ML20085E542
| ML20085E542 | |
| Person / Time | |
|---|---|
| Site: | Quad Cities |
| Issue date: | 10/11/1991 |
| From: | Schrage J COMMONWEALTH EDISON CO. |
| To: | Murley T NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM), Office of Nuclear Reactor Regulation |
| References | |
| NUDOCS 9110210037 | |
| Download: ML20085E542 (166) | |
Text
..
f N ^ Commonw:alth Edis'.n l
__ ) 1401 Opus Pl ca
- ( - J Down:rs orcv2,iilinois 60515 v
t October 11,1991 Dr. Thomas E Murley, Director Office of Nuclear Reactor Regulation
- U. S. Nuclear Regulatory Commission Washington, D.C 20555-s-
!f r.
Attn: Document Control Desk
Subject:
Quad Citics Station Units 1 and 2
- Supplcmental Information Relating te Application for Amendment to Facility Oaratilig Licenses DPR 29 and DPR-30 inCEocketMosm50 25 Land 50:265
References:
(1) J.L. Schrage to T, E. Murley letter dated September 24,1991.
(2) Conferenca call on October 3,1991 between,
^^hrage (CECO) and ders (NRR),
L.N.- Olsh o.-
Dear Dr. Murley:
I...
a in the refere ed teLconference,-members of your staff requested.
1 supporting information rtaining to an application for an amendment to Quad Cities Station's Technical S ifications (Reference (1)). The proposed amendment establishes a clifferenual temperaturo criteria for the Control Room Emergency Filtration (CREF) System heater based upoa system flow. The requested information 's listed below:
1)
Historical CREF monthly surveillance resulta.
2)
Historical climatic data (specifically wet bulb temperature).
- 3) A discussion of the margin built into the revised differential temperature criteria.
- 4)
A discussion of the potential effects of degraded voltage on the performance of the CREF System heater and the resultant effect upon the ability of the heater to satisfy its design function.
' 9i10210037 91togy DR ADOCK 0300o254 Q
p h,I PDR' g
. /scl:1209:10 j
Dr. Thomas E. Murley October 11,1991 Available CREF system monthly surveillance data is included as En.Wsure A. Historical climatic information from 1990 and 1991 (through July) is included as Enclosure B.
A discussion on the margin built into the proposed differential temperature criteria and the potential effects of degraded voltage is included in Enclosure C.
If there are any comments or questions on this information please direct them to John L. Schrage at 708-515 7283.
Respectfully, f5-(j (4 John L. Schrage Nuclear Licensing Administrator
Enclosure:
A) Monthly CREF Surveillance Results B) HiMorical Climatic Data 1990 C) Discussion of Margin and Degraded Voltage Attachment cc: L.N. Olshan - Project Manager, Quad Cities T.E. Taylor - Senior Resident inspector, Quad Cities
}
/scl:1209:11
ENCLOSURE A Available CREF System Monthly Test Data Sheets (1990 and 1991)
System Modification Test (September 1991)
Post Modification Operability Test (September 1991)
I l
i
}
/scl:1209:12
Date b.he 00S 5750-51 Operator _t o % Asnv /m Revision 3 i
-Shift Engineer y h Q
.. v jg Q pctober 1988 CONTROL ROOM EMERGENCY FILTRATION SYSTEM MONTHLY TES'T ' ' '
Start of Run_ Time Mcc / e ww End of Run Time If0C / s/ 9 Time /Date Time /Da'te' l.
System air flow loS o cfm.
(2000 i 10%)
(Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-305B) 3'/
'F.
3.
Heater outlet temperature (TI 1/2-5741-3048)
< T,_ 'F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
//-
'F*
- Hust be 115'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317)
C"__'F.
6.
Compressor suction pressure iPI 1/2-5741-338)
/#
psig.
7.
Compressor discharge pressure (PI 1/2-5741-335)
/2e psig.
8.
Compressor oil pressure (PI 1/2-5741-336),_/ /"
psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313)
D
'F, 10.
AHU outlet temperature frca cooling coils (TI 1/2-5741-315) 60
- F.
l 11.
AHU filter DP (DPISH 1/2-5741-314)
,T in, of water.
L 12.
Pressure drop across the combined filters (DPISH 1/2-5741-311)
.c./
in. of water **
System air flow Sm cfm (2000 110%)
- Hust be < 6 inches of water at 2000 cfm (1 10%) flow rate.
13.
Pre HEPA filter DP-(DPISH 1/2-5741-309)
. '1 in, of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
/. c in, of water.
15.
Prefilter DP (DPISH 1/2-5741-308)
, 's /
in of water.
l_
1 i
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342)
/V GPM.
17.
Control-Room DP (DPI 1/2-5740-36) 4. %
1n. of water.*"
l-
- "Should be 1 1/8 in. of water, 18.
Run time
/6 hours.
Verification of Standby status of HVAC system following monthly test:
APPROVED DEC131988 14/0486q Q.C.O.S.R.
005 5750 51 C
Revision J Local Switches Control Room Switches (Panel 1/2-9400-105)
Cont Rm AFU Close 26 Toxic Gas Sample Point Open A d* /'e Fire Prot Valve (CR A HVAC System on, and n_ot isolated from outside air)
Cont Rm Air Neut
.24 Control Room Isolation Norm A //6 l
Handling Unit (After close)
Reset Cont Rm AC Ret Neut 8
Air Handling Unit 8 Auto A 2'6 fan (After trip) i Cont Rm AC Comp Neut
/&
Air Fitr Uqlt Booster Auto A2'/
Comp B (After stop)
Fan A Cont Rm Air ~
Neut
/4-Air F!tr Unit Booster Auto lx /4 Handling Unit B (After stop)
Fan B Cont Rm AFU Neut
./6-Air filter Unit Fire Close 3k //4 Booster Fans Protection Valve Cont Rm HVAC Normal 24-A/C Unit B Cooling Normal 80 2't
. Isolation Water Supply Selector A/C Unit B Compressor Auto k//5 TEST PROCEDURE: QOS 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H.l. and outage report 005 5750-02.
APPROVED DECl 31988 (final) 14/0485q 0.C.O.S.R.
Date_
9 -/). - kO 005 5750-51 e
!.e
(
L operatoi
/7Nu me r7 /1. t ec eA ' * '
h * [.
v-
.*u-...
Revision 3 October 1988 Shift Engineer (j//rm..._
/
CONTROL ROOM EMERGENCY FILTRATION SYSTEM MONTHLY TEST End of Run Time ir 3 h
'? n Start of Run Time mi /
Time /Date Time /Date 1.
System air flow le2 ofm.
(2000 + 101)
~
(Red scale of FRTl/2-5741-307) g 2.
Inlet temperature (TI 1/2-5741-3058) 3
- F.
1/2-5741-3048) 6/ M.....
- F.
3.
Heater outlet temperature (TI
,y 4.
Heater A temperature (heater outlet temp. - inlet temp.)
dl(*F.*
'Must be 115'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317) 7 f _* F.
6.
Compressor suction pressure (PI 1/2-5741-338) t.: 3 psig.
7.
Compressor discharge pressure (PI 1/2-5741-335) /W psig.
B.
Compressor oil pressure (PI 1/2-5741-336)
// /
psig.
9.
AHU inlet temperature to cooling coils (T! 1/2-5741-313) 7i..,
- F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315) 61 _ *F.
11.
AHU filter DP (DPISH 1/2-5741-314)
,I in, of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) 54 in, of water "
System air flow lio cfm (2000 1101)
"Must be < 6 inches of water at 2000 cfm (1 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309)
/, C in, of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
/>C in, of water.
15.
Prefilter DP (DPISH 1/2-5741-308) 6 in of water, 16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342) /ZC GPM.
17.
Control Room DP (DPI 1/2-5740-36)
<I in, of water ***
- Should be 1 1/8 in, of water.
18.
Run time iU hours.
Verification of Standby status of HVAC system following monthly test:
APPROVED DEC131988 14/0486q
-1 Q.C.O.S.R.
I
i.
005 5750-51 Revision 3 Local Switches Control Room Switches
_ Panel 1/2-9400-105)
(
Cont Rm AFU Close TC Toxic Gas Sample Point Open A 'W L _
fire Prot Valve (CR A HVAC System on, and n_ot isolated o
from outside air)
Cont Rm Air Neut
' R E-Control Room Isolation Norm
/R G Handitng Unit (After close)
Reset Cont Rm AC Ret Neut T C.
Air Handling Uit t B Auto
'bc fan (After trip)
Cont Rm AC Comp Neut
'RL Air Fitr Unit Booster Auto
"'/T c Comp B (After stop)
Fan A Cont Rm Air Neut OE Air Fitr Unit Booster Auto
'" kC Handling Unit B (After stop) fan B Cont Rm AFU Neut T L.
Air filter Unit fire Close
' bd Booster fans Protection Valve 0
Cont Rm HVAC Normal "vi.
A/C Unit B Cooling Normal 4c Isolation Water Supply Selector A/C Unit B Compressor Auto
'bc TEST PROCEDURE: 005 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical
-Specification 3.B.H.1 and 4.8.H.l. and outage report 005 5750-02.
APPROVED DEC131988 (final) 14/0486q Q. C. O. S. R.
i
l Date-3 - l ?.
9 O
[C;/p//6 $$'/
005 5750-51 Revision 3 Ope"ator_ & d w October 1988 Shif t Engineerl/4Mu6_-
CONTROL R00H EMERGENCY FILTRATION SYSTEM HONTHLY TEST 3-/2-90 End of Run Time 6 7/d /? '/? ' W Start of Run Time gl 16 Time /Date Time /Date 1
System air flow _cV cfm.
(2000 1 10%)
(Red scale of TR-1/2-5741-307) 2, Inlet temperature (TI 1/2-5741-305B)
W'f.
3.
Heater outlet temperature (TI 1/2-5741-3048) 97
- F.
4.
Heater A temperature (heater outlet temp. - inlet temp.)
/[
- F.*
- Hust be 215'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317)
N
'f.
6.
Compressor suction pressure (PI 1/2-5741-338) 7s' psig.
7.
Compressor discharge pressure (PI 1/2-5741-335)
//0 psig.
8.
Compressor oil pressure (PI 1/2-5741-336) __7,_6 psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313) 8.[
- F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
'F.
11.
AHU filter DP (DPISH 1/2-5741-314) 7 [ in. of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) 63 in, of water "
Systam air flow 2c7f cfm (2000 110%)
"Must be < 6 inches of water at 2000 cfm (z 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309)
/. 0 in, of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310) /M in. of water.
15.
Pref 11ter DP 'DPISH 1/2-5741-308)
M in, of water.
16.
Service water flow ( hline Brooks flow indicator)
(FI 1/2-5741-342)
' *li GPH.
it 17.
Control Room DP (DPI 1/2-5740-36) +.4 in. of water.***
"*Should be 1 1/8 in, of water.
18.
Run time
/o hours.
Verification of Standby status of HVAC system following monthly test:
APPROVED DEC131988 14/0486q
-1 1
Q.C.O.S.R.
005 5750-51 Revision 3 Local Switches Control Room Switches (Panel 1/2-9400-105)
Cont Rm AFU Close 6F Toxic Gas Sample Point Open A _ nt/
Fire Prot Valve (CR A HVAC System on, and ng isolated from outside alr)
Cont Rm Air Neut f
Control Room Isolation Norm M
Handling Unit (After close)
Reset Cont Rm AC Ret Neut 6
Air Handling Unit B Auto N
fan (After trip)
Cont Rm AC Comp Neut
., _ 7 Air F1tr Unit Booster Auto T _ _ _
Comp B (After stop)
Fan A Cont Rm Air Neut 5f Air Fitr Unit Booster Auto N
Handling Unit B (After stop)
Fan B Cont Rm AFU Neut i
Air Filter Unit fire Close W
Booster fans Protection Valve Cont Rm HVAC Normal 6
A/C Unit B Cooling Norma 1 d
Isolation Water Supply Selector A/C Unit B Compressor Auto Tl TEST PROCEDURE: Q05 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.B.H,1 and 4.8.H.l. and outage report 005 5/50-02.
APPROVED DEC131988 (final) 14/0486q 0. C. O. S. R.
Date /1w/ /P.
YO 005 5750-51 Operatof ( 6 '
W/, -
h;9dm Revision 3 Shift Engineer October 1988 U
CONTROL R00H EMERGENCY FILTRATION SYSTEM H3NTHLY TEST Start of Run Time M /4 A / a fc End of Run Time 15 4 KI '/-12-90 ifme/D' ate ilme'/Date 1.
System air flow,,go76 cfm.
(2000 1 10%)
(Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741 't058) 39'
'F.
3.
Heater outlet temperature (TI 1/2-5741-3048) 5A
'F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
l[
'F.*
~
- Hust be 115'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317) _96
'F.
6.
Compressor suction pressure (PI 1/2-5741-338) 10 %
psig.
7.
Compressor discharge pressure (PI 1/2-5741-335) 13 3 psig.
8.
Compressor oli pressure (PI 1/2-5741-336) lN psig.
9.
AHU inlet temperature to cooling colls (TI 1/2 5741-313) 7f
'F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315) 9P
'F.
11.
AHU filter DP (DPISH 1/2-5741-314)
.W in, of water, 12.
Pressure drop across the combined filtert (DPISH 1/2-5741-311)
C.3 in, of water "
System air flow a M cfm (2000 110%)
- Hust be < 6 inches of water at 2000 cfm (1 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) D,1 _ in, of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
- 1. r-in of y rar.
15, Prefilter DP (DPISH 1/2-5741-308) 1.1 in, of water.
l l
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342) 19 GPH.
17.
Control Room DP (DPI 1/2-5740-36) - or in. of water.'"
- "Should be 1 1/8 in. of water.
18.
Run time
/O hours.
Verification of Standby status of HVAC system folicwing monthly test:
l APPROVED DEC131988 14/0466q Q.C.O.S.R.
005 5750-51 Revision 3 Local Switches Control Room Switches (Panel 1/2-9400-105)
Cont Rn AfU Close Toxic Gas Sample Point Open A 7#[DS fire Prot Valve
~
(CR A HVAC System on, and nM isolated from outside alr)
W DS Cont Rm Air Neut Control Room Isolation Norm Handling Unit (After close)
Reset Cont Rm AC Ret Neut Air Handling Unit B Auto Fan (After trip)
Cont Rm AC Comp Neut Air fitr Unit Booster Auto N
Comp B (After stop) fan A Cont Rm Air Neut c
Air fitr Unit Booster Auto N
Handling Unit B (After stop) fan B Cont Rm AFU Neut Air filter Unit fire Close M b>3 Booster fans Protection Valve Cont Rm HVAC Normal A/C Unit B Cooling Normal M
isolation Water Supply Selector A/C Unit B Compressor Auto TEST PROCEDURE: 005 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H l. and outage report 005 5750-02.
APPROVED DECl 31988 r
(final) l 14/04869 0. C. O. S. R.
l
pate 5-It 9D 005 5750-51 Opera tor hex as & / /dM / c, ( s, n )
Reeision 3 shift Enginetr C. '. 54 October 1988 CONTROL ROOM EMERGENCY FILTRATION SYSTEM MONTHLY TEST Start of Run Time 6906 !f-I;d' End of Run Time,/i!/c /p /2 /-
Ilme/Date Time /Date 1.
System air flow 2 @
cfm.
(2000 1 10%)
(Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-3058)
'IS
- F.
3.
Heater outlet temperature (71 1/2-5741-3048) 7#
'F.
4 Heater a temperatura (heater outlet temp. - inlet temp.)
/7
'F.*
- Must be 115'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317) _R$
'F.
/'
6.
Compressor suction pressure (PI 1/2-5741-338) n.3 psig.
7.
Compressordischargepressure(P11/2-5741-335)]f5 psig.
8.
Compressor oil pressure (PI 1/2-5741-336) /Of psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313) b Y
'F.
r 10.
AHU outlet temperature from cooling coils (TI I/2-5741-315) kJ
'F.
rr 11.
AHU filter DP (DPISH 1/2-5741-314)
/?
In. of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311)
A in. cf water **
System air flow - 2 D on cfm (2000 1101)
- Must be < 6 inches of water at 2000 cfm (1 101) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) -7 in. of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
I __ in, of water.
15.
Pref 11ter DP (DPISH 1/2-5741-308),3 5 in. of water.
16.
Service water flow Linjine Brooks flow indicator)
(FI 1/2-5741-342) Y4 GPM.
17.
Control Room DP (DPI 1/2-5740-36).T C in. of water.***
- "Should be 21/8 in, of water.
18.
Run time
/O hours.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486g
-1 DEC131988 Q. C. O. S. R.
~
005 5750-51 Revision 3 Local Switches Control Room Swit:hes (Panel 1/2-9400-105)
Cont Rm AFU Close W
Toxic Gas Sample Point Open A %'
Fire Prot Valve (CR A HVAC System on, and n_qt isolated from outside air) i Cont Rm Air Neut kV Control Room Isolation Norm 6U Handling Unit (After close)
Reset vv Air Handling Unit B Auto Di Cont Rm AC Ret Neut Fan (After trip)
Cont Rm AC Comp Neut w
Air Fitr Unit Booster Auto Comp B (After stop)
Fan A Cont Rm Air Neut IN Air Fitr Unit Booster Auto f@ _
Handling Unit B (After stop)
Fan B Cont Rm AFU Neut l/ V Air Filter Unit Fire Close ML Booster Fans Protection Valve Cont Rm HVAC Normal Eb A/C Unit B Ccoling Normal A6 _
Isolation Water Supply Selector A/C Unit B Compressor Auto TEST PROCEDURE: 005 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3,8,H.1 and 4,6,H.l. and outage report QOS 5750-02, l
APPROVED DEC131988
)
(final)
- 0. C. O. S. R.
14/0486q
-2
Da t e_[a- / L% A, 005 5750-51 f
Operafor 76#h/,)
.Gt Revision 4 Shif t En(ineer /M7't7 d Parch 1990 A
CONTROL ROOH EMERGENCY FILTRATION SYSTEM MONTHLY TEST Start of Run Time /ofr/l.-> f 90_
End of Run Time _, 7/35//1310 Time /Date Time /06te
_ /I'DO cfm.
(2000 1 101) 1.
System air flow (Red scale of FR-1/2-5741-207)
-2.
Inlet temperature (TI 1/2-5741-3058) 75.5
'F.
3.
Heater outlet temperature (TI 1/2-5741-3048) /0 2. 5
'F.
4.
Heater A temperature (heater outlet temp. - inlet temp.)
/1. (#
'F.*
- Hust be 215'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317) 45
'F.
6.
Compressor suction pressure (PI 1/2-5741-338)
W psig.
- 70 7.
Compressor discharge pressure (PI 1/2-5741-335) f934 psig.
/C n M. psig.
8.
Compressor oil pressure (PI 1/2-5741-336) 9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313) f9 6 'f.
10, AHU outlet temperature from cooling coils (TI 1/2-5741-315) $6. 5 'F.
11.
AHU litter DP (DPISH 1/2-5741-314)
.I in of water.
~
l 12.
Pressure drop across the combined filters (DPISH 1/2-5741-311)
Y2 in, of water **
System air flow /90r cfm (2000 110%)
- Hust be < 6 inches of water at 2000 cfm (1 101) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309)
,S in. of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
, k in. of water.
l 15.
Prefilter DP (DPISH 1/2-5741-308).25 in. of water.
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342)
R6' GPH.
17.
Control Room DP (DPI 1/2-5740-36) #.
in of water.'"
- Should be 2 1/8 in. of water.
18.
Run time
/O hot %.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q W g 0 5 1990 O.C.O.SR.
005 5750-51
~
Revision 4-Local Switches Control Room Switches (Pane) 1/2-9400-105)
-Cont Rm AFU Clos e --
Toxic Gas Sample Point OpenA'[d Fire Prot _ Valve (CR A HVAC System on, and not isolated from outside air)
Cont Rm Air Neut sf Control Room Isolation Norm p Handling-Unit (After close)
Reset k1P Cont Rm AC Ret Neut sT Air Handling Unit B Auto Fan (After close) l l
Cont'Rm AC Comp Neut sf Air Fitr Unit Booster Auto M
Comp B~
(After stop)
Fan A Cont-Rm Air Neut sF Air Fitr Unit Booster
~ Auto M
+
Handling Unit B -(After stop)
Fan B Cont Rm AFU Neut
$1~
Air Filter Unit Fire
'Close
'~$di Booster Fans Protection Valve Cont Rm HVAC Normal A/C Unit B Cooling-horma' M Isolation Water Supply Selector A/C Unit B Compressor Auto ~
M
-TEST PROCEDURE: QOS 5750 Notify the Shlft Engineer of any discrepancy and refer:to Technical Specification 3.8,H,1-and 4,8.H.l. and outage report 005 5750-02.
