ML20133N892

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Procedure TT/1/A/9100/101A, Auxiliary Bldg Ventilation Sys Air Flow Distribution Measurements I
ML20133N892
Person / Time
Site: McGuire, Mcguire  Duke Energy icon.png
Issue date: 10/23/1985
From: Johansen R, Roberson P
DUKE POWER CO.
To:
Shared Package
ML20133N885 List:
References
TT-1-A-9100-101, NUDOCS 8510300221
Download: ML20133N892 (7)


Text

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' Y C OP(sj f y Form 34731 (10-81)

(Formerly SPD 10021)

DUKE POWER COMPANY . (1) ID No:TT[t[A[9/oo[lo/4 PROCEDURE PREPARATION Change (s) o to PROCESS RECORD 0 Incorporated (2) STATION: NC.Cw/RS (3) PROCEDURE TITLE: biltiLIARY butLbl% VENTILAffoA bYSTCPI AIR ftod DisrRISU1"WAI FIGMUREMEstTS T (4) PREPARED BY: . ?P _ DATE: /d/f2!ST (5) REVIEWED BY: O m. sw DATE: lo G@

Cross-Disciplinary Re ew By: N/R -

o (6) TEMPORARY APPROVAL (IF NECESSARY):

By: (SRO) Date:

By: Date:

(7) APPROVED BY: Date:

(8) MISCELLANEOUS:

Reviewed / Approved By: Da te: /dJf-d Reviewed / Approved By: Date:

8510300221 851028 PDR ADOCK 05000369 l P PDR 1

e 1

- l TT/1/A/9100/101A l f Page 1 of 3 DUKE PCWER COMPANY McGUIRE NUCLEAR STATION 1 AUXILIARY BUILDING VENTILATION SYSTEM AIR FLOW DISTRIBUTION MEASUREMENTS I

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1.0 Purpose To determine air flow velocity profile for prefilter entry and HEPA exit in the VA filtered exhaust package.

2.0 References 2.1 ANSI N-510, Rev. 1980 2.2 ANSI N-510, Rev. 1975 2.3 TP/0/A/1450/02 3.0 Time Required One test coordinator and technician for 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br />.

4.0 Prerequisite Tests None 5.0 Test Equipment 5.1 Flashlight 5.2 Hot-wire anemometer 5.3 Ladder 6.0 Limits and Precautions 6.1 Follow HP guidelines for entry into operating filter package.

6.2 Use caution during testing to avoid placement of ladders, personnel, etc. such that velocity readings would be affected.

7.0 Required Unit Status None 8.0 Prerequisite System Conditions Initial /Date

/ 8.1 The Unit 1 VA Filtered Exhaust Package is running in filter mode (keyswitch turned to TEST) with both Unit 1 VA supply fans on.

9.0 Test Method A traverse of the upstream face of the VA filter package prefilters and the downstream face of the KEPA filters will be performed with an anemometer. Thirty-five data points will be recorded for each plane in l

I order to analyze flow distribution.

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TT/1/A/9100/101A Page 2 of 3 10.0 Data Required 10.1 VA filtered exhaust system flow rate (as read by in place instrumentation).

10.2 Air flow velocity readings as specified by enclosures (as read by anemometer).

10.3 Average velocities and worst case high and low percent deviations as calculated on Enclosure 13.3.

11.0 Acceptance Criteria 11.1 Results of velocity distribution data will be evaluated by Design Engineering to determine effects on residence time and representative carbon sampling per MCC-1211.00-00-0096, Acceptance Criteria for Supplemental Filte Testing.

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TT/1/A/9100/101A Page 3 of 3 12.0 Procedure Initial /Date NOTE: IV means independent verification is required.

/ 12.1 Prerequisites are met and Limits and Precautions have been reviewed.

/ 12.2 Record VA filtered exhaust flow rate as read by IMVAPG9370: cfm.

/ 12.3 Enter VA filtered exhaust package on the upstream side of the prefilters and ensure door is closed.

