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{{#Wiki_filter:~gpp~jP~cga1of10FLORIDAPOWER&LIGHTCOMPANYST.LUCIE.PLANT EMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100032EREVISION(:,
{{#Wiki_filter:~g pp~jP~cga 1 of 10 FLORIDA POWER&LIGHT COMPANY ST.LUCIE.PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E REVISION(:, 4 1.0 Title: ON-SITE SUP RT CENTERS 2.0~Aroval: Reviewed by FP4ilit Revie~Approved by/Rev.4 reviewed FRG Approved by Group/l l gr cfog>4-l.5 V.P Power.Resource 19+~1982 1982 3."0~Eco a: 3.1 Purpose This procedure provides guideli es and responsibilities for activation.and use of the on-sit Technical and Operational Support Centers.This procedure d scribes interim facilities and shall be revised when permanent acilities are operational.
41.0Title:ON-SITESUPRTCENTERS2.0~Aroval:ReviewedbyFP4ilitRevie~Approvedby/Rev.4reviewedFRGApprovedbyGroup/llgrcfog>4-l.5V.PPower.Resource19+~198219823."0~Ecoa:3.1PurposeThisprocedure providesguideliesandresponsibilities foractivation
 
.anduseoftheon-sitTechnical andOperational SupportCenters.Thisprocedure dscribesinterimfacilities andshallberevisedwhenpermanent acilities areoperational.
===3.2 Discussion===
3.2Discussion Theactivities ofplantmanagement, techn'cal andengineering
The activities of plant management, techn'cal and engineering
/R4supportpersonnel areanimportant partoftheoverallsiteresponsetoanaccident, andmustbeproperdefinedandlogistically supported.
/R4 support personnel are an important part of the overall site response to an accident, and must be proper defined and logistically supported.
Theneedforadditioaloperational supportpersonnel, otherthanthoserequiredadallowedintheControlRoom,isalsorecognized asvitallyimportant inproperlyresponding toanemergency.
The need for additio al operational support personnel, other than those required a d allowed in the Control Room, is also recognized as vitally important in properly responding to an emergency.
Theintentof,providing Technical andOperational SuortCenters,istoprovidebaseswherepost-accident emergency plningcanbeconducted andrequiredoperational supportpersonncanassembleforpotential duty.Bothcenterswillbeinosecommunication withtheControlRoomviathePAXphonestern,withoutdisrupting, congesting, orconfusing theactivitisintheControlRoombythephysicalpresenceofadditional
The intent of, providing Technical and Operational Su ort Centers ,is to provide bases where post-accident emergency pl ning can be conducted and required operational support personn can assemble for potential duty.Both centers will be in ose communication with the Control Room via the PAX phone s tern, without disrupting, congesting, or confusing the activiti s in the Control Room by the physical presence of additional pe sonnel, e
: pesonnel, e
Page 2 of 10 EHERGENCY PLAN IMPLEHENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS 3.3 Description 3.3.1 Technical Support Center (TSC)The TSC's located in the training classroom area, adjacent to the Unit 81 Control Room.Emergency supplies available near the TSC are listed in Table 1.Documents and drawings available are listed in Table 2.3.3.2 Operational Support Center (OSC)The OSC is maintained in the first floor maintenance area of the Service Building.3.3.3 Communications Equipment The Control Room contains necessary telephone and public address systems for communications within and outside the plant.The Control Room al" o contains NAMAS and Local Government Radio for communications with state and county~agencies.Use of these systems is described in the Appendix.The*TSC contains necessary telephones to communicate with the Control Room, OSC, the General Office Emergency Center, the Emergency Operations Facility and.outside agencies.It also contains an ENS dedicated telephone to the NRC Operations Center and the NRC Region XX Office./R4 3.4 Authority I This procedure implements the St Lucie Plant Radiological Emergency Plan.4.0 Precautions:
Page2of10EHERGENCY PLANIMPLEHENTING PROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERS3.3Description 3.3.1Technical SupportCenter(TSC)TheTSC'slocatedinthetrainingclassroom area,adjacenttotheUnit81ControlRoom.Emergency suppliesavailable neartheTSCarelistedinTable1.Documents anddrawingsavailable arelistedinTable2.3.3.2Operational SupportCenter(OSC)TheOSCismaintained inthefirstfloormaintenance areaoftheServiceBuilding.
4.1 The TSC and OSC shall be activated upon the direction of the Emergency Coordinator or his designated alternate only.4.2 Radiological conditions in the on-site Technical and Operational Support Center shall be monitored when required to be'in use.Radiation levels in the TSC should be monitored using available (control room)portable instruments.
3.3.3Communications Equipment TheControlRoomcontainsnecessary telephone andpublicaddresssystemsforcommunications withinandoutsidetheplant.TheControlRoomal"ocontainsNAMASandLocalGovernment Radioforcommunications withstateandcounty~agencies.
/R4 4.3 The Emergency Coordinator shall recommend a suitable location other than the designated areas if radiological conditions warrant such actions.
Useofthesesystemsisdescribed intheAppendix.
1 I 0 Page 3 of 10 EMERGENCY PLAN ItPLEHENTING PROCEDURE NO.3100032E, REV" ON-SITE SUPPORT CENTERS 5.0 Res onsibilities:
The*TSCcontainsnecessary telephones tocommunicate withtheControlRoom,OSC,theGeneralOfficeEmergency Center,theEmergency Operations Facilityand.outsideagencies.
5.1 The Emergency Cooxdinator is responsible for activating the TSC, activating the OSC, and arranging, for staffing through the Duty Call Supervisor.
ItalsocontainsanENSdedicated telephone totheNRCOperations CenterandtheNRCRegionXXOffice./R43.4Authority IThisprocedure implements theStLuciePlantRadiological Emergency Plan.4.0Precautions:
5.2 The TSC Supervisor will be the most senior person available to remain at the TSC of the following:
4.1TheTSCandOSCshallbeactivated uponthedirection oftheEmergency Coordinator orhisdesignated alternate only.4.2Radiological conditions intheon-siteTechnical andOperational SupportCentershallbemonitored whenrequiredtobe'inuse.Radiation levelsintheTSCshouldbemonitored usingavailable (controlroom)portableinstruments.
Primary: Alternate Technical Supervisor Off duty Shift Technical Advisor (See 3100023E, Emexgency Roster)He is responsible for supervising TSC activities, reporting to the Emergency Coordinator, and communicating with the Emergency Operations Facility.5.3 Each department head or designated alternate is responsible for reporting to the TSC when called.5.4 Those reporting to the Operational Support Center are responsible for being prepared to carry out support functions designated by.the Emergency Coordinator.
/R44.3TheEmergency Coordinator shallrecommend asuitablelocationotherthanthedesignated areasifradiological conditions warrantsuchactions.
5.5 The Emergency Coordinator has the overall responsibility for the conduct of emergency operations and activities and should work closely with the TSC to ensure all information is used in making accident recovery decisions.
1I0 Page3of10EMERGENCY PLANItPLEHENTING PROCEDURE NO.3100032E, REV"ON-SITESUPPORTCENTERS5.0Resonsibilities:
5.6 The gC department is responsible for ensuring that records, documents, and prints are maintained in the TSC or are available for immediate use in the Document Control vault.5.7.Health Physics Dept shall provide a portable monitor-to the Technicial Support Center for radioiodine.monitoring.
5.1TheEmergency Cooxdinator isresponsible foractivating theTSC,activating theOSC,andarranging, forstaffingthroughtheDutyCallSupervisor.
This monitor can also be used for'monitoring the control room.6.0 References 6.2 E-Plan Implementing Procedure 3100021,"Duties of the Emergency Coordiantor".
5.2TheTSCSupervisor willbethemostseniorpersonavailable toremainattheTSCofthefollowing:
/R4 6.3 E-Plan Implementing Procedure 3100033E,"Off Site Dose Calculations".
Primary:Alternate Technical Supervisor OffdutyShiftTechnical Advisor(See3100023E, Emexgency Roster)Heisresponsible forsupervising TSCactivities, reporting totheEmergency Coordinator, andcommunicating withtheEmergency Operations Facility.
6.4 E-Plan Implementing Procedure 3100022E,"Classification of Emergencies".
5.3Eachdepartment headordesignated alternate isresponsible forreporting totheTSCwhencalled.5.4Thosereporting totheOperational SupportCenterareresponsible forbeingpreparedtocarryoutsupportfunctions designated by.theEmergency Coordinator.
7.0 Records: A record of actions taken at the TSC shall be maintained by the TSC Supervisor.
5.5TheEmergency Coordinator hastheoverallresponsibility fortheconductofemergency operations andactivities andshouldworkcloselywiththeTSCtoensureallinformation isusedinmakingaccidentrecoverydecisions.
5.6ThegCdepartment isresponsible forensuringthatrecords,documents, andprintsaremaintained intheTSCorareavailable forimmediate useintheDocumentControlvault.5.7.HealthPhysicsDeptshallprovideaportablemonitor-totheTechnicial SupportCenterforradioiodine
.monitoring.
Thismonitorcanalsobeusedfor'monitoring thecontrolroom.6.0References 6.2E-PlanImplementing Procedure 3100021,"Duties oftheEmergency Coordiantor".
/R46.3E-PlanImplementing Procedure
: 3100033E, "OffSiteDoseCalculations".
6.4E-PlanImplementing Procedure
: 3100022E, "Classification ofEmergencies".
7.0Records:ArecordofactionstakenattheTSCshallbemaintained bytheTSCSupervisor.
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Page4of10EMERGENCY PLANIIPL~rKNTINGPROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERS8.0Instructions:
Page 4 of 10 EMERGENCY PLAN IIPL~r KNTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS 8.0 Instructions:
8.1Activation TheEmergency Coordinator shallactivatetheTSCandtheOSCforanemergency condition classified asAlert,SiteAreaEmergency, orGeneralEmergency.
 
8.2StaffingTheEmergency Coordinator shallarrangeforstaffingthroughtheDutyCallSupervisor, Table3identifies theTSCstaffingrequirements.
===8.1 Activation===
J8.3UseoftheTechnical SupportCenterTheTSCshallbeusedtoprovideplantmanagement andtechnical supporttoplantoperations personnel duringemergency conditions.
The Emergency Coordinator shall activate the TSC and the OSC for an emergency condition classified as Alert, Site Area Emergency, or General Emergency.
AprimarytaskshallbetorelievetheEmergency Coordinator ofoff-sitecommunications tothestateandlocalagencies, NRCandtheFPLOff-SiteEmergency Organization.
8.2 Staffing The Emergency Coordinator shall arrange for staffing through the Duty Call Supervisor, Table 3 identifies the TSC staffing requirements.
~Thistaskbecomestheresponsibility oftheEOFwhentheyaremannedandfullyoperational.
J 8.3 Use of the Technical Support Center The TSC shall be used to provide plant management and technical support to plant operations personnel during emergency conditions.
TheTSCstaffshallpiovidetechnical supportasrequested bytheEmergency Coordinator andshalldirectitselftowarddetermining currentandprojected plantstatusandproviding in-depthdiagnostic andengineering assistance, asrequired.
A primary task shall be to relieve the Emergency Coordinator of off-site communications to the state and local agencies, NRC and the FPL Off-Site Emergency Organization.
/R48.4UseoftheOperational SupportCenterTheEmergency Coordinator shallassignavailable plantstaffnotneededintheTSCorControlRoomtotheOSC.TheOSCSupervisor (Assistant Superintendent Mechanical Maintenance ordesignated alternate) shallmaintaincommunications withtheTSCandreportasdirectedbytheEmergency Coordinator orTSCSupervisor.
~This task becomes the responsibility of the EOF when they are manned and fully operational.
8.5Deactivation Itistheresponsibility oftheEmergency Coordinator orhisdesigneetodeactivate andsecuretheTSCandOSCwhentheemergency dondition nolongerexists.8.6Alternate OSCIntheeventthattheOSCbecomesuntenable, theEmergency Coordinator shalldesignate analternate location.
The TSC staff shall piovide technical support as requested by the Emergency Coordinator and shall direct itself toward determining current and projected plant status and providing in-depth diagnostic and engineering assistance, as required./R4 8.4 Use of the Operational Support Center The Emergency Coordinator shall assign available plant staff not needed in the TSC or Control Room to the OSC.The OSC Supervisor (Assistant Superintendent Mechanical Maintenance or designated alternate) shall maintain communications with the TSC and report as directed by the Emergency Coordinator or TSC Supervisor.
NOTE:TheSteamGenerator BlowdownBuildingisoutfitted tobeanalternate OSC./R4l 1
 
Page5of10EMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERSTABLE1RADIOLOGICAL EKRGENCYEQUIPMENT STLUCIEPLANTCONTROLROOMSTORAGELOCKER(ALSOFORTSCUSE)1.Coveralls 2.Hood3.Gloves4.ShoeCovers5.SelfContained Breathing Apparatus 6.FullFaceRespirators andFilters7.PocketDosimeters 8.Dosimeter Chargers9.TLD's10.PortableCountRateInstrumentation 11.PortableDoseRateInstrumentation 12.Contamination Smears13.Envelopes 14.Radiation Tape/Rope 15.Radiological Signs16.Industrial FirstAidKit17.Step-OffPads18.PlasticBags
===8.5 Deactivation===
It is the responsibility of the Emergency Coordinator or his designee to deactivate and secure the TSC and OSC when the emergency dondition no longer exists.8.6 Alternate OSC In the event that the OSC becomes untenable, the Emergency Coordinator shall designate an alternate location.NOTE: The Steam Generator Blowdown Building is outfitted to be an alternate OSC./R4 l 1
Page 5 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 1 RADIOLOGICAL EKRGENCY EQUIPMENT ST LUCIE PLANT CONTROL ROOM STORAGE LOCKER (ALSO FOR TSC USE)1.Coveralls 2.Hood 3.Gloves 4.Shoe Covers 5.Self Contained Breathing Apparatus 6.Full Face Respirators and Filters 7.Pocket Dosimeters 8.Dosimeter Chargers 9.TLD's 10.Portable Count Rate Instrumentation 11.Portable Dose Rate Instrumentation 12.Contamination Smears 13.Envelopes 14.Radiation Tape/Rope 15.Radiological Signs 16.Industrial First Aid Kit 17.Step-Off Pads 18.Plastic Bags
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Page6of10EMERGENCY PLANINPLEHENTING PROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERSTABLE2EMERGENCY DATA,DRAWINGSAND,DOCEfENTS MAINTAINED ATTHETSCST1UCIEPLANT1.PlantTechnical Specifications C2.PlantOperating Procedures 3.Emergency Operating Pro'cedures 4.Emergency PlanandImplementing Procedures 5.FinalSafetyAnalysisReport6.Drawings, Schematics andDiagrams
Page 6 of 10 EMERGENCY PLAN INPLEHENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 2 EMERGENCY DATA, DRAWINGS AND,DOCEfENTS MAINTAINED AT THE TSC ST 1UCIE PLANT 1.Plant Technical Specifications C 2.Plant Operating Procedures 3.Emergency Operating Pro'cedures 4.Emergency Plan and Implementing Procedures 5.Final Safety Analysis Report 6.Drawings, Schematics and Diagrams
 
Page 7 of la EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 3 TECHNICAL SUPPORT CENTER STAFFING ST LUCIE PLANT TSC Supervisor Primary: Alternate Technical Supervisor Off duty STA (per 3100023E, Emergency Rost'er)Operations Representative (Off duty Duty Call Supervisor or NPS)Health Physics Supervisor (Radiation Team Leader)Chemistry Supervisor Reactor Engineering Supervisor Maintenance Superintendent Quality Control Supervisor Support Staff as determined by these supervisors
/R4 Page 8 of 10 K!ERGENCY PLAN IMPLFJfENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS APPENDIX CO~i ICATIONS EQUIPMEHT A.Use of the NAWAS System 1.The NAWAS is used for announcing the initial warning to the State Warning Point at the Bureau of Disaster Preparedness (BDP)and St.Lucie Disaster Preparedness Coordinator of all.four Emergency Classes.2.The NAWAS is a direct, protected telephone land line with the handset installed in the Control Room.3.Picking up the handset from its cradle activates a response at the State Warning Point and St.Lucie and Martin County Disaster Preparedness Offices.The Nuclear Plant Supervisor (Emergency Coordinator) will advise the personnel on the other end of the system, in a coded message, of the conditions at the plant.He then places the handset back on its cradle, as this is the only use for it during an emergency.
His message will activate the required state and local emergency teams.4.The procedure for reporting an emergency via NAWAS is summarized in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator, and described in detail below.A.(1)"S'tate Warning Point Tallahssee, this=is St.Lucie aslant'(State War'ning Point will give a go-ahead)"State'Warning Point Tallahssee, this is St.Lucie Plant*tBPRRt/R4 Time"Acknowledge, over." (ALTERNATE METHOD)If NAWAS is unavailable-telephone State Warning Point at PHONE NO.1-904-488-1320 or Florida Marine Patrol-Alternate, State Warning Point 1-904-488-5757.
State Warning Point will call via Phone to validate the*notification.
After validation, transfer the information on the State of Florida Fixed Nuclear Facility Notification Message Form via NAWAS or ALTERNATE METHOD.State Warning Point Message Validation Time*Announce the class as indicated by EPIP 3100022E"Classification of Emergencies"/R4 Page 9 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV.4 ON-SITE SUPPORT CENTERS APPENDIX (cont)A.Use of the NAWAS System (cont)Classifications The classes of Radiological Emergencies are described in E-Plan Implementing Procedure 3100022E, Classification of Emergencies.
3, Plume Exposure Pathway A.The Plume Exposure Pathway will extend outward from-'each nuclear power plant for a radius of ten (lQ)miles, and shall be segmented into 22-1/2 arcs and will be lettered A through R (excluding I and 0)for the 360 of the compass./R4 B.Each area is divided into SECTORS beginning at the ce"ter and extending outward in mile increments One through ten.Contaminated area, extending outward from the nuclear plant, will be located and reported as discussed in E-Plan Implementing Procedure 3lQQQ33F;-"Off-Site Dose Calculations."/R4 B.Use of the Local Government Radio (LGR)1.The LGR is used, unless inoperative or unavailable, for maintaining communications with various state and local disaster preparedness personnel.
Messages are transmitted and received on frequencies allocated by the state Bureau of Disaster Preparedness.
C.2.The LGR control unit is installed in the Control Room, and TSC.Use of the ENS Telephone Network/R4 1.Within one hour of the, time that the Emergency Plan or any part of the Emergency Plan is implemented the NRC shall be notified and an open, continuous communications channel established using the NRC ENS circuit (red phone).The Nuclear Plant Supervisor (Emergency Coordinator) shall be responsible for assuring that this notification is made.2.To initiate a signal to the NRC Operations Center, remove the handset from the receiver.3.When the NRC Duty Officer answers, identify yourself as"Florida Power 6 Light, St Lucie Plant".
Page 10 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE HO.3100032E, REV"4 ON-SITE SUPPORT CENTERS APPENDIX (cont)C.Use of the ENS Telephone Network (cont)4.Make the notification.
/R4 5.Maintain the line open and manned until allowed to terminate the call by the NRC Duty Officer.
~i Cp/
Page 1 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN DPLEMENTING PROCEDURE NO.3100050E REVISION 6 l.0 Title: MAINTAINING EMERGENCY PREPAREDNESS
-EMERGENCY EXERCISES, DRILLS, TESTS, AND EVALUATIONS.
2.0~Avovels: Reviewed by Facility Review Group Approved by K.N.Harris Rev.4 Review by FRG Approved by July 25, Plant Manager'uly 293 l~t V, P.Power Resources 19 75 19~19 P C 19~Rev.6 Review Approved by 3.0~Soo e: v Facility Rev Group~ca~e NV 19'Ms 3.1 Purpose This procedure provides instructions for conducting periodic emergency exercises, drills, and tests.3.2 Discussion Periodic exercises and drills will be conducted in order to test the state of emergency preparedness of participating personnel, organizations, and agencies.Each exercise or drill will be conducted to: 1)Ensure that participants are familiar with their respective duties and responsibilities.
2)Verify the adequacy of the Emergency Plan and emergency procedures; 3)Test the communication network and systems.4)Check the availability of emergency supplies and equipment.
5)Verify the operability of emergency equipment.
These exercises and drills will simulate emergency conditions and may be scheduled such that two or more exercises or drills are conducted simul-taneously.
The results of the exercises will form the basis for corrective action to eliminate identified deficiencies, and will be discussed during a post-exercise evaluation.
R6 R6 J~'=
a C 4 Page 2 of 6 FLORIDA POWER 6 LIGHT COMPANY'T.
LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 3.0~Sco e: (cont'd)3.3 Authority This procedure implements the St.Lucie Plant Radiological Emergency Plan.4.0 Precautions:
4.1 Every emergency alarm,or announcement shall be assumed to be true unless an announcement is made to the contrary.5.0 Res onsibilities:
5.1 The FPL Emergency Planning Supervisor shall be responsible for planning, scheduling, and coordinating all major emergency drills or exercises involving off site agencies.When an exercise is to be conducted, the Emergency Planning Supervisor shall: a)Schedule a date for the exercise in coordination with the Health Physics Supervisor-and the primary State and county emergency response agencies.R6 b)Request that the Health Physics Supervisor assign personnel to assist the Emergency Planning Supervisor prepare a scenario.-R6 c)Coordinate all FPL efforts with other participating personnel, organizations, and agencies.d)Obtain the approval of the Plant Manager.e)Offer federal, state and local observers the opportunity to evaluate the exercise.f)Discuss and evaluate the exercise with observers and principal participants.
I I g)Ensure that for all identified deficiencies, corrective measures are recommended.
h)Prepare and retain documentation for record keeping.
l i'a t, Page 3 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 5.0 Res onsibilities: (Cont'd)5.2 When an exercise or a major drill is to be conducted, the Health Physics Supervisor shall assure that the following is accomplished:
a)Assign personnel to prepare a scenario.b)Coordinate through the Emergency Planning Supervisor all activities which involve off-site personnel organizations or agencies.c)Schedule a date for this activity in coordination with the Emergency Planning Supervisor and assign observers.
d)Obtain approval of Plant Manager.e)Review evaluations of exercise or drill with the observers and the Facility Review Group.f)Ensure that deficiencies which are identified are addressed with corrective measures.g)Prepare and submit documentation to the Emergency Planning Supervisor for record keeping.6.0 References 6.1 St.Lucie Plant Radiological Emergency plan 6.2 NUREG 0654 7.0 Records and Notifications 7.1 Log Entries 7.2 Written evaluation to FRG, Plant Manager, and Emergency Planning Supervisor by the Health Physics Supervisor.


Page7oflaEMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERSTABLE3TECHNICAL SUPPORTCENTERSTAFFINGSTLUCIEPLANTTSCSupervisor Primary:Alternate Technical Supervisor OffdutySTA(per3100023E, Emergency Rost'er)Operations Representative (OffdutyDutyCallSupervisor orNPS)HealthPhysicsSupervisor (Radiation TeamLeader)Chemistry Supervisor ReactorEngineering Supervisor Maintenance Superintendent QualityControlSupervisor SupportStaffasdetermined bythesesupervisors
===7.3 Consolidated===
/R4 Page8of10K!ERGENCY PLANIMPLFJfENTING PROCEDURE NO.3100032E, REV4ON-SITESUPPORTCENTERSAPPENDIXCO~iICATIONSEQUIPMEHT A.UseoftheNAWASSystem1.TheNAWASisusedforannouncing theinitialwarningtotheStateWarningPointattheBureauofDisasterPreparedness (BDP)andSt.LucieDisasterPreparedness Coordinator ofall.fourEmergency Classes.2.TheNAWASisadirect,protected telephone landlinewiththehandsetinstalled intheControlRoom.3.Pickingupthehandsetfromitscradleactivates aresponseattheStateWarningPointandSt.LucieandMartinCountyDisasterPreparedness Offices.TheNuclearPlantSupervisor (Emergency Coordinator) willadvisethepersonnel ontheotherendofthesystem,inacodedmessage,oftheconditions attheplant.Hethenplacesthehandsetbackonitscradle,asthisistheonlyuseforitduringanemergency.
exercise summary by the Emergency Planning Supervisor.
Hismessagewillactivatetherequiredstateandlocalemergency teams.4.Theprocedure forreporting anemergency viaNAWASissummarized inE-PlanImplementing Procedure
I i'a Page 4'f 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions 8.1 The following emergency exercises, drills, and tests shall be conducted-at the frequency indicated:
: 3100021E, DutiesofEmergency Coordinator, anddescribed indetailbelow.A.(1)"S'tateWarningPointTallahssee, this=isSt.Lucieaslant'(StateWar'ningPointwillgiveago-ahead)
a)Exercises (Inte rated Drills)A major radiological emer'gency response exercise shall be conducted at least once every twelve (12)months (plus or minus three months)-to demonstrate the effectiveness of the Emergency Plan.This exercise shall be conducted as a Site Area Emergency or General Emergency and will provide for the coordination with and,participation of off-site emergency response personnel organizations and agencies including those of federal, state, and local governments.
"State'Warning PointTallahssee, thisisSt.LuciePlant*tBPRRt/R4Time"Acknowledge, over."(ALTERNATE METHOD)IfNAWASisunavailable-telephone StateWarningPointatPHONENO.1-904-488-1320 orFloridaMarinePatrol-Alternate, StateWarningPoint1-904-488-5757.
The emergency scenario shall be varied from year to year.Provisions shall be made to start at least one exercise between 6:00 PM and midnight, and at least one exercise between midnight and 6:00 A.M., every six years.The"Affected Unit" in the exercise should be changed from year to year.R6 This emergency response exercise shall be critiqued by Florida Power&Light Company observers/evaluators and other observers as appropriate from federal, state, and local agencies.R6 b)Radiolo ical Monitorin'rill A radiological monitoring drill shall be conducted at least once every twelve (12)months (plus or minus three months).These drills will include collection and analysis of sample media (e.g.water, air).This drill should include testing of communications and understanding of communications between the RTL and the teams.c)Health Ph sics Drills Thc Health Physics Department shall conduct health physics drills semi-annually and one of the semi-annual"drills may be incorporated into the radiological monitoring drill.R6 d)Medical Emer enc Drill A medical emergency drill involving a-simulated contaminated individual, with provisions for activation of the plant First Aid and Personnel Decontamination Team and participation by local support services (i.e., ambulance and off-site medical treatment facility), shall be conducted at least once every twelve (12)months (plus or minus three months).
StateWarningPointwillcallviaPhonetovalidatethe*notification.
Page 5 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions (cont'd)8.1 (Cont'd)e)Fire Emer enc Drill Fire drills are conducted in accordance with Technical Specifications to test the operational readiness (personnel, equipment and procedures) to control and extinguish a fire onsite.The drills also serve to evaluate and document the response of onsite personnel and participating off-site agencies to varying fire situations.
Aftervalidation, transfertheinformation ontheStateofFloridaFixedNuclearFacilityNotification MessageFormviaNAWASorALTERNATE METHOD.StateWarningPointMessageValidation Time*Announce theclassasindicated byEPIP3100022E"Classification ofEmergencies"
The communication links and notification procedures are tested at least semi-annually during fire emergency drills.A post-drill cr'itique is held after each fire drill completed to identify possible areas for improvement in equipment and/or procedures.
/R4 Page9of10EMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100032E, REV.4ON-SITESUPPORTCENTERSAPPENDIX(cont)A.UseoftheNAWASSystem(cont)Classifications TheclassesofRadiological Emergencies aredescribed inE-PlanImplementing Procedure
f)Communications Tests Communications with the Bureau of Emergency Management, Department of Health and Rehabilitative Services, and St.Lucie and Martin County Disaster Preparedness Coordinators within the plume exposure pathway Emergency Planning Zone (EPZ)will be tested monthly.8.2 Conducting Drills 8.2.1 The Nuclear Plant Supervisor (NPS)shall evaluate the plant conditions and ascertain that the drill will not adversely affect plant equipment or operations.
: 3100022E, Classification ofEmergencies.
8.2.2 The Health Physics Supervisor shall designate specific members of the plant staff to act as controllers and evaluators during the drill.These controllers and evaluators shall be familiar with the procedures and proper actions to;be taken associated with their post during the drill.Additionally, briefings shall be, conducted to indicate what purpose the drill will service and what specific areas the controllers and evaluators should be concerned with.These controllers and evaluators shall be posted throughout the plant area to observe and record the actions of plant personnel during the drill and to verify alarm audibility.
3,PlumeExposurePathwayA.ThePlumeExposurePathwaywillextendoutwardfrom-'each nuclearpowerplantforaradiusoften(lQ)miles,andshallbesegmented into22-1/2arcsandwillbeletteredAthroughR(excluding Iand0)forthe360ofthecompass./R4B.EachareaisdividedintoSECTORSbeginning atthece"terandextending outwardinmileincrements Onethroughten.Contaminated area,extending outwardfromthenuclearplant,willbelocatedandreportedasdiscussed inE-PlanImplementing Procedure 3lQQQ33F;-"Off-Site DoseCalculations."
8.2.3 After receiving a signal of alarm indicating that an emergency condition exists, which has been initiated as part of the drill, the NPS shall take action as required by the Emergency Plan.R6 I
/R4B.UseoftheLocalGovernment Radio(LGR)1.TheLGRisused,unlessinoperative orunavailable, formaintaining communications withvariousstateandlocaldisasterpreparedness personnel.
Page 6 of 6 FLORIDA POWER 6 LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN Il'PLEHENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions (cont'd)8.2 (cont'd)8.2.4 At the termination of the drill, the NPS shall announce over the PA system that the drill is over.This shall be repeated along with any required instructions.
Messagesaretransmitted andreceivedonfrequencies allocated bythestateBureauofDisasterPreparedness.
C.2.TheLGRcontrolunitisinstalled intheControlRoom,andTSC.UseoftheENSTelephone Network/R41.Withinonehourofthe,timethattheEmergency PlanoranypartoftheEmergency Planisimplemented theNRCshallbenotifiedandanopen,continuous communications channelestablished usingtheNRCENScircuit(redphone).TheNuclearPlantSupervisor (Emergency Coordinator) shallberesponsible forassuringthatthisnotification ismade.2.ToinitiateasignaltotheNRCOperations Center,removethehandsetfromthereceiver.
3.WhentheNRCDutyOfficeranswers,identifyyourselfas"FloridaPower6Light,StLuciePlant".
Page10of10EMERGENCY PLANIMPLEMENTING PROCEDURE HO.3100032E, REV"4ON-SITESUPPORTCENTERSAPPENDIX(cont)C.UseoftheENSTelephone Network(cont)4.Makethenotification.
/R45.Maintainthelineopenandmanneduntilallowedtoterminate thecallbytheNRCDutyOfficer.
~iCp/
Page1of6FLORIDAPOWER&LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANDPLEMENTING PROCEDURE NO.3100050EREVISION6l.0Title:MAINTAINING EMERGENCY PREPAREDNESS
-EMERGENCY EXERCISES, DRILLS,TESTS,ANDEVALUATIONS.
2.0~Avovels:
ReviewedbyFacilityReviewGroupApprovedbyK.N.HarrisRev.4ReviewbyFRGApprovedbyJuly25,PlantManager'uly 293l~tV,P.PowerResources 197519~19PC19~Rev.6ReviewApprovedby3.0~Sooe:vFacilityRevGroup~ca~eNV19'Ms3.1PurposeThisprocedure providesinstructions forconducting periodicemergency exercises, drills,andtests.3.2Discussion Periodicexercises anddrillswillbeconducted inordertotestthestateofemergency preparedness ofparticipating personnel, organizations, andagencies.
Eachexerciseordrillwillbeconducted to:1)Ensurethatparticipants arefamiliarwiththeirrespective dutiesandresponsibilities.
2)VerifytheadequacyoftheEmergency Planandemergency procedures; 3)Testthecommunication networkandsystems.4)Checktheavailability ofemergency suppliesandequipment.
5)Verifytheoperability ofemergency equipment.
Theseexercises anddrillswillsimulateemergency conditions andmaybescheduled suchthattwoormoreexercises ordrillsareconducted simul-taneously.
Theresultsoftheexercises willformthebasisforcorrective actiontoeliminate identified deficiencies, andwillbediscussed duringapost-exerciseevaluation.
R6R6 J~'=
aC4Page2of6FLORIDAPOWER6LIGHTCOMPANY'T.
LUCIEPLANTEMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100050EREVISION63.0~Scoe:(cont'd)3.3Authority Thisprocedure implements theSt.LuciePlantRadiological Emergency Plan.4.0Precautions:
4.1Everyemergency alarm,orannouncement shallbeassumedtobetrueunlessanannouncement ismadetothecontrary.


