ML20076A990
| ML20076A990 | |
| Person / Time | |
|---|---|
| Site: | LaSalle |
| Issue date: | 04/25/1979 |
| From: | Delgeorge L COMMONWEALTH EDISON CO. |
| To: | Parr O Office of Nuclear Reactor Regulation |
| References | |
| NUDOCS 7905070393 | |
| Download: ML20076A990 (64) | |
Text
r C:mm:nwr:lth Edi=n
~
Cne Fnst National Plaza Chicago. Ilhnois Address Reply to: Post Office Box 767
. Chicago, Ilknois 60690 April 25, 1979 Mr. Olan D.
Parr, Chief Light Water Reactors - Branch No. 3 Division of Project Management U.S. Nuclear Regulatory Commission Washington, D.
C.
20555
Subject:
Reevaluation of Equipment Qualification for Seismic and Hyd,r_od.namic Loads -
LaSalle County Station Units 1 and 2 NRC Docket Nos.[50-372 nd 50-374 Reference (a) :
R.
S. Boyd letter % p,,B.
Lee, Jr.
l (N
dated February 23, 1979.
b
Dear Mr. Parr:
In response to the discussion and request for information contained in Reference (a), Commonwealth Edison l
has participated along with the other designated " Mark II Lead Plants" in discussions with the NRC. Staff to resolve the -issues raised in the referenced letter.
A meeting was held on April 10, 1979 with Mr. R. Bosnak and other members of the Mechanical Engineering Branch, as well as Mr. A. Bournia of your staff to review the approach proposed to be taken for LaSalle Co6nty and the other Lead Plants to resolve the issue of dynamic qualification.
A j
')
After lengthy discussion, the utility position with
(,
which Commonwealth Edison agrees, was summarized as follows:
1.
Much of the qualification review is now complete.
A.
The BOP equipment evaluation for the three lead plants is nearing completion, with IEEE-344 (1975) as the standard.
B.
All NSSS equipment has been evaluated against original design criteria.
g s
7905076373 0
E
t Mr7 Olah D. Parr, ChiefCcmmnnwsalth Edissn April 25, 1979 Page 2 c.
Although the record search has not been completed, it is judged that much of the NSSS equipment can be shown to meet IEEE-344 (1975) by reference to qualifica-tions on equipment in other product lines.
D.
In-Situ testing is currently planned for both Zimmer and LaSalle County Stations.
These tests should preclude the need for further in situ confirmatory testing.
2.
An audit of the General Electric dynamic qualifica-tion records for NSSS equipment should be conducted s
as soon as possible:
(A) to verify to the satis-
)
faction of the NRC Staff that the requirements of
~'
IEEE-344 (1971) have been satisfied, and (B) to determine what additional effort is required.to complete the reevaluation of the NSSS equipment.
3.
The lead plants will transmit to the NRC a list of all Category I equipment by April 25, 1979, identifying which items are required for safe-shutdown, based upon the scenarios submitted on the individual lead plant dockets (See Attachment).
4.
The lead plants are dedicated to the prompt resolu-tion of the issue of dynamic qualification.
In this regard the lead plants judge that reasonable
/
h requirements in advance of receipt of an operating license would be limited to:
-/
A.
Demonstration that BOP equipment satisfies the 1975 standards.
B.
Demonstration that NSSS equipment satisfies the l
1971 standards.
C.
Identification of those NSSS components which meet the 1975 standards by reference to other components qualified more recently.
D.
Identification of a defined action plan, with schedular milestones for the reevaluation of the balance of NSSS equipment.
l
, - ~ -
7 Mr.' Olad D. Parr, Chief Cemmonwealth Ediscn
, April 25, 1979 Page 3 E.
Demonstration of utility commitment by com-pletion of those milestones scheduled prior to fuel load.
Specifically, the balance of plant equipment has been revicued against the IEE E 344-1975 criteria.
The results of that review are included in Table 3.9-37 of the LaSalle FSAR.
This evaluation is continuing; it is expected that additional qualification data will be provided as it becomes available.
The loads against which the equipment were evaluated includes those utilized in the MK II containment evaluation (Table 3.9-25) as approved under the Kennedy /Newmark criteria for structures, f
piping systems, and equipment.
These include the seismic and
(
hydrodynamic loads outlined in Reference (a).
For LaSalle, the NSSS "new loads" assessment has been completed, and these same MK II-approved loading combinations were used to assess the adequacy of the NSSS equipment.
The NSSS equipment was qualified to the IEEE 344-1971 criteria as a condition of the purchase specifications prior to the promul-gation of the 1975 standard.
Subsequent to the definition of the hydrodynamic loads and an acceptable load combination scheme, the LaSalle NSSS equipment, RPV, and piping were re-evaluated.
Although an entire records search of the results has not been completed, it is believed that all of the NSSS equipment meets the 1971 criteria and that most of it can qualify under the 1975 criteria by reference to BWR-6, BOP,
('#)
or other vendor qualification efforts on similar equipment.
The audit of the NSSS equipment records to be conducted the week of May 14, 1979 at San Jose will validate the qualifica-tion basis via the records and identify what, if any, additional qualification efforts are needed.
The LaSalle FSAR includes NSSS seismic qualification data in Tables 3.9-2 through 3.9-22 and in Table 3.9-37 for mechanical equipment; for electrical equipment and instrumentation, the seismic qualifi-cation summary is shown in Tables 3.10-1 through 3.10-4.
Corresponding text in FSAR Sections 3.9 and 3.10 explains these tabular summaries.
To further assist the NRC Staff review, the following additional information is provided separately:
t
f 1
Commonwealth Edison Mr. Olan D.
Parr, Chief April 25, 1979 Page 4 1.
The compilation of bounding floor response spectra for the MK II approved loading combinations covering the locations where seismic category 1 equipment is mounted.
2.
A list of all seismic category 1 equipment (See Attachment).
3.
The LaSalle safe shutdown scenario included in Amendment 45 in response to Question 111.74.
a Upon the conclusion of the NRC audit of NSSS equipment scheduled for May, 1979 and the other information delineated above, the NRC can proceed with the LaSalle County SQRT audit without further delay.
Furthermore, it is judged that a management level meeting with the NRC should be scheduled for May 1979 after the NSSS audit in order to better define the scope of the reevaluation process.
Your assistance in setting a date for such a meeting would be appreciated.
If you have any questions, please direct them to this office.
/
Very truly yours,
(./
g.
L. O. DelGeorge Nuclear Licensing Administrator
1 LA SALLE COUNTY STATION I
\\
\\
\\.
LIST OF B0P SAFETY-RELATED EQUIPMENT 1
1 O
O k
1
)
1 1
1
f
[!!
j i-
']
QA I ATION M UIRED TAG NOS.
EQUIPMENT NAME LOCATION F
po METHOD INSPECTION
.(D W r
/PM0lJ, to 07J, Main Control Boards -Dynamic Analy-Aux. Bldg.
Yes 10J,13J,16J sis 768'-0" 1
0_PMllJ,12J j
j 1PM0lJ,Q4J Door & Closure Con-Dynamic Analy-C,0 L D.
Aux, lud g.
Yes j
1H13-P601,604, necting Sections 5ts 768'-0" 607,636
- 4 G.E. Type 180 Ver-Test:
Single j
tical Indicator Axis, Single 1
Frequency Westronics MllE Test:
Single Aux. Bldg.
Yes Temperature Re-Axis, Single 7,6 8 ' - 0 ",,
corder Frequency
~
b G.E. Type SBM Con-Test:
Single Aux. Bldg.
Yes
)
trol Switch Axis, Single 768'-0" Frequency G.E. CR2940 Push-Test:
Single
'su x. B l d g.
Yes button & Selector Axis, Single 768'-0" Switches Frequency L
G.E.
ET-16 Indi-Nux. Bldg.
Yes cating Lights 768'-0" Westinghouse Type
)
FT-1 Test Switches i
k Westinghouse Type lux. Bldg.
Yes b3 S-14 Lamps 768'-0" J
G t
1DCOlE 250 VDC Battery Test:
Bi-Aux. Bldg.
Yes l
Axia)., Multi-710'-6" 1
Frequency, p
1DC07E,14E 125 VDC Battery Random Motion colp Aux. Bldg.
Yes v
~
lk,1B 731'-0"
' I f
1DC31E to 34E 24 VDC Battery lA,B Aux. Bldg.
Yes C,D; 2A,B,C,D 749'-0"
'ODC04E 250 VDC Battery Aux. Bldh.
No '.
Charger Spare Test:
Bi-710'-6" l
Axial, Multi-ODC17E 125 VDC Battery Frequency, Aux. Bldg.
No
(
Charger Spare Random Motion 731'-0" i
A u x. B l'd g.
Yes 1DCO3E 250 VDC Battery 710'-6"
)
Charger 1 i
L N
w.,.-.=-------------------
1-_.
TAG NOS.
EQUIPMENT NAME LOCATION QUALIFICATION RE UIRED METHOD SH U T DOV.'t]
INSPECTION
~
1DC09E,16E 125 VDC Battery Aux. Bldg.
Yes Charger lA&lB 731'-0" 16E Not Mounted 1DC35E to 38E 24 VDC Battery Aux. Bldg.
Yes Charger lA,B,C,D 7 4 9 ' - 0
I G.E. Type AB40:
Test:
Single Aux. Bldg.
Yes Synchroscope Axis, Single 769'-0"_
Voltmeter Frequency Ammeter Wattmeter Varmeter l
Westronics Type Aux. Bldg.
Yes 768'-0" 511E Recorder Leeds & Northrup Aux. Bldg.
Yes 768'-0" Freq. Transducer G.E. Type JVA-0 Aux. Bldg.
Yes Transducer 768'-0" Westinghouse Type Aux. Bldg.
Yes 768'-0" 3G Relay Scientific Columbus Test:
Singic Aux. Bldg.
Yes AMP Transducer Axis, Single 768'-0" CT-S10A2 Watt Trans Frequency ducer XL31KSA2 I
I Type'XLV51K5A-2-4 Var. Transducer G.E. Type DSW-63 Aux. B3dg.
Yes Watthour Meter 768'-0" G.E. Type PD-55F Aux. B]dg.
Yes Printing Demand 768'-0" Meter G.E. Type C16 Clock Aux. Bldg.
Yes 768'-0" G.E. Type SST-3 Aux. Bldg Yes Totalizer 768'-0"_
G.E.
Type MR-3 Aux. Bldg Yes ISO. Relay 768'-0" G.E. Type S-7 Aux. B]dg Yes Current. Sens. Re-768'-0" 3ay
t OAI A
ON I
LOCATION O
tad NOS.
EQUIPMENT NAME o
INSPECTION METHOD g g g.T o os.p; Aux. Bldg.
Yes G.E. Type R-10 768'-0" Load Relay Westronics MllE Temp. Recorder Yes Nestronics T4E Recorder 1PA13J,14J NSSS Isol. Logic Aux. Rel. Cabinet Aux. Bldg.