L j
APPROVED (final) h 14/0486q' WAY 051990 Q.C.O.S A 1
Date 7-/2-N nJ, UllN{ pum"E.lQgg05 5750-S1 Operator 6,n.m.,4 / J/ abs vud a
n shif t Engineer W44msf(/
g i,,on,
/
Harch 1990 CONTROL ROOM EHERGENCY FILTRA110N SYSTEM HONTHLY TEST Start of Run Time,_203 6 /7 /2 h End of Run Time h 6VO 7-/3 - PO Time /Date ilme/Date 1.
System att flow fffAd cfm.
(2000 1 10%)
(Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-305B ' N 3.
Heater outlet temperature (TI 1/2-5741-304B$.@D.v.f-
- P 'r.
4 Heater A temperature (heater outlet temp. - inlet temp.) 1 ( !
'f
- Must be 215'F 5.
Return air temperature to AHU from spaces (TI '/2.5741-317) _ N
'r.
6.
Compressor suction pressure (PI 1/2-5741-338) __/,/,a psig.
7.
Compressor discharge pressure (PI 1/2-5741-335)
M psig.
B.
Compressor oli pressure (PI 1/2-5741-336) _xg__ psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313)
Eh
- F.
10.
AHU outlet temperature from cooling co115 (TI 1/2-5741-315) (
__ F.
11.
AHU filter OP (OPISH 1/2-5741-314) - ( in. of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) 4,1 in of water "
System air flow NN cfm (2600 110%)
- Hust be < 6 inches of water at 2000 cfm (i 101) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309).2 in, of water.
14.
Post HEPA filter DP (OPISH 1/2-5741-310)-E5 in, of water.
15.
Prefilter DP (DPISH 1/2-5741-308) _U _ in of water.
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342) 90 GPH.
17.
Control-Room DP (DPI 1/2-5740-36) 253 in of water.*"
- "Should be 21/8 in. of water.
18.
Run time
/O hours.
Verification of Standby status of HVAC system following montMy test:
APPROVED 14/0486q luY051990 O.C.O.S R.
005 5750-51 Revision 4 Local Switches Control Room Switches (Panel 1/2-9400-1051 Cont Rm Ar Close b
Toxic Gas Sample Point Open A 8 Fire Prot Valve (CR A HVAC System on, and n.ot isolated from outside air)
Cont Rm Air Neut
<R Control Room Isolation Norm M
Handling Unit (After close)
Reset b
Cont Rm AC Ret Neut 8
Air Handling Unit B Auto Fan (After close) l Cont Rm AC Comp Nedt b
Air Fitr Unit Gooster Auto Comp B (After stop)
Fan A Cont Rm Air Neut b
Air Fitr Unit Booster Auto M
Handling Unit B (After stop)
Fan B k
Cont Rm AFU Neut k
Air Filter Unit Fire Close Booster Fans Protection Valve Cont Rm HVAC Ncamal M
A/C Unit B Cooling Normal Isolation Water Srpply Selector A/C Unit B Compressor Auto TEST PROCEDURE: QoS 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H.l. and outage report QOS 5750-02.
APPROVED (final) 14/04869 WAY 0 51990 o.c.o.S.R.
Date hD 005 5750-51 Operator-( err.t -/4 9 m -
Reviston 4
-o:
Shift _ Engineer l'f24-March 1990 CONTROL ROOH EMERGENCY FILTRAT ON SYSTEM HONTHLY TEST Start of Run Time -lN 7 b Si End of Run Time 2H9
?-1640 Time /Date lime /Date 1.
System air flow
!t
-cfm.
(2000 1 107.)
(Red scale of FR-1/2-5741-307) g 2.-
Inlet temperature (TI 1/2-b741-305B) M.
Of 3.
Heater outlet temperature (TI 1/2-5741-304B) M-E
~.
4.
Heater A temperature (heater outlet temp.
inlet temp.) bb se ' f. *M 6
'Hust be 215'f 8 %
~
=5.
Return air temperature to AHU from spar.es (TI 1/2-5741-317) D
'f.
6.
Compressor suction pressure (PI 1/2-5741-338)
(Od psig.
7.
Compressor discharge pressure (PI 1/2-5741-335) l}$
psig.
8.
Compressor oil pressure (PI 1/2-5741-336)
GS p s i g -.
9.-
AHU-inlet temperature to cooling co11s (TI 1/2-5741-313)
Il
- F.
- 10. -
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
M
- F.
11.
AHU filter DP (DPISH 1/2-5741-314) 3 1 in, of water.
i 12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) 4.l in, of water "
System air flow Ibe b cfm-(2000 1101.)
~ "Must be <- 6--inches of water at 2000 cfm (i 107.) flow rate.
OY in. of water.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) 14.
Post HEPA filter DP (DPISH 1/2-5741-310) O M in, of water.
o 15 ~.
Prefilter DP-(DPISH 1/2-5741-308) 03S in.-of water.
16.
Service water flow (inline Brooks flow indicator)
-(FI 1/2-5741-342)
'lO6 GPM.
17.
Control Room DP (DPI 1/2-5740-36) 4 0. E in, of water.*"
j
-***Should be 2 1/8 in, of water.
l-18-Run time /0-hours.
L L
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q HY051990
' Q.C.O.S R-
005 5750-51 Revision 4 Local Switches Control Room Swttches (Panel 1/2-9400-105)
Cont Rm AFU Close Toxic Gas Sample Point Open A 3F/bf Fire Prot Valve (CR A HVAC System on, and n_ot isolated from outside air)
Control Room isolation Norm N /DS Cont Rm I.
(After close)
Reset Neut Handling Unit Cont Rm AC Ret Neut Air Handling Unit B Auto 3F/t2 fan (After close) l Cont Rm AC Comp Neut Air F1tr Unit Booster Auto YI/DS Comp B (After stop)
Fan A Cont Rm Air Neut Air Fitr Unit Booster Auto IF[li>
Handling Unit B (Atter stop)
Fan B Cont Rm AFU Neut Air Filter Unit fire Close.
63 Booster Fans Protection Valve A/C Unit B Cooling Normal TII[ b3 Cont Rm HVAC Normal t
Isolation Water Supply Selector TF/bS A/C Unit B Compressor Auto TEST PROCEDURE: Q05 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H.1. and outage report 005 5750-02.
(79 L ier f ra ta t e,,
/h,. a-f 5'~&,, \\ v, r & Td.N *vn Stor ec) r c % 61/AE ufo ^!*'**d 2 k.est avn. m S~cond Mecke ch% Men t
Sg M fygg y'fu AFa mand / 'A' Afa.syp pe,.
/70s T
$$O u 1a //0 0 Zu a si st J/.2 n~ Q%
.f* /y
- 0vtred Jp en
.6 1 & lS 5 gy. goo APPROVED (final) 14AY 0 51990 14/0486q Q.C.O.SR,
- f 9 0 005 5750-51
.e erator
//X -o Revieton 4 ift Engineer 4 % 4 & A Harr.h 1990 CONTROL ROOH EMERGENCY FILTRATION SYSTEH MONTHLY TEST Start of Run Time to3 Y A -4 c/ 0 End of Run Time 20.[7 f-91a Time /Date Time /Date 1.
System air flow
/P3D cfm.
(2000 t 10%)
(Red scale of FR-l/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-305B)
W
'F.
3.
Heater outlet temperature (TI 1/2-5741-304B)
/p 5'
'F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
/7
'F.*
'Hust be 215'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317)
SY
'F.
6.
Compressor suction pressure (PI 1/2-5741-338) d9 pstg.
7.
Compressor discharge pressure (PI 1/2-5741-335) 276 psig.
8.
Compressor oil pressure (PI 1/2-5741-336)
/06 psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313) __[7
- F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315) d 7
- F.
11.
AHU filter DP (DPISH 1/2-5741-314) b.Y in, of water.
}
12.
Pressure drop across the com)ined filters
, [.
(DPISH 1/2-5741-311)
//. /o in, of water "
1 System att flow /f fo cfm (2000 +101)
"Must be < 6 inches of water at 2000 cfm (1 10%) flow rate.
l
?
13.
Pre HEPA filter DP (DPISH 1/2-5741-309)
- d. [ in. of water.
'f 14.
Post HEPA filter DP (DPISH 1/2-5741-310) 0.9 in. of water, j.
15.
Prefilter DP (DPISH 1/2-5741-308) 630 in of water.
16.
Service water flow (inljne Brooks flow indicator)
I (FI 1/2-5741-342) 96 GPH.
17.
Control Room DP (DPI 1/2-5740-36), l '7 ( i n, of water. "*
"*Should be 21/8 in, of water.
18.
Run time 21 hours2.430556e-4 days <br />0.00583 hours <br />3.472222e-5 weeks <br />7.9905e-6 months <br />.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q WAY 0 51990 Q.C.O.SR,
005 5750-51:
o r
Reelsion: 4 Local Switches Control Room Switches (Panel 1/2-9400-105)
Cont Rm AFU-
.Close M
' Toxic Gas Sample Point Open A M /
-Fire Prot Valve (CR A HVAC System on, and not isolated from cuiside air)
Cont Rm Air _
Neut Control Room Isolation Norm Y
-Handling Unit (After close)
Reset Cc,nt Rm AC Ret Neut 1 Air Hand 1_Ing Unit B Auto WY Fan (After ciose) ll Cont Rm AC Comp Neut Air Fitr Unit Booster Auto
//
Comp B (After (top)
Fan A Cont Rm Air Neut Air F1tr-Unit Booster Auto-M Handling Unit B (After stop)
Fan B Cont Rm AFU Neut-Air. Filter Unit Fire Close _g//
Booster Fans Protection Valve Cont Rm HVAC Normal A/C Unit B Cooling Normal m'
Isolation Water Supply Selector A/C Unit B Compressor Auto d
TEST PROCEDURE: 005 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification:3.8.H.1-and 4.8.H.1. and outage report 005 5750-02.
I APPROVED-(final) 14/04864 WAY 0 51990 Q.C.O.S R.
]l' 6-9F
.ni & Cum /1 Revision 4 005 5750-51 i
sr
,m i i t Engineer 5%m jji,,,,,(,, 3g d,$trch 1990
,y
~
w CONTROL R00H EMERGENCY FILTRATION SYSTEM HONTHLY TEST
/
Start of Run Time
- 5?o
/o Cfo End of Run Time O'C f W -I Y d Time /Date Time /Date 1.
System air flow
.2 0 0 c>
cfm.
(2000 1 101)
Ired scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-3058)
$D
- f.
3.
Heater outlst temperature (TI 1/2-5741-304B)
M
'F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
l8
- F.*
j
'Hust be 215*F t
5.
Return air temperature to AHU from spaces (TI 1/2-5741-317)
M
- F.
6.
Compressor suction pressure (PI 1/2-5741-338) h psig.
7.
Compressor discharge pressure (PI 1/2-5741-335) __] S C psig.
8.
Compressor oil pressure (PI 1/2-5741-336)
~7 C) psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313)
M
'F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
- F.
11.
AHU filter DP (DPISH 1/2-5741-314) el in of water.
12.
Pressure drop across the combined filters (Dr SH 1/2-5741-311)
-4'/
in, of water **
System air flow Im r _ cf m (2000 1107.)
"Hust be < 6 inches of water at 2000 cfm (1 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) _e8 in. of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310) 9 in of water.
15.
Prefilter DP (OPISH 1/2-5741-308) s32.
in. of water.
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342) too GPH.
17.
Control Room DP (DPI 1/2-5740-36)
.l4 in, of water.*"
- "Should be 2 1/8 in, of water.
18.
Run time /C, f 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br />.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q W 0 51990 Q.C.O.S R.
4
~. ~. -.
w> b /W-di:
^
Revision 4' Local _ Switches-y M
i Control Room-Switches (PaneI i/2-9400-105) i Cont Rm AFU Close
[k Toxic Gas-Sample Point-Open
[b y Fire Prot Valve (CR A HVAC System on, ant-noLisolated from-out side alt,) M.
+
.n r-ye
~
Cont Rm Air Neut S/--
Control. Room Isplationi Norm ft/6 rt, t --
Handling-Unit
'(After close)-
-Reset
.I d44A 8Cd4 Cont Rm AC Ret Neut dAL Air Handling Unit B Auto Fan-(After close) l Cont Rm AC Comp Neut d1L,_ Air Fitr Unit Booster Auto' G*!( /-
Comp B (After stop)
Fan A Cont Rm Air.
Neut M-Air Fitr Unit Booster Auto If/f4
~
Handling Unit B (After stdp)
Fan B Cont Rm AFU Neut h
Air Filter Unit Fire Close 5dd/-
Booster Fans.
Protection Valve Cont Rm-HVAC-Normal [ soda %
A/C Unit-B Cooling Normal SU h L e
Isolation y
Water Supply Selector
- ~
A/C-Unit B Compressor Auto C /L
[
. TEST PROCEDURE: QOS 5750-2 l Notify-the Shift Engineer of any discrepancy and refer to Technical
[
Specification 13.8.H.1 and 4.8.H.1. and outage report QOS 5750-02.
~
L 1~c ta e Am 5
%AM fAL APPROVED:
'(final) 14/0486q WAY 0 5M Q.C.O.S.R.
a s --
-. n o "?m " 1
4 Cate i l 4 / 516 ws asou-se
'Operattr h r Car d,.
Reviston 4 Shift Engineer % ' h f,/-1 4'/
March 1990 CONTROL ROOH EMERGENCY FILTRATION SYSTEM HONTHLY TES1 L
Start of Run Time G5'l I. th i End of Run Time f /f f /-9 9 /
Time /Date Tier /Date I T.1T '
cfm.
(2000 1 101) 1.
System air flow (Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-305B)
- 1
'F.
3.
Heater outlet temperature (TI 1/2-5741-304B) 44
- F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
I '?
'F.*
- Hust be 115'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317)
Sk
'F.
[M
+6.
Compressor suction pressure (PI 1/2-5741-338) psig.
O.
M 7.
Compressor discharge pressure (PI 1/2-5741-335) psig.
p/
M.
Compressor oil pressure (PI 1/2-5741-336) psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313) w
'F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
'F, 11.
AHU filter DP (DPISH 1/2-5741-314)
M in, of water.
12.
Pressure drop across the combined filters
'o (DPISH 1/2-5741-311) 4.3 in of water "
5 2
System air flow lEM cfm (2000 1101)
Q Sa a
- Hust be < 6 inches of water at 2000 cfm (1 101) flow rate.
M 4
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) 7 in, of water.
fi
~' m 9
- d]
14.
Post HEPA filter DP (DPISH 1/2-5741-310)
M,_
in. of water, y
m 15.
Prefilter DP (DPISH 1/2-5741-308)
,5 in, of water.
h
- g..) (, q g /f 9 6.
Service water flow (1nline Brooks flow indicator)
(FI 1/2-5741-342)
GPH.
%f 0. -
(,., p 17.
Control Room DP (DPI 1/2-5740-36)
,fD in. of water."*
- Should be 2 1/8 in, of water, gqggy 18.
Run time /f 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br />.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q HY051990 Q.C.O.S.R.
_~_______-._.1..-_.1-___.__
_____1-
COS 5750-51 Revision 4 Local Switches Control Room Switches (Panel 1/2-9400-105)
[
Cont Rm AFU-Close
% M Toxic Gas Sample Point Open A
'M'./o,3 (CR A HVAC System on, and not isolated Fire Prot Valve 4
from outside air)
.l Q?
Cont Rm Air Neut Control Room Isolation Norm Handling Unit (After close)
Reset Cont Rm AC Ret Neut Air Handling Unit B Auto G) l 4
Fan (After close)
_f Q
Cont Rm AC Comp Neut Air Fitr Unit Booster Auto Comp B (After stop)
Fan A Cont Rm Air Neut Air Fitr Unit Booster Auto g Handling Unit B (After stop)
Fan B
.hh Air Filter Unit Fire Close c\\D Cont Rm AFU Neut Booster Fans Protection Valve Cont Rm HVAC Normal A/C Unit B Cooling Normal Isolation Water Supply Selector
}D A/C Unit B Compressor Auto TEST PROCEDURE: Q05 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H.l. and outage report QOS 5750-02.
APPROVED (final)
WAY 0 51990 14/0486q Q.C.O.SR.
Date h6'7/
[,u u gI qD*q 005 5750-51 Revision 4 Operator
- ?A4>R i
Shift Engin(er M mif e, A g (. d jf March 1990 CONTROL R00?4 EMERGENCY FILTRATION SYSTEM HONTHLY TEST Start of Run Time End of Run Time Time /Date Time /Date 1.
System air flow cfm.
(2000 1 107.)
(Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/2-5741-305B)
- F.
3.
Heater outlet temperature (TI 1/2-5741-304B)
- F.
4.
Heater a temperature (heater outlet temp. - inlet temp.)
- F.*
- Must be 215'F
\\
Return air temperature to AHU from spaces (T! 1/2-5741-317)
- F.
6.
Compressor suction pressure (PI 1/2-5741-338) 6 e psig.
7.
Compressor discharge pressure-(PI 1/2-5741-335)
Rc psig.
B.
Compressor oil pressure (PI 1/2-5741-336)
/ v f psig.
9.
AHU inlet temperature to cooling coils (TI 1/2-5741-313)
_F.
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
- F.
11.
AHU filter DP (DPISH 1/2-5741-314) in, of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) in. of water **
System air flow cfm (2000 1107.)
- Must be ( 6 inches of water at 2000 cfm (1 107.) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309) in of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310) in, of water.
15.
Pref 11ter DP (DPISH 1/2-5741-308) in, of water.
16.
Service water flow (inline Brooks flow indicator)
(FI 1/2-5741-342)
GPH.
17 Control Room DP (DPI 1/2-5740-36) in. of water.'"
'"Should be 2 1/8 in. of water.
18.
Run time hours.
Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q WAY 0 51990 O.C.O.S R.
QoS 51b0-51 ate h -- S -- M \\
j ) es Operator i < oh,: n..
/Q g4,tf Revision 4 March 1990 Shif t Engineer %D ucd v
CONTROL ROOH EMERGENCY flL1 RATION SYSTEM HONTHLY TEST
/(/2e/224 I '
Start of Run Time M S D-M )
End of Run Time Time /Date Time /Date
/DC cfm.
(2000 1 10%)
1.
System air flow (Red scale of FR-1/2-5741-307) 2.
Inlet temperature (TI 1/?-5741-305B) 36
'F.
3.
Heater outlet temperature (Tl 1/2-5741-3048) __9. i
- F.
!5~ _
'F.*
4.
Heater A temperature (heater outlet temp. - inlet temp.)
- Must be 215'F 5.
Return air temperature to AHU from spaces (TI 1/2-5741-317) 8/
_*F.
6.
Compressor suction pressure (PI 1/2-5741-338)
'S psig.
7.
Compressor discharge pressure (PI 1/2-5741-335)
+
psig.
psig.
8.
Compressor oil pressure (P1 1/2-5741-336) e 9.
AHU inlet temperature to cooling coils (11 1/2-5741-313)
IS *F.
(
10.
AHU outlet temperature from cooling coils (TI 1/2-5741-315)
[I
'F.
11.
AHU filter DP (DPISH 1/2-5741-314) 7 in. of water.
12.
Fressure drop across the combine filters (DPISH i/2-5741-311) 61 in. of water "
System air flow /fAS' cfm (2000 110%)
- Hust be < 6 inches of water at 2000 cfm (1 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309)
+b__in,ofwater.
e d in. of water, 14.
Post HEPA filter DP (DPISH 1/2-5741-310) 15.
Prefilter DP (DPISH 1/2-5741-308)
- M in, of water.
16.
Service water flow (inline Brooks flow indicator)
(F1 1/2-5741-342)
O GPM.
- d in. of water."*
17.
Control Room DP (DPI 1/2-5740-36)
- Should be 1 1/8 in, of water.
18.
Run time
//.4 f. hours.
Verification of Standby status of HVAC system following monthly test:
S
/w Mr aa rJ APPROVED 14/04864 WAY 0 51990 Q.C.O.S 2.
005 5750-51 Revision 4 Local Switches Control Room Switche$
(Panel 1/2-9400-105)
Cont Rm AfU Close V (I Toxic Gas Sample Point Open A Fire Prot Valve (CR A HVAC System on, and not isolated from outside air) 4 Cont Rm Air Neut V
Control Room Isolation Norm w
Handling Unit (After close)
Reset Cont Rm AC Ret Neut IIU Air Handling Unit 0 Aute s
fan (After close) j Cont Rm AC Comp Neut uu A?r fitr Unit Booster Auto
'?,<-
Comp B (After stop) fan A d
Cont Rm Air Neut Air fitr Unit Booster Auto
_! L v -
Handling Unit B (After stop) fan B Cont Rm AfU Neut I' U Air filter Unit fire Close s r..i -
Booster fans Protection Valve Cont Rm HVAC Normal to A/C Unit B Cooling Normal at Isolation Water Supply Selector A/C Unit B Compressor Auto VE TEST PROCEDURE:
005 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specificatio., 3.8 H.1 and 4.8.H.l. and outage report 005 5750-02.
p qe.
V f M.s 0 "^ 7
- p c
APPROVED (final) 14/0486q WAY 0 51990 Q.C.O.SR.