==5.0 Resonsibilities==
===8.3 Evaluation===
5.1TheFPLEmergency PlanningSupervisor shallberesponsible forplanning, scheduling, andcoordinating allmajoremergency drillsorexercises involving offsiteagencies.
of Drills and Exercises 8.3.1 Following a drill the Health Physics Supervisor shall assimilate all information and data concerning the.emergency procedure drill and hold a critique on the drill, and present a summary of the critique to the FRG.R6 R6 The FRG shall recommend changes to the Emergency Plan Implementing Procedures as necessary.
Whenanexerciseistobeconducted, theEmergency PlanningSupervisor shall:a)Scheduleadatefortheexerciseincoordination withtheHealthPhysicsSupervisor-andtheprimaryStateandcountyemergency responseagencies.
R6 8.3.2 Following an exercise, the Emergency Planning Supervisor, plant management, FPL controllers and evaluators and principal participants in the exercise will meet to discuss and evaluate the exercise.R6 The evaluation shall be based on the ability of participants to follow emergency procedures, the adequacy of emergency procedures, and the adequacy of emergency equipment and supplies.Plant management shall be responsible for necessary changes in the Plant Emergency Procedures and for recommending and/or submitting changes in the Emergency Plan to the Emergency Planning Supervisor.
R6b)RequestthattheHealthPhysicsSupervisor assignpersonnel toassisttheEmergency PlanningSupervisor prepareascenario.
8.3.3 The FRG shall submit a written evaluation following an exercise.to the Emergency Planning Supervisor.
-R6c)Coordinate allFPLeffortswithotherparticipating personnel, organizations, andagencies.
These comments will be incorporated, with comments from other principal participants and controllers and evaluators, into a consolidated exercise summary.The summary will be dis-tributed as described in the"Duties and Responsibilities of the Emergency Planning.Supervisor" procedure.
d)ObtaintheapprovalofthePlantManager.e)Offerfederal,stateandlocalobservers theopportunity toevaluatetheexercise.
f)Discussandevaluatetheexercisewithobservers andprincipal participants.
IIg)Ensurethatforallidentified deficiencies, corrective measuresarerecommended.
h)Prepareandretaindocumentation forrecordkeeping.
li'at, Page3of6FLORIDAPOWER&LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100050EREVISION65.0Resonsibilities:
(Cont'd)5.2Whenanexerciseoramajordrillistobeconducted, theHealthPhysicsSupervisor shallassurethatthefollowing isaccomplished:
a)Assignpersonnel toprepareascenario.
b)Coordinate throughtheEmergency PlanningSupervisor allactivities whichinvolveoff-sitepersonnel organizations oragencies.
c)Scheduleadateforthisactivityincoordination withtheEmergency PlanningSupervisor andassignobservers.
d)ObtainapprovalofPlantManager.e)Reviewevaluations ofexerciseordrillwiththeobservers andtheFacilityReviewGroup.f)Ensurethatdeficiencies whichareidentified areaddressed withcorrective measures.
g)Prepareandsubmitdocumentation totheEmergency PlanningSupervisor forrecordkeeping.6.0References 6.1St.LuciePlantRadiological Emergency plan6.2NUREG06547.0RecordsandNotifications 7.1LogEntries7.2Writtenevaluation toFRG,PlantManager,andEmergency PlanningSupervisor bytheHealthPhysicsSupervisor.
7.3Consolidated exercisesummarybytheEmergency PlanningSupervisor.
Ii'a Page4'f6FLORIDAPOWER&LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100050EREVISION68.0Instructions 8.1Thefollowing emergency exercises, drills,andtestsshallbeconducted-at thefrequency indicated:
a)Exercises (InteratedDrills)Amajorradiological emer'gency responseexerciseshallbeconducted atleastonceeverytwelve(12)months(plusorminusthreemonths)-to demonstrate theeffectiveness oftheEmergency Plan.Thisexerciseshallbeconducted asaSiteAreaEmergency orGeneralEmergency andwillprovideforthecoordination withand,participation ofoff-siteemergency responsepersonnel organizations andagenciesincluding thoseoffederal,state,andlocalgovernments.
Theemergency scenarioshallbevariedfromyeartoyear.Provisions shallbemadetostartatleastoneexercisebetween6:00PMandmidnight, andatleastoneexercisebetweenmidnightand6:00A.M.,everysixyears.The"Affected Unit"intheexerciseshouldbechangedfromyeartoyear.R6Thisemergency responseexerciseshallbecritiqued byFloridaPower&LightCompanyobservers/evaluators andotherobservers asappropriate fromfederal,state,andlocalagencies.
R6b)RadioloicalMonitorin
'rillAradiological monitoring drillshallbeconducted atleastonceeverytwelve(12)months(plusorminusthreemonths).Thesedrillswillincludecollection andanalysisofsamplemedia(e.g.water,air).Thisdrillshouldincludetestingofcommunications andunderstanding ofcommunications betweentheRTLandtheteams.c)HealthPhsicsDrillsThcHealthPhysicsDepartment shallconducthealthphysicsdrillssemi-annually andoneofthesemi-annual"drills maybeincorporated intotheradiological monitoring drill.R6d)MedicalEmerencDrillAmedicalemergency drillinvolving a-simulated contaminated individual, withprovisions foractivation oftheplantFirstAidandPersonnel Decontamination Teamandparticipation bylocalsupportservices(i.e.,ambulance andoff-sitemedicaltreatment facility),
shallbeconducted atleastonceeverytwelve(12)months(plusorminusthreemonths).
Page5of6FLORIDAPOWER&LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANIMPLEMENTING PROCEDURE NO.3100050EREVISION68.0Instructions (cont'd)8.1(Cont'd)e)FireEmerencDrillFiredrillsareconducted inaccordance withTechnical Specifications totesttheoperational readiness (personnel, equipment andprocedures) tocontrolandextinguish afireonsite.Thedrillsalsoservetoevaluateanddocumenttheresponseofonsitepersonnel andparticipating off-siteagenciestovaryingfiresituations.
Thecommunication linksandnotification procedures aretestedatleastsemi-annually duringfireemergency drills.Apost-drill cr'itique isheldaftereachfiredrillcompleted toidentifypossibleareasforimprovement inequipment and/orprocedures.
f)Communications TestsCommunications withtheBureauofEmergency Management, Department ofHealthandRehabilitative
: Services, andSt.LucieandMartinCountyDisasterPreparedness Coordinators withintheplumeexposurepathwayEmergency PlanningZone(EPZ)willbetestedmonthly.8.2Conducting Drills8.2.1TheNuclearPlantSupervisor (NPS)shallevaluatetheplantconditions andascertain thatthedrillwillnotadversely affectplantequipment oroperations.
8.2.2TheHealthPhysicsSupervisor shalldesignate specificmembersoftheplantstafftoactascontrollers andevaluators duringthedrill.Thesecontrollers andevaluators shallbefamiliarwiththeprocedures andproperactionsto;betakenassociated withtheirpostduringthedrill.Additionally, briefings shallbe,conducted toindicatewhatpurposethedrillwillserviceandwhatspecificareasthecontrollers andevaluators shouldbeconcerned with.Thesecontrollers andevaluators shallbepostedthroughout theplantareatoobserveandrecordtheactionsofplantpersonnel duringthedrillandtoverifyalarmaudibility.
8.2.3Afterreceiving asignalofalarmindicating thatanemergency condition exists,whichhasbeeninitiated aspartofthedrill,theNPSshalltakeactionasrequiredbytheEmergency Plan.R6 I
Page6of6FLORIDAPOWER6LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANIl'PLEHENTING PROCEDURE NO.3100050EREVISION68.0Instructions (cont'd)8.2(cont'd)8.2.4Atthetermination ofthedrill,theNPSshallannounceoverthePAsystemthatthedrillisover.Thisshallberepeatedalongwithanyrequiredinstructions.
8.3Evaluation ofDrillsandExercises 8.3.1Following adrilltheHealthPhysicsSupervisor shallassimilate allinformation anddataconcerning the.emergency procedure drillandholdacritiqueonthedrill,andpresentasummaryofthecritiquetotheFRG.R6R6TheFRGshallrecommend changestotheEmergency PlanImplementing Procedures asnecessary.
R68.3.2Following anexercise, theEmergency PlanningSupervisor, plantmanagement, FPLcontrollers andevaluators andprincipal participants intheexercisewillmeettodiscussandevaluatetheexercise.
R6Theevaluation shallbebasedontheabilityofparticipants tofollowemergency procedures, theadequacyofemergency procedures, andtheadequacyofemergency equipment andsupplies.
Plantmanagement shallberesponsible fornecessary changesinthePlantEmergency Procedures andforrecommending and/orsubmitting changesintheEmergency PlantotheEmergency PlanningSupervisor.
8.3.3TheFRGshallsubmitawrittenevaluation following anexercise.to theEmergency PlanningSupervisor.
Thesecommentswillbeincorporated, withcommentsfromotherprincipal participants andcontrollers andevaluators, intoaconsolidated exercisesummary.Thesummarywillbedis-tributedasdescribed inthe"DutiesandResponsibilities oftheEmergency Planning.
Supervisor" procedure.
R6  
R6  
/II Page1of30FLORIDAPOWER6LIGHTCOMPANYST~LUCIEPLANTE>>PLANIMPLEMENTING PROCEDURE NO~3100033EREVISION81.0TITLE:Off-SiteDoseCalculations
/I I Page 1 of 30 FLORIDA POWER 6 LIGHT COMPANY ST~LUCIE PLANT E>>PLAN IMPLEMENTING PROCEDURE NO~3100033E REVISION 8 1.0 TITLE: Off-Site Dose Calculations 2.0 REVIEW AND APPROVAL: Reviewed by Facility Review Group Approved by A.D;Schmidt March 20 and 25 1981 V.P.Power Resources March 26 1981 Revision 8 Revi by P.R G Approved by V.P.Nuc Energy 19++3.0 SCOPE::3.1 Purpose:3.1.1 This procedure provides a method for estimating'hole body and thyroid dose rates and integrated whole body and thyroid dose for the area surrounding the site out to 12 miles.3'.2 This procedure provides a method of comparing.
dose estimates, release rates, and radiati'on levels in containment to Emergency Classifications Guidelines.
 
===3.2 Discussion===
3.2.1 3.2.2 This procedure is applicable to both Unit 1 and Unit-2.Provisions have been made to sum the releases from both Units should both be releasing radioactive materials during an emergency.
The Chemistry Department representative should use the computer dose calculation model, if available, for estimating off-site whole body and thyroid dose rates and integrated doses when releases of radioactive materials occur during an emergency.
This model closely parallels this procedure.
This procedure provides the means for hand calculation of offsite dose rates and integrated doses.'8402070388 840202 ,!R,I PDR ADOCK 05000335 F'DR t 0 A ST~LUCIE PLANT.E PLAN IMPLEMENTING PROCEDURE 3100033EP REVISION 8 OPF-SITE DOSE CALCULATIONS Page 2 of 30 3.0 SCOPE: (continued) 3.2 (continued) 3.2.3 The Emergency Coordinator will use these off-site dose estimates, release rates, and radiation levels in containment for emergency classification of off-site protective action recommendations.
The'mergency Coordinator or his designee will perform these off-site dose calculations if the Chemistry Department representative is unavailalle to do so.3'.4 This activity may be duplicated by the dose assessment group.in the EOF when it is manned and operational.
This serves as a redundant/check for off-site dose data.3.3 Authoritv:
This procedure implements the St.Lucie Plant Radiological Emergency Plan.4.0 PRECAUTIONS:
None 5'RESPONSIBILITIFS:
5.1 The Emergency Coordinator or his designee shall assure that whole body and thyroid dose rates and integrated doses are calculated, following releases of radioactive material during an emergency.
5.2 The Chemistry Department representative shall make the estimates upon arrival at the Technical Support Center at the direction of the Emergency Coordinator or his designee.6'REPERENCES:
6.1 St.Lucie Plant Radiological Emergency Plan 6.2 St.Lucie Plant Radiation Protection Manual 6.3"Duties of the Emergency Coordinator," EPIP 3100021E 6.4"Classification of Emergencies," EPIP 3100022E 6.5"Bases for Accident Dose Calculations for St.Lucie Nuclear Power Plant" (Bases prepared by HMM Associates of Waltham, Massachusetts.)
6.6"Criteria for Preparation and Evaluation of Radiological Emergency Response Plans and Preparedness in Support of Nuclear Power Plants," NUREG-0654, Revision 1 6.7 St~Lucie Unit 1 FSAR 6.8 St.Lucie Unit 2 FSAR ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCFDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS P:ge 3 of 30 7.0 RECORDS AND NOTIFICATIONS:
The attached worksheets shall be retained as qualitv records.Notifications are made per EPIP 3100021E.


==2.0 REVIEWANDAPPROVAL==
ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100)33E, REVISION 8 OFF-SITE DOSE CALCULAT:ONS Page 4 of 30 8'INSTRUCTIONS:
ReviewedbyFacilityReviewGroupApprovedbyA.D;SchmidtMarch20and251981V.P.PowerResources March261981Revision8RevibyP.RGApprovedbyV.P.NucEnergy19++3.0SCOPE::3.1Purpose:3.1.1Thisprocedure providesamethodforestimating'hole bodyandthyroiddoseratesandintegrated wholebodyandthyroiddosefortheareasurrounding thesiteoutto12miles.3'.2Thisprocedure providesamethodofcomparing.
8.1 Upon the initiation of an event which has resulted in or could result in releases of radioactive material, the Containment High Range Radiation Monitors (if inoperable, use Post LOCA)reading should be compared to the Action Guidelines for supplemental classification of the event.8.2 Determine the release rate for Noble gases and Iodines.If both Units are releasing radioactive material during an emergency, determine the release rates for both plants separately and add the results as requested.
doseestimates, releaserates,andradiati'on levelsincontainment toEmergency Classifications Guidelines.
Four methods for release rate determination are available.
3.2Discussion:
If Chemistry grab sample analysis data is available, METHOD A (Al for Unit 1, A2 for Unit 2)should be used.METHOD B (Bl for Unit 1, B2 for Unit 2)is used when grab sample data is not yet available and effluent monitors are operable.METHOD C (applicable to both Units), CHRRM method, is used if.METHOD B can't be used.As a default, METHOD D (applicable to both Units), Post LOCA monitors, may be used for release rate determination.
3.2.13.2.2Thisprocedure isapplicable tobothUnit1andUnit-2.Provisions havebeenmadetosumthereleasesfrombothUnitsshouldbothbereleasing radioactive materials duringanemergency.
4 8.2.1 For the affected Unit(s), complete a RELEASE RATE'WORKSHEET using the appropriate method for release rate determination.
TheChemistry Department representative shouldusethecomputerdosecalculation model,ifavailable, forestimating off-sitewholebodyandthyroiddoseratesandintegrated doseswhenreleasesofradioactive materials occurduringanemergency.
/R8 8.3 Determine the current meteorological data using the, METEOROLOGY WORKSHEET.
Thismodelcloselyparallels thisprocedure.
Three methods for meteorological data determination are available.
Thisprocedure providesthemeansforhandcalculation ofoffsitedoseratesandintegrated doses.'8402070388 840202,!R,IPDRADOCK05000335F'DR t0A ST~LUCIEPLANT.EPLANIMPLEMENTING PROCEDURE 3100033EP REVISION8OPF-SITEDOSECALCULATIONS Page2of303.0SCOPE:(continued) 3.2(continued) 3.2.3TheEmergency Coordinator willusetheseoff-sitedoseestimates, releaserates,andradiation levelsincontainment foremergency classification ofoff-siteprotective actionrecommendations.
METHOD A (Site Meteorology Tower)uses the 15 minute average met data from the Control Room met data recorders.
The'mergency Coordinator orhisdesigneewillperformtheseoff-sitedosecalculations iftheChemistry Department representative isunavailalle todoso.3'.4Thisactivitymaybeduplicated bythedoseassessment group.intheEOFwhenitismannedandoperational.
Method A serves as the primary source of data.METHOD B (West Palm Beach NOAA or Vero Airport FSS)serves as a backup.Manipulation of data from these sources is handled in Appendix C.METHOD C (default)serves as the secondary backup source of data.8.3.1 For the affected Unit, complete a METEOROLOGY WORKSHEET using the appropriate method (use only one method).
Thisservesasaredundant/check foroff-sitedosedata.3.3Authoritv:
ST~LUCIE PLANT E-PLAN IMPLLMENTING PROCEDURE 3'100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 5 of 30 8.0 INSTRUCTIONS: (continued) 8.4 Calculate Off-site Doses using the POSE CALCULATION WORKSHEET 8.4.1 If both plants are releasing radioactive material during an emergency, total the Noble gas and Iodine release rates.8.4.2 Multiply total NOBLE GAS RELEASE RATE (Ci/sec)by WHOLE BODY DOSE FACTOR (mRem/hr/Ci/sec) to determine WHOLE BODY DOSE RATE./R8 NOTE: The whole body dose rate conversion factor is determined from Dose Factor Tables and is based on precalculated dose rates at 1, 2, 5, and 10 miles from the plant;meteorological conditions (stability and w.'.nd speed), and a 1 Ci/sec release rate.8''Multiply TOTAL IODINE RELEASE RATE (Ci/sec)by THYROID DOSE FACTOR (nRem/hr/Ci/sec) to determine THYROID DOSE RATE./R8 NOTE: The thyroid dose rate conversion factor is determined from Dose Factor Tables and is based on precalculated dose rates at 1, 2, 5, and 10 miles from the plant;meteorological conditions (stability and wind speed), and a 1 Ci/sec release rate.8.4.4 Enter the dose rate results in part 6A.Noting wind direction, record dose rate results in the i'ndicated sector and the adiacent sectors (on each side)in part 6B.8.5 The Emergency Coordinator or his designee shall monitor release rates and meteorological conditions to determine how frequently to update the dose rate estimates.
Thisprocedure implements theSt.LuciePlantRadiological Emergency Plan.4.0PRECAUTIONS:
Dose rate estimates shall be updated if any of the'ollowing averages change by the amounts.indicated below over a period not to exceed 30 minutes: 1.Release rates increase by more than 25T.2.Wind speed decreases by two classes or more.3.'tmospheric stability becomes more stable by more than one class (e.g., stability D to F).4.Wind direction changes by more than 22.5 (i.e., plume centerline is more than one sector away from prior location).
None5'RESPONSIBILITIFS:
In any case, the estimates shall be revised at least hourly for the first 8 hours after the accident unless it is determined that releases of radioactivity have been terminated.
5.1TheEmergency Coordinator orhisdesigneeshallassurethatwholebodyandthyroiddoseratesandintegrated dosesarecalculated, following releasesofradioactive materialduringanemergency.
ST.LUCIE PLANT.'-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 6 of 30 8 o INSTRUCTIONS: (continued) 8.6 The Emergency Coordinator or his designee shall track integrated thyroid and whole body dose once each hour for the duration of the event as follows: S.d.1 The average thyroid anB whole body Bose rates shell be determined for each sector from the DOSE CALCULATION WORKSHEETS completed for the hour of interest.8.6.2 Update step 9 of the DOSE CALCULATION WORKSHEETS by adding the thyroid and whole body dose rate determined from 6.A for each applicable sector/distance block to the integrated dose from event initiation to the present for that sector/distance block./R8 8'.3 Doses for sector/distance blocks with zero estimated dose rate for the current hour remain unchanged.
5.2TheChemistry Department representative shallmaketheestimates uponarrivalattheTechnical SupportCenteratthedirection oftheEmergency Coordinator orhisdesignee.
6'REPERENCES:
6.1St.LuciePlantRadiological Emergency Plan6.2St.LuciePlantRadiation Protection Manual6.3"DutiesoftheEmergency Coordinator,"
EPIP3100021E6.4"Classification ofEmergencies,"
EPIP3100022E6.5"BasesforAccidentDoseCalculations forSt.LucieNuclearPowerPlant"(BasespreparedbyHMMAssociates ofWaltham,Massachusetts.)
6.6"Criteria forPreparation andEvaluation ofRadiological Emergency ResponsePlansandPreparedness inSupportofNuclearPowerPlants,"NUREG-0654, Revision16.7St~LucieUnit1FSAR6.8St.LucieUnit2FSAR ST~LUCIEPLANTE-PLANIMPLEMENTING PROCFDURE
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS P:ge3of307.0RECORDSANDNOTIFICATIONS:
Theattachedworksheets shallberetainedasqualitvrecords.Notifications aremadeperEPIP3100021E.  


ST~LUCIEPLANTE-PLANIMPLEMENTING PROCEDURE 3100)33E,REVISION8OFF-SITEDOSECALCULAT:ONS Page4of308'INSTRUCTIONS:
===8.7 Proiections===
8.1Upontheinitiation ofaneventwhichhasresultedinorcouldresultinreleasesofradioactive
of doses and dose rates should be made on the basis that the most recently estimated dose rates and their distribution will'ersist for two hours.Pro)ecting dose rates for periods othhr than two hours should be made on an ad hoc basis using best available data on release rate estimates and subsequent meteorological conditions.
: material, theContainment HighRangeRadiation Monitors(ifinoperable, usePostLOCA)readingshouldbecomparedtotheActionGuidelines forsupplemental classification oftheevent.8.2Determine thereleaserateforNoblegasesandIodines.IfbothUnitsarereleasing radioactive materialduringanemergency, determine thereleaseratesforbothplantsseparately andaddtheresultsasrequested.
8e8 The results of TOTAL RELEASE RATE, DOSE RATES, and ACCUMULATED DOSE should be compared to applicable Table 3, Page 19-ACTION GUIDELINES.
Fourmethodsforreleaseratedetermination areavailable.
The Emergency Coordinator, if not performing the actual calculations, shall be informed of all dose estimates.
IfChemistry grabsampleanalysisdataisavailable, METHODA(AlforUnit1,A2forUnit2)shouldbeused.METHODB(BlforUnit1,B2forUnit2)isusedwhengrabsampledataisnotyetavailable andeffluentmonitorsareoperable.
The Emergency Coordinator shall evaluate the results and declare a new status as applicable.
METHODC(applicable tobothUnits),CHRRMmethod,isusedif.METHODBcan'tbeused.Asadefault,METHODD(applicable tobothUnits),PostLOCAmonitors, maybeusedforreleaseratedetermination.
'R8 8.9 Dose conversion tables for distances 1 to 12 miles, by 1 mile increments, are attached as Appendix A for calculations of dose at other than 1, 2, 5, and 10 miles.  
48.2.1FortheaffectedUnit(s),completeaRELEASERATE'WORKSHEET usingtheappropriate methodforreleaseratedetermination.
/R88.3Determine thecurrentmeteorological datausingthe,METEOROLOGY WORKSHEET.
Threemethodsformeteorological datadetermination areavailable.
METHODA(SiteMeteorology Tower)usesthe15minuteaveragemetdatafromtheControlRoommetdatarecorders.
MethodAservesastheprimarysourceofdata.METHODB(WestPalmBeachNOAAorVeroAirportFSS)servesasabackup.Manipulation ofdatafromthesesourcesishandledinAppendixC.METHODC(default) servesasthesecondary backupsourceofdata.8.3.1FortheaffectedUnit,completeaMETEOROLOGY WORKSHEET usingtheappropriate method(useonlyonemethod).
ST~LUCIEPLANTE-PLANIMPLLMENTING PROCEDURE 3'100033E, REVISION8OFF-SITEDOSECALCULATIONS Page5of308.0INSTRUCTIONS:
(continued) 8.4Calculate Off-siteDosesusingthePOSECALCULATION WORKSHEET 8.4.1Ifbothplantsarereleasing radioactive materialduringanemergency, totaltheNoblegasandIodinereleaserates.8.4.2MultiplytotalNOBLEGASRELEASERATE(Ci/sec)byWHOLEBODYDOSEFACTOR(mRem/hr/Ci/sec) todetermine WHOLEBODYDOSERATE./R8NOTE:Thewholebodydoserateconversion factorisdetermined fromDoseFactorTablesandisbasedonprecalculated doseratesat1,2,5,and10milesfromtheplant;meteorological conditions (stability andw.'.ndspeed),anda1Ci/secreleaserate.8''MultiplyTOTALIODINERELEASERATE(Ci/sec)byTHYROIDDOSEFACTOR(nRem/hr/Ci/sec) todetermine THYROIDDOSERATE./R8NOTE:Thethyroiddoserateconversion factorisdetermined fromDoseFactorTablesandisbasedonprecalculated doseratesat1,2,5,and10milesfromtheplant;meteorological conditions (stability andwindspeed),anda1Ci/secreleaserate.8.4.4Enterthedoserateresultsinpart6A.Notingwinddirection, recorddoserateresultsinthei'ndicated sectorandtheadiacentsectors(oneachside)inpart6B.8.5TheEmergency Coordinator orhisdesigneeshallmonitorreleaseratesandmeteorological conditions todetermine howfrequently toupdatethedoserateestimates.
Doserateestimates shallbeupdatedifanyofthe'ollowing averageschangebytheamounts.indicated belowoveraperiodnottoexceed30minutes:1.Releaseratesincreasebymorethan25T.2.Windspeeddecreases bytwoclassesormore.3.'tmospheric stability becomesmorestablebymorethanoneclass(e.g.,stability DtoF).4.Winddirection changesbymorethan22.5(i.e.,plumecenterline ismorethanonesectorawayfrompriorlocation).
Inanycase,theestimates shallberevisedatleasthourlyforthefirst8hoursaftertheaccidentunlessitisdetermined thatreleasesofradioactivity havebeenterminated.
ST.LUCIEPLANT.'-E-PLANIMPLEMENTING PROCEDURE
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page6of308oINSTRUCTIONS:
(continued) 8.6TheEmergency Coordinator orhisdesigneeshalltrackintegrated thyroidandwholebodydoseonceeachhourforthedurationoftheeventasfollows:S.d.1TheaveragethyroidanBwholebodyBoseratesshellbedetermined foreachsectorfromtheDOSECALCULATION WORKSHEETS completed forthehourofinterest.
8.6.2Updatestep9oftheDOSECALCULATION WORKSHEETS byaddingthethyroidandwholebodydoseratedetermined from6.Aforeachapplicable sector/distance blocktotheintegrated dosefromeventinitiation tothepresentforthatsector/distance block./R88'.3Dosesforsector/distance blockswithzeroestimated doserateforthecurrenthourremainunchanged.
8.7Proiections ofdosesanddoseratesshouldbemadeonthebasisthatthemostrecentlyestimated doseratesandtheirdistribution will'ersistfortwohours.Pro)ecting doseratesforperiodsothhrthantwohoursshouldbemadeonanadhocbasisusingbestavailable dataonreleaserateestimates andsubsequent meteorological conditions.
8e8TheresultsofTOTALRELEASERATE,DOSERATES,andACCUMULATED DOSEshouldbecomparedtoapplicable Table3,Page19-ACTIONGUIDELINES.
TheEmergency Coordinator, ifnotperforming theactualcalculations, shallbeinformedofalldoseestimates.
TheEmergency Coordinator shallevaluatetheresultsanddeclareanewstatusasapplicable.
'R88.9Doseconversion tablesfordistances 1to12miles,by1mileincrements, areattachedasAppendixAforcalculations ofdoseatotherthan1,2,5,and10miles.  


