ML17347A602
ML17347A602 | |
Person / Time | |
---|---|
Site: | Turkey Point |
Issue date: | 09/02/1987 |
From: | Mcloughlin D Federal Emergency Management Agency |
To: | Stello V NRC OFFICE OF THE EXECUTIVE DIRECTOR FOR OPERATIONS (EDO) |
Shared Package | |
ML17347A603 | List: |
References | |
RTR-NUREG-0654, RTR-NUREG-654 NUDOCS 8709180378 | |
Download: ML17347A602 (363) | |
Text
{{#Wiki_filter:~ p r REQULATORY FORMATION DISTRIBUTION S EM (RIDS) ACCESSION NBR: 8709180378 DOC. DATE: 87/09/02 NOTARIZED: NO DOCKET 8 FAC IL: 50-250 Turkey Point Planti Unit 3i Florida Poeer and Light C 05000250 50-251 Turkey Point Planti Unit 4i Florida Power and Light C 05000251 AUTH. NAME AUTHOR AFFILIATION MCLOUQHLINiD. Federal Emergencg Management Agency REC IP. NAME RECIPIENT AFFILIATION STELLOe V. Office of the Executive Director for Operations
SUBJECT:
Forwards "Turkey Point Plant Site-Specific Radiological Emergency Preparedness Alert & Notification Sgs GA Verification. " Alert & notification sos installed around
,plant- sa isfies NUREQ-0654/FEMA-REP-ii Rev 1 & FEMA-43.
DISTRIBUT CO: E35D COPIES RECEIVED: LTR ENCL SIZE: SGO TITLE: E ergencg Preparedness-Appraisal/Confirmatory Action Ltr/Exercise Rep NOTES:
~ REC IP IENT COPIES REC IP IENT COP IES ID CODE/NAME LTTR ENCL ID CODE/NAME LTTR ENCL PD2-2 PD 1 1 McDONALDi D 1 1 INTERNAL: ARM/DAF/LFMB NRR/PMAS/ILRB RQN2 FILE 01 1
1 1 0 1 1 F F '~ NRR/D E~/EPB RQN2/DRSS/EPRPB 02 1 1 1 1 1 EXTERNAL: LPDR 1 1 NRC PDR NSIC 1 1 TOTAL NUMBER OF COPIES REQUIRED: LTTR 11 ENCL 10
0 ~ I I
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Federal Emergency Management Agency Op Washington, D.C. 20472 l1urley, NR s r only: SEP 2eer Stello Taylor Mr. Victor Stello, Jr. Rehm Executive Director for Operations'.S. Murray, OGC/B Nuclear Regulatory Camnission Grace, RII Washington, D C. 20555
Dear Mr. Stello:
The Federal Emergency Management Agency (FERA) has ccmpleted an analysis of the prmpt alert and notification system for the Turkey Point Plant located in Florida City, Florida. This review has been ccmpleted pursuant to Title 44 CFR, Part 350; selected evaluative criteria and Appendix 3 in NUREG-0654/ FEMA-REP-1, Revision 1; and FEMA-43, the "Standard Guide for the Evaluation of Alert and Notification Systems for Nuclear Power Plants" (now published as FEMA-REP-10). 'Ihe enclosed report, entitled "Turkey Point Plant Site-- Specific Offsite Radiological Emergency Preparedness Alert and Notification System Quality Assurance Verification," summarizes the engineering design review; incorporates the results of the telephone survey of the public con-ducted immediately following full activation of the alert and notification system on December 17, 1985; and confims the adequacy of the applicable evaluative criteria frcm NUREG-0654/PENA-REP-l, Revision 1, and FEMA-43. Based on the engineering design review and the results of the public tele-phone survey, FEMA has determined that the alert and notification system installed around the Turkey Point Plant satisfies the requirements of NUREG-0654/FBQ;REP-1, Revision 1, and FEMA-43. Therefore, there is nav reasonable assurance that the system is adequate to prorrptly alert and notify the public in the event of a radiological emergency at the site. 'Ihe caveat on the alert and notification system contained in the Title 44 CFR, Part 350 approval dated February 15, 1984, is now removed. The Honorable Bob Martinez, Governor of Florida has been advised of this approval. Notwithstanding this approval, FEMA reccmnends that the State of Florida, Dade and Monroe Counties, and the Florida Power and Light Company consider increasing the frequency of the full~cle tests of the Turkey Point alert and notification system to once a month. FEMA believes that additional full-cycle tests< at a nanthly frequency, would provide an added degree of assurance of the continued readiness and operability of the Turkey Point alert and notification system. Sincerely, Dave McLoughlin Deputy Associate Director State and Local Programs and Support Enclosure 8709180378 .87090>5 PDR ADOCK 05000>50 N F
TURKEY POINT PLANT SITE-SPECIFIC OFFSITE RADIOLOGICAL EMERGENCY PREPAREDNESS ALERT AND NOTIFICATION SYSTEM QUALITY ASSURANCE VERIFICATION Prepared for s Federal Emergency Management Agency Washington, D. C. 20472 Under Contr act No. EMH-83-C-1217 May 22, 1987
TABLE OF CONTENTS I ~ INTRODUCTION A. Identification
- 1. Site Information
- 2. Governments Within The 10-Mile Emergency Planning Zone B. Scope Of Review
- 1. Emergency Plans For Offsite Response Organizations
- 2. Alert And Notification System Design Report
- 3. FEMA Evaluation Findings II'INDINGS FOR EVALUATION CRITERION E.6 A. Administrative Means Of Alerting (E.6.1 i FEMA-43) 5 B. Physical Means Of Alerting (E. 6 ~ 2 g FEMA-43)
- 1. Sirens (E.6.2.1, FEMA-43)
- 2. Special Alerting (E.6.2.4, FEMA-43) 13 III ~ FINDINGS FOR EVALUATION CRITERION N.l 16 IV. FINDINGS FOR EVALUATION CRITERIA E 5g F lg N 2g N 3g AND N 5 26 REFERENCE LIST 27 APPENDIX A: OSPM Topographical Profile Charts OSPM Topographical Input Data OSPM Siren Sound Pressure Level Input Data OSPM Meteorological Input Data OSPM Siren Sound Pressure Level Output Data APPENDIX B: Sample Size Determination
Turkey Point Plant Site-Specific Offsite Radiological Emergency Preparedness Alert And Notification System Quality Assurance Verification State Of Florida Dade County Monroe County I ~ INTRODUCTION A. The Turkey Point Plant is located on the east coast of Florida in Dade County, approximately 25 miles south of the City of Miami. The chain of islands known as the Florida Keys begins some 20 miles to the south of the site, at the end of the Florida peninsula.l The surface of the land in the Turkey Point area is essentially flat and slopes very gently from sea level to a height of approximately 10 ft at a point 8 to 9 miles inland. The land in and around the site consists mostly of mangrove swamp extending along the entire coastline within 10 miles of the plant and extending inland for 3 to 4 miles.li2 Homestead Air Force Base,. an active military facility, is 5 to 6 miles northwest of the plant site. With the exception of this facility, the balance of all land within 6 miles of the plant site is marshland. or lightly populated farmland. The area 0
beyond 6 miles from the'plant site along an arc from the west through the north is highly developed, containing most of the population within 10 miles of the Turkey Point Plant.> Five to 8 miles east of the plant site, across Biscayne Bay, is a string of barrier islands constituting the Biscayne National Monument. This chain of islands begins at Miami Beach on the north and extends to Key Largo at the south. These islands are undeveloped and sparsely inhabited, except for a group of private resort clubs on Key Largo.1t2 2 ~ The emergency planning zone (EPZ) for the Turkey Point Plant is defined by an irregular shape approximating a 10-mile-radius circle with the plant as the center point. The west-northwest portion of the EPZ was extended outward approximately 1 mile to incorporate the entire City of Homestead (1980 population 20,688) and the north portion was extended outward approximately 1.5 miles to incorporate the entire City of Cutler Ridge (1980 population 20,886) . Roughly half of the EPZ is situated over Biscayne Bay and the Atlantic Ocean. The Turkey Point Plant EPZ contains portions 'of the State of Florida and Dade and Monroe counties.2i3 All appropriate offsite radiological emergency plans and preparedness site<<specif ic to the Turkey Point
Plant have been reviewed by the Federal Emergency Management Agency (FEMA) Region IV and the Regional Assistance Committee. 2 ~ The physical means established for alerting the public within the Turkey Point Plant EPZ are documented in the following: Florida Power and Light Company, "Public Alert and Notification System Report for the Turkey Point Plant," prepared by= HMM Associates, Inc., December 1984 (hereinafter referred to as the Design Report) .2 3 ~ The offsite radiological emergency plans and preparedness site-specific to the Turkey Point Plant received approval under Title 44 of the gate~
, Par t 350 (44 CFR 350),
conditioned upon verification of the adequacy of the public alert and notification system, as documented in the: Letter to the Honorable Robert Graham, Governor of Florida, signed by Samuel W. Speck, Associate Director, State and Local Programs and Support@ FEMA, dated February 16, 1984;4 and Letter to William J. Dircks, Executive Director for Operations, U.S. Nuclear Regulatory Commission, signed by Samuel W. Speck, Associate Director, State and Local Programs and Support, FEMA, dated February 15, 1984.5
II. FINDINGS FOR EVALUATION CRITERION E,6 The Design Report describing the alert and notification system for the Turkey Point Plant was reviewed against evaluation criterion,E.6 and Appendix 3 of NUREG-0654/FEMA-REP-l, Revision 1, "Criteria for Preparation and Evaluation of Radiological Emergency Response Plans and Preparedness in Support of Nuclear Power Plants" (hereinafter referred to as NUREG-0654/FEMA-REP-1, Rev. 1) . This evaluation criterion states: Each organization shall establish administrative and physical means, and the time required for notifying and providing prompt instructions to the public within the plume exposure pathway Emergency Planning Zone. (See Appendix 3.) It shall be the licensee's responsibility to demonstrate, that such means exist, regardless of who implements this requirement. It shall be the responsibility of the State a~d local governments to activate such a system. The bases for review against this evaluation criterion were the corresponding acceptance criteria of FEMA-43, 'Standard Guide for the Evaluation of Alert and Notification Systems. for Nuclear Power Plants" > (hereinafter referred to as FEMA-43) . This quality assurance verification review was performed to make a determination of alert and notification system adequacy prior to conducting a demonstration of this system for the Turkey Point Plant on December 17, 1985. Based upon this quality assurance verification review and public survey results, International Energy Associates Limited concluded that the design and implementation of the alert and notification system for the Turkey Point Plant and its supporting procedures conformed sufficiently to the acceptance criteria, as stated in FEMA-43, for evaluation criterion E.6 of NUREG-0654/FEMA-REP-l, Rev. 1, to support a FEMA finding that 'the alert and notification system is adequate.