5 Date,_/l 4 '//
Q35 5750-51 OperatorSJ_nuer'/. f GuJ' Revislon 4 Shift Engineer () $ nce.t. m Maich 1990 (Y
CON 1ROL ROJi [ HERG [tr iILIRA110N SYSTCH HON 1HLY 1E51 Start of Run ilme A345]/Date 4 4-7/
End of Run 11rne
/15'S [ -j7- ['/
.7 ilif;e time /Date 7
1.
System air flow d [ O._
cim.
(2000 1 10%)
(Red scale of fR-1/2-5'/41-307) 2.
Inlet temperature (il 1/2-5741-305B) [
'f.
3.
lleater outlet temperature (il 1/2-5741-3040) 3 (o
'r.
4.
lleator o temnerature (heater outlet temp. - inlet tenp.)
l~7
'F.*
'Hust be 215'F 5.
Return air temperature to AHU from spaces (il 1/2-5741-317) _h
'r, 6.
Compressor suction pressure (PI 1/2-5741-338).j2_3 psig.
7.
wpressor alscharge pressure (P1 1/2-57"-335) 3 psig.
8.
Compressor oli pressure (P) 1/2-5741-336)
IIO psig.
9.
AHU inlet temperature to cooling coils (il 1/2-5741-313) M
'f.
10.
AHU outlet temperature from cooling coils (Tl 1/2-5741-315) 3 5
- f.
11.
AHU filter DP (DPISH 1/2-5741-314).I in, of water.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311) 1,()
in. of water "
System air flow $SF cim (2000 110%)
- Must be < 6 inches of water at 2000 cfm (1 101.) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309),, E in. of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310) [
in, of water.
15.
Pref 11ter DP (DPISH 1/2-5741-308) )(o in, of water.
16.
Service water flow Qnline Brooks flow indit.ator)
(fl 1/2-5741-342) i T3 GPH.
17.
Control Room DP (DPI 1/2-5740-36)
.3 in. of water.'"
- ShoM d be 1 1/8 in. of water.
18.
Run time
/d hou s.
- 71. -
Verification of Standby status of HV/C system following renthly test:
APPROVED 14/04860 MY 0 51990 l
Q.C.O.S.R.
005 5750-51 Revision 4 1
tggal Switches Control Room Switches (Panel 1/2-9400-105)
Cont Rm AfD Close _
7D Toxic Gas Sampic Point OpenAkh_,
Itre Prot Valve (CR A HVAC System on, and noj ti,olated from outside air)
Cont Rm Air Neut S
Control Room isolation Norm QD Handling Unit (After close)
Reset Cont Rm AC Ret Neut 7k Air Handling Unit B Auto M 3
l fan (After close) gb Cont Rm AC Comp Neut 72 %
Air fitr Unit Booster Auto Comp B (After stop) fan A sont Rm Air Neut
'A-Air fitr Unit Booster Auto QD
~
Handling Unit B (After stop) fan B T
Cont Rm AfD
- Neut, 74, Air filter Unit fire Close D_
Booster fans (09) protection Valve Cont Rm HVAC Normal 77 - A/C Unit B Cooling Wormali.h Isolation 11ater Supply Selector AIC Unit B Compressor Auto QO TEST PROCEDURE:
QOS 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Specification 3,8.H.1 and 4.8.H.1. and outage report 005 5750-02, APPROVED L
L (final)
WAY 0 51990 14/0486q o.c.o.s,a.
P Date
~ j]
~
OperiT6r_ lac
.,_C
/10g k[ $
l Shirt Engineer 005 5750-51 j
Revision 4 Ze? __.
'm Harth 1990 l
C0hlROL ROOM EMERGINCYu.t \\/[j%
f111 RAT 10N SYSilH HON 1HLY 1L51 A[l
start of Run ilme /JJ O _ M 7/
lime /Date End of Run Time lg.fdhp'//
1.
System air fio l[ 3 b cfm.
lime /Date (Red scale of IR T/2-5741-307) (2000 1 101) 2 Inlet temperature (11 1/2-5741-305B)_y37__ _
'f.
3.
Heater outlet temperature (11 1/2-5741-304B) Jon '
4 I.
Heater A temperature (heater o'A let temp
. - inlet temp.) a{,a
'f.*
5.
'Hust be 3 5'T Return air temperature to AHU from spaces (11 1/2 Compressor suction pressure 11-317) l \\_ 'f.
6.
(PI 1/2-5741-338) 7.
_ on _ psig.
Compressor discharge pressure (P1 1/2-5741-335)
Compressor oli pressure (PI
__ A <1 psig.
8.
1/2-5741-336) __ % __, psig.
9.
AllU inlat temperature to cooling coils (11 1/2 5741
-313) _S% _ f.
10.
AHU outlet temperature from cooling coils (11 1/2 5741 11.
-315)
AHU filter DP (DPISH
_va _ f.
1/2-5741-314) _.%__ in, of water, 12.
Pressure drop across *he combined filters (DPISH 1/2-5741-311)
System air flow Lff&Ofm (2Q00HL in, of water '
110%)
"Must be < 6 inches of water at 2000 cfm (i 107.) flow rate.
13.
Pre HEPA filter DP (DPISH1/2-5741-309) _.% _ in, of water.
14.
Post HEPA fliter OP (DP15H 1/2-5741-310)
Preft1ter DP (DPISH
_ a _ in, of water.
15.
1/2-5741-308)
_._ m
_ in, of water.
16.
Service water flow (inline BroAs flow indicator)
(f! 1/2-5741-342) _v-n GPH.
17 Control Room DP (DFl1/2-5740-36) L L21 in. of water " '
- Should be 1 1/8 in. of water.
18.
Run time _
/O hours.
Verification of Standby status of HVAC system follo i w ng monthly test:
14/f4864 APPROVE:D WW 0 51990
-_ _ _ _____ _____--___ __ m
(y?5 5750-51 Revision 4 total Switches
,Paidi~i/f-MUOliOS)
Contr01 Room Switches
(
Cont Rm AFU Close 7
Toxic Gas Sattple Point Open A ); Ji_
Fire Prot Valve (CR A HVAC System on, and 90t isolated from outside air)
Cont Rm Air Neut f
Control Rcom isolation florm fj;'
Handling Ur.it (After El,ose)
Reset Cont Rm AC Ret lieut
_ _ Air Handling Unit B Auto MC/S Fan (After close) l PC/'h, Cont Rm AC Comp Neut T
Air Fitr Unit Booster Auto Comp B (After stop) fan A (f?'/h;_
Cont Rm Air Neut F
Air Fitr Unit Booster Auto Handling Unit B (After stop) fan B Cont lm AFU Neut
- f Air filter Unit Fire Close M'/W Boos r fans Protection Valve Cont Rm HVAC Normal T
_ A/C Unit B Ccoling NormalAc/fi Isolation Water Supply Selector A/C Unit B Corrpressor Auto Afp/F_
TEST PROCEDURE: QOS 5750-2 tiotify the Shift Engineer of any discrepancy and refer to Technical Specification 3.8.H.1 and 4.8.H.1 and outage report COS 5750-02 W
&an*ct bus l uis.T:nA n A Jac 1c> l)c ktms sin ts 70nc'.sas stay ngg APPROVED (final) 14/04864 14AY 0 5 t??0 Q.C.O.S.R.
t
Shitt ingineer_ g 'y M
N ch lo90 vy.
- e !MtRGtNC)-
fU.We 5/> !M H3NIHL) 1(S1 Start of Run I M g 'ilife/ Dated '_/y' y ff, fnd of Run lin.e ffLf 1/ 7I Time, Date 1.
System air flow.,f// f _ cfm.
(2000 1 101)
(Red scale of IR-1/2-5741-307) 2.
Inlet terrperature (il 1/2 5741-305B) _fj__ ' f,
3.
Heater outlet temperature (T1 1/2-5741-3048)
Q__ ' f.
4.
Heater o temperature (heater outlet temp. - inlet temp.) __, M _
'f.*
'Hutt be 215'T 5.
Return air teroperature to AHV from spaces (1) 1/2-5741-317) J i[.._'f.
6.
Compressor suction pressure (P! 1/2-5741-338) _d8 psig.
7.
Comptessor discharge pressure (P) 1/2-5741-335), j,'M _ psig.
8.
Ccapressor oli pressure (P1 1/2-5741-336) __g/i,,,,psig.
9.
AHU inlet terrperature to (Coling coils (11 1/2-$741-313) j{,,,*F.
10.
AHU outlet ternperature frca ccoling cotls (il 1/2-5741-315),f6
'f.
11.
AHU filter DP (DPISH 1/2-5741-314),_(G(in,ofwater.
12.
Pressure drop across the combined filters (DPISH 1/2-5741-311),,_gf _ i n, of wa t e r "
System air flow 112 5_ cfm (2000 1101)
'Hust be < 6 inches of water at 2000 cfm (g 10%) flow rate.
13.
Pre HEPA filter DP (DPISH 1/2-5741-309),/6 in, of water.
14.
Post HEPA filter DP (DPISH 1/2-5741-310),_/ /
In. of water.
15.
Prefilter DP (DPISH 1/2-5741-308) fd_,in,ofwater, 16.
Service water flow (inline Brcoks flow indicator)
(fl 1/2-5741-342),_,/ff,__GPH.
17.
Control Room DP (DPI 1/2-5740-36) /().'I in. of water."*
- 'Sho@ d bi 2 1/8 in, of water.
~
18.
Run time _/ n hours.
Verification of Standby status of HVAC system following renthly test:
APPROVED 14/0486q KAY05Th0 0.C.O.SRa
-- -- b
(
=-
Local Suitrhos Control Rcom Switchef (panel 1/? 9400-10$)
(unt Rm AfU Close IV loitc Gas Sample I'oint Open A
$ W _}-
1 ire hot Valve (CR A HVAC System on, and gol isolated f rom outside air)
( Af ter closU_ Control Rcom Isolation Neut
,, ly Norm
]h43 Cont Rm Air Handling Unit Reset Air Handling Unit B Auto
,3 V -8 n Cont Rm AC Ret Neut se)
( Af ter cl_o.} u l
fan Cont Rm AC Comp Neut
./
Air Iltt Unit Dooster Auto
,Len-Comp B (After stop) fan A Cont Rm Air Neut W
Air fitr Unit Scoster Auto
_(,u r
Handling Unit B (After stop) fan B Cont Rm AFU Neut
,_jV Air filter Unit Ilre Close
< e.-
Booster fans Protection Valve N
A/C Unit B Cooling Normal
'#"'~
Cont Rm hVAC Notmal 1 solation Water Supply Selector A/C Unit B Conpressor Auto E[-
TEST PROCEDURE: (OS 5750-2 Notify the Shift Engineer of any discrepancy and refer to Technical Sper.ification 3.8.H.1 and 4.8.H.1 and outage report (OS 5750-0E.
4 APPROVED (final) 14/0486q WAY 0 5 tM Q.C.O.SR.
- ~ -
ett d W Y/
05 b7h0-51
/,,,,,,,, h [. f, v' (Rev1 s1on a t
n i
\\
Opesator %}neer.o.u,
ShiftIni
/ /, y;,,', t ( f. 19 h Ha i <*
- ylk hr.H 1
M CON 1ROL-R004 iHlRGlNCY IIL1RA110N SYS1[M MDN1HLY 1[51 Start of Run lime ]_('/f~7Datef-(jf
[nd of Run ilme i
11ne Time /Date t
1.
System air flow,_d O 2(
_ cfm.
(2000 1 101)
(Red scale of IR-1/2-b741-507) l 2.
Inlet temperature (1! 1/2-5741-3058) 71__'F.
3.
_ Heater outici temperature (il 1/2-5741-304B) _ _[___
F.
l 4.
Heater a temperature (heater outlet temp. - inlet temp.)
//
'f.*
'Must be 215'T
- 5.
Return air temperature te AHU from spaces (11 1/2-5741-317) __sf8_*F.
6.
Compressor suction pressure (P1 1/2-5741-338)
____ psig.
7.
-Compressor discharge pressure (P1 1/2-5741-335) psig.
8.
Co.? pressor oli pressure (P1 1/2-5741-336) _jff_,pstg.
[
9.
AH')_ inlet temperature to coollag coils (11 1/2-5741-313) 7.L' f.
10.
AHU outlet temperature from cooling colls (TI 1/2-5741-315),_ D
_*F.
11.
AHU filter DP (DPISH 1/2-5741-314)
,<7_ in of water.
- 12. -
Pressure drop across the cpmbined filters (DPISH 1/2-5741-311)
- 6. '1 in of water
System air flow Jo>r_ cfm (2000 110%)
"Must be < 6 inches of water at 2000 cfm (1 101) flow rate.
- 13.
Pre HEPA filter DP (DPISH 1/2-5741-309) le]
in, of water.
14.
Post'HEPA filter-DP (DPISH 1/2-5741-310)
/. 1 in. of water.
15.
Pref 11ter DP-(DPISH 1/2-5741-308),__, 9C in, of water.
16.
= Service water flow (inline Brooks flow indicator)
I (F1 1/2-5741 342)
GPi,f.
- l i
17.
Control Room DP (DPI' 1/2-5740-36) +. 35 'in. of water * * *
- Should be 2 1/8 in, of water.
18.
Run time,,
hours.
-Verification of Standby status of HVAC system following monthly test:
APPROVED 14/0486q; gyQ$1990 Q.C.O.S.R.
-1 i
I
.l O L. S' fit (bes..
Conttol Room SwitQej (Pane' 19 _940(El0bj Cent Rm AFU Close __
1cott Cos Sample Point Open A _ _ _
Fire Prot Valve (CR A idAC Systero on, and not isolated from cutside air)
Cont Rm Air Neut Cont'ol Room Isolation Norm
~~
H6ndling Unit (After ifose)
Re$r t Cont Rm AC Ret Neut Al llandling Unit B Auto
~ ~ ~
fan (After Elose) l Cont Rm AC Comp Neut
<tr fitr Unit Booster Auto Comp B (After stop) fan A Cont Rm Air Neut Air fitr Unit Bootter Auto Handling Unit B (After stop) fan B Cont Rm AfU Neut Air filter Unit fire Close Dcoster Ians Protection Valve Cont Rm HVAC Narmal _ _, _ A/C !)ntt B Cooling Normal _._ _
lsolation Water Supply Selector A/C Unit B Cortpressor Auto 1LST PROCLDURE: COS 5750-2 Notify the Shift Engineer of ary discrepancy and refer to lechnical Specification 3.8.H.1 and 4.8.4.1 and outage report (OS 5750-02.
APPROVED (final)
WAY 0 5 r60 14/04864 O.C.O.S.R.
)
t
- Shift Engineer fhf" Date of InttIation _
1 <f-J/tagi, COS 5750 02 Revision 2 CONTROL RCOM EMERGENCY fillRAil0N March 1987 SYSTEH INOPERABLE OUTAGE REPORT The control room emergency filtration system, includtr3 at least one booster fan shall be operatle at all times when secondary containment integrity is required, except as specified below:
a.
Af ter the control rcom emergency filtratic ystem 15 made or found to be inoperable for any reason, reaL or oper. tion and fuel handling are permissible only durtn; the succ?eding 14 days.
Within 36 hours4.166667e-4 days <br />0.01 hours <br />5.952381e-5 weeks <br />1.3698e-5 months <br /> following the 14 days, the reactor j
shall be placed in a condttion for which the control room emergency filtration system is not required when secondary containment is not required.
b.
The above does not apply during performance or post-maintenance testing, or during removal of the charcoal test canister.
(TS)
In the event that the systen becomes incperable for nore than 14 days during reactor operation, toltlate an orderly shutdown and be in the cold shutdown condition within 36 hours4.166667e-4 days <br />0.01 hours <br />5.952381e-5 weeks <br />1.3698e-5 months <br />.
(15)
.1 ENS Notification,f/O (_
I ilme Note:
A 4-hour notificAtton is required whenever any single train system is inoperable (0-4-26-86 38).
O 44 h
f I
57E. INIY7 5'.~~IfifT7 5?E, 1N117 f.[ 7i'NTr/ f.Ti-1il5~1.~!kTi75pE:"1Ri17 944/
TE f4-9/ DATE 2109] DATE
'74'1/ DATE Qf'll DATE.1kJ)l0 ATE 'lMI DATE DA
.I
/b N'?
(h 00
[hlii7 i:C~THif7 S.E. [Nii7 55C~Islil [CTNif7 5'f~.~lNif7 57E E
~isli7 5~E.
<7:/19/ 0 ATE 9-/M/DATE / /fid/0 ATE ZLvfff DATE $ 44f DATE /ffdj DATE cjivil DATE p
System tested and returned to service.
Time 0 9.3 5 Date@/Fk Shift Engineer _ //hst.7%
v L-Reviewed by:
~
Date
/
OperattnfEngineer Reviewed by:
/
Tech Staff Supervisor Date APPROVED (ftnai)
MAR 191987 14/0488q O. C. O. S. R.
h,a i e,,.__
h Q05 5759 5; Operator, 0 fgj Revision 4 Shif t logineetM/egf,,1;,m liai ch IWO y
CON 1ROL RMI liiLRGlNCY
,f f!L1RA110N SYS1[M MDN1HL) ll S1 o'{'p
'f ec cf, q,4f 3.p n ",.
Start of Run ilme o m
'tj d'u Ind of Run lime
~
lime /Date lime /Date 1.
System air flow _p.o n
,__ cfm.
(2000 1 10 r.)
(Red scale of fR-1/2-5/41-307) 2.
Inlet ternperature (11 1/2-5741-3050)..._7 [ _ _
'f.
3.
lleater outlet tertverature (il 1/?-5741-304B), J (,_ _ 'l l
l'l'l 4.
lleater 4 temperature (heater outlet temp. - loiet temp.) ___
- f.*
'Hust be 215'i 5.
Return air temperatute to AHU from spaces (11 1/2-5741-311) g,_ *f.
6.
Compressor suction pressure (P1 1/2-5741-338) _,fgQ _ psig.
7.
Compressor discharge pressure (P! 1/2-5741-335),2;>;L._ psig.
8.
Compressor oil pressure (P1 1/2-5741-336) 10,2__ psig.
9.
AliU Inlet temperature to cc.oling coils (11 1/2-5741-313) jf,__*F.
10.
Altu outlet temperature from cooling coils (11 1/2-5741-315),J i. T 'f.
11.
Altu filter DP (DP! Sit 1/2-5731-314) _,g_ in of water.
12.
Pressure drop across the ombined filters (DPl5H 1/2-5741-311)
(p in, of water "
System a1r fIow jS2f__ cf Q000 110%)
"Most be < 6 inches of water at 2000 cfm (1 107.) flow rate.
13.
Pre llEPA filter DP (DPIsli 1/2-5741-309) _, S i in. of water.
14.
Post ilEPA filter DP (DP]SH 1/2-5741-310) _]_ ( in, of water.
15.
Profilter DP (DPISH 1/2-5741-308) eb in. of water.
16.
Service water flow (inline Brooks flow indicator)
/
(fl 1/2-5741-342)
GPH.
/', /
17.
Control Room DP (DPI 1/2-5740-36) in, of wa ter.
{
'*Should be 21/8 in, of water.
7 18.
Run time
- hours, j)
Verification of Standby status of HVAC system following renthly test:
APPROVED 14/0486q l(AY 0 51970 Q.C.O.S.R.
035 5750-51 Revltion 4 local Smitches Control Room Switches LPaheilisilidO6-]dL)
Cont Rm AFU Close tj_
loxic Gas Sample Point OpenA_j/_
fire Prot Valve (CR A HVAC System on, and not isolated from outside ali) t close/,\\_ Control Room Isolatton Cont Rm Air Neut florm f1_
llandling Unit (After
)
Reset Cont Rm AC Ret Neut U
Air Handling Unit B Auto
~ ~ ~ ~
l M
fan (After'cToie)
A "l Cont Rm AC Comp Neut t' A Air fitr Unit Dooster Auto
/
I Comp B (After stop)
Fan A Cont Rm Air Neut
_j Air fitr Unit Dooster Auto flandling Unit B (After stop)
Fan B Cont Rm AfD flau t
,_]d Air filter Unit fire Cicse A
Booster fans Protection Valve Cont Rm HVAC Normal FA A/C Unit B Cooling Nortral AM lsointion liater Supply Selector A/C Unit B Compcessor Auto
_f, TEST PROCEDURE: 005 5750-2 Notify the Shift Engineer of any discrepancy and refer to lechnir.al Specification 3.8.H.1 and 4.8.H,1. and outage report 005 5750-02.
l l
l APPROVED i
(final) 14/0486q IMY 0 5 t??0 Q.C.O.S.R.