Yes LAP 01E,02E, 6900 (7-5 KV) Vac.
08E,09E Switchgear (1511RS. G:
" ole,08E" 710'-6" (I.T.E. )
"02E,09E" 1
D 731'-6" I
LAP 03E,04E, 4160 (4.16KV) Vac.
coLo Aux. Bldg.
Yes f
0 4 E 7 E '- 5 "
05E,06E Switchgear (I.T.E) 0 6E 731 '-6 "
1 Non. Seg. Phase f
Bus Ducts 0,lDG0lK Stewart & Stevenson Dynamic GOLD iux. Bldg.
Yes Standby Diesel Analysis 710'-6" Generator l
0,lDG02JA, Generator Engine Test:
Bi-colp lux. Bldg.
Yes 02JB,03J, Control Panels Axial, Multi-710'-6" Frequency, g
Random Motion 0,lDG04J Transformer Panels Test:
Bi-COLO Tux. Bldg.
Yes Axial, Multi-710'-6" Frequency, Random Motion Aux. Bldg.
Yes 0,lDG01A Diesel Generator 710'-6" Cooler Tux. Bldg Yes 0,lDG01D Diesel Silencer 710'-6" ODG0lP Diesel Cooling Tux. Bldg Yes 710'-6" Water Pump
[
p;a ;a:m u.-
t g
QUALIFICATION REO RED TAS NOS.
EQUIPMCMT NAME I20 CATION I'
METHOD INSPECTION SHUTooWtl 0,1DG0lS Diesel Air Com-Aux. Bldg.
Yes pressor 710'-6" 0,lDG02F DG-0 Intake Air Aux. Bldg.
Yes Filter / Silencer 7.10'6" C,lDG05J Standby Eng. Ter-coto Aux. Bldg.
Yes minal Box 710'-6" 0,lDG06J Standby Exc. Fld.
COLD Aux. Bldg.
Yes Terminal Box 710'6" 0,lDG07J Standby Gen. Sp.
co t p Aux. Bldg.
Yes Htr. Terminal Box 710'-6" O
Eagle Timer-HP5 Test:
Single Series Axis, Single Frequency LAP 19E,20E, 480 Volt Unit Test:
Single
, c o t. D tiu x. Bldg.
Yes 21E,22E Subs tations (G.E.)
Axis, Multi-
"19E,20E" Frequency 710'-0" Sweep "21E,22E" 731'-0" Yes 1000 KVA Dry-Type Test:
Bi-f'ux. Bldg.
No Transformer (480 V Axial, Multi-19E,20E" Unit Subs. Transf.)
Frequency, 710'-0" (G.E.)
"21E,22E" 731"-0" q
LAP 71E RX Bldg. 480 Vac.
Test:
Bi-co t.o Reac tor No PP Axial Single 31dg.
Frequency 761'-0" LAP 72E,732,80E, Aux. Bldg. 480 Vac.
Test:
Bi-COLD Aux. Bldg.
Yes 81E Motor Control Center Axial, Single "72E,73E" Frequency 710'6" "80E,81E" Yes 731'-0" 1AP75E,76E,78E, RX. Bldg. 480 Vac.
Test:
Bi-Col.D Reactor 82U,83E Motor Control Center Axial, Single 31dg.
Frequency "75E,83E" 75E No 740'-0" "76E,82E"
'Yes 710'-6" "78E
.Yes 8 2 0 ' -- 6 "
l
7 ae=-~.
. -. - - ~
. = =.
- =
p _ _
aw..z
^
^
LOCATION I'
TAG NOS.
EQUIPMENT NAME
- o p' METHOD LNSPECTION st40TDOVhl Test:
Bi-Aux. Bldg.
Yes 1DC02E 250 VDC Distr.
n Bus. 1 Axial, Single 710'-6" Reactor
.Yes 1DC06E 250 VDC Motor Bldg.
Control Center 694'-6" hux. Bldg.
1DC08E,15E 125VDC Distr. Bus 08E lA,B 710'-6" Yes 15E 710'-O" Yes 7CllE,13E 125 VDC Distr.
. COLD llE
.?
Yes l
Panel 1DC39E,40E 48/24 VDC Distr.
Aux. Bldg.
Yes 749'-0" Panel OPM17J 138 KV Control Panel g
1PLF5J,6J Supp. Pool Temp.
Monitoring i
1PLF7J,9J Containment Mont.
System ESS-l&2 j
"PLl7J Standby Gas Treat-Reactor No
{
}
ment Control Panel Bldg.
786'-6",
1633-S301,302 Recirc. Motor (A&B)
Combined Reactor No Elect. Penetration Static Analy-Contain-sis & Dynamic ment Analycis 786'-6" 1C51-S301 to Neutron Mon.
Min. Nat.
No S304 NA Elect.
Freq.=7.7 Hz 1Cll-S301 to Penetration Test:
Proof L
S304 Test of Bush-ing Included 1AP96E to 99E Low Volt. Pwr. (A&D:
No Elec. Penetration lLV94E & 95E Instru. (A to B)
No Elec. Penetration &
LV Contr. (A to D)
Elec. Pen.
t
.,w.. u.
u ~~
L.= ='- --.
a -. - + - -
z.- -.. - - u,,; :.. _.,
i i
^
'^
QUALIFICATION REQUIRED LOCATION FOR TAG NOS.
EQUIPMENT NAME po p, INSPECTION METHOD SHUToovh4 IVPOSE to 10E Cont. Vess. Per-Static Analy-sonnel & Escape sis Min. Nat.
Locks Lighting &
Freq. From i
Com. Pen.
Search Test l
37.4 Ilz
=
OPL15J,16J, IIVAC Control' Static Analy-Aux. Bldg.
Yes 42J,43J, Panels sis (Rigid "15J,16J, IPL27JA,B Free Standing Panels) 42J,43J, OPA09J,10J Dynamic Analy-786'-6" sis (Flex.
"27JA, Yes Panels) 27JB" Min. Nat.
815'-0" Freq. = 10. 611z "09J,10J" OPLl7J IIVAC Control Aux. Bldg.
Yes 1PL24J,25J, Panels Wall "17J,24J, 29J,30J,31J, Mounted 25J,73J, 32J,33J,34J, 74J" 35J,73J,74J "736'-6" "29J" 710'-6" Yes "30J" 731'-0" Yes "31J" 749'-0" Yes Reactor Bldg.
"32J to 35J l
l 690'-0" Yes Time Delay Relays Test:
Bi-Agastat Model Axial, Multi-7012AD Frequency, Random Motion Control Relay G.E. Models IIFA51A49 IIMAllBll c
Control Switch SRM Model,103 h
(G.E.)
Differential Pressure Switch Solon Model 7PSllADW
(
AvAIbAUI'b QUALIFICATION REOU1'JED TAG NOS.
EQUIPME" NAME pdd' LOCATION FOR METHOD
[NSPECTlON
.>u o'r c o vit4 Love Controller Model #54 Pressure Switch Solon Model 7PS RTD Weed 6 01 A C-6 1 Limit Switch By NAMCO I
Damper Motors I.T.T. AH95 & 91 Smoke Detect;or Pyrotronics Model CDA-2 Chlorine Detector Wallace Mernan Model 15-125 Temperature Switch United Electric 300 Series 103 Solenoid Valves ASCO 8320
{
)
Low Range Diff.
Pressure Transmitter Hays 252A Power Supplies Kepco PCX-72-03 Thermocoule Alarms.
Transmission 610A Pressure Gauge Dwyer 2000 Signal Invertors Rochester SC-1300
& SC-300 Clec. I!umidstat Penn W-43A
p aa..e I,t 1
1
^'
^
LCCATION
(
TAG NOS.
EQUIPMENT NAME po INSPECTION METIIOD 33,g7ggyp; 4
l SCR Controller Rubicon Series 425 High Temp. Stat.
Penn AL9 High Temp. Indicator G.E.
pB40,4-20 mrdc Resistance Temp.
Det. Powers 981-661 981-344 Elec. Humidity Transmitter O
Pilot Lights G.E.
11-3500 Control Rm.
Opposed Type, Static Anal-HVAC, D-G Rm.
Butterfly, Gravity ysis Vent, Elec.
Shutter Dampers Equip HVAC, Labora tory 11VAC Rad'te Facil.
HVAC, P. C. HVAC Reactor Bldg.
IIVAC,ESSC Equip Cooling HVAC Damper Opera-TEST: Bi-Axia) tors Multi-f regtency random motion I
l Suppression l No
_E12-D301A,B,C 24" Suppression Static Coeffi lE21-D302 Suction Strainers cient Analy-Pool lE22-D302 sis co t.o 1PT-CM055 Pressure Trans-Test: Bi-Axia l Local No 1PT-CM056 mitter 'Rosemount' Multi-Fre Models ll51DPSA &
- quency, ll52DPSA Random Motion
~~
lLSDO-003,004, Liquid Level Con-Test: Bi-7xia:
Local No j
010,011 trol 'Magnetrol' Multi-Fre-l OLC,DO-003,004 Model A153
- quency, Random Motion lLSII-HG0 24 Liquid Level Con-Test: Bi-luia]
Local No lLSL-HG025 trol 'Magnetrol' Multi-Fre-Model 291 quency Random Motion
OUALIFICATION RE t I ED TAG NOS.
EQUIPME:,
I.' AM E LOCATION Ort METilOD
_pg,,y
- NSPECTION Differential Pres-Test
- B i-Ax ia l Local No Gage 'ITT-Barton' Mu] ti-Fre-Model 227-00984 quency Random Motion 1G33-D300A,B,C 2" Diesel Oil Sys-Static Coeffi--
Diesel Yes 1D009M,10M tem Strainers cient Analy-Generator nis Room Na t. Freq. =
206 IIz lIN09MA,B Instr. Nitrogen Local No Manifolds lE51-D300 Supp. Pool Suction supp. Poo)
No Strainers 9
a002T 30,000 Gal. Diesel Static Coeffi Aux. Bldq.
Yes Fuel Storage Tank Nat. Freq.
710'-6" ~
- 17. 27 IIz
=
OD00lT 40,000 Gal. Diesel Static Analy-Aux. Eldg.
Yes 1D00lT Fuel Storage Tank sis Nat. Freq 710'-6"
= 195. 2 IIz OVCO2AA & IsB C.R.
Coil Cabinets Static Analy-Aux. Bldg.
Yes OVE00.AA & AB Itux. Elec. Equip, sis for IIcat 786'-6" Rm. Coil Cabinets Exchanger Com -
ponents Nat. Freq.
= 34.5 Hz Airfoil Dam-I pers:
Test: Bi-Ixia ]
Multi-Freq.
Rand. Motion 4
lVY01A to 04A CSCS Equip. Area Static Analy-COLO Reactor Yes Cooling Coil Cabi-sis for IIcat Bldg.
nets Exchangers 694'-6" Com'>cnents Cab'inet Nat.
Freq. = 35.7H e Airfoil Dam-pers:
Bi-Axial, Multi-Freq.