This portion of the quality assurance verification review evaluates the Turkey, Point Plant's alert and notification system against FEMA-43 acceptance criteria in the following areas: the physical means of alerting and the special alerting methods. A. (E,6 ~ 1 g FEMA-43) The administrative means of alerting for the Turkey Point Plant were evaluated by FEMA and the Regional Assistance Committee in their determination of adequacy under 44 CFR 350.4<5 B. (E~6 ~ 2 g FEMA-43 ) As described in the Design Report, the physical means of alerting for the Turkey Point Plant consist of 38 fixed siren units and special alerting for residences on Key Largo.,
- l. ~~~ (E ~ 6 ~ 2.1 g FEMA-43)
The Turkey Point Plant siren alerting system, as submitted in the Design Report, was evaluated in accordance with the design evaluation methodology detailed in "Analysis of Siren System Pilot Test."8 The siren system as analyzed consists of 38 Model WS-3000 rotating electronic sirens manufactured by Whelen Engineering Company, Inc. Anechoic-chamber measured octave band sound pressure spectrums (supplied by the siren manufacturer) were used to verify the rated output of all of the sirens. The WS-3000 sirens are rated at 123 dBC at 100
Routine siren testing procedures and operability for the Turkey Point Plant have been reviewed and determined to satisfy PEMA-43 requirements. The evaluation of the siren system design. calculation procedure was conducted by:
. Verifying the design calculation procedure as presented in Section E.6.2.4.1 of, the Design Report. against the 10 dB loss per distance , doubled attenuation rate in the absence of special conditions; and Ascertaining the adequacy of the design procedure in the presence of site-specific topographical and meteorological conditions through. comparisons of the design procedure with the Outdoor Sound Propagation Model (OSPM)8 results for specific sirens.
The siren alerting system design follows the 10 dB loss per distance doubled attenuation rate as recommended in NUREG-0654/PEMA-REP-1, Rev. 1, for situations in which special conditions are absent. Section E.6.2.4.1 of the Design Report presents the following calculated theoretical siren ranges for the WS-3000 sirens:
'Min. Sound Coverage Range 60 '0 7,880 4 i780
These calculated ranges were then employed, along with the 38 siren locations, to generate the 60 dBC and 70 dBC coverage map (see Figure 14 of the Design Report). Population density .distributions within the = EPZ were presented in Section E.6.2.1.2 and Figure 14 of the Design Report. This quality assurance verification review seeks to ascertain whether this design procedure, namely the 10 dB loss per distance doubled attenuation rate, adequately accounts for the site-specific terrain and weather conditions and whether the siren alerting system (as designed) does indeed meet the FEMA-43 acceptance criteria. Fifteen sirens, 14 of which are depicted on the U. S.. Geological Survey's Homestead quadrangle map (see Figure 1 of this report), were selected for this quality assurance verification review. This selection is representative of the site-specific topographical conditions around the more populated areas within the Turkey Point Plant EPZ. Surface weather parameters, representative of site prevailing summer daytime conditions, were used in the OSPM calculations. Appendix A of this report contains OSPM topographical profile charts, OSPM topographical input, OSPM sound pressure level input, OSPM meteorological input, and OSPM sound pressure level output for each of the 15 individual siren runs. To compare the ranging estimates of OSPM with the design procedure for each, type of siren employed, the output dBC levels along each azimuth of the 15 analyzed sirens were classified into one terrain
category of relatively flat (generally unobstructed line-of-sight), since the land area is essentially flat, rising from sea level at the coast to no more than 12 ft elevation. In addition, a shadow zone category reflecting the influence of site weather conditions on the siren effective propagation range was used. Regressions of dBC versus the logarithm of distance were performed for the sirens over these two categories. The OSPM regression results of the siren sound pressure levels are presented in Figures 2 and 3 of this report. Also depicted are the ranges of 60 dBC and 70 dBC as calculated by the licensee, as well as a 10 dB loss per distance doubled attenuation rate. Several general observations can be made concerning the siren range comparisons. First, the 60 dBC and 70 dBC ranges estimated by the licensee are conservative over relatively flat terrains as compared to OSPM. Second, the 60 dBC and 70 dBC ranges estimated by the licensee are extremely liberal over the shadow zone category. RANGE COMPARISONS 70 dBC 60 dBC ZBXEQQRY 'HRHE~ FLAT OSPM 5 F500 ft >10,000 ft Design Report 4,780 ft 7i880 ft SHADOW OSPM 2 i050 ft 2 i950 ft Design Repor t 4,780 ft 7 i780 ft
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For each siren located on the U.S. Geological Survey's Homestead quadrangle map (Figure 1 of this report), the area coverages of 60 dBC and 70 dBC were numerically integrated and averaged to assess the overall adequacy of the de'sign on an area basis. The results are as follows: AVERAGE AREA (In Square Miles) WS-3000 2.58 8 ~ 94 Using these results, the following average effective radii are derived: EFFECTIVE RADIUS (In Feet) WS-3000 4i793 ft 8 i909 ft These derived radii confirm that, on the average, the Design Report siren ranges are adequate when site terrain and weather conditions are taken into account. The results of the individual OSPM runs were combined to generate a comprehensive overview of the siren sound pressure levels over the Homestead area as depicted in Figure 1 of this report. A surface 12
interpolation and contouring program utilizing the output results of the 15 sirens was used to generate the sound pressure level contour overlays. These contours account for site-specific topographical and meteorological effects on the siren sound pro-pagation. These contours'demonstrate that essentially all of the populated areas within the EPZ of the quadrangle selected for evaluation are expected to have a minimum of 60 dBC, and the area (Homestead) with more than 2;000 persons per square mile. is expected to have a minimum siren sound pressure level of 70 dBC. Comparisons of the OSPM-predicted 60 dBC and 70 dBC contours with the contours in Figure 14 of the Design Report indicate that the coverage of the sirens as calculated in the Design Report is adequate. In conclusion, the Turkey Point Plant siren alerting system is found to meet the specific design requirements of FEMA-43. 2 ~ (E,6 ~ 2 ~4 g FEMA-43) (E ~ 6 ~ 2 ~ 4 ~ 1 g FEMA-43) In addition to the 38 rotating electronic sirens, the primary public alert system encompasses special alerting for residences on Key Largo. Upon notification of an emergency at the Turkey Point Plant, Monroe County officials notify designated personnel at the Ocean Reef Club and have them implement their general emergency plan.> 13
A mini siren is installed in the guard house at the entrance to Key Largo's private clubs. The guard . house is manned 24-hours a day and controls access to the clubs. Officials of the Ocean Reef Club are notified by telephone by the Monroe County Civil Defense Director or the Monroe County Sheriff's Office. Notification may also come over the mini siren. Upon notification the Ocean Reef Club security will be responsible for notifying residents by use of public address and siren units on seven security vehicles. The Assistant Director of security will alert residents in Area 1, the Duty Officer will 'alert residents in Area 2, and the Patrol Officer will alert residents in Area 3. (E. 6 ~ 2 ~ 4 ~ 2 ~ FEMA-43) A number of provisions have been made for alerting of selected institutions where coordinated response to an emergency would be necessary. Homestead Air Force Base will be notified of an offsite release from the-Turkey Point Plant through a hotline connecting the Homestead Consolidated Command Post (HCCP) with the Turkey Point Plant. Two isolated industrial sites on Card Sound Road have been provided with mini sirens. The mini sirens are small sirens installed in a guard house or office to alert the officials specifically responsible for an institution. In addition to producing warning sounds, the mini sirens also have a flashing strobe light as well as a public address capability. The mini sirens are controlled by the same RF-control system that operates tQe WS-3000 sirens for primary alerting of the general public. 14
The Florida Marine Patrol will provide notification to mariners within the 10-mile coastline< open water, and island areas. The Florida Game and Fresh Water Commission will provide notification to mariners within the 10-mile coastline and inland waterway areas. To ensure prompt notification of transients in the Turkey Point Plant EPZ, information signs have been placed at public locations. These signs instruct people to tune to local radio or television stations and listen for information when they hear the siren system. 15
III~ FINDINGS FOR EVALUATION CRITERION N 1 On December 17, 1985, the physical means (sirens) used to alert the population within the Turkey Point Plant EPZ were demonstrated to satisfy the alert and notification aspects of 44 CFR 350.9(a) . This demonstration was conducted by using the methods specified in Section N.l.(a,b) .2 of FEMA-43.7 The results indicate that this portion of the alert and notification system evaluation conforms to FEMA-43 and NUREG-0654/FEMA>>REP-lt Rev. F 6 The December 17, 1985, demonstration of the Turkey Point Plant alerting system consisted of a double activation of all sirens, transmission of a voice message over the sirens and a subsequent telephone survey to estimate the proportion of EPZ households actually alerted. The first siren activation was initiated at approximately 6:15 p.m. (Eastern Standard Time) and continued for 5 minutes. A voice message was then transmitted using the sirens as a public address system. Transmission of the message began at approximately 6:20 p.m. and continued for about four minutes and thirty seconds. The sirens were activated a second time beginning at 6:25 p.m. and ending at 6:30 p.m. It was reported that siren number S25 failed to activate. All other sirens were reported to have operated properly during all activations. The telephone survey of EPZ residences began at approxi-mately 6:30 p.m. and was completed within 55 minutes. This survey was conducted by 43 telephone interviewers, each with a separate WATS line and computer terminal. The universe of households to be surveyed was determined by 1 establishing a 12-mile-radius circle around the latitude and longitude of the plant. All households known to be 16
0 I