/ 12.4 Complete all data blanks as required by Enclosure 13.1.

/ 12.5 Exit filter housing, being sure to remove all test equipment.

/ 12.6 Enter VA filtered exhaust package between the downstream HEPA l

face and carbon adsorber bed, and ensure door is closed.

/ 12.7 Complete all data blanks as required by Enclosure 13.2.

/ 12.8 Exit filter housing, being sure to remove all test equipment.

/ 12.9 Ensure all VA filter package doors, entry ports and sample

/ IV ports are properly sealed.

/ 12.10 Perform calculations as required by Enclosure 13.3.

13.0 Enclosures 13.1 Velocity Distribution at Prefilter Upstream Face 13.2 Velocity Distribution at HEPA Downstream Face 13.3 Velocity Distribution Calculations d .t wi

TT/1/A/9100/101A Page 1 of I Enclosure 13.1 Velocity Distribution at Prefilter Upstream Face

1. Record instrument identification:

Anemometer ID #

, Last Calibration Calibration Due

2. Perform velocity measurements with the anemometer at the center of each prefilter face. Record readings in the corresponding blanks below.

NOTE: Prefilter numbering is from top left to bottom right, as viewed facing downstream.

1. 2. 3. 4. 5. 6. 7.
8. 9. 10. 11. 12. 13. 14.
15. 16. 17. 18. 19. 20. 21.
22. 23. 24. 25. 26. 27. 28.
29. 30. 31. 32. 33, 34. 35.

Measurements Taken By Date Data Recorded By Date

, e TT/1/A/9100/101A Page 1 of 1 Enclosure 13.2 Velocity Distribution at HEPA Downstream Face

1. Record instrument identification:

Anemometer ID #

Last Calibration Calibration Due

2. Perform velocity measurements with the anemometer at the center of each HEPA downstream face. Record readings in the corresponding blanks below.

NOTE: Prefilter numbering is from top right to bottom left, as viewed facing upstream. HEPAs and prefilters in the same location thus are numbered the same.

7. 6. 5. 4. 3. 2. 1.
14. 13. 12. 11. 10. 9. 8.
21. 20. 19. 18. 17. 16. 15.

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28. 27. 26. 25. 24. 23. 22.

) 35. 34. 33. 32. 31. 30. 29.

! Measurements Taken By Date Data Recorded By Date f

t 1

e m-- r - - ' - - - - ' ' ' - ' - r_ , - 1w- -. v --- i - vv

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Enclosure 13.3 TT/1/A/9100/101A Velocity Distribution Calculations Page 1 of 1

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1.0 Transfer velocity readings from Enclosures 13.1 and 13.2 to the following corresponding blanks:

Prefilter HEPA Prefilter HEPA Prefilter HEPA Upstream Downstream Upstream Downstream Upstream Downstream

1. 13. 25.
2. 14. 26.
3. 15. 27.
4. 16. 28.
5. 17. 29.
6. 18. 30.

7, 19. 31.

8. 20. 32.
9. 21. 33.
10. 22. 34.
11. 23. 35.
12. 24.

2.0 Average all prefilter upstream velocities. ( pu )

35 Vavg,pu = fpm 3.0 Enter lowest and highest prefilter upstream velocities and calculate percent deviation from average.

V = fpm V = fm 7 h,pu P

% dev(1) = Vavg,pu - V1,pu x 100  % dev(h) = Vh,pu - Vavg,pu x 100 Vavg,pu Vavg,pu

=  % =  %

4.0 Average all HEPA downstream velocities. ( Hd )

. 35 Vavg,Hd = fpm 5.0 Enter lowest and highest HEPA downstream velocities and calculate percent deviation from average.

Y l,Hd " h,Hd *

% dev(1) = Vavg,Hd - V1,Hd x 100  % dev(h) = Vh,Hd - Vavg,Hd x 100 Vavg,Hd Vavg,Hd

=  % =  %

i Data Calculated By Date

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