Revi$ ton c
.Qp a tIr~,
QC)~'~~
Hai(h 1990 Sitiit(ngince#G).*[fc s s,,.,,
p COhlkOL RD71 (HlRGlhC)
IltlRA110N 51~51(M H3NIHL) 1!$1 tnd of Run ilme 0309. 9/If@(
Start of Ron lime Al'%
'h / 7. il lime Date lity '/Da t e
.N_O T R
.tkeorehml-la of
, r<ak Ver'. 4 y : n3 a AT ktb y-O 9Co o c h l G ' f*
a c ro ss
.} Le uswes
%4 4Le %ke J,1f L.c c p a L[e over i k.c e P. c.<
flow re.nje.
n (n
_7,0 0 9._ c f m.
( 19 ~76 - go 2.c; CFM Y.$
(Red scale of IR-l/2-5741-307) p.
g
[
1.
System air flow nA c44J ;.
6 TT t/s 5 wi -3c i.1& DSS s
i3 c
d.
T<,-gera.hr.3dk
- F.
c i/9 - PMI-7c4 ;/dri" PrG
$ $,oo 3.
m /4 cMg from TT
[y a h pero.k r e J C L __
F W /G.y/*
- g ~,IY Heater A temperature (heater outlet temp. - inlet temp.)
9 _, 'f.
P.sh'/.n(/
2 M
'M st be 215*f 4.
j 1/2-5741-317) j d._'f.
Return air temperature to AHU from spaces (?)
5.
(PI 1/2-5741-338),_ ( b psig.
6.
Compressor suction pressure 7.
Compressor discharge pressure (PI 1/2-5741-335) M i psig.
B.
Compressor oil pressure (P1 1/2-5741-336),_f psig.
AHij inlet temperature to cooling coils (11 1/2-5741-313) d, [,' f.
9.
AHU outlet temperature from ccoling coils (11 1/2-5741-315) 22.[' f.
10.
_ in, of water.
11.
AHU filter DP (OPISH 1/2-5741-314)
P: essure drop across the combined filters 12.
System air flow &d. 5. 2_. in or ater (DPISH 1/2-5741-311) cfm (t UC-2o as c en)
- Hust be < 6 inches of water at 4 (Iw rate of Un 6 - po 2 5 (F/1.
13.
Pre HLPA filter OP (OP15H 1/2-5741-309) _fiO_,_in.ofwater.
14.
Post HEPA filter DP (OPISH 1/2-5741-310) [ 6 in. of water.
15.
Prefilter DP (DPISH 1/2-5741-308) _,j [ in. of water.
J l
l (,
Stivic( water slow ( t r l i t.t fa o:I s f le. todit a tor )
(11 1/?-5741-342) 2/g.Q_00H.
l~7.
Control Rcom DP (DPl 1/2-5)40-36),, i.,, i n, of w a t t i. ' ' '
Should be 1 1/8 in, of water.
l9.
Run time f/_[_ hours.
Verification of Standby status of HVAC syst(m following renthly test; local Swit(bes (Paidi~1/?-940C iUS)
~
Control Rtom Switches
'I/I '
Open A 2[~~~~
loilt Ga s San ple f ot ot(CR A HVAC System on, and Cont Rm AFU Close i/
fire Trot Valve from outside alt) d_7 M'
Cont Rm Air Neut Control Rtom Isolation flor m Handling Unit (After cl
)
Reset 3I'Al' Cont Rm AC Ret tieut
'P7 Air Handling Onit B Auto l
(AfterclgM) 7 fan
'7' Auto Cont Rm AC Comp fle ut
.. 3f_ Air f i t r Urit t Stos t e r Comp D (After stch) f an A Cont Rm Air Neut
_ '. _ Air iltr Unit Btoster Auto
))
Handling Unit B (After it fan B Air Filter Unit fire Close l
Cont Rm AFU Neut
~
~~
Protection Valve Norea'/fff/.-
Bcoster fans Cont Rm HVAC Normal _
A/C Unit B Ccoling Hater Supply Selector Isolation llll' t
Auto A/C Unit B Compressor T LST PROCEDURE: Q05 5750-2 Notify the Shift Engineer of any discrepancy and refer to lethnical Specification 3.8.H.1 and 4.B.H.1. and outage re;or t (05 5750-02, l06]gI100 eou*4 i,.
Ic:t b'6 ut 3bn-e eg c%0 g-
APPROVED QAD 1270-513 Revi5' "7 DEC 311990 Decembei 1990 M' " #
- N H SI Q.C.O.S.R.
Modif icat ion No.thl o 'll[ iku L Request 5 G' IGM'i g,7,g,g Modification Test Revision No. _ A _[
1.
If this test is for an incomplete modification, then describe below the work that will be operation authorized.
N/A 2.
Perform independent icview of all comp eted work pacLages.
CognitantlngneerJW
. l !
i
'V b l Date Perform safety review per QAP 1100-12 Conduct of 10CIR50.59 Safety Evaluation; and Screening.
bl.tW llk0 il Tognizant gineer Date 3.
Modification Test Committee Appfc. val
)
p h
EI Yb &
b I J/ h91 Mechanical Date Electrical,/ Date l2l _ _ _ _ Structural Date l2l Date (Other)
'sh'..?Y0Yl 15S Date f\\\\
A(
.t
.g 4.
On-Site Review and App al
(
s a B41kJa N '" $8?ll nut _7f)k.
H-1/.- %' Rm h!/1/
ISS Date OE g Date Qg Date
~ jSM Date p
5.
Review of Safety-Related, code and Regulator >-Related Modifications jt, )
A>
f
}t. gf,'
Qua ty Control Date
/QuatityAssurance date 6.
Design Change Calculations Complete (N t required prior tg releast for Q
test)
A-ft 'l f
& (f 9'jf,g(,,_[ g 97757y(
l% % 0 "49 $4)U
$1yENCProjectsYth bO 9/1GBt Date Cognizant Engineer Date 7.
T e s t Di s c r epa nc i e s ____/d o rs.('
8.
Test Completed b+
^%
- l /.
7[_
Cognizant Engineer Date 15/0513a (final)
+
PO4-0-91-108 B-Train Control Room Al'U Modification Tent Rev i s ion Ar* l n1 tl 9,g p._.gj A.
PURPOSE:
The purpose of this tent in to verify that the replacement heating elements for the B-train of the Control Room Air Filtration Unit (AFU) function properly.
The purpose of the heater in to reduce the relative humidity of the air to 701, or lens, to ensure the greatest officiency from the charcoal adsorbor.
D.
REFERENCES 1.
Modification Appr oval Letter dated September 15, 1991.
2.
OTS 100-9, " Control Hoom IIVAC Air Filtration Unik Inplace Charcoal Adsorber Leak Rate Test."
3.
QTS 160-7,
" Control Room IIVAC Air Filtration Unit In-Place DOP Leak Test of the HEPA Filtern."
C.
PREREQUISITES:
1.
110tify the Shif t Engineer and SCRE prior to starting the test.
MTH
/._2[!412!
2.
Verif y that the Halide detection equipment in calibrated.
' k __ Calibration Date fjT N
/
/ Ef'il 1
_-~. - _ _. _
i i
PO4-0-91-108 i
B-Train Control Room APU Modification Test Rev i s ion,0-I Ni tt
'l 10 91 3.
QA certified digital multimeters to measure mil 11 amperes (mA) off of temperature transmitters 1/2-5741-304 and 305 must be connected before beginning test.
fvr H _f 6./9i QA 11 umber G ]JJ7(( Calibration Date,[ 'll QA Number J X)_)lI k Calibration Date,,11 C}6 D.
PRECAUTIONS:
1.
Avoid unnecensary inhalation or exposure to DOP or Freon used for the inplace leak tests.
E.
LIMITATIONS AND ACTIO!4St 1.
This test can be stopped at any point at the discretion of the Shift Engineer or Test Director.
F.
PROCEDUREt 1.
Verify that all out of services on the D-Train of Control Room Air Filtration Unit have been cleared or temporarily.
lifted.
NN l_
2.
Have the Operating Department start the "B" Train of CR HVAC, including the Air Filtration Unit (AFU), via the appropriate. procedures, wrtf 9he/w
'2
~
~.
l'04-0-91-108 B-Train Control Room Al'U Modification Ter.t Revision #
l M T H 4-1 1
- 1' NOTE When adjusting flow ratos, allow sufficient settling time to ensure accurate flow readings.
3.
Adjust system air flow via the AFU inlet damper XCV 1/2-1 S741-332 and verify the flow of the B-train la bettleen
)
1800 and 1850 cfm, by reading the red stole on 1'R 1/2-5741-307.
bTo
- .2l&I Il 4.
Record the appropriate data on attached data cheet A.
IU O
/
.l 5.
Verify that the differential temportcure across the heater at 1800 to 1850 cfm in grentGr than or equal to 15 degrees Fahrenheit.
MTf}
/
jI 6.
Adjust cysten air flow via the AFU inlet damper XCV 1/2-5741-332 and verify the flow of the D-train is between 1850 and 1900 cim, by reading the red scale en l'R 1/2-5741-307.
}&TY
/ _.
IN 7.
Record the appropriate data on attached d.ita sheet A.
ATN' /
/
3
PO4-0-91-108 D-Train Control Room AIU Modit icat ion Test Revision Ar i m y et.st. %
8.
Adjust system air i3cs via the AFU inlet dartper XCV 1/2-S741-332 and verify the f low of the D-train in between 1900 and 19b0 cfn, by reading the red reale on IR 1/2-5741-307.
Y.
l.
{k.
9.
Record the appropriate data on attached dhta cheel A.
Js0L/13 AMU 10.
Adjunt r.yntem air f low via the Al U inlet da:tper XCV 1/2-5741-332 and verify the flow of the D-train in between 1950 and 2000 cfm, by rending the red r>cale on FR 1/2-5741-207.
Ib hIN
/
11.
Record the appropriate data on attached data cheet A.
$?N l0 l I
12.
Adjust cystem air flow via the AFU inlet damper XCV 1/2-5741-332 and verify the ficw of the D-train la between 2000 and 2050 cim, by reading the red scale on FR 1/2-5743-307.
@lk
/_
l 13.
Record the appropriate data on attached data sheet A.
f%b
/_f I&hl 4
E 4
l'04-0-91-108 Il-Tlain Control lloom Al'U Modification Tent liev i s i on,W~\\
g ; 6
- 1 - i l' 'V 14.
Adjust cyctem air flow via t he Al U inlet damper XCV 1/2-S741-332 and verify the flow of the D-train in between 2000 and 2100 cfn, by reading the red neale on l'R 1/2-5741-307.
l.
b
-l 15.
Itecord t he appropriate data on attached data rheet A.
.WI l.'l !.h $
'~
16.
Adjust nyst em r f low vin t he Al U inlet dar.per XCV 3/2-S741-332 and t f ify the flow of the D-train in between 2100 and 2150 Im, by reading the red ncale on l'R 1/2-5741-307.
.-l.-
k.N 37.
Record the appropriate data on attached data shoot A.
}$_Tlb / 'l Yl0 'll 18.
Adjust cystem air ilow via the AFU inlet damper XCV 1/2-5741-332 and verify the flow of the D-train is between 2150 and 2200 cfm, by reading the red scale on FR 1/2-5741-307.
b_l..__._, / _
h_ ___!
19.
Record the appropriate data on attached data cheet A.
tmi
/1!Id1I s
PO4-0-91-108 B-Train Control Room AFU Modification Test Revision Y~
l gT 14 *1-tD W 20.
Adjust system air flow via the AFU inlet damper XCV 1/2-5741-332 and verify the flow of the B-train is approximately 2000 cfm, by reading-the red scale on FR 1/2-5741-307.
[
.h T l4
/ 1 //d 9 21.
Test the Pre-IIEPA filter using QTS 160-7, " Control Room llVAC Air Filtration Unit In-Place Leak Test of the llEPA Filters."
d[ kb
'Ilkt'Ib \\.
/
22.
Verify that the Pre-llEPA filter has passed the In-Place Leak Test per QTS 160-7.
_,I
/_
O 23.
Test the Post-ilEPA I11ter using QTS 160-7, " Control Room HVAC Air Filtration Unit In-Placo Leak Test of the llEPA Filters."
/
l 24.
Verify that the Post-ilEPA filter has pasced the In-Place Leak Test per QTS 160-7.
b /jf f
1' 25.
Test the Charcoal Adsorber using QTS 160-9, " Control Room llVAC Air Filtration Unit In-Place Charcoal Adsorber Leak Rate Test."
- f Y /
lY( l 6
f i
PO4-0-91-108 Il-Train Control Room AFU Modification Test i
Revision f f i
m ti
't iPMI l
26.
Verify that the Charcoal Adsorber has pacued the In-Placo Leak Test per QTS 160-9.
Y.-ff.l Yl 4
,y>,
2 7.. Data Sheets OTS 160-M and QTS 100,-M should bn attached W
'-t, j to the Modification test.
t./ [' b 28.
Adjust system air flow via the ArU inlet dampor XCV 1/2-
-5741-332 and verity the flow of the Il-train la approximately 1800 cfm, by reading the red scalo on TR i
1/2-5741-307.
.PTIL.i3]Ibl 29.
Manually isolate the Control Room Ventilation Systems por w tJ-5750-{g,p" Manual Isolation of the Control Room 00S Ventilation" Systems."
'!ll?ht MB
/
30.
Verify the Control Room dif ferential pressure is at least 1/8" water i olumn positive pressure, on PI 1/2-574 0-36 on the 912-5 panol.
h*TH j 'lfl5
- YLo Q $)
31.
Roset afstem air flow to 1960-2050.CFM.
'If/ 9)$
q
-MTH
/
1 I
7
,,__.,... __.; -... ~.- -,._,
,_...,.___.._m._,...,_,,._.,.._,..
...-_..,_,,,..,_.,,--,,,,.,.,._,,.,....c
c 4
}>04 9 3 - 10 8 D-11 ain Cont 101 I40 N 7'ip y,odification TUGL jzevision,At I g g4 6 II "'D
' c}< }
that t ile teu-in 32.
1;otif y the Shilt F n 91 h P C. I.
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i f $'
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DATA SHEET A - MODIFICATION TEST PO4-0-91-108 I
i I
Outlet RTD t
dT i
dT t
Inlet RTD Flow j
Inlet Terp !
Outlet Terp (cfn}
305B I
3043 nA/ tern nA/terp l
IRTD}
304B-305B l'R16 77 F
9 G. S
- F v.56
- 97. )v r 14. 99 f:-;
19.6f-lD 6
'l } ' F 9GS'F ""M M IG 3c'F l? C F j915 i 7P'F-ic o ' F M ' ~ "
sv.crF IC.16 'F 12 O'T
_. 83$.
~1?
- F 9L o F
,t.cre M is.u f I 'R o
- F (63 4'r I E'.o "F 2D26 77#f i5. o 'F F
1 t 2 -m q',v 9 5.o* F
,,.n:. p ;
y2. 29 F l's.29 'F t? o *F
'T1 ' F M6 2126 77 F 94.GY
,7.37'r 14.'56 *F l'I.o'F c.m e-213 5 n*F Ti.o *F
,,.csce
" '~
g,_,2 r IH.22"F l7. c 'F 2 cob JC "F
- 93. 5"F l~ M M 19 5?"F l G 5'F b
4 I
4 1-i
,f
,i i
?
s
\\
\\
_ _ _ _ - -y 9
f 4'
r b
D I
bo 1
'O n i
CDv O
I M
e
---+,.-*-e
-...,%_4
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Bh"-
4--h-p-q,-W 1
kW"h@+
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F e4-* 4 < i w+w sn. - w - q ew, +e 4 s
-ee a
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EXPlRES QiS 160 56 7099 OCT 181991 oA1A Swt(7 r0R CONTROL Rcos yevisiona NVAc AIR filiRA110N UN11 FR(ON ilSi
. January 1991 1 DATE I///
/
TEST O!R[CTOR N('/b / /i(Y'lN_.
OP[RAllNG [NGINCER [/m e,c a p TRAIN FLOW d[Od OlB\\
CHARCOAL ADSORBER dp _ b l '
UPSTREAM RANGE _
N D)
DCHNSTREAM RANGC
{
O_
DETECTOR SERIAL #
L 7T5 DETECTOR $[ RIAL #
) 'S 3 5 tw(.c.x pr o v ab 0 l \\ obch be w ip(;
~~
~
I eco 0:e
___ con t D k()_
0:15 0 0 0 _..
i
.,5.
I 0:30
__,_,0,,, L t
o O N e l:
0:45 0 ['1_(
4 1:00
_. _ [ i' l
{b4 0_ 0 }}/
gh C
c i:is
)
240 1.10 0 I b:
y, i I id ".. 9
<a 3, I 1:45 D,8 2:M bh/
D.1/
2:is D 78
~
9 /, L 2:30
// 6 l
91,n 2: ' t.u \\ s) f"$
Date N ~ hi' f'I 'I I
~
kJ Nudear Consulting Services,Inc.
Pro 3ect. nr ou _
{
=
]
ACCEPTA);CE TOR Ill-P! ACE TESTI)1G g.
Client / Plant Go t t H i? M W - 6 h t f. o u QOAB CmOfl Unit: t//
2:ame t. 6esignation T,
tN bc T R hlN A t P. F i t T P r\\.1 ' U^J Location _U U ff 'f fLegjh tC ElN Acceptance Test Yes _
llo Y,
Teuting Standard AllSI/ASME !!$10 _ _ 'l E Other:
AllSI 11510 Tent Section(s): Sec.
5__ _ _
Sec.
6__._
Sec.
7 _. _
Sec.
B Sec.
9 Sec 10 J _
Sec. 11 Sec. 12 Sec. 14 Acceptance tents previcunly run by !!UC0!! ___]4/fL. _or other vendor
, to the satinfaction of client:
ANSI NS10 Sec. 6 fJ/A Sec. 7 N/A Sec. 8 M/A Sec. 9 M/A Waivo any part Sec. 10. 3 ANSI 11S10 (yec/no) _
Pre r eg B. 3.1,_l[/_ ( a l r f low cap. )
Prereg B.3.2
/
airflow dist.)
Prerpq Sec.9[' N ((air /aerocol nixing)
[
Ac.ceptance Criteria:,.
b,E "/o T E eJ E {_[),MI DQ ___
Commentn:,,__[QL
'l f g h IW) 0 0 C L g._Jf v F Ol't t t' b R 'r C I~
1 P 6 d(ygj l 1. -__
THf obh3 Tf3T P 6 QV ' # t" 0 bk
.LblUS'Dhh-}$UADA. LLC T :YO IN
$N Cnly one (1) FT-13 needs to be completed for each tent seriec perforned on each unit..
bithyWithout Accepted V
Comment Accepted by Not Accepted _ _
NUCON (initial) Client L
t h-l l
n -
FT-75 (Rov 017/M)
Nuclear Consulting Services,Inc.
Date
& v m 'l r b
Project _; i._s C
O HALIDE TEST RAW DATA SHEET Ne FOR PULSE MODE I!UECTION liC -
CLIE14T/PUJ4T:
CO O h - _
(V l I b b
\\ D t i i UNIT / LOCATION:
V Mal.
i 1vi11 i Aj t' h > l h 6-SYSTEH TYPE OF TEST: SINGLE B1J!K _
,_ U/S B1 dix _n D/S DANK INSTRUMENTS:
U/S DET. L - n i; D/S DET..1 - $ s L GEN. (,my Ni PRESS. INST.
4;( en rn
- Adsorber:
6P "s,73 " H O Across Adsorber Dank 2
ManuTGture r:
Aff Model llumber: __;g.nnung ta
,)
f of Adsorbers in Banks,3_j
(,
No. Banks Each Device Rated:
114 CFM Unit, Specified. f eW6M i
?eC CFM N/A for System Tout CHALLENGE GAS _
1-{j_,
ITAT.EAM pONCEllTEAILO){ (pd)
TJET MFNSJBIhM CORGElJ.TRhTIMI (M)
O
_ b \\
ppm (1)
_ j [_
ppb
^
J Q.U (2)
__{f'
- _LR.'.1 (3) c' fi (4 )
_k __ __
=
k,f 15.
(5)
P Ave. (Cd) _ _ ppb:[l CALCUIATION :
Ave. (Cu) M [ ppm 4 Mechanical Penetratiod = 100 X d O'b
=
Cu Cd
% Mechanical Efficiency
= 100 -
(-
X 10 0) = 2 'l.'l.'} i,%
Cu No*;es/ Comments:
"Teshrh, k\\;..h.
Tersonn'el & Signaturo(s): Nuclear ConsultUig~Servidis7 TU'.~ -
l
FT-29 (Rev 4 11/80)
Nudear Consulting Servkes. Inc.
o p tu Duc n
M Project
_ QJ 6 R4 _._,
b
}{ALIDE TEST RAW DATA SilEET CLIENT / PLANT:
._(CM h\\
I
._,W L1 (k C i Ii t-i UNIT / LOCATION: __ O o i l
! s' O Ii04 i M{\\
TYPE OF TEST: SINGLE BANK
__ U/S BANK D/S BANK,1 _ SYSTEM _ _ _
v INSTRU11ENTS :
U/S DET. L :]} L D/S DET. (_jjO_ GEN.,11( - F PRESS. INST.