ST.LUCIENPL'ANT.-""-E-PLANIMPLEMENTING PROCEDURE
ST.LUCIEN PL'ANT.-""-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 7 of 30 RELEASE RATE WORKSHEET Al METHOD Al-CHEMISTRY GRAB SAMPLE-UNIT 1 NOTE: Read Unit 1 CHRRM and compare with ACTION GUIDE 1A, Page 19.1.Date and Time of Data//2.Acquire sample assay data.Enter the gross Noble gas and Iodine-131 Deq concentrations in uCi/cc in the table below.3.Determine pathway flow.If available, use the Unit 1 effluent monitor channel'hown.
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page7of30RELEASERATEWORKSHEET AlMETHODAl-CHEMISTRY GRABSAMPLE-UNIT1NOTE:ReadUnit1CHRRMandcomparewithACTIONGUIDE1A,Page19.1.DateandTimeofData//2.Acquiresampleassaydata.EnterthegrossNoblegasandIodine-131 Deqconcentrations inuCi/ccinthetablebelow.3.Determine pathwayflow.Ifavailable, usetheUnit1effluentmonitorchannel'hown.
Alternatively, use the flow based on exhaust fan status, figured below.Default flows are listed if exhaust fan status is not available.
Alternatively, usetheflowbasedonexhaustfanstatus,figuredbelow.Defaultflowsarelistedifexhaustfanstatusisnotavailable.
4.Calculate Release Rates.I PATHWAY I TYPE P ant No e Gas Vent I Iodine FLOW CONVERSION uC/cc X SCFM X VALUE 4.72 E-4 CALCULATED Ci SEC I NOBLE GAS IODINE I Fuel Noble Gas o ne 4.72 E-4 S o le Gas A Iodine 4~72 E-'4!ECCS Noble Gas B o ne 4.72 E-4 Total Noble Gas 5.Compare Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WORESHEET; Page 14.Total Iodine UNIT 1 PATHWAY FLOW DATA Plant Vent,'hannel 01-10 Default 86050 SCFM Plant Vent by Exhaust Fan Status Check fans that are"ON" Fuel Building, Channel 04-10 Default 23800 SCFM Fuel Building by Exhaust Fan Status Check fans that are"ON" 1 1 1 1 1 1.1 1 HVE 10A HVE 10B HVE 6A HVE 6B HVE 8A HVE 8B HVE 7A HVE 7B-74050-74050 6000 6000-42000-42000 500 500 1 HVE 16A-10350 1 HVE 16B-10350 1 HVE 17-5000 1 HVE 15-8450 Total Fuel Bldg.(SCFM)ECCS, Default Value is 30000 SCFM Total of"ON" Plant Vent (SCFM)ECCS-A Channel 02-10, 1 HVE 9A-30000 SCF1 ECCS-B Channel 03-10, 1 HVE 9B-30000 SCB/R1 F ST.LUCIE,PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OPP-SITE DOSE CALCUL'ATIONS Page 8 of 30 RELEASE RATE WORKSHEET A2 METHOD A2-CHEMISTRY GRAB SAMPLE-UNIT 2'OTE: Read Unit 2 CHRRM and compare with ACTION GUIDE 1A, Page 19'.Date and Time of Data//2~Acquire sample assay data.Enter the gross Noble gas and Iodine-131 Deq concentrations in uCi/cc in the table below.3.Determine pathway flow.If available, use the Unit 2 effluent monitor channel listed below.Alternatively, use the flow based on exhaust fan flow, figured below.Default flows are listed if exhaust fan status is not available.
4.Calculate ReleaseRates.IPATHWAYITYPEPantNoeGasVentIIodineFLOWCONVERSION uC/ccXSCFMXVALUE4.72E-4CALCULATED CiSECINOBLEGASIODINEIFuelNobleGasone4.72E-4SoleGasAIodine4~72E-'4!ECCSNobleGasBone4.72E-4TotalNobleGas5.CompareNoblegasreleaseratewithACTIONGUIDE2A,Page19.6.TaketotalNoblegasandIodinereleaserates,inCi/sec,totheDOSECALCULATION WORESHEET; Page14.TotalIodineUNIT1PATHWAYFLOWDATAPlantVent,'hannel 01-10Default86050SCFMPlantVentbyExhaustFanStatusCheckfansthatare"ON"FuelBuilding, Channel04-10Default23800SCFMFuelBuildingbyExhaustFanStatusCheckfansthatare"ON"111111.11HVE10AHVE10BHVE6AHVE6BHVE8AHVE8BHVE7AHVE7B-74050-7405060006000-42000-420005005001HVE16A-103501HVE16B-103501HVE17-50001HVE15-8450TotalFuelBldg.(SCFM)ECCS,DefaultValueis30000SCFMTotalof"ON"PlantVent(SCFM)ECCS-AChannel02-10,1HVE9A-30000SCF1ECCS-BChannel03-10,1HVE9B-30000SCB/R1 FST.LUCIE,PLANT E-PLANIMPLEMENTING PROCEDURE
4.Calculate Release Rates.I PATHWAY I TYPE GROSS FLOW CONVERSION uC/cc X SCFM X VALUE CALCULATED Ci SEC I NOBLE GAS IODIN I P ant Vent No le Gas Iodine I 4.72 E-4!ECCS'oble Gas A o ne I o e Gas I B I Iodine 4.72 E-4-"''2 E-4'Total Noble Gas 5.Compare Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WQRKSHEET, Page 14.UNIT 2 PATHWAY PLOW DATA Plant Vent, (Grid 5)Channel 421 or 431 (Redundant Samplers), utilize"PROC FLOW N" (SCFM)Default 96500 SCFM Total Iodine Plant Vent by Exhaust Pan Status Check Pans that are"ON" ECCS, no monitored flow rate Default Value is 30000 SCFM2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 10A-84500 10B-84500 6A-6000 6B-6000 8'A-42000 SB-42000 16A-10000 16B-10000 17-6000 15-9700 7A-2000 7B-2000 ECCS A, 2 HVE 9A-30000 SCFM ECCS B, 2 HVE 9B-30000 SCFM Total of"ON" Fans (SCFM)/RS  
: 3100033E, REVISION8OPP-SITEDOSECALCUL'ATIONS Page8of30RELEASERATEWORKSHEET A2METHODA2-CHEMISTRY GRABSAMPLE-UNIT2'OTE:ReadUnit2CHRRMandcomparewithACTIONGUIDE1A,Page19'.DateandTimeofData//2~Acquiresampleassaydata.EnterthegrossNoblegasandIodine-131 Deqconcentrations inuCi/ccinthetablebelow.3.Determine pathwayflow.Ifavailable, usetheUnit2effluentmonitorchannellistedbelow.Alternatively, usetheflowbasedonexhaustfanflow,figuredbelow.Defaultflowsarelistedifexhaustfanstatusisnotavailable.
4.Calculate ReleaseRates.IPATHWAYITYPEGROSSFLOWCONVERSION uC/ccXSCFMXVALUECALCULATED CiSECINOBLEGASIODINIPantVentNoleGasIodineI4.72E-4!ECCS'obleGasAoneIoeGasIBIIodine4.72E-4-"''2E-4'TotalNobleGas5.CompareNoblegasreleaseratewithACTIONGUIDE2A,Page19.6.TaketotalNoblegasandIodinereleaserates,inCi/sec,totheDOSECALCULATION WQRKSHEET, Page14.UNIT2PATHWAYPLOWDATAPlantVent,(Grid5)Channel421or431(Redundant Samplers),
utilize"PROCFLOWN"(SCFM)Default96500SCFMTotalIodinePlantVentbyExhaustPanStatusCheckPansthatare"ON"ECCS,nomonitored flowrateDefaultValueis30000SCFM2HVE2HVE2HVE2HVE2HVE2HVE2HVE2HVE2HVE2HVE2HVE2HVE10A-8450010B-845006A-60006B-60008'A-42000SB-4200016A-1000016B-1000017-600015-97007A-20007B-2000ECCSA,2HVE9A-30000SCFMECCSB,2HVE9B-30000SCFMTotalof"ON"Fans(SCFM)/RS  


ST.LUCIEPL'ANT.E-PLANIMPLEMENTING PROCEDURE
ST.LUCIE PL'ANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISI01 8 OFF-SITE DOSE CALCULATIONS Page 9 of 30 RELEASE RATE WORKSHEET Bl METHOD Bl-UNIT 1 EFFLUENT MONITOR NOTE-Read Unit 1 CHRRM and compare to ACTION GUIDE 1A, Page 19.1.Date and Time of Data//2.Determine gross Noble gas concentrations via Eberline Control Terminal A or B.i)Enable keyboard, turn keyswitch on.'i)Press HIST MIN.iii)Enter the applicable pathway channel number.iv)Press ENTER.v)Enter the next-to-last data point from the lowest non-'alarming range into the table below under monitor data.3.Determine pathway flow via Eberline Control Terminal A or BE Alternatively use fan status or default figured on RELEASE RATE WORKSHEET Al, METHOD Al.Enter the flow, in SCFM, into the table below.EBERLINE CONTROL TERMINAL CHANNEL DATA PATIMAY Plant Vent ECCS-A ECCS-B Fuel Bldg.Steamline A Steamline B 0105 0205 0305 0405 N/A N/A 0107 0207 0307 0407 0501 0502 HI RANGE 0109 I 0209 0309'409 N/A N/A FLOW 0110 02 10 0310 0410 N/A N/A 4~Select IODINE FACTOR, use factors shown for pathway for accident type.Enter in table below.ACCIDENT APE PATHWAY Plant Vent ECCS A, B Fuel Bldg.Steamline A,B!LOCA 0 F 01 0.01 N/A N/A SGTR 1.0 E-6 N/A N/A 1~0 E-3 MSLB 1.0 N/A N/A N/A WASTE GAP TR 4 E-5 N/A N/A N/A FUEL HANDLING N/A N/A 0.0 N/A CASK DROP N/A N/A 1.3 N/A 5.Calculate Noble gas and Iodine release rates for each pathway, then add up the, Noble gas and Iodine rates to get total release rates.!MONITOR X FLOW X FLOW'NOBLE GAS X IODINE IODINE PAT1MAY DATA SCFM FACTOR Ci/SEC FACTOR Ci/SEC iPlant Vent iECCS-A I ECCS-B)Fuel Bld!iSteamline A I" I 472E4 I I I 4.72 E-4 I I'I I 4.72 E-4 I I I I I 4.72 E-4 I I 1 I 1.24 E-2 I/Steamline B I 1 I 1.24E-2 (I I Totals, Ci/sec Noble Gas 6.Compare the total Noble gas release rate with ACTION GUIDE 2A, Page 19'~Take the total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WORKSHEET, Page 14.Iodine/R8  
: 3100033E, REVISI018OFF-SITEDOSECALCULATIONS Page9of30RELEASERATEWORKSHEET BlMETHODBl-UNIT1EFFLUENTMONITORNOTE-ReadUnit1CHRRMandcomparetoACTIONGUIDE1A,Page19.1.DateandTimeofData//2.Determine grossNoblegasconcentrations viaEberlineControlTerminalAorB.i)Enablekeyboard, turnkeyswitch on.'i)PressHISTMIN.iii)Entertheapplicable pathwaychannelnumber.iv)PressENTER.v)Enterthenext-to-last datapointfromthelowestnon-'alarming rangeintothetablebelowundermonitordata.3.Determine pathwayflowviaEberlineControlTerminalAorBEAlternatively usefanstatusordefaultfiguredonRELEASERATEWORKSHEET Al,METHODAl.Entertheflow,inSCFM,intothetablebelow.EBERLINECONTROLTERMINALCHANNELDATAPATIMAYPlantVentECCS-AECCS-BFuelBldg.Steamline ASteamline B0105020503050405N/AN/A010702070307040705010502HIRANGE0109I02090309'409N/AN/AFLOW0110021003100410N/AN/A4~SelectIODINEFACTOR,usefactorsshownforpathwayforaccidenttype.Enterintablebelow.ACCIDENTAPEPATHWAYPlantVentECCSA,BFuelBldg.Steamline A,B!LOCA0F010.01N/AN/ASGTR1.0E-6N/AN/A1~0E-3MSLB1.0N/AN/AN/AWASTEGAPTR4E-5N/AN/AN/AFUELHANDLINGN/AN/A0.0N/ACASKDROPN/AN/A1.3N/A5.Calculate NoblegasandIodinereleaseratesforeachpathway,thenaddupthe,NoblegasandIodineratestogettotalreleaserates.!MONITORXFLOWXFLOW'NOBLEGASXIODINEIODINEPAT1MAYDATASCFMFACTORCi/SECFACTORCi/SECiPlantVentiECCS-AIECCS-B)FuelBld!iSteamline AI"I472E4III4.72E-4II'II4.72E-4IIIII4.72E-4II1I1.24E-2I/Steamline BI1I1.24E-2(IITotals,Ci/secNobleGas6.ComparethetotalNoblegasreleaseratewithACTIONGUIDE2A,Page19'~TakethetotalNoblegasandIodinereleaserates,inCi/sec,totheDOSECALCULATION WORKSHEET, Page14.Iodine/R8  


ST.LUCEPLANTE-PLANIMPLEMENTING PROCF3URE3100033F.,
ST.LUC E PLANT E-PLAN IMPLEMENTING PROCF 3URE 3100033F., REVISION 8 OFF-SITE DOSF.CALCULATIONS Page 10 of 30 RELEASE RATE WORKSHEET B2 METHOD B2-UNIT 2 EFFLUENT MONITOR NOTE: Read Unit 2 CHRRM and compare with ACTION GUIDE 1A, Page 19.1.Date and Time of Data.//2.-Determine gross Noble gas release rate via the General Atomics Console for the applicable pathway.i)ii)iii)iv)v)Press GRID 4.Press the channel number shown in the table below.Press SEL.Press TREND 10 MIN.Record the value, shown in upper right corner of CRT, into the table below under data.3.Select Iodine factor for the pathway based on accident type.Fnter into table below under Iodine Factor.ACCIDENT TYPE PATHWAY LOCA SGTR MSLB WASTE GAS FUEL HANDLING CASK DROP Plant Vent Fuel Bldg 0.01 1.0 E-6 1.0 4E-5 0.04 1.3 ECCS-A or B 0.01 N A N A N A N A N A Steamline AorB N/A 1~0 E-3 N/A N/A N/A N/A 4~Calculate Noble gas and Iodine release rates for each pathway, then add up the release rates to get total Noble gas and Iodine.NOBLE GAS IODINE IODINE PATHWAY CHANNEL g DATA Z CONVERSION Ci/SEC X FACTOR Plant Vent Fuel Bld I ECCS A 604 l ECCS B 614 Steamline 2A Data~(CH 631))Steamline NET SL A Steamline 2B Data (CH 632)1E-6 lE-6 1E-6-(CH 633)1.2 E--(CH 633)NET SL2A NET SL2B jSteamline 2B NET SL2B 1~24 E-2 Totals, Ci/sec Noble Gas Iodine 5.Compare the total Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take the total Noble gas and Iodine release rates to the DOSE CALCULATION WORKSHEET, Page 14./RS  
REVISION8OFF-SITEDOSF.CALCULATIONS Page10of30RELEASERATEWORKSHEET B2METHODB2-UNIT2EFFLUENTMONITORNOTE:ReadUnit2CHRRMandcomparewithACTIONGUIDE1A,Page19.1.DateandTimeofData.//2.-Determine grossNoblegasreleaserateviatheGeneralAtomicsConsolefortheapplicable pathway.i)ii)iii)iv)v)PressGRID4.Pressthechannelnumbershowninthetablebelow.PressSEL.PressTREND10MIN.Recordthevalue,showninupperrightcornerofCRT,intothetablebelowunderdata.3.SelectIodinefactorforthepathwaybasedonaccidenttype.FnterintotablebelowunderIodineFactor.ACCIDENTTYPEPATHWAYLOCASGTRMSLBWASTEGASFUELHANDLINGCASKDROPPlantVentFuelBldg0.011.0E-61.04E-50.041.3ECCS-AorB0.01NANANANANASteamline AorBN/A1~0E-3N/AN/AN/AN/A4~Calculate NoblegasandIodinereleaseratesforeachpathway,thenaddupthereleaseratestogettotalNoblegasandIodine.NOBLEGASIODINEIODINEPATHWAYCHANNELgDATAZCONVERSION Ci/SECXFACTORPlantVentFuelBldIECCSA604lECCSB614Steamline 2AData~(CH631))Steamline NETSLASteamline 2BData(CH632)1E-6lE-61E-6-(CH633)1.2E--(CH633)NETSL2ANETSL2BjSteamline 2BNETSL2B1~24E-2Totals,Ci/secNobleGasIodine5.ComparethetotalNoblegasreleaseratewithACTIONGUIDE2A,Page19.6.TakethetotalNoblegasandIodinereleaseratestotheDOSECALCULATION WORKSHEET, Page14./RS  
~I I~'I I I~~~I~'I''4~~~Ie~II~~~'~I It~'I~I I I~I''~~I'II'~~I~I~~I I~I I~I I~I I I II~~~~~~~II NM55$5 5 m%%%R%8$R%5$~%%5%EEE5555 5885LR55555
~II~'III~~~I~'I''4~~~Ie~II~~~'~IIt~'I~III~I''~~I'II'~~I~I~~II~II~II~IIIII~~~~~~~IINM55$55m%%%R%8$R%5$~%%5%EEE5555 5885LR55555
~Ni%$RRUR~SLR~I~HR&SSREa~5555~~~~~I~~o~~~~~~~~~~I I STe LUCIE.PLANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 12 of 30 RELEASE RATE WORKSHEET D METHOD D-POST LOCA MONITORS APPLICABLE TO UNIT 1 OR UNIT 2 1~Read Post LOCA Monitor.Circle values used: POST LOCA MONITOR READING (mR/hr)TOTAL NOBLE GAS RELEASE RATE (Ci/sec)TOTAL IODINE RELEASE RATE (Ci/sec)WITH SAFEGUARDS NO SAFEGUARDS
~Ni%$RRUR~SLR~I~HR&SSREa~5555~~~~~I~~o~~~~~~~~~~II STeLUCIE.PLANT.E-PLANIMPLEMENTING PROCEDURE
<60>60 to 100>100.to 1000 1000 l I 2~0 10.0 40.0 NEGLIGIBLE 0 03 0.14 0.60 0.1 0.4 1.6 I I NOTE: Post LOCA Monitor readings must be verified by HP survey.2.Compare Post LOCA Monitor readings to ACTION GUIDE 1B, Page 19.4 3.Take Noble gas and Iodine release rate to the DOSE CALCULATION WORKSHEET, Page 14.
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page12of30RELEASERATEWORKSHEET DMETHODD-POSTLOCAMONITORSAPPLICABLE TOUNIT1ORUNIT21~ReadPostLOCAMonitor.Circlevaluesused:POSTLOCAMONITORREADING(mR/hr)TOTALNOBLEGASRELEASERATE(Ci/sec)TOTALIODINERELEASERATE(Ci/sec)WITHSAFEGUARDS NOSAFEGUARDS
0 ST~LUCIE'LANT F.-PLAN IMPLEMFNTING PROCEDIJRE 31'00033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 13 of 30 Date and Time of Data: Meteorolo ical Data METEOROLOGY WORKSHEET//NOTE: Three methods are offered for use.Method A is preferred to all others and Method B is preferable to Method C.")METHOD A)Site Meteorology Tower NOTE: Unit 2 Control Room has to contact Unit 1 Control Room for this data.Wind Speed Wind Direction)Prom Delta T mph)(Lo~~r Sensor, Upper Sensor~Alternate)(Lower Sensor, Upper Sensor~Alternate)
<60>60to100>100.to10001000lI2~010.040.0NEGLIGIBLE 0030.140.600.10.41.6IINOTE:PostLOCAMonitorreadingsmustbeverifiedbyHPsurvey.2.ComparePostLOCAMonitorreadingstoACTIONGUIDE1B,Page19.43.TakeNoblegasandIodinereleaseratetotheDOSECALCULATION WORKSHEET, Page14.
F)(Strip Chart Recorder, Digital~Alternate)
0 ST~LUCIE'LANT F.-PLANIMPLEMFNTING PROCEDIJRE 31'00033E, REVISION8OFF-SITEDOSECALCULATIONS Page13of30DateandTimeofData:Meteorolo icalDataMETEOROLOGY WORKSHEET
Prom Table below, convert Delta T to stability class METEOROLOGICAL STABILITY CLASSES STEP 2 I DELTA T RANGES F STABILITY CLASS DEFINITION
//NOTE:Threemethodsareofferedforuse.MethodAispreferred toallothersandMethodBispreferable toMethodC.")METHODA)SiteMeteorology TowerNOTE:Unit2ControlRoomhastocontactUnit1ControlRoomforthisdata.WindSpeedWindDirection
<-1.6-1~6 to<-1~5-1.5 to<-1.3-1~3 to<-0'B Extremel unstable Moderately unstable Slightl unstable Neutral-0.4 to<+1.3+1.3 to<+3.5)+3.5 E Sli htl stable Moderately stable G Extremely stable Take Stability Class and Wind Speed to the DOSE CALCULATION WORKSHEET, Page 14.METHOD B)West Palm Beach Airport NOAA Center Alt Vero Plight Service Station Go to Appendix C, Page 28.METHOD C)Default Values DAY Wind Speed Stability Class NIGHT Take Stability Class and Wind Speed to the DOSE CALCULATION WORKSHEET, Page 14.
)PromDeltaTmph)(Lo~~rSensor,UpperSensor~Alternate)
ST.LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033K, REVISION 8 OFF-SITE DOSE CALCULATIONS Page j 4 of 30 DOSE CALCULATION WORKSHEET 1.Date and Time of Calculation
(LowerSensor,UpperSensor~Alternate)
//2.Sum release rates.Enter release rates from the affected Unit(s).~Add, if applicable, to get total release rate from site.I UNIT NOBLE GAS Ci SEC IODINE Ci SEC METHOD j 2 Total Enter totals in Dose Calculation Table below.3.Fnter from the METEOROLOGY WORKSHEET the, MET Data.Wind from Speed mph, Stability 4.Enter in the Dose Calculation Table the WB and THY Dose Factor (DF)for the Stability Class and Wind Speed group.The factors are listed on Pages 17 and 18.Dose factors for distances other than 1, 2, 5, and 10 miles are listed in Appendix A.4 5.Check for Sea Breeze effect.If any one of the following conditions do not exist, the Sea Breeze Factor (SBF)is one (1), and go to Step 6.Conditions:
F)(StripChartRecorder, Digital~Alternate)
1.Stability Class A, B, or C.2.Time of day 6 am to 7 pm.3.Wind is (from)between 0 and 180.4.Air temperature
PromTablebelow,convertDeltaTtostability classMETEOROLOGICAL STABILITY CLASSESSTEP2IDELTATRANGESFSTABILITY CLASSDEFINITION
)surface water temperature.
<-1.6-1~6to<-1~5-1.5to<-1.3-1~3to<-0'BExtremelunstableModerately unstableSlightlunstableNeutral-0.4to<+1.3+1.3to<+3.5)+3.5ESlihtlstableModerately stableGExtremely stableTakeStability ClassandWindSpeedtotheDOSECALCULATION WORKSHEET, Page14.METHODB)WestPalmBeachAirportNOAACenterAltVeroPlightServiceStationGotoAppendixC,Page28.METHODC)DefaultValuesDAYWindSpeedStability ClassNIGHTTakeStability ClassandWindSpeedtotheDOSECALCULATION WORKSHEET, Page14.
HISTORICAL MONTHLY AVERAGE SURFACE WATER TEMPERATURES, F JAN FEB MAR APR MAY JUN JUL AUG SEP OCT NOV DEC 69 65 69 73 76 7 80.81 81 79 7.71 Select the appropriate Sea Breeze Factor (SBF)and enter it into Step 6.STABILITY CLASS SEA BREEZE FACTORS DISTANCE (MILES)10 A C 12~3 2.3 1~2 8.8 3~1.6 5.6 5'2.3 3.9 3.9 3.0/R8  
ST.LUCIEPLANTE-PLANIMPLEMENTING PROCEDURE
: 3100033K, REVISION8OFF-SITEDOSECALCULATIONS Pagej4of30DOSECALCULATION WORKSHEET 1.DateandTimeofCalculation
//2.Sumreleaserates.EnterreleaseratesfromtheaffectedUnit(s).~Add,ifapplicable, togettotalreleaseratefromsite.IUNITNOBLEGASCiSECIODINECiSECMETHODj2TotalEntertotalsinDoseCalculation Tablebelow.3.FnterfromtheMETEOROLOGY WORKSHEET the,METData.WindfromSpeedmph,Stability 4.EnterintheDoseCalculation TabletheWBandTHYDoseFactor(DF)fortheStability ClassandWindSpeedgroup.ThefactorsarelistedonPages17and18.Dosefactorsfordistances otherthan1,2,5,and10milesarelistedinAppendixA.45.CheckforSeaBreezeeffect.Ifanyoneofthefollowing conditions donotexist,theSeaBreezeFactor(SBF)isone(1),andgotoStep6.Conditions:
1.Stability ClassA,B,orC.2.Timeofday6amto7pm.3.Windis(from)between0and180.4.Airtemperature
)surfacewatertemperature.
HISTORICAL MONTHLYAVERAGESURFACEWATERTEMPERATURES, FJANFEBMARAPRMAYJUNJULAUGSEPOCTNOVDEC6965697376780.8181797.71Selecttheappropriate SeaBreezeFactor(SBF)andenteritintoStep6.STABILITY CLASSSEABREEZEFACTORSDISTANCE(MILES)10AC12~32.31~28.83~1.65.65'2.33.93.93.0/R8  


ST.LUCIE'PLANT,E-PLANIMPLEMENTING PROCEDURE
ST.LUCIE'PLANT , E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 15 of 30 DOSE CALCULATION WORKSHEET (continued) 6.A Complete Dose Calculation Table.WHOLE BODY RANGE NOBLE GAS MILES I 2 5 IO CI/SFC (X)DF (X)SBF (~)MREM/HR THYROID IODINE THY CI/SEC (X)DF (X)SBF (~)MREM/HR 6.B ENTER DOSE RATE RESULTS FOR INDICATED SECTOR&ADJACENT SECTOR ON EACH SIDE: WIND FROM 168.5-191'191'-213'213'-236.5 236.5-258'258'-281.5 281 5-303.5 303.5-326'326.5-348.5 8-11'1'-33'33.5-56.5 56'-78'78.5-101'101.5-123'123.5-1 6.5 1 6.5-168'AFFECTED DIR SECTOR ALPHA NNE BRAVO NE CHARLIE ENE DELTA ECHO ESE FOXTROT SE GOLF SSE HOTEL JULIET SSW KILO WSW MIKE NOVEMBER WNW PAPA NW OUEBEC NNW ROMEO mRem hr WHOLE BODY (t MILE 10 mRem hr THYROID 9 MILE 10 7.Compare the WB and THY dose rates with ACTION GUIDE 3A and 3B, respectively, Page 19.8.Inform the Emergency Coordinator of the data and assist in including this data in the PLANT/RADIOLOGICAL CHECKLIST, EPIP 3100021E, Page 8.9.On a form similar to Page 16, track the Dose Accumulation for Appropriate Sectors (half hour updates).10.On a form similar to Page 16, track the Dose Projection for Appropriate Sectors./R8  
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page15of30DOSECALCULATION WORKSHEET (continued) 6.ACompleteDoseCalculation Table.WHOLEBODYRANGENOBLEGASMILESI25IOCI/SFC(X)DF(X)SBF(~)MREM/HRTHYROIDIODINETHYCI/SEC(X)DF(X)SBF(~)MREM/HR6.BENTERDOSERATERESULTSFORINDICATED SECTOR&ADJACENTSECTORONEACHSIDE:WINDFROM168.5-191
'191'-213'213'-236.5236.5-258
'258'-281.52815-303.5303.5-326
'326.5-348.58-11'1'-33'33.5-56.556'-78'78.5-101'101.5-123
'123.5-16.516.5-168'AFFECTEDDIRSECTORALPHANNEBRAVONECHARLIEENEDELTAECHOESEFOXTROTSEGOLFSSEHOTELJULIETSSWKILOWSWMIKENOVEMBERWNWPAPANWOUEBECNNWROMEOmRemhrWHOLEBODY(tMILE10mRemhrTHYROID9MILE107.ComparetheWBandTHYdoserateswithACTIONGUIDE3Aand3B,respectively, Page19.8.InformtheEmergency Coordinator ofthedataandassistinincluding thisdatainthePLANT/RADIOLOGICAL CHECKLIST, EPIP3100021E, Page8.9.OnaformsimilartoPage16,tracktheDoseAccumulation forAppropriate Sectors(halfhourupdates).
10.OnaformsimilartoPage16,tracktheDoseProjection forAppropriate Sectors./R8  