Random Motion Test lVG0lS SGTS Equipment Trail Statis Analy-Reactor.
(Filter Units) si s !!in. Nat.
Bldg; Yes Freq. n 2 1 11:
820'-G"
o QUALIFICATION RE
's tED TAG NOS.
EQUIPMENT NAME LOCATION INSPECTION METHOD g,4g.y99,3p; IVG01C,02C SGTS Primary Fan &
Static Analy-Reactor Yes Cooling Fan Nat. Freq.
Bldg.
= 4 5 IIz 820'-6" lVG01A SGTS Elect. Iltg.
Coil HEPA Filters static Analysir i
n n
Cnarcoal Absorbers static Analycit i
Deluge System Static Analysir Moisture Separator Prefilter Temperature Indi-cator Mounting Tenperature Switch Pressure Differen-Test: Single tial Transmitter Axis, Single
'Rosemount' Preg.
Model 1152 Pressure Differen-tial Switch Temperature Trans-Test: Single mitter ' ilos emoun t !
Axis Single Model Freq.
OVC0lSA,SB Control Rm. HVAC Static Analy-Aux. Bldg Yes Emerg. Make-up Fil-sis Min. Nat.
802'-0" ter Unit Freq.=25 Hz I
IC03CA,B Control Rm. HVAC Emerg. Make-up Air Fan OVC01FA,B Control Rm. HVAC 3tatic Analysis Aux. Bldg.
Yes Supply Air Filter Min.
Unit
!at. Freq.
786'-6"
= 29 Hz Charcoal Adsorber Deluge System Profilter Pressure Differen-tial Switch
TAG NOS.
EQUIPMENT NAME QU A
N
[
LOCATION I'
D METHOD S HUTDO 4 tJ INSPECTION Aux, Bldg 3 Yes OVC01AA,B Control Rm. HVAC 802'0" Emerg. Make-up Air a
Filter
\\
HTG Coil Electric Heater Prefilter Moisture Separator Hepa Filter Charcoal Adsorber Cooling Fan Deluge System S ta tic Analysir Temperature Indica-tor Mounting Temperature Switch Pressure Differen-tial Transmitter Pressure Differen-tial Switch OVE0lFA,B Aux. Elec. Equip.
Static Analysis Aux. Bldg.
Yes Rm. HVAC Supply
'4 in. Nat. Free Air Filter Unit
= 28.2 Hz 786'-6" x
Charcoal Adsorber Deluge System Prefilter Pressure Differen-tial Transmitter Pressure Differen-tial Switch OPLB9JA&B
' V C, ' V E ', ' V G ' SYS Aux. Bldg.
. !k)
Filter Trains A&B Pot Power SPLY 786'-6" Panel IVR08Y to 14Y Steam Tunnel Check Jampers:
Reactor Partial In Dampers & Limit Static Analy-Bldg.
No Control Switches sis Min. Nat.
'NAMCO' Freq. = 309 Hz 696'-9" Switches:
single Fre-
- Iuency, Bi-axial Test
%~
A ION y
D TAG UOS.
EQUIPMENT NA'iE LOCATION Ot MET!!OD
,g g
INSPECTlON lVG04Y Isolation Dampers static Analysis "cactor lVQO3Y Fan Check Dampers Min. Nat.
Bldg.
No OVE027Y,029Y Freq.
578 Ilz 820'6"
=
OVC043Y,045Y OVC0lYA,B Tornado Check Static Analysis Control "ot In-Dampers
'4i n. Nat. F m'.
Room Aux.
stalled
= 358 Hz 31dg.
786'-6" Yes Aux, Bldg; 786'6" Partial In IVR04YA,B, S.C.
Isolation Not In-05YA,B Dampers stalled Do VT79YA,B,C Steam Tunnel Check l
I Dampers Solenoid Valves With Yes Dampers Actuators With Yes Dampers IVY 01C to 04C. CSCS Ventilation Static Analysir Reactor Fanc (Horizontal) stin. Nat. Freq.
Bldg.
= 61.9 Hz 694'-6" Yes OVC01CA,B Control Room HVAC Static Analysis Aux. Bldg.
OVCO2CA,B Ventilation Fans kiin. Nat. Freq.
Yes OVC04CA,B
= 54.8 Hz 786'-6" 802'-0".
" VD03 C, 0 5C,07 C D.G. Vent Fans Aux. Bldg. Partial In 687'/
Yes 736'-6" No OVEdlbA'B Aux. Elec. Equip.
Aux. Bldg.
OVE02CA,B Room Vent. Fans 786'-6" OVE03CA,B 786'-6" Yes l
802'-0" lVX01C,04C ESS SWGR Rm.
Aux. Bldg.
"01"
-j Vent. Fans 710'-0" Not In I
731'-0" Yes IVY 05C,06C' CSCS Vent Fans Aux. Bldg.
736'-6" Yes l
=
b
^ I '^
2 AUALIFICATION REQUIRED LOCATION FOR TAG NOS.
EQUIPMENT NAME pg METilOD tHO fDM INSPECTION t
0,lVD01C, D. G. Rm. Ventilatia:dtatic Analysy Aux. Bldg.
OVD03C Fans (Vertically
- lin. Nat.Freq.
Mounted)
= 65.6 Hz 736'-6" Yec No lVX02C,03C, ESS SWGR. Pm. Cen-Static Analysir:
Aux. Bldg. "05C" Not 03C,06C, trifugal Fans
- 4in. Nat. Preg.
710'-0" Installed 05C
= 59.4 Hz 749'-0" Yes 731'-0" Yes OVD02C D.G. Vent. Fans Aux. Bldg.
No lVD02C,04C 687'-0" No 06C Yes Not In IVX07C ESS.SUOR. Rm. Fan DVP02CA,B Primary Cont. Vent Supp. Fan OVE02AA,02AB Aux. Elec. Equip.
Dynanic Analy Aux. Bldg.
Yes Room Air Cooled sic Min. Nat.
802'-0" Condensing Units Freq.
= 28.7 Hz OVC 0 3I., B Control Rm. !!VAC Air Cooled Con-densing Unit OVC05CA,B Control Rm. HVAC Aux. Bldg.
Yes Refrig. Liquid Re-802'-0" ceived
{ gVE04CA,B Aux. Equip. Ra.
Aux. Bldg.
Yes F
HVAC Refrigerant ~
802'-0" Receivers 1
Refrigeration Com-Test:
Bi-Aux. Bldg.l Yes pressor / Motor &
Axial, Multi-802'-0" Control Panel Unit Frequency, Random Motion OVC0lTA,B Control Rm. HVAC Refrig. Liq. Re-ceiver
G ALIFICATION RE U1 RED TAG NOS.
EQUIPMENT NAME LOCATION I R METHOD INSPECTION SilVTDovhl OVE0lTA,B Aux. Elec. Equip.
Rm. HVAC Refrig.
Liq. Rec.
\\
Opposed Type Dam-Siraplified All Partial In pers, Fire Dampers, Dynamic Analy-Gravity Shutter ris Dampers & Grilles l'in. Nat.Freq.
(Zack Co.)
= 4.9 Hz.
Dampers Teste l
Also: Bi-Axial, Multi-Freq., Ran-
~
dom Motion i
Humidifiers, De-humidifiers, Duct' All Partial In Silencers, Air Fil-ters, Expansion Valves, Liq.
Solenoid Valves, Hot Gas Bypass Valves OD00lP Diesel Oil Transfer Dynamic.Araly Aux.
Yes 1D00lP Pumps
' sis Nat. Freq.
Bldg.
= 81. 4 Hz 663'-0" ODG0lP D-G Cooling Stadc Analysi' COLD Aux.
Yes Water Pump Nat. Freq.
Bldg.
= 47.9 Hz 710'-6"
~
l l
1DG0lP D-G Cooling Static Analysi Aux.
Yes Water Pump Nat. Freq.
Bldg.
= 46.1 Hz 673'-4" lE21-C002 LPCS Waterleg Pump Statdc Analyds coup' Bldg.
Yes Reactor lE22-C003 HPCS Waterleg Pump
- Ja t. Freq.
lE12.C003 RHR Waterleg Pump
= 52.8 Hz 673'-4"
~
lE51-C003 RCIC Waterleg Pump 1FC03PA,B Fuel Pool EmergencyStatic Co-Reactor Make-Up Pumps efficient Bldg.
Yes i
Analysis 673'-4".
Nat. Freq.
= 24.96 Hz lE12-C300A RHR Service Water Static Analysis COLC)
Reactor Yes j
to D Pumps Fia t. Freq.
Bldg.
]
= 47.9 Hz 673'-4" 1
AVAILABLP' QUALIFICATION REQUIRED TAG NOS.
EQUIPMENT NAME po g LOCATION FOR INSPECTION METHOD g.,.I' O D'M YOG ODG0lF Diesel Cooling Jynamic Ana]y*
COLO jiegel c;p-Water Strainer 3is 736'-6" lE22-D300 HPCS Diesel Cooling 3ynamic Analy-co t.O Yes Water Strainers sis
)ieselG;R; 673'-4" 1.
I lE12-D300Af6 RHR Service Water Jynamic Analy-coto Diesel ~GlR; Yes Strainer ais 7 36 '-6't G01F Diesel Cooling Dynamic Analy-Diesel G.R' Yes 756'-0" l
Water Strainer als Di
.R.
Yes OD002T Diesel Generator Dynamic Analy-f.
OD005T Day Tanks sis Diesel G.R.
Yes 1D004T HPCS Diesel Oil Jynamic Analy-Day Tank sis
. c ', 's 760'-6" lHG01A Post-LOCA Hydrogen TEST:Bi-Axia]
[
recombiner package multi-frequ-
}
ency, random 1PA12J Control Panels for motion sine Aux. Bldg.
'No j
1PLF3J hydrogen recombiner beat super-768'0" imposed 1-10 Hz l
l IL76J,77J Post-accident P.C.
Reactor.
No monitoring panels Bldg.
786'6" i
1PL78J,79J PAPC humidity Paact. Bldg.
No monitoring panels 786'6" O PM lC7,',G3" Control Rm. radi-React. Bldg.
No ation monitor 768'-0" _
Aux. Bldg.
No OPL58JA,B SGTS vent monitor 615'-0"
' lD18-K751A,B,C,D monitors React. Bldg.
No 1D18-N451A,B,C,D Area radiation 768'0" Strong motion Cont. Bldg.
Yes seismic instru-673'4" to mentation 843'-6" React. Bldg.
731'0" Aux. Bldg.
731'0" j
. l _. __._ _ :
QUALlP3 CATION REQUIRED TAG NOS.
EQUIPMENT NAMM LOC ATIO::
FOR peg McTHOn msescTion SuyTooWI Vntvch'TM I O21-F36G d Lo c,e i B21-F3s1A,3; i
Gi_o e.e Vnue dfwW) y9 gcy iBzt - Foao 3n Gi oe,e Vnt.v6 Mfy[> set age.:
STr\\ Tic I)N f d.YMS l
g g ett 1 B21 - F4tB R.B 1S" Cvnrc Vntve [of,;f) tPCoo: A tn E 30" vncuan 1:a3. r vrq%ef) -
L.PCG S 'rsTC.%
6" RuR SmM g
gj,3e u% gity s'qtyg o
Rr Sy srtir4 pursa N %tTg.
