ML19343B043
| ML19343B043 | |
| Person / Time | |
|---|---|
| Site: | Farley |
| Issue date: | 11/06/1980 |
| From: | Harriston W ALABAMA POWER CO. |
| To: | |
| Shared Package | |
| ML19343A898 | List: |
| References | |
| FNP--EIP-9-1, FNP-0-EIP-9-01, NUDOCS 8011240526 | |
| Download: ML19343B043 (21) | |
Text
.
O VOL. 14 FNP-0-EIP-9 November 3, 1980 Revision 5 FARLEY NUCLEAR PLANT EMEP.GENCY PLAN IMPLEYENTING PROCEDU9E FNP-0-EIP-9 S
A F
E T
Y RADIATION EXPOSURE ESTIMATION AND CLASSIFICATION OF EMERGENCIES R
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A T
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DOCUMENT CONTROL DEC DM 0F I. woe 12 ION A
CONTROLLED COPY DO NOT REPRODUCE COPY No, O Approved:
N. <l $
i Plant Manager Date Issued:
n #c Date of Implementation:
11-17-80 List-of-Effective-Page Page Rev.#
1-5 5
Fig. 1,lA 5
Fig. 2-13 5
Diskette EIP-2
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VOL. 14 FNP P-9 RADIATION EXPOSURE ESTIMATION AND CLASSIFICATION OF EMERGENCIES 1.0 Purpose To provide a method for rapid projection of estimated offsite radiation exposures as a result of a release of radioactive material and to provide the basis for classifying the emergency.
2.0 References
,^
2.1 Joseph M. Farley Nuclear Plant Emergency Plan 2.2 FNP-0-RCP-25, C&HP Activities During A Radiological Accident 2.3 FNP-0-EIP-4, Chemistry and Health Physics Support to the Emergency Plan 3.0 General 3.1 This procedure provides for the classification of an emergency based on plant status criteria and/or based on short term radiological hazards, i.e. direct radiation hazards and inhalation hazards' that may be presented by the passage of a cloud of radioactive materia 2 released from
' the plant.
NOTE:
Assessment of radioactive liculd releases will be referred to the Chemistry anc. Health Physics Supervisor.
3.2 Documentation of the dose estimation should be performed on CHP Form 107, Plant Vent Release Radiation Exposure Estimation (Figure 1) or CHP Form 110, Field Survey Radiation Exposure Estimation (Figure 1A).
3.3 Repair time is defined as the projected release time, i.e., the period of time from the initiation of the release to the projected termination of the release.
3.4 The direction of the wind as read from the control room recorder is the direction from which the wind is blowing.
The downwind direction j
is 1800 from the wind direction.
1 Rev. 5
VOL. 14 FNP-0-EIP-9 4.0 Procedure 4.1 Plant Vent Release Dose Estimation 4.1.1 External gamma dose determination -
NOTE:
Use Figure 1 (1)
Determine the wind direction at the 35 ft. and the 150 ft. elevations, and average wind speed at the 35 ft. and the 150 ft. elevations in meters /sec. over the last 15 minutes on the control room recorder.
(mph x 0.5 = m/sec).
From the wind direction, determine the 0
downwind direction by adding 180 if the wind direction is less than 0 if the 1800 or by subtracting 180 wind direction is greater than 1800 If plant meteorological information is not available, contact the National Weather Service, Dothan airport, and Great Southern Paper Company (EIP-8).
(2)
Determine the plant vent noble gas concentration in uCi/ml by sampling and/or by obtaining a value from the plant vent stack high range monitor per RCP-25.
(3)
Determine the plant vent flow rate in cfm by using the flow rates of operating exhaust fans:
Auxiliary building exhaust fans - 75,000 cfm each NOTE:
An additional 4000cfm must be added to the auxiliary building exhaust fan capacities for a fuel handling accident (if R-25 trips).
(4)
Determine the noble gas release rate in Ci/sec using the following equation:
(conce tration, gCi/ml) x(flow rate, cfm)x 4.72 x 10 4) = release rate, C1/sec 2
Rev. 5 i
VOL. 14 FNP-0-EIP-9 (5)
Find the appropriate graph from Figures 2-7 which corresponds to the wind speed, at the 150 ft.
elevation, determined in 4.1.1.
Round wind speed to the nearest available value on the graphs.
(NOTE: Use the windspeed at the 35 ft. level if the 150 ft value is not available).
(6)
Using the release rate from 4.1.4, determine the external gamma dose rate in mrem /hr at the site boundary.
(7)
Determine the projected whole body dose in rem using the following equation:
hRepair time, (hr) x dose rate, mrem /h 1000 = projected dose, rem
- Estimate repair time; if unknown,use 14 hr or 5.1 x 101 sec.
4.1.2 Thyroid dose determination NOTE:
Use Figure 1 (1)
Determine the plant vent iodine concentration in pCi/ml by sampling.
(2)
Determine the iodine release rate in pCi/sec using the flow rate from 4.1.3 according to the following equation:
(concentration,(pCi/ml) x hlow rate, cfh x 472) = release rate, pCi/sec.
(3)
. Determine the total projected release of iodine in pCi using the repair time from 4.1.7 according to the following equation:
(Repairtime,sec.),x(releaserate,pCi/sec)
= (total lodine, Ci)
(4)
Find the appropriate graph from Figures 8-13 which corresponds to the wind speed, at the 150 ft.
elevation, determined in 4.1.1.
Round wind speed to the nearest available value on the graphs.
(NOTE:
Use the windspeed at the 35ft level if the 150 ft reading is not available).