ST.LUCIE.PLANTE-PL'ANIMPLEMENT NGPROCEDURE
ST.LUCIE.PLANT E-PL'AN IMPLEMENT NG PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 16 of 30 DOSF.CALCULATION WORKSHEET (continued)
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page16of30DOSF.CALCULATION WORKSHEET (continued)
This is (check appropriate box)f J A Dose Accumulation Worksheet, Time of Applicability
Thisis(checkappropriate box)fJADoseAccumulation Worksheet, TimeofApplicability
[]A Dose Pro)ection Worksheet, Applicable to DOWNWIND DIRECTION N ALPHA)NNE BRAVO NE CHARLIE ENE DELTA E ECHO I ESE FOXTROT I SSE GOLF SE HOTEL I S JULIET SSW KILO I SW LIMA WSW MIKE j W NOVEMBER)WNW PAPA I NW OUEBEC)NNW ROMEO WHOLE BODY mRem 8 MILES 1 2 5 10 THYROID mRem 8 MILES 10 ST.LUCIE PLANT-,.-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 17 of 30 DOSE FACTOR TABLES mRem/hr per Ci/Sec MILES 1 I 2))5)l 1O)>0 to 2 WB THY 1.25 2990.668 1600.360 863.360 863 STABILITY CLASS A WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY.416 998).208 499.223 534).111 267 I 120 288 I 0599 144).120 288).0599 144>9 to 18 WB THY.104 250 I.0556 134 I~0300 71.9 I.03OO>18 to WB.052.0278.015.015 36 125 I 66.8)36 STABILITY CLASS B/WIND SPEED GROUPS, MPH MILES i 1)l l S I 1O>Oto 2 WB THY 8.9 21400 2.26 5410.388 932.360 ,863>2 WB)2.97).7S2 l 129 I.120 to 4 THY 7120 1800 311 288 I 1~48).376).O6S I~059 to 9 3560 I 902)155 I 144>9 to 18 WB THY.742 1780.188 451.032 77.6.030 71.4>18 to 36 WB THY.371'90~A94 226).O16 38.8,)).015 36.0 RANGE>0 to 2 MILE$WB THY I 1 I 22.5 54100 I 2 I 6.54 15700)5)1.25 3000 I 10).468 1120)STABILITY CLASS C WIND SPEED GROUPS, MPH>2 to to WB THY WB THY 7.51 18000)3.75 9010 2.18 5240)1.09 2620 I.417 1000).208 500.156 374 I.078 187 I>9 to 18 WB THY 1.88'510.545 1310.104 250~039 93.6>18 to 36.939 2250 I 273 654~052 125)~020 46'I STABILITY CLASS DMILES l 1)l 2))5)1O>0 to 2 TFY 46.2 1.1E+5)18'4'K+4)5'1.3E+4)2.1 5030 I WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY 15.4 3.7E+4)9.'14 2.2E+4)6.31 1.5E+4)3.51 8410 I 1~83 4400 I 964 2310 l~70 1680 I~36 863)>9 to 18 WB THY 5'0 1'E+4)1.96 4710.511 1230~186 446)>18 to 36 2.70 6480 I.982 2360.255 613~093 223 I ST.LUCIE PLANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 18 of 30 DOSE FACTOR TALBES mRem/hr per Ci/sec (continued)
[]ADosePro)ection Worksheet, Applicable toDOWNWINDDIRECTION NALPHA)NNEBRAVONECHARLIEENEDELTAEECHOIESEFOXTROTISSEGOLFSEHOTELISJULIETSSWKILOISWLIMAWSWMIKEjWNOVEMBER)WNWPAPAINWOUEBEC)NNWROMEOWHOLEBODYmRem8MILES12510THYROIDmRem8MILES10 ST.LUCIEPLANT-,.-E-PLANIMPLEMENTING PROCEDURE
MILES I 1 I I 2 I I 10>0 to 2 WB THY 70.6 1.7E+5I 33'7'E+4I 11.6 2~8E+4 I 5.07 1.2E+4I STABILITY CLASS E WIND SPEED GROUPS, MPH>2 to 4>4 to 9 WB THY WB THY 23.5 5'E+4I 15.9 3'E+4I llew 0 2.7E+4l 6'3 1 6E+4l 3.87 9280 I 2~15 5150 I 4050 I.897 2150>9 to 18 WB , THY 10'''E+4l 4.05 9710 I 1.18'840 I.475 1140 I>18 to 36 WB THY 5.1 1.2E+4I 2.02 4860~592 1420 I.237 570'ANGE>0 to 2>2 MILES WB THY WB I 1 I 125 3E+5 I 42 I 2 I 64 1~5E+Sl I 5 I 25'6E+4 I 8'10 I 12.1 2.9E+4I 4.0 STABILITY CLASS F WIND SPEED GROUPS, MPH to to 9 THY.WB THY lE+5 I 31 7~4E+4 I 5.1E+4I 14.''E+4I 2E+4 I 5'1~2E+4I 9670 I 2.2 5300>9 to 18 WB THY 19 4.5E+4I 8.53 2E+4 2.9'660 1.2 2840 I>18 to 36 WB~THY 9.5 2.3E+4 4.3 1E+4 3330.60 1420 STABILITY CLASS G RANGE MILES I 1 I I 2 I I 5 I 10>Oto 2 WB THY 196 4.7E+5I 111 2.7E+5I 52 1.3E+5I 27.5 6.6E+4I WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY 65.3 l.6E+5 I 57 1.4E+5 I 37 8.9E+4I 28 6.7E+4l 17 4~1E+4 I 11 2~7E+4 I+I 5'1.3E+4>9 to 18>18 WB THY WB 31''E+4I 15.4 17 4'E+4l 8'6'1.5E+4l 3'2'6980 I 1 5 to 36 3.7E+4I 2.0E+4I 7540 3490
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page17of30DOSEFACTORTABLESmRem/hrperCi/SecMILES1I2))5)l1O)>0to2WBTHY1.252990.6681600.360863.360863STABILITY CLASSAWINDSPEEDGROUPS,MPH>2toto9WBTHYWBTHY.416998).208499.223534).111267I120288I0599144).120288).0599144>9to18WBTHY.104250I.0556134I~030071.9I.03OO>18toWB.052.0278.015.01536125I66.8)36STABILITY CLASSB/WINDSPEEDGROUPS,MPHMILESi1)llSI1O>Oto2WBTHY8.9214002.265410.388932.360,863>2WB)2.97).7S2l129I.120to4THY71201800311288I1~48).376).O6SI~059to93560I902)155I144>9to18WBTHY.7421780.188451.03277.6.03071.4>18to36WBTHY.371'90~A94226).O1638.8,)).01536.0RANGE>0to2MILE$WBTHYI1I22.554100I2I6.5415700)5)1.253000I10).4681120)STABILITY CLASSCWINDSPEEDGROUPS,MPH>2totoWBTHYWBTHY7.5118000)3.7590102.185240)1.092620I.4171000).208500.156374I.078187I>9to18WBTHY1.88'510.5451310.104250~03993.6>18to36.9392250I273654~052125)~02046'ISTABILITY CLASSDMILESl1)l2))5)1O>0to2TFY46.21.1E+5)18'4'K+4)5'1.3E+4)2.15030IWINDSPEEDGROUPS,MPH>2toto9WBTHYWBTHY15.43.7E+4)9.'142.2E+4)6.311.5E+4)3.518410I1~834400I9642310l~701680I~36863)>9to18WBTHY5'01'E+4)1.964710.5111230~186446)>18to362.706480I.9822360.255613~093223I ST.LUCIEPLANT.E-PLANIMPLEMENTING PROCEDURE
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page18of30DOSEFACTORTALBESmRem/hrperCi/sec(continued)
MILESI1II2II10>0to2WBTHY70.61.7E+5I33'7'E+4I11.62~8E+4I5.071.2E+4ISTABILITY CLASSEWINDSPEEDGROUPS,MPH>2to4>4to9WBTHYWBTHY23.55'E+4I15.93'E+4Illew02.7E+4l6'316E+4l3.879280I2~155150I4050I.8972150>9to18WB,THY10'''E+4l4.059710I1.18'840I.4751140I>18to36WBTHY5.11.2E+4I2.024860~5921420I.237570'ANGE>0to2>2MILESWBTHYWBI1I1253E+5I42I2I641~5E+SlI5I25'6E+4I8'10I12.12.9E+4I4.0STABILITY CLASSFWINDSPEEDGROUPS,MPHtoto9THY.WBTHYlE+5I317~4E+4I5.1E+4I14.''E+4I2E+4I5'1~2E+4I9670I2.25300>9to18WBTHY194.5E+4I8.532E+42.9'6601.22840I>18to36WB~THY9.52.3E+44.31E+43330.601420STABILITY CLASSGRANGEMILESI1II2II5I10>Oto2WBTHY1964.7E+5I1112.7E+5I521.3E+5I27.56.6E+4IWINDSPEEDGROUPS,MPH>2toto9WBTHYWBTHY65.3l.6E+5I571.4E+5I378.9E+4I286.7E+4l174~1E+4I112~7E+4I+I5'1.3E+4>9to18>18WBTHYWB31''E+4I15.4174'E+4l8'6'1.5E+4l3'2'6980I15to363.7E+4I2.0E+4I75403490


ST~LUCIEPLANTE-PLANIMPLEMENTING PROCEDURE
ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 19 of 30 TABLE 3 ACTION GUIDELINES In-Plant Systems A.Containment High Range Radiation (CHRRM)INSTANTANEOUS READING<7.3 E+03 R hr>7.3 E+03 R hr>1.47 E+05 R hr EVENT CLASSIFICATION No Emergency Classification Site Area Emergency General Emergency B.Post LOCA Monitors (Backup to CHRRM)-Verified by Survey INSTANTANEOUS READING<1000 mR hr>1000 mR hr EVENT CLASSIFICATION No Emergency Classification General Emergency 2.Release Rates: A.Noble Gas Releases INSTANTANEOUS READING<0.083 Ci sec>0.083 Ci sec to<0.83 Ci sec EVENT CLASSIFICATION No Action-Within Tech.Spec.Limits Unusual Event>0.83 Ci sec Alert 3.Dose Calculations A.Whole Body Dose Rate at 1 Mile: INSTANTANEOUS VALUE Not applicable
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page19of30TABLE3ACTIONGUIDELINES In-PlantSystemsA.Containment HighRangeRadiation (CHRRM)INSTANTANEOUS READING<7.3E+03Rhr>7.3E+03Rhr>1.47E+05RhrEVENTCLASSIFICATION NoEmergency Classification SiteAreaEmergency GeneralEmergency B.PostLOCAMonitors(BackuptoCHRRM)-VerifiedbySurveyINSTANTANEOUS READING<1000mRhr>1000mRhrEVENTCLASSIFICATION NoEmergency Classification GeneralEmergency 2.ReleaseRates:A.NobleGasReleasesINSTANTANEOUS READING<0.083Cisec>0.083Cisecto<0.83CisecEVENTCLASSIFICATION NoAction-WithinTech.Spec.LimitsUnusualEvent>0.83CisecAlert3.DoseCalculations A.WholeBodyDoseRateat1Mile:INSTANTANEOUS VALUENotapplicable
>1000 mRem hr 2 MINUTE DURATION>500 mRem hr Not applicable HALF HOUR DURATION>50 mRem hr Not applicable EVENT CLASSIFICATION Site Area Emergency General Emergency B.Thyroid Dose Rate at 1 Mile: MINUTE DURATION HALF HOUR DURATION EVENT CLASSIFICATION Not applicable
>1000mRemhr2MINUTEDURATION>500mRemhrNotapplicable HALFHOURDURATION>50mRemhrNotapplicable EVENTCLASSIFICATION SiteAreaEmergency GeneralEmergency B.ThyroidDoseRateat1Mile:MINUTEDURATIONHALFHOURDURATIONEVENTCLASSIFICATION Notapplicable
>2500 mRem/hr>250 mRem/hr Site Area Emergency C.Integrated Thyroid Dose at 1 Mile: l ACCUMULATED DOSE EVENT CLASSIFICATION
>2500mRem/hr>250mRem/hrSiteAreaEmergency C.Integrated ThyroidDoseat1Mile:lACCUMULATED DOSEEVENTCLASSIFICATION
>5000 MREM GENERAL EMERGENCY 0
>5000MREMGENERALEMERGENCY 0
STf LUCIE PLANT..A'.E-PLAN IMPLEHENTING PROCEDURE 3100033Et REVISION 8 OFF-SITE DOSE CALCULATIONS Page 20 of 30 APPENDIX A DOSE FACTORS FOR STABILITY CLASS A'4 w oouY uvoc FCfa 3TttBILI7t'LA>v tt-(ai~cc)/rfa) t cd:.tt tt 1.v Ci/3EC E)ita3GaL~t tatttc~~4 I<<\1lnu (%ri)f I~A Ce A Oo't~Oo 74 f)I'Itl QM-RILE" IVe ll~I,~A I~C%'h)V 04OOC Vl 4ofQC Vl A A A~Oo DVCVI A At A~Oo OVCV I A~AP A~Oo OVCV I A jot~deoVC 01 A AP A~Oe OVC Vl AP~~G I OVC<<J I A~At A~JIOVC Vl A~AP teel)VC A~~P A~a Deva 2.rX+1 1.&<I 1~2VC 61 I et A I~CVC Vl~PAP'\I AIIP Ae I~'CV I I~IJCV I~AA A~I~~VC Va~A'lt A~Io<<'C Va~AAP A~I~'L'C Vl le<<<<J<<J.'\KC Vl~~~P A~I~I I CV I ttt+A I~JCC 54 TJC V2 54 f tC VJ.5~-cv".54 JJC VC 54 1tC VC 54 7PCVI.AA Je tCVL Atr Ii uo ttc>>4 7 10 1.v4Ev1 5.5/JEv2 3.ooEv2 I A PAP i<<A AAI At\Oo WCVC Oe WCVC 34 WCV2 A+At A AAP AA A AAP AA A AAP A A AAP AA A AA AA OoVVCV'eWCVC OoWCVC OoWCVC IIIWC V.Io-36 A P A A<<A AA~AAt AA Joliet OC Co/OCVJ'.I~I iK Vl.f jlt lA I~ijVCVC 1~54vc C42~fAI AA I 4 ijvc>>3c~PAP AA I fit I~IJ4JC Va'.I~ejVC VC f jlP lA CAP IA I~iVC J'J444CVL w'Ittu (t n)7''noiu uv3E FaJR STttSILI7t'M tt-t'ai/ntt)t co 3EL jot tt a.v~I/3EC cNI33IBt FJITc A<<~~tl At<<<<ert~~LIVttttttlllu LoakttfOLC nlLCG I~l I~'t~5.Oe I~~*IVI C~i V A Att O'\Ct JoVVO I~OVEfV G~~~P~AA Il tr AA A~At AA A Ar AA l At AA I~I actVO OIO<<K VC OIO<<KML OIDGC VC OoojacV'lt A jtt 44 DIG<<K+V@G~OGC"'tr.AA t at AA s ox>>J o DK<<v'Dace'~J.Jocf02 54QcW<<347CE<2 2eooc~J2<<o Doc+)2 2toocvL 24oocv2 A PAP AA A AAP Ajl L I&#xc3;CNC e'.~OOC 1 A AAP AA L I 4GGCfVe'.A AA AA'DOC&<<'AAP'I~OOC>J~A~tetr Atl tl<<P~AA~Aft AA~~~I AA~~~AA~~~et~~~P AA~~P AA~~~P AA I~~P A f,t.c<<VL LIOICfVL I~OJCfVL I~fwc<<VC',etc<<JL a,w<<C<<J I~<<C'J I~~cfeJ'of<<C V-I~<<Cf'JC~act AA~~et I~'t<<CW'~A A IO A feP AA<<I IJVC<<VC Aet jlA A A A~<<~AP,A~~~t.A~IIM<<VL 1~<<Oc>JI I~I JCfVI I~ITC Vl~Aj A~<<~At~A~<<~Ar A~~tt I'~~P A~IAP A~A I I~I JC<<VI I~ltcfjJI 4~I CeVI''ZC Vl I~I'Ce"Ja"~I.C<<'Jl I~a~C>>'IO 4'I~C JC+eJX t~t~A A~A 4P I A A~A 44 4<<~A A A~A t~'I t A I~.A Ae A~A Oe DOC<<V1't~OtKfVI)I OIJC>>JI Go OIJC<<VI jae OL'0 Vl Ge OVC<<VI I~GVC<<VI IOVC Va I~O'J Va I~GVC J I G~Gajc<<J  
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.E-PLANIMPLEMENTING PROCEDURE
.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 21 of 30 APPENDIX A DOSE FACI,'ORS FOR STABILITY CLASS B iaaiau P OAOO~)IVovLc evul a)vec ILA OliaoILII I QJ1303 8-ii)IaEait IV%)s eiiecu o.n n l~v vll ci.caiaeeaaa hnlc RQ4)I)au DISTriivc-ilILES l~tl Ce eo'I~5.I~Oo r~lVI~~lao aCI A to V C A AGE+A 2o 2ecW 1.GIEM 5.oeEv"a 3oeec Gl 3o evAEGI A AP A~A~AP A~deeVC Vl doOVC Vl A AI il A A\~el OVCVl el OVCV l'I A Al A~eteVC'il eteVC'il 2-4 APP+A A'Il C 7.52Ecv1 3.35EpGa l~orc vl I Ioc~E-GI~AAI A~~tsAP A~~AAP A~l~CVC Vl l~save Vl l~LVC Vl~AAP A~l~Avc il~tlAP'I~l~P'Vcoil AAI A~l~P'VCV I~AA A~l~AVVC 4 l.4eciGG 3.7oE+I l.6ec<I"r.44E~I2 Oo4IC V2 5o I rCVI.5o I>CVC 5o rrcvc 5o orc vc 5.rrc i2 5.:rc i2 5e rrcvI.9-Io 7.4u&#x17d;P01 1~Oec Vi A A~APGA~PAP A li'il ICC VC li ls~I AA Oo C'ICVL 3.GGEv2 A AAP AP A AAP AA et WCVIa et VVCVC el WC'PAP*A 0~WC'AA AA et WC VC Ae~9.4C&)2 4.1$Ev2 P Alt AIS I.o iRCVI I.o2Ep02 1.5GEp02 JAP AA 1~AAICVC l oPC~V'~5VC v2 l~5VC li2~0 AP Ale l e SVCVC w'Ihu FEED iiii.al)ittvID uvec Evaa STASILIa I'M 8-i%%uiPR)i eiaecu i.n A a.v vaieci.Cnaeeavii RriTCE II uvimQI)iD DISTrhm-BILES l~Co li ee 5.ee I~lV ll~~A l'0 2 2 14Ei04 5 41&03 2 41Ei03 1 30ci00 r~Olci02 0 Oee+0'OAKpV2 0 OAKPi02 0 OoK I 0 OiK VC 0 Odcovc 0 00Ci02 2-4 7.I cciGS'l.oviiG3 8.0%F2 4.50ci02 3.I IEi02 2.oeci02-"" ooci02 2.00Ei02 2.OOEi02 A AA\P AA Al\CoNC VC CoNC VC A Att AP aeeecV'~3o iVcs03 I I PcciG2 4.v2Ei02 2.270 i02 I.K<i2 I o 44"v2 I~44Ei02 a.44ci02 I.4 ci02 l~44ci02 a~44Ei02 a.44ci02 18 l~70&#x17d;c&3 4~51Ei02 2 GIEi02 1~1%iG2 s.70Ess01 I~lrci0l I~irciGi Te a ci01=~I iGIi l~llE~IGi A O~A i~AGAEiGAA se~P A~A~~,AA~P\~P AtsP A~A AI A so Al A~A A al~A AP A A AI A~I A~A IA A~I o LOCiGL l~Vlcsoesf 5e 6CC'sua etsAOCWa ee Ov Va ee OVCVa 0~esiC+ia re OVCVa coo'.IC'ova
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ST+LUCIE'PLANT
ST+LUCIE'PLANT
~'-PLANIMPLEMENTING PROCEDURE
~'-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OPP-SITE DOSE CALCULATIONS Page 26 of 30 APPENDIX A DOSE PACTORS FOR STABILITY CLASS G IIIIIII yEEB I FIIJ~t<<A<<<<Alt Ah>><<0 Af shel ttht<<lAh A~trhrht t th~tt~Ahtt htl~~h A~thhh Aht~Atrr As>>linus 000i kec rvn oitt8icaii virtoo u-Irincriinnil ottocu 0n tt a.v va/>>i cna)oat.tl cnic 6$i%UIID DISTAt4X-BILE l~A js A ot 5.Os I~r Ce~A aVs al~~A lI~0-2 1.96Ea02 I.IIE~02 7.roc<I 6.26E<I 5.16E<I 4.~~601 A A<<A~sat OLCVl Ss Aohc'%1 A AAA he Oe IMC~Il h fl~js htac'tva A At~Cehhac&'a A~j't o~53E<I 3.7vE<i 2.66Ev" I 2.Dc+01 1.72E>01 1.46E+01~A>>l~hldira~~AA h~~her't l~ltac'tva I~vlc>va A t~Ah r a Kwv A A A Os OOCVV~<<'lh I~or 5.6%61 2.8IEHI 1.8icvi i.ore<I 1.aibOI r.Ioc+00 I~I rcvv 0.7I C+II0~Att hh~~~~0 C W''tehact'.Ar 9-18 3 linc+01 l~66E<I l l 0rc+01 8 IIScEi00 0 2%60 5.14&v 4.tah>>V0 S.73>>EVO S.2I CV0 2.r'I c Vit 2.62EVV 2.3 I cn&#xc3;~A At lo sao 1~54'<<cW 5.4I cQ 4e 0IE4 3e 14EV0 2e 5I Nl 2e I Ic+~r0 I~8:dw I~64E'iY'~4~K>w I~SIC+A 1~l rc>A<tt I ltITil St'cED (nt nl Tnlnvlo uvoc Fvn STI'IIIILII (CiM 0" II~K/nn)I 8tthcu vn tt i.v I I/>>t".CnISSIiII Ivttc'aaretntitIO uISTnn7E-tiliES l~I.~'t~5.Oe I~r Oe\A av~~~il~ah~0-2 4.70E+05 2.o7E+05 i.r 1&05 i.5IKm5 i.24Ew5 l.v&#xc3;w5 9e 1I cd 8.i21~>4 7..I cav4 n.5rcv4 o.v2Em4 2-4 I e5ic<5 8.OrEW o.one*'.0IEhVe 4.aSEv4 3e 51&Pt St06Ev4 2~7lchII4 2.42Ev"" 0E~v4'.vlEv4 i.0 Kv4 4-9 1.Xc<5 o.74Et>4.4%+v4 3.34E&2.66Ev4 2.2vEm i.otciI4 a.63c~r4 i.~<<I4 a..ww4 i.ieEw4 h A~9-18 I~earckl4 3s roc~ce 6&rt I e rstcM I~5ic+l4 I~~hocv4 le V4cv4 oe 9nc&3~shNKvd 0~rocvo~rA hA c h AA 0~OCVO ht~I VC Ic lo 30 3.ore<4 I.rrE~04 1.3IE~r4 r.o>>+v3 7.54BPs o.iicmS 5l2vEwS 4.4ncv3>sr:c~a oe~SE~vo A A rA hr h~a'tcVhh at O KVh
: 3100033E, REVISION8OPP-SITEDOSECALCULATIONS Page26of30APPENDIXADOSEPACTORSFORSTABILITY CLASSGIIIIIIIyEEBIFIIJ~t<<A<<<<AltAh>><<0Afshelttht<<lAhA~trhrhttth~tt~Ahtthtl~~hA~thhhAht~AtrrAs>>linus000ikecrvnoitt8icaii virtoou-Irincriinnil ottocu0ntta.vva/>>icna)oat.tl cnic6$i%UIIDDISTAt4X-BILEl~AjsAot5.OsI~rCe~AaVsal~~AlI~0-21.96Ea02I.IIE~027.roc<I6.26E<I5.16E<I4.~~601AA<<A~satOLCVlSsAohc'%1AAAAheOeIMC~Ilhfl~jshtac'tvaAAt~Cehhac&'a A~j'to~53E<I3.7vE<i2.66Ev"I2.Dc+011.72E>011.46E+01~A>>l~hldira~~AAh~~her'tl~ltac'tvaI~vlc>vaAt~AhraKwvAAAOsOOCVV~<<'lhI~or5.6%612.8IEHI1.8icvii.ore<I1.aibOIr.Ioc+00I~Ircvv0.7IC+II0~Atthh~~~~0CW''tehact'.Ar 9-183linc+01l~66E<Ill0rc+018IIScEi0002%605.14&v4.tah>>V0S.73>>EVOS.2ICV02.r'IcVit2.62EVV2.3Icn&#xc3;~AAtlosao1~54'<<cW5.4IcQ4e0IE43e14EV02e5INl2eIIc+~r0I~8:dwI~64E'iY'~4~K>wI~SIC+A1~lrc>A<ttIltITilSt'cED(ntnlTnlnvlouvocFvnSTI'IIIILII (CiM0"II~K/nn)I8tthcuvntti.vII/>>t".CnISSIiII Ivttc'aaretntitIO uISTnn7E-tiliESl~I.~'t~5.OeI~rOe\Aav~~~il~ah~0-24.70E+052.o7E+05i.r1&05i.5IKm5i.24Ew5l.v&#xc3;w59e1Icd8.i21~>47..Icav4n.5rcv4o.v2Em42-4Ie5ic<58.OrEWo.one*'.0IEhVe 4.aSEv43e51&PtSt06Ev42~7lchII42.42Ev""0E~v4'.vlEv4i.0Kv44-91.Xc<5o.74Et>4.4%+v43.34E&2.66Ev42.2vEmi.otciI4a.63c~r4i.~<<I4a..ww4i.ieEw4hA~9-18I~earckl43sroc~ce6&rtIerstcMI~5ic+l4I~~hocv4leV4cv4oe9nc&3~shNKvd0~rocvo~rAhAchAA0~OCVOht~IVCIclo303.ore<4I.rrE~041.3IE~r4r.o>>+v37.54BPso.iicmS5l2vEwS4.4ncv3>sr:c~aoe~SE~voAArAhrh~a'tcVhhatOKVh


ST.LUCIEPLANT'-'LANIMPLEMENTING FROCEDURE
ST.LUCIE PLANT'-'LAN IMPLEMENTING FROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 27 of 30 THIS PAGE INTENTIONALLY LEFT BLANK 4
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page27of30THISPAGEINTENTIONALLY LEFTBLANK 4
ST~LUCIE PLANT'-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 28 of 30 APPENDIX B BACKUP METEOROLOGY WORKSHEET In the event data is unavailable from the meteorological"strip chart recorder, use the following procedure:
ST~LUCIEPLANT'-PLAN IMPLEMENTING PROCEDURE
A.Gather Data 1.Date: Time e 2.Phone the West Palm Beach Airport NOAA Center at 64-305'-684-3633 or (alternate)
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page28of30APPENDIXBBACKUPMETEOROLOGY WORKSHEET Intheeventdataisunavailable fromthemeteorological "stripchartrecorder, usethefollowing procedure:
Vero Flight Service Station (Stuart f)287-8021.3.Copy current weather:/R8 Time of observation:
A.GatherData1.Date:Timee2.PhonetheWestPalmBeachAirportNOAACenterat64-305'-684-3633 or(alternate)
Wind Direction.'ind Speed: Sky Condition:
VeroFlightServiceStation(Stuartf)287-8021.
Clear or Scattered Broken Eastern (Standard)(Daylight)
3.Copycurrentweather:/R8Timeofobservation:
Degrees Knots Overcast**If broken or overcast, copy ceiling height: ft.4.If daytime (1 hour after sunrise to 1 hour before sunset)go to Section C (next page)~B.Nightime Calculations 1.Determine Solar Radiation Characteristics:
WindDirection.'ind Speed:SkyCondition:
Sk Condition~Cei 1 in Radiation I OVERCAST I)I<7 000 I-~es-)I NIL I BROKEN I GLAR OR SCATTERED)2.Choose Stability Category (D through G)WEAK LOSS I STRONG LOSS I Solar Radiation Nil Weak Loss Strong Loss 01 2,3 D D F F G Wind Speed (knots)4 5 6 7 8,9 10 11)11 D D D D D D D E~E D D D'D F F E E E D D 3.Go to Section D.  
ClearorScattered BrokenEastern(Standard)
(Daylight)
DegreesKnotsOvercast**Ifbrokenorovercast, copyceilingheight:ft.4.Ifdaytime(1houraftersunriseto1hourbeforesunset)gotoSectionC(nextpage)~B.NightimeCalculations 1.Determine SolarRadiation Characteristics:
SkCondition
~Cei1inRadiation IOVERCASTI)I<7000I-~es-)INILIBROKENIGLARORSCATTERED
)2.ChooseStability Category(DthroughG)WEAKLOSSISTRONGLOSSISolarRadiation NilWeakLossStrongLoss012,3DDFFGWindSpeed(knots)45678,91011)11DDDDDDDE~EDDD'DFFEEEDD3.GotoSectionD.  