1" I M Ol?- -
'3 z" Comos. Wtve/no
((,,).Crf.'L.
1 RE 014.02s g
g y,,,,c o N 00!A,b 2.5" CoWmot. WtxE/60 h te h A ua m n i
_ i2 - Fo ss A, B 4" cournot_ VowG/Ao i REoz 0,o 2.?
I" CowTRot \\'AtvE / AO 1833 - FoL9, zo 3/4" deurnoi. \\/at.ve/Ao STAT'c A" ^'"5 t E tz - F32.7 A,B.C.
t E zt - F333 t E22-Fas4 i E 51 - F351,M5 i Est-Foo^, co 5, 2" Codinos. Vm.vc /D.O STnric nlir,tysis oss IEtt-T osi A,B G" comos. Vatv5 /Ao STmic Ent.vsis IC41 - Fot7 1.5" Mmmtcyr 6%S=[st,yne Anatysis
'N ot7, o74,075 2" ConTRot VALVE (AO[
~
t I
d SL -Pc15,c16 W67. -i'o t9 A B.C.
(C91-Foo'4.8 )
", Tact <tEss Coo 36 \\IALV65 002.0,3 Ol'l %
OV F4h g/h4 3 2 l Fo7o,o 72,_
(bfa/ftyk) )
~
1 9
OlIOo0%,CBS Rt.M Tc4 SEc io t.,
%'t 1"
{ " 2 b cute 55 0
8 ST ota BY t.10. C oor.,
RHR,tT C 5, H POS,1 Cr i.oM V6LVE5 R6AcroR coae Isot.
Com.m sypms l 82.s-Fou A u b 3/q" c wees VntvEs R hR, tC S, MkC5-3/q" E<rt.. Ceicca \\.'otvcs 2Cm. tor WATCR Cuom.uP, EncTeo.
Ect tPO., P.C. Ib ME,
Coor. Mcent:R u n.
<.v n t ms
,~
NYAIb^ UblI QUALIFICIsTlON REQUIRED tis 0 NOS.
EQUIPMUNT NAME LOCATION FOR p
MPT!!OD E
INSPECTION S hut D w.J f4 Ea-Fo24 AB tV" Gtoc=
% V'S ht A"^*-
p (6;g ch=g.3 Mr Vm \\2sH2 G*D 1 GC 03 7 20" C <wre \\'u6 (t%:n't60 51D H C.
O & LY t'5 t s tW. FM Q. - 9 2. t 4 7_
t Eat - Foot z : Gnte wt.ve 0aa ud mot ^" 6
- 5 g,q _ p o04)hC,
'M T. FREQ = fo!Ill DC
_.I b l 2. - FOM A,3 ;
t$" G g7g \\lptw (no w o d r
M6r. N f0.5 1 C S H,-
gg; g
, g,
,g g i bG 00 3, o o 4 io' Gnre Wte vamon ['7p[y,'$fg7 F
I E2 E aii 21.c n nut %.__@s nt i 51 - E o G >
10 CCIT' vfAVE (m(0 cir. F9t o. : K.L 47.
E l ES1 - Fo59 4" Gruc \\'nt.VE (r*c1cR OPS '",*r9eo.z 251M7.
9r
~ 3D lb" Gt.02C hbVG (N.'W6d bM
'W b o
er.uneo.=io n.
,5 % - Ec t o,03\\
B" G ryf f Yr,LVLT (MCir2 OD.) bT6DL OMLWU typT. F T, E Q. : l<ll Q
' 4 " C '2 6 O'* ("ex cd * ^T
A ** 5 t E z) - Foa Ror. FRm.s no Rt I c,bCross,co7 B" G orv W.ws[4/agelj 1 U C-co s,ovt U
\\ G 27. - G s ts,3 2. 5
))
\\
M t - Fav9,ot'-
))
}
}
tGsi Foot. cut,e jo" Grr-P'urr-3 MS/ crc [)
~
iG2.- Fe n A,B.C ;
12" G nt: WtvEs(uffj) j
- v..voz) )
N.
mt Aie.c
' F +7 /w# #
\\
~
wu&< # "~~
IE'et - Foo5 1G21951
-? 1. - v,o ?. 6
))
{4" G-6Te Vats *ES [/fq;qc t r e. o e : a 9 A B p 4 8 Sw=l) t En. - F402.
>J k "
g 9f
/
- w. w iu.. m az 167,,. F
, o b7; te" C are VALUEL hh o ? e A,3. c.
[hftpfung.)
20". s '> % w u nt_t)5 (N0)
Cr n
- Y ^ E C D L. D ten.- C aos,or i,cxJ
~
3 I b 2.5-E O 45 A 3 24" Ovyn*
VALV O O Ih.-j s pc.ta, u s L" Gooc ht.v G 56^Ie,wh
~
t E n.- Fo7o J) i G2i-Fozs, sos
))
e
^'#^
IILC QUA1,1FIC..TIu;;
REC RED TAG NOS.
EQUII'llENT NAME METilOD INSPECTION
,!iCTuoW1{
g DG co9,o2o, on.4 4" GLOBE VA LV65 (/N4#J) o rm.s v
t G z.t - F s n
.))
g E 31 - 1:oit, oG y) h)
tFCotoA,R c," Cto3F b 'GL @'ny 0.19 0 = <.
s" cur.<
vmvos M g t
~
\\E?7.-F?.3 g
IEtt Foo7 ;oo3 A,B, '3 Gs; 75 [/veta()
c;on A,B;on A,
);
B,C)006 (Eu-Fox.coe
)/
iE22. - Foo3,Ot1.026, o 31
'. - Fcos R 3 Q A TC h'/t
4/'u.
9i
- s. It b Zi" O^TC YV65 E 37. -Fcoi A,E,T.M ;
(fTvl'r 07er1 s,,,,. n.m,s t
oo:. A.6,T.M ; oc0; 007 Hrg.FSEo.r7,73 lie I b b C D 7. C'66, O ll,O l 9, 4 g b,ge, o 2.3 bh OCT ' iNf WPt9 f(pjuoY O
cFConew IVC. c ST, n7
))
14C-ooiA C i Bu-FscsA$
ff 1/
&4TE VALVES g,1 - Fov@s.c; Oto/or ore")
~
43;ox kt - I!ott, oS 7.
)j I
t E 2.- F us,3tG,117
)/
y
[yO{e Vk d hyW/W9b I
S$ w + L,/
J 'c*' "
esk nkGy,nD i D C5 0 32, 6
O nTe \\/At.VES lECO90$,I3,047 A,B;
[A'ay4cI) ms A,B ; o.,e A.E ;
o <i7 A,f5 J/
t%~3 c we ywa 640)
~.,
n9,ico /y'o/o,- oper. ;gwat)_
twa t est-vc,z g coreewe
A PICAM ON W D
TAG NOS.
EQUIPMENT NAME LOCATION l'
METIIGD tNSPECT.!Oh
.c o'W 1 E 11 - I'3 o l.,3 e 3 g.;" Gnye Vntye (uwtad M * "?
HN u%
I t BG_cet iCtt-Fuo n.%. H ar. rqca.. G,, ut
^ Gmc %)LR (Mcwn c P.)
s r.*n e M A LY 5 s o DG 009 4
t bG o t \\
v m, u. ru r.
Faca.
t Etx~ F3% A,B;d,Is c::"!
g* 97 C%)h i C 3 2, - F-es.02.7 o
^
! igit poqs Ap 3" Gnve Vn'"5 Den o" rirm5'"s$
COI D I NG Oo 5,T,6 ; C C L,t.g3 6" O M ~ \\*AL 6 5 [M4'70I. C' lSTo riC-M A W 5 *
\\
"^
1 N O 0 07 l't.%r?p t Est-Ect s c" Gs n. Vntvgs c1Tmc nd Wcm 3 0 s,3 - peos,o p4 GromR OP.)
6.R3.sEM N
[ E (2. - Fois A k c.
U" Gav_r Vu e smne c %vse (M G 'M L)
N (it. F R t7.
' t h 5 H ?-
INFO 53 $,13; Cl3 A 3 S " G,stg g/f gve5 SNnc h A W %ss (Norc R oP.)
tier. C R co. = Eb t H'-
EW. ll 5 to C are V^tw s (manuQ
- "C 6"^'"
n M.
GA F Q. = 2. 7 7 d L fo$3, 12," Gore VatJs (/ A w w.'l smnc. AN OWII e r. tcro.- SeWE oDGoot t i," C aire Unt e s O^^% AO sinnt / m n uvsis H f-T. F R E4.
t o t H7-(Ett.- F332A S h 1612. - F33c fr Q IS" G ere
\\'At.VCs (MANund 5 7*UC A " 6'
- S 'S se.. e n ec. '* 2. 4 L
==
1 B 11 - F o u A,B.
2/,t." Gnc V4Lv'55 (Mnxu t 0, snine, t..u.tn:s j
tEtt GomA.bp4 '50 SUdY"bYC#bMiW'
"'* 4 AT CM*-
"TG tlZ.
)
-=
i F C - 14 o g Gil-Per.iA',B ze" Gerv V6'"
(votta ca.) 5"ne ^" ^'v 5's unr.Faca.: to H7 COLD t Et 2.-
F3o2.
2A" C rtTE VAtuf (Monu At\\
55"*
^"^ W 5'*
F. AT. F R EQ. = f=7 N.=
i FC o t7 gz Gm3e vgv; (mun>R or.)
tmn A n6wsis o
NbT. CRCQ.*It'l.NL e,021 3u G eT E WLVES [Ahrfg]
i gq i FC.o34 t SAo4 2..o4ro t Bat-Foic,oi?
g'f 77 %gyg3 [f, tE z2.- F o o 2.
2.s "
stane
^=ousis
'cgc:K V ALV EL e4er. FRro. = 1514 81 o F C 0 3 2.
3 cyecg s/ntvez a
) FC 0 33,oca 2/
~ 'y 1E21-Foc7 D
t E 22 - Poz5 V
o FC o 2.4 4" caccw V4LV E b lNb co7,otG M
I Est - Fozo 8" Cocca Wevrs s -
I F C oi e,,141 i4" cuccx vawes
. _ _ _IElt-Foi' 24" Caect' Vatvcs a-J
_w.
,\\
WAIN E CUALIr.IcaTIog aggp;ngo LOCATION FOR TAG I?OS.
EQUIPMENT NAME p o p, METilOD INSP):CT ION S.id1 D;;Wtl 4
L E C oq.j $,6
(,.
lic u te C 9 Cc < Vatves
(
1E2.?.-)bl9 LO" I4921LO C N Y6LVf5
_Jjth-f W % )
th ueC m Vans
( Ett - Fo si C.