outside the EPZ boundary (an irregular shape approximating a 10-mile-radius circle) were eliminated from the sample. The sample incorporated a sorted master list of approximately 2,600 households (addresses and telephone numbers) believed to be within the established boundary. A sufficient number of replicated subsamples were developed from the overall sample to ensure that the required number of telephone calls would be made, i. e., to establish the proportion of households alerted to within a 5% precision at 95% confidence level. Appendix B of this report de-scribes the method used for sizing the sample to achieve this result. The English and Spanish questionnaires used for,the tele-phone survey are included as Figures 4 and 5 of this report, respectively. As part of the telephone survey, a total of 375 households believed to be within the Turkey Point Plant EPZ was contacted, and the responses were collected in an automated data base. Of this group, ill respondents stated that they were not alerted. However, before running the final tabulations, addresses of all households interviewed were checked on a street map to validate their locations. Of the 375 addresses, 48 were outside the EPZ. Therefore, data were tabulated on the 327 respondent households that were located'ithin the EPZ. Respondents at 31 of these households had been away from home at the time of the alerting system demonstration and, therefore, were not included in the alerting analysis. The siren coverage was analyzed to determine whether any of the fifty households where individuals were home during the demonstration but were not alerted was in the sole or primary coverage area of siren S25 which failed to operate properly. None of 17
FIGURE 4 '"295OO ton Research Services Study !>9201 nr, Pennsylvania 1 December 17, 19R5 0;fB 43067-0103 (FWd. 9/16) FPL4 NUCLEAR POWER PLANT ALBERTI.'lG AiQ NOTIFICATION SYST"-'8: ?UBL1C TELEPHONE SIJRVEY Turkev Point Tme Began PM Intervie~ 8 (1-5) Time Ended Phf Z'p Code (5=0) Sample Type RECORD BEFORE DIALING -Telephone t'/ (Baca Code) (Fxchange) (Number) (12-21)
- VTRODUCTION:
Hello, my name is We'e calling households 'ong distance ."om Chilton Research Services as part of a survev. This survey is sponsored by The ral Emergency Management Agency (FERA) of the United States Government in cooperation Dade t County. Your answers are voluntary and will be kept strictly confidential. First of a'1, is this (REPEAT 0 DIALED)? Yes TERMINATE 82$ DIAL AGALV No As you mav or mav not know, there was a test of the siren system for the Turkey '?oint Nuclear Power Plant. Did you, or any other member of this housebo]d, hear a signal from this test today? SKIP TO O. 4 Yes SKIP TO Q. 4A No Heard:ron I CONTIVUE another 3 source ASK IF ANY 0TH& HOUSEHOLD Don'". 'now
<ABER IS NORE KNOWLEDGEABLE 18
FIGURE 4 (CONTINUED) What did you or your household hearP (DO NOT REM. CIRCLE ALL THAT APPLY) (23-25) A siren I SKIP TO Ne'hbor told me 2 O. 4 Other family member told me,' I Other (SPECIFY) CONTINUE Don't Know jY
- n. Did you h ar... (READ LIST. CIRCLE ALL THAT APPLY)
(3O-32) A Siren From a Neighbor From Another Family Nember . 3 Or by means of something else, 9 (SPECIFY) l DO NOT READ Don't Know (IF HEARD EMERGENCY SIGNAL ASK 0 4 BELOW'THERWISE SKIP TO O 'A) Were you at home or away from home when you heard the siren signal? 37-Home SKIP TO O. 5 Away From Home 19
FIGURE 4 (CONTINUED) 4A. (IF "DID ROT HEAR EMERGENCY SIGNAL") Were vou at home between 6:15 and 6:45 this even'ng? 38-Yes No Don't Znow Y
- 5. Informat'on about what to do in an actual emergency at the Turkey Point Nuclear Powe" Plant is contained in a blue and white packet of information tit]ed "Emergency
'.measures". Has your household received this informat'on?
Yes 1 i No I2 Don't Know ~ Y I Because we need to determine ~whether or no't you live within the 10 mile Baergency
,Planning. Zone of the Turkey Point Nuclear Power ~ ~
Plant, would you please give me this address? (PAUSE P FOR ANSWER) ADDR="SS: and the nearest intersection (or cross street) to this house. Also, what community is this? On behalf of Chilt'on Research Services and the Federal Emergency Nanagement Agency,' would like to thank you for your time and for giving us this valuable information. 20
FIGURE 5
') 064O SPANISH ilton Research Services Study 8o201 adnor, Pennsyl van'a December i 7, 198s OMB SYSTEM!:(FEMA 9/85) '>20&7-0103.
FEMA ~!UC~~R POWER PLANT ALERTING AND NOTlF ICATION PUBLIC TELFPHONE StEVP.'URKEY POINT Time Began Interviev 8 Time Ended . DM Zip Code (6-') Sample Type RECORD BEFORE DIAL NG -Telephone 8 (Area Code) ( Exchange ) (Number ) (12-21 ) I.!TRODUCCION: J Buenos d'as (noches). Estamos llamando residencias a larga d'stancia de Cbilton search Services corno parte de un estudio. Este.estud'o es patrocinado por la Agencia eral de Emergencia (FEMA) del gobierno de 3.os Estados Unidos. Sus repuestas son voluntarias y se mantendran en confianza estricto.
- 1. Primero, liame el numero (REPEAT 4 DIALED)?
Yes TERMINATE AND DIAL AGAIN No Corno Ud. puede saber o no, habia una prueba de la sistema de sirena para el .ud<ey Point Nuclear Power Plant. Ud. o algun miembro de su familia oyo algun senal de esta prueba hov? SKIP T0 Yes SKIP TO 0, 4A %To res rd f. Om CONTINUE another source ASK IF ANY OTHER HOUSEHOLD Don ' Kno~ MEMBER IS MORE KNOWLEDGEABLE 21
FIGURE 5 (CONTINUED)
- 3. Corno Ud. supo de esta senal de emergencia? (DO NOT RE&. CIRCLE A L THAT APPLY)
(1g 20) I I I siren SKIP TO ) I neighbor told me i), 4 i I othe" family member told me 3 Other (SPECIF Y) CONTINUE Don ' Know 3A. De cue manera supn... (READ LIST. CIRCLE ALL THAT APPLY) (3n-36) de Sirena I [ de un vecino de algun otro miembro de familia (0 otra manera) {SPECIFY) DO NOT READ Don't Know (IF "HEARD EHERGENCY SIGNAL" ASK O. 4 BELOW; OTHERWISE SKIP TO O. 4A) Estaba en casa o fuera de la casa cuando Ud. supo de.esta senal de emergencia? Home SKIP TO 0. 5 Away from home 22
FIGURE 5 (CONTINUED) 4A. (IF "DID NOT HEAR BfERGENCY SIGNAL" ) Estaba en casa durante 'a media hora de 6:15 a 6-45 esta noche? Yes
'R1o Don't Know 7 J
5 ~ 'Informac'on sobre aue deLe hacer en caso de una emergencia verdadera en el Turkey Point Nuclear Power Plant es contenido en una paoueta blanca y azul de informacion, con el titulo Emergency 1".easures". j.i(a recibido en su casa esta informacion? 41-Yes No 2 Don'tÃnowI Y Por razon determinar s% Ud. vive o no vive en los limites de 10 millas de ~ Zona de Planificacion de Emergencia. Por favor me daria esta direccion? (PAUSE FOR ANSWER) ADDRESS: y aue es la interseccion mas ceres de su casa o calle principal? y en aue comunidad vive Ud. ? Por la compania Chiltnn Research Services y la Agencia Federal de Emergencia, auisiera agradecer a l Ud. por su tiempo y para darnos esta informacion importante. 23
these households could be verified as being in the sole or primary coverage area of siren S25. Of the remaining 296 households, 83.1% (246) indicated that they had been alert-ed during the demonstration. Using the estimated number of households within the EPZ (31,376 from ref erence 10) in the confidence interval expression in Appendix B, an estimated 95% confidence interval that ranges from 78.4% to 86.9% is yielded for the proportion of the total EPZ population alerted. In other words, at the 958 conf idence level, between 78.4% and 86.9% of the households within the Turkey Point Plant EPZ would have stated that they were alerted by the siren system. The sample of 327 households was also used to estimate the proportion of households within the EPZ that would have stated they received information about what to do in a real emergency at the Turkey Point Plant. Of these 327 households, 31.5% (103) responded that they had received the information, 61.2% (200) responded that they had not received the information, and 7.3% (24) did not know whether they had r eceived the information. Using the approach discussed previously, the following estimates for the entire EPZ population resulted (at the 95% confidence interval): Between 26.7% and 36.78 of the households would have reported receiving the information; Between 55.8% and 66.3% of the households would have responded that they had not received the information; and Between 5.0% and 10.7% of the households would not have known whether they had received the information. 24'
In conclusion, no areas of the Turkey Point Plant siren system were identified as needing enhancements. However, the relatively low percentage of households that stated that they had received information about what to do in a real emergency at the Turkey Point Plant indicates a possible need for enhanced distribution of emergency information, public education, or both. 25
0 IV FINDINGS FOR EVALUATION CRITERIA E 5 J Fo 1 g' 2 g N 3 ~ AND N.5 Those aspects of the alert and notification system addressing evaluation criteria E.5, F.l, N.2, N.3, and N.5 of NUREG-0654/FEMA-REP-l, Rev. 1, have been reviewed by FEMA and found to be adequate to provide reasonable assurance that appropriate protective measures can be taken off site in the event of a radiological emergency. This conclusion is documented in letters to the Honorable Robert Graham, Governor of Florida, signed by Samuel W. Speck, Associate Director, State and Local Programs and Support, FEMA, dated February 16, 1984;4 and William J. Dircks, Executive Director for Operations, U. S. Nuclear Regulatory Commission, signed by Samuel W. Speck, Associate Director, State and Local Programs and Support, FEMA, dated February 15, 1984.5 In these letters, the Turkey Point Plant received FEMA approval under 44 CFR 350, conditioned on an ultimate approval and verification of the public alert and notification system as called for in NUREG-0654/FEMA-REP-1, Rev. l. 26
REFERENCE LIST Florida Power and Light Company. 1985. "Updated final saf ety analysis report." February 1985. Florida Power and Light Company. 1984. "Public alert and notification system report for the Turkey Point Plant." Prepared by HMM Associates, Inc. December 1984. U. S. Department of Commerce, Bureau of the Census. 1983'. Volume 1, Chapter A, Part 1, "United States summary." PC80-1-Al. April 1983. Federal Emergency Management Agency. 1984. Letter to the Honorable Robert Graham, Governor of Florida, signed by W. Speck, Associate Director, State and Local 'amuel Programs and Support. February 16, 1984. Federal Emergency Management Agency. 1984. Letter to William J. Dircks, Fxecutive Director for Operations, U. S. Nuclear Regulatory Commission, signed by Samuel W. Speck, Associate Director, State and Local Programs and Support. February 15, 1984. Nuclear Regulatory Commission and Federal Emergency Management Agency. 1980. "Criteria for preparation and evaluation of radiological emergency response plans and preparedness in support of nuclear power plants." NURFG-0654/FEMA-REP-1. Revision 1 . November 1980 . 'ederal Emergency Management Agency. 1983 . "Standard guide for the evaluation of alert and notification systems for nuclear power plants."'EMA-43. September 1983. International Energy Associates Limited. 1983. "Analysis of siren system pilot test." IEAL-333. November 2, 1983. Florida Department of Community Affairs. 1983 . Letter to Glenn C. Woodard, Jr., Chief, Natural and Technological Hazards Division, Federal Emergency Management Agency Region IV, signed by Gordon L. Guthrie, Chief, Division of Public Safety Planning and Assistance. (With enclosures.) July 25, 1983. Donnelley Marketing Information Service. 1985. "American prof ile. " October 22, 1985 . 27
APPENDIX A OSPM Topographical Profile Charts OSPM Topographical -Input Data OSPM Siren Sound Pressure Level Input Data OSPM Meteorological Input Data OSPM Siren Sound Pressure Level Output Data
TURKEY PolNT 7 AZIk1VTH, E 70 I I- l s
~~)
I A 6J F 10 12 ('Thr. u:.one) DI:=-T+J~lUK, FT,
+$ %AVN I 4) w ~ y TURKEY POINT 7
.4ZIM<-RH, D lE 'PO')
UJ 2%+ lv Fp (~ng,.@pe~,l Vl:.7ANUK, PT.