- Adsorbert
/M l.j l" H O Acrons Adoorber Bank 2
Manufacturer: ___ y NKf,'y d _ ___
ft/d Model Number:
No. Filters per Bank:
,,i tf1_
No. Banks:
9 f_
Each Devico:
30, CFM Unito S[ccific5:
2 5 ?CYM t
' Vs' CYM
- N/A for System Test CHALLENGE GAS, _ b]}_
.CORCENIB1 TICU CONCENTRATIOli t
IIME VPftTB.GM (CJJ)
DOWHS.TREAM (Cd)
TIME UPSTREAM (Cy)
POMMSTREAM (Cd)
- 0. c 0 Dpo et 0 O'
7
_,),/u g_I_ ppm l_
O O c> T ppb 2:45 J.J. O__ ppm l l3.
ppb T
0:.J
..___ 1 L 7 _ _ __,, l _
oou :
3:00 t M _ f O t ft,, _ l. _, _ L L J 0:45
- p. [f h _ g _ lI C d _}I rt a 3:15 2r...) _____ __ l __ _)% / _. _,_,
1:00 t
t 3:3J
" -_Jf2 2 - _. I _ -.
O - L_
1:15
_,LL(, _
_ l, _. t_Jd.,
3:45 g 3, L _ _ l ___.M S_ _ _.__
1:30 d/g(n
_l _, B 0 4:OC 2
._ l __3 J q _ ___
__ p'/ t 'L. __1 3 '7 E 1: 45
_,O,_j
__l_
n11_
4:15
.1 2:00
_,,j 2 g l
( ((_
4:30 l __ _' [L(t
_g 2:15
_f2,,. 4
_ _. _,1 v7y _ __
4tAS
, _M.
l __ xf 2:30
_. 1 L f
__l_,._ _ 1 [ I 5:00
,___LJ___ _ l
,,/
CALCUIATION:
Ave. (Cu),)d.bppm Ave. (Cd)
_._.k__ ppb
% Mechanical Penetration = 100 X C4 0 C/
=
Cu 100 - (Cd X 100) = M[ t
% Mechanical Efficiency
=
Cu Not 09/Cemnent S :, l l1 _.p, h i !,1 _ p.h 1/SQQ41.1.OQ2jfj - G d '
MC
- l.'if*E.l ASR1;.'-.I'E.t.L.. h.11h2LD )hl_k.2 U P '
I b L W L _ lK G k. s2 :TUAff 1 -
%. t - r_
et nu-x tt w
,6 s c
/t %
.. -.~. - -. - - - - - -.- _.
h A t kA.
Test F,ersennel f, Signnure(s): Nuclear Consulting Services, Inc.
I
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Nuclear Consulting Services,Inc.
v y
1.
C TELEFAX FT so O
TELEPHONE:
1 614 840 5710 inex: 637441b NUCN WGN P.O. ItOX 29151 7000 HUNTLEY ROAD FAX:
1 614 431 0058 COLUMBUS, OH 43229 USA Total Pages including This Sheet.2._
Tu ffe ber.d9 Cod O k_
RCO wO b es $kI o.->
From:
To:
3 ~ l9 N 'w:
Ts4):r2 o3 3
Attn:
I Fax No.:.I-30 % 6'54-214i x 3.XG Dato:
/7Sep/79/__
i Reference No.: ?0* 34N39 Project No.: M C E C'C4 f.
4 5v O /0 naf
)*/r-ft,' g, 16 c.
(2e k. c, a
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/
if you want sis to resend any page, please catt or fax the above numbers as soon as possible. Otherwise, we will assume a satisf actory transmittal.
..x FL u w '"r:n*
1 Fr-oS-(Rev.3-5/91)
N INuclear Consulting Services,Inc.
'e'ee o"e ($)*45-57'o OUTSIDC 01460 1.B30 992 519?
PO box 291b1 1000 HUNTLLY ftOAD TELE X' 6974415
- COLUMBUS, OMio 43m U S.A TRANSMITTAL NO. t l
fax (t14) 4310858 NUCON PROJECT NO.ti
_ /t& (o4 t
[- ]
CLIENT P.O.*
- M l d 3 "7 I7-Sqd C)l SCHEDULED TRIP DATE:
-Z 1 L L D-I E si I I B A E !! M 1 I T A L
- t. p i ; O FJ C4 CLIENT: J "O td MA NsJ.
?
QUAb UT\\ E &
LOCATION:
-TEST EQUIPMENT SERIAL NUMBER DATE GF CALIBRATION LOG NO.
(DD/MM/YY)
- hk_,
DOP-GENERATOR
'DOP GENEPJ. TOR N/k N/h '-
~[
DOP DETECTOR
/ (.($ d ( JA N _
HALIDE' GENERATOR
/
-N bh'd b bk I7, o7 9/
[7 O HALIDE DETECTOR-HALIDE DETECTOR
-[73 HD $h (. [//A
/,2 [o 9f ff
_ bMk LAIR FLOW / VELOCITY b
~
[,_
~ ~
fJ/A -
DOCUMENTS-PERSONNEL QUALIFICATIONS:
-'ADIATION EXPOSURE REPORT DATE:
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s 015 160-56 Revi5 ion !
DATA SHEE1 60R DOP LEAL 1EST March 1988 I
Of CON 1ROL ROOM HVAC AIR fILIRAT10N UNil DATE _
b flLIER _fb/ '
/
TEST DIRECTOR A JF C'/ _/_Jf(^[Y[
OPERATING ENGINEER
[j Nga.re AFU FLOW _2000 0 /ll HEPA BANK dp I 9 t
1.
Upstream Concentration (Cu) a.
Range
/.b (full Scale) b.
Meter Reading.
b (1 full Scale)
Cu - 1.a [rO_ x 1.b Ed _
k.
2.
Downstream Concentration (Cd) a.
Range 0,o/
(Fuit scale) b.
Meter Reading 9b
(% Full Scale)
Cd - 2.a C d x 2.b M b = b,3 b EFFICIENCY = 100 - Cd (100) - hh,/3 Cu The results of the in-place DOP tests at 2000 cfm (i 10%) on HEPA filters shall show 1 1% DOP penetration.
To be in compliance with NRC Reg Guide 1.52 and Generic Letter 83-13, the test shall show less than 0.05% penetration per bank of HEPA filters.
TEST PROCEDURE: QTS 160-7 APPROVED JUL 011988 t
< final) 11/0222s Q.C.O.S.R.
, 1,
.,t QTS 16 M 6 Resis wn :
DATA SHEET FOR DOP LEAR 1EST March 1958 Of CON 1ROL ROOM HVAC AIR fillRATION UNIT
!/b DATE FILTER _ [C '//[_h._
TEST DIRECTOR h/d//r/ /cjh/)Lh@
f/5bnet OPERATING ENGINEER
/
AFU FLOW hOjd(7_ /h HEPA BANK dp I4 C 1.
Upstream Concentration (Cu) a.
Range _ b O (full Scale) b.
Meter Reading lb
(% full Scale)
Cu - 1.a 1.0 x 1.b K
16.
2, Ocwnstream Concentration (Cd) a.
Range 00)
(full Scale) b.
MeterReading_,__!'S
_ % full Scale)
(
Cd - 2.a 60L x 2.b E_
Od$
EFFICIENCY-100-Cd(100)-bdh.
i Cu The results of the in-place DOP tests at 2000 cfm (t 10%) on HEPA filters shall show 1 1% DOP pene; ration.
To be in compliance with NRC Reg Guide 1.52 and Generic Letter l-83-13 the test shall show less than 0.05% penetration per bank of HEPA filters.
TEST PROCEDURE: QTS 160-7 l
APPROVED JUL 011988 t
(final) 11/0222s Q.C.O.S.R.
i
._mf 4.
e s
4 QAP 1270-514 Revision 5 N tenber 1990-0*tRASILITY 7t5T Pect f t ca tion flo, fe4-e 9 l-let Work Request 1G90'iT 1.
If th's tt$t is for ai irro plete inodiflC& tion, then desefibe below the work, that will te operattor. authorized, g,7 2.
Perform indeDoncent review of all conp'eted utrk ;ackages.
l
)%AmA $w MllCl9l Cognizant insteeer Date Perform safety review est QAP 1100-12, Corduct of Ic;rR50,59 Safety Ev41 cations an$ Screenity, h)/h = lAtt ffcC+)an v
we Ccgr1 snt Engloeer - bite 4
-TEST OKSCRIPTICu \\J4r' h M QC E T')TC* 2 " Cented (dem 3.
.f 3' W ergence F;f fgtg3 ' Evrism m u lt I U 1 " k s r te ms t at4YF 4llo el
+V
- 8 ~ T%
%. FA is a a4rfl.c ' cur D.
em ne ehke e e nteria n 44.e rencM:W.
On-Site Review ilf r.ot 'an ap: roved peccacura) Approved
$2,r/ w.
- M bate TT55 W
_Date A50 Itate i
-Cate 4
'M W ificatfor Test Comp 1tte 4
/P/'t/
I
. Cognizant Pginser Data I
5.
Test Olscressocles New 6.
Test Completed
[
/ Tl
/GPROVED Ccgrtran; Engineer Date
[
<r'ral)
DEC 3 J g c
_ 15/0511a
-1.
e rar-m e n lt #!N3SIO3 W1713MhGnn03 *S3IIIS OYnS_
97:3t ! tt-Lt-Ot:
NOSIO3 M11134 Atha 33: A91N35
.. =
s
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4 1
APPROVED o
l 05 3 11990 WP 11 W T6 teurouar CaAact to PavANtst Paocteuntatvisten 14 REQUt5f/TIMOeARY PROCfDUR( REQUL57 December 1990 IITLE_ Cn J /af b barmbev
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F: lN f!Ns0M41 C9AR31.YJ4fR-90N PROCEDUhlth*n ey reat a eta 7/mv ArFECTEDr.Gd (79-Af' 5'l T. C. SUPfR5t:fD 7dN CuME REoDEfffD: tbr Ne W Ye N
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RIA50U FOR CHANGEt _ NEW SUSPLEMENT,,g,,,R[PLAC[WENT _
ALTEFNaTIVE F
@P115T14.Te*rraryCharfbutedtothe hetice Sheets. have been pre are pro:tdurst anc will be distr 3
Inspection Report 254/88015 anc 265/880151e appropriate u nut hcifers. (N40 r-OU311ET0R N Nthe.* __08TIAt0VESTfDA[nbf c,
Autrortaed copies held ny:
Original-Tech Staff Supv.
Perta.snt Prof.eiure Change beeceal jegl
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Sip <later 6.
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MK 6.
12.
Ottain ene aperopriate approvals beiov in acccraines vita TAP-11@7.
ante
- e nam hoo."I *se tv awnneta+a aiaratum Fm ms um mit.
E Reytow and Aeprove ;
2fAdL' h$d.
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Office Supervisor' hg -,, iech Staff $cor.
,,,, Technical Supt.
Stat / Supe sor
.25,0perAting Enginear
.6,Attt. Sust. Oseratirg f
g
,_ Nealth Ptysics Supervisor,,,,_, Ass t.- Sust. F.tintenamte b, D # dub g
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,,,,,,,,Cnes Suberv1:or, Master Electrician
$PE01AL A M EW
_ b 7'd/
stacon Snager-
,,,,,,4atter Inst. Mtcharit
_ Master Mechanit
,,, EOP Coord'nator cate Quality Control Supr.
,,,,,,,CIEP Coordina tor
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Teeporary Change that goes not change *Tatent" (tocluses ungnarped renewals).
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540
~
,,,,, E RC
,,.5ecurity Asn:Inlitrat#
,,,,,,,Ma s te r Mech tnic d och. Maint. Foreman Mester Inst. Methentt
_ !cstrument Foresse
,,,,,,,Of fle t Suptrvisor
~ Chem Superrlser DAit APPROVED ~
~'"*Malttr Electrician
~~~ Elect. Maint. Forenen
'"~
""~~ Tech Staff Supr.
Technical Supt.
li.F. SuDv.
~~~CSEP Coordinator QN$!Tl'I(VIEN(14 DAY 3)
_'",,,,EOP Coe*dina tor (For OfAs)
~
h
,,,,,,,A s s t. Sup t. Ope r at i ng Tecn Staff Supv.
~
,,, Asst. Sept. Maintenance '
Station kanager
,,,,,, Rad-Cnem Supervisor i
$r;curtty Adelnistrator (Q58)
CATE ~
,Technicti S Att, t
~ Office Supervisor
-1.f ficaD 2I00 m s m 0SIO3 Hi t3MN0u00 % 31110 OYDS 3* :;t
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Q05 5750-2 teostor 3 COUR0L Roy D'g%ts:y Cctoter 1925 g
f!!IWl0N Sr$?tM W;MriLY f($7
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DJLPO$t the purpose of tr.ls peccecare 11 to ovillet the tretTC Oted to perfr;rm the moitM / Survtll?4SCt tflt of tot titrgency tir filt atioq Lnit.
t-SWSU513 1.
P & ID's.
4 P-1551. Centrol Qca HVAC.
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4E-(640A. E. & C, control toom *B
.n, AC 5 s te m E sp,t pe n t.
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007 5750 9 Control Roon ventitatM $) stet.
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D.
PRECAb?;0M5 C
1.
N0nt.
LI"ITATIONS A'c ACTIcis 1,
At Ivarf once m4fk,.[L An (tQ w ue (fkrAIIhn wl O b4 In*sil add) drah v(r' h
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IT'T T " "ll C E 6 C F"et kor,s f l<4g t fc E
e hars w Mh huf<rr operak. (Ts)
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a re 5 N e~f drap etcro si fle com E:nej f,lt.tyr &ll Q g*
g, TL4 p& G incl 45 cE uktr O ct f}ew enbe af lttS 8C 7 00 6 I 26 C FU, (TS) r-4.
The rif tigfration Concer. ling V11t (ROU) May be ifUt dCun 900m 14Illng 411 riOJ1rSd r94C15;5 af ter Cr.t hour D? ostratt:n. To enture that the RCU coecrettor remains of', turn the RCU ccrtr:1 tW tc5 on 912-5 to puli to loCL. The RCU rray be r.ti.rtac again if
=et M for :omfort. Reco-t acy RCU apornalities to t9: Snift
- Engineer, h'
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1.
Start wp of tFe air flitratios unit 112-5400 101 from lo:al carel 1/2-9400 105:
a.
Verify tre
- S" air handling unit 1 running or star t the 5" air %ardling u:ilt et folic 5
?te 0' sys t e r-la reqJired to te ruv.ing for design flows to et achieved through t'le air flitrattor ustt.
'$* Cent?cl roon HYAC tyttes start-up from the contrei teor (I)
Vstify that the air Nncling unit, refrigeration to*:erting unit, air filtr# tion init, and toxic gas aaalyrer tyttem are in tarvice, (2)
Wrlfy.that irstroent air is supp1ted to the followirg ogstrirent fo* operattor:
i (a)
Control valves tc the refrigeratien tor (entlFg unit:
(1)
Servict vattr supply valve XCV 1/2-5741 3158 and its air su; ply solenold valve A5V 1/P-5741-319B. (OstiIde northast :crner cf B WAC room.)
2 M f (11)
RPR service water supply walve ICV LF m
1/2-5741 319A and its air sopply soleroic valve x$v 1/2-5741-319A. -(Outside nor tasalt correr cf 3 WAC room.)
O
,g.-
e (111) Cordenter too'ing water flow cortrol valve ICV I/2-5741-333, (Outsida northeast cc cornar of 8 Hva; room.)
e,
+
'O (b)
AEU tuscly air car:er *CV 1/2-57al-3J03. AHU g"
return darcar xCY 1/2-5741-330A. 4U cutstce air damper XCV I/2-5741-331. (Camper 5 located on tcp cf B vvA" roon.)
(c)
Ard outside air damotr XCV I/2-57el-332. :C3mper located at AFU Inlet,) VU A booster fa9 d&Tper ACv' 1/2-5741-328. Aru 6 bootter ran cam:ar rcy
,i l
I/2-5741-32). (fan caToert lotatec at fan cl!Chargt.)
f (d)
Toelegalanalyzersfetcal:
tien at pressure relief valve i
32 (FRV.32) Inside t gas ;:rel.
l Cnsterent air feed 15 cepper 'Ine enterf rg top
,cf toute get panel.)
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N3SIOS 411Y34.NCM03:A9.1 3S
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(3)
Verify that local cont <ol Imitt5el PS 1/2-57813165 ("B'
=
41r tanc !' rg uni t). H5 1/?-5741-320') (' 6" A/O Unit com;rel50#1 cn locti control panel 1/2-9400103. are 1.1 the AUTO p;s i tion. Verify that thJ local switch on the compressor Sate ccLeted panel is in Auf0.
(4) vertfy that hanc switen MS 1/2-5141-321 tf0XIC GAS 54t*Lt PO!NT set (CTc0 on lo:a1 co'itrol onnel 1/2-9400-105 15 la potitior. CF h B.
M The rest t'ep can be actoreplishsg cy placing the "A" hVAC A t scitrol teltch to stop (if it is runcing). Th
'8* AWO vill then autostart proviced its local and remote control twitches are ir tre proper posit 101.
In #3:ltlen the "A* tre "S' air '
handling unitt are Intsric; Led to prevent sleditaneest o:eration.
(5)
Start the *a" wtrol for air tancitre unit
[
!/2-9400-100 from parel 912-5.
(6)
Verify tan the cor. trol room ventilation systers is reset.
l e
b-h To reset the centrol rece ventilation isolaticn.
(a) pJsh the reset tutton en the 901-5 (502-i.. Eini' E
c-gna eserate the reset switch on letal certrol O
g [$
pa.9 1 '/2.pr.co.'05 In tre "B" FVAC entswnt *ctm. -
W d
(7)
Start the refrigeratice cendenting unit frem the 912-5 panel.
I*
$ e.
E 5
e en starting eitter the "A" or 'B" E-cooster f an !Pt "AFU DLET ILCW 'CW' start (* CONTROL RP STAN05r PVAC STSitM et!h0R TROUBL(" alarm on the 912 1 Chesi) vill aniLnciate on local panel 1/2-9400-105. itts ala'r theeld cisar imediately af ter 4:krewledg ment.
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N09103 41113tNCnA30:A9 IN3S
s h0.1.E Usc t failure of the instrWTent gir tystem, the bootter fan d!$tharge carpers will require manutt operaticn. Tie 11r filter ' nit s
outliCe air Inlet danger RCY 1/2-5741-332 will fall opec.
b.
Turn on either booster fan ' A" cr to: ster fan "E' on lo:al panel 1/2,9403-105. Ver!fy AW!; outtl e air :amser X0V 1/2-5741-33) goes closed vin 19:leation er 1/2-9400 105 a ul.
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Se inA;c.fd by fle ed 5%fe or, FA //a, SMI - 3 aY' u h tR P,:.TR 4gtY ff S'tttfA FLTR sP rnt.c r Flew Scro. " Re c.rd ik'* f W!b# 86 dAkA Skt'4Y QC 7 f)$c - S l.
g, h% Se syk hs force tw;a 4,e.1 Jud es.e CCC*f'$ik-[)ll8dhj Asar At fkIT ICW do Q07 a
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4.s Ac W.44 B
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C-Concre_ssor Skih a.
Com:ressor suctler pressure, ?! 112-5741-MG.
b.
Ceep* ester discharge Dressure PI 1/2-5741-335.
Compressorcihpressurs.*! 1/2-5741-335.
c.
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A@ inlet teverature to ecolleg estit, fl 1/2-5741-313.
b.
AW ostlet tescortture froci coolln; colls
, il 1/2-5741-315.
c.
ANU filter 07. OFlSM 1/2-5741-314,
\\
j
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filter CP rudingt. flew shall te checked estir' or for to CFM (310U contact tha St.lft Ergineer.If it it tot 2000 i
CP across Aru etebined filters CPI 5w 1/2-5741-311 a.
t i
t.
Pre 4tPA filter CP, CP!541/2 5741-309, C.
Pcts FEP4 filter C8, ;*1$4 1/2-5741-310.
i i
d.
Preflite* Oe, CP1541/2-5741-30S.
EtIydit Weter Flow; I
I a.
$4rsl:e water fl * (GP.4ctttired sin init 0
(Broo<t) ter CortreList!
ce.
l 4.
Control Itcon CP. CP!1/2 5740 36 on 912-5
)
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Allo the tytten te oce' ate 'or at le.ttt 10 hourt 2
thIt t!Te Stef 3d, retorC 19e r Ja tins o* d&ta lieet QOSAt tb ene c' 5
5.
e 5750 51,7 Nrn off whichever looster for it operating frcn local pan l O
1/2 9400-105.
Plate cc'itrol switch to Auf0 e
6.