3 Rev. 5
VOL. 14 FNP-0-EIP-9 (5)
Using the total iodine released from 4.2.3, determine the ioding inhalation dose to the thyroid in rads at the site boundary.
(6)
Add the result from 4.1.l(7) to l
the result from 4.2.5 to obtain the total projected dose to the thyroid in rads.
4.2 Field Survey Dose Estimation 4.2.1 External gamma dose determination NOTE:
USE Figure 1A (1)
Determine the dose rate at a locati 1 in the environment in mrem /hr per EIP-4 (2)
Determine the projected whole body dose in rem using the following equation:
Dose rate, mrem /hr x Repair time,hr* + 1000
= projected dose, rem
- Estimate repair time; if unknown, use 14 hr 4.2.2 Thyroid determination NOTE: USE Figure 1A (1)
Determine the airborne iodine concentration in pCi/ml (2)
Determine the projected thyroid dose from inhalation in rads using the following equation:
(Concen ation, pC{/mh x kepair time,hr*)
x
.55 x 10 rem-m1 = projected pCl-hrs inhalation dose to
- thyroid, rads Estimate repair time; if unknown, use 14 hr (3)
Add the result from 4.2.l(2) to the result obtained from 4.2.2(2) to obtain the total projected dose to the thyroid in rads.
4 Rev. 5
VOL. 14 FNP-0-EIP-9 s
4.3 Emergency classification Based on Dose Projections 4.3.1 General Emergency 4.3.1.1 Criteria:
Based on lower limit of projected individual exposure at site boundary.
5 rem whole body exposure, or 10 rem thyroid exposure 4.3.1.2 Refer to EIP-19, General Emergency.
4.3.2 Site Emergency 4.3.2.1 Criteria:
Based on lower limit of projected individual exposure at site boundary.
1.25 rem whole body exposure, or 2.5 rem thyroid e.iposure 4.3.2.2 Refer to EIP-18, Site Emergency.
4.3.3 Alert 4.3.3.1 Criteria:
1 mr/hr at site boundary.
4.3.3.2 Refer to EIP-17, Alert 4.4 Emergency Classification Based on Plant Condition.
Refer to the Appendix for general criteria for classifying plant conditions.
Refer to the indicated EIP for the exact criteria:
EIP-17, Notification of Unusual Event EIP-12, Alert EIP-18, Site Emergency EIP-19, General Emergency 5
Rev. 5
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i FNP-0-EIP-9 PLANT VENT RELEASE RADIATION EXPOSURE ESTIMATION Date Time Wind Speed at 35' mph + 2 =
m'sce Wind Speed at 150' mph + 2 =
m/sec Wind direction at 35' (From which the wind is blowing) 0 Downwind direction at 35' (wind direction of 35' plus/minus 180 )
Wind direction at 150' (From which the wind is blowing) 0 Downwind direction at 150' (wind direction at 150' plus/minus 180 )
0 ATemperature between 35' and 200' F/51 meters Estimated repair or release time (a) hr ; if unknown, use 14 hr (aa) see; if unknown, ese 5.1 X 10 see EXTERNAL GAMMA DOSE DATA 1.
Plant vent noble gas concentration (b) pCi/ml ( ) sample or ( ) RCP-25s 2.
Plant vent flow rate (c) cfm NOTE:
Auxiliary building exhaust fans - 75,000 cfm each. An additional 4000 cfm must be added to the auxiliary building exhaust fan capacities for a fuel handling accident (if RE-025 trips).
3.
Release rate:
(b) x (c) x 4.72 x 10~4 = (d)
Ci/sec 4.
Dose rate from Fig. 2-7:
(e) mrem /hr 5.
Repair time (a) hr x (e) mrem /hr + 1000 =
(f) rem Projected Whole Body Dose THYROID DOSE DATA 1.
Plant vent iodine concentration (g) pCi/ml 2.
Release rate:
(g) x (c) x 472 = (h) pCi/sec 3.
Repair time (aa) sec x release rate (h) pCi/sec = (j) pCi 4.
Dose from Fig. 8-13:
(k) rads to thyroid, inhaled 5.
(f)
+ (k)
= (m) rads, thyroid PROJECTED DOSE INFORMATION 1.
Whole body - (f) rem 2.
Thyroid - (m) rads l
NOTE:
1.
Meteorological instrument elevations are given with respect to the base slab at 182' MSL 2.
Plant vent releases at elevation 299' MSL l
Figure 1 CHP Form 107 l
Rev. 5
i l-VOL. 14 FNP-0-EIP-9 l
l l
l FIELD-SURVEY RADIATION-EXPOSURE-ESTIMATION I
Date Time Field Location:
EXTERNAL GAMMA DOSE DATA Field dose rate (a) arem/hr x repeir time ('a) hr + 1000
= projected whole body dose (A) rem THYROID DOSE DATA 1
Airborne concentration pCi/ml x repair time (a) hr 8
x 2.55 x 10 rem-ml = (B) rads to thyroid, inhaled pCi-br Total rads to thyroid = ( A)
+ ( B)
= (C) rads, thyroid PROJECTED DOSE INFORMATION Whole body - ( A) rem Thyroid -
(c) rads NOTE:
2.55 x 108 = 108 pCi x *1.01E-2 mrem x **4,200 ml x 60 min x 1 rem 1pCi pCi min br 10" mrem
- Respiration rate for one year old child - Radiological Health Handbook 4
1 Figure la CHP Form 110 Rev. 5
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gw e-i FNP-0-EIP-9 HOURLY EXTERNAL GAMMA DOSF. RATZ AT CROUND LEVEL Wind Speed = 1 m/sec 10,000 i -
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