0 TURKEY POlNT 7 AZlt1~.RH, NC Ci I-. =). fiJ UJ
'IR XP ~
(
~
F; 12 (Tll4'0 ~ 6 Pi 0 ~) D fw~.<J'f(
~ I'W r TURKEY POINT 7 4'It lVTH, NNE aq V
"-f.
le UJ i>) MO 5 A l2 (Tnr;u.>and ~) 1Hi<VCC, FT.
TURKEY POlt')T 7
.~'IMÃH, N 1CO I-69 0
~ Oil UJ 20 12 (1b vu =:and-".) DIH.~NCAA, PT.
I ttA,%" I, W lt ~ ~ TURKEY POlNT 7
~(MVm, NW).~
1%~ QQ 60 " 0 UJ 20 10 F. ( nlnu-.,r fig.,) IH;~Jul..F', t T.
e TURKEY POlt')T 7 A:Ik1NN, NVF lC' 89 7O I U c C ~) F-. w Jg .:). k LU p w~v'C" 19 5 (Thai:and=.) DIST.4JilCE, PT.
vt . sv ~ i V' ~ ~ 0 TURKEY POlt'JT 7 A:IMÃN,
>A'lyQ 7O I
h. I-. @] til 4C'" U3 If 1 l 1 1 12 (Tho.i:dna=,) VI T.4N~L, rT.
L ~. TURKEY Pelt'lT 7 AZIMVTH, '~!>~~V.< K 0 N I-.
.-).
Cu lU
'7(w (elloo'El t:- = 0 il0 -~)
Dl -7~¹C, W,
TURKEY POINT 7 AZlk1%?I, ~V~( 1C>~ --f. fJ hJ
~-~v 10 f~ 10 AlQU~QilJ-'~)
f, DlR~.ANGE, i'.
TURKEY POlNT 7
.4ZIMGM, ~A'q I-U
'l. hJ 4V 1'0 10 (Tll0'll ~ 0 I"id.~) DIH+J~lCC, i T.
V TURKEY POINT 7 AZltAÃ,I,:=. lM I-h I-. w) 6J ld lv a jThvu:and=.) DIM;<filCL, H.
qadi TURKEY POlt'lT 7 AZlh1'-.RTI, 5K 1 Cv (1 C~+y I-. Y -:). G3 hl
'7()
1(: 10 (Thr. v:.an 3.-,j DIH;<f'ICE, FT.
~ 8 ht 8 ~ l4-TURKEY POINT 7
.<Zlk1t M, 65K 16'a 70 0 CjQ bf UJ 'Z QA,I' F.. 10
( Pjlc'9= Villi-.)
> ~iTtM~lG PTs
FLORIDA PONER AND LISHT COXPANY TURKEY POIHT ANS S!REN 47-NS3000 SOURCE-RECEIVER TOPOGRAPHICAL IHPUTS ALL BEAPIHSS ARE NITH RESoECT TO THE NORTH XEASURIHS CLOCKNIS GRID SROUND FQLIASE INTERVEHIHS DISTAtiCE TO HiGHEST HEIGHT GF POIHT DISTANCE BEAR INS HE I SHT TYPE PEHETRATIOH OBSTRUCTIOHS QBSTRUCTIQH FROtt SDUFCC QSS'IRUsCT!9H 500. 90.00 9 ~ CO HARD 0. HO 0. 100C. 90. M 10.00 cOFT 0. HO O. e(e 200C. 90. M 9. 00 HARD O. HQ 0. 4 4000. 90.00 8 ~ 00 "ncTl Cvs O. H9 Oe V~ 5 eOCO. 90. 00 8,00 SDcT 0. HQ 0~ r, 1 ~ 6 SOM. 90.00 8 F 00 80FT 0. HD 0. V~ T ( 12000. 90 00 F S.OG SOFT 0. HG G. I~ S 500 67.50 9.00 SOF 0, Nn 0. 1~
'000.
67,50 10.00 SO T 0, HO 0. 10 20M. 67.50 9,00 SOFT 0. HO O. ~ e 1 ~ 4000. 67.50 S.Ã 0. HL~ 0
~ 1 600(. 47.5( ve v 1 HARD n An es1 ~ ~
I>>
~ r 3000. 5( ~ 1L 1 ~ 11 ~ Ve AD 1 ~
14 12M;. 47.50 3. 00 cGC T
~ ~ Nn ' "e 50v. 45.00 'JG SOFT s%
V~ HQ r ~ 1000. 45 snn '..00 VLI T
~ !i0 V~ '1 ~ 'GCO 45.00 10,00 SOFT 1~ HQ lc 4000. 45.oo 9.00 HARD C. XQ 1~ r~
19 60M. 45,00 8(M 0. NO G. (~ e ~ 20 8000. 45.00 S.M SOFT 0. ll9 0. 1~ e 2~ 1200.". 45.00 8.00 SQF3 C. HO 22 50G. 22.50 C.OC "0 0. NQ Oe Ve 24 10CG, 22.50 9.00 "0 0. li0 0. Ve 24 200C. 22.50 9.00 CQC( 0. NO D. '1 ~ A5 4000. 22.50 10.00 101 I 0. HO 0. 1 ~ 26 6000, 22.5D 10,00 COl' 0. HO 0. V~ 27 SOOC. 22.50 9.00 SOFT 0. tiD 0. l) ~ 28 12000. 22.50 11 00 SOFT 0. HO 0. 0. 2c 500. .OG B.OD SOFT 0. HO 0. Ge
"
30 1000. .00 -, 8.00 SOFT 0. NO 0. eb V~ I 'c 4~ 2000. 8 ~ 00 Dr 0 HQ G. T ~ 32 4000. .M S.M cOF 0. ND ve
>>T 6000. .00 9.0G SQF": 0. XD G.- re 'zh SOM. .GC rO crFT 0. NO V~
35 1200G. .CG o CAST
~ 1 ~ XO 0. ~ ~
36 500. 337.50 9.00 SOFT 0. NO 1~
FOL}ABE IHTERUENIHS O}cTAHCc TG HISHES! ( "(
<<Vii e 6R}0 SROUND ~
i J."e v'('<<0:!(UVe POIHT DISTAHCE BEARINS HE}SHT TYPE PENETRAT!OH OOSTRUCTIONS OSSIRUCT!GH FROH bi(URCE na ~ 0/ IOM. 337.5P 9 ~ 00 0VF'OFT
- 0. NO 'a ~
38 2000. 337.50 9.M 0. HD P. v~ 4000. 337.50 9 eo
~
CGCT G. HO
~~
40 bOOC. 337.50 9.00 SOFT 0. NO Vt ~ a ~ 4} 800!. 337 F 50 9.00 SG. T 0. NO (i, C a ~ 4o }2000. 337eQV !1.00 SOFT N0 e ~ 43 SM. 315.00 !O.M SOFT "iO ie 44 IOM. 315.00 !V.M SOFT G. HO a ~ 45 2epp. 315,00 }G,OC S0c'et NO a ~ 46 40CG. 315 00 F 1 l. M 0, NO Ve a e
~
47 6000. 315. K !1 00 ~
"C" O. HO ei ~
Sippp. 3!S.OO s< ep c ~~
~ ~
Vne e ~ e<<VVV a'Ii ei ~ a 0 cc e ~ ni
~ ~ i I'J e ~ ~~
5n
c. <<Vv'e 29:,50 }cJ. VG ce (' N0 Vt ~
5} 10{;G. 29 .50 9. 00 SOFT HO O. v <<>> ~ SJ '0 CC n a~ NG 53 '4 4000, 202.50 9 oe~ SOFT 0. C. bpep, 292.50 I l. 00 SOFT 0, HO CJ, 05 8000. 292.50 if.M SOFT 0, HO )e 56 120CO. 292.50 9. 00 SOFT 0. HG 0, Si seo. 270.00 9.00 SOcT 0. HO e. Vi 58 !eve 270.00 9. 00 SOFT G. NO ~ ~ 50 2000. 2!0.00 0 pn cn-r v (' e. HO ep 4npe 2ip.pp 9.00 GF: Ve HO 0. ~ ~
' COcs 0~ 60Ã. 27v 00 F ".. 00 0. H0 a' e~
02 80CO. 270.00 9.00 c00( 0. HO" 0. tt ~ 63 12000. 2 O.M 1 I. M SDF'OFT G. HG Ve b4 SSO. 247.50 9.00 0. HO 0. 65 1000. 247.50 9.M SOFT 0. HO 0. 0 00 20M. 247.50 10.00 SOFT 0, NO 0. 07 4CMJ 247.50
" 9.M 80ci ee 00 0.
e8 60{(J. 247;50 '..M SOFT O. HO Ve v~ b9 8000. 247.50 !!.00 SocT G. HO a~ 70 120M., '47.50 9,00 SOFT 0. HG G. l~ SM. 225.00 On na ~ "NO C. 72 fppp. 225.00 9.00 SOFT 0. HG 0.