1 STOP o;erettar cf the "B* sir tengling unit locally o gh.7 control roc 6 t'f ple:'ng tre cortrol switch li the PULL TO LOCK e
r from inc pes ' t ica.-
30 is:ci:t later.7Pt tir ;ompressor will aJtorratita')y 5 top acDrontmat l
{
5 g o.
ta.it toitrol IW!t(h to AUiG 'fAfter comarettor sto:1. cisce T air Panditng ey stopeed fret the (Ontrol roce. traccet locally, or REUIRAL If 7
(nsurettatthetblegassarleco!ntischi the ccetrel ' con *"r WAC lrosition at d'etsted by tne controi rcon HVAC lis a.ted to tFe co reet bef rg Ltil'rea feritateup. yttet 11 est6f ted, er.d outside airNormally.
s.
i tsat tente gas idole point A tie selectedThis mode of operattor, will rs%1re 11 S.
Resort any ciscre e cles to the Shlft 1991near.
I OLS:NOSIC3 H1"lY PN0nh30 +59I110 0103
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NOSIG5 411G%CnA30: A9 IN35
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CHt:Kl.1 $ 7,,}
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1 OC5 5753-51, Control Room f*trgency Filtrat ten System Port %1y 'est.
?Ec o !C4L. $8tCI'!CA?lCN RfFIAEhCC$
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Settle,3.8.H.1.
2, Se: tion 4.8 F..
L Section 4.3.P.t.b.1.
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<;cs $750,$ 3 C$e*ator m e m /
tevisin e Shift Enilneer F
yoren igp; CONTROL ROOM (MIRC[hCY FILTRA10H systEP M?hWLV 7f $1 Start of kn Tire As h 1 / 7.* i Erd of Run Tilte 'f 00!'fflIf4l 7 @ TOIte Titut/Da te NOT5 vex 4 n3 a AT o4 $rch:c # w or o u! h 7
L4' F acesst Kr khk o.b % o dh ensac o fW Ae WW v.li le ofo 4S our
+'t s,# e.e &Iew rAr.y.
s 1,
5pte 43r flow 1000
. cfm.
(lOS ~ M O
yNIR (Red sette o' ( C1/2-5) h 307) g p.
g d.
nA Nadig (fce TT th -Ofi-30 $ [M n e:
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3.
ma c< a:3 sem Tr w-mi-m m m
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-4.
heater s temperatun theater oatlet temp. - Inlet temp.) /9 F.
t.sivi.*rr p
'Must te 215'T 5.
Ratt.rr, air tecerattre to AHL) from spa:as (TI 1/2-5741-317) f d __'F.
6.
Coopresscr ru: tion prsittig (PI 1/2-5741-336) N cgig.
7.
Cotprestoriisc56rge pressura (PI t/2-5741-3M) / b I pi q.
l 8.
Corp r e s s-oil pre n ure (PI 1/2 5741-336) [ I pstg.
9.
ARU Inlet temperature to cooling cells (TI 1/2-5741-313) h 3 'f.,
c 10.
A W cut 1st terparatLre from :ooling cgl1: tTI 1/2-5741-315) [ d '/.
11.
ANU filter DP (DPl5P l/2 5741-314),p f 1D. Cf utter.
12.
Pressure dro across tby combired filtert Systen Air flov2 & @J. 7 (CPI $H 1/2-5 41-311).
In. of wats: "
cfm G V)C-n u g r,,)
' "Ost to < 6 inches dfl vatar at 4.( l.. rh ef i4 so3 6 UA 13.
Pre kErA filter DF (DPISH 1/2-5741-309),5 f) in cf water.
14 Fost PE8A filter OP (DP11H 1/2-5741-310) /d5 in, cf water, f
f!
15.
Pnf t1ter DP (DPI5F 1/2-57c1-308), 3 # it, cf water.
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Service water flov tirl!r.s Brocks floe be!cator)
(flI/2-5Mi-342)2ig,()_GFM.
/
i_ in, of water.'"
~
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Control Room DP (CPI 1/2-5)a0 30 a d be 2,1/8 in, cf water.
'*Stod l 9.
R'n time S[
top s.
a Verificatice of Stancey status of IMC 9 stet follwng renthly test:
LMai Swittbes (ontrel Roo* Swit b11 f *anei 1/2 5403351 b'
Coit R's ATU Ciese ~[
Tenic Ces Sarp'e roint Octn A fire Prot Valve u
(CR A HWC System cr, tnd (q{ ti6 Tit'el frct outside air)
Cent P.ft Air f'eu t X ~ Contre! Roo1 Isolation Ncrm I t' _
Mardling Unit (Afterclqfe)
Reset Coat F.m AC Ret Tsut W _, air Fa,:: ling delt B Auto
[31-fnn W ttr c W 6)
J f
Cent Rm AC C:mp Neut
,__g_,AirF1trUn!tBooster auta 4 $4 Corp 6 (After strA fan A
(
Cc9t 9, Air Nect
_M Air rite Unit boster Auto handling Urlt 6 (Af ter st@
fan 5 Coit Rt AFL Newt 77 Air Tilter Unit firs Close d W' Booster Fans P otettlC1 Valve A
Cent Rm HVAC
'bi mal 97 A/C Uni! 8 Coollt,g Ncrtal /t N '
Isolatici
//
Rater Supply Selector
.a to 0 Nd A/C l'ntt B Compressor u
TEST P;0CEDURE: QC5 5750-2 Notify the shift Enginear of any ciscrepancy and infer to Tettnical 5:ecifleation 3.8.h.) ano 4.8.F.1. $nd cutage report QO3 5750-02.
Ut e
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e 0AA 1100 521 Revillon 1 10CrA50.59 SAfttY EVA WAt!OWi Dettaber 1993 g
Safety traluation husbert ifSi nib Docurent Icent'fier: TA.N ft /V h*(454 /# d d1 (Moc i fi c&tlCR. 7t4 Ait kort1Qtttt humptf. ett )
Unit (s):
System (s):
COO l
.gp11:stle Flast neede(s):
A !I _N i
O UN, $1AATUA/H01 STNRT, R(f t:'. Or $NC'00tou 1.
Dracribe tts propcsed change:
C6e tM e dur*F b CI4?. I 04 Trdeical 9*:1 k;railen V
(Ma7r e t
%. Y H. R. 6 eso o !I ew %e prane v er i e corg,,
o*'
S3d A ca ttt*
- CW"A 'c i G W l
2.
Reason for the change:
C ' n.r. A ca.h a r.
of hcu h% der ancrale:l;h ir l
~
[
d ea r.~ a e! ~ baf f ar m
4.e
- ^N'< patech c+
-Tekkeled fer e ; C. ca h
- d. *. 4 L k
- rn G
SD WJ 3.
Is the change:
gg tw
(
)- Permanent O
(hl Temporary - tapected Du*ation:
6 M4r
~
Plant Modets) Restrictions:
.An d e 4.
1.lst the reference dacumerts reviewed rhtch eescr%s the structure, ha systee! cr ccaponefit. (10entify documnts referer:ced even if no Inforattion uts fcsed in that section.)
q tw i
a.
Uf5AR Section(s):
10,fC.4 19.OM.14.7.3 e
b.
_5ER 5ectioc(1):
c.
Tech Sese section(s): '3 J H. 4,? 4. 2. b
(
d.
Fire Arctectlee *rograst Doc:: wnt Pig Sectier.(s):
Code of r ietal *:e'gulatten Sectim(s): 10 C F~d 26 e.
ec f.
Regulater' Guides OfJRE3s): #WC E G CT-f4 Galb2 f. 9,,
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APPRQygp
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CAP 1100 1ZI Revillon I
's 5
Demeribe bo= the thange wil? affect plant,eperation when tre ct.49 Cat F
structure syste or c:4eonent frettlor. 45 tetenced (i.e., focut ce systes opeestion/teterattlent in the atteMe of sculpme9t f 41)Ures).
Consider all toplicable operat'.rg encdon. In:lude a alt:utlice of any changed interatt' tat (th c'her stru:tu-at.,tytteet o* cor,pe' tents.
e*e>
w' li Ati e'd bi o[M 4f/A Non sy7 4~.? J ti, < qstok +dOO" T k. 5 hec 4br#
w 4
9,3 c e ' n, M CM-g g (%4 '. fo
-ciow LA^d 6.
Describe how tie change vill affect equin'nent fallares. In particular.
'ittrite any nec failure FCCes and their it.0&ct Ogring all 43plicatie oper3 ting 90cel.
ef 4Md [n'.l ufti f.dfi<.I
- w; precs).are ekp,w'.hrQJ5.,,
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Icentify each acc10tet or anticipated transiert (i.e.. largelswil break LOCA, lots of load, tuttine misilles, fire, flooding) sescelted in the UFSAR where s.'ty of the follovieg it truel The thtngt alters tbt inttiti condit!0ns used in the UFSAR analysis e
The CMnged strbCture, system of tosporent is espittitly or e
ins 11titly 4ituend to furttion during or ef ter tre attleent
[
Operation Cr strutture, systea or comparent failurt of the thangte e
structure, systee or cesponer.t could lead to tt'.e accident bh A_C:'!Dfhi (F5H 5!CMON D
Nlb= TUC preCA$afP thamt Xbi&45 Cker.Sy;es i rs t e w ed i e m ' and _ Joes n%'t e ll %
W svt W
-ro eNW <> + 1 ; d e ed, ~.
< l e s;'. o n.
141 y
cP-C3 5.
List eact Technical spectf tcation (Safety Listt Lietting safety Syttem Setting or Lletting Condition for Operatice) where the reagirseeit, N
associated action itess. associated surveillances, c'r baten may be '
affected.
- tJ/A - Tk.S is A C,(drNy b Ar d 6 erd d stic e a e,
"T h W pfnet!.ar#
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ors e; 64 de
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(
D!c 311990
- I9C*
'o.c.O.S.R, St#'NOSIO3 H1h3%0'm30 -S3T1IO OW13 By:;t ' L6-iL-OL?
NOSIO2 41W3%CMCO: AG IN3S i
- 1 l
l OAP 110 M 21 Revistos 1 g
9.
Hill the change inyche a fechtct15pecification revision?
t a vet
( X > nce
(
If a Techstcal spectrication revision is invches, the crange cannet te l
Imp 1:wntes untti the NRC lttues a ilgante 498nement. When Complettrg Step 14, insicate that a Tetweal Specl*1 cation revistos is recutree.
10, Tc detereine if the pretat:11tp ce the consecuences or an acticent or talfunction ' f egvlpment leportant to safety praticutly evaluated in the o
UF$AR may Dt 'r.trensed, use one copy of this page to antver the fol'owing gulaticit for each acticent listee in ster 7.
provtre the rationkle for gli ho insvers.
Affetted at:1 dent Ub U'5AR 5ectioir Hay the protability of the accidsnt be intrettet?
(
) Yes
(
) No I
(
i kay the consequeness of the accident (off. site
(
) Yes
(
) ho dese) te increated?
May the protactitty of a malfun: tion of equipment
(
l Yes
(
) ho 1mportant to safety increase?
l s
(
) Yes
(
) ko y
f May the consecuentes of 4 malfunction of egaipment g y tacertant to safety increase?
E t~
M nu
'6 jf,.anyanswertoCetitter 10 11 175. tren ta Unrevtewtd Saf_etr Ovettien w
cu 17J.11 P
o I'*
C
-l e
i
.l i
i p
[
APPROVED
!.c ac3 tim 41oca
-:k C.C 0 8 R-I
1
+
i
- AP 1100-!!1 Revision f 11.
Based on your astwers to 'Ovestions $ and 6. does the emarge adversely tmcact systers or fur.ctions to at to create tbo cessibility of an attident or malfunction of a tyrs different from these evaluated in the UF5A%f
(
) Yet
( h# ) lic Descrite the ratten41e for your asswer.
indotwd:er- 'be cl<te f ;rh Av:1, nc4caust e <;s%y djr e,yr Tha y
plc ced., art' at a,
4kJ t fo erwrf ces;de design,yL1A f,,;[e w fv. siE o.C
,h J
1 bh e
e r
E L
M b
W e
l.
If the answer to Questien 11 is Yes then an Unreviewed 5a*ety cueittoc
- p _
ell 5ts.
8 o,
NR l
(
l c
1 c.
l APPROVED l
I DEC 311990 Q.C.C.S Il
.t g,
LL#!NOSIO3 H1"lY3MN0u 00 ~53I1I0 OYO3.
l 39:31 : Lt-!L-OL:
NOSIO3 411Y3M CWA 00:A9 D 45
I OAP 1100 521 Revision I 12.
Deterr.ine if parameters used to est011th the Technical 5pe:iricatten limits are changed. Ute c'.e cecy of t>ls page to 49twee the f011cWing evestions for each Technical Scecif ttstio9 listed la trop 8.
If no technical toecif teattent are insaeted, then f.e reesttici in r.argin of safety entsts, preteed to stee la, technical $secificatten M/A Determire witch ef t9e fo110wirt is teve for the soeve spetificattor; i
)
All changes to the straettert er tenditient utsd to ettellen the factnical Spectf tcatten requirewnts tre in a conservative Ctraction. Tnerefore, tne actual acceptance limit need not to 13ertified 10 deterstne tnat 80 redwetici in targle of tafety eritts, proceed to evention IL t
i Tne technical - 'Ificatles provides a margin ef safety or acceptante lie,
- the appittatie parameter or conettlon.
L13t tns 11sittt)/tmargint ) below.
(
)
The unittelle parameter er concittee change is In a potentially noo.corservative direction and tne Technicti
$pecification neittier smvices sh acceptance Itait nor srplicitly referencet 4 liett in the UF$A4 Request htclear Licensing alststance to ICentify the eccept4P.cs lleitt/pargin for tne ntigtn of Safety etterster. tion. List the g
limit (s)/margtnts) telow.
List Acceptar.ce Lisit(s)/84argin(s) of Safety 13.
Use the above limits to determine if the margin of safety is reduced (1,s., the new values enceed the acesstante limits). Describe the rationale foe your determination. -Incluce a description of consentating
(,j-factors used to reach that conclusion.
E r-J/A EE d
a.
m Oo-If a Marain et safety is reautes. am tveviewed Wetv entt'on entsts.
o**
diW c
j A?PROVEL/
g p
DEC 31 M 41004 C.C.O.S A 9t#:NOSIG3 H1713MN0u30 *S3III0 OYDS l9:9L : L6-LL-OL:
NOSI35 411fi%ChA30:A9 D iS
~
Cap 1100-121 Regition 1 14.
CPeck, one of the following:
g
(
) M Unreviewed 54fetr Outstion att identifist in step 10. Step 11 or sten 13. The propcsed change NJ5i NOT be leplemented althout NtC 43Dro%al.
(V) N: Unrewtened Safety OJestien v'll result (stect 10.1), and 133 AC no Technical Specification revision will be involved. Tte snanes ray se trolemented ir accordance with aspitcaple protecurst.
(
) A Technical Specification revision it involved: tut nc Ve.revlowed infety Question m111 result. The proposed charge requires a License Amencment. Nctify Station Regulatory Assurance and Nuclest Licensing tMat a Techical SpeelflCaticn revilloi it retstrad, erk colow as applicable.
(
) The cPanje 11 not a clant mootftcat9en or einer plant change an3 vill not te implere'Ited Under 10CFR5MI An receipt Cf the approved Techattel $secificatter frOf the NRC, the Change A6)*De leplemented.
1
) the change is 4 plert modification or minor plar,t change.
Parm telow as applicabit.
(
) A revlsicq to an ertsting Technical 5pecification is regatted. Tne change tfJ57 NOT be installed until receipt of an approved Te:tnical Speelfication revtston,
(
) The change vill eet w.fltet with any esitting Technical Ipecificationt and only new Technical til E
Specifications are recuired. In these casel, td SD Nuclear Licentteg any authorice installatfor. but t-not oseration, prior to recolet of NRC approval of 5L.
the License Ameeeeert. If such authoriention 11 yD granten, the block, below should be thecked.
cm
(
) Nuclear t.lcersing has authoritec y
Installation, but not operattor.. prior to CD rectlpt'of NRC approval of tre License o
Amen 0M et. Tes 1CCFR$0.59 sa ety tvaluatlea r
indicates that no unreviewed safety Question will result and provtses auteority for
~
Installation only.
P'M 9
Preparer [
Signature Uite i
AJPROVEC j
c.
J DEC 31 fl90 alog c.c.c.S.R.
Bl#:NOSIG3 H1h3MN0u00 + 53I110 Crf13 t3:st ! L6-;i-CL:
NO3IO3 H1W3MNCM30: A9 IN3S
c' '
CAP 1100-52' Reviller 1 15.
The reviewer hal detsrwined that the documentation is adequate to support the above tohtlutter and agreat with the toitlW81on-n,,,,;, r B fd:r k
_!Nem signatute Ute 16.
Octein a safety evaluatior, f teeer and rote at top of page 1.
17.
Forward a copy of thlt Safety twelvation to the FSAR Coordinator, l
Monthly Report Coordinator and inch Spec Coordtrator. ( AM Avait.
August 1990).
corpletec: Initta)
Date a:
I!,
ih e ti o-t b..