IPST~LUCIEPLANTE-PLANIMPLEMENTING PROCEDURE
I P ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 29 of 30 APPENDIX B BACKUP METEOROLOGY WORKSHEET C.Daytime Calculations:
: 3100033E, REVISION8OFF-SITEDOSECALCULATIONS Page29of30APPENDIXBBACKUPMETEOROLOGY WORKSHEET C.DaytimeCalculations:
1.Determine solar altitude (angle of sun above horizon)using Graph C-l.2.Determine Solar Radiation Characteristics: (Nil, Weak, Slight, Moderate or Strong).SOLAR ALTITUDE Sky Condi tion Ceiling Ft.I<15 15-<35 35-60>60<7000 7K to 16K>16000<7000"Broken" 7K to 16K>16000 I I"Clear or Scattered" N/A NIL Weak Weak Weak Weak Weak Weak Weak Weak Weak Slight Slight NIL Weak Slight Weak Slight Moderate Moderate NIL Slight Moderate Slight Moderate Strong Strong 3.Choose Stability Category (A through D)Solar Radiation Wind Speed (knots)0,1 2,3 4 5 6 7 8,9 10 ll>11 Strong Moderate SliRht Weak Nil A A A A B B B B C C C D D D D B.B B C B B C C C C C D D D D D D D D D.C C C D D D D D D D D.Input to Dose Calculation System Take information to the DOSE CALCULATION WORKSHEET, Page 14.1.Wind Direction (from Step A.3)2.Wind Speed degrees 1.15 x 3.Atmospheric Stability (knots)mph (From Step B.2 or C.3)(Circle One): A B C D E F G
1.Determine solaraltitude(angleofsunabovehorizon)usingGraphC-l.2.Determine SolarRadiation Characteristics:
(Nil,Weak,Slight,ModerateorStrong).SOLARALTITUDESkyConditionCeilingFt.I<1515-<3535-60>60<70007Kto16K>16000<7000"Broken"7Kto16K>16000II"ClearorScattered" N/ANILWeakWeakWeakWeakWeakWeakWeakWeakWeakSlightSlightNILWeakSlightWeakSlightModerateModerateNILSlightModerateSlightModerateStrongStrong3.ChooseStability Category(AthroughD)SolarRadiation WindSpeed(knots)0,12,345678,910ll>11StrongModerateSliRhtWeakNilAAAABBBBCCCDDDDB.BBCBBCCCCCDDDDDDDDD.CCCDDDDDDDD.InputtoDoseCalculation SystemTakeinformation totheDOSECALCULATION WORKSHEET, Page14.1.WindDirection (fromStepA.3)2.WindSpeeddegrees1.15x3.Atmospheric Stability (knots)mph(FromStepB.2orC.3)(CircleOne):ABCDEFG


RIDAAVADNSrEDFORValaitrIIIOrIMEwolANTIWVICIISOLARALTITUDEBYTIMEOFDAYST.LUCIEPLANTTJNCALT~ISltltI40C0rCORREClED EOIILOIIQITIJOE OCIOOSOIRISIWl0COCCITOO0<1616'-36'~10I1112I2i',II'I,sP'i.II!36'0'4010i2Ttg(hMawooprnn+oWWManQIiII35'-40'PflMCOMOCOIOI!~,"IsAMWni52I25OlnIAkT05tOtSIIAncIIIIIIOIZITI20thS5202k..Illf05202AIIC0IS2025AAT6416'3~~0I2025NJQUSI50202SIJII40III IOI$102$51015202$IO2025ocIoLo0Hovl4ul0IoclQol0Om',OIIheuC~ltUgl.ILEhbT1HEI
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Page1of13FLORIDAPOWER&LIGHTCOMPANYST.LUCIEPLANTEMERGENCY PLANDiPLEMENTING PROCEDURE 83100026E, REV.91.0TITLE:CRITERIAFORANDCONDUCTOFEVACUATIONS
Page 1 of 13 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN DiPLEMENTING PROCEDURE 83100026E, REV.9 1.0 TITLE: CRITERIA FOR AND CONDUCT OF EVACUATIONS 2.0 APPROVAL: Reviewed by Facility Review Group Jul 25, 1975 Approved by K.N.Harris Revision 5 Approved by iewe by Fac ity Review Group March 20&25 19~8 V.P.Pwr.Res.l~Revision 6 R'e ed b Faci Review Group a 2.8 19 8 l Approved by V.P.Pwr.Res.z 19&~Revision 7 Rev~d by Facil Review Group 1 Approved by Revision 9 Revie'y Faciiit Review Group.Approved by.P., Nucl.Energy Z 1982.1982.5~Pl-8 1982.3.0 SCOPE: 3.1~Per ese This procedure provides criteria for determining if evacuation of a local area on-site or the Owner Controlled Area should be carried out.It provides instructions for effecting an ordered, rapid and safe evacuation of a local area or the Owner Controlled Area in order to prevent or minimize radiation exposure to personnel.
It also provides instructions for personnel account-ability.3.2 Discussion 3.2.1 Accurate classification of emergencies that may occur at the Plant is necessary to enable the Nuclear Plant Supervisor to take the proper corrective action and to know when to initiate the Emergency Plans.For those emergencies involving high radiation and/or the release of radioactive material to the environment, it is necessary to provide the Nuclear Plant Supervisor (Emergency Coordinator) with guidelines that will enable him to know when to order a local area evacuation or"evacuation of the Owner Controlled Area.
Page 2 of 13 FLORIDA POWER&LIGHT COMPANY'MERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 3.0 SCOPE: Continued 3.2 Discussion Continued 3.2.2'A local area evacuation or evacuation of the Owner Controlled Area may be necessitated by the occurrence of any of several events where evacuation of personnel would be necessary to minimize their exposure to radiation.
An Owner Controlled Area evacuation will be conducted for any Site Area Emergency or General Emergency.
/R9 This procedure implements the St.Lucie Plant Radiological Emergency Plan.3.4 Definitions:
/R9 The location to which evacuation personnel report.In a local evacuation, personnel evacuate and assemble in a location designated by the Emergency Coordinator.
In an evacuation of the Owner Controlled Area, evacuating FPL personnel from the Protected Area go to the Site Assembly Station on Highway A1A near the north entrance to plant property, while non-FPL personnel and FPL personnel from outside the Protected Area assemble at Jaycee Public Park on Highway AlA, 7<miles north of the plant.If necessary, other assembly areas can be specified by the Emergency Coordinator.
/R9 3.4.2 Escort An individual specifically assigned to accompany other persons who are required by the Security Plan or Health Physics Manual to be escorted.3.4.3 Local Area Evacuation An evacuation of some portion of, but not all of, the Owner Controlled Area.It may include evacuation of a room, building, group of buildings, generating station area, or other portion of the Owner Controlled Area.I Page S ol FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN DPLE>KNTING PROCEDURE//3100026E, REV.9 3.0 SCOPE: Continued)


==2.0 APPROVAL==
===3.4 Definitions===
ReviewedbyFacilityReviewGroupJul25,1975ApprovedbyK.N.HarrisRevision5ApprovedbyiewebyFacityReviewGroupMarch20&2519~8V.P.Pwr.Res.l~Revision6R'eedbFaciReviewGroupa2.8198lApprovedbyV.P.Pwr.Res.z19&~Revision7Rev~dbyFacilReviewGroup1ApprovedbyRevision9Revie'yFaciiitReviewGroup.Approvedby.P.,Nucl.EnergyZ1982.1982.5~Pl-81982.3.0SCOPE:3.1~PereseThisprocedure providescriteriafordetermining ifevacuation ofalocalareaon-siteortheOwnerControlled Areashouldbecarriedout.Itprovidesinstructions foreffecting anordered,rapidandsafeevacuation ofalocalareaortheOwnerControlled Areainordertopreventorminimizeradiation exposuretopersonnel.
Continued) 3.4.4 Owner Controlled Area That portion of FPL property surrounding and including the plant which is subject to limited access and control as deemed appropriate by FPL (indicated by the line on the attached Florida Power&Light property plan, Figure 1 of this procedure).
Italsoprovidesinstructions forpersonnel account-ability.3.2Discussion 3.2.1Accurateclassification ofemergencies thatmayoccuratthePlantisnecessary toenabletheNuclearPlantSupervisor totakethepropercorrective actionandtoknowwhentoinitiatetheEmergency Plans.Forthoseemergencies involving highradiation and/orthereleaseofradioactive materialtotheenvironment, itisnecessary toprovidetheNuclearPlantSupervisor (Emergency Coordinator) withguidelines thatwillenablehimtoknowwhentoorderalocalareaevacuation or"evacuation oftheOwnerControlled Area.
3.4.5 Owner Controlled Area Evacuation The evacuation from the Owner Controlled Area of all personnel except those required to place the plant in a safe condition, the emergency teams, and the guards necessary to fulfill their evacuation responsibilities.
Page2of13FLORIDAPOWER&LIGHTCOMPANY'MERGENCY PLANIMPLEMENTING PROCEDURE
3.4.6 Radiation Control Point Located in the Auxiliary Building, it is likely to be used as an assembly area during a local evacuation.
//3100026E, REV.93.0SCOPE:Continued 3.2Discussion Continued 3.2.2'Alocalareaevacuation orevacuation oftheOwnerControlled Areamaybenecessitated bytheoccurrence ofanyofseveraleventswhereevacuation ofpersonnel wouldbenecessary tominimizetheirexposuretoradiation.
AnOwnerControlled Areaevacuation willbeconducted foranySiteAreaEmergency orGeneralEmergency.
/R9Thisprocedure implements theSt.LuciePlantRadiological Emergency Plan.3.4Definitions:
/R9Thelocationtowhichevacuation personnel report.Inalocalevacuation, personnel evacuateandassembleinalocationdesignated bytheEmergency Coordinator.
Inanevacuation oftheOwnerControlled Area,evacuating FPLpersonnel fromtheProtected AreagototheSiteAssemblyStationonHighwayA1Anearthenorthentrancetoplantproperty, whilenon-FPLpersonnel andFPLpersonnel fromoutsidetheProtected AreaassembleatJayceePublicParkonHighwayAlA,7<milesnorthoftheplant.Ifnecessary, otherassemblyareascanbespecified bytheEmergency Coordinator.
/R93.4.2EscortAnindividual specifically assignedtoaccompany otherpersonswhoarerequiredbytheSecurityPlanorHealthPhysicsManualtobeescorted.
3.4.3LocalAreaEvacuation Anevacuation ofsomeportionof,butnotallof,theOwnerControlled Area.Itmayincludeevacuation ofaroom,building, groupofbuildings, generating stationarea,orotherportionoftheOwnerControlled Area.I PageSolFLORIDAPOWER&LIGHTCOMPANYEMERGENCY PLANDPLE>KNTING PROCEDURE
//3100026E, REV.93.0SCOPE:Continued) 3.4Definitions:
Continued) 3.4.4OwnerControlled AreaThatportionofFPLpropertysurrounding andincluding theplantwhichissubjecttolimitedaccessandcontrolasdeemedappropriate byFPL(indicated bythelineontheattachedFloridaPower&Lightpropertyplan,Figure1ofthisprocedure).
3.4.5OwnerControlled AreaEvacuation Theevacuation fromtheOwnerControlled Areaofallpersonnel exceptthoserequiredtoplacetheplantinasafecondition, theemergency teams,andtheguardsnecessary tofulfilltheirevacuation responsibilities.
3.4.6Radiation ControlPointLocatedintheAuxiliary
: Building, itislikelytobeusedasanassemblyareaduringalocalevacuation.


==4.0 Precautions==
==4.0 Precautions==
4.1Everyeffortshallbemadetominimizepersonnel exposuretoradiation.
4.1 Every effort shall be made to minimize personnel exposure to radiation.
4.2Personnel whohavebeenintheareaoftheemergency shallremaininagroup,andshallnotmixwiththeotherpersonnel intheRadiation ControlPointorotherassemblyareauntiltheyhavebeenmonitored forpossiblecontamination, unlesstheyareinjured.Injuredpersonnel shallbetreatedasdiscussed inE-PlanImple-mentingProcedure
4.2 Personnel who have been in the area of the emergency shall remain in a group, and shall not mix with the other personnel in the Radiation Control Point or other assembly area until they have been monitored for possible contamination, unless they are injured.Injured personnel shall be treated as discussed in E-Plan Imple-menting Procedure 3100021E, Duties of the Emergency Coordinator.
: 3100021E, DutiesoftheEmergency Coordinator.
4.3 Except as discussed in 4.2 above, personnel reporting to the Radiation Control Point or other assembly area shall group according to departments in order to facilitate personnel accountability and monitoring.
4.3Exceptasdiscussed in4.2above,personnel reporting totheRadiation ControlPointorotherassemblyareashallgroupaccording todepartments inordertofacilitate personnel accountability andmonitoring.
4.4 When reporting to the assembly area, take the most direct route possible, but do not use any route or area that has been declared part of the emergency area, or that could result in excessive individual exposure or injury.4.5 If an area or building is evacuated, any records regarding the persons in the area shall be removed and taken to the assembly area.
4.4Whenreporting totheassemblyarea,takethemostdirectroutepossible, butdonotuseanyrouteorareathathasbeendeclaredpartoftheemergency area,orthatcouldresultinexcessive individual exposureorinjury.4.5Ifanareaorbuildingisevacuated, anyrecordsregarding thepersonsintheareashallberemovedandtakentotheassemblyarea.
Page 4 ot 13 FLORIDA POWER 6 LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 4.0 Precautions: (Continued) 4.6 Health Physics personnel exiting the RAB as necessitated by an emergency condition of possible radiological nature shall pick up suitable portable radiation monitoring equipment which would be required for re-entry monitoring.
Page4ot13FLORIDAPOWER6LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE
5.0 Res onsibilities:
//3100026E, REV.94.0Precautions:
5.1 The Nuclear Plant Supervisor is responsible for: 5.1.1 Classifying and declaring any emergency that may occur at the site+".5.1.2 Initiating the Emergency Plans when appropriate.
(Continued) 4.6HealthPhysicspersonnel exitingtheRABasnecessitated byanemergency condition ofpossibleradiological natureshallpickupsuitableportableradiation monitoring equipment whichwouldberequiredforre-entrymonitoring.
/R9 5.1.3 Initiating the evacuation of any area in which the criteria for evacuation, as expressed in steps 8.1 8.2 are met./R9 5.2 The Nuclear Plant Supervisor shall act as Emergency Coordinator after declaration of an emergency.
 
5.3 The Emergency Coordinator is responsible for advising the Security Team Leader of a local evacuation or an Owner Controlled Area evacuation.
==5.0 Resonsibilities==
This notification will be by the alarm or the PA system.Information needed by the Security Force to properly fulfill their responsibilities during the evacuation shall be provided to the Security Team Leader by the Emergency Coordinator.(See E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator).
5.1TheNuclearPlantSupervisor isresponsible for:5.1.1Classifying anddeclaring anyemergency thatmayoccuratthesite+".5.1.2Initiating theEmergency Planswhenappropriate.
/R9 5.4 The Security Guard Force is under the supervision of the Plant Security Supervisor.
/R95.1.3Initiating theevacuation ofanyareainwhichthecriteriaforevacuation, asexpressed insteps8.18.2aremet./R95.2TheNuclearPlantSupervisor shallactasEmergency Coordinator afterdeclaration ofanemergency.
He serves as the Primary Security Team.Leader.The Security Force Shift Supervisor is the Interim Security Team Leader.5.5 The responsibilities of individuals acting as escorts are contained in Sections 5.12 and 8.4;5 of this procedure.
5.3TheEmergency Coordinator isresponsible foradvisingtheSecurityTeamLeaderofalocalevacuation oranOwnerControlled Areaevacuation.
5.6 All personnel permanently or temporarily assigned to St.Lucie plant shall familiarize themselves with: 5.6.1'he instructions given in this procedure.
Thisnotification willbebythealarmorthePAsystem.Information neededbytheSecurityForcetoproperlyfulfilltheirresponsibilities duringtheevacuation shallbeprovidedtotheSecurityTeamLeaderbytheEmergency Coordinator.
5.6.2 The access routes to the work location to which they are assigned.*The statement applies to Unit 2 upon initial fuel load.  
(SeeE-PlanImplementing Procedure
: 3100021E, DutiesofEmergency Coordinator).
/R95.4TheSecurityGuardForceisunderthesupervision ofthePlantSecuritySupervisor.
HeservesasthePrimarySecurityTeam.Leader.TheSecurityForceShiftSupervisor istheInterimSecurityTeamLeader.5.5Theresponsibilities ofindividuals actingasescortsarecontained inSections5.12and8.4;5ofthisprocedure.
5.6Allpersonnel permanently ortemporarily assignedtoSt.Lucieplantshallfamiliarize themselves with:5.6.1'heinstructions giveninthisprocedure.
5.6.2Theaccessroutestotheworklocationtowhichtheyareassigned.
*Thestatement appliestoUnit2uponinitialfuelload.  
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Page 5 ot 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 5.0 Res onsibilities:
//3100026E, REV.95.0Resonsibilities:
5.6 (Continued) 5.6.3 The locations of the evacuation assembly areas: a.The Radiation Control Point in the Auxiliary Building.b.The Site Assembly Station.c.The Jaycee Public Park on Route AlA, north of the plant site./R9 5.7 It shall be the responsibility of each supervisor and depart-ment foreman not involved in the emergency response to report to the assembly area to assist in accounting for all personnel under his supervision.
5.6(Continued) 5.6.3Thelocations oftheevacuation assemblyareas:a.TheRadiation ControlPointintheAuxiliary Building.
5.8 Security Department Responsibilities are defined in Security Procedure 0006123.5.9 The Control Point Guard shall maintain accurate records of all personnel entering or leaving the controlled area and make the records available when required.5.10 The Main Gate Guard shall maintain accurate records of~''personnel entering or leaving the protected area an/make the records available when required./R9 5.11 The Assembly Area Supervisor shall be responsible to ensure that personnel accounting at assembly area is being done and liason between the assembly area and the Emergency Coordinator.
b.TheSiteAssemblyStation.c.TheJayceePublicParkonRouteAlA,northoftheplantsite./R95.7Itshallbetheresponsibility ofeachsupervisor anddepart-mentforemannotinvolvedintheemergency responsetoreporttotheassemblyareatoassistinaccounting forallpersonnel underhissupervision.
/R9 5.12 Tour Guides are assigned to escort groups of visitors during tours of the plant site.In an emergency, Tour Guides are responsible for personnel accountability of their respective groups and the evacuation of their group to the Site Assembly Station in cooperation with the Security Force.F 13 Prior to fuel loading, Unit 2 responsibilities are defined in ASP, 5.0.
5.8SecurityDepartment Responsibilities aredefinedinSecurityProcedure 0006123.5.9TheControlPointGuardshallmaintainaccuraterecordsofallpersonnel enteringorleavingthecontrolled areaandmaketherecordsavailable whenrequired.
Page 6 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE!/3100026E, REV.9 6.0  
5.10TheMainGateGuardshallmaintainaccuraterecordsof~''personnel enteringorleavingtheprotected areaan/maketherecordsavailable whenrequired.
/R95.11TheAssemblyAreaSupervisor shallberesponsible toensurethatpersonnel accounting atassemblyareaisbeingdoneandliasonbetweentheassemblyareaandtheEmergency Coordinator.
/R95.12TourGuidesareassignedtoescortgroupsofvisitorsduringtoursoftheplantsite.Inanemergency, TourGuidesareresponsible forpersonnel accountability oftheirrespective groupsandtheevacuation oftheirgrouptotheSiteAssemblyStationincooperation withtheSecurityForce.F13Priortofuelloading,Unit2responsibilities aredefinedinASP,5.0.
Page6of13FLORIDAPOWER&LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE
!/3100026E, REV.96.0


==References:==
==References:==


6.1St.LuciePlantRadiological Emergency Plan.6.2St.LuciePlantSecurityPlan.6.3E-PlanImplementing Procedure
6.1 St.Lucie Plant Radiological Emergency Plan.6.2 St.Lucie Plant Security Plan.6.3 E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator.
: 3100021E, DutiesofEmergency Coordinator.
6.4 HP207 Personnel Monitoring following an Evacuation.
6.4HP207Personnel Monitoring following anEvacuation.
6.5 HP208 Personnel Decontamination.
6.5HP208Personnel Decontamination.
7.0 Records and Notifications:
 
7.1 A list of all persons assembled at Jaycee Public Park shall be prepared by a member of the Plant Staff who will travel to that location with evacuees./R9 7.2 Records showing that all personnel in the area affected by the emergency were accounted for shall be kept as part of the records of the emergency and recorded by the Emergency Coordinator.
==7.0 RecordsandNotifications==
I t~
7.1Alistofallpersonsassembled atJayceePublicParkshallbepreparedbyamemberofthePlantStaffwhowilltraveltothatlocationwithevacuees.
Page 7 of 13 FLORIDA POWER 6 LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.9 8.0 Ins true tions: 8.1 Criteria for Local Area Evacuation If an incident involves a high radiation field or has caused the release of radioactive material to the environ-ment, the need to evacuate the affected area shall be determined in accordance with the following criteria: Evacuate the affected local area in which any of the following conditions occur: 8.1.1 Area Radiation Monitor Alarm.8.1.2 Containment Evacuation Alarm.8.1.3 Direct radiation dose rate reading,d.n..excess of 100mRem/hour, from an.unevaluated source.-9 8.1.4 Airborne radioactivity concentration in excess of 1 x 10~micro Ci/cc, from an unevaluated source./R9 8.1.5 Removable radioactive surface contamination in an unposted area in excess of 1000 dpm/100 cm beta-gamma over an area of 100 ft 8.1.6 Removable radioactive surface contamination in an unposted area in excess of 50 dpm/100cm alpha over an area of 100 ft2.8.1.7 The Emergency Coordinator determines that a situation exists for which local evacuation is appropriate.
/R97.2Recordsshowingthatallpersonnel intheareaaffectedbytheemergency wereaccounted forshallbekeptaspartoftherecordsoftheemergency andrecordedbytheEmergency Coordinator.
8.2 Criteria for Owner Controlled Area Evacuation The Owner Controlled Area shall be evacuated in the following circumstances:
It~
8'.1 Site Area Emergency, 8.2.2 General Emergency, 8.2.3 If the Emergency Coordinator determines that the entire owner controlled area should be evacuated.
Page7of13FLORIDAPOWER6LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE f/3100026E, REV.98.0Instruetions:8.1CriteriaforLocalAreaEvacuation Ifanincidentinvolvesahighradiation fieldorhascausedthereleaseofradioactive materialtotheenviron-ment,theneedtoevacuatetheaffectedareashallbedetermined inaccordance withthefollowing criteria:
Evacuatetheaffectedlocalareainwhichanyofthefollowing conditions occur:8.1.1AreaRadiation MonitorAlarm.8.1.2Containment Evacuation Alarm.8.1.3Directradiation doseratereading,d.n..excess of100mRem/hour, froman.unevaluated source.-98.1.4Airborneradioactivity concentration inexcessof1x10~microCi/cc,fromanunevaluated source./R98.1.5Removable radioactive surfacecontamination inanunpostedareainexcessof1000dpm/100cmbeta-gamma overanareaof100ft8.1.6Removable radioactive surfacecontamination inanunpostedareainexcessof50dpm/100cm alphaoveranareaof100ft2.8.1.7TheEmergency Coordinator determines thatasituation existsforwhichlocalevacuation isappropriate.
8.2CriteriaforOwnerControlled AreaEvacuation TheOwnerControlled Areashallbeevacuated inthefollowing circumstances:
8'.1SiteAreaEmergency, 8.2.2GeneralEmergency, 8.2.3IftheEmergency Coordinator determines thattheentireownercontrolled areashouldbeevacuated.
/R9  
/R9  
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Page8of13FLORIDAPOWER6LIGHTCOMiANYEtiERGENCY PLANDiPLEMENTING PROCEDURE
Page 8 of 13 FLORIDA POWER 6 LIGHT COMi ANY EtiERGENCY PLAN DiPLEMENTING PROCEDURE//3100026E, REV.9 8.0 Instructions: (Continued)
//3100026E, REV.98.0Instructions:
 
(Continued) 8.3Evacuation Prearedness8.3.1Allvisitorsshallhaveadequatetransportation available on-sitetoevacuateallmembersoftheirrespective groups.8.3.2Escortsshallmaintaincontrolofgroupsorindividuals towhichtheyareassignedtoenableallmembersofthegroupstobelocated,notifiedandevacuated.
===8.3 Evacuation===
8.4LocalAreaEvacuation Imlementation 8.4.1WhentheEmergency Coordinator (NuclearPlantSupervisor) determines thatalocalareaevacuation isnecessary, heshall,infollowing Emergency Procedure DutiesoftheEmergency Coordinator, announceanevacuation usingthePAsystem,givingtheareaaffected, theassemblyareaandotherinstructions asrequired.
Pre aredness 8.3.1 All visitors shall have adequate transportation available on-site to evacuate all members of their respective groups.8.3.2 Escorts shall maintain control of groups or individuals to which they are assigned to enable all members of the groups to be located, notified and evacuated.
/R98.4.2Allpersonnel intheevacuated areashallstopwork,turnoffpotentially hazardous equipment, suchascuttingtorches,andleavetheareabythesameroutetakentoenterthearea,unlessotherwise instructed bytheEmergency Coordinator.
8.4 Local Area Evacuation Im lementation 8.4.1 When the Emergency Coordinator (Nuclear Plant Supervisor) determines that a local area evacuation is necessary, he shall, in following Emergency Procedure Duties of the Emergency Coordinator, announce an evacuation using the PA system, giving the area affected, the assembly area and other instructions as required./R9 8.4.2 All personnel in the evacuated area shall stop work, turn off potentially hazardous equipment, such as cutting torches, and leave the area by the same route taken to enter the area, unless otherwise instructed by the Emergency Coordinator.
8.4.38.4.4Allpersonnel intheevacuated areashallreporttotheRadiation ControlPointintheAuxiliary Buildingformonitoring andaccountability, unlessotherwise directed'ytheEmergency Coordinator.
8.4.3 8.4.4 All personnel in the evacuated area shall report to the Radiation Control Point in the Auxiliary Building for monitoring and accountability, unless otherwise directed'y the Emergency Coordinator.
TheRadiation Teamshallmonitorevacuated personnel forcontamination, (forareaswherecontamination maybepresent).
The Radiation Team shall monitor evacuated personnel for contamination, (for areas where contamination may be present)./R9 8.4.5 Injured personnel shall be treated as discussed in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator.
/R98.4.5Injuredpersonnel shallbetreatedasdiscussed inE-PlanImplementing Procedure
If an injured person is evacuated from the plant site, the person's TLD, selfreading dosimeter, identification badge, and keycard should be removed and given to the First Aid and Personnel Decontamination Team Leader.8.4.6 The Control Point Guard shall make available to the Emergency Coordinator his records showing the personnel who are in the Radiation Controlled Area./R9 Page 9 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 8.0 Instructions (Continued) 8.4 Local Area Evacuation Im lementation (Continued) 8.4.7 The Emergency Coordinator, department supervisors and foremen having personnel working in the evacuated area shall verify that all personnel in the evacuated area are accounted for.8.4.8 The Emergency Coordinator shall initiate a search for the personnel who have not been accounted for.8.5 Owner Controlled Area Evacuation Im lementation 8.5.1 When the Emergency Coordinator (Nuclear Plant Supervisor) determines that an evacuation of the Owner Controlled Area is necessary, he will order an evacuation using the PA system and the evacuation alarm as described in E-Plan Implementating Procedure 3100021E, Duties of Emergency Coordinator.
: 3100021E, DutiesofEmergency Coordinator.
8.5.2 All personnel in the evacuated area shall stop work, turn off potentially hazardous equipment, such as cutting torches, and leave the area.All personnel not needed to place the affected unit*in a safe con-dition and not on an emergency team or otherwise required on site, shall evacuate to the appropriate Offsite Assembly Area.Emergency Teams shall report to the OSC for assignment.
Ifaninjuredpersonisevacuated fromtheplantsite,theperson'sTLD,selfreading dosimeter, identification badge,andkeycardshouldberemovedandgiventotheFirstAidandPersonnel Decontamination TeamLeader.8.4.6TheControlPointGuardshallmakeavailable totheEmergency Coordinator hisrecordsshowingthepersonnel whoareintheRadiation Controlled Area./R9 Page9of13FLORIDAPOWER&LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE
8.5.3 Injured personnel shall be treated as discussed in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator.
//3100026E, REV.98.0Instructions (Continued) 8.4LocalAreaEvacuation Imlementation (Continued) 8.4.7TheEmergency Coordinator, department supervisors andforemenhavingpersonnel workingintheevacuated areashallverifythatallpersonnel intheevacuated areaareaccounted for.8.4.8TheEmergency Coordinator shallinitiateasearchforthepersonnel whohavenotbeenaccounted for.8.5OwnerControlled AreaEvacuation Imlementation 8.5.1WhentheEmergency Coordinator (NuclearPlantSupervisor) determines thatanevacuation oftheOwnerControlled Areaisnecessary, hewillorderanevacuation usingthePAsystemandtheevacuation alarmasdescribed inE-PlanImplementating Procedure
If an injured person is evacuated from the plant site, the person's TLD, self-reading dosimeter, identification badge, and keycard should be removed and given to the First Aid and Personnel Decontamination Team Leader.8.5.4 Personnel shall remove protective clothing prior to leaving the Radiation Controlled Area.8.5.5 Personnel shall proceed to the Main Guard Station by the most direct route, unless an alternate route is specified by the Emergency Coordinator.
: 3100021E, DutiesofEmergency Coordinator.
8.5.6 Each person shall then proceed to the appropriate Site Assembly Area (see Figure 2), unless otherwise directed by the Emergency Coordinator.
8.5.2Allpersonnel intheevacuated areashallstopwork,turnoffpotentially hazardous equipment, suchascuttingtorches,andleavethearea.Allpersonnel notneededtoplacetheaffectedunit*inasafecon-ditionandnotonanemergency teamorotherwise requiredonsite,shallevacuatetotheappropriate OffsiteAssemblyArea.Emergency TeamsshallreporttotheOSCforassignment.
*Applicable upon initial fuel load of Unit 2.R9  
8.5.3Injuredpersonnel shallbetreatedasdiscussed inE-PlanImplementing Procedure
: 3100021E, DutiesofEmergency Coordinator.
Ifaninjuredpersonisevacuated fromtheplantsite,theperson'sTLD,self-readingdosimeter, identification badge,andkeycardshouldberemovedandgiventotheFirstAidandPersonnel Decontamination TeamLeader.8.5.4Personnel shallremoveprotective clothingpriortoleavingtheRadiation Controlled Area.8.5.5Personnel shallproceedtotheMainGuardStationbythemostdirectroute,unlessanalternate routeisspecified bytheEmergency Coordinator.
8.5.6Eachpersonshallthenproceedtotheappropriate SiteAssemblyArea(seeFigure2),unlessotherwise directedbytheEmergency Coordinator.
*Applicable uponinitialfuelloadofUnit2.R9  
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Page10of13FLORIDAPOWER&LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE f/3100026E, REV.8.0Instructions:
Page 10 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.8.0 Instructions: (Continued) 8.5 (Continued) 8.5.7 Assemble by department for accounting and monitoring, and remain at the assembly area until given instruc-tions by the Assembly Area Supervisor.
(Continued) 8.5(Continued) 8.5.7Assemblebydepartment foraccounting andmonitoring, andremainattheassemblyareauntilgiveninstruc-tionsbytheAssemblyAreaSupervisor.
8.5.8 If the conditions associated with the emergency are such that the site assembly station area is untenable, the Emergency Coordinator shall direct all personnel to report to the Jaycee Public Park or other suitable alternative and specify the route to be followed.R9 8.5.9 The department supervisors and foremen shall account for their personnel and report the results to the Assembly Area Supervisor.
8.5.8Iftheconditions associated withtheemergency aresuchthatthesiteassemblystationareaisuntenable, theEmergency Coordinator shalldirectallpersonnel toreporttotheJayceePublicParkorothersuitablealternative andspecifytheroutetobefollowed.
8.5.10 The Assembly Area Supervisor shall assure that all personnel are monitored for contamination prior to leaving the Assembly Area.8.5.11 The Assembly Area Supervisor, the Security Force Shift Supervisor and the department supervisors and foreman shall examine all the personnel records available to determine if any personnel are unaccounted for.8.5.12 The Emergency Coordinator shall initiate a search for the personnel who have not been accounted for.8.6 Securit Force Evacuation Im lementation 8.6.1 Upon notification of an evacuation, the Security Force Shift Supervisor (Interim Security Team Leader)shall advise by radio all other guards on duty that an evacuation is in progress.The Security Force will proceed with the evacuation of persons and with personnel accountability activities.
R98.5.9Thedepartment supervisors andforemenshallaccountfortheirpersonnel andreporttheresultstotheAssemblyAreaSupervisor.
8.6.2 The Control Point Guard and the Main Gate Guard shall immediately review logs and badge records to determine what persons are in the affected area.These guards shall be prepared to brief the Emergency Coordinator.
8.5.10TheAssemblyAreaSupervisor shallassurethatallpersonnel aremonitored forcontamination priortoleavingtheAssemblyArea.8.5.11TheAssemblyAreaSupervisor, theSecurityForceShiftSupervisor andthedepartment supervisors andforemanshallexamineallthepersonnel recordsavailable todetermine ifanypersonnel areunaccounted for.8.5.12TheEmergency Coordinator shallinitiateasearchforthepersonnel whohavenotbeenaccounted for.8.6SecuritForceEvacuation Imlementation 8.6.1Uponnotification ofanevacuation, theSecurityForceShiftSupervisor (InterimSecurityTeamLeader)shalladvisebyradioallotherguardsondutythatanevacuation isinprogress.
The Control Point Guard shall verify that all personnel have evacuated the area and report to the Security Team Leader for further instructions.
TheSecurityForcewillproceedwiththeevacuation ofpersonsandwithpersonnel accountability activities.
The Control Point Guard shall then R9 R9 Page ll of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.9 8.0 Instructions:
8.6.2TheControlPointGuardandtheMainGateGuardshallimmediately reviewlogsandbadgerecordstodetermine whatpersonsareintheaffectedarea.TheseguardsshallbepreparedtobrieftheEmergency Coordinator.
Continued 8.6 (Continued) 8.6.2 go to the Hain Gate with his personnel records and await instructions from the Security Team Leader.8.6.3 The Security Team shall: 1~Sweep the plant site to verify that all personnel have evacuated.
TheControlPointGuardshallverifythatallpersonnel haveevacuated theareaandreporttotheSecurityTeamLeaderforfurtherinstructions.
2.Notify any Special Guards on duty.3.Perform additional duties as specified in the Security Guard Force Post and Force Orders.8.6.4 The Security Team Leader, after completion of sweeps by members of the Security Team shall instruct guards concerning special assignments which may be required as a result of the evacuation.
TheControlPointGuardshallthenR9R9 Pagellof13FLORIDAPOWER&LIGHTCOMPANYEMERGENCY PLANIMPLEMENTING PROCEDURE f/3100026E, REV.98.0Instructions:
He shall advise the FPL Off-Site Emergency Security Manager of any circumstances which require his attention or assistance.
Continued 8.6(Continued) 8.6.2gototheHainGatewithhispersonnel recordsandawaitinstructions fromtheSecurityTeamLeader.8.6.3TheSecurityTeamshall:1~Sweeptheplantsitetoverifythatallpersonnel haveevacuated.
2.NotifyanySpecialGuardsonduty.3.Performadditional dutiesasspecified intheSecurityGuardForcePostandForceOrders.8.6.4TheSecurityTeamLeader,aftercompletion ofsweepsbymembersoftheSecurityTeamshallinstructguardsconcerning specialassignments whichmayberequiredasaresultoftheevacuation.
HeshalladvisetheFPLOff-SiteEmergency SecurityManagerofanycircumstances whichrequirehisattention orassistance.
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Revision as of 18:29, 7 July 2018

Rev 8 to Emergency Plan Implementing Procedure 3100033E, Offsite Dose Calculations.
ML17214A683
Person / Time
Site: Saint Lucie  NextEra Energy icon.png
Issue date: 01/09/1984
From: SCHMIDT A D
FLORIDA POWER & LIGHT CO.
To:
Shared Package
ML17214A680 List:
References
3100033E, NUDOCS 8402070388
Download: ML17214A683 (96)


Text

~g pp~jP~cga 1 of 10 FLORIDA POWER&LIGHT COMPANY ST.LUCIE.PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E REVISION(:, 4 1.0 Title: ON-SITE SUP RT CENTERS 2.0~Aroval: Reviewed by FP4ilit Revie~Approved by/Rev.4 reviewed FRG Approved by Group/l l gr cfog>4-l.5 V.P Power.Resource 19+~1982 1982 3."0~Eco a: 3.1 Purpose This procedure provides guideli es and responsibilities for activation.and use of the on-sit Technical and Operational Support Centers.This procedure d scribes interim facilities and shall be revised when permanent acilities are operational.