BRIO SROUHO FOLIASE IHTERVENIH6 DISTAIICE TO HIGHEST I Hl. 'F PQIHT OISTAHCE BEAR INS HE I BNT TYPE PENETRAT!OH OBSTRUSTIONS OBSTRUCTION . R J.'OUPr= ~ 73 2000. 225.00 9 ~ 00 SOFT 0. KO C. r~ 74 4000. 225.00 9. 00 SOFT 0. k0 0. I' 75 6000. 225.00 9 ~ 00 cr,-;l
<<Jt 0. HO Ir~ ~
76 8000. 225. M 8.00 SOFT 0. NO V~ I/ Ighpp 225.00 B.QC SrJF T O. HO 0. I ~ 78 5M. 202.50 9,00 S0FT 0, k0 0. hV ~ i9 !000. 202,50 9 ~ 00 SOF: O. NO C. h I ~ 00 200C. 202.5v 9. CO HO 0. V ~ BI 400<<'. 202 50 0.00 SOFT F HO 0. J~ 82 6000. 202.50 10. 00 SOFT 0. HO O. V~ 83 8000. 202,50 8 hp SOFT 0. HO 0~ ~
'I I 1 'shh a<<('vv ~
QCrr IIII I rr,
~ vs '
e Nh 1 V~ h"
<< QVJ ~ Is ~ <<v ~ ~~ ~ V i '." I ~~
V~ ~ lv 'Ja 1000. '80 M 9.00 cnFT Iis1 h~ ~ r ~
~
r.p C" 2MO, <<J,: '\\ ~ 400C. !80 00 F 10. 00 SCFi Ve Nh r~a
' ~
6tj00. !QOO B. GO SOFT C. HO C~ e1
~ ~
BCQO, !BO,X 8. 00 0 ti0 hV ~ 91 1200v". 180.00 V~ HO hV ~
~ ~
92 500 157,50 9.M SOFT \'e HO V~
'000 f57.50 Qh 5Oc'I O. !i0 C.
04 20M. 157.50 9.M SI1<<T O. I NO V~ ~
~ ~
95 4000. !57.50 9.00 SOFT 0~ NO 0. 96 6MC. !57.50 6 ~ 00 SOFT Va HO r~ 7/ 8000. 157.50 4.00 SOFT 0, NO C. 0<< 12000. 157.50 r se 4~ 00 SCFT Va NO 0. r~ 90 5CO. 135.00 9.00 SOFT 0~ NrJ O. 100 1000. 135,00 9. 00 SOFT 0. H0 0. re
!01 2000. f35.00 00 SOFT 0. HO 0. hV ~
102 4000. 135 00 F 7.00 SOFT 0. HO ~ ~
'03 135.00 1 60v0. 6.00 <<<<t l Je HO C. IJ ~ !04 BOM, !35.00 4.M 1 0I<<t ~ HO .
V~ eQS 12CM. 135.00 4.00 S0FT O. Nl'. Ve V~ 106 500. 112'50 9.00 SUFI 0. NO Oe 'I ~
!07 IGOQ. ~ r<<a ~ v rp r--I 0Jr r, IIO V G. r~
108 2000. 112.50 9.00 SOFT 0~ NO 0. I 09 40M. 11".50 1 ~ hh 0hC re IIrJ r. VV V ~ I IQ 0I/Ops II~ C
~ ~ <<V Ca vsV V~ re ~ ~
8000. 4 ~ CQ SOF T 0, Nh Ie f2QCG. 11 .50 '.00 0I10T I <<I ~ C. q/I V~
FLORIDA PONER AND LIGHT COHPANY TURKEY POINT ANS SIREN 07W3000 NOISE SOURCE POMER LEVEL INPUT INDEX SOURCE DBA DBC 31.5 63 125 250 500 1000 2000 4000 8000 NZ) TURKEY-NS3000 158.4 158.7 .0 .0 .0 .0 152.0 157.0 149.0 141.0 134.0 XO= .00 YO= .00 ZO= 58.00 HEIGHT ABOVE GROUND= 50.00 FLORIDA PONER AND LIGHT CONPANY TURKEY POINT ANS SIREH 47-NS3000 NETEOROLOSICAL INPUT CONDITIONS Hl= 10.06 NETERS H2= 60.05 NETERS NIND NIND SPEED NPS) TENPERATURE[C) RELATIVE BARONETRIC YEAR SEASON NOHTH DATE HOUR DIRECTION Hl H2. Hl H2 HUNIDITY PRESSURENN OF HB) 1984 16 12 120.0 5.0 5.7 29.4 28.3 51.0 756.0
FLORIDA POMER AHD LISHT COHPAHY TURVEY POINT AHS SIREN 47-MS3000 SIRFH SOUND LEVELS IN OBC UHOER NET COHDITIOH 1 DISTANCE IH FEET Ai!l UITH 500. 100 C'. 2000. 4000. 6000. 8000. 12VOV. E 106, Y2s 77 45. 36 <<sYs
'1 EHE 106 93. 52 45. 'ns 2'I.
HE 'On. 94 ~
'3. '4.
- 40. 36 44 IInn 44 sls ~~
10'I sn ~ 75. iVs ')s
+ ~
sl<< H ~ <<I ~ ~ ~ 84 ' F ~ s'V s )Cs ~s s ~ HHH Is s, 4) 75, 70. C)s L'4 HH 104. )4ss )C 7C. 54
~ ~ ~ sl ~ 66.
104. 4'6 HNH 84. 75. 70. 66. ~ ~
'6 H 106. 84. 75. 70 nns 54 HSH 106. 84, 75. 70.. 6 ~ .
SH 10n. '4. 84. 75. 70. 66. II4 s ~ ~ S)H 106. 84. 75. 70. 66. 59, S 106. 45 72. 45. 40. 36. SSE '06. 93. 70. 45. 40. 36. 94 S. 106. 9I ~ 69. 45. 36. <<Ys fnn 106. 64 45. . 40. vns 'jn
WIAA g'\ I 4 yupygv PolHT 8 AZIkitVMs < l C~> I- F.9 lx Q 6J J hJ II
)C?
6 10 12 (Thr.,i.-:an: ~ g(p ~hfdf( j F j,
TURKEY POINT 8 AZIMN?l, Bijou ag
'? Cp J 'v' l2
* '4 A TURKEY Pelt'kT 8 AZlt'1i %9, NC qq P,Q F,Q A
- -f.
UJ
=1 2 Fc 12
(, Bi<" I*"l'Ri"-~
' .-".I'~I ) "i'l~!
TURKE POIt')T 8 A:Ik1VTtl, )~INK 1vv I U 6<r'2
~ Jg 6>
J ~s i 'b
- 10'URKEY POINT 8
.4ZIMi.RN, N C-Q J
49
/
ca V C (Thr;u=:inc =.,'.' VI5T~1>lCE', > T.
0 TURf'.EY POlt'3T 8 0 AZlkfhi N, Nt~f'!". 1'M Q .=) 6J J M lZ (The <i-":vn"..". ~
A. ~ ) ~ TURKEY POllNT 8
.~Zlkl~.fil-l, t'I'!V 169 aq
"-) le UJ
+r V 2Q' ~~i 6 10 12 f, @le'~A~Qf! ~~.>~
DiHA>"!CK, ! ~ ~
TURKEY Pelt')T 8 I HVTrl v" I"'90 (W C)y fiJ
'g ZC 1'0 r~
rp% (Then.;on5.".. 1 DIG.;~1~1'..5, r"t,
Wk 4l/ ~ / H Al = V ~ TURKEY POINT 8 li CP
'I-. ~'f 7%2'.
hl 1Q Vl.:T.~NCE, P1
TuRKE> polHT s Zlk/I l ~ 'j'>! -oQht 199 egg AQ I-lil DJ ZO F I II'i A i, The.i."arid-". > Vl5TAt'!Ct,, i"'T.
t<<W t\ 1'URKEY AZlf1'-JM Pelt')T 8 5'.".'f'-
- h. F,9 C/q I-.
~) hJ A'~ 10 {lfl4'J-:elf.l-y) DIHAtJCC, ri.
TURK 'OINT 8 Ik'lifer, M 1 C'v
'3<)
~e (.7 C)~q b 6J hJ
,'7Q I
(i 6 10 (,7110'.I;.Qfld.. ~ C!5T.~b! Ct., f- T.
~'\'a~~ 1 + *y:"I 't y<<v vp~wi TURKEY Pelt'lT 8 AZlk<N tl, =. 70
~O A
l-.
.-).
fiJ UJ I 1 lO
/m t A (Tll4"3 ~U Il<3 ~)
DIH;-"HUE, Pi.
~1 P TURKE'r'OINT 8 AZINE)4%, ~~~K I
~s ~P) %J'V Cia .J UJ o PJ ~
~ ~ TURKEY Polt'lT 8 AZlk 1VTH, =-.E 1'~ 9 iP <Q 7g) k 0
~J.