i i
A? PROVED
/
DED 311990 1"
(ftral)
O'C*g1R. C 41004
'I*
Ote:NOSIO3 H1113MN0hh00 *SSI110 OYn3 LS:SL ! L6-tL NOS103 H11Y3MNOM 00:A9 1N35
-Ol:. - - -
ENCLOSUREB Historical Climsuc intom.ation - 1990 and 1991 (Through July)
/scl:1209:13
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1 6 0 0 09 02 29 350 30 11,8 12 2 30 4W 21 31 0 0 10 10 30 7 4 4 -18 -2 h1 v i 6 i 0 01 02 29.630 31 14.1 14.! 29 tu 20 30 276 50 4 7 19 20 10 -11 5 85 0 f 0 00 00 M.gM 29 9 1 'O 1 it sa ?51 21 554 100 0 0 wi %e yut toth ytat ' 0 I 4, (p N naig 4!4 I ha ha
- O I
1013 4e) 1246 1 3 Of 7 5 29 49] 271 1 7 !10 7 5l I E I h I 07 9339 s aa 20' 186 as ae6 avn 3t 8 av6 D(s Ot a 44mpliatin Hs - ! ---- H pq
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) mi seeis avi at6 759 24 4 -1 i '89 5', 1. UtC# 9 $ 15 -i-i-l 17'90 47 6.5 60 N,Q f,f, suattti in 24 woes ano cAfts setat(51 Otets on stouse or 5"H A GI ms 3 = in naem in ei .a %. u,,, .,,,.,u. mio ,..m..s 0 .n o, n o, i m.. m ,ws EQ8 j i UG Ii ]?O ! ( OG DI8 D( # gleM !% 1 7 42 i 02-03 1 15 32 0} 5 1 04= is i 29 6 -hi 124 M ae 4 844h v a 3vci ) Mut e 19 0 e 8 (4f4[*[ FOA ful MONTH - 1,451 OCCURA(NCE if MORE THAN Okt. DAT A in COLS 6 AND 1215 ARE 845(0 ON 21 OR MORE 00stavall045 t tpACE AmauNT., A t M004( f INI(4tALS R[$ULTANT hlN0 ($ IM( 4(C f yR SUM Of WIND . ALSO 04 (ARLl(4 DAfttSt-SP((05 Ak0 OIRECil045 Div10(D SY tut NUMB (4 Of 08$(AvAll0h$. w( Avf f 0G; vl5191Llif tre MILT OR ttts Ca 5 16 6 17: P(As Gut! - ulGH(St ins 1ANIA4(0VS ulno iP([0 6LAkt 161#1(5 Ot40ft Mtit!NG OR v4R(PORf(3 0414. Okt or two MIND $Pt[0s it G!vC4 uh0(# COLS 18 419: F A5f(Si Mitt + HIGwtif A(COR0(D 58((0 FOR aw1CW 4 MlL[ Of Wind PASS (5 stAf!04 IDIA(Cit 0N lia COMPASS P014T51. F A51(5T 095(Rvt0 Oh[ MINuff m140 klGw($f Oh[ MINVf( $Pf!D IDI A(Cil0h lit f(45 Of 0(GR((Si (eaca$ ultt g( (09R((1[0 14 sug$( @(nf Pg6LICat!0N5 1 ((4 tiff IHAT INIS l$ AN Offl(! AL PUSL!CAf!0N Of fMI 4AT10hAL QCL ANIC AND Af 40$Piq(Rl( ADMlNl51RAfl04, AND 15 COMPit[0 FROM R(C040$ QN FIL[ At TH( NAfl04AL (LIMAllt 04f1 ([Nf(4 inAI[OMAL 4A ?10NAL W f 10hAL nO a a A!MOSP(#lt ADMINISTRA'P.s ottANIC AND (MV!40h44f AL $AT[LLlif, cat A CUMAf!C DATA ({ht(4 DIR(CTOR AND IW0pmatt0h ${R(tC[ AS4VI' [ NOlafM CAROUh4 Il4fl0llAL (LIMAf j( DAf A *[lIICR u -n
= ISSN 0190- 1962 LOCAL CLIM ATOLOGICAL DATA /G .... 990,iunuit suxuiav wira couriairivs oiri i r r i MOLIN E, i I f,/ ILLINOIS Daily Data cu,,U, io, gg j - 36 Do " j I a '- 32 u I!!!UBIAAfNNb N. Ajyf h ,l ~ N4kd/ s = y e,d 'i\\ w .y o n 30 - ; g
- Py9, i
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- ' p si
!m =~.. s. a Qml y "I ,i 1 5 s = +1 E)li g as50 i n U S f i d ?1 1 ; j W l[ ji i
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t: 1 uu 1 st io a l l i i i T I I l l i TTfTi l i l i l i 0 7 ili t i il l ii i l f i l i l i i I I i s i i l i 111 TTTI u i i l 161111! 10 to 30 13 2028 to 20 30 to 20 30 to 20 30 to 20 30 to 20 3010 20 30 to 20 30 to to 30 to to 30 to 20 30 TEWPERAftlRE DCPICTS NoRWAL WAXIWVW_ NORWAL WINtWUW AND ACTUAL DAILY HICH AND LOW VAtt'E3 (FAHRENHEIT) PRECIPITATION IS WEASURED IN INCHES. SCALE 13 NoN UNEAR SUNSHINE IS PERCENT of THE POSSIBLE SUNSHINE I ([8fift twat TNI$ is 84 Of flCI AL Puttttatica Of tut 4Afl04AL QU4mit s40 4toiP*ttl( aD4!Nista4110s. anc is (0='Itt3 8809 REL0acs O! rit( At t=( naficant (L!fistit 04f4 t[41[R. 45illvlLL(. 408fu Cn40L144..'8801 MMM etim
- * * ^ ' '
n O a a ~ unm=.. ". ":= =r.== = = L.oo...nm. N _kI
x'. v 1 ( METEOROLOGICAL DATA FOR 1990 Mol.lNC. ILtJNols (A111UD(: 41 627' N L O%110D( - 90 ' 31 ' w [L[(Af10h il GN %! HD0 60' I M 2CNE ' U NIM-
- DN
'4V3 l J AN l IE 9 ' M AR l APR.! M AY JUNE!JUL d_,4 3 ' S EP ! OC i ! N0t i DE:.I ' E G I L r t i 4i i 1 1[MP(R41UR[ *F; I A.. eges 6 3 e !' B 3 ? ^! I - D e, i, Ma...o 42 5 41 0 51 7 60 4 93 6t* 4: 04 'n' 4 3? 2 h2 0 .ce o, a ~,. , 2u .n 6 a9 nt o2 v: (4 7 oI e3 nt c a9 e5 32.7 31 3 42 P 50 0 57 3 71 3 74 2 73 7 tk.9 51.7 44.2 24 e 51 7 i -montki, 1 -Monthi, Le ot I 25 5 23 4 '12 3 U9 47 6 6t 5 04 e 64 4 57 i 40 t 34 2 IF 9 42 3 i ( w e.es m yest te d 8n h et ! 32 h 97 67 7 t-9
- i i
- Cate Ib 12 I2 2'
6 30 ? 4 27 b I E II M 4 I 3t I M 4 -5 5 -te.est i 7 4 19 20 34 46 l 5t 4 ate l 26 17 27 'l 2 4i ^4 3{ 24 l 6 26 DM 2t u +.-.- m DEGRE( DAYS BA$t 45 *F: i l I I I I i Heat.ng 945 937 (St ' 4@) 24' ] ?$ f 2l Dj 47 422 t,2 2 1246 575t I r i i ), 0g 1028 Cootirg C 0 10 40 tl 214 l-2'4 i MD{ M9 1" _.3 +. _ - _ 2 DT PM$pd $UN$H]N( 5e l, 9 l __._4 h.50.!____4 5.l___5 4 j 60 f t2, Af 63 j-52 l 47 f 3 ~ AW6. $KY COV[R ttenttal t i .I ! 4!l 5l $warise - Seset 8 5 64 f$j 4 1 t-4I L6, t 11 55I l 49 L t b0 i 4 9i 4 0! 42 55 6 C l' a.dm gmt - M i en y i 5.' 55 e, 3; 57j t 4' EC ^ 5'I '>4 NOM 5tR Of DAts: 5.arise to $< set i -C le r 6 7 'l 10 f' 6 5 i 13 14 'l 3 104. 4e t 4,
- Cleva, 11 6 I 7 i 4
2i 4- '4i 10 7 4 3 -Clove, 11 15 17 i 73e 1e ') ! 13 l 6; 7 1C, 14 160 ) t l 1 t i i Prec.oitat ee s'l i o! w! u; uj ej ei 7; .ci - es er. ore 1 8 9 4) 1'e 1 l Sao,1ce pei1ets ? O 0: 0! 3 5 1 0.nches o eore 1 1 0 C C C 0: l 1 ll In noe*stor s ?' 0 3 1 ei 4i s1 C 't u I i { l ) tl heavv Tcg. 3 4 ! + tv l i l= ,2 l i 1/4p 'e e, 0 1 3 3 'i 2 iess 1 4 l g o teeee store r I l l
- Mas 4.w.
i t Dj C P 90 .na ado <. Ol 0 i 0 l' c
- i 3
5! 5i 4 l 32* anc tie <o-3j t, I C r ( # Oi C 0 0 0; iu l 19 n l -M m3.w. I I i it e; 24 l 136 I 32' and beto 24 l 27 ; ?b I 1C 0i Cl C
- 0. f C
i C .ao m e. O! 0> c! 0 0! 3! D: 0 r 0 0i 6i e _.+ ~.- - _.i_. AVG.$1AT10hFRESS,imbil9929 99E 0 MS 3 ! %5 3 i a92 2 i 9m 9 i +95 t, i a%. 3 l %5 4 95 )l495 9la% 3l 395 - 1 + + - - -. -l l 1 REL Afitti HUMIDITY 131 i i
- l 1
00 79 90 i e5 77 l 76 I 92 ! 60 Howe 90 l 77 74 eG B3 03 hoc 06 05 84 82 83 65 95 oi - 96 '9 81 B3 e4 12 * *, 7 46 62 l hou 64 l bt t (2 t3 61 !4 54 l SS 72 t1 c How, 18 'S 71 61 44 i ei t2 67, e9 e4 ; 67 '? [ te _g ~ PREC!PIIAfl0N t nches): j l I i heter l aw. va ie4 l i I -total i 66 1% 0.te 3 50 7 6e ! 9 59 ' 3 5e t 42 i 4.n*- 2 ?! I ! ? 07 'Od' 2 71 l 2 6 7 3 23 l! n.c j9.' l n., 2i n.a ; 27 2 3P ! 1 0T I 3 42 09 Gevetest 24 nest 0 b1 1,4 2 C'5 1 U. 1.05
- 423,au,3 42
-tat.
- a. 4 u.e lo-it s '- 2 e -
34 2c see.. h e neii is i j s' 5 li i !1 Totat b 3, 10 3 ? 4a t e 25 14-!5 '9 ; - co 1 ec, 0.0 eo oo 24 1 2 l 2'I c al - c ce ac 3 ; + e. test a4~,, t 89 1 oc < ;f M '4 'S e-l l 4{ 3j Se. m ai t i I I ;% ; 164 244! 2: 3 ;i .i9 ! It?! 23'
- harett.Om 13'I 24I 269.
Olh 247 ' /b 21b t -s eeo i-co SE E9 24, 4.8 04 42 t3! 1 7 12 35 4 3i 3 ;i 2.6 Average Speed imost 12.1 ft.E 1 *j 4 l 12 4 10 ' 10 3 77! b4 b* 9 8 11 0 l 10 ' ! 'O E Fastest ces t v -Dir ec t ie t'i t 29 : 31 19 ) ~2 26 15
- p 3'
25 29 : 07 24 -Soeed r pi .t L i 32 3? l 29 ! r E.
- 5,
23 3; 3; 36 40 -Cate 11 l 24 15 j 27 17 3l 29 29 2; 23 3 Ag i t Pe an uwst
- 5. l, i
l -Dire: tion it', i i. wi l [ i s
- 8. 9 l 54 EP l 46 54 ;
'9 l 36 Ni M. 51 45 ! 51 59 l do.ed i*om! l date 't i 24 '5' 1 37i 3: 29 ; 14 ;
- 3 t 31 vs 3 l
l $ee ke'erente %dtgg or Eggy g8 1 l fage 2 I I I
y. N. NORMALS, MEANS, AND EXTREMES WOUNE, lu.lNOIS L411100(: 41 '27'N t0Eliutt: 90 '31
- w tittattoo ft. GRND 882 BARC W5 11Mt m : D tnat gav us23 li.' JAN FEB MAR] APR MAY JUNE JULYl AUG SEP OCi l NOV I DEC l YE AR 1(MPERAtuftt 'r:
l -n,i, %... pg 0 3L7 44 8 611 72 5 82 i e5 4 93 4 76 2 64 6 I 48 0 34.3 59 8 Nor.. s a -bait, m.ain. 11 0 16 4 26 5 39 4 50 1 59 9 64 3 62 ! 53 2 42 1 30 0 10 4 39 5 v -Monthly 19 5 25 1 ?5 ? 50.4 61 3 71 0 74 9 '2 9 64 ' 53 5 39 U 26 4 49 5 C.treees -necces wigwest
- s. B 69 71 69 i 93 104 104 105 106 100 92 80 69 106
~ 3 -ve se 1969 19'6 19% f 1% 1934 ? *0 fi 19 0 1936! M39 1%3 1933 19'O AUG 19% -Rec ord to-es t se -27 -25 's I 7 2b 39 de OI 24 16 ! -9 -24 -27 } - t e s, 1979 M79 1%0 l 1982 1%6 1972 1971 1986 1 1942 1968 ! 1974 1%9 JAN 1979 kORMAL D(GRif DAYS: eat mg ibese 65'r i '411 1117 906 438 177 20 0 5 75 M 70 1197 6499 w Coeiing it ese 65*f t G 0 0 0 62 200-307I 250 66 to i 0 0 899 ) L- % OF P05$18tE $UNSHIN[ 47 49 50 50 53 57 b2 60 i 66 62 ! %i 42 41 55 nt4N SU C0VCR Itenthst Sunrise - %me t 48 6.5 6.4 69 65 62 60i 5 3 li *Sj 52 53 6' 68 6* MEAN NUMB (R Of DAYS: 1 E ifa, 57 ?9 72 44 6? 75 ?3
- >2 10 3
!1-7 l' 7t 7.4 ?.0 101 4 i i ' 5 9 l' 17 8 11 6 10 9 - 7 91 77i 68 62 701 1 J a-tiv (tewo, 57 71 63j 79 8 71 92 ?C 6 i 14 2 ;; -;io o, 57 16.1 14 61 '6', 14 6 %i 90' 98 10 4 i 11 7l lb2 B l Sno.. lee pellets ' 0 0l Prec. citation 7l 0 l 10 9 'i 9 -- 10 2 95 99 8 71 7 9,4
- 3
'13 3 .01 -cses er more i0i 11 + j 58l 2b 21 1 9i L3 00 00 00; O0 00; O' 0? ?3 97 1.0.nenes or more i i r i 7 1 44j 24 1 2 00 46 9 Th ede-stoe s 57-03 05 /1i 44l 6BI 63 84 i l l 1
- 4e a f og v i s i t:. l i t,
I 9 l: 0.8 i 09j 06 3,7 l 23: 1 6i 1 4: 1 2 1 B 17 5 i 1/4..le or tgss to. 22 '9; i 1 f l l j j l T e *c.e-s t are I 40' are aeo,e 1 30I OO' 00 00l -9 g t 40. 00{ 0.0 00 23 4 1 01* '3 53 9* b. I 3 0 0.0 - 2.0 13 ' 49 ' 32 ano cele. 30! 18 1 12 9 3bj 0.2 0.0 00 00 00 -M;ni.e. j 32i ed beto-30 24 5 25.5 20 9-74 06 00 00i 00 02i 59 19 2 i 27.4 135,5 P and bele= 30 9 31 45 02l 00 00i 00 00! 00 03: 0 ;; 12l 39 '? O if%5*l995.9!94o5I995?iM72l 95 2 Mii, ST Ai!ON PR[55. tabi 18' 997.4 ! 997.5 l 334.2 l 993 0 ! 992. 4 I 992 8 934 i RELATIVi HUM 10lif IEl i j 94 j 93 li 76 lt [ Hove 00 30 12 '4 74 l 72 75 ! 77 92 [ 38 i 01 i 79 70 j 00 75 7/ e 77 06 'l' 7'* 30 74 'S 78 - 78 80 i BC 85 i Hi Howe 12 30 d W 60 k 9 53 'O Ul Hl 57 l 54 i O a} 9 hour 16 30. a e6 ; -62 l 54 52 ! 53 M: t2 s t> 0! o9 73 62 hour PR(C! PIT ATION linchesi: 1 i l I j I l 1 44 l ketee Eavi,atent i 1 30 ! 2 77 6 3 97 4 21 4.32 ' 4.66 ! 3.76> 3 74 2 'O ! t. % 1 92 37.17 -No.at +4 i we Monthi, 61 4 39: 2 90 ; 7 43: 30 11 43 4 9 l 11 39j:523! 14 9 94i e 47 4 99 15 23 -Year 1974 1995 19?)' 1973 M74 1990 1969 1997 195 194 1934 1992 AUG 199, 0 01l -M.n. . Monthly 61 0.31 0 !? 0 3? 3 68 0% 1 02 1 02l 0 35 0 02 1 0 29 0.23 0 01 1 -Year 1961 1933 1998 M46 192% 19e3 1955 i M?1 1979 1964' 1933' M29 OCT 1964 ? 30 2.42 5 91 3 48. 5 02 54?! 573 6 29 j 4 99 2 73 3.39, 6 29 I -Ma...v. in 24 hr s 61 2 07 ' 99 W5i 1973 14'O ! 1%7 '%31 1437 Me~ 1994 19 1 1942-SEP Mb1 - Ve re 1%0 6 i Sno..lce pellets I i -S eimo Month v 53 26 ? M3i M9 !30' O3 7 00' 03 0'l 6v 15 b 21 7 26.7 1942 1%7 1974 M?8
- AN 1974 193! { 1Y)0
-7 ear 1979 M 75 1972 M82 03 Y 00 00 0ti 65 05 11 4 16 4 -Maein o in 24 br$ 57 16 4 10 1 11 0 8.2 v -Year M71 1975 1972 1970 1935! 1490 !i42 ' 596' 197S M87 JAN 1971 t o 4 l, f WIND: I i2 7' 7.3 8 21
- 9. 3 j 10.9 10.7 10.0 Peaa Saeed imphi 47 11 0 10 9
?2.' 12.1 Pee wa r n in$%3 g Direct;on i g treougn ww Aw =w w E 5 E E 5 l 5 WNw ! ww l ww r4,te.i M.ie N. i s. w sw ss -O i rec o o, m 60 sa i N., sw. s. s.
- s. ~
65 63 he i 60 '1 77 w N i -Sceed Al 60 58 66 i 73 69 77 JUN 194 7 -ve ar M46 1948 M54 i M47 1955 M47 1953 967 194? 1949 M52 1947 Peak Taws t j -Direction (!!! 7 d-N. S.
- SW NW W
NW N $w 5 w NW N -Speed lacht 7 59 54 58 69 60 ] 59 52 91 44 41 52 56 91 -0 ate 1990 1990 MMi M84 1909 ! t%0, M04 M87 M96 1%4 M96 1995 AUG M07 I i <- see e te ex e Nu es on Pa,e se e Page 3 t kr-gig
d / .c :. 4:p. ;i Ni l PRECIPITATION (inches) MOUNE iwNOIS 1 YEAR JAN1 FEB MAR l APR j MAY JUNElJULY AUG l SEP OCT !NOV DEC ' ANNUAL 1961 0 31 1.20 4 di 2 19 1 90 3 69 ' 7.3 2 377~TF~5L 4 ~EY" 4 94 1 tb 45 90 0 63{ 1.21 1 15 0 55 33 85 1962 2,08 1.84 2 42 2 44 t to 1 48 b 73 1 a5
- 90 1 84 0 44 30.78 19b3 0.9) 0,37 3 29 4.24 2 36 1 102 8.70 4 02 2 38 19b4 1.59 0 73 4.02 6.37 2 68 3 89 5 31 2 41 3 99 C ?)
3 40 1 27 35 e7 1965 4 a00 0 97 2 52 7 92 4 04 2 07 4 78 9.31 8 27 0 88 1 93 2 62 49 59 19 6 2 01 0:89 0 85 3 96 b 39 4 25 7 74 0 77 2 80 4 36 1 12 2.52 37 68 19t.7 2.00 1.11 1 4B 4 91 1 70 6 't 4 15 3 62 4 $9 b 23 - 2 26 56 42 36 ' 1968 0.00 0.32 1 ab 3.57 2,59 ) ?O 3 91 2 tb 5 10 1 09 i 3 29 2 7b 3s 65 1969 3.28 0 21 2,25 3.11 3 40 4.97 11 39 2 00 2 50 4 b3 l 0 53 1 52 41.79 1970 0,54 0 57 2 b2 4 bb 11 07 3 25 t 27 3 61 14 le 1 ?5 1 25 1.95 51.72 1971 1,79 1.57 1 99 1 Bb 3 14 2.36 11 22 1 0 35 4 54 2 Le 2,21 4.77 38 44 3 79 8 20 3 29 2 39 2. 5 1 98 46 b5 2 6 3 {l ' 1972 1.19 1.24 3 73 - 5.?9 4 24 8 bb 2 30 b.74 3 Co 1 15 3.74 56.3b 1973 2.53 1.94 7 43 11 30 6.9b b 58 1 73 3.37 1 00 1 99 2 59 1 83 db.03 1974 4.39 1,57 2.94 5 08 11 43 0.03 p,1975 1,50 1,75 3.J0 2 66 3.23, 3.50 2 71 l 3 23 4 99 0 90
- 98 0 99 26 95 1976 0.88 1 11 3.47 4 21 4 13 2 02, 3 34 ' O.60 1 89 2 13 0 65 0 34 24.97 1977 0 8?
