ML20072L266

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Public Version of Rev 7 to Emergency Plan Implementing Procedure HNP-8020, Plant Fume Velocity Measurements & Rev 3 to HNP-4864, Technical Support Ctr
ML20072L266
Person / Time
Site: Hatch  
Issue date: 02/23/1983
From: Nix H, Rogers W
GEORGIA POWER CO.
To:
Shared Package
ML20072L256 List:
References
PROC-830223, NUDOCS 8303310180
Download: ML20072L266 (33)


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.i Plant Fume Hood Velocity Measurement PROCEDURE TITLE HNP-8020 PROCEDURE NUMBER Lab RESPONSIBLE SECTION SAFETY RELATED ( X )

NON-SAFETY RELATED (

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PLANT FUME HOOD VELOCITY MEASUREMENT

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A.

PURPOSE To describe a procedure for measuring the face velocity of the fume hoods in the plant and to assure that a minimum of 100 ft/ min, is maintained.

B.

SAFETY 1.

Observe safety rules as described 'in the G.P.C. La': oratory i

Safety Manual.

l E.

Observe Radiation Protection procedures.

C.

FREQUENCY

1., Following rt;aintenance on_Jnotor or belts

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Once per year i

3.

'As prescribed by a Lab Foreman I

E.

PROCEDURE l

1 Fume Hoods a.

Remove.the velome.ter.;from the carrying ~ case.

Place on level surface and check the zero adjustment..This is

.l done with both ports closed.-

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NOTE

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In. case the pointer'does not indicate zero, the zero adjustment screw on the front of the case should be'tQrned slowly until the pointer I

, indicates zero.

b.

Remove the port caps and attach the Lo-Flow probe (Type

'GO50-P).

Measurements with this probe will be Wade on the 0-300 FPM (feet.per minute) scale.

The probe should be attached so that.the arrow on the probe points to the left when viewed from the front of the I

instrument.

c.

Place the velometer at one of the positions in the face of the hood.

See Data Package 1 (Data Sheet 1).

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NOTE Refer to Figure i for location of all fume hoods to be ' checked.

d.

Move aside from the hood face and note the average velocity over a period of one to three minutes.

Record the value on Data Package 1*(Data Sheet 1).

e.

Repeat' E.d for the second & third positions in the hood.

f.

Average the three velocity readings and record the results on Data Package 1 (Data Sheet 1).

l g.

If the' average velocity for each hood is less than 100 F.P.M.,

initiate corrective action.

NOTE

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velocity, measurps should be taken to

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Repeat section E for all hoods.

2.

A. A. Fume Hood l

l-a.

Follow sections E.1.a and b.

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Place the velomeNr at on'e of the four positions on the underside of the hood, see Data Package 2 (Data Sheet 2).

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Place the velometer into one of the four sections and note +he average velocity over a period of one to two minutes.

Record the value on Data Package 2 (Data

,1 Sheet 2).

l d.

Repeat section E.2.c until all four sections have been measured and recorded on Data Package 2 (Data Sh'e~et 2).

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FIGURE 1 UNIT ONE

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MPL LOCATION MPL LOCATION 1P33-P204 WATER ANALYSIS ROOM, 112' T.B.

IP33-P102 RWCU, 158' RX BUILDING 1P33-P103 RAD WASTE, 108' R.W.

IP33-P105'A ' LAB,130 CONTROL BU.ILDING IP33-P104 RAD WASTE ADDITION, 180' R.W.A.

IP33-P105B LAB, 130' CONTROL BUILDING 1P33-P101 RCIC DIAGONAL, 106 RX, BLDG.

1P33-P105C LAB, 130 ' CONTROL BUILDING f

1P33-P209 CONDENSATE DEMIN HOOD, 112 T.B.

IP33-P105D LAB, COLD LAB, CONTROL BLDG.

UNIT TWO

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2P33-P209 CONDENSATE DEMIN. HOOD, 112' T.B. 2P33-P204 WATER ANALYSIS ROOM, LEFT HOODI 2P33-P101 RCIC DIAGONAL, 106' RX BLDG 2P33-P204 WATER ANALYSIS ROOM, RIGHT HOOD 2P33-P103 R.W.,

112, R.W. BLDG. LEFT HOOD 2P33-P102 RWCU, RX BUILDING 185 2 P33-P103 R.W., 112, R.W. BLDG. RIGHT HOOD r

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MPL LOCATION l

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Lab, 130' Control Oldg., Atomic Absorption Hood (Perkin-Elmer A.A.)