(i3 UJ QPg 19 t 10 (Thb'.I~<ifiV:ij DkH;"ll FI
14 ~ '4 I' ~ + 4 . a4W~1+t gA'~ 0 TURKEY POINT 8
.uglt'14tl'H, EGG ) e'a~
uJ I
~o 4'X+
19 I Y (T~.-.~:.:r;net:: t
FLOR19A POHER AHD LIGHT CONPANT TUR{lEY POIHT AHS SIREH IB-HS3000 SOL<RCE"RECE!UER TOPOGRAPHICAL INPUTS AL{. EARIHBS ARE M.'TH RESPECT TO THE HDRTH 1{EASUR!HG CLOCKHISE GRID SROLND FOL!ASE IHTERUEHINB DISTANCE TO HsG{{ooT 08STRUCTIO{i FRON SOURCE << ~ I>> POIan Ol STANCE GEAR I XG HEIGH: TTPE PENETRATIOH OSSTPUCTIOHS 500. 90.00 5.00 SOFT 0. HD O. a ~ 1000. oD.OO 5.00 SOFT HO r ~ 2000. 90.00 5.00- SOFT 0. HO G. v~
~
4000. 90.00 s.oe SOFT 0. HO oe.eo 5.00 o O'o ~ G. v~ 6000. NO 8000. 90.00 .'.00 SOF: v~ 1{O v~ ioeho '0 00 5 ~ OG SOFT 0. HD
- hv ~
500 67.50 s,eo SOFT HO 0>> ~ ~
'000.
- 67. Se 5,00 SOFT HO O.
1>>'I 2000. 67. 50 5.00 SOFT O. HO O. r
<~ ~
WF<<~V>> 6/s <<0 S. 00 U s
'>><
I r~ Osis'v'I <<7>> oe O'Ut I O. 'tu
~ r V'I{' <<~7>> ih <<( 5 ~ 00 gO < <<rr '<':Av' o7 ~ 50 00 <<LQ I' hr ~
li s << ioh 45.00 . 5.00 SOF: II<< k{1 V' IDGG. 45. 00 5 00
~ SOFT D.
r, I/ 2000. 45.00 5.00 SOF Os r~ 4000. 45,00 i e. h>> v~ 18 6000 45. 00 5. Go PG r-SOFT o;ra 0, NO NO Vs c;pot ';ES 79 <<'v'
\, ~
20 Geee. 4s.oe Vi hO e. ~ I ~
~ < 'ihhnvav ~ 45.ee 5.00 SOFT G. l<D <<s 500. 22 '0 5.00 SOFT e. ~ jfi \~
s 2o !Gee. 22.50 '.OO oOF'AF ea s", <;n 5.00 < r~ 24 2eee. << ~ <<V 0>> <{8 4000. 22>> <<se S.OG coos NO 26 6 Ooe. 22.50 5 ~ Oe SOFT 0. ND <r<>> v~
- 0. 'a 27 eeoc. 22.50 5.00 SOFT HO
>>8 I eeo. '2.50 12.00 SOFT D. '2o <<Or>> .00 SOFT 0. HO >>3 's ~ r~
V aa <eeh i nc >> 0~ <'g 0 I ~ 31 2000. .00 10.00 SOFT 0. i{O s ~ V<<r <anh
~ a<< ~ .00 5.00 SOF: Nn n
v~ 33 6000. .00 5.00 SDF: NO ts eoeo .OG s,ee 0. >'8 ~ I a ~ 5 I ')h{8 .00 5.00 SOFT 0. vEQ 1!450. ~ ~
.
he . 337.50 5. Oe SOFT 0. Va
SRIO 6ROUND FOLIAGE IH'.ERIjEHIHS OISTAH"E TO H16HE:T POINT OI STAHiE BEARING HEISHT TYPE PENETRATION OBSTRUCTIONS OBSTRUCT!ON FRQN SO'JR;E 37 1000. 337.50 5.00 SOFT 0. ijt) et 8 i000 ~ 337 '0 5. 00 SOFT v~ HO ~ Ga r ~ 3v 4M.' 337.50 00 SOFT O. HO Va r. 40 6000. 337.50 .'.00 SOFT 0. NO 0. a ~
<I 8000. <<7~0 5. 00 Oe 0, HO 0. !400vn. 337,50 5.00 SOFT 0. NO ~ ~
te 500. >10 00 F 00 Qe Va NO 0~ 44 1000. 315.00 5 00 SOFT nv ~ 'iO F a ~ 315.0:i >>t 1 Itv ~ v ~ v'J 0Vi ~ v~ .'jO v~ nte ta 4v'Uhva 3!5 GtJ da vv v>> i v~ r~ 47 6000, 315. tX v rv e<<tt v I el V~ ijO v~
<< <c
- 4) "8000, rav hn~ vv 5.00 00T hv ~ NQ t.V ~
<annnv ~
a>>vv 315. vv <<a00 ~ Ve ~ Va HO v~ I'ht 292.50 '.00 SUFI 0. VVV ~ NQ r ~ e ~
!OK. 292.50 '; 00 ~
0Qt<< 0. VO I ~ 2000. 29?.50 5.00 SOFT 0. HO 0. v ~ 4000. 292,50 5. 00 nv ~ Nn 6000. 292.50 000 ~0
'0 S:QFT SQ T 0. YES 0,
5750. ~
~
v C. r~
~
55 80nn 11 F 00 SQF 0~ NO G. V~
~0 10hnh ~ ~ vvv ~ 292.50 <<.00 00- t<<
V~ HO r ~
%7 500, ?70;00 5. 00 SOFT 0, NO 0.
08 1000. 270.00 5. 00 HO G. i,'e 09 2000. 270.00 5. 00 0. HO 0. ~~
~ ~
SOF'OFT 00 4000. 270.00 5. 00 0. HO 0. Va 6000. 270.00 5. 00 SOFT 0. NO 0. lr ~ bi 8000. 270.00 10 00 SOFT 0. NO 0. 03 12000 270.00 9.00 SOFT 0. HO 0. 64 5iv. '47 50
~ 5 00 Se<T NO te r~ ~I '5 !ON. 247.50 5.00 0.IF'T
- 0. HO Oa 65 2000. 247.50 5,00 SOFT nv ~ HO hVr r~
~
07 4v00. 247.50 5.00 eQ O. HO Va U ~ 68 '.'v00. 5, i',tG SOFT r> ~ t), r ~ 247.50'47.50 re 69 8000. a ~ ~ Ov SOFT 0. ND Oa v~ 1 'Mte0 247.50 '!!.00 SO.; 48 C,
>>ett ~ t i'e<<
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GRID SROIJND Fe'.IASE IHTERVEHIHS DISTANCE TG H!BREST ~ ai ~ ~ PO]HT DISTANCE BEAPINS HFIEHT TMPE PERE'(RATION OBSTRUCT!GNS GBSTRDCCTIGN FRG{{ SOURCE 9!S I R'."6 T.I."N 73 2000. 225,00 7.00 SO. T O. HO 0. iv ~
'74 225.00 7.00 4OOO. SOFT O. NO 0. a ~
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,a 81 4MO. 202.50 7.00 SOFT 0. HO 0. v~
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FLORIDA PGNER AHD LISHT CGNPAHY TURKEY PGIHT AHS SIREH SIO-HS5000 HDISE SDURCE PGNER LEVEL IHPUT IHDEX SOURCE DBA BC 31.5 63 125 250 500 '000 2000 4000 8000 sHI: TURKE)'-HS'IOOO !58.4 158. 7 .0 .0 ~ 0 ,0 152.0 157.. 0 !49.0 !4!,0 XG= .00 <00 ZG" 5 00 HEIGHT ADGVE GPGUHD- 50 'O
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s 'J<<s'ds 1984 l' V l2 12(.0 5.0 5.7 51 0 ~ w ss ~ as
FLORIOA POIER AHO LISHT COHPAH
.TURKEY POIMl AHS SIREN %}0-HS3000 SIREH SOL'HO LEVELS IH OBC UHDER MET COHOITIOH 1 Ail""I" E
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- 0. HG 0. O.
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- e jslf> y'i LOPIOA PURER AHD LIISH! '.ORBAL hk" c'iv h 'j<<3 h0
~ ~ 'I ÃIMD HIH9 SPEED!UPS'. TEHPERATURE(C) RELATIVE OAROYETPIC IJ }, ~ W .":O'."; DI ..".": I OH H} H2 HI H2 HUNIOITY PRESSUREiPH Or H"") I 120.0 5.9 F 7 29.4 28.3 51 ' 756.0 SlPEN SOl5 LEVELS lH BEC iuiBEd q."z g p,rstlga: i cd(0 ih/a'a ~ vvba 4000. 6000. 8000. 12000. I (I ~ v v~ 9' 45. 40. 36. 106, 9.". 7!e, 45. 40. 36. 29. 10."'. 94. /de 47. 40. 36. 29 ~ '/6, 84. 75. 70. 66. 59. a ~ vd ~ 95. 84. 75. 70e 66. 57 ~ 106. 95.- 84. 75. 75. 66. 59. 10d. '/d. 84. 75. 70. 70. 59, 10!. 9da 84. 75. 75, 70. 59 l0!, 'lve 84. /5a 75. 70. '9. <t a )va a C~ 84. ~ ,ta/ ~ 70. 70, elva vv Bi. 70 ~ ~ . /De a/ /a ~ ae ~ /Da 70. dde 5Y ~ ae ~ 'e'd. I'a 4t, 36 ~ v9 ~ I/a v ~ v) I '/a v ~ 1va vv a ~ % ~ ~ '0:. 92. 69. 40. 36, d9 106. 6d. 45 40. 36. 29, ?0 10 0 ! UF'.!:Vt POINT 12 ,"iZit'f'.Gl-l, U lE 1 <% ?'v' Cp I-. ~ w) 6J hJ 10'
- 6. 12 (13>~u.".and:)
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'~0!B'iY.'.";i POKE;-. L:YEL iHPUT
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I i~aa ~ 4 SDÃa I ~ V .G .0 152.0 157.G 149.0 141.0 134 a 0 taO= .00 YO= .00 iG= 5.00 HE16HT ABOVE GROUND= 50 00
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~
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~ <<JICV 5,0('. G. NO G. 0.
v0 ; ~ 155.00 00 Sect D. HO 0. 'Je i'0< .000. !55.00 5,0rJ SOFT 01 0. 0.
~ FC<< ~ ~ 5.00 SOcT 0. Ge 0.
l I' 500, 112,50 '. 00 SOFT 0. 0. ~
0.
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4 ~
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4000. 11i.50 5.00 SOFT 0. NO 0.
I 1
0 6(00. !12,50 5.00 SOFT 0. 0. 0.
8000. 1!i.50 5.00 SOFT D. 0. 0.
112, 12000. 112.50 5.00 SO. T 0. NO Q. 0.