(B"tlon LC CwetK Wtves II N 15/c.)l7 4'4" Gtocc VAtvD(Sykod)
\\YQOb1
))
tE51-f~357 2" P& xtes),,Creng3VAWG (as:n m IEst - Focs,och G
-7*
E=ace m " "-
Sm e-
^ ~ n'mL DMt CueCK vnLVES WitH u rsr. F Re t... t c t o ll!
- ?, t'( H Z An tYumc re, J
}
(I}ir o o t'rh (D i' /
t:c t, v.t y s m gc y,
1617.- Eo41 M O.C 17." - 90cS E > EC0t%w? TILT ic S M tTt
'W " Y5 e
ta Cereg vs.vcs wtTu em 'mrrur.a m c.
1"~ BON tint. rREtc.: I S't 4 7-c vt mes j
s t~VcoG
("? w - F O '* P V )
M Mu"'t**"'
@ C n t. D y M #0dS [, b : ;g" - t S ce*' Ex r[:Enzte smm A*a6tyus g pg. p hf,3 inTsid DSC CHECK Niets B wlTil Nhr.CCQ.* MScH7 islQ CV:-tuf f25 N frt F R Z. s f g.3 4 7.
f f..t M.wa rme. Enacwer l
WOTtTW CcGJ 1 Se' A?- t{
OLME V AWE 5 Cee.u e,
use Osc,c6 4.%, Die m g { G u c s tr
\\ff,w c e,
~
Etc. c. t, R H R, s P0 5 N se. C cu.,1,r?'e w' 2"
GLoee V6We 5 C%en O,s.,pyct t f.o 0. d C s(* *J-te P, P. C.
Comu.,tietc Cas Co.ry.,
Sirioned liq. Ccur,RgR itPCS yses.VAWe Miw
- e.4% L.rM,0.csa w,
{
laerec. cc w be.. C =
c.w s D'E s c.- Ce. SYM1M ik* Ceccg Wtv r5 NCetc. Ce8t r TSn.
7' CitCCR Mt.VCS 8
Ceeu w t, S v s rfN Rt!R,UCS Syste w s
%" StoP C uccx VAo'C5 kiTitic4 EJctne.,RdR %" Noms Cr,ceg WW es
~~
LPCS Sme en Ccee t,c i.. C.n ci..ic. set Rcrnit.rt CenE Iset.
g %g" p onts.Ceccg VAWE5 CecutJG Lye,rC74 De.cs Net oit {
14." facucc Carcx V^tv %
S M N b t.Y Lt q. t c.a to c<.
/
J1LW5 a
IEit - Fc>,,. A,B 4" nmie-b o - :wev.
stTmt m.m sis iq C u eeg V en.v e.,
tur. FREL ' 3 $ 35u 1Est-Feit S" F" Sio " Du o - C ' ex Smne ^ ~ %* 5 Cneeg Vow es urm recr g 7_ g \\l7 g
t thC-r co?.
jo" NOS/
C//6C/C..
Strmt Au%ms Jest - i~od o y/ C P G v.
V AWE 5 N AT. U'.TO.* 21"9 M
....w t
QUALIFICATION ItE'O 1 PED TRG NOS.
' EQUIPMENT NA!!E LOCATION I R METilOD
"'SPECTION "
S Ht.1T p ov/11 t
p 4
1 obc., ooa 17." ' NOS Z.
I STrinc. Aw ALYsis CV.SCR V ALVE".
ngr ; a m.. tm pt tEt2.- F33s Af I c."
A'OS/-
- t '20 4t'a'YS'S eticcK vntVE5 M IN. N A T. FRfQ.*
C()(~ p
' 16?.1 - Foo,3 -
3) is n2 itt ig" STon t Au m.y st s 1 El z. - f.c21 b,3
.)
O'O Clit M VAtNCS t AT. FREQ.n l455tl1 4
gEsL Co2.t;c'. O.
lB" O'o3T Yo'V M [ofd/
C o t, o
~^
g E17 - Fo rf e" C secx
- tves r
i E L2.- I~04b b.E C-
'3 " CNCcd votV65
) Et2. - F s ev. sta A, s " s tt> r Cne u u tvr>
D.C } 36'l
'l )El? - I?o i'l 6" t!otttf Curci.: V6 t.v f 5
?.7 ECES g4" tJor.tte Cwecx VALVO-g gg,9
~
'((%i-Ec:o A,1$
24" NottLE CHecv.
L'At.V CS 1651-Fo45 4" Goose VAives C^!</)
Ne
^*^'N v Ar. 79ta w 7t,. t H 7.
u r,tv d.s~
16 37.
-l>TY m :
G ?.t - Fi o 2.
y?
gig.gic,r. f R CV.' 3'187 i
i lei 2.
Fosz A,8 to" Geone Votves 5
- c " ^' "
min.nar.cA m.*S71R (momq
- y. 3 t E12 --Eos3 A,B 17." G u c. ts W,tvcs SMt Ad StN (marea or.)
A m.toAT.l' M -
COLD
.-_ o,i R7.
1642.-}037I'eb 10" Ot.o0G Y%VCS h/[i Cantees M ?csm.u W" Ct.o2e VotVCS T.a.ce c 2
,u.
s.
Co atnigin o:t M.co m.u., 3/4" Geo3e Votvts f
-.c. Cre.seentt,a,5, l
be.Furt06,Drftp.e.
.en u enM,Tues %s l
C..s.uw & C rr,n.e, P. C.
C.nse w.etir Cc4 Cearre.
P.C. Me,c, Rm:i. Rec,r/
]
4 c.. mes % ve.1%.,
RMR,LPOS,M CS,Les4
~
D E rem o,4,Isot. WtvC Mnin Simn trM. <m%
NtMCfoA Ccstr Let. (CDL..,
j
\\
Remen waren Ctow.ur W8. ire %g
- l 3kk h
Ob)
N (gg(
h(Y h nimem,come.a E est.c., str us e t.io.
r< e to m.
- w. -re.
1 l
b
i O AL]PICATION REG IIRE!)
TAG NOS.
EQUIIHF.NT NAME I,0CATIO!!
I' I ETIIOD INSPECTlON g.7 39 ng J
sTw nem i VP ia R B '-
S.. Burr cto:w vnwC/
e4,,,, e%y. r'a c q.
t!4 A,8 N
"*yj "h
! \\'Q O42.043 '
9" surnare vnt.ve/ reer.
iT Cosq A.B l N2 001,Oo2,003 ZO" OuTTO'rt.f vn u d McTc R O P.
t tUC t 3B
?,o" gevar ty vr.wd/
g rye. c, t'.
'. *?. 1 4.^
16 BuTTOW ty \\'4WJh.gurt.
~~
UI *
^# ~'
ji\\/Q016.017.029,'
2d huYr05W \\InWC[
MnT. FRca.= M. SIR 03 0,0 3 i,0 3 4,ol'.-
MoToa Or, o 3'i'. 0 %,0'40.(4 %
- 2. - F 345 3/4" x 1" (hfue t: Vnt.vc 6TnTec. b4n WsiS
[hs)t-Foi7 moea.s. yxu,yp,a-vn,
Mm. N.nr. Faro.
i FC tos A,3 JRnv-35 o MO H2.
t C.41 - Fo29 A,a o b C. o t 4 i b G o?.4 1 Eiz-F o u ls,B,C.;
t g g
g..u E F \\I LV E ST A1 LC-GIM'YSth u
A
"'"' N'"' * "
mo;oBS A,C-Mouts: IB-36-TB,
" lli M IEat - Fo3t
~g. 7.3 n,rB zs-Tb, 1 D.2. - F ots.o 3 5 IB R K-2.5,T B-2.5-3-Tb, 3 SfW-45 mm 6" ^"Ss IEst - Fote ir x 3" Reucr Vnwc-
" AT N
" 2 3* *'
~ tie,m.Td -zs -VIR gi poig 3" x 4
Reuen Vas.v e Srnne Auntms M o o t._;rj)- w - Tb wir. raeo.= 242.t42 1Et? - Fossa,B ;
4s 6 Ret.ter Vnwe sinne niae.w sts oss A,B u Modets : IS-36-Tb, Mm tJnt rnet.s tiin IB-2.5 -Tb -Wil tEnz - Foos, essa
(" = 2' Retier Vnw' 1DJ o45.o46 Smm mms 1Ddo;.A 2" C-tone Vntvc /So.
[@(3-EObOAf>;
3/4' G'occi Vowe /So-Sinric. Awnwsis e rs A.B Remte h e.&
W" G eoor he A.o.
Ccatg Aisnait-h*6cta ntona rt i
Rcacrom Rccute. 3Rit R, 3/4" G oone Vntve /S.o,
~
LG P.t< DCTCcT,ow,5 76.1% ttt A mtNT li t t *4Mt-s 4
Lt.M D CT C C't t 09 2.
}" CftorE \\lfit.VG / 5.0
- 1WTCiMACMr iliTECG.
AV AI L A llI'
QUAT,lP1 CATION IMOU.T i1ED ThG MOS.
IOUIPMENT NATP.
LOCATION FOlt METilOD INS PL'CTION S 610TDow t Cemt.w veut r,t er e t ' " G t.o u e Ws. e / s.o.
IMG A ;-t"'<s.E ttt.nn.
t bicsc. r m. on.
2" G t.c e s %u.vc /t,,0.
it40 35. os e t" Co urces. Vot vc (Alq,f,,J[
a 19 51 Coss
[Z" Com 7ct., N'GtMG 6\\/
tEg;.i~oo?
Ho ns.c G nx Vat.ve
" "" 5 ' S uii.. Nov. Wro..
II.}k O' S
( 3 G H 7.
2
?!c:. zig. Ciu.m YAWe GTON O** ^W u.s idad. N 4 r. Fa c c.-.
In l\\ t.
18:'.)- Fo% A b 11, Y,(,t" h on Ci.au V6ms STAric rmatnis
.T, ::,t.1, N, P. R.S. y,Q M"3 U#" I"CQ-
.- rey n u t,
= 189 WL.
i h - a w e.. t.c. a.s.o,v s
uA o43. c e
,j 1821-Fnt A e t,
?" ec. au s G ee vnwes s' nt c A n n w sis ~
""'" #^
tEi2t - F Bu. A 12 b, gr,g,g')
iB u - F32A Ab b D
I F.; t < 3 d",2 c.,to n e vt,wes srnric Annwsis a
"'" "^'
F"'
1 B G o17 A.E ; ozo; (feto,Q
= 13E Ill 02)
En mint. w,T t:Ifstop C geeg \\'gg.qs ST6 Tic A+awsss Reneron h.inc.
Mi%. Rot.r m e.
= 13 8 u?.
Z-foo(2
}" sto e coccw WW.'
smne /,,mwsis
\\
gq,a) ein. w. vam.