3.2 Discussion

The activities of plant management, techn'cal and engineering

/R4 support personnel are an important part of the overall site response to an accident, and must be proper defined and logistically supported.

The need for additio al operational support personnel, other than those required a d allowed in the Control Room, is also recognized as vitally important in properly responding to an emergency.

The intent of, providing Technical and Operational Su ort Centers ,is to provide bases where post-accident emergency pl ning can be conducted and required operational support personn can assemble for potential duty.Both centers will be in ose communication with the Control Room via the PAX phone s tern, without disrupting, congesting, or confusing the activiti s in the Control Room by the physical presence of additional pe sonnel, e

Page 2 of 10 EHERGENCY PLAN IMPLEHENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS 3.3 Description 3.3.1 Technical Support Center (TSC)The TSC's located in the training classroom area, adjacent to the Unit 81 Control Room.Emergency supplies available near the TSC are listed in Table 1.Documents and drawings available are listed in Table 2.3.3.2 Operational Support Center (OSC)The OSC is maintained in the first floor maintenance area of the Service Building.3.3.3 Communications Equipment The Control Room contains necessary telephone and public address systems for communications within and outside the plant.The Control Room al" o contains NAMAS and Local Government Radio for communications with state and county~agencies.Use of these systems is described in the Appendix.The*TSC contains necessary telephones to communicate with the Control Room, OSC, the General Office Emergency Center, the Emergency Operations Facility and.outside agencies.It also contains an ENS dedicated telephone to the NRC Operations Center and the NRC Region XX Office./R4 3.4 Authority I This procedure implements the St Lucie Plant Radiological Emergency Plan.4.0 Precautions:

4.1 The TSC and OSC shall be activated upon the direction of the Emergency Coordinator or his designated alternate only.4.2 Radiological conditions in the on-site Technical and Operational Support Center shall be monitored when required to be'in use.Radiation levels in the TSC should be monitored using available (control room)portable instruments.

/R4 4.3 The Emergency Coordinator shall recommend a suitable location other than the designated areas if radiological conditions warrant such actions.

1 I 0 Page 3 of 10 EMERGENCY PLAN ItPLEHENTING PROCEDURE NO.3100032E, REV" ON-SITE SUPPORT CENTERS 5.0 Res onsibilities:

5.1 The Emergency Cooxdinator is responsible for activating the TSC, activating the OSC, and arranging, for staffing through the Duty Call Supervisor.

5.2 The TSC Supervisor will be the most senior person available to remain at the TSC of the following:

Primary: Alternate Technical Supervisor Off duty Shift Technical Advisor (See 3100023E, Emexgency Roster)He is responsible for supervising TSC activities, reporting to the Emergency Coordinator, and communicating with the Emergency Operations Facility.5.3 Each department head or designated alternate is responsible for reporting to the TSC when called.5.4 Those reporting to the Operational Support Center are responsible for being prepared to carry out support functions designated by.the Emergency Coordinator.

5.5 The Emergency Coordinator has the overall responsibility for the conduct of emergency operations and activities and should work closely with the TSC to ensure all information is used in making accident recovery decisions.

5.6 The gC department is responsible for ensuring that records, documents, and prints are maintained in the TSC or are available for immediate use in the Document Control vault.5.7.Health Physics Dept shall provide a portable monitor-to the Technicial Support Center for radioiodine.monitoring.

This monitor can also be used for'monitoring the control room.6.0 References 6.2 E-Plan Implementing Procedure 3100021,"Duties of the Emergency Coordiantor".

/R4 6.3 E-Plan Implementing Procedure 3100033E,"Off Site Dose Calculations".

6.4 E-Plan Implementing Procedure 3100022E,"Classification of Emergencies".

7.0 Records: A record of actions taken at the TSC shall be maintained by the TSC Supervisor.

II,)

Page 4 of 10 EMERGENCY PLAN IIPL~r KNTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS 8.0 Instructions:

8.1 Activation

The Emergency Coordinator shall activate the TSC and the OSC for an emergency condition classified as Alert, Site Area Emergency, or General Emergency.

8.2 Staffing The Emergency Coordinator shall arrange for staffing through the Duty Call Supervisor, Table 3 identifies the TSC staffing requirements.

J 8.3 Use of the Technical Support Center The TSC shall be used to provide plant management and technical support to plant operations personnel during emergency conditions.

A primary task shall be to relieve the Emergency Coordinator of off-site communications to the state and local agencies, NRC and the FPL Off-Site Emergency Organization.

~This task becomes the responsibility of the EOF when they are manned and fully operational.

The TSC staff shall piovide technical support as requested by the Emergency Coordinator and shall direct itself toward determining current and projected plant status and providing in-depth diagnostic and engineering assistance, as required./R4 8.4 Use of the Operational Support Center The Emergency Coordinator shall assign available plant staff not needed in the TSC or Control Room to the OSC.The OSC Supervisor (Assistant Superintendent Mechanical Maintenance or designated alternate) shall maintain communications with the TSC and report as directed by the Emergency Coordinator or TSC Supervisor.

8.5 Deactivation

It is the responsibility of the Emergency Coordinator or his designee to deactivate and secure the TSC and OSC when the emergency dondition no longer exists.8.6 Alternate OSC In the event that the OSC becomes untenable, the Emergency Coordinator shall designate an alternate location.NOTE: The Steam Generator Blowdown Building is outfitted to be an alternate OSC./R4 l 1

Page 5 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 1 RADIOLOGICAL EKRGENCY EQUIPMENT ST LUCIE PLANT CONTROL ROOM STORAGE LOCKER (ALSO FOR TSC USE)1.Coveralls 2.Hood 3.Gloves 4.Shoe Covers 5.Self Contained Breathing Apparatus 6.Full Face Respirators and Filters 7.Pocket Dosimeters 8.Dosimeter Chargers 9.TLD's 10.Portable Count Rate Instrumentation 11.Portable Dose Rate Instrumentation 12.Contamination Smears 13.Envelopes 14.Radiation Tape/Rope 15.Radiological Signs 16.Industrial First Aid Kit 17.Step-Off Pads 18.Plastic Bags

\

Page 6 of 10 EMERGENCY PLAN INPLEHENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 2 EMERGENCY DATA, DRAWINGS AND,DOCEfENTS MAINTAINED AT THE TSC ST 1UCIE PLANT 1.Plant Technical Specifications C 2.Plant Operating Procedures 3.Emergency Operating Pro'cedures 4.Emergency Plan and Implementing Procedures 5.Final Safety Analysis Report 6.Drawings, Schematics and Diagrams

Page 7 of la EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS TABLE 3 TECHNICAL SUPPORT CENTER STAFFING ST LUCIE PLANT TSC Supervisor Primary: Alternate Technical Supervisor Off duty STA (per 3100023E, Emergency Rost'er)Operations Representative (Off duty Duty Call Supervisor or NPS)Health Physics Supervisor (Radiation Team Leader)Chemistry Supervisor Reactor Engineering Supervisor Maintenance Superintendent Quality Control Supervisor Support Staff as determined by these supervisors

/R4 Page 8 of 10 K!ERGENCY PLAN IMPLFJfENTING PROCEDURE NO.3100032E, REV 4 ON-SITE SUPPORT CENTERS APPENDIX CO~i ICATIONS EQUIPMEHT A.Use of the NAWAS System 1.The NAWAS is used for announcing the initial warning to the State Warning Point at the Bureau of Disaster Preparedness (BDP)and St.Lucie Disaster Preparedness Coordinator of all.four Emergency Classes.2.The NAWAS is a direct, protected telephone land line with the handset installed in the Control Room.3.Picking up the handset from its cradle activates a response at the State Warning Point and St.Lucie and Martin County Disaster Preparedness Offices.The Nuclear Plant Supervisor (Emergency Coordinator) will advise the personnel on the other end of the system, in a coded message, of the conditions at the plant.He then places the handset back on its cradle, as this is the only use for it during an emergency.

His message will activate the required state and local emergency teams.4.The procedure for reporting an emergency via NAWAS is summarized in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator, and described in detail below.A.(1)"S'tate Warning Point Tallahssee, this=is St.Lucie aslant'(State War'ning Point will give a go-ahead)"State'Warning Point Tallahssee, this is St.Lucie Plant*tBPRRt/R4 Time"Acknowledge, over." (ALTERNATE METHOD)If NAWAS is unavailable-telephone State Warning Point at PHONE NO.1-904-488-1320 or Florida Marine Patrol-Alternate, State Warning Point 1-904-488-5757.

State Warning Point will call via Phone to validate the*notification.

After validation, transfer the information on the State of Florida Fixed Nuclear Facility Notification Message Form via NAWAS or ALTERNATE METHOD.State Warning Point Message Validation Time*Announce the class as indicated by EPIP 3100022E"Classification of Emergencies"/R4 Page 9 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100032E, REV.4 ON-SITE SUPPORT CENTERS APPENDIX (cont)A.Use of the NAWAS System (cont)Classifications The classes of Radiological Emergencies are described in E-Plan Implementing Procedure 3100022E, Classification of Emergencies.

3, Plume Exposure Pathway A.The Plume Exposure Pathway will extend outward from-'each nuclear power plant for a radius of ten (lQ)miles, and shall be segmented into 22-1/2 arcs and will be lettered A through R (excluding I and 0)for the 360 of the compass./R4 B.Each area is divided into SECTORS beginning at the ce"ter and extending outward in mile increments One through ten.Contaminated area, extending outward from the nuclear plant, will be located and reported as discussed in E-Plan Implementing Procedure 3lQQQ33F;-"Off-Site Dose Calculations."/R4 B.Use of the Local Government Radio (LGR)1.The LGR is used, unless inoperative or unavailable, for maintaining communications with various state and local disaster preparedness personnel.

Messages are transmitted and received on frequencies allocated by the state Bureau of Disaster Preparedness.

C.2.The LGR control unit is installed in the Control Room, and TSC.Use of the ENS Telephone Network/R4 1.Within one hour of the, time that the Emergency Plan or any part of the Emergency Plan is implemented the NRC shall be notified and an open, continuous communications channel established using the NRC ENS circuit (red phone).The Nuclear Plant Supervisor (Emergency Coordinator) shall be responsible for assuring that this notification is made.2.To initiate a signal to the NRC Operations Center, remove the handset from the receiver.3.When the NRC Duty Officer answers, identify yourself as"Florida Power 6 Light, St Lucie Plant".

Page 10 of 10 EMERGENCY PLAN IMPLEMENTING PROCEDURE HO.3100032E, REV"4 ON-SITE SUPPORT CENTERS APPENDIX (cont)C.Use of the ENS Telephone Network (cont)4.Make the notification.

/R4 5.Maintain the line open and manned until allowed to terminate the call by the NRC Duty Officer.

~i Cp/

Page 1 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN DPLEMENTING PROCEDURE NO.3100050E REVISION 6 l.0 Title: MAINTAINING EMERGENCY PREPAREDNESS

-EMERGENCY EXERCISES, DRILLS, TESTS, AND EVALUATIONS.

2.0~Avovels: Reviewed by Facility Review Group Approved by K.N.Harris Rev.4 Review by FRG Approved by July 25, Plant Manager'uly 293 l~t V, P.Power Resources 19 75 19~19 P C 19~Rev.6 Review Approved by 3.0~Soo e: v Facility Rev Group~ca~e NV 19'Ms 3.1 Purpose This procedure provides instructions for conducting periodic emergency exercises, drills, and tests.3.2 Discussion Periodic exercises and drills will be conducted in order to test the state of emergency preparedness of participating personnel, organizations, and agencies.Each exercise or drill will be conducted to: 1)Ensure that participants are familiar with their respective duties and responsibilities.

2)Verify the adequacy of the Emergency Plan and emergency procedures; 3)Test the communication network and systems.4)Check the availability of emergency supplies and equipment.

5)Verify the operability of emergency equipment.

These exercises and drills will simulate emergency conditions and may be scheduled such that two or more exercises or drills are conducted simul-taneously.

The results of the exercises will form the basis for corrective action to eliminate identified deficiencies, and will be discussed during a post-exercise evaluation.

R6 R6 J~'=

a C 4 Page 2 of 6 FLORIDA POWER 6 LIGHT COMPANY'T.

LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 3.0~Sco e: (cont'd)3.3 Authority This procedure implements the St.Lucie Plant Radiological Emergency Plan.4.0 Precautions:

4.1 Every emergency alarm,or announcement shall be assumed to be true unless an announcement is made to the contrary.5.0 Res onsibilities:

5.1 The FPL Emergency Planning Supervisor shall be responsible for planning, scheduling, and coordinating all major emergency drills or exercises involving off site agencies.When an exercise is to be conducted, the Emergency Planning Supervisor shall: a)Schedule a date for the exercise in coordination with the Health Physics Supervisor-and the primary State and county emergency response agencies.R6 b)Request that the Health Physics Supervisor assign personnel to assist the Emergency Planning Supervisor prepare a scenario.-R6 c)Coordinate all FPL efforts with other participating personnel, organizations, and agencies.d)Obtain the approval of the Plant Manager.e)Offer federal, state and local observers the opportunity to evaluate the exercise.f)Discuss and evaluate the exercise with observers and principal participants.

I I g)Ensure that for all identified deficiencies, corrective measures are recommended.

h)Prepare and retain documentation for record keeping.

l i'a t, Page 3 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 5.0 Res onsibilities: (Cont'd)5.2 When an exercise or a major drill is to be conducted, the Health Physics Supervisor shall assure that the following is accomplished:

a)Assign personnel to prepare a scenario.b)Coordinate through the Emergency Planning Supervisor all activities which involve off-site personnel organizations or agencies.c)Schedule a date for this activity in coordination with the Emergency Planning Supervisor and assign observers.

d)Obtain approval of Plant Manager.e)Review evaluations of exercise or drill with the observers and the Facility Review Group.f)Ensure that deficiencies which are identified are addressed with corrective measures.g)Prepare and submit documentation to the Emergency Planning Supervisor for record keeping.6.0 References 6.1 St.Lucie Plant Radiological Emergency plan 6.2 NUREG 0654 7.0 Records and Notifications 7.1 Log Entries 7.2 Written evaluation to FRG, Plant Manager, and Emergency Planning Supervisor by the Health Physics Supervisor.

7.3 Consolidated

exercise summary by the Emergency Planning Supervisor.

I i'a Page 4'f 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions 8.1 The following emergency exercises, drills, and tests shall be conducted-at the frequency indicated:

a)Exercises (Inte rated Drills)A major radiological emer'gency response exercise shall be conducted at least once every twelve (12)months (plus or minus three months)-to demonstrate the effectiveness of the Emergency Plan.This exercise shall be conducted as a Site Area Emergency or General Emergency and will provide for the coordination with and,participation of off-site emergency response personnel organizations and agencies including those of federal, state, and local governments.

The emergency scenario shall be varied from year to year.Provisions shall be made to start at least one exercise between 6:00 PM and midnight, and at least one exercise between midnight and 6:00 A.M., every six years.The"Affected Unit" in the exercise should be changed from year to year.R6 This emergency response exercise shall be critiqued by Florida Power&Light Company observers/evaluators and other observers as appropriate from federal, state, and local agencies.R6 b)Radiolo ical Monitorin'rill A radiological monitoring drill shall be conducted at least once every twelve (12)months (plus or minus three months).These drills will include collection and analysis of sample media (e.g.water, air).This drill should include testing of communications and understanding of communications between the RTL and the teams.c)Health Ph sics Drills Thc Health Physics Department shall conduct health physics drills semi-annually and one of the semi-annual"drills may be incorporated into the radiological monitoring drill.R6 d)Medical Emer enc Drill A medical emergency drill involving a-simulated contaminated individual, with provisions for activation of the plant First Aid and Personnel Decontamination Team and participation by local support services (i.e., ambulance and off-site medical treatment facility), shall be conducted at least once every twelve (12)months (plus or minus three months).

Page 5 of 6 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN IMPLEMENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions (cont'd)8.1 (Cont'd)e)Fire Emer enc Drill Fire drills are conducted in accordance with Technical Specifications to test the operational readiness (personnel, equipment and procedures) to control and extinguish a fire onsite.The drills also serve to evaluate and document the response of onsite personnel and participating off-site agencies to varying fire situations.

The communication links and notification procedures are tested at least semi-annually during fire emergency drills.A post-drill cr'itique is held after each fire drill completed to identify possible areas for improvement in equipment and/or procedures.

f)Communications Tests Communications with the Bureau of Emergency Management, Department of Health and Rehabilitative Services, and St.Lucie and Martin County Disaster Preparedness Coordinators within the plume exposure pathway Emergency Planning Zone (EPZ)will be tested monthly.8.2 Conducting Drills 8.2.1 The Nuclear Plant Supervisor (NPS)shall evaluate the plant conditions and ascertain that the drill will not adversely affect plant equipment or operations.

8.2.2 The Health Physics Supervisor shall designate specific members of the plant staff to act as controllers and evaluators during the drill.These controllers and evaluators shall be familiar with the procedures and proper actions to;be taken associated with their post during the drill.Additionally, briefings shall be, conducted to indicate what purpose the drill will service and what specific areas the controllers and evaluators should be concerned with.These controllers and evaluators shall be posted throughout the plant area to observe and record the actions of plant personnel during the drill and to verify alarm audibility.

8.2.3 After receiving a signal of alarm indicating that an emergency condition exists, which has been initiated as part of the drill, the NPS shall take action as required by the Emergency Plan.R6 I

Page 6 of 6 FLORIDA POWER 6 LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN Il'PLEHENTING PROCEDURE NO.3100050E REVISION 6 8.0 Instructions (cont'd)8.2 (cont'd)8.2.4 At the termination of the drill, the NPS shall announce over the PA system that the drill is over.This shall be repeated along with any required instructions.

8.3 Evaluation

of Drills and Exercises 8.3.1 Following a drill the Health Physics Supervisor shall assimilate all information and data concerning the.emergency procedure drill and hold a critique on the drill, and present a summary of the critique to the FRG.R6 R6 The FRG shall recommend changes to the Emergency Plan Implementing Procedures as necessary.

R6 8.3.2 Following an exercise, the Emergency Planning Supervisor, plant management, FPL controllers and evaluators and principal participants in the exercise will meet to discuss and evaluate the exercise.R6 The evaluation shall be based on the ability of participants to follow emergency procedures, the adequacy of emergency procedures, and the adequacy of emergency equipment and supplies.Plant management shall be responsible for necessary changes in the Plant Emergency Procedures and for recommending and/or submitting changes in the Emergency Plan to the Emergency Planning Supervisor.

8.3.3 The FRG shall submit a written evaluation following an exercise.to the Emergency Planning Supervisor.

These comments will be incorporated, with comments from other principal participants and controllers and evaluators, into a consolidated exercise summary.The summary will be dis-tributed as described in the"Duties and Responsibilities of the Emergency Planning.Supervisor" procedure.

R6

/I I Page 1 of 30 FLORIDA POWER 6 LIGHT COMPANY ST~LUCIE PLANT E>>PLAN IMPLEMENTING PROCEDURE NO~3100033E REVISION 8 1.0 TITLE: Off-Site Dose Calculations 2.0 REVIEW AND APPROVAL: Reviewed by Facility Review Group Approved by A.D;Schmidt March 20 and 25 1981 V.P.Power Resources March 26 1981 Revision 8 Revi by P.R G Approved by V.P.Nuc Energy 19++3.0 SCOPE::3.1 Purpose:3.1.1 This procedure provides a method for estimating'hole body and thyroid dose rates and integrated whole body and thyroid dose for the area surrounding the site out to 12 miles.3'.2 This procedure provides a method of comparing.

dose estimates, release rates, and radiati'on levels in containment to Emergency Classifications Guidelines.

3.2 Discussion

3.2.1 3.2.2 This procedure is applicable to both Unit 1 and Unit-2.Provisions have been made to sum the releases from both Units should both be releasing radioactive materials during an emergency.

The Chemistry Department representative should use the computer dose calculation model, if available, for estimating off-site whole body and thyroid dose rates and integrated doses when releases of radioactive materials occur during an emergency.

This model closely parallels this procedure.

This procedure provides the means for hand calculation of offsite dose rates and integrated doses.'8402070388 840202 ,!R,I PDR ADOCK 05000335 F'DR t 0 A ST~LUCIE PLANT.E PLAN IMPLEMENTING PROCEDURE 3100033EP REVISION 8 OPF-SITE DOSE CALCULATIONS Page 2 of 30 3.0 SCOPE: (continued) 3.2 (continued) 3.2.3 The Emergency Coordinator will use these off-site dose estimates, release rates, and radiation levels in containment for emergency classification of off-site protective action recommendations.

The'mergency Coordinator or his designee will perform these off-site dose calculations if the Chemistry Department representative is unavailalle to do so.3'.4 This activity may be duplicated by the dose assessment group.in the EOF when it is manned and operational.

This serves as a redundant/check for off-site dose data.3.3 Authoritv:

This procedure implements the St.Lucie Plant Radiological Emergency Plan.4.0 PRECAUTIONS:

None 5'RESPONSIBILITIFS:

5.1 The Emergency Coordinator or his designee shall assure that whole body and thyroid dose rates and integrated doses are calculated, following releases of radioactive material during an emergency.

5.2 The Chemistry Department representative shall make the estimates upon arrival at the Technical Support Center at the direction of the Emergency Coordinator or his designee.6'REPERENCES:

6.1 St.Lucie Plant Radiological Emergency Plan 6.2 St.Lucie Plant Radiation Protection Manual 6.3"Duties of the Emergency Coordinator," EPIP 3100021E 6.4"Classification of Emergencies," EPIP 3100022E 6.5"Bases for Accident Dose Calculations for St.Lucie Nuclear Power Plant" (Bases prepared by HMM Associates of Waltham, Massachusetts.)

6.6"Criteria for Preparation and Evaluation of Radiological Emergency Response Plans and Preparedness in Support of Nuclear Power Plants," NUREG-0654, Revision 1 6.7 St~Lucie Unit 1 FSAR 6.8 St.Lucie Unit 2 FSAR ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCFDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS P:ge 3 of 30 7.0 RECORDS AND NOTIFICATIONS:

The attached worksheets shall be retained as qualitv records.Notifications are made per EPIP 3100021E.

ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100)33E, REVISION 8 OFF-SITE DOSE CALCULAT:ONS Page 4 of 30 8'INSTRUCTIONS:

8.1 Upon the initiation of an event which has resulted in or could result in releases of radioactive material, the Containment High Range Radiation Monitors (if inoperable, use Post LOCA)reading should be compared to the Action Guidelines for supplemental classification of the event.8.2 Determine the release rate for Noble gases and Iodines.If both Units are releasing radioactive material during an emergency, determine the release rates for both plants separately and add the results as requested.

Four methods for release rate determination are available.

If Chemistry grab sample analysis data is available, METHOD A (Al for Unit 1, A2 for Unit 2)should be used.METHOD B (Bl for Unit 1, B2 for Unit 2)is used when grab sample data is not yet available and effluent monitors are operable.METHOD C (applicable to both Units), CHRRM method, is used if.METHOD B can't be used.As a default, METHOD D (applicable to both Units), Post LOCA monitors, may be used for release rate determination.

4 8.2.1 For the affected Unit(s), complete a RELEASE RATE'WORKSHEET using the appropriate method for release rate determination.

/R8 8.3 Determine the current meteorological data using the, METEOROLOGY WORKSHEET.

Three methods for meteorological data determination are available.

METHOD A (Site Meteorology Tower)uses the 15 minute average met data from the Control Room met data recorders.

Method A serves as the primary source of data.METHOD B (West Palm Beach NOAA or Vero Airport FSS)serves as a backup.Manipulation of data from these sources is handled in Appendix C.METHOD C (default)serves as the secondary backup source of data.8.3.1 For the affected Unit, complete a METEOROLOGY WORKSHEET using the appropriate method (use only one method).

ST~LUCIE PLANT E-PLAN IMPLLMENTING PROCEDURE 3'100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 5 of 30 8.0 INSTRUCTIONS: (continued) 8.4 Calculate Off-site Doses using the POSE CALCULATION WORKSHEET 8.4.1 If both plants are releasing radioactive material during an emergency, total the Noble gas and Iodine release rates.8.4.2 Multiply total NOBLE GAS RELEASE RATE (Ci/sec)by WHOLE BODY DOSE FACTOR (mRem/hr/Ci/sec) to determine WHOLE BODY DOSE RATE./R8 NOTE: The whole body dose rate conversion factor is determined from Dose Factor Tables and is based on precalculated dose rates at 1, 2, 5, and 10 miles from the plant;meteorological conditions (stability and w.'.nd speed), and a 1 Ci/sec release rate.8Multiply TOTAL IODINE RELEASE RATE (Ci/sec)by THYROID DOSE FACTOR (nRem/hr/Ci/sec) to determine THYROID DOSE RATE./R8 NOTE: The thyroid dose rate conversion factor is determined from Dose Factor Tables and is based on precalculated dose rates at 1, 2, 5, and 10 miles from the plant;meteorological conditions (stability and wind speed), and a 1 Ci/sec release rate.8.4.4 Enter the dose rate results in part 6A.Noting wind direction, record dose rate results in the i'ndicated sector and the adiacent sectors (on each side)in part 6B.8.5 The Emergency Coordinator or his designee shall monitor release rates and meteorological conditions to determine how frequently to update the dose rate estimates.

Dose rate estimates shall be updated if any of the'ollowing averages change by the amounts.indicated below over a period not to exceed 30 minutes: 1.Release rates increase by more than 25T.2.Wind speed decreases by two classes or more.3.'tmospheric stability becomes more stable by more than one class (e.g., stability D to F).4.Wind direction changes by more than 22.5 (i.e., plume centerline is more than one sector away from prior location).

In any case, the estimates shall be revised at least hourly for the first 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> after the accident unless it is determined that releases of radioactivity have been terminated.

ST.LUCIE PLANT.'-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 6 of 30 8 o INSTRUCTIONS: (continued) 8.6 The Emergency Coordinator or his designee shall track integrated thyroid and whole body dose once each hour for the duration of the event as follows: S.d.1 The average thyroid anB whole body Bose rates shell be determined for each sector from the DOSE CALCULATION WORKSHEETS completed for the hour of interest.8.6.2 Update step 9 of the DOSE CALCULATION WORKSHEETS by adding the thyroid and whole body dose rate determined from 6.A for each applicable sector/distance block to the integrated dose from event initiation to the present for that sector/distance block./R8 8'.3 Doses for sector/distance blocks with zero estimated dose rate for the current hour remain unchanged.

8.7 Proiections

of doses and dose rates should be made on the basis that the most recently estimated dose rates and their distribution will'ersist for two hours.Pro)ecting dose rates for periods othhr than two hours should be made on an ad hoc basis using best available data on release rate estimates and subsequent meteorological conditions.

8e8 The results of TOTAL RELEASE RATE, DOSE RATES, and ACCUMULATED DOSE should be compared to applicable Table 3, Page 19-ACTION GUIDELINES.

The Emergency Coordinator, if not performing the actual calculations, shall be informed of all dose estimates.

The Emergency Coordinator shall evaluate the results and declare a new status as applicable.

'R8 8.9 Dose conversion tables for distances 1 to 12 miles, by 1 mile increments, are attached as Appendix A for calculations of dose at other than 1, 2, 5, and 10 miles.

ST.LUCIEN PL'ANT.-""-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 7 of 30 RELEASE RATE WORKSHEET Al METHOD Al-CHEMISTRY GRAB SAMPLE-UNIT 1 NOTE: Read Unit 1 CHRRM and compare with ACTION GUIDE 1A, Page 19.1.Date and Time of Data//2.Acquire sample assay data.Enter the gross Noble gas and Iodine-131 Deq concentrations in uCi/cc in the table below.3.Determine pathway flow.If available, use the Unit 1 effluent monitor channel'hown.

Alternatively, use the flow based on exhaust fan status, figured below.Default flows are listed if exhaust fan status is not available.

4.Calculate Release Rates.I PATHWAY I TYPE P ant No e Gas Vent I Iodine FLOW CONVERSION uC/cc X SCFM X VALUE 4.72 E-4 CALCULATED Ci SEC I NOBLE GAS IODINE I Fuel Noble Gas o ne 4.72 E-4 S o le Gas A Iodine 4~72 E-'4!ECCS Noble Gas B o ne 4.72 E-4 Total Noble Gas 5.Compare Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WORESHEET; Page 14.Total Iodine UNIT 1 PATHWAY FLOW DATA Plant Vent,'hannel 01-10 Default 86050 SCFM Plant Vent by Exhaust Fan Status Check fans that are"ON" Fuel Building, Channel 04-10 Default 23800 SCFM Fuel Building by Exhaust Fan Status Check fans that are"ON" 1 1 1 1 1 1.1 1 HVE 10A HVE 10B HVE 6A HVE 6B HVE 8A HVE 8B HVE 7A HVE 7B-74050-74050 6000 6000-42000-42000 500 500 1 HVE 16A-10350 1 HVE 16B-10350 1 HVE 17-5000 1 HVE 15-8450 Total Fuel Bldg.(SCFM)ECCS, Default Value is 30000 SCFM Total of"ON" Plant Vent (SCFM)ECCS-A Channel 02-10, 1 HVE 9A-30000 SCF1 ECCS-B Channel 03-10, 1 HVE 9B-30000 SCB/R1 F ST.LUCIE,PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OPP-SITE DOSE CALCUL'ATIONS Page 8 of 30 RELEASE RATE WORKSHEET A2 METHOD A2-CHEMISTRY GRAB SAMPLE-UNIT 2'OTE: Read Unit 2 CHRRM and compare with ACTION GUIDE 1A, Page 19'.Date and Time of Data//2~Acquire sample assay data.Enter the gross Noble gas and Iodine-131 Deq concentrations in uCi/cc in the table below.3.Determine pathway flow.If available, use the Unit 2 effluent monitor channel listed below.Alternatively, use the flow based on exhaust fan flow, figured below.Default flows are listed if exhaust fan status is not available.

4.Calculate Release Rates.I PATHWAY I TYPE GROSS FLOW CONVERSION uC/cc X SCFM X VALUE CALCULATED Ci SEC I NOBLE GAS IODIN I P ant Vent No le Gas Iodine I 4.72 E-4!ECCS'oble Gas A o ne I o e Gas I B I Iodine 4.72 E-4-"2 E-4'Total Noble Gas 5.Compare Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WQRKSHEET, Page 14.UNIT 2 PATHWAY PLOW DATA Plant Vent, (Grid 5)Channel 421 or 431 (Redundant Samplers), utilize"PROC FLOW N" (SCFM)Default 96500 SCFM Total Iodine Plant Vent by Exhaust Pan Status Check Pans that are"ON" ECCS, no monitored flow rate Default Value is 30000 SCFM2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 2 HVE 10A-84500 10B-84500 6A-6000 6B-6000 8'A-42000 SB-42000 16A-10000 16B-10000 17-6000 15-9700 7A-2000 7B-2000 ECCS A, 2 HVE 9A-30000 SCFM ECCS B, 2 HVE 9B-30000 SCFM Total of"ON" Fans (SCFM)/RS

ST.LUCIE PL'ANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISI01 8 OFF-SITE DOSE CALCULATIONS Page 9 of 30 RELEASE RATE WORKSHEET Bl METHOD Bl-UNIT 1 EFFLUENT MONITOR NOTE-Read Unit 1 CHRRM and compare to ACTION GUIDE 1A, Page 19.1.Date and Time of Data//2.Determine gross Noble gas concentrations via Eberline Control Terminal A or B.i)Enable keyboard, turn keyswitch on.'i)Press HIST MIN.iii)Enter the applicable pathway channel number.iv)Press ENTER.v)Enter the next-to-last data point from the lowest non-'alarming range into the table below under monitor data.3.Determine pathway flow via Eberline Control Terminal A or BE Alternatively use fan status or default figured on RELEASE RATE WORKSHEET Al, METHOD Al.Enter the flow, in SCFM, into the table below.EBERLINE CONTROL TERMINAL CHANNEL DATA PATIMAY Plant Vent ECCS-A ECCS-B Fuel Bldg.Steamline A Steamline B 0105 0205 0305 0405 N/A N/A 0107 0207 0307 0407 0501 0502 HI RANGE 0109 I 0209 0309'409 N/A N/A FLOW 0110 02 10 0310 0410 N/A N/A 4~Select IODINE FACTOR, use factors shown for pathway for accident type.Enter in table below.ACCIDENT APE PATHWAY Plant Vent ECCS A, B Fuel Bldg.Steamline A,B!LOCA 0 F 01 0.01 N/A N/A SGTR 1.0 E-6 N/A N/A 1~0 E-3 MSLB 1.0 N/A N/A N/A WASTE GAP TR 4 E-5 N/A N/A N/A FUEL HANDLING N/A N/A 0.0 N/A CASK DROP N/A N/A 1.3 N/A 5.Calculate Noble gas and Iodine release rates for each pathway, then add up the, Noble gas and Iodine rates to get total release rates.!MONITOR X FLOW X FLOW'NOBLE GAS X IODINE IODINE PAT1MAY DATA SCFM FACTOR Ci/SEC FACTOR Ci/SEC iPlant Vent iECCS-A I ECCS-B)Fuel Bld!iSteamline A I" I 472E4 I I I 4.72 E-4 I I'I I 4.72 E-4 I I I I I 4.72 E-4 I I 1 I 1.24 E-2 I/Steamline B I 1 I 1.24E-2 (I I Totals, Ci/sec Noble Gas 6.Compare the total Noble gas release rate with ACTION GUIDE 2A, Page 19'~Take the total Noble gas and Iodine release rates, in Ci/sec, to the DOSE CALCULATION WORKSHEET, Page 14.Iodine/R8

ST.LUC E PLANT E-PLAN IMPLEMENTING PROCF 3URE 3100033F., REVISION 8 OFF-SITE DOSF.CALCULATIONS Page 10 of 30 RELEASE RATE WORKSHEET B2 METHOD B2-UNIT 2 EFFLUENT MONITOR NOTE: Read Unit 2 CHRRM and compare with ACTION GUIDE 1A, Page 19.1.Date and Time of Data.//2.-Determine gross Noble gas release rate via the General Atomics Console for the applicable pathway.i)ii)iii)iv)v)Press GRID 4.Press the channel number shown in the table below.Press SEL.Press TREND 10 MIN.Record the value, shown in upper right corner of CRT, into the table below under data.3.Select Iodine factor for the pathway based on accident type.Fnter into table below under Iodine Factor.ACCIDENT TYPE PATHWAY LOCA SGTR MSLB WASTE GAS FUEL HANDLING CASK DROP Plant Vent Fuel Bldg 0.01 1.0 E-6 1.0 4E-5 0.04 1.3 ECCS-A or B 0.01 N A N A N A N A N A Steamline AorB N/A 1~0 E-3 N/A N/A N/A N/A 4~Calculate Noble gas and Iodine release rates for each pathway, then add up the release rates to get total Noble gas and Iodine.NOBLE GAS IODINE IODINE PATHWAY CHANNEL g DATA Z CONVERSION Ci/SEC X FACTOR Plant Vent Fuel Bld I ECCS A 604 l ECCS B 614 Steamline 2A Data~(CH 631))Steamline NET SL A Steamline 2B Data (CH 632)1E-6 lE-6 1E-6-(CH 633)1.2 E--(CH 633)NET SL2A NET SL2B jSteamline 2B NET SL2B 1~24 E-2 Totals, Ci/sec Noble Gas Iodine 5.Compare the total Noble gas release rate with ACTION GUIDE 2A, Page 19.6.Take the total Noble gas and Iodine release rates to the DOSE CALCULATION WORKSHEET, Page 14./RS

~I I~'I I I~~~I~'I4~~~Ie~II~~~'~I It~'I~I I I~I~~I'II'~~I~I~~I I~I I~I I~I I I II~~~~~~~II NM55$5 5 m%%%R%8$R%5$~%%5%EEE5555 5885LR55555

~Ni%$RRUR~SLR~I~HR&SSREa~5555~~~~~I~~o~~~~~~~~~~I I STe LUCIE.PLANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 12 of 30 RELEASE RATE WORKSHEET D METHOD D-POST LOCA MONITORS APPLICABLE TO UNIT 1 OR UNIT 2 1~Read Post LOCA Monitor.Circle values used: POST LOCA MONITOR READING (mR/hr)TOTAL NOBLE GAS RELEASE RATE (Ci/sec)TOTAL IODINE RELEASE RATE (Ci/sec)WITH SAFEGUARDS NO SAFEGUARDS

<60>60 to 100>100.to 1000 1000 l I 2~0 10.0 40.0 NEGLIGIBLE 0 03 0.14 0.60 0.1 0.4 1.6 I I NOTE: Post LOCA Monitor readings must be verified by HP survey.2.Compare Post LOCA Monitor readings to ACTION GUIDE 1B, Page 19.4 3.Take Noble gas and Iodine release rate to the DOSE CALCULATION WORKSHEET, Page 14.

0 ST~LUCIE'LANT F.-PLAN IMPLEMFNTING PROCEDIJRE 31'00033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 13 of 30 Date and Time of Data: Meteorolo ical Data METEOROLOGY WORKSHEET//NOTE: Three methods are offered for use.Method A is preferred to all others and Method B is preferable to Method C.")METHOD A)Site Meteorology Tower NOTE: Unit 2 Control Room has to contact Unit 1 Control Room for this data.Wind Speed Wind Direction)Prom Delta T mph)(Lo~~r Sensor, Upper Sensor~Alternate)(Lower Sensor, Upper Sensor~Alternate)

F)(Strip Chart Recorder, Digital~Alternate)

Prom Table below, convert Delta T to stability class METEOROLOGICAL STABILITY CLASSES STEP 2 I DELTA T RANGES F STABILITY CLASS DEFINITION

<-1.6-1~6 to<-1~5-1.5 to<-1.3-1~3 to<-0'B Extremel unstable Moderately unstable Slightl unstable Neutral-0.4 to<+1.3+1.3 to<+3.5)+3.5 E Sli htl stable Moderately stable G Extremely stable Take Stability Class and Wind Speed to the DOSE CALCULATION WORKSHEET, Page 14.METHOD B)West Palm Beach Airport NOAA Center Alt Vero Plight Service Station Go to Appendix C, Page 28.METHOD C)Default Values DAY Wind Speed Stability Class NIGHT Take Stability Class and Wind Speed to the DOSE CALCULATION WORKSHEET, Page 14.

ST.LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033K, REVISION 8 OFF-SITE DOSE CALCULATIONS Page j 4 of 30 DOSE CALCULATION WORKSHEET 1.Date and Time of Calculation

//2.Sum release rates.Enter release rates from the affected Unit(s).~Add, if applicable, to get total release rate from site.I UNIT NOBLE GAS Ci SEC IODINE Ci SEC METHOD j 2 Total Enter totals in Dose Calculation Table below.3.Fnter from the METEOROLOGY WORKSHEET the, MET Data.Wind from Speed mph, Stability 4.Enter in the Dose Calculation Table the WB and THY Dose Factor (DF)for the Stability Class and Wind Speed group.The factors are listed on Pages 17 and 18.Dose factors for distances other than 1, 2, 5, and 10 miles are listed in Appendix A.4 5.Check for Sea Breeze effect.If any one of the following conditions do not exist, the Sea Breeze Factor (SBF)is one (1), and go to Step 6.Conditions:

1.Stability Class A, B, or C.2.Time of day 6 am to 7 pm.3.Wind is (from)between 0 and 180.4.Air temperature

)surface water temperature.

HISTORICAL MONTHLY AVERAGE SURFACE WATER TEMPERATURES, F JAN FEB MAR APR MAY JUN JUL AUG SEP OCT NOV DEC 69 65 69 73 76 7 80.81 81 79 7.71 Select the appropriate Sea Breeze Factor (SBF)and enter it into Step 6.STABILITY CLASS SEA BREEZE FACTORS DISTANCE (MILES)10 A C 12~3 2.3 1~2 8.8 3~1.6 5.6 5'2.3 3.9 3.9 3.0/R8

ST.LUCIE'PLANT , E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 15 of 30 DOSE CALCULATION WORKSHEET (continued) 6.A Complete Dose Calculation Table.WHOLE BODY RANGE NOBLE GAS MILES I 2 5 IO CI/SFC (X)DF (X)SBF (~)MREM/HR THYROID IODINE THY CI/SEC (X)DF (X)SBF (~)MREM/HR 6.B ENTER DOSE RATE RESULTS FOR INDICATED SECTOR&ADJACENT SECTOR ON EACH SIDE: WIND FROM 168.5-191'191'-213'213'-236.5 236.5-258'258'-281.5 281 5-303.5 303.5-326'326.5-348.5 8-11'1'-33'33.5-56.5 56'-78'78.5-101'101.5-123'123.5-1 6.5 1 6.5-168'AFFECTED DIR SECTOR ALPHA NNE BRAVO NE CHARLIE ENE DELTA ECHO ESE FOXTROT SE GOLF SSE HOTEL JULIET SSW KILO WSW MIKE NOVEMBER WNW PAPA NW OUEBEC NNW ROMEO mRem hr WHOLE BODY (t MILE 10 mRem hr THYROID 9 MILE 10 7.Compare the WB and THY dose rates with ACTION GUIDE 3A and 3B, respectively, Page 19.8.Inform the Emergency Coordinator of the data and assist in including this data in the PLANT/RADIOLOGICAL CHECKLIST, EPIP 3100021E, Page 8.9.On a form similar to Page 16, track the Dose Accumulation for Appropriate Sectors (half hour updates).10.On a form similar to Page 16, track the Dose Projection for Appropriate Sectors./R8

ST.LUCIE.PLANT E-PL'AN IMPLEMENT NG PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 16 of 30 DOSF.CALCULATION WORKSHEET (continued)

This is (check appropriate box)f J A Dose Accumulation Worksheet, Time of Applicability

[]A Dose Pro)ection Worksheet, Applicable to DOWNWIND DIRECTION N ALPHA)NNE BRAVO NE CHARLIE ENE DELTA E ECHO I ESE FOXTROT I SSE GOLF SE HOTEL I S JULIET SSW KILO I SW LIMA WSW MIKE j W NOVEMBER)WNW PAPA I NW OUEBEC)NNW ROMEO WHOLE BODY mRem 8 MILES 1 2 5 10 THYROID mRem 8 MILES 10 ST.LUCIE PLANT-,.-E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 17 of 30 DOSE FACTOR TABLES mRem/hr per Ci/Sec MILES 1 I 2))5)l 1O)>0 to 2 WB THY 1.25 2990.668 1600.360 863.360 863 STABILITY CLASS A WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY.416 998).208 499.223 534).111 267 I 120 288 I 0599 144).120 288).0599 144>9 to 18 WB THY.104 250 I.0556 134 I~0300 71.9 I.03OO>18 to WB.052.0278.015.015 36 125 I 66.8)36 STABILITY CLASS B/WIND SPEED GROUPS, MPH MILES i 1)l l S I 1O>Oto 2 WB THY 8.9 21400 2.26 5410.388 932.360 ,863>2 WB)2.97).7S2 l 129 I.120 to 4 THY 7120 1800 311 288 I 1~48).376).O6S I~059 to 9 3560 I 902)155 I 144>9 to 18 WB THY.742 1780.188 451.032 77.6.030 71.4>18 to 36 WB THY.371'90~A94 226).O16 38.8,)).015 36.0 RANGE>0 to 2 MILE$WB THY I 1 I 22.5 54100 I 2 I 6.54 15700)5)1.25 3000 I 10).468 1120)STABILITY CLASS C WIND SPEED GROUPS, MPH>2 to to WB THY WB THY 7.51 18000)3.75 9010 2.18 5240)1.09 2620 I.417 1000).208 500.156 374 I.078 187 I>9 to 18 WB THY 1.88'510.545 1310.104 250~039 93.6>18 to 36.939 2250 I 273 654~052 125)~020 46'I STABILITY CLASS DMILES l 1)l 2))5)1O>0 to 2 TFY 46.2 1.1E+5)18'4'K+4)5'1.3E+4)2.1 5030 I WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY 15.4 3.7E+4)9.'14 2.2E+4)6.31 1.5E+4)3.51 8410 I 1~83 4400 I 964 2310 l~70 1680 I~36 863)>9 to 18 WB THY 5'0 1'E+4)1.96 4710.511 1230~186 446)>18 to 36 2.70 6480 I.982 2360.255 613~093 223 I ST.LUCIE PLANT.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 18 of 30 DOSE FACTOR TALBES mRem/hr per Ci/sec (continued)

MILES I 1 I I 2 I I 10>0 to 2 WB THY 70.6 1.7E+5I 33'7'E+4I 11.6 2~8E+4 I 5.07 1.2E+4I STABILITY CLASS E WIND SPEED GROUPS, MPH>2 to 4>4 to 9 WB THY WB THY 23.5 5'E+4I 15.9 3'E+4I llew 0 2.7E+4l 6'3 1 6E+4l 3.87 9280 I 2~15 5150 I 4050 I.897 2150>9 to 18 WB , THY 10E+4l 4.05 9710 I 1.18'840 I.475 1140 I>18 to 36 WB THY 5.1 1.2E+4I 2.02 4860~592 1420 I.237 570'ANGE>0 to 2>2 MILES WB THY WB I 1 I 125 3E+5 I 42 I 2 I 64 1~5E+Sl I 5 I 25'6E+4 I 8'10 I 12.1 2.9E+4I 4.0 STABILITY CLASS F WIND SPEED GROUPS, MPH to to 9 THY.WB THY lE+5 I 31 7~4E+4 I 5.1E+4I 14.E+4I 2E+4 I 5'1~2E+4I 9670 I 2.2 5300>9 to 18 WB THY 19 4.5E+4I 8.53 2E+4 2.9'660 1.2 2840 I>18 to 36 WB~THY 9.5 2.3E+4 4.3 1E+4 3330.60 1420 STABILITY CLASS G RANGE MILES I 1 I I 2 I I 5 I 10>Oto 2 WB THY 196 4.7E+5I 111 2.7E+5I 52 1.3E+5I 27.5 6.6E+4I WIND SPEED GROUPS, MPH>2 to to 9 WB THY WB THY 65.3 l.6E+5 I 57 1.4E+5 I 37 8.9E+4I 28 6.7E+4l 17 4~1E+4 I 11 2~7E+4 I+I 5'1.3E+4>9 to 18>18 WB THY WB 31E+4I 15.4 17 4'E+4l 8'6'1.5E+4l 3'2'6980 I 1 5 to 36 3.7E+4I 2.0E+4I 7540 3490

ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 19 of 30 TABLE 3 ACTION GUIDELINES In-Plant Systems A.Containment High Range Radiation (CHRRM)INSTANTANEOUS READING<7.3 E+03 R hr>7.3 E+03 R hr>1.47 E+05 R hr EVENT CLASSIFICATION No Emergency Classification Site Area Emergency General Emergency B.Post LOCA Monitors (Backup to CHRRM)-Verified by Survey INSTANTANEOUS READING<1000 mR hr>1000 mR hr EVENT CLASSIFICATION No Emergency Classification General Emergency 2.Release Rates: A.Noble Gas Releases INSTANTANEOUS READING<0.083 Ci sec>0.083 Ci sec to<0.83 Ci sec EVENT CLASSIFICATION No Action-Within Tech.Spec.Limits Unusual Event>0.83 Ci sec Alert 3.Dose Calculations A.Whole Body Dose Rate at 1 Mile: INSTANTANEOUS VALUE Not applicable

>1000 mRem hr 2 MINUTE DURATION>500 mRem hr Not applicable HALF HOUR DURATION>50 mRem hr Not applicable EVENT CLASSIFICATION Site Area Emergency General Emergency B.Thyroid Dose Rate at 1 Mile: MINUTE DURATION HALF HOUR DURATION EVENT CLASSIFICATION Not applicable

>2500 mRem/hr>250 mRem/hr Site Area Emergency C.Integrated Thyroid Dose at 1 Mile: l ACCUMULATED DOSE EVENT CLASSIFICATION

>5000 MREM GENERAL EMERGENCY 0

STf LUCIE PLANT..A'.E-PLAN IMPLEHENTING PROCEDURE 3100033Et REVISION 8 OFF-SITE DOSE CALCULATIONS Page 20 of 30 APPENDIX A DOSE FACTORS FOR STABILITY CLASS A'4 w oouY uvoc FCfa 3TttBILI7t'LA>v tt-(ai~cc)/rfa) t cd:.tt tt 1.v Ci/3EC E)ita3GaL~t tatttc~~4 I<<\1lnu (%ri)f I~A Ce A Oo't~Oo 74 f)I'Itl QM-RILE" IVe ll~I,~A I~C%'h)V 04OOC Vl 4ofQC Vl A A A~Oo DVCVI A At A~Oo OVCV I A~AP A~Oo OVCV I A jot~deoVC 01 A AP A~Oe OVC Vl AP~~G I OVC<<J I A~At A~JIOVC Vl A~AP teel)VC A~~P A~a Deva 2.rX+1 1.&<I 1~2VC 61 I et A I~CVC Vl~PAP'\I AIIP Ae I~'CV I I~IJCV I~AA A~I~~VC Va~A'lt A~Io<<'C Va~AAP A~I~'L'C Vl le<<<<J<<J.'\KC Vl~~~P A~I~I I CV I ttt+A I~JCC 54 TJC V2 54 f tC VJ.5~-cv".54 JJC VC 54 1tC VC 54 7PCVI.AA Je tCVL Atr Ii uo ttc>>4 7 10 1.v4Ev1 5.5/JEv2 3.ooEv2 I A PAP i<<A AAI At\Oo WCVC Oe WCVC 34 WCV2 A+At A AAP AA A AAP AA A AAP A A AAP AA A AA AA OoVVCV'eWCVC OoWCVC OoWCVC IIIWC V.Io-36 A P A A<<A AA~AAt AA Joliet OC Co/OCVJ'.I~I iK Vl.f jlt lA I~ijVCVC 1~54vc C42~fAI AA I 4 ijvc>>3c~PAP AA I fit I~IJ4JC Va'.I~ejVC VC f jlP lA CAP IA I~iVC J'J444CVL w'Ittu (t n)7noiu uv3E FaJR STttSILI7t'M tt-t'ai/ntt)t co 3EL jot tt a.v~I/3EC cNI33IBt FJITc A<<~~tl At<<<<ert~~LIVttttttlllu LoakttfOLC nlLCG I~l I~'t~5.Oe I~~*IVI C~i V A Att O'\Ct JoVVO I~OVEfV G~~~P~AA Il tr AA A~At AA A Ar AA l At AA I~I actVO OIO<<K VC OIO<<KML OIDGC VC OoojacV'lt A jtt 44 DIG<<K+V@G~OGC"'tr.AA t at AA s ox>>J o DK<<v'Dace'~J.Jocf02 54QcW<<347CE<2 2eooc~J2<<o Doc+)2 2toocvL 24oocv2 A PAP AA A AAP Ajl L IÃCNC e'.~OOC 1 A AAP AA L I 4GGCfVe'.A AA AA'DOC&<<'AAP'I~OOC>J~A~tetr Atl tl<<P~AA~Aft AA~~~I AA~~~AA~~~et~~~P AA~~P AA~~~P AA I~~P A f,t.c<<VL LIOICfVL I~OJCfVL I~fwc<<VC',etc<<JL a,w<<C<<J I~<<C'J I~~cfeJ'of<<C V-I~<<Cf'JC~act AA~~et I~'t<<CW'~A A IO A feP AA<<I IJVC<<VC Aet jlA A A A~<<~AP,A~~~t.A~IIM<<VL 1~<<Oc>JI I~I JCfVI I~ITC Vl~Aj A~<<~At~A~<<~Ar A~~tt I'~~P A~IAP A~A I I~I JC<<VI I~ltcfjJI 4~I CeVIZC Vl I~I'Ce"Ja"~I.C<<'Jl I~a~C>>'IO 4'I~C JC+eJX t~t~A A~A 4P I A A~A 44 4<<~A A A~A t~'I t A I~.A Ae A~A Oe DOC<<V1't~OtKfVI)I OIJC>>JI Go OIJC<<VI jae OL'0 Vl Ge OVC<<VI I~GVC<<VI IOVC Va I~O'J Va I~GVC J I G~Gajc<<J

ST LUCIE'L)NT

.E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 21 of 30 APPENDIX A DOSE FACI,'ORS FOR STABILITY CLASS B iaaiau P OAOO~)IVovLc evul a)vec ILA OliaoILII I QJ1303 8-ii)IaEait IV%)s eiiecu o.n n l~v vll ci.caiaeeaaa hnlc RQ4)I)au DISTriivc-ilILES l~tl Ce eo'I~5.I~Oo r~lVI~~lao aCI A to V C A AGE+A 2o 2ecW 1.GIEM 5.oeEv"a 3oeec Gl 3o evAEGI A AP A~A~AP A~deeVC Vl doOVC Vl A AI il A A\~el OVCVl el OVCV l'I A Al A~eteVC'il eteVC'il 2-4 APP+A A'Il C 7.52Ecv1 3.35EpGa l~orc vl I Ioc~E-GI~AAI A~~tsAP A~~AAP A~l~CVC Vl l~save Vl l~LVC Vl~AAP A~l~Avc il~tlAP'I~l~P'Vcoil AAI A~l~P'VCV I~AA A~l~AVVC 4 l.4eciGG 3.7oE+I l.6ec<I"r.44E~I2 Oo4IC V2 5o I rCVI.5o I>CVC 5o rrcvc 5o orc vc 5.rrc i2 5.:rc i2 5e rrcvI.9-Io 7.4uŽP01 1~Oec Vi A A~APGA~PAP A li'il ICC VC li ls~I AA Oo C'ICVL 3.GGEv2 A AAP AP A AAP AA et WCVIa et VVCVC el WC'PAP*A 0~WC'AA AA et WC VC Ae~9.4C&)2 4.1$Ev2 P Alt AIS I.o iRCVI I.o2Ep02 1.5GEp02 JAP AA 1~AAICVC l oPC~V'~5VC v2 l~5VC li2~0 AP Ale l e SVCVC w'Ihu FEED iiii.al)ittvID uvec Evaa STASILIa I'M 8-i%%uiPR)i eiaecu i.n A a.v vaieci.Cnaeeavii RriTCE II uvimQI)iD DISTrhm-BILES l~Co li ee 5.ee I~lV ll~~A l'0 2 2 14Ei04 5 41&03 2 41Ei03 1 30ci00 r~Olci02 0 Oee+0'OAKpV2 0 OAKPi02 0 OoK I 0 OiK VC 0 Odcovc 0 00Ci02 2-4 7.I cciGS'l.oviiG3 8.0%F2 4.50ci02 3.I IEi02 2.oeci02-"" ooci02 2.00Ei02 2.OOEi02 A AA\P AA Al\CoNC VC CoNC VC A Att AP aeeecV'~3o iVcs03 I I PcciG2 4.v2Ei02 2.270 i02 I.K<i2 I o 44"v2 I~44Ei02 a.44ci02 I.4 ci02 l~44ci02 a~44Ei02 a.44ci02 18 l~70Žc&3 4~51Ei02 2 GIEi02 1~1%iG2 s.70Ess01 I~lrci0l I~irciGi Te a ci01=~I iGIi l~llE~IGi A O~A i~AGAEiGAA se~P A~A~~,AA~P\~P AtsP A~A AI A so Al A~A A al~A AP A A AI A~I A~A IA A~I o LOCiGL l~Vlcsoesf 5e 6CC'sua etsAOCWa ee Ov Va ee OVCVa 0~esiC+ia re OVCVa coo'.IC'ova

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ST.LUCIE PLANT'E-PLAN IMPLEMENTING PROCEDURE 3100033Et REVISION 8 OPF-SITE DOSE CALCULATIONS Page 22 of 30 APPENDIX A DOSE FACTORS POR STABILITY CLASS C tl l IQ~or wrrdi ttn0LE o0uY DOoc r0n STADILII t vtjtSS C-tmcn/mi t BAocu tot A l.v Ci/SEC cttioosvtt ItAtc u0ittQIHD DISTrViCE-BILES l~A lo Oo't~5.6.I~A Oo~A lve ll~~A llo 0-2 2og~+01 6,54E&SoISEA Io87dw" Iocw<4 8.rrE<I oo80EP01 5o74cP01 5o iirVi 4e6oc Jl 4~lrc vl 3 Icvi 2-4 7eSIEt00 2o 18Et00 l~0eEM 0~24Ep01 4.lIEvl 3.00EpDI".2Icvi 1~r IEADI I~7lcvl l~5ocvl~eAA A~l~'tOC Vl~AAo'~1 l~OCCVl<3o'lrEh4 1~0lct00 SolirFIII tntnvlu uvoc rvn STttolLIT't'rtoo C-ititctt/nuit DA~Qt A l.0 Cl/SEC EIIISSIttt Itt'ttc l~A lo A Oo 5.Oo I~Oo r~~*lVo ll~tho 5o4IE+04 IoSTCO I~SOEt03 4 41&VS Se00EHS 2 ICE+VS le RC VS I~OE+(3 l~24EC+IS I llc VS l~VSE VS o'2CE%2 A~l't l~80'o 24EKS 2 e 52Et03 I 50E<3 1~00E 03 7o 1 rE<2 5.44Et02 4~5 r EI02 4~12Et02, 3.74EPoJ2 S.4SEm*2 3.b cteJ2~A't r A A~AA A~AP A~A~P A~AP AA AA A PAP A A AP A A AAP OA A A P AA rovicvo l olc60 I elocute 7o'trctvl 5 eXcml 0 vrcvl l I'l l lrcvl l V6ctvl~OA l o 0 I Ct'I'e ILC~$P A l~41CVl r 10 4o SrlC 0et 1~SlE&3 Oo30Et02 Se IIE&2 2oSAJCWL l~OVER l~ieoctVA2 I~l Sct02 l~Vir+02 A A P~A~I e erCC V l'AD Oov'OC Vl AAP A~I~roc&a~A lo A APP AA~o A A~PP A~AAP~AA App,oA A AAp~A Aht A t pep A~i ep A~ColiC VO OoStcdl l~lSCEHl loOIWl I~lirterl Oorrc&l Oeovchll do ltcooJl 5e I CV~AP h~~AAP A~'toOOCOVI'tel rc'Ovl A~I C'tvl