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SIMULATOR / TRAINING BLDG.

Mpl LOCATION NA Chemistry Training Lab, Left Hood 1

NA Chemistry Training Lab, Right Hood k

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LAB RESPONSIBLE SECTION SAFETY RELATED ( X )

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l Maa Title Pana i of 17 TECHNICAL SUPPORT CENTER l

NOTE This procedure supercedes HNP-31, Revision 3, dated 1/5/82.

A.

PURPOSE

~

The Technical Support Center (TSC) is a facility for use by plant management,. technical, and engineering support personnel in an emergency situation to provide technical direction and support to the Control Room for mitigation of and recovery from the incident,, Implicit in this function is the need to provide staff to do detailed plant analysis.

B.

MANNTNG REGUIREMENTS I

l During any situation requiring-activation of the TechnicaT Support Center (TSC), it will be manned by. supervisory personnel i

i from Engineering, Maintenance, Operations, Security, Health l7-~'

Physics, and - Oc c umenta t i on. - The ranking license certified person will assume the position of TSC Manager.

This will normally be I

an Assistant Plant Manager', Superintendent of Plant and Engineering Services or Superint'endent of Opbrations.

In addition, the TSC will be manned with knowledgeable individuals to handle communications functions of the center.

~

Other knowl'edgeable and qualified p.ersonnel may be directed by plant or corporate managem.ent to man the technical support center.

These might typica11y include Southern Services, Bechtel or General Electric personnel.

In addition, an NRC, representation in the Technic'al Support i

l Center 'can be anticipated.

l $

C.

CRITERIA FOR ACTIVATION I

i The Technical Support Center shall be activated and manned during i

,any General Emergency, Site Area Emergency or Alert.

D.

TECHNICAL SUPPORT CENTER FUNCTION I

4 1.

The personnel manning the Technical Support Center shall function to:

a.

Coordinate emergency core cooling measures

~

,n b.

Coordinate radioactive effluent and control q..-

c.

Coordinate core damage assessment

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-d.

Coordinat,e the on-site operatipnal support center (CSC)

' Interface with the USNRC and the~ Emergency Operations e.

Facility 2.

Personnel manning the center shall be grouped'as necessary according to their respective disciplines to implement the above coordinating functions.

3.

The T.S.C. shall maintain continuous communications link l

with the control room and E.O.F.

E.

TSC PERSONNEL RESPONSIBILITIES 1.

Assistant Plant Manager or his designee assumes overall command of TSC operations.

He is responsible for communications with the Emergency Director, the NRC and l

offsite support agencies.

=

2.

Superintendent of Plant Engineering Services or his designee is responsible for assessing the status of the plant.

He

/-~'

may request assistance from onsite or offsite technical experts.

He may make recommendations for Control Room i

operations during' plant recovery op6 rations.

He may provide the Assistant Plant Manage ~r with evaluhtions for ccmmuinication to the Emergency Director.

3.

- Superintendent of Operation's or his designee is.the primary contac't for commun'ications wi.th the Control Room.

He shall assist the Superintendent of Plant Engineening Services.in asses' sing the' status of,th'e' plant.

He shall direct operations support of plant. recovery.

4.

Sup e r in't enden.i of Maintenance or his designee shall direct service or repair of equipment needed for plant recovery.

He should consult with the Superintendent of Operations for priorities and with the Laboratory Supervisor for equipment access and Health Physics p.rotection of maintenance workers.

He may direct offsite maintenance supervisors or mechanics to report to the plant.

5.

The Laboratory Supervisor or his designee shall be responsible for monitoring the TSC for habitability and as necessary defining protective measures such as breathing apparatus or TSC evacuation to the Control Room.

He shall assess and interpret radiological conditions in the plant.

He may recommend exposure limits and protective equipment for plant workers involved in. recovery operations.