1% lil
-e i t'.w F t.n i n c,c c. ri. e 4., G'oea Vnwe(g i C si-F ost 3" Gt.oeu vn vc E;--Foot,[
/
T coto I
OYO *'* O/'E ^/
o e,c.9 sua, t re.s, t.tv.
i-.,. l8l tut'2 G t.o Bf.,
a -
o D CTccTioN,Cc. rmia -
2=9' VotVCs In NT rec or,, b-c,,
DtEsc( Uuct Oip,Fuci.
Pc es. Coou./ cten%.up, P.C.C.ce%stietC C,n>
h!.,Lsitwrerr Hir.,
W' RB Clete.l P.C. h u et.:
s te.,Rcrc.
Coot 53 CoR6 Low. Cees.mo.
JNS-E t u.
r C
b
1 AVAILAULE TEG NOS.
EQUIPMENT NAME.
LOCATION pon QUALIFJCATION REQUIRED
- pog, METHOD l'NSPECTION SHOToowil Rct cren Reciae., St"3fj ", j ', l "s {' I" a t*, 2.' =.'."
l Lt c. Cceersten., Ruf,,tfc5, Deue,Lo Ste<wi.ac. VaitVf
, BPC S, rues. Pe.g. (w 3 C A*W -uP,9EACM.
P E f M ATER. P.C.,Ls6 VA'V2 MM9 57%M 1
l~
IJiCd. CulW.ct,4 CcRC h
"C5ct. C m tag h rer4s iCat-F3io
naa. cwac vawe
( Divla d )
W
.J e
I i
4 E
P l
v
-r-,_
+.
vc,.,,e-
.,>r.,.
,y..
.,,..---.,,y_..,.-4
L e
PRELIMINARY
(
l i
SEISMIC CATEGORY I EQUIPMENT FOR LA SALLE, SHOREHAM AND ZIMMER i
NOTES:
Col. 3 " Safe Shutdown Equipment."
Plant initials denote equipment required for shutdown scenario.
Col. 4, " Adequacy to Original Criteria." An "X denotes seismic and hydrodynamic loads adequacy has been verified to original project criteria.
P" denotes such verification
(
is in process.
"AE" denotes components (installed in AE piping) for which capability level has been determined but requires AE evaluation to verify adequacy.
Note that electrical items shipped " loose" (i.e., not mounted in GE rack or panel) require AE evaluation to verify adequacy.
This includes condensing chambers.
e l
l VK:gmm/21G1 s
-y,.
, REACTOR SYSTEM
)
SAFE -
ADEQUACY T0 l
SHUTDOWN ORIGINAL I
MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA Bil A001 REACTOR VESSEL
.X B11 0001 SHROUD X
B11 0003 CORE SUPPORT X
Bil D146 CONTROL R00 DRIVE P
B11 0147 CONTROL R0D P
l Bil D193 POWER RA.NGE DETECTOR X
B11 D233 JET PUMP P
O'
'd B11 D234 JET, PUMP P
B11 D235 JET PUMP INST PENET SEAL P
B11 U001 REACTOR VESSEL SUPPORT X
B11 U002 R.P.V. STABILIZER X
Bil U004 CRD HOUSING SUPPORT X
B13 0003 REACIOR VESSEL X
B13 D004 CORE STRUCTURE (TOP GUIDE)
X B13 D006 JET PUMP P
B13 0007 JET PUMP
.P B13 0008 CONTROL R0D DRIVE P
B13 D009 CONTROL ROD P
B13 D071 CORE SUPPORT X
B13 D096 JET PUMP INST PENET SEAL P
B13 D191 DRY TUBE (PRM DETECTOR)
X B13 D193 POWER RANGE DETECTOR X
B13 D194 PRM INSTALLATION llARDWARE X
B13 0002 RPV STABILIZER X
B13 U004 CRD fl00 SING SUPPORT X
VV.. cas: gmm/21E 1
-j
NUCLEAR BOILER SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA B21 0002 CONDENSING CHAMBER X
B21 D004 CONDENSING CHAMBER X
B21 0005 CONDENSING CilAMBER X
B21 0007 CONDENSING CHAMBER X
B21 0008 CONDENSING CHAMBER X
B21 0009 CONDENSING CHAMBER X
B21 F013 SAFETY / RELIEF VALVES S,Z,L X
(
B21 F022 ISOLATION VALVE A0 S, Z X
B21 F028 ISOLATION VALVE A0 S, Z X
B21 G001 PRIMARY STEAM PIPING X
B21 G002 STEAM PIPE IIANGERS X
B21 G006 STEAM PIPE SNUBBERS X
B21 K613 POWER SUPPLY X
B21 N004 TEMP ELEMENT X
B21 N005 FLOW ELEMENT X
B21 N006 DIFF PRESS IND SW X
B21 N007 DIFF PRESS IND SW X
B21 N008 DIFF PRESS IND SW X
B21 N009 DIFF PRESS IND SW X
B21 N010 TEMP ELEMENT X
B21 N014 TEMP ELEMENT X
B21 NOIS PRESS SWITCH X
e B21 N016 TEMP ELEMENT X
B21 N020 PRESS SWITCH X
B21 N021 PRESS SWITCH X
B21 N023 PRESS SWiiCil X
VK:cas:gmm/21E 2
~
SAFE ADEQUACY TO 3
SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA j
B21 N024 LEVEL IND SWITCH X
B21 N025 LEVEL IND SWITCH X
i B21 N026 LEVEL IND TRANS SWITCH X
B21 N027 LEVEL TRANS X
B21 NO31 LEVEL INDIC SWITCH X
B21 N032 DIFF PRESS TRANS X
B21 NO33 FLOW TRANS X
B21 NO34 FLOW TRANS X
B21 NO36 LEVEL INDICATOR SW X
B21 NO37 LEVEL INDIC TRANS SW X
B21 NO38 LEVEL INDIC SWITCH X
B21 NO39 PRESSURE SWITCH X
B21 N042 LEVEL IND SWITCH X
B21 N044 LEVEL IND SWITCH X
B21 N045 PRESSURE SWITCH X
B21 N047 PRESSURE SWITCH X
w
)
B21 N048 PRESSURE SWITCH X
B21 N051 PRESSURE TRANS FLOW ELEMENT X
B21 N055 PRESS TRANS X
B21 N600 TEMP SWITCH X
B21 N603 DIFF TEMP SWITCH X
B21 R004 PRESS INDICATOR X
B21 R005 DIFF PRESS IND X'
t VK:cas:cmm/21E 3
1
, RECIRCULATION SYSTEM
~ #@i 1
SAFE ADEQUACY TO SHUTOOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA B31 C001A REACTOR RECIRC PUMP & MOTOR P
B31 C001B REACTOR RECIRC PUMP & MOTOR P
B31 F023 GATE VALVE MO (SUCTION)
S X
B31 F031 GATE VALVE M0 S
X B31 G001 BYPASS LINE REPAIR X
B31 G002 RECIRC LOOP HANGERS X
B31 G003 RECIRC LP PIPE WHIP RESTR X
()
B31 G006 RECIRC LOOP SNUBBERS X
B31 K606 SQ ROOT CONVERTER X
B31 K607 FLOW SUMMER X
B31 K608 SQ ROOT CONVERTER X
l B31 K610 POWER SUPPLY X
B31 N013 FLOW N0ZZLE X
~
B31 N014 FLOW TRANS X
B31 N015 DIFF PRESS TRANS X
B31 N018 PRESS SWITCH X
831 N023 TEMP ELEMENT X
B31 N024 FLOW TRANSMITTER
.X B33 C001 RECIRC PUMP CONSTANT SPD X
B33 C001 RECIRCULATICY PUMP MOTOR P
1 B33 F023 GATE VALVE M0 X
B33 F060 FLOW CONTROL VALVE X
B33 F067 GATE VALVE X
B33 F079 DIAPHRAGM VALVE-X B33 G001 RECIRC LOOP PIPING-X 833 G002 RECIRC LOOP HANGERS X
VK:cas:anm/21E 4
\\
SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRilERIA B33 G003 RECIRC LOOP PIPING RESTR X
B33 G006 RECIRC LOOP SNUBBERS X
B33 K606 SQ ROOT CONVERTER X
B33 K607 FLOW SUMMER X
B33 K608 SQ ROOT CONVERTER X
B33 K610 POWER SUPPLY X
833 N014 FLOW TRANSMITTER X
B13 N015 DiTF PRESS TRANS X
B33 N018 PRESS SWITCH X
833 N023 TMP ELE (DBL ELE PREC RTD)
X B33 N024 FLOW TRANSMITTER X
B33 NO35 TEMP ELEMENT X
O
.I i
4 VK:cas:cen/21E
.5 l.
r
.w....- -
CONTROL ROD DRIVE HYDRAULIC SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA C11 0001 HYORAULIC CONTROL UNIT L, S, Z X
C11 F009 SOL VALVES FOR INSTR AIR X
C11 F010 DIAPHRAGM-0PR VALVES S, L X
C11 F011 DIAPHRAGM-0PR VALVES S,L X
C11 F012 RELIEF VALVE X
C11 N013 LEVEL SWITCH X
O a
4 4
O a
VK:cas:gm/21E 6
,--y, y.,.,-
r..,..m.r33
,,,,+,.-,.-.,y
-y,,,--,.s,,-
.w-
,-,-, ~.. rte,i
+e e-- r w n te,+,,.,.,
yi
FEEdWATER CONTROL SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA C32 N003 TRANSMITTER (DIFF PRESS)
X C32 N004 TRANSMITTER (DIFF PRESS)
X C32 N005 TRANSMITTER (PRESSURE)
X C32 N008 TRANSMITTER (PRESS)
X C32 N017 TRANSMITTER (DIFF PRESS)
X C34 N003 TRANSMITTER (DIFF PRESS)
X C34 N004 TRANSMITTER (DIFF PRESS)
X C34 N005 TRANSMITTER (PRESSURE)
X C34 N008 TRANSMITTER (PRESS)
X C34 N017 TRANSMITTER (DIFF PRESS)
X 2
t VK:cas:qmm/21E-7
'f
STAhDBYLIQUIDCONTROLSYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA C41 A001 STORAGE TANK X
C41 A003 STDBY LIQ CONT SYS ACCUM X
C41 C001 STDBY LIQ CONT SY5 PUMP X
C41 F004 EXPLOSIVE VALVE X
C41 R003 PRESS INDICATOR X
i I.
i 9
O 2
h i
s 1
4 4
- VK:cas:gmm/21E 8
J c.-
6,-
---,,,...w--
,.w<wm,.~--v.-,-w, - -,
-sm_.----,
,---.,,. ~
-..c
- j-4 NEUTRON MONITORING SYSTEM 1
f SAFE ADEQUACY TO
]
1 SHUTDOWN ORIGINAL I
MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA i
j C51 K002 VOLT PREAMPLIFIER X
i j
C51 K601 INTERMEDIATE RANGE MON X
1 l
C51 K605 PWR RANGE NEUT MONIT INST X
C51 N002 DETECTOR P
l I
i 1
1 1lO l
k 1
O j
i VK:cas: gem /21E-9
, REMOTE SHUTDOWN SYSTEM SA'FE ADEQUACY T0 i
SHUT 00WN ORIGINAL 2
MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA C61 N001 FLOW TRANSMITTER X
.C61 N006 PRESS TRANSMITTER X
C61 P001 REMOTE SHUTDOWN VB X
O O
i' i
4 i
l-
'VK:cas:gmm/21E 10
1 REACTOR PROTECTION SYSTEM SAFE ADEQUACY TO i
SHUTDOWN ORIGINAL l1 MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA
{'
C71 N002 PRIM CONT PRESS SWITCH X
C71 N003 TURBINE FIRST STAGE PR SW X
C71 N004 PRIMARY CONT PRESS SW X
i~
lO i
l i
i i O
~
f i
i 1
i i
1 t
I i
[.