ST<<LUCIE PLANT~E-PLAN IMPLEMENTING PROCEDURE 3100033K, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 23 of 30 APPENDIX A DOSE FACTORS FOR STABILITY CLASS D tt)lVLE KIJY K%Fvra SIABILI IY G ttoo ae ilfP/)Itt) t SING i4t rt I~V>>II SEtt BIISSIQi/tetr C<<IIIII i>>rH)+ta Co A Oo Oo I~Im)<<ir)I)iD Glott't)rX

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PLANT'-PLAN IMPLEMENTING PROCEDURE 3100033Er REVISION 8 OFF-SITE DOSE CALCULATIONS Page 24 of 30 APPENDIX A DOSE PACTORS FOR STABILITY CLASS E wM SGui uvoc FGn STASILII F vtjtSS E-FeE))JItt) t SAocu~Xi A 1.0 CII'SEC c)i'xKAI'll Iv'tlcE KitntiIQ uISTthvc-ifILES A io A Oo'to 5.Oo I~Oe o~lVe ll~A lie 0 7.0bE<f 3.31&01 2.fOE<f 1.5IE<f l.foe+01 r.35Et00 hh I~I Oc'tvv~At AA 0~tMCtVV 5e I Octvv h~IA A~VI Ctvv~oeP hh'toIJtctvv ~h hh'toVO~.AJI 2-4 2osroIc<f le fGERf os rrc 00, 5e 02cE~oo 87EM 3o iC P~AA is II I CttIV~AA~tl A hoilC W 1~riC~JV 1~orc~JV Oht Ah 1~INIC eJV i.o c JG.4 9 1.5rEKI o.73EC~4.GIEMr 2.84'.1%M 1.71E~~~eP AA 1~'t 1ctvv eA h 1~lrc w~htP hh A A P t~1oviC'tVV Oe rIC'Jl I~rOCV1 P he 9-i8 1.0ic+Oi 4.G5c+00 2.35'.5r Et00 1.1 SEM r.SGEpGI 7.59E~)I O.SoEp01 5.45Ep01 4.I~c J 1 4.1 9'3.74c'Ji'I.lo 36 5e IGE+00 2oOictGO 1~I/Vw 7o97E Gf 5o ric vl 4eolc vf Se I rc Ol>I loc vl i~~Itc vl'ISIc vl 2e IGc IJf 1~SI T)ttnOID uOOC FGR STASILITY CLASS E-(%9/M)t SAN@Qi tt l.v vlIocv ct)lorlvtt ntttc oil)tu SFEED (t~r)+to io 3o'to 5.Oe I~CQtittilitu DISTt't'tvE -))ILES O~r~lVs~~11~~A the 0-2 1.7GEt05 7,9mt04 5.03Et04 S.oft@2.7m&4 2.24E~'l.oIc"J4 1.5rcm4 i~Soc'v4 i.chi J4 l.voc v4 r.i.ctv3 4 5o O~C t04 2e O5C+04 1~Coct04 1~2VAEteJ4 r~ioc+03 7o 4OCt03 0~'%43 5e 31EtGS 4eolc vS'e~GSE+GS So OlEt JS Se iKtoJO A AOP~At h~'P~IA~~ht hh AAP hh A AP~AA A~hh~~tIA~A~P AA Pt hh 9 dsolc&1~Oic~9e IOE OO O~Ohctvo 5o 1+4 VO to 1VCtvlt OoOOC VO~O&t JO is'IOC~O'tIC~JO 1~rlc'tVO 1~I lc~rls A lo A etP h~A oo~A~AP hA A AAP IA A A~~tl h A AAP AA~AAP AA~P P AA As~AA~AA~h A A A~AA io'I lcoePt I~Itch 5 NX%O O OOC'tVAo ioOlCtv)i isa'tVO 1 Oictvo 1 ACI JO 1~OIVVIr 1~o'tc Vo 1~VlC VO O~Ct Ji AAP,~~AsP A A Ae~,IIA Ae~,AA~~AP hA~AP AA A hl hei oP hA I o~hA PAP hh o hA AA 1 eQC 04'toOOCtGO isolC Vlt 1~I tc+JO 1 otictv le iiC VO I~1VC Vi I sK V Oo etC Ji Qe I'JC Vi 5o otOC Vo~~P AA s STe LUCIE'LANT ~"'-PLAN IMPLEMENTING PROCEDURE 3100033EI REVISION 8 OFF-SITE DOSE CALCULATIONS Page 25 of 30 APPENDIX A DOSE FACTORS FOR STABILITY CLASS F l o=a r II'inu DWEEB 0 2 A S 4-r 9-}S 3 art<1 1~4}E 0}.oeorcr00 I~s7s/C+/V C'ItnvLE"qquY-uvoc.Fvn" oittoiLIT'I LLnoo F.-I~i'rp oft IIII lt I I'/I"llKC c~fISSI".r" IIIITE-CQHli'IS: uISTI't}tot= HILES~'"-"-~~s 1~'js/Et02 6oOOCr0}'eMW} So@VCR}'54C10}s, Cev<c+0}le/Otru}I otrtr0}"'es7ocrv} lo2 C.Vl l VrcrSI}~Oh 4}SE+01 P 2o lŽ~chtl-~is 4SCE<}--"1 e v7Er'0}:Oe 46E<st/-o.roErILsSe rear'Ihrv-5.IOC~4-r'52Env r~e/aSSE'srt-~a OSEr've'I~*." 4e SSrEchpy.. 4s 0VE~Se Ssicr00.2eo/rIV 2o SVE~/0 2s2}E, VV h I~7+C'r/v s l-a a"}.Or Et0}LSOCW 5.2}E+00 P3'65EK6 2.r OE+00Cesar;=}.OOCr'00-"}.56E~W 1~}rcr0V l~vCC+Jv~A los A AAP hh ,~Orc~rV A Aha hh'XPVV~'r lr hh I~I 7t&V~AP h~~rrc VI 18-So 7~46Er'00 4o 26Er'00 2a 6VEr'00 la OS'1 sorer'00 1 eErw r.bcp01 7.7 ecp0I 6.74E<}So rocvl Sococ~/I re IA vl~~l A Ii liiu ol ccu (iinnl IIIIRID uvoc Fvn STltoILITI VLnoo F-lincH/tni~ottocu vt}tt l.v triicctr ci}iooiLri /VITE l~Ce alp 5.Oa I~Oe 7~~h lVe ll~I'h ri V C A PAP h 5 e QAP+h 1 o vSEcrvAS=7.67'AAP h o~AAP h~A hP h~h rtr h~5 Vs7trV4 reh/C Ir O Ivcrvr Autre'.'r A har h~l~7VtrVr~~h~Olcrv A h~Cs Oi c~/r 2-4 r.r6cr'Irr'. }vEr'04 A a APE 2.56E+04 2 o Ooocrvr 1.6OCW}.42cE~i.M+v4 I.vM~~A P AA 7 e 0/CrVO A~~hA 0~I ItrV o Aa/~I C~IO 4-7~AP h~A AAP~h~I.rlc rvr Oe OOCrur 2e}SCE+04 1~Soc 0r le'1 rt 04 A OP AA 7~OICrVO h OP rap aA O Vrtrvoo O OCCro/O hh hA Oo Vt:CrvJ'al hh de 4I.'CrVP~hc h re~ostoV 7 7-13 4.BE+04}.2%M A APP+hh Oa I/C Vst hh Oo OocrVO 5 e Pic,rvo~~AP~hh A P~~hh'I~rVCrvr Oe I CrVO h S P~.\A rcr w hah hA I, OrC V'O P hA~seCC Voo A A AA err 2.2)EK4 l~v2cEr04 6 o 25CEf03 A A+A hei h~P hh L o COcrvos A PAP ah A%AA I..I VtrV O i o Oi C~I)AA~~Olc VO~hl~s rl I~ro,trVO A>>A l~~pe crVI~hr I C V ST+LUCIE'PLANT ~'-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OPP-SITE DOSE CALCULATIONS Page 26 of 30 APPENDIX A DOSE PACTORS FOR STABILITY CLASS G IIIIIII yEEB I FIIJ~t<<A<<<<Alt Ah>><<0 Af shel ttht<<lAh A~trhrht t th~tt~Ahtt htl~~h A~thhh Aht~Atrr As>>linus 000i kec rvn oitt8icaii virtoo u-Irincriinnil ottocu 0n tt a.v va/>>i cna)oat.tl cnic 6$i%UIID DISTAt4X-BILE l~A js A ot 5.Os I~r Ce~A aVs al~~A lI~0-2 1.96Ea02 I.IIE~02 7.roc<I 6.26E<I 5.16E<I 4.~~601 A A<<A~sat OLCVl Ss Aohc'%1 A AAA he Oe IMC~Il h fl~js htac'tva A At~Cehhac&'a A~j't o~53E<I 3.7vE01 1.46E+01~A>>l~hldira~~AA h~~her't l~ltac'tva I~vlc>va A t~Ah r a Kwv A A A Os OOCVV~<<'lh I~or 5.6%61 2.8IEHI 1.8icvi i.ore<I 1.aibOI r.Ioc+00 I~I rcvv 0.7I C+II0~Att hh~~~~0 C Wtehact'.Ar 9-18 3 linc+01 l~66E>V0 S.73>>EVO S.2I CV0 2.r'I c Vit 2.62EVV 2.3 I cnÃ~A At lo sao 1~54'<<cW 5.4I cQ 4e 0IE4 3e 14EV0 2e 5I Nl 2e I Ic+~r0 I~8:dw I~64E'iY'~4~K>w I~SIC+A 1~l rc>A>t".CnISSIiII Ivttc'aaretntitIO uISTnn7E-tiliES l~I.~'t~5.Oe I~r Oe\A av~~~il~ah~0-2 4.70E+05 2.o7E+05 i.r 1&05 i.5IKm5 i.24Ew5 l.vÃw5 9e 1I cd 8.i21~>4 7..I cav4 n.5rcv4 o.v2Em4 2-4 I e5ic<5 8.OrEW o.one*'.0IEhVe 4.aSEv4 3e 51&Pt St06Ev4 2~7lchII4 2.42Ev"" 0E~v4'.vlEv4 i.0 Kv4 4-9 1.Xc<5 o.74Et>4.4%+v4 3.34E&2.66Ev4 2.2vEm i.otciI4 a.63c~r4 i.~<<I4 a..ww4 i.ieEw4 h A~9-18 I~earckl4 3s roc~ce 6&rt I e rstcM I~5ic+l4 I~~hocv4 le V4cv4 oe 9nc&3~shNKvd 0~rocvo~rA hA c h AA 0~OCVO ht~I VC Ic lo 30 3.ore<4 I.rrE~04 1.3IE~r4 r.o>>+v3 7.54BPs o.iicmS 5l2vEwS 4.4ncv3>sr:c~a oe~SE~vo A A rA hr h~a'tcVhh at O KVh ST.LUCIE PLANT'-'LAN IMPLEMENTING FROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 27 of 30 THIS PAGE INTENTIONALLY LEFT BLANK 4 ST~LUCIE PLANT'-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 28 of 30 APPENDIX B BACKUP METEOROLOGY WORKSHEET In the event data is unavailable from the meteorological"strip chart recorder, use the following procedure: A.Gather Data 1.Date: Time e 2.Phone the West Palm Beach Airport NOAA Center at 64-305'-684-3633 or (alternate) Vero Flight Service Station (Stuart f)287-8021.3.Copy current weather:/R8 Time of observation: Wind Direction.'ind Speed: Sky Condition: Clear or Scattered Broken Eastern (Standard)(Daylight) Degrees Knots Overcast**If broken or overcast, copy ceiling height: ft.4.If daytime (1 hour after sunrise to 1 hour before sunset)go to Section C (next page)~B.Nightime Calculations 1.Determine Solar Radiation Characteristics: Sk Condition~Cei 1 in Radiation I OVERCAST I)I<7 000 I-~es-)I NIL I BROKEN I GLAR OR SCATTERED)2.Choose Stability Category (D through G)WEAK LOSS I STRONG LOSS I Solar Radiation Nil Weak Loss Strong Loss 01 2,3 D D F F G Wind Speed (knots)4 5 6 7 8,9 10 11)11 D D D D D D D E~E D D D'D F F E E E D D 3.Go to Section D. I P ST~LUCIE PLANT E-PLAN IMPLEMENTING PROCEDURE 3100033E, REVISION 8 OFF-SITE DOSE CALCULATIONS Page 29 of 30 APPENDIX B BACKUP METEOROLOGY WORKSHEET C.Daytime Calculations: 1.Determine solar altitude (angle of sun above horizon)using Graph C-l.2.Determine Solar Radiation Characteristics: (Nil, Weak, Slight, Moderate or Strong).SOLAR ALTITUDE Sky Condi tion Ceiling Ft.I<15 15-<35 35-60>60<7000 7K to 16K>16000<7000"Broken" 7K to 16K>16000 I I"Clear or Scattered" N/A NIL Weak Weak Weak Weak Weak Weak Weak Weak Weak Slight Slight NIL Weak Slight Weak Slight Moderate Moderate NIL Slight Moderate Slight Moderate Strong Strong 3.Choose Stability Category (A through D)Solar Radiation Wind Speed (knots)0,1 2,3 4 5 6 7 8,9 10 ll>11 Strong Moderate SliRht Weak Nil A A A A B B B B C C C D D D D B.B B C B B C C C C C D D D D D D D D D.C C C D D D D D D D D.Input to Dose Calculation System Take information to the DOSE CALCULATION WORKSHEET, Page 14.1.Wind Direction (from Step A.3)2.Wind Speed degrees 1.15 x 3.Atmospheric Stability (knots)mph (From Step B.2 or C.3)(Circle One): A B C D E F G RI DA AV AD N SrED FOR Valaitr IIIO rIME wolANT I WVICII SOLAR ALTITUDE BY TIME OF DAY ST.LUCIE PLANT T JNC ALT~I Sl tlt I40C 0 r CORREClED EOII LOIIQITIJOE OCIOOSO IRIS IWl 0 COCCI TOO 0<16 16'-36'~10 I 11 12 I 2 i',I I'I , sP'i.I I!36'0'40 10 i2 Tt g (h M aw o op rnn+o WWM a n Q I i I I 35'-40'Pfl M CO M O CO IO I!~,"I sAMW ni52I25 OlnIAkT 0 5 tOtS IIAncI I I I I IO I ZITI 20th S 5 202 k..Ill f 0 5202 AIIC 0 IS 2025 AAT 64 16'3~~0 I 20 25 NJQUSI 5 0 202 SIJII40III I OI$102$5 1015 202$IO 20 25 oc I oLo 0 Hovl 4ul 0 Io cl Qol 0 O m', OIIheu C~lt Ugl.ILEhb T1HEI Page 1 of 13 FLORIDA POWER&LIGHT COMPANY ST.LUCIE PLANT EMERGENCY PLAN DiPLEMENTING PROCEDURE 83100026E, REV.9 1.0 TITLE: CRITERIA FOR AND CONDUCT OF EVACUATIONS 2.0 APPROVAL: Reviewed by Facility Review Group Jul 25, 1975 Approved by K.N.Harris Revision 5 Approved by iewe by Fac ity Review Group March 20&25 19~8 V.P.Pwr.Res.l~Revision 6 R'e ed b Faci Review Group a 2.8 19 8 l Approved by V.P.Pwr.Res.z 19&~Revision 7 Rev~d by Facil Review Group 1 Approved by Revision 9 Revie'y Faciiit Review Group.Approved by.P., Nucl.Energy Z 1982.1982.5~Pl-8 1982.3.0 SCOPE: 3.1~Per ese This procedure provides criteria for determining if evacuation of a local area on-site or the Owner Controlled Area should be carried out.It provides instructions for effecting an ordered, rapid and safe evacuation of a local area or the Owner Controlled Area in order to prevent or minimize radiation exposure to personnel. It also provides instructions for personnel account-ability.3.2 Discussion 3.2.1 Accurate classification of emergencies that may occur at the Plant is necessary to enable the Nuclear Plant Supervisor to take the proper corrective action and to know when to initiate the Emergency Plans.For those emergencies involving high radiation and/or the release of radioactive material to the environment, it is necessary to provide the Nuclear Plant Supervisor (Emergency Coordinator) with guidelines that will enable him to know when to order a local area evacuation or"evacuation of the Owner Controlled Area. Page 2 of 13 FLORIDA POWER&LIGHT COMPANY'MERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 3.0 SCOPE: Continued 3.2 Discussion Continued 3.2.2'A local area evacuation or evacuation of the Owner Controlled Area may be necessitated by the occurrence of any of several events where evacuation of personnel would be necessary to minimize their exposure to radiation. An Owner Controlled Area evacuation will be conducted for any Site Area Emergency or General Emergency. /R9 This procedure implements the St.Lucie Plant Radiological Emergency Plan.3.4 Definitions: /R9 The location to which evacuation personnel report.In a local evacuation, personnel evacuate and assemble in a location designated by the Emergency Coordinator. In an evacuation of the Owner Controlled Area, evacuating FPL personnel from the Protected Area go to the Site Assembly Station on Highway A1A near the north entrance to plant property, while non-FPL personnel and FPL personnel from outside the Protected Area assemble at Jaycee Public Park on Highway AlA, 7<miles north of the plant.If necessary, other assembly areas can be specified by the Emergency Coordinator. /R9 3.4.2 Escort An individual specifically assigned to accompany other persons who are required by the Security Plan or Health Physics Manual to be escorted.3.4.3 Local Area Evacuation An evacuation of some portion of, but not all of, the Owner Controlled Area.It may include evacuation of a room, building, group of buildings, generating station area, or other portion of the Owner Controlled Area.I Page S ol FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN DPLE>KNTING PROCEDURE//3100026E, REV.9 3.0 SCOPE: Continued)

3.4 Definitions

Continued) 3.4.4 Owner Controlled Area That portion of FPL property surrounding and including the plant which is subject to limited access and control as deemed appropriate by FPL (indicated by the line on the attached Florida Power&Light property plan, Figure 1 of this procedure). 3.4.5 Owner Controlled Area Evacuation The evacuation from the Owner Controlled Area of all personnel except those required to place the plant in a safe condition, the emergency teams, and the guards necessary to fulfill their evacuation responsibilities. 3.4.6 Radiation Control Point Located in the Auxiliary Building, it is likely to be used as an assembly area during a local evacuation.

4.0 Precautions

4.1 Every effort shall be made to minimize personnel exposure to radiation. 4.2 Personnel who have been in the area of the emergency shall remain in a group, and shall not mix with the other personnel in the Radiation Control Point or other assembly area until they have been monitored for possible contamination, unless they are injured.Injured personnel shall be treated as discussed in E-Plan Imple-menting Procedure 3100021E, Duties of the Emergency Coordinator. 4.3 Except as discussed in 4.2 above, personnel reporting to the Radiation Control Point or other assembly area shall group according to departments in order to facilitate personnel accountability and monitoring. 4.4 When reporting to the assembly area, take the most direct route possible, but do not use any route or area that has been declared part of the emergency area, or that could result in excessive individual exposure or injury.4.5 If an area or building is evacuated, any records regarding the persons in the area shall be removed and taken to the assembly area. Page 4 ot 13 FLORIDA POWER 6 LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 4.0 Precautions: (Continued) 4.6 Health Physics personnel exiting the RAB as necessitated by an emergency condition of possible radiological nature shall pick up suitable portable radiation monitoring equipment which would be required for re-entry monitoring. 5.0 Res onsibilities: 5.1 The Nuclear Plant Supervisor is responsible for: 5.1.1 Classifying and declaring any emergency that may occur at the site+".5.1.2 Initiating the Emergency Plans when appropriate. /R9 5.1.3 Initiating the evacuation of any area in which the criteria for evacuation, as expressed in steps 8.1 8.2 are met./R9 5.2 The Nuclear Plant Supervisor shall act as Emergency Coordinator after declaration of an emergency. 5.3 The Emergency Coordinator is responsible for advising the Security Team Leader of a local evacuation or an Owner Controlled Area evacuation. This notification will be by the alarm or the PA system.Information needed by the Security Force to properly fulfill their responsibilities during the evacuation shall be provided to the Security Team Leader by the Emergency Coordinator.(See E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator). /R9 5.4 The Security Guard Force is under the supervision of the Plant Security Supervisor. He serves as the Primary Security Team.Leader.The Security Force Shift Supervisor is the Interim Security Team Leader.5.5 The responsibilities of individuals acting as escorts are contained in Sections 5.12 and 8.4;5 of this procedure. 5.6 All personnel permanently or temporarily assigned to St.Lucie plant shall familiarize themselves with: 5.6.1'he instructions given in this procedure. 5.6.2 The access routes to the work location to which they are assigned.*The statement applies to Unit 2 upon initial fuel load. ~H~ Page 5 ot 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 5.0 Res onsibilities: 5.6 (Continued) 5.6.3 The locations of the evacuation assembly areas: a.The Radiation Control Point in the Auxiliary Building.b.The Site Assembly Station.c.The Jaycee Public Park on Route AlA, north of the plant site./R9 5.7 It shall be the responsibility of each supervisor and depart-ment foreman not involved in the emergency response to report to the assembly area to assist in accounting for all personnel under his supervision. 5.8 Security Department Responsibilities are defined in Security Procedure 0006123.5.9 The Control Point Guard shall maintain accurate records of all personnel entering or leaving the controlled area and make the records available when required.5.10 The Main Gate Guard shall maintain accurate records of~personnel entering or leaving the protected area an/make the records available when required./R9 5.11 The Assembly Area Supervisor shall be responsible to ensure that personnel accounting at assembly area is being done and liason between the assembly area and the Emergency Coordinator. /R9 5.12 Tour Guides are assigned to escort groups of visitors during tours of the plant site.In an emergency, Tour Guides are responsible for personnel accountability of their respective groups and the evacuation of their group to the Site Assembly Station in cooperation with the Security Force.F 13 Prior to fuel loading, Unit 2 responsibilities are defined in ASP, 5.0. Page 6 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE!/3100026E, REV.9 6.0

References:

6.1 St.Lucie Plant Radiological Emergency Plan.6.2 St.Lucie Plant Security Plan.6.3 E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator. 6.4 HP207 Personnel Monitoring following an Evacuation. 6.5 HP208 Personnel Decontamination. 7.0 Records and Notifications: 7.1 A list of all persons assembled at Jaycee Public Park shall be prepared by a member of the Plant Staff who will travel to that location with evacuees./R9 7.2 Records showing that all personnel in the area affected by the emergency were accounted for shall be kept as part of the records of the emergency and recorded by the Emergency Coordinator. I t~ Page 7 of 13 FLORIDA POWER 6 LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.9 8.0 Ins true tions: 8.1 Criteria for Local Area Evacuation If an incident involves a high radiation field or has caused the release of radioactive material to the environ-ment, the need to evacuate the affected area shall be determined in accordance with the following criteria: Evacuate the affected local area in which any of the following conditions occur: 8.1.1 Area Radiation Monitor Alarm.8.1.2 Containment Evacuation Alarm.8.1.3 Direct radiation dose rate reading,d.n..excess of 100mRem/hour, from an.unevaluated source.-9 8.1.4 Airborne radioactivity concentration in excess of 1 x 10~micro Ci/cc, from an unevaluated source./R9 8.1.5 Removable radioactive surface contamination in an unposted area in excess of 1000 dpm/100 cm beta-gamma over an area of 100 ft 8.1.6 Removable radioactive surface contamination in an unposted area in excess of 50 dpm/100cm alpha over an area of 100 ft2.8.1.7 The Emergency Coordinator determines that a situation exists for which local evacuation is appropriate. 8.2 Criteria for Owner Controlled Area Evacuation The Owner Controlled Area shall be evacuated in the following circumstances: 8'.1 Site Area Emergency, 8.2.2 General Emergency, 8.2.3 If the Emergency Coordinator determines that the entire owner controlled area should be evacuated. /R9 ~f~ Page 8 of 13 FLORIDA POWER 6 LIGHT COMi ANY EtiERGENCY PLAN DiPLEMENTING PROCEDURE//3100026E, REV.9 8.0 Instructions: (Continued)

8.3 Evacuation

Pre aredness 8.3.1 All visitors shall have adequate transportation available on-site to evacuate all members of their respective groups.8.3.2 Escorts shall maintain control of groups or individuals to which they are assigned to enable all members of the groups to be located, notified and evacuated. 8.4 Local Area Evacuation Im lementation 8.4.1 When the Emergency Coordinator (Nuclear Plant Supervisor) determines that a local area evacuation is necessary, he shall, in following Emergency Procedure Duties of the Emergency Coordinator, announce an evacuation using the PA system, giving the area affected, the assembly area and other instructions as required./R9 8.4.2 All personnel in the evacuated area shall stop work, turn off potentially hazardous equipment, such as cutting torches, and leave the area by the same route taken to enter the area, unless otherwise instructed by the Emergency Coordinator. 8.4.3 8.4.4 All personnel in the evacuated area shall report to the Radiation Control Point in the Auxiliary Building for monitoring and accountability, unless otherwise directed'y the Emergency Coordinator. The Radiation Team shall monitor evacuated personnel for contamination, (for areas where contamination may be present)./R9 8.4.5 Injured personnel shall be treated as discussed in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator. If an injured person is evacuated from the plant site, the person's TLD, selfreading dosimeter, identification badge, and keycard should be removed and given to the First Aid and Personnel Decontamination Team Leader.8.4.6 The Control Point Guard shall make available to the Emergency Coordinator his records showing the personnel who are in the Radiation Controlled Area./R9 Page 9 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE//3100026E, REV.9 8.0 Instructions (Continued) 8.4 Local Area Evacuation Im lementation (Continued) 8.4.7 The Emergency Coordinator, department supervisors and foremen having personnel working in the evacuated area shall verify that all personnel in the evacuated area are accounted for.8.4.8 The Emergency Coordinator shall initiate a search for the personnel who have not been accounted for.8.5 Owner Controlled Area Evacuation Im lementation 8.5.1 When the Emergency Coordinator (Nuclear Plant Supervisor) determines that an evacuation of the Owner Controlled Area is necessary, he will order an evacuation using the PA system and the evacuation alarm as described in E-Plan Implementating Procedure 3100021E, Duties of Emergency Coordinator. 8.5.2 All personnel in the evacuated area shall stop work, turn off potentially hazardous equipment, such as cutting torches, and leave the area.All personnel not needed to place the affected unit*in a safe con-dition and not on an emergency team or otherwise required on site, shall evacuate to the appropriate Offsite Assembly Area.Emergency Teams shall report to the OSC for assignment. 8.5.3 Injured personnel shall be treated as discussed in E-Plan Implementing Procedure 3100021E, Duties of Emergency Coordinator. If an injured person is evacuated from the plant site, the person's TLD, self-reading dosimeter, identification badge, and keycard should be removed and given to the First Aid and Personnel Decontamination Team Leader.8.5.4 Personnel shall remove protective clothing prior to leaving the Radiation Controlled Area.8.5.5 Personnel shall proceed to the Main Guard Station by the most direct route, unless an alternate route is specified by the Emergency Coordinator. 8.5.6 Each person shall then proceed to the appropriate Site Assembly Area (see Figure 2), unless otherwise directed by the Emergency Coordinator.

  • Applicable upon initial fuel load of Unit 2.R9

~W~ Page 10 of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.8.0 Instructions: (Continued) 8.5 (Continued) 8.5.7 Assemble by department for accounting and monitoring, and remain at the assembly area until given instruc-tions by the Assembly Area Supervisor. 8.5.8 If the conditions associated with the emergency are such that the site assembly station area is untenable, the Emergency Coordinator shall direct all personnel to report to the Jaycee Public Park or other suitable alternative and specify the route to be followed.R9 8.5.9 The department supervisors and foremen shall account for their personnel and report the results to the Assembly Area Supervisor. 8.5.10 The Assembly Area Supervisor shall assure that all personnel are monitored for contamination prior to leaving the Assembly Area.8.5.11 The Assembly Area Supervisor, the Security Force Shift Supervisor and the department supervisors and foreman shall examine all the personnel records available to determine if any personnel are unaccounted for.8.5.12 The Emergency Coordinator shall initiate a search for the personnel who have not been accounted for.8.6 Securit Force Evacuation Im lementation 8.6.1 Upon notification of an evacuation, the Security Force Shift Supervisor (Interim Security Team Leader)shall advise by radio all other guards on duty that an evacuation is in progress.The Security Force will proceed with the evacuation of persons and with personnel accountability activities. 8.6.2 The Control Point Guard and the Main Gate Guard shall immediately review logs and badge records to determine what persons are in the affected area.These guards shall be prepared to brief the Emergency Coordinator. The Control Point Guard shall verify that all personnel have evacuated the area and report to the Security Team Leader for further instructions. The Control Point Guard shall then R9 R9 Page ll of 13 FLORIDA POWER&LIGHT COMPANY EMERGENCY PLAN IMPLEMENTING PROCEDURE f/3100026E, REV.9 8.0 Instructions: Continued 8.6 (Continued) 8.6.2 go to the Hain Gate with his personnel records and await instructions from the Security Team Leader.8.6.3 The Security Team shall: 1~Sweep the plant site to verify that all personnel have evacuated. 2.Notify any Special Guards on duty.3.Perform additional duties as specified in the Security Guard Force Post and Force Orders.8.6.4 The Security Team Leader, after completion of sweeps by members of the Security Team shall instruct guards concerning special assignments which may be required as a result of the evacuation. He shall advise the FPL Off-Site Emergency Security Manager of any circumstances which require his attention or assistance. R9'9 l'p. FLORA, POWER 6.LEGS COMPANY EMERGENCY PLAN IMPLEHENTXHG PROCEDURE 83100026E, REV.4 ZXGURZ 1 St.Luc~e P~t Owner Contro1led Area Z.C'0 7 0 PLORXDA POWER h.LZGEZ COMPANY EMERGENCY PLAN QPLZK2iTXHG PROCEDURE f3100026E, REV.9 Sita Assemb1y Ares+4 IJ II Cov~O JAYCEE;PARK OP-SITE hSS LT hREh W R9 JVIOIOI fk PVC pf ogcv)C 0 VI'I 4 C AT'LAMTIC octet S~hSSEHBLT hREA.'Met T wer)o~>If ST+LUC PC Rl-+owli+~~~Z,O'C.is Neer&4 vlf'oT}}