In the

- event of actual or anticipated releases, he may make n

fqi..-

recommendations to the Assistant Plant Manager for communication to the Emergency Director.

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9aa Title Paoa 3 of 17 Additional duties for the Laboratory Supervisor or his designee are dsscribed in paragraphs F.7, F.8, G.2 of this procedure.

6.

Security liaison and control access to TSC.

l 7.

The site fire chief or his designee shall be responsib'le for l

assessment of any fire hazards that may lead to a radiological' release during emergency operations.

He would direct the fire brigade in the event of a fire following notification from the Control Room.

.8.

The Document. Control Supv. or his designee is responsible for providing administrative support, e.g.,

drawings and documents.

F.

NORMAL OPERATION OF HVAC SYSTEM Pur'ose 1.

p To provide instructions for the startup and shutdown of the

'~~'

HVAC system for the Technical Support Center.

2.

Safety Observe safety rules outlined in Georgia Power Company, Safety Se'ction "O".

3.-

References a.

H-26002 TSC HVAC P&Ib _and Process' Flow Dia' gram b.

H-27059 - TSC HVAC Elementary Sht. 1 of 3 c.

H-27060' TSC HVAC Elementary Sht. 2 of 3 d.

H-27061 TSC HVAC Elementary Sht. 3 of 3 4

Sy. stem Lineups

' Perform electrical power lineups per Data Packaf'e 1.

l a.

b.

Lineup system valves per Data Package 1.

l c.

Lineup instrumentation valves per Data Package 2.

l q

5.

Startup of TSC Air Conditioning Unit l

~

place fan control 2r_

C a.

At local thermostat 1X75-TIS-NO11 l

'~

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switch to AUTO or ON position.

Place thermostat I

control switch to COOL position and adjust temperature i.' '. -

control as required by environment.

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NOTE Assu're TSC electric heater 1X75-TIS ~NO14 is in the OFF position.

6.

Startup of TSC Electric Heating System i

a.

At local thermostat 1X75-TIS-NO11, place fan' control switch,to AUTO or ON position.

Place thermostat control switch to HEAT position and adjust temperature control as required by envionment.

b.

AT TSC electric heater thermostat 1X75-TIS-NO14, adjust control switch to desired setting,

  • 7 Startup of Filter Train (Accident Mode) i I

a.

At panel 1X75-P102 place control switch for filter l

l train fan unit 1X75-COO 1 to START position.

3 l

3 b.

At panel 1X75-P102, verify valves 1X75-AOV-FOO1 thru l

FOO5 change to the following positions:

__s 1X75-AOV-FOO1 Open (red light)

-FOO2 Open (red light) l

-FOO3 Open (red light)

-FOO4 Open (red light)

-FOO5 Close (green light) c.

Record the. time of initial' filter train startup on Data f

Package 3.

NOTE It.is suggested.that the filter train not be operated greater than 720 hours0.00833 days <br />0.2 hours <br />0.00119 weeks <br />2.7396e-4 months <br /> without c'hangeout and' testing of the carbon absorbers.

8.

Shutdown of TSC HVAC Systems t

. Filter Train (Normal Mode) l

  • a.

(1)

At panel 1X75-P102, place control switch for l

l filter train fan unit 1X75-COO 1 to STOP position.

1 l

(2)

Record filter train shutdown time o'n Data Package l

j

3..

j (3)

Verify valves 1X75-AOV-FOO1 thru FOO4 change to l

.,fJ, CLOSE positions, and FOO5 changes to OPEN position.

9-

  • To be performed by TSC Laboratory Supervisor as conditions

,e warrant.

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Air Conditioning and Heating System (1)

At local thermostat 1X75-TIS-NO11 turn fan control l

switch and thermostat control switch to OFF position.

(2)

Turn thermostat 1X75-TIS-NO14 to OFF position if l

he,ating system was being used.

G.

ANNUNCIATOR RESPONSE

{

1.

Condition One or more of the alarms below is receiveo on panel 1X75-P102, TSC HVAC annunciator.

2.~

Action a.

TSC Vent AHU BOO 1 PEE-FILTER HIGH DIFF PRESSURE, i

setpoint 0.55" H2O indicating high differential pressure across air handling unit roll media filter.

(1)

AT 1X75-BOO 1 (AHU) indicating box T82, check if roll media filte,r runout light is lit.(red).

(2)

If abov.e light is lit, replace roll media filter.

~

b.

TSC VENT FILT TRN D001 HIGH DIFF PRESSURE,3 setpoint~

7.7" H2O indicating high differential pressure across fil.ter train.

(1)

At TSC filter train 1X75-DOO1, verify d'ifferential prer>sure on 1X75-OPIS-13OO5 is 3 7.7" H20.

(2)

If' differential pressure is 7 7.7" H20, check if differential pressures on 1X75-DPI-ROOi, ROO2, ROO3 A(8) or ROO4 are 2 1.0, 2.0, 1.2 A(8) or,2.0" H2O respectively.

(3)

If a differential pressure is as stated in Step (2) above, place control switch for 1X75-ACV-FOO5 to CLOSE position at panel 1X75-P102.

(4)

Enter toilet rooms and turn switches for exhaust damper 1X75-FOO7 to OFF position.

(5)

Verify green light for 1X75-FOO7 illuminates on panel 1X75-P102.

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At pa.nel 1X75-P102 place control switch for filter train fan unit 1X75-COOL to STOP pcsition (green light).

l (7)

Verify 1X75-FOO1 thru FOO4 change to CLOSE positions on panel 1X75-P102.

1X75-FOO5 should remain clos.ed.

l 6

CAUTION It is important to minimize opening and closing of TSC access doors during a radiological emergency without operation of the filter train.

(S)

Replace.the appropriate hepa filter, pre-filter or carbon absorber if the differential pressure is as stated in Step 2.b.(2) above.

  • (9)

Restart filter train fan unit 1X75-COO 1 from panel 1X75-P102 by placing control switch to START position (red light).

Record filter train start time on Data Package 3.

(10) On panel 1X75-Pida, place Con' trol Switch for 1X75-FOO5 to AUTO position..

1 (11) Verify 1X75-FOO5 auto opens and. filter train.

l differential pressure alarm clears.

l

' TSC VENT AHtJ BOO 1/ FAN dNIT COOL DISCH LOW-FL'OW, c.

l setpoint 2500 scfm indi.cai;ing low flow is being generated -by air handling unit or filter train, i

(1)

On panel 1X75-P102 verify that the discharge flow is f 2500 scfm on.1X75.-FIS-ROO6.

(2)

If flowrate is i 2500 scfm, verify TSC VENT AHU B001 PRE-FILTER of.FILT TRN D001 HIGH OIFF PRESSURE alarms are clear.

(3)

Perform steps 2.a or 2.b as necessary to clear low flow condition.

d.

TSC VENT FILT TRN 0001 AFTER CAR 8 ADS HIGH TEMP, setpoint 200* F indicating high temperature across the filter train carbon. absorbers.

.,13 (1)

On panel 1X75-P102, verify temperatures on 0

' t"'

1X75-TIS-ROO8 A(O1 e re,> 200 F.

~

To be performed by Laboratory Supervisor as conditions warrant.

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(2)

If the temperatures are as in step (1) above; look and smell for signs of smoke discharging from air vents indicating a possible' fire.

l (3)

If a fire is evident, open deluge valve 1X75-F070 from control switch on' panel'1X75-P102.

NOTE Notify Control Room in the event of a fire for dispatching fire brigade.

Close deluge valve as required.

CAUTICN Inaduertant operation of the deluge valve will destroy the filter train carbon-absorbers and will require replacements.

Verify that filker train fan unit 1X75-COO 1 (4)

~

stopped from control panel 1X75-P102.

(5)

Immediately place' control switch for 1X75-AOV-FOO5 to CLOSE position at panel 1X75-P102.

(6)

Verify 1X75-FOO1 thru FOO4 change to CLOSE positions on panel 1X75-P102.

1X75-FOO5 should remain close~d.

(7)

Enter toilet rooms and turn switches for exhaust

' ~

. damper 1X75-F007 to~ CFF position.

(8)

Verify green light for 1X75-FOO7 illuminates on panel 1X75-P102.

(9)

At panel 1X75-P102, place control switch for

~

filter train fan unit'iX75-COO 1 to STOP position (green light).