H-'}O'...OL'R". PAYEE LESE'NPL~T r.- '<<<<
e V ~ v ~ ~ 5 I>> V 125 250 500 }000 2DG! 40'( ."".CD (.'"..
!5":.4 C
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KiNC HlMO 9PEEO(HPS! TEMPERAI(PE(C! RELAT!YE BAROMETR}C HOUR OiR OT}ON H} H2 H} H2 HUMIO!IY PRE"EURE(H!} O, HG]
12 }20.0 5.0 5.7 29.4 28.3 51.( 756.0
FLORIDA POHER AND LISHT COHPANY TURKEY POINT ANS SIREN 020-NS3000 SIREN SOUHD LEVELS IN DBC UNDER NET COHDITION 1 DISTANCE IN FEET AZINUTH 500. 1000. 2000 4000. 6000. 8000. 12000.
E 106 92. 69. 45. 40. 36. 29.
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li 106. 9&. 84. 75. 70. 66. 59.
NSN 106. 96. 84. 75. 70. 66. 59.
SN 106. 9&. 84. 75. 70. 66, 59 SSM 106. 96. 84. 75. 75. 70. '9.
S 106. 93. 72. l5. 45. 40, 32.
SSE 106. 92. 70. 45. 40. 36. 32.
SE 106, 91. 69. 45. 40. 36. 29.
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FLORIDA PDHER AHD LIBHT COMPANY TL'RYEY POINT AHS SIREN 426PHS5000 SOURCE-RECEIVER TOPDBPAPHICAL INPUTS AL'EARINBS ARE "ITH RESPEC'. TO THE NORTH NEASURINB CLOCQISE SRID SROUND FOL!ABE INTERVEHINB DISTANCE TO HISHEST POINT DISTAHCE BEARINB HEIGHT TYPE PEHETRATIOH DBSTRUCTIONS OBSTRUCTION FPCN SOURCE G."E!."..';". I GN 500. 90,00 5. 00 SOFT 0. HO 0. ~0 V~
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APPENDIX B SAMPLE SIZE DETERMINATION The number of households that need to be surveyed is determined based upon the need to obtain a sample size sufficient to obtain a 95% confidence interval with precision (half-width) of 0.05 for the estimate of the proportion alerted. The exact number of households to be surveyed can be derived from the following statistical considerations. For relatively large sample sizes (n h 30), taken without replacement from a population (N) t the sampling distribution for proportions (e.g., the proportion of the population alerted) is nearly a normal distribution, the mean of which is the proportion (p) of the population alerted and the variance of which is p<> - p)/n If P is the observed sample proportion, then for a particular confidence level with confidence coefficient Zc, (P - 2 y) S Z 2
Z>11 - p)/n N-n Thus, for this confidence level< the actual proportion of the population alerted satisfies the following inequalities: '
Z2
i4 is customary to make several approximations. Pirst, since the term 'in N in the denominator (the finite population term) is positive definite for all reasonable values of W (0 < W < 0.5), omitting , this term will result in an approximation to n that is slightly larger than its true value. This is an acceptable practice in sizing, the sample since a largei sample gives greater precision. 2 A second approximation that can be made is to neglect the terms in W2 within the bracket in the numerator. Analysis demonstrates that this underestimates n when P < 1/2 1/4 2 + 8W2 or P > 1/2 + 1/4 2 + 8W2 and overestimates n for P between those two values. Por the case. of interest (a 95% confidence interval with precision of 0.05), this approximation provides an overestimation of n when a sample size greater than 191 is required. Since the sampling plan calls for a minimum sample size of 250, regardless of the value of P, this approximation is acceptable because it also yields an estimate of n larger than the true value. Therefore, for the purposes of the pilot test and subsequent surveys, the following approximate equation can be used to determine whether a sample size larger than 250 is required: r using 1.96 for Zc and 0.05 for W, n ~ 1536.64 P(l - P) Data from the pilot test can be used to illustrate the effects of these approximations. In the pilot test< the population of tone alert households from which the sample was to be drawn (N) was approximately 4500 and the observed proportion alerted (P) ~ was 0.675. This yields 311 5s the exact result for n.. . Neglecting the finite population term yields an estimate of 334 for n< and the simplified final approximation estimates n as 338. Thus, the final simplified approximation overestimates the required sample size by 27 in'his case. OORCE: International Energy Associates Limited. 'Analysis of Tone Alert Pilot Test." IEAL-321. September 27, 1983. f SAID GROUND FGi.EASE I e!TERVENIHS DlcTANCE TO 'IISNccT" POINT DISTANCE BEARING HEISNT TTPE PENETFATIGH GSSTRUCTIONS GGSTRUC !QN FRGH SGUFCE JSSTRJ':!!CN 0/ 1000. 337.50 5 00 F c OFT e 4 ~ HG 0. Ir~ ~ 3S 2000. '37.50 5.00 SOFT O. NO 0~ ~~ r ~ 4000. 33?.50 5.00 SOFT 0. HO 0. V~ 40 6000. 337.50 5,00 SOFT Pe HO n4 ~ I'I 41 8000. 337.50 10. 00 cJr I 4~ HO p. 'I ~ 42 1200. 337. 50 10. 00 SGF: HD Ir ~ 500. 315.;"0 5.00 :"OF I n NO 'Ve 44 1000. 315 00 F " 00 SG. I NO r~ 45 2000. 315.00 5.M 0 NO C. 4~ 46 4000. 315.00 5.00 SG. T NO 0. 47 6000. 315 00 F 5.00 ShF 0. vO hr ~ lQ 800:!. 31c I ~ VV c !."IPP. 315. 00 QUAL I p. 4 I 4 ~ Qepv'. 500 ~ B?. 5( 0') SOFT nV ~ hire ie V~ r~ I IV 1000. nrem VVI ~ NG ) ~ ~~ I~ JCPPh ?c I ~ cp c pp n4 ~ Nl I lr ~ 4000. ?c?,50 5.00 SOFT ie NG 4 ~ 4~ c4 6000. ?g') cog c SOFT Oe NG r~ 55 cPhP 292.50 5. 00 SOFT 0. NO Ve e ~ Dc 12000. 2'??.50 19.00 SOFT n4 ~ N9 57 500. 2/Oe 00 5 np SO. T, 0~ NO ~e 4~ 4 ~ 50 lppn 27n 00 S. OG SGF I h4 ~ NG 4~ Ie ~ 2000. 270.00 5epp Cg 3. NG r ~ 4003. 270 00 F 5.0( SGF: 4~ HG e ~ 6e 5000. 270,00 5.00 NO J ~ 62 8000, 270,00 On cG=T 0, Nl9 p. 0~ 63 12000. 270.)0 ..00 HO ) ~ 64 500. 247.50 5.00 SOFT 0. N9 0. 65 1000. 247.50 5.00 SOFT G. NO e ~ 6c 2000. 247.50 5.00 SD.=T 0. NO e ~ 4 ~ I ~ a?'8 40@. 247.50 eccF-, 0. 0 V~ re 6000. . ?47.50 ve 00 SGF. 0. NO 0. 5Q e000. 24/ ~ Qfl 5.00 cOFT Ve HO 0