0.62 4 61 1.57 2.bb 5 10 ' b-04 6 98 4 80 4 09 2 78 1.76 41 96 1978 0 59 0.67 0 78 3 02 4 t5 3 50 3.24 2 47 3 91 1 95 3 32 3.17 31.27 1979 2.72 1 02 2 ?? 4 01 2.8b 2 et 4 40 4 94 0 02 2 51 2 13 2.2? 34.50 1960 1 31 1 55 1 74 2 34 4 01 i 4 9' 3 4b a 09
- 94 1 b3 0 70 2.75 36 49 de ' 5 51 a 07 6 90 '
4 20 4 42 2.42 0 72 36 bb 1981 0 32 2.45 0.69 4.48 1 1982 2 08 0.45 3.85 3 33 5 03 3b 1 8 83 . 89 1 94 3 39 3 be 4.99 44 02 1983_ 0.55 1.50 0 88 4 88 2 Ob 5 21 2 79 0 9e 5 30 2 36 5.78 2.55 36 82 1984 0 84 0.79 3 45 4 31 4 97 3,'5 4.63 1 31 2 32 t 60 2.91 3 51 39 39 1985 1,04 2.80 4.71 2.14 3 ab 2 2c 3 33 2 7b 1 '1 8 54 6 35 2 21 41.31 198b 0.38 2 53 1.35 3 15 5 54 5 10 6 34 3 2# 5 63 4 23 1,03 1 95 40.47 1987 0 91 0.89 2 57 5 49 3 35 ' 54 1 91 15 23 1 it 0 79 3 33 4 db 37.58 4 79 4 89 1.97 2.37 3=14 I 57 25 75 1980 1.74 1.00 2 36 1.36 2.32 1 16 } 3.10 t 17 5.42 1 18 0.71 0 73 31 93 1989 1 21 1 21 1 65 3 62 3 42 3 31 1990 1 66 1.99 4.68 3 50 7 68 9 59 l 3 56 b 42 i 04 2 35 2 87 3 07 50 41
- m. core i
I n..e 1.54 1.3i 247 3625 4 00 4.36 i 4 i+. 3 e51 3 62 2 77 2 24 1 se ab 00 m terenc. Notee ce P.;e be. see e Pag. 4A AVERAGE TEMPERATURE (deg F) wouNE. ILuNOIS YEARIJAN FEB MAR j APR i MAY IJUNEidULY j AUG I SEP I OCT I NOV ' DEC ANNUAL 19o1 21,1 30.7 39,3 44 lI* 56 1 T' 'I* '4 2 ~ 73.9 eb.) 55 4 40 6 23 0 ~49.9 4962 16.2 23.7 32 6 49 3 67.9 'O 6 ? b 72.9 61 7 55 2 39.0 23.2 48.7 1963 9.7 17 9 41 1 52.9 60 0 '3 5 ?4.8 70.8 b4.9 64.4 43 1 13 6 48 9 1964 26.4 27 0 34 4 5' 5 bb 3 72 3 76 L 70 8 65 6 50.7 44 2 24 8 51 1 1965 21.4 25.' 2b 9 49 2 b5.9 69 6 74 9 71 i b3.5 53 t 40.7 34 5 49.0 1966 14.3 24.8 39.2 47.0 54 3 70 5 77 9 70.6 62 9 52 5 41.? 20.1 48.6 1967 24 0 18 7 39.0 Si E Sb 4 'O.9 ?? 4 67 7 62 1 52.' 36 1 28 5 48 4 19b6 21.0 22.7 41 9 59.3 57.2 72.1 73.1 73.5 b3 1 53 ; 3?.3 24.5 49 3 1969 17.9 ?? 9 32 2 51 6 bt.7 67.1 75 0 73.7 b4.9 51 7 37 9 24 3 48 8 1970 13.1 24.7 33 6 51 8 64 9 70 7 75.7 '2 9 65,2 53.9 39 2 28.9 49.5 1971 14 8 25_9 34.7 50 9 50.0 76.6 70 7 71 9 68.? 59.9 40,0 31.b 50 3 69 4 74 6 74.0 66.7 50 2 3' 3 22 3 48.4 1972 18.b 20.7 36.0 48 0 +l 6 3. 0 7 57.6 72.3 74 9 75 1 65 7 5? 3 40 4 l 23 7 51.5 1973 27.1 28 7 45.4 49 1974 21 6 26 8 38 5 53 3' 58.8 67.5 77 3 70 3 6C 4 53.7 40,1 28 b 49.R 1975 24.9 25 0 30 6 45 1 b3.8 72.3 75.0 75 1 60 9 5t 2 45.0 30 3 50.4 1976 19.1 35.2 41.2 52.* 57.5 70 5 75 6 71 8 b3,0 46 8 30.1 19 6 18 6 1977 0,2 27,1 43.6 $b.6 b8.9 70.0 77 5 71 0 65 5 51_2 30 7 21 7 50_0 1978 12.4 $4.1 33_O 50 8 60.2 71 0 '4.0 '3 2 69.2 51.5 39.2 22.7 47 6 1979 6.3 13.2 16.3 47.4 61.9 71.2 73.5 '2 0 64,3 52.1 37 0 31 7 47 2 1980 23 4 19.2 33.5 49.1 62.7 69.2 77.b 75 8 65 7 48.b 39.7 2b b 49 3 1981 23.4 27.1 39,4 54.3 57.5 71.0 73 3 '1 2 63.5 49.9 41 1 25.3 49.7 1982 10 6 21 4 34 b 44 7 bb.1 bb.2 '5.4 '5.3 64 2 54 - 7 39 2 35.3 48 7 1963 26 9 32 0 30.9 45.5 57 e 72.9 '9 4 '9 b 65 6 53.' I 42 9 14 0 50 7 19td 19.4 34.5 31 2 49.1 58.2 73.6 73 1 75 2 b2.9 55 1 35 3 31_1 50.2 1985 14.3 21.8' 42.5 57,1 64.9 69.4 74 2 69 7 bb.1 53b 35 2 '4.9 48.b 1986 25.1 22 9 42.5 54 b b3.0 71 7 7? 6 t8 3 67.3 53.4 34 6 30 0 50.9 52.9 1987 25.2 34.4 42.2 52,b bb.8 74.6 '9 4 72.9 64 - 4 47 4 44 0 31.0 50 7 1980 20 2 21.7 38 7 50.6 64.1 73 1 'O 2 77_8 67.0 47 3 40,3 29 0 1989 32.7 17 4 37.0 49 9 58.8 69 2 ?b 2 '2 2 bl 9 54 6 39 E 15 6 48 7 1990 32.7 31.3 42 e 50 0 57.3 71.3 74 2 73 7 bb 9 51.' 4 44 2 24 d 51 7 Recoed Mean 21.6 26.0 36.5 50 3 b1.2 71.2 75 3 ?3.1 65.1 53 5 39.1 26 4 50 0 Me= 30.1 34.7 45.8 61.2 72.4 82.3 96.3 ed 1 76.6 e5.0 48 2 34 4 60 1 Mia 13.0 17.3 27.3 39 4 50 0 60 1 64 3 62 1 53.5 42 1 30.0 18 4 39<8
- ' l.-
See Re f er enc e Notes on Pepe 69. 09 * + Fage 49 m - i. [ 4 .p.', thL r w A v. s ".b A
l l HEATING DEGREE DAYS Base 65 deg. F WousE. luJNots SEASON JULY i AUG SEPlOCT NOV l 0ECl JAN FEB MAR APR MAY JUNE TOTAL JW7MyBF1TTO l 1961-62 1 0 121 i 150 999 481 78 22 6690 1962-63 8 1 149 # 342 774 1292 '717 1315 734 370 186 15 6903 1963-64 0 16 83 1C8 653(11585 1129 1097 942 405 7' 1 20 6109 1964-65 3 24 100 437 624 1241 1344 1096 1174 471 86 3 6603 1965-66 0 21 115 363 722 939 1568 1119 794 533 287 31 6492 1966-67 0 6 116 306 695 '13' 1202 1289 802 404 305 10 6352 1967-68 21 33 136 424 860 1127 1354 1221 711 409 240 10 6562 1968-69 8 15 96 404 8J6 '247 1458 1032 1010 398 1?2 57 5723 1969-70 0 0 80 445 805 j' 25 3 1607 1120 967 419 1 18 21 0835 1970+71 0 2 92 350 764 j' i 1 1 1556 1088 931 425 242 0 6561 1971-72 17 3 94 195 740 !'006 1434 1280 893 504 155 25 6366 1972-73 0 7 80 459 624 1319 1170 1013 598 452 223 1 6154 1973-74 O O 78 258 733 1274 1338 1061 812 360 235 32 6181 1974 O 8 180 349 739 22 1235 1 114 1058 593 117 14 6529 1975-76 9 0 162 297 594 10'2 1413 855 731 365 235 2 57s5 1976-77 0 5 123 569 1038 1403 1755 1059 656 286 54 15 6963 1977-78 O 5 50 420 780 1337 1625 1417 986 423 229 13 7285 1978-79 1 4 59 415 767 13C5 1820 1445 884 521 172 12 7405 1979-80 5 22 95 415 831 1027 1280 1324 966 481 129 27 6602 1980-81 0 1 77 503 755 '180 1281 1065 7H3 322 253 3 h213 1901-82 12 s 91 459 710 1226 1682 1214 936 604 62 35 7040 3 1992-83 0 14 110 333 765 916 1175 917 802 578 228 1 7 $855 1983-84 1 0 110 377 654 '578 1406 880 1039 482 225 2 675,4 1984-85 3 4 1'1 303 '61 1042 1568 1203 692 293 66 25 61 11 5965-86 0 4 133 34' 888 1546
- 231 1174 705 330 104 3
6479 '986-87 O 30 55 358 898 '078 1227 850 '01 385 101 4 5681 1987-88 0 23 84 540 627 '046 1384 1250 807 427 90 15 6293 1988-89 1 9 45 544 736 1'09 998 1326 863 461 240 28 a360 '989-90 0 4 138 334 765 1527 995 937 691 483 241 18 6 53 1990-91 2 0 97 422 622 1248 See Referenca Noten on Page 68 c.;e sa COOLING DEGREE DAYS Base 65 deg F uousE. tuJsois YEAR l JAN FEBl MAR lAPR !MAY fJUNEIJULY AUG!SEP i OCT i NGv,OLC ! TOTAL n v -p I I l i I 1 r f I i i l l l 1 l
- '30 300 2't 86 !
41 i O O 931 '369 0 0 0 1970 0 0 0 32 ; 19
- 98 341 256 105 15 O
O '066 '971 O O O 9 32!355 203 225 212 44 0 0 1080 1972 O O O 3 102 ; '65 312 294 139 6 O O 1020 1973 O O O 2 2 ! 226 !312 37J ! 101 27 0 0 995 1974 O O O 1' 50 i '3 I 369 180 45 O C 797 1975 0 C O 1
- 85 24' 325 319 44 29 0
0 1044 1976 O O O 26 ! 12 l ?75 341 22' '2 13 O O 860 19?? O O O 44 '82 }'73 397 199 73 i O t O O 1C68 1978 t O O 1 0 87 i 202 289 26' 195 3 1 O O 1045 1979 i O O O O 83 l 2 2e 2 2 245 79 22 I O O 90' 1980 0 0 0 11 65 158 395 343 10? 1 O O 1080 1981 0 C O 8 2' 191 275 209 50 C O O 760 1982 O O O O 102 78 327 215 95 20 0 0 83' 1983 0 2 0 1 12 260 453 453 138 14 l C 0 1337 1904 O O O 9 21 268 26' 327, 172 ' t O O 1005 '16 3 1985 O O O 64 '65 292 1 154 i ^ ^ lie l t 1986 0 0 12 31 1 48 ; 216 396 1 143 133 4 l C 0 983 1987 O O O 20 ; 162 l 298 453 277 71 0 3 0 1284 l l 416 410 112 3 l O O 12'3 1988 O O O O 6? 263 1989 0 0 = 4 13 53 59 356 236 52 20 - O O 893 '990 0 O l 10 40 ! 8 2? t-294 280 159 'ej 3 0 1028 i i i See 7 e f e-e nc: e Nctes o-Page 68 U 4ge be 4
g SNOWFALL (inches) wouNt ItuNots SEASON JULY AUG!SEP!OCT i NOV l DEC I JAN l FEB l MAR l APP l MAT l JUNE l TOTAL ww.42 6o W cc! 70' ~T~ D TT" C ti C'"LyMT T'*"'TTLP " IT T T 1' 19b2-b3 oo 0.0 oe O I 1 se 7 3 t e c0 0 0 31 1 3 s '4 j 1943 64 oo oe oO OOj 1 a 7 s3 5 5 13 9 ;- cc oc 34 4 196.4-65 00 0C 0C 00 2 1 11 7, 10 ; 4 16 ; e0 00 0b 47 6 T C0 13 6 1965-bb 00 00 0C D0 0 3' 5 7{ t 0 C6 0 7 0 3 2 l; 1906 67 00 00 00 00 1 2 'd 4 13 2 22 1 1 0 0 00 30 1 O b 2 ft i ! O3 00
- 2 6 19b7-b8 00 00 D.Oj t b 0 3 1966-i9 0.O C O O ;,
Y > w $4 b ; ( 9 E 6
- D C 0 24 0 0 C 00 t 5
't e I 19t 9-70 00 00l 2 6 1 12.' t 3 00 0 0 5' 2 26 7. 6 1 00 C 0 30 5 1970-71 0.0 00t CC 00 0; 1' 1971-72 00 00! OC CC $5 0 3 1' 6 ')7 19 6 i6 O C 00 54 1 1972-73 uO O.0 00
- C b?
t b 04 60 05 0 9 0 0 00 25 7 1973-74 00 00 0C 00 i
- 1 4
12 7 7 4 30 0 t,, 00 00 35 1 1974-?S OO OO C C 00 15 b ee 7 b 19 3 12 2 b2 00 0 0 69 7 1975+7t C0 00 00l C0 9 9 25 Fb C i Cb C 0 1 00 21 7 OC! 0 7 ? 4 1 12 3 25 10.0 1 0 00 00 30 4 1976-77 OO OOl 0 0 0 C' CD 4 8 20 9 4 1 b B b 5 1 00 0 0 45 0 1977-70 00 Ll 19'8-T9 00 00, O 0C ' 1 21 7 2d ? 4 5 3 4 L 6 00 0 0 be 0 dl 13 1 7 5 999-80 00 00' O C: 1 9) Oe 4 5 00 00 37 0 ool oe Oo te 9 +9eo-e+ 0e oo o 24 4 4 s
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l 1991-B2 C 0 00 00 1 3 'J i 4 3 13 6 4 5 6 0 13 0 00 00 45 3 1992-W3 0C 00 C C: C0 t C 5 4 7 b 2 il 7 0 7 C C ?O 24 8 1983-64 00 00 0Cl t C9 10 9 9 9 1 9
- 36 0 1 00 00 45 3
'904-05 0C & O OOj O O6 Y 3 3 '2 4 ? 5 02 OC O.0 30 4 1996-8b C 0 CC 0 01 00 3 11.5 3 7 7 0 0 2 04 00 0.0 2b ' C) 00 2' 9 1 t 0 1 0 0 00 0 0 11.6 1980-A7 C C 00 0 '96?-66 00 00 C.; I ? O b 15 9 27 lb 4 0.5 00 0.0 00 3b.1 1966-09 0C 00 0 C. Y ' O
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13 0 C4 T T OO l' 7 0C T H9 1960-9C 0 0 00 0 0i 1 0 $ i 8 E 3 10 3 4 we: e0 0c en = i i .l I Ne c oM c Cl j j l 7 e 21
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.a ' '#77: ?, 7' e - The locality is in the heart of the Corn Delt This area has a te mperate continen imot.5 Agricultural crops include many important staple with a wide temperature range throughout the year. products in ad dition to corn Cattle, hogs. There are some intensely hot. unusually' humid, horses. and potltry produced m lown and Illmots periods in summer and severely cold periods in rank high in the nation Close to the Wississippi winter Maxima of 90 degrees or more have occurred River there is large scale truck gardening and in summer as frequently as 55 days and zero or considerable dairying Field production of grams lower readings have occarred during every winter and livestock attains greater development farther freezing temperatures have occurred as late in away from the large streams. where the countryside spring as late Way and as early in autumn as late is rollmg pralrle Damag ng droughts are not September. Precipitation is usually well common-This. together with the variety of . distributed throughout the year,with the greatest agricultural products. has led to designating the amounts falling during the 177 - d ay ave. age crop section as the Dread Barket of America growmg season Substantial weather changes The climate iu favorable for many industries as frequently occur at three or four day mt ervais-evidenced by the large number and variety of as a direct result of proximity to some of the manufacturing and other enterprises which have most important storm tracks located and developed in the community Among these are some of the largest producers of agricultural machinery in the world f M gj g-v e.- [% .4 ,b '~ .s 7 ' ?;
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SUMMARY
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ENCLOSURE C 1. DISCUSSION OF MARGIN BUILT INTO IHE PROPOSED DIFFERENTIAL TEMPERATURE CRITERIA The design basis of the Control Room Emergency Filtration (CREF) System heater is to ensure that the relative humidity (RH) of the air at the inlet to the charcoal absorbers is less than 70% at the most limiting climatic condition of 95* F wet bulb (95* F with 100% humidity). The current Technical Specification A T limit of 15 F is based upon the o T necessary to achieve the required inlet relative humidity at the most limiting condition (95* F wet bulb) under all flow conditions. The margin of the proposed differential temperature criteria le established by the relative probab lity of occurrence of the most limiting inlet condition. Published climatic conditions contained in the ASHRAE Handbook of Fundamentals indicate that the wet bulb temperature in the Ouad Citici area is below 78* F approximately 99% of tho time. Emp'rical data from 1990 has substantiated these conditions. During*1990, the wet bulb temperature at the Ouad Cities airport was greater than or equal to 78 F approximately 1.75% of the time (u 7 J 3 hour interval temperature measurements), and greater than or equal to 80' F approximately 0.45% of the time. The maximum wet bulb temperature during 1990 was 82' F, and occurred approximately 0.14% of the time. Based upon this published and empiricalinformation, a Technical Specification differential temperature criteria based upon an inlet condition of 95* F wet bulb provides adequate margin to insure that the' inlet air RH is maintained at less than 70%. 2. DISCUSSION OF POTENTIAL EFFECT OF DEGRADED VOLTAGE UPON THE ABeLITY OF THE HEATER TO PERFORM Tile DESIGN FUNCTION The issue of degraded voltage, adequacy of undervoltage setpoints, and the consequences (of degraded voltages on the electrical distribution system) to equipment required to safely shut down a unit following a design basis accident was recently raised by the NRC as a result of the Dresden Station EDSFl. Commonwealth Edison is currently evaluating this issue. The purpose of this discussion is to document the specific analysis of the CR:F System heater with respect to thn impact of the new heater on the Second Level Undervolta0e Relay setting; and the aotential effects of de0raded voltage on the ability of the heater to satisfy its desl n func lon. 0 In September,1991 the 9KW CREF System heater was replaced with a lar0er heater (See Reference (1)). The new installed heater in the CREF System at Quad Cities Station is sized at 12 KW at a nominal voltage of 480 VAC. The new heater was analyzed to determine the potential impact upon the setting of the Second Level Undervoltage relay (degraded voltage arotection). The increased heater size will draw additional current, inducing a larger vo tage drop. The increased current under de0raded voltage conditions is on the order of 3.25 Amperes. Based upon a totalloading on the 480 Volt switchgear of 1800 Amperes, this increase will not have a significant impact upon the relay setting. The desl n bases of the CREF system heater is to reduce the relative humidity of the 0 atmosphere at the inlet to the charcoal adsorbers to less than 70%. This relative humidity critoria ensures efficient charcoal adsorber performance. In order to insure that the l relative humidity at the intet to the charcoal absorbers is less than 70% (as required by Reg. Guide 1.52 and ANSI N509) with the worst case inlet condition of 95' F wet bolb, the heater must deliver at least 8.14 KW urider the full range of flows (1800 cfm to 2200 cfm). In order to achieve the Technical Specification A T requirement under allinlet wet-bulb conditions (-10' F to 95" F), the heater must deliver 10.1 KW. / sci:1209:14
ENCLOSURE C (continued) At tha nominal volta 00, the boater provides approximately 50% mar 0 n to thn design i i basis requiroment (less than 70% relative humidity) and 20% marD n to the Technical I i Specification requirement. The offects of several separate load casos were analyzed for the potential effects of degraded voltage on honter performance. The first load case considered the design basis accident loading. Durin0 a design basis accident (DBA), the CREF System Air Filtration Unit (AFU)is normally fed from the 1/2 Emergency Diesel Generator (EDG) via Bus 131. In this configuration. the voltage at MCC 18-4 will not be significantly degraded (approximately 480 VAC). Therefore, the heater will be able to satisfy its design function during a DDA. Additionalload cases where the reserve auxiliary transformer (RAT) was available (i.e. i offsite power available to either unit) resulted in a minimum degraded voltage at MCC 18 4 ol approximately 441 VAC, which results in a heater output of 10.1 KW. This value is approximately eaual to the heater output required to achieve the new A T requirement (at worst case inlet conditions) and exceeds the power requirements for insuring that 'ho relative humidity of the inlet air to the charcoal absorbers is less than 70% As a bounding condition, the worst case load which was analyzed considers a Loss of Coolant Accident (LOCA) and Loss-of Offsite Power (LOOP) on Unit 2, with all auxillary power on Unit 1 and -mergency loads on Unit 2 fed from the Unit 1 auxillary transformer (via the 141 to 2+1 cross tie). This also assumes maximum summer thermal and electricalloads. This load condition is extremely conservative in that the case assumes that emergency oower is not supplied from the EDGs, the Unit 1 reserve auxillary transformer is not aval able, and Bue 24 to 241 breakers are closed to pickup essential Bus 24 loads (e.g. RHRSW pump). These load conditions result in a voltage of 381.6 VAC at MCC 18 4. The resultant heater output with this degraded voltage condition is 7.58 KW, which would result in a relative humidity of.72% at the inlet to the charcoal absorbers (assuming worst case inlet and maximum flow conditions). As stated earlier, this load condition is extremely conservative with respect to the normal load conditions during a dusign basis accident (emergency loads fed by the EDGs) or during normal operation (normalloads fed from . both the reserve auxillary transformer and unit auxiliary trant,former), and represents a bounding degraded voltage condition. the heater output of 7.58 KW would At the worst case inlet condition (95' F wet bulb)lr) for approximately 93% of the flow produce a A T of 12' F (and therefore 70% RH a conditions. However, at 2200 cim, the heater will only produce a A T of 11' F, which results in a relative humidity of approximately 72% at the inlet to the charcoal absorbers. Commonwealth Edison has evaluated the safety significance of this condition with-respect to control room ooerator doses and the GDC-19 limits. CECO calculations have concluded that the slight ncrease in relative humidity due to the extremely conservative load conditions would have a negligible impact upon charcoal absorber efficiency. This k based upon calculations which indicate that the absorber efficiency is not significantly Impacted until the inlet relative humidity reaches approximately 90% The calculations also indicate that operation at the maximum flow rate would also increase the purge rate, which would result in a reduction of control room doses. Therefore,if the system were operating at the maximum flow under the most degraded voltage condition, the effect of an increase in inlet air relative humidity would be offset by the maximum purge rate, and therefore would result in a net decrease in the thirty day thyroid dose, i /scl:1209:15
ENCLOSURE C (conthood) D:s:d upon tha extt m:ly cons:rvativa cssumptions used in the boundin0 oad condition l analysis, as well as an ovaluation of the safoty significance of the de g this load condition, Commonwoalth Edison has concluded that the C $radod volta 00 of EF System heator design is satisfactory to moot the design function of maintaining the dose to control room operators less than GDC 19 limits. / sci:1209:10 .}}