CAUTION It is important to minimize opening and closing of TSC Access doors during a radiological emergency without operation of the filter train.

(1G) Open filter train drain valves 1X75-FO71 thru FO76.

Close filter train fan unit 1X75-COO 1 drain

,.,5 valve 1X75-FOBO.

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i (11) Repla,ce both carbon absorb.ers.

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(12) Close filter train' drain val'ves 1X75-F071 thru F076.

Open filter train fan unit 1X75-COO 1 drain valve 1X75-FOSO.

,y.

  • (13) Restart filter train fan unit 1X75-COO 1 from panel 1X75-P102 by placing Control switch to START position.

Record filter. train start time on Data Package 3.

(14) On panel 1X75-P102, place control switch for 1X75-FOO5 to, AUTO position.

(15) Verify 1X75-FOO5 auto opens and high temperature alarm clears.

TSC VENT FILT TRN 0001 DELUGE VALVE FO70 GP.ENEO.

e.

. - -s (1)

If 1X75-F070 was opened in step 2.d.(3) above, close the valve after extinguishing fire and the temperature on 1X75-TISiROO8 A(8) at panel 8

1 X75-P 102, is i 85 F.

I (2)

Perform step 2.d.'(10).

(3)

Replace both carbon absorbers.

(4)

Perform step 2.d.(12),

f.

TSC' VENT AHU BOO 1/FILT TRN DOd1 DISCH HIGH RAD, setpoint 10 mr/br. indicating high radiation emitted from the air handling unit or filter train.

(1)

Verify 1X75-RIS-KOO2 on panel 1X75-P102 is 2 10 mr/hr.

V'rify valve 1X75-FOO1 thru FOO4 are open (red (2) e l'i g h t ) and FOO5 is closed (green light) on panel 1X75-P102.

(3)

If the above valves are in the required position and the alarm is still present, anticipate that a TSC HIGH RADIATION alarm condition will soon exist and follow appropriate steps.

(Ref: following section 2.g).

To be performed by Laboratory Supervisor as conditions warrant.

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TECHNICAL SUPPORT CENTER HIGH RADIATION, Setpoint 20

.mr/hr. in'dicating high radiation exist in the caucus area.

(1)

Verify 1X75-RIS-KOO1 on panel 1X75-P102 is > 20 l

mr/hr.

l (2)

If a high radiation condition exist, follow i6structi.ons of laboratory supervisor in TSC regarding possible evacuation.to the EOir, OSC or Control Room.

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  • 1t75-G002 Disconner.t bi te.h Ckt. 3 Filne Train 1173-0.*4l Electric ae=ter Cisconnect Seitch Ckt. 4 Filter Train Fan IT75-C001 Starter Ckt. 5 Doct W et** tt75-S*A3 Disconnect 3 itch Ckt. 6 4

A*.5-i'3/tES Ver m'4 (All-50331 Cat. 7 IPES-Sl03, 203/120 VAC.

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Air Handling Unit tX75-8001 Rolt t:edia Fit tee F.otor Ckt. 3 Panel SW75-8108 hlanoid Velve Deluge 4.stea-

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Toitat noom Enheu t Fan IX75-C002

% itch Ckt. 5 Panel tr75.ptoa Cr ntrol Po or Ckt. 6 e

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i Filter Train Electic Heater 1X75-0001 Disconnect kitch IR26-tC54/04

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F.N E Mechanien1 S om aeturn volume Control O

F013 rt.chanie41 noom % 3elv Isolation O

F014 M,chanical Rern Ta.elv Volume Control O

FCIA Filt.e Train C. tsice ate volus a control O

i FotT Air Vandling Unit Outside Air Volume Cor.teol O

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. FotR Air Handling Unit A+ turn Voluir.e Control O

Foll Faltee Train ? action volwa, Conteel O

1 FCM Fil+.e Train Otortaege volume control O

l F033 8"il t e r Train Fan Os sct.arge volurr.e

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FC41. Filter Train Deluge Svstem' loe,1 stion O

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F070 Filtee Tean Caluge Valve C

Fo71 Filtee Train Orain C

F072 Fil+ee Train Or ein C

l F073 Filter Train Orain C

F074 Filter Train Crain C

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