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6J UJ Tg 5 10 12 (Tn~.;.-:-.'rid:) C'l=-> "'~< PT 0 1CQ'uRKEY PoltlT 41 .~Zlkf(R H, 5 yO I-- h F.Q (.i Pl i-fil J G.l ZC 10 17 i TURKEY POlHT 41 ,~~( f,if[ l~ 'ihiM~Ai'0 14',r pg I Li. JZ (:I cf uJ j egin Uj 29' 1;r-IL ~ 'Vi i I A~~ I g 0 TURKPGlt)T 41 .~Zlf'140li, 5E 60 (:c g r~ I-. '.). L~l U.l 49 lr h 10 12 (Ttiv.i=:~">r3:.) TURKEY POINT 41 .4Zlk1LJM, ~~".V 1%i 3~/ Agy 7CQ h. (.< r) til UJ I FLORIDA PONER AND LIOHT COHPANY TURKEY POINT ANS S}REH 54}-HS3000 SOURCE-RECEIVER TOPOGRAPHICAL IHPUTS ALL BEARINGS ARE M}TH RESPcCT TO THE NOPTH HEASURINS CLOCKMISE SRID SROUND FDLIABE INTERVENING DISTANCE TO HIIIHESI 1'.EISHT O . OBi'!RUCTTDN POIH: QISTAHCE BEAR INS HEIGHT TYPE PEHETRATIOH OBSTRUCT IOHS OBSTRUCTION FRUN SOURCE 500. 90.00 4. 00 SOFT O. HO G. i ~ 2 }000. 90.0G 4 ~ 00 S'l:I 0. pa 2000. T"0 ~ OO 4 ~ Ge cOC T 0 NG O. V~ 4 heep. 90.00 4.00 SOFT O. HO 0. 5 6000. 90.00 4.00 SUFI O. NO G. riV ~ 6 Beoe. 90. 00 5.00 F 0. HO O. 4 ~ I }2000. 90.00 4.00 cDFT 0~ HO O. V~ C 500. 67.50 4.00 vct I 0. NO 0. V~ G }000. 67.50 4. GG SO. I O. NO O. UI 10 2eoo. 67.50 4.00 SOFT 0. HO 0~ }} 4000. 67 '0 4.00 SOFT P. HO ln ~V br Oe. 67.5C Cn<<t I V ~ ~ !1n rv V~ I JV EG" . G/ ~ v'>> iiO UI V~ 14 !2000. v7 ~ 50 4.00 )I I NO V~ 1C cpe 45.00 4;Oo CPU>> ~ nVI HO nV ~ P ~ IGGO. 45.OU 4. 00 vUt I NOI fV~ ~ 20OG. 45.00 4.00 SO. I 0~ Nn }3 4000. 45.00 4 ~ 00 SOFT 0~ NO 0. 4~ I SO'I ~T 60GO. 45.00 4.00 O. NO G. 20 Booe. 45.00 5,00 SOFT 0. ND e. >> ~" 2! l2GOO. 45.00 5. 00 SOFT O. HO n4 ~ 500P 2 .50 4 ~ 00 "rC-Cdi I 0. NO lr ~ ~ 23 }pen. 22.50 4 ~ Oe SrF T nV ~ Ue >> ~ 2000 22 F 50 4.00 SOF; 0. HO nV ~ >> ~ jQ '000. 22.50 s.oe ce>> I 0. HD U~ 22.50 00 >>vol' 0. nV 26 6000. G~ HO ~ V~ '>7 BGG3. ~2 co 6.00 SO."": O. Hu ~ ~ 28 }2000. 22.50 6,00 'G a'rc-Q. HO ~ O. ~ ~ V~ GG 5phnv ~ .00 4.0G SrOF T 0 NO Ga 30 1000. .Oe F 00 SO".'. G. NO 0. 1 2003. . GJG heep SCFT nV ~ NO nV ~ V~ VV 4000. .00 4.00 CDGT HO 9. SOcT 0. I 6000. .00 4.00 NO G. V~ 34 8000. he 6.00 COFT e. HO U~ '5 }2000>> ne G.CG cncT VVI ~ 0. NO Vs '>> ~ C<<P 36 500. 337.50 5.00 <<Ut I 0. NO TURKEY POtNT 4) AZlkS.M, MK 1%i P~Q I-Ia. A () N
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le M Zp Q )ig W,IP I I'to~ '-r;prj,) fi'"=:1'wh'-. PT. 0 SRID GROUND FGEIASE INTER')EHI NS DISTANCE TO HISHEST icgT POINT D ISTAHCE BEARINS HE ISHT TYPE PEHETRATIDH GBS!RDCTIOHS OSSTRDCTIGH FRDH SOURCE 7<< 2000. 225.00 5.00 0. HO h>> ~ Set'OFT 74 4000. 225.00 s.vo O. ND hr>> gl ~ ~ '75 6000. 225.00 4 F 00 :"OFT O. Hi', hr ~ ~ rI ~ 225.00 Oh-C Tb Bece. 4.00 V I' O. HO G. r~ 77 12000. 225.00 hp SOFT O. HD V~ rf 78 500 202.50 5.eo UV't i 0. HD Ye r~ 7<< 1Pen 2!v'2.50 5,00 SGF i 0. r ~ e ~ Cfe . oeen VT 202.50 5.Ci 'a I ~ 0, LLI 8! 4000 202.50 5,00 rYa 0~ U2 '0ne 202.50 ne cr.F v 0. N9 Ye ol Vr 8000. .'0.'.50 5. 00 "O 0. HO Ya 84 l;One 202.50 4 n{} Cl'I ~ 0. N9 f, 'I ~ ~ V~ \ 85 50!0. 1."0.00 4.oo llr 1iee I ~ I UV ~ l eb.'f. Vrv ~ Ore a Uv~ hnV 'le VV >>he ~ ~ eev .fll>>f, lii: v~ re vo I 4":{;-.' ~ 1'" <<v ~ vv e)O V ~ NO I ~ ~ o lilefe 80>> Y(I s.po "r.- v ~ II ~ NO (I, SCCO. ! 8{f."0 =. 00 r-- -. 12000. avo ~ re rpp <<@I O. HO n Ir~ ~ 500, 157 ~ 4.00 ~I Ve NO V~ ..'57.50 1000. 4.00 SOFT Ve NO Y. 94 2000. !57.50 4.00 SOF; HO fa ~ a 40en 4.eo nV ~ I 95 157.50 SOFT NO V ~ ~ rI ~ vo 6OCC; 157.50 8.00 <<ev't i N9 T~ 9i ore Vl" I el ~ I Ni V~ 800f'200 98 C. !".f.vo 7. Oe nV ~ Ne nV ~ V~ 9o I C nen ~ I) V ~ V V e,pp NO 0, I IOO IOOC. !O5>>00 6.00 <<GCI Oe NO r~ !0! Chen 135.eo 6.00 SOFT 0>> HO G. Il re !02 4000. !35.00 s.eo SGF: e. HO hV ~ V~ 103 600h. Igc ho O (eh O. NG 0. !04 80C('. IZ5.GG 7.00 EDFT 0. HO Ye I .'.C !2009. 105 ~ 00 =.00 rr Ov't r I~ I~ ~ VV I ~ ,NO r~ V ~ In6 rBIO ~ <>J LlG r ~ ~ Y~ >>Jf 100. ! I:.,50 ~ 4,00 el V ~ ND 0 rI ~ '! 08 2000 !l2 co 4.00 Ye HD a ~ ~ OQ 40!YO. 1.'2.50 6.00 Si".F T 0. NG II V~ YI I lP n 9-v 6000 T ~ 0 ~ VV 7. 00 V~ ~ HO Y~ '80i' II fV a ~ ~ 'I 1!2 ~ 'I i ~ 4O v~ ~ l vV ~ lln ~ ~ ~ ~ <<V 0~ ~ I V~ I'8 V~ ~ I TURKEY POlt')T 41 alt'MN, CSE 1C' l-0 r B "-) liJ M 19 12 FLORIOA POiiER ANO LtSHf OB!PAN'( ~UcKEY PO!HI ANS S.'REH 141-NS3n00 S!REN SOUNO LEltELS !H OSC UNOER YE:, OYD'.T!cN . 9!ST:!i." Al fi!";:": 50h, '<0I')/I/00 4000. .'000. a~ vva ~ <(,5 V 4c ~ V~ NE <hb /~ ~ g(i t>> < (IL ~ vd ~ ~ f VI ~ ~ 4 ha V~ <h I ev v< ~ Va V ~ ~ ~ 1 ~ I ~ <at>> e ~v~ ~ V~ t at ~ .'9 ~ <'IV ~ I 4<5. 84. 70. Vv ~ <n CCI O'I I t at ~ NN ~ IC ~ Ce ~ ~ Nf;i; lnb 84, 70. el'ja I 10>. Da ~ V~ d, 7:. 70. " CCI 'hat V~ ~ ifSN 105. 84, 7> ~ It ~ 7/0. <>> ' 105. V<.
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SSN 10:. l5. 84. /va /tla VV ~ C 105. V~ 72. 40. CC >>I>>~ ~ >> 105. CI2e 79. dj, 40I ~ 1C 105. 0< 4S. dt/, Zl, JV ~ SE e ~ C"" 4S. 40. 3. I VV 105. 59 ERIO SROUHO FOLIASE INTE WEHIHS 'ISTANrE '.0 HISiiE=.: H "ie: "r POI tiT OI STANCE SEAR INS HEISHI TvoE PEHETRATIOH 90SIRUCIIONS OSSIRUCTION FROH OUR;E Vvcc I t(Uv ~ e v I 37 1000. 337.50 6 ~ 00 SrFT 0. NO V~ vv 2000. 337.50 5 00 0; HO O. Va S"F'OF: 39 000 3vre50 6.00. O. HO 40 500v. 337.50 6 ~ 00 SOFT 0. , HO 0. 41 0000. 337 '0 6.00 SOFT 0. HO 0~ 4? 12000. 337.50 7.0v SOFT 0. NO Va II e ~ 43 Ciln 5.00 SL'c I 3151 VO 0. Nv v ~ 1000. 15 00 o. 00 OL'Ic ~ O. NO I 45 2000. 3!5.0G b. OG cV<<T 0. HO I~ 4o 4(s00 3!5,GO o,00 :"OF: 0. NO nea 4'2 'ron OAVI 3!5.00 o.00 cOCI nV ~ 'Ltn 4o I I'L SOGO, v ~ O Vv ~ SaVV VVI Ve -.:I'nnV ~ s e II V ~ V~ \ VV V~ ~ t<< I ~ <<1nnV ~ <<'l?e 50 Vr > e ~ vs I !OK. eo~ / ~ +as <<V b vO SOF I 01 lt ~ \~ o? C ~ ~ <<V 0 ~ 00 VI ~ Ve NO V~ 53 1 '. 00 "r"- G. NO L~ Ca'ISO 292.50 5.00 VVI' ti9 ~~ I ~ c r On r I~ la<< 292 7. 00 Sl ~ ~ Nl V~ 56 292.50 7 0<) OVIc I 01 NO Ve e ~ 500. 270,00 cIJF T n V~ N'O I 1 I ( tJ ?70.0( ~ 00 rVI ~ 0. V~ co 20;1', 270.nG V ~ SOFT NO cO 4000. i70.00 8. 00 cr--. <<1 F I Ga HO O. V~
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'1 6OV~. '70. 00 8,00 SOFT 0. HO 0. ~* O e SOLO. 270.00 8.00 0. NO ~~ n V~ V~ bV 12000. 270 00 ~ 8 00 F cOFT 0. HO Va e ~ o4 500. 247.50 4.00 SOFT 0. HO V~ 65 1000. 247.50 5.00 SO 0. HO 0. 66 20¹ 247.50 '.00 'OFT V~ HD O. 4K". 147 cn o.00 cOcT 0. I' r- ~~ OI'9 NO ~ ~ ~ oG¹ ?47150 oe 00 V<<t I 0 ~ tiO 6Y SVOO. 247.5) 7.00. c0Fr {,'. ti0 1~ lO !"000. 247.50 5.00 <<vt' 0. NO 1~ V~ ~ ~ 000 ?i5.00 4.00 S0FI 0, NO 'Ve 72 IOG('. 225.00 4.00 SOFT HO FLORIDA POMER AND LISHT CONPANY TURKEY PDINT ANS SIREN l4!-NS$000 ANISE SOURCE PONER }.EVEL INPUT !N-:I SOURCE DSC 3!.5 63 125 250 500 1000 2000 4:";-: TURKEY-MSZOOO }5S.4 }5S.7 .0 .0 ~ 0 ~ 0 152.0 !52.0 !49.0 }4}.0 3. ~ 0 J(O= .00 YO= .00 IO= 4.00 HE!SHT ASOVE SPOONS= 5i', 0 >>-JR ' "'>>PEP. AND L>>Sit>> t >>'5>> ANY URKE? "OiNT ANS S!R":N $ 47-8':3 >>)0 N:TEO-ri rSICH. }NPL.T CONL...!iJNS h$ g ~ >>. >>. 60 05 ". I"'S 'i!ND N!ND :PEED("PS) TE PERAr. .EA .'>>N >>474TH >>l>>>>Lip~ ~ i /i>>>>.>> I iCN >>if if2 ~ ii ~ i ~ ~ I >>7S4 0>> v h 5. i 29.4 '7 ~ ~ V J ~ J 7<+ 0 ' i 1}}
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