!L
'\\
VK:cas:gmm/21E
.11
'A-*
rY 9N
+
-g y.
=.
-..=
PROCkSSRADIATIONMONITORINGSYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA 011 N006 DETECTOR (STEAMLINE)
X 1
D13 N003 DETECTOR (MN STEAMLINE)
X D13 N009 DETECTOR (R B VENT)
X D18 N003 DETECTOR, INSULATED X
D18 N009 SENSOR & CONVERTER X
1 1
i 1
3 O
i J
L VK: ca_s: gen /21E.
12
F
' RESIDUAL HEAT REMOVAL SYSTEM SAFE ADEQUACY TO SHUTOOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA Ell 8001 HEAT EXCHANGER-RHR S
X Ell C002 PUMP & MOTOR S
X Ell K600 SQ ROOT CONVERTER X
Ell K603 POWER SUPPLY X
Ell N009 TEMP ELEMENT X
Ell N010 PRESS SWITCH X
Ell N011 PRESS SWITCH X
Ell N012 FLOW ORIFICE ASSEMBLY AE Ell N014 FLOW ORIFICE ASSEMBLY AE Ell N016 PRESS SWITCH X
Ell N020 PRESS SWITCH X
Ell N021 DIFF PRESS SWITCH X
Ell N026 PRESS TRANS X
Ell h030 TEMP ELEMENT X
Ell N600 TEMP SWITCH X.
Ell N601 TEMP SWITCH X-Ell R002 PRESS INDICATOR X
E11 R003 PRESS INDICATOR X
E12 8001 HEAT EXCHANGER-RHR SYSTEM L, Z X
E12 C002 RHR PUMPS L, Z X
E12 CC02 MOTOR, VERTICAL (RHR)
L, Z P
E12 N004 TEMP ELEMENT X
E12 N005 TEMP ELEMENT X
4 E12 N006 FLOW ORIFICE ASSEMBLY AE l
VK:cas:gmm/21E 13
c i
. SAFE ADEQUACY T0 i
SHUTDOWN ORIGINAL
]
MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA s
E12 N008 LEVEL TRANSMITTER X
E12 N009 DIFF PRESS IND SWITCH X
E12 N010 DIFF PRESS IND SWITCH X
E12 N012 FLOW ORIFICE ASSEMBLY AE E12 N013 FLOW TRANSMITTER X
4 E12 N014 FLOW ORIFICE ASSEMBLY AE I
E12 N015 FLOW TRANSMITTER X
E12 N016 PRESS SWITCH X
E12 N018 PRESS SWITCH X
E12 N019 PRESS IND SWITCH X
E12 N022 PRESS IND SWITCH X
E12 N026 PRESS TRANSMITTER X
E12 N027 TEMP tLEMENT X
E12 N028 PRESS TRANSMITTER X
~
E12 N029 DIFF PRESS SWITCH X
E12 NO31 TEMP ELEMENT X
/]
E12 N032 PRESSURE SWITCH X
NJ E12 N033 PRESSURE SWITCH X
E12 N034 PRESSURE TRANS X
E12 R002 PRESS INDICATOR X
i VK:cas:cmm/21E 14 l
k.
. LOW PRESSURE CORE SPRAY SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM tt0.
DESCRIPTION EQUIPMENT CRITERIA L
E21 C001 LPCS PUMP & MOTOR X
E21 K600 POWER SUPPLY X
E21 N001 PRESS TRANS X
E21 N002 FLOW ORIFICE ASSEMBLY AE E21 N003 FLOW TRANS X
E21 N004 DIFF PRESS IND SWITCH X
E21 N005 DIFF PRESS IND SWITCH
.X E21 N006 FLOW IND SWITCH X
E21 N007 PRESSURE SWITCH X
E21 N008 PRESSURE TRANSMITTER X
E21 N009 PRESSURE SWITCH X
1 i
E21 N010 PRESSURE SWITCH X
E21 R001 PRESSURE INDICATOR X
~
E21 R002 PRESSURE INDICATOR X
O VK:cas:gmm/21E 15 J
HIGH PRESSURE CORE SPRAY SYSTEM SAFE ADEQUACY TO SHUT 00WN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPf1ENT CRITERIA E22 C001 HI PRESS CORE SPRAY PUMP & MOTOR L, Z X
.E22 C002 HPCS DIESEL SERVWTR PUMP & MOTOR L, Z X
E22 F001 VALVE, GATE L, Z P
E22 F004 VALVE, GATE L, Z P
E22 F010 VALVE, GLOBE P
E22 F0ll VALVE,. GLOBE P
E22 F012 VALVE, GATE L, Z P
(}
E22 F015 VALVE, GATE L, Z P
E22 F023 GLOBE, VALVE P
4 E22 N001 LEVEL SWITCH L, Z X
E22 N002 LEVEL SWITCH X
E22 N003 PRESS SWITCH X
E22 N004 PRESS TRANSMITTER X
E22 N005 FLOW TRANSMITTER X
~
E22 N006 FLOW SWITCH X
E22 N007 FLOW ORIFICE ASSEMBLY AE E22 N009 DIFF PRESS IND SW X
E22 N012 PRESSURE SWITCH X
E22 N013 PRESS IND SWITCH X
E22 R001 PRESSURE INDICATOR X
E22 R002 PRESSURE INDICATOR X
E22 R003 PRESSURE INDICATOR X
E22 5001 ENG-GEN FOR HPCS SYS L, Z X
E22 5002 MOTOR CONTROL CENTER HPCS L, Z X
E22 5003 ELECT TRANSFORMER, HPCS L, Z X
j E22 5004 SWGR ELEC MET ENCL L, Z X
VK: cas:gmm/21E 16
. LEAK
- DETECTION SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRIIERIA E31 K600 POWER SUPPLY X
E31 K602 SQUARE ROOT CONVERTER X
E31 K603 SQUARE' ROOT CONVERTER X
E31 K604 DIFF FLOW SUMMER X
E31 K605 SQUARE ROOT CONVERTER X
E31 N001 TEMP ELEMENT X
E31 N002 TEMP ELEMENT X
E31 N003 TEMP ELEMENT X
f E31 N004 TEMP ELEMENT X
E31 N005 TEMP ELEMENT X
E31 N006 TEMP ELEMENT X
E31 N007 DIFF PRESS IND SWITCH X
E31 N008 DIFF PRESS IND SWITCH X
E31 N009 DIFF PRESS IND SWITCH X
E31 N010 DIFF PRESS IND SWITCH X
E31 N011 DIFF PRESS IND SWITCH X
E31 N012 DIFF PRESS IND SWITCH X
E31 N013 DIFF PRESS IND SWITCH X
E31 !!015 FLOW TRANSMITTER X
E31 N018 TEMP ELEMENT X
E31 N022 PRESS SWITCH X
E31 N024 TEMP ELEMENT X
E31 N025 TEMP ELEMENT X
E31 N026 TEMP ELEMENT X
VK:cas:gmm/21E 17
(
- =___:_____-______--
n
i SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITIRIA E31 N027 TEMP ELEMENT X
E31 N028 TEMP ELEMENT X
E31 N029 TEMP ELEMENT X
E31 N030 TEMP ELEMENT X
E31 NO31 TEMP ELEMENT
'X E31 N035 FLOW TRANSMITTER X
E31 NO36 FLOW TRANSMITTER X
E31 N600 DIFF TEMP SWITCH X
E31 N601 TEMP SWITCH X
E31 N602 TEMP SWITCH X
E31 N603 DIFF TEMP SWITCH X
E31 N604 TEMP SWITCH X
E31 N605 DIFF FLOW SWITCH X
E31 N608 TEMP SWITCH X
E31 N612 TEMP SWITCH X
E31 N613 DIFF TEMP SWITCH X
E31 N614 DIFF TEMP SWITCH X
E31 N615 DIFF TEMP SWITCH X
E31 R620 DIFF FLOW INDICATOR X
E31 R621 TIME IND SWITCH X
VK:cas:gmm/21E 18 e.,qp.
.o-m
-m-T
'e
MSIV LEAKAGE CONTROL SYSTEM SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA E32 K601 POWER SUPPLY X
E32 K602 POWER SUPPLY X
E32 N050 PRESS TRANS X
E32 N051 PRESS TRANS X
E32 N053 FLOW TRAtts X
E32 N054 DIFF PRESS TRANS X
E32 N055 PRESS TPANS X
E32 N056 PRESS TRANS X
E32 N058 PRESS TRANS X
E32 N059 DIFF PRESS TRANS X
E32 N060 PRESS TRANS X
E32 N061 PRESS TRANS X
E32 N600 TIME DELAY SWITCH X
~
E32 N601 TIME DELAY SWITCH X
E32 N602 TIME DELAY SWITCH X
E32 N604 TIME DELAY SWITCH 3
X E32 N650 PRESS SWITCH X
E32 N651 PRESS SWITCH X
E32 N653 FLOW SWITCH X
E32 N654 DIFF PRESS SWITCH X
E32 N655 PRESS SWITCH X
E32 N656 PRESS SWITCH X
E32 N658 PRESS SWITCH X
E32 N659 DIFF PRESS SWITCH X
VK:cas:gmm/21E 19
1 SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA E32 N660 PRESS SWITCH X
E32 N661 PRESS SWITCH X
l E32 R601 MILLIV0LT TO CURRENT CONV X
E32 R651 PRESS INDICATOR X'
E32 R653 FLOW INDICATOR X
E32 R654 DIFF PRESS INDIC.
X E32 R655 PRESS INDICATOR X
E32 R656 PRESS INDICATOR X
E32 R658 PRESS INDICATOR X
E32 R659 DIFF PRESS INDICATOR X
E32 R660 PRESS INDICATOR X
E32 R661 PRESS INDICATOR X
O i
i VK:cas:gmm/21E
-20
REACIOR CDRE ISOLATION COOLING SYSTEM SAFE ADEQUACY TO SHUT 00WN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA E41 C001 PUMP S
P E41 C002 TURBINE S
X E41 K600 POWER SUPPLY X
E41 K601 SQ ROOT CONVERTER X
E41 K603 INVERTER (DC/AC)
X E41 N001 PRESSURE SWITCH X
E41 N002 LEVEL SWITCH X
E41 N003 LEVEL SWITCH X
E41 N004 DIFF PRESS INDIC SWITCH X
E41 N005 OIFF PRESS INDIC SWITCH X
E41 N006 FLOW SWITCH X
E41 N007 FLOW ORIFICE ASSEMBLY AE E41 N008 FLOW TRANS X
E41 N009 PRESSURE TRANS X
E41 N010 PRESSURE SWITCH ~
X E41 N012 PRESSURE SWITCH X
E41 N013 PRESSURE TRANS X
E41 N014 LEVEL SWITCH X
E41 NOIS LEVEL SWITCH X
E41 N016 PRESSURE TRANS X
E41 N017 PRESSURE SWITCH X
E41 N019 PRESS TRANS X
E41 N024 TEMP ELEMENT X
E41 N027 PRESSURE SWITCH X
VK:cas:gmm/21E 21 g.
SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA E41 N028 TEMP ELEMENT X
E41 N029 TEMP ELEMENT X
E41 NO30 TEMP ELEMENT X
E41 NO31 PRESS SWITCH X
E41 N032 PRESS IND SWITCH X
E41 N600 TEMP SWITCH X
E41 N601 TEMP SWITCH X
E41 N602 TEMPERATURE SWITCH X
E41 N603 TEMPERATURE SWITCH X
E41 R001 PRESS IND X
E41 R002 TEMP IND X
E41 R003 PRESSURE IND X
E41 R004 PRESSURE IND X
E41 R005 PRESSURE IND X
E41 R600 FLOW IND CONT X
E51 C001 RCIC PUMP S
X E51 C002 TURBINE S
X E51 K600 POWER SUPPLY X
E51 K601 SQ ROOT CONVERTER X
X E51 M602 TIME DELAY SWITCH X
E51 M603 TIME DELAY SWITCH X
l E51 N001 FLOW ORIFICE ASSEMBLY AE E51 N002 FLOW SWITCH X
E51 N003 FLOW TRANSMITTER X
i l
l VK:cas: gmm/21E 22
SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA E51 N004 PRESS TRANSMITTER X
E51 N005 PRESS TRANSMITTER X
E51 N006 PRESS SWITCH X
E51 N007 PRESS TRANSMITTER X
E51 N008 PRESS TRANSMITTER X
E51 N009 PRESS SWITCH X
E51 N010 LEVEL SWITCH X
F51 N011 TEMP ELEMENT X
E51 N012 PRESS SWITCH X
E51 N017 DIFF PRESS IND SWITCH X
E51 N018 DIFF PRESS IND SWITCH X
E51 N019 PRESS SWITCH X
{
E51 N020 PRESS SWITCH X
E51 N021 PRESS SWITCH X
~
E51 N022 TEMP ELEMENT X
E51 N023 TEMP ELEMENT X
E51 N025 TEMP ELEMENT X
E51 N026 TEMP ELEMENT X
E51 NO30 PRESS SWITCH X
E51 N031 PRESS IND SWITCH X
E51 NO34 PRESS SWITCH X
E51 N600 TEMP SWITCil X
E51 N601 TEMP SWITCH X
E51 N602 TEMP SWITCH X
E51 N603 TEMP SWITCH X
VK:cas:gmm/21E 23
SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRI1LRIA E51 N604 TEMP SWITCH X
~
E51 R001 PRESS INDICATOR X
i E51 R002 PRESS INDICATOR
[
X
~
E51 R003 PRESS INDICATOR k
X E51 R004 PRESS INDICATOR l
X E51 R005 TEMP INDICATOR X
l E51 R600 FLOW INDICATOR CONT X
- O 4
i I
.j
!O l
f VK:cas:gmm/21E 24 4.-
w
-.-,,r.
.,y,,,.,--r---,
v-ev--
--,---g a v e, wy.m,-
..e,.-..
%,vw-
--v,-
FUE$4ERVICINGEQUIPMENT SAFE ADEQUACY TO
~,
SHUT 00WN ORIGINAL MPL ITEM NO.,
DESCRIPTION EQUIPMENT CRITERIA F11 E001 FUEL PREP MACHINE X
Fil E011
' GENERAL PURPOSE GRAPPLE X
F13 E002
' STEAM LINE PLUG X
F13 E008 DRYER & SEPARATOR SLING X
F13 E009 HEAD STRONGBACK X
F14 E002 CONTROL R00 GRAPPLE X
O O
t i
'2
.g VK:cas:gmm/21E 25 c.
n.
=
REFUElkHG'ANDSTORAGEEQUIPMENT SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION
. EQUIPMENT CRITERIA F15 E003 REFUELING PLATFORM EQUIP X
F16 E002 SPENT FUEL STORAGE RACK X
~
F16 E004 STORAGE RACK (CR&DEF FUEL)
P F16 E008 IN VESSEL RACK X
F16 E007 NEW FUEL STORAGE. RACK X
1 F16 E009 DEFECT FUEL STORAGE CONT X
F16 E015 CURTAIN, FUEL STOR VAULT X
O' F18 E001 FUEL PREP MACHINE X
F18 E011 GENERAL PURPOSE GRAPPLE X
F19 E002 STEAM LINE PLUG X
F19 E008 DRYER & SEPARATOR SLING X
F19 E009 HEAD STRONGBACK CAROUSEL X
F20 E002 CONTROL ROD GRAPPLE X
F21 E003 REFUELING PLATFLkM EQUIP X
F22 E009 DEFECT FUEL STORAGE CONT X
F22.E011 EQUIPMENT STORAGE RACK X
F22 E012 FUEL STORAGE VAULT X'
.~
~
s i.
e,
-m.
~
,~.
s' m,_, I Q'
Q U~
w
...qK:casigmm/21E
t
-26, ' -
s l
f
?,'.
t 2N -m
)$
-j
~
'REACiORWATERCLEANUPSYSTEM SAFE ADEQUACY TU 1
SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRI1ERIA G33 K600 POWER SUPPLY X
G33 K602 SQ ROOT CONVERTER X
G33 K603 SQ ROOT CONVERTER X
G33 K604 5 INPUT SUMMER X
G33 K605 SQ ROOT CONVERTER.
i X
G33 K606 POWER SUPPLY X
G33 N011 FLOW ELEMENT X
G33 N012 FLOW TRANS X
G33 N016 TEMP ELEMENT X
G33 N035 FLOW ELEMENT X
G33 N036 FLOW TRANSMITTER X
G33 N04]
FLOW 1RANS X
G33 N042 TEMP ELEMENT X
G33 N600 TEMP SWITCH X
G33 N603 DIFF SLOW SWITC'H X
G33 R615 CYCLE TIMER X
OV t
VK:cas:gm:n/21E 27 LD
-m.
'N
' CONT 30LRdOMPANELS SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA Hll P601 REACTOR CORE COOLING BB S
X H11 P602 REAC WIR CLNUP & RECIRC BB S
X H11 P603 REACTOR CONTROL BB S
X H11 P608 POWER RANGE MON CABINET S
X H11 P609 RPS DIV Al & A2 LOGIC VB X
H11 P611 RPS DIV B1 & B2 LOGIC VB X
Hll P612 FW & RECIRC INSTR PNL S
X H11 P613 NSSS PROCESS INSTR PANEL S
X H11 P614 NSSS TEMP REC & LK DET VB S
X H11 P617 DIV I RHR REi.AY VB S
X H11 P618 DIV II RHR RELAY V8 S
X H11 P620 HP CORE SPRAY RELAY VB S
!X kX H11 P621 REAC CORE ISLN CLG RLY VB S
H11 P622 INBOARD VALVE RELAY VB S
X l
H11 P623 OUTBORAD VALVE RELAY VB S
X H11 P626 CORE SPRAY CH A RELAY VB S
X O
G/
H11 P627 CORE SPRAY CH B RELAY VB S
X H11 P628 AUTO DEPRESS CH A RLY VB S
X H11 P631 AUTO DEPRESS CH B RLY VB S
X lill P635 DIV 1&2 RADN MON INST PNL S
X H11 P636 DIV 1&2 RADN MON INST PNL S
X H11 P654 MSIV LKG DIV 2 CONT VB X
H11 P655 MSIV LKG DIV i CONT VB X
H13 P601 REACTOR CORE COOLING BB Z, L X
VK: cas:gmm/21E 28
'h g
SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM ti0.
DESCRIPTION EQUIPMENT CRITERIA H13 P602 REAC VIR CLNUP & RECIRC BB Z
X H13 P603 REACTOR CONTROL BB Z
X H13 P608 POWER RANGE MON CABINET Z
. Z, L X
RPS DIV Al & A2 LOGIC VB H13 P611 TRIP SYS B RPS VB Z, L X
RPS DIV 3 & 4 LOGIC VB H13 P612 FW & RECIRC INSTR PNL Z
X h13 P613' NSSS PROCESS INSTR PANEL Z
X HI3 P616 DIV 2 RHR RELAY VB Z
X H13 P621 REAC CORE ISLN CLC RLY VB Z
X
~
H]3 P622 INBOARD VALVE RELAY VB Z
X H13 P623 OUTB0ARD VALVE RELAY VB Z
X H13 P624 AREA RADN COMMON MON PNL X
H13 P625 HP CORE SPRAY RELAY VB Z
X H13 P628 AUTO DEP CH A RELAY VB Z, L X
~
DIV 1/2 PRT & ADS VB H13 P626 t"T0 DEPRESS CH A RLY VB Z, L X
()
H13 P629 DIV 1 LPCS & RHR A REL VB Z'
X H13 P631 AUTO DEP CH B RELAY VB Z
X DIV 1/2 PRT & ADS VB H13 F632 DIV 1 LEAK DETECTION VB X
H13 P635 DIV 1 RAD MON INST PANEL Z
X i
H13 P636 DIV 2 RAD MON INST PANEL Z
X 1
H13 P642 DIV 2 LEAK DETECTION VB Z.
X H13 P654 MSIV LKG DIV 2 CONT VB X
H13 P655 MSIV LKG DIV 1 CONT VB X
H13 P865 DIV I FLAM COT PANEL X
H13 P866 DIV II FLAM CONT PANEL X
VK: cas: gmm/21E 29
/
]
L LOCAL PANELS
)
SAFE ADEQUACY 10
[
SHUTDOWN ORIGINAL
{
MPL ITEM NO.
DESCRIPTION EQUIPMENT CRI1LRIA H21 P001 CS SYS LOCAL PANEL A S
X H21 P002 REAC WATER CLNUP LCL PNL S
X i
H21 P004 RV LVL & PRESS LCL PNL A S
X 1
H21 P005 RV LVL & PRESS LCL PNL B S
X H21 P006 RECIRC PMP/MN ST FLW LP A S
X H21 P009 JET PUMP LOCAL PANEL A S
X H21 P010 JET PUMP LOCAL PANEL B S
X
(~}
H21 P011 STAND LIQ CON SYS LCL PNL S
X i
H21 P014 HPCI SYS LOCAL PANEL B S
X H21 P015 MAIR STEAM FLOW LCL PHL B S
X H21 P016 CS/HPCI LