4.18E-01 It3tDE (Ct/sec) 1.36E-04*

RCS activity (ucital) Rel3tm 1.85E+02 Xe133m 1.31E+03 Xel33 6.28E+04 Natal 2.99E+04 Kr85m 1.42E+03 Kr85 1.35E+03 Kr87 3.18t+02 Kr88 2.46E+03 1131 2.8tt+04 1832 3.93E+03 It33 3.72E+04

           ,'                                                        1134 5.29E*02 Rb88 2.44E-01 Cst 34 1.40E+03 Cel37 1.88E+03 Col 38 2.87E+01 1835 1.64E+04 e   RCS energy
  • activity facter (Ct*MeVial) 6.39E-02 Airborne activity in leak area (ucital)

Nel3tm 1.45E-02 Xel33m 1.03E-01 Re133 4.93r,00 Xel35 2.34E+00

          't   Kr85m 1.27E-01    Kr85 1.04t-01      Kr87 2.49E-02 i

Kr88 l.92E-01 It31 2.19E-02 1832 3.07E-03 1833 2.9tE-02 1134 4.14E-04 1835 1.30E-03 [h \ Rb88 1.93E-09 Cet34 4.87E-34

 )    D Leak area Cst 37 1.47E-04  Cstat 2.15E-06 Leak area airborne energy
  • activity factor (Ct*MeVInt) 3.4tE-07 itquid energy
  • activity factor (CteMeV) 9. TOE +03 0

F"""

/~N \

g Time (minutes from trip) 340 Caeeous Efttuent Release Rates Iel33eq (C4 feet): 3.09E-Ol It3tDE (Citese) 9.19E-05' RCS activity (uct/mt) Ie13tm 1.85E+02 Isl33m 1.32E+03 Ie133 6.30E+04 3e835 2.99E+04 Kr85m 1.58t+03 Kr85 1.35E+03 Kre? 2.91E+02 Kr48 2.36t+03 1831 2.80E+04 1832 3.73E+03 1833 3.70E+04 1834 4.44E+02 1835 1.63E+04 Rb88 1.67E-02 Cot 34 2.40E+03 Cela? 1.84E+03 Cel38 2.34E+0L RCS energy

  • activity factor (CteMeVint) 6.3tE-03 Altborne activity in leak area (uctfal)

Iel3tm 1.07E-03 Isl33m 7.44E-02 tel33 3.65E+n0 Iel35 8.73E*00 Kreta 9.15E-03 Kr85 7.8tE-02 Kr87 1.68E-02 Kr48 1.37E-08 1131 1.62E-02 1832 2.l4E-03 1133 3.15E-03 1134 2.69E-04 1835 9.44E-03 Rbel 9.47E-10 Col 34 1.39E-04 Cel37 1.09E-04 Cel38 1.35E-06 Leak area airborne energy *acttwity factor (CleMeVint) 1.78E-07 Leak area liquid energyeactivtty factor (Ca*Mov) 4.45E+03 Time (minutee from trip) 350 Caseeue Effluent Release Rates Ie133eq (C4/sec): 2.19E-01 Il31DE (Ci/see) 6.71E-05* O) (, RCS astivity (vettal) Isl35m1.54E+03 Kr85m 1.85E+02 Est33m 1.32E+03 Isl33 6.38E+04 Isl35 2.98t+04 Kr45 1 35E+03 Kr87 2.65E+02 Kr48 3.24E+03 1131 2.80E,04 1832 3.55t+03 1833 3.68E+04 1134 4.07E+02 1833 1.40E+04 Rb88 1 13E-02 Cel34 2.40E+03 Cel37 1.88E+03 Cel38 1.90E+08 RCS energy

  • activity tatter (Cl*MeVint) 4.24E-03 Airborne settvity in leak area tutt/mt)

Isl3tm6.40E-02

            ,Kr85m    7.94E-03 Isl33m    5.47E-02 Isl33 2.71E*00 Isl35 l.18E+00 Kr85 5. 74E. 0 2     Krt? l.14E-02   Kr88 9.7tE-03 litt 1.20E-02      1832 1.53E-03        1833 1.58E-02   1834 1.75E-04 1835 6.875-03 p   Rb48 4.85E-10    Cel34 1.03E-04        Col 37 0.04E-05  Ce138 4.14E-07 Leak area altborne energy
  • activity taster (Cl*MeVim!) 1.31E-07 Leak area liqute energyeastivity latter (CleMeV) 4.46t+03 Time Eminutes from trip) 340 Casseus Effluent Release Rates Est33eq (Citese): 1.49E-On ll3 TOE (Citseen 4.9.1 05*  !

RCS activtty tusital) Isl3tm 1.50E*03 Kr45m 1.05E+02 Isl33m 1.32E+03 Iel33 4.33E+04 Xel33 2.97E*04 KrSt 1.35E*03 Kr87 2.42E+03 Kr88 3.l?t+03 1131 3.80E+04 1832 3.37E*03 1833 3.44E+04 Rb88 7.64E-03 Cot 34 1.40E*03 Col 37 1.88t+03 1134 3.57E*02 1833 1.57t+04

        #,                                                           Col 38 1.54E+0L RCS anergyeasttwity faster (CleMeVimi) 4.14E 02 Altborne aettetty in leak area tuttist)
       .'                                                                                                    l i

Nellin 4.76E-03 Kr85m 5.88E-03 Eet33m 4.20E-02 Iel33 2.0lE*00 tel35 9.4tt-01 ' [ Kr85 4.20E-02 Kr87 7.69E-03 Kr48 6.90E-02 ( 1131 8.89E-E3 1132 1.07E-03 1833 l.16E-02 (~"s} o Rb88 2.43E-10 Cel34 7.40E-03 Cel37 5.95t=05 Cel34 1834 1.13E 04 1833 S.00E-03  ; 4.49E-07 N- / Leak area antherne energyeactivity faster (Cgeneypal) 9.69E-08 , l Leak area liquid energy *aettetty faster (Cl*MeV) 3.SSE+03 o

                                                                                                        *~
                                                                                               . (. g .
                                                                                                 '.r.      ,

9"" O e-Time (minutes from trip) 390 Caseous Effluent Release Rates Isl33eq (Ct/ sect: 9.35Ee01 ll31DE (Citsee) 2.44t-03* Tlae (manutes from tssp) 410 Caseous Etfluent Release Rates Mel33eq (C4/ sect: 1.04Ee03 Il3tDE (Citeet) 2.9tE-02* Time (manutes from trip) 450 Casseus Effluent Release Rates Iel33eq (Catsee): 9.7tt+01 Il3tDE (Caisse) 2.40E-02* Time (manutes from trip) 480 Casseus Effluent Release Rates Isl33eq (Citese): 8.55t+0! IISIDE (Citesel 2.23E-03* Time (minutes from trip) 5l0 Caseeue Effluent Release Rates Isl33eq (C4/sec): 7.47t+0B ll31DE (C4/sec) 1.91E-03* Time tunnutes from trip) 540 Coseous Effluent Release Rates Isl33eq (Catseel: 4.53E+0! 1831DE (Clisec) 1.44E-01'

           . Time tunnutes from trip) 570 y    Caseeue Esfluent Release Rates
 ,      ,    Iel33eq (Catsee): 5.74EeCl   ll3lDE (Citsee) 1.43t-03*

Time tatnutes from trip) 400 E

  • Cessous Effluent Release Rates Isl33eq (Catseel: 5.09E+01 1831D5 (C4/seen 1.83E-02*
  • l Time (minutes from trip) 430
       ,    Caseeue Effluent Release Retes
  • Isl33eq (Ct/see): 4.49E+01 IISIDE (Citesel 1.07t-02*

Time tatnutes from trip) 440 Caseous Effluent Release Retes

      ;     Int 33eq (Citseel: 1.08 teel ll3lDE (Citseet 4.39t-03*
      'P Time tatnutes from trip) 490                                   ,

[ Caseeve Effluent Release Rates *}

     ,      Isl33ee (Citseel; 7.34t 00 ll3tDE (C&tese) 1,73t-03*

za:

F"" O U C Time (minutes from trip) 720 Caseous Effluent Release Rates Iet33eq (Citsee): 2.98E+00  !!3tDE (Citsec) 4.90E-04* Time (manutes from trip) 750 Caseous Effluent Release Rates tel33eq (Citsec): 1.3tt+00 ItalDE (Cassec) 2.77E-04* Time (minutes from trip) 700 Caseous Etfluent Release Rates te133eq (Ct/sec): 4.48E-08 It3tCE (Citsee) 1.11E-04* Time (manutes from trip) 810 Caseous Effluent Release Rates tel33eq tCitsect: 1.97E-01 tt3tDE (Citsec) 4.48E-05* Time (minutes from trip) 840 I Caseous Effluent Release Rates 's_s/ Int 33eq (Ct/ sect: 7.98E-01  !!3tDE (Citsec) 1.80E-05* Time (minutes from trip) 870 Caseeue Effluent Release Rates Iet33eq (Ct/sec): 3.33E-01  !!31DE (Citsec) 7.36E-04*

             -Time (minutes from trip) 900 L    Caseous Effluent Release Rates Iet33eq (Citseel:    1. Sit-01  !!31CE (Citsee) 2.93E-06*

Time (minutes from trip) 930 Caseous Effluent Release Rates Re133eq (Citsect: 5.28E-03  !!3tDE (Citsec) 1.18E-06* Time (minutes from trip) 940 Caseous Effluent Release Rates Tel33eq (Citseel: 1.14E-03 Il3tDE (Citsee) 4.76E-07'

  • Time (minutes from trip) 990 Caseeve Effluent Release nates
        'e    Ie133eq (Citsee): 9.13E-04      ItalDE (Ct/sec) 1.92E-07'
        )

I h Time (minut es -f rem tripit010 x- J l Caseous Effluent Release Rates l

       #      Iel33eq (Citese): 4.39E-04      !!3tDE (181see) 7.74E-08*

l l l

V f l 1 Time (minutes from trip)l050 Caseous Effluent Release Rates Xe133eq (Citsect: 2.33E-04 113tDE (Citsec) 3.13E-08* l Time (minutes from trip)tO80 Caseous Effluent Release Rates Xe133eq (Citeec): 1.54E-04 113tDE (Citsec) 1.27E-08* Time (minutes from trip)tito Caseous Effluent Release Rates Xel33eq (Caisec): 1.22E-04 113tDE (Cl#sec) 5.11E-09* Time (minutes from trip)lt40 Caseous Effluent Release Rates Xel33eq (Citsect: 1.09E-04 It3tDE (Catsec) 2.07E-09* Time (minutes from trip).l?O Caseous Effluent Release Rates Xe133eq (Citsec): 1.04E-04 Il3tDE (Cissec) 1.05E-09* Time (minutes from trip >1300 Caseous Efttuent Release Rates Xel33eq (Cifsec): 1.0tE-04  !!310E (Cifsec) 1.02E-09' Time (minutes from tripil230 b Caseous Effluent Release Rates

    .     . Xel33eq (Cissec): 1.0tt-04   113tDE (Citsec) 1.01E-09' Time (minutes from trip)t240 Caseous Ettluent Release Rates
          . Xel33eq (Cissec): 1.00E-04    113tDE (Citeac) 1.00E-09' 4

Time (minutes from trip)t190

         ,   Caseous Effluent Release Rates Xel33eq (Citsect: 1.00E-04    ItalDE (Cissee) 1.00E-09' e

Time (minutes from 4:1931320 Caseous Ettluent Release Rates i Xel33eq (Citsect: 1.00E-04 ItalDE (Citsee) 1.00E-09' I P

    d

[ Time (minutes from trip)l350 .

  '~'

Caseeue Effluent Release Rates e Est33ee (Ct/seel: 1.00E-04 ItalDE (Citsec) 1.00E-09* I l h

y-- l l O E*"" Time (minutes from trip)t380 Caseous E!!!uent Release Rates Xe133eq (C1/sec): 1.00E-04 It3tDE (Citsec) 1.00E-09* Time (minutes from trip)t410 Caseous Effluent Release Rates Zel:3eo (Catsee): 1.00E-04 It31DE (C&Isoc) 1.00E-09* Time (minutes from trip)t440 Caseous Efttuent Release Rates Xel33eq (C1/sec): 1.00E-04 It3lDE (C1/sec) 1.00E-09' Time (minutes from trip)t470 Caseous Ettluent Release Rates Xe133eq (C1/sec): 1.00E-04 1131DE (Citsec) 1.00E-09* Time (minutes from trip >1500 Caseous Efttuent Release Rates Xe133eq (Citsec): . 00E-04 1131DE (Citsec) 1.00E-09* Time (minutes from trip)1530 Caseous Effluent Release Rates Xel33eq (C1/sec): 1.00E-04  !!3tDE (C1/sec) 1.00E-09*

  • Time (minutes from trip)1560 k Caseous Efttuent Release Rates Xel33eq (Citsec): 1.00E-04 113tDE (Ct/sec) 1.00E-09*

Time (minutes from trip)t390 Caseous Effluent Release Rates Iel33eq (Citsect: 1.00E-04 It31DE (Citsec) 1.00E-09*

         . Time (minutes from tripl1430
  • Caseous Ettluent Release Rates Est33eq (Citsec): 1.00E-04 tt3tDE (Citsec) 1.00E-09*

a

        ,'     Time (minutes from trip)t450 e

Caseous Efttuent Release Rates i Ie133eq (Citsec): 1.00E-04 tt3tDE (Citsec) 1.00E-09* T 1 i Time (minutes from trip)l480

 \j    ,l                                                                       S 8

Caseous Ettluent Release Rates Iel33ee (Citsect: 1.00E-04 ItalDE (Citsect t_00E-09*

t r=~ l l

   ~N J                                                                       e Time (minutes from trip)1710 Caseous Effluent Release Rates Xe133eq (Ct/sec): 1.00E-04    tt31DE (Citsec) 1.00E-09' Time (minutes from trip)t?40 Caseous Effluent Release Rates Ke133eq (Ct/sec); 1.00E-04     tt3tDE (C1/sec) 1.00E-09' Time (manutes from trip)t?70 Caseous Effluent Release Rates Xe133eq (Ct/sec): 1.00E-04    113tDC (C1/sec) 1.00E-09' Time (minutes from tripl1800 Caseous Effluent Release Rates Xe133eq (C1/sec): 1.00E-04    tt3tDE (C1/sec) 1.00E-09' Time (minutes from trip)tS30 Caseous Effluent Release Rates

( [)T Xel33eq (Citsec): 1.00E-04 It3tDE (C1/sec) 1.00E-09' Time (minutes from trip)1860 Caseous Effluent Release Rates Xe133eq (Citsect: 1.00E-04 ItalDE (CIIsec) 1.00E-09"

             . Time (minutes from trip)tO90 p    Caseous Effluent Release Rates
     ,    ,    Xel33eq (Citsee): 1.00E-04    ItalDE (Citsec) 1.00E-09*

Time (minutes from tripl1930 Caseous Effluent Release Rates Xel33eq (Citsee): 1.00E-04 It3tDE (Cissec) 1.00E-09' Time (minutes from tripit950 Caseous Effluent Release Rates ' Xel33eq (Citsec): 1.00R-04

        '.                                  tt3tDE (C1/sec) 1.00E-09' Time (minutes from tripit980 Caseous Effluent Release Rates
        ;     Xel33eq (Citsect: 1 00E-04    ItalDE (Citsee) 1.00E-09' l      Time (minutes from trip)3010 k/m Caseous Effluent Release Ratee
       ,      Xel33eq (Citseel: 1.00E-04    Il3tDE (Citsec) 1.00E-09*

m j Time (manutes from trip 12040 Casecus Effluent Release Rates Xel33eq (Ci/sec)* 1.00E-04 113tDE (Citsec) 1.00E-09' I l l t l 1 l e , 1 l . e e 9 0 8 e 0 0

                'r l____-___       - _ _ _ _ _ _ - _                                _ - _ _ _ . _                      - _ - _                                     __            _

i i  ! f , I r i  ! l i l l I i i  ! i l  ! I 1 1 1 4 4 i i l i t i i l 1 , i i I t APPENDIX E . i ) I METEROLOGICAL DATA l I i 1 4 y- .i l, j i i i i j i i 4 i r, 1  ! t i I i

  • i t 1 i I i i 1 I t

I l l i j WP84210A 9 i 1 - - . - - . - --. - .

     ,-------r,-,                         -,,n.--,                       ,.mennevn-,cnnnrwr,.-----.wn,~.n.e,----,--~~e_,,~---ne.                        . . . , . , -

NATIONAL WEATllER SERVICE 24-ll0UR FORECAST Arkansas Zones 4, 5, 7 1030 AM CST Wed, March 21, 1984 This afternoon... partly cloudy with a high in the mid 60's. Southeast wind around 10 mph. Tonight. .. cloudy and warmer with low near 50. Easterly wind 5 to 10 mph. 30 percent chance of light rain by morning. Tomorrow... partly cloudy witt, a high in the lower 70's. Northeast wind around 5 mph. 1 O p84220 O

i I

                                                           ,           e                     a                             i .          A' In the event that CERT!S becomes inoperable during the exercise, players                                                                                                                                           i who are formulating dose projections will implement backup procedures                                                                                                                                              '

which userthe TR3-80.; If this. occurs, the following meterological data l is available for Controllers to provide, as appropriate, to players.  ! Corresponding radiological release parameters are found in Appendix D. ' nie e

                   . 4. . s...    *eu
  • _' t '. 2. ,

[. ', , . i

                                                                                                                                                                                              ",            ,(   f '., ,, ,;i 1

L . )- , n?. ,, t'a4 e' y 't *

                                                                                                                                                                                                              .g     4-   I Y

I l 1 { I 1 l 1 5 i i 1 I I 1 , { l l i I I i i I i I f 1 t l

n. __ -__ _ __- _ . _ - _ _ _ - _- _ _ _ _ - .. - . .. _ . - ~

O Os u\ METER 0IhGICAL DATA Lower Lower Wind Direction TIME Windspeed (MPH) (Degrees) oO AT 1000 4.15 93 7.0 -0.92 1010 6.05 116 8.0 -1.18 1020 4.71 124 11.0 -1.23 1030 6.61 116 15.0 -1.33 i 1040 7.44 115 4.0 -1.25 1050 7.10 110 5.0

                                                                                                     -1.21 1100             5.86                               111                            7.0      -1.27 1110             4.20                              118                             9.0      -1.46 1120              4.73                              117                             4.0      -1.69 1130              5.78                              118                             4.0     -1.75 1140              4.81                              114                             6.0     -1.71 1150             5.15                               153                            15.0     -2.04 1200             5.71                               149                            17.0     -2.35 1210            5.42                                157                             8.0     -2.37 1220            5.59                                143                             6.0     -2.25 1230            5.42                                147                             6.5     -2.03

,, 1240 5.25 144 7.2 -1.92 l 1250 4.93 139 7.3 -1.85 li 'l

O O O METER 0 LOGICAL DATA Lowen Lower Wind Direction-TIME Windspeed-(MPil) (Degrees) 00 AT 1300 5.00 150 7.6 -1.98 1310 5.61 145 7.9 -2.13 1320 5.66 156- 3.0 -2.11 1330 5.90 154- 8.2 -2.21 1340 2.95- 90- 9.6 -2.41 1350 2.51' 142' 13.0- -2.12-1400 4.29 179 14.0 -2.34 1410 4.51' 177, 14.0 -2.34 1420 5.98 175 13.0 -2.35 1430 5.34 178: 15.0 -2.19 1440 5.64 173 12.0 -2.16 1450 5.39 197- 11.0 -1.99 1500 5.49 185' 10.0 -2.01 1510 6.00' 186 8.0 -1.98 1520 5.15' 187 8.0 -1.98 1530 4.78 165 9.0 -2.05 1540 4.73 166 10.0 -2.39 1550 4.63 159 11.0 -2.42 1600 6.20 156 12.0 -2.37

O l l l APPENDIX F OFFSITE MONITORING DATA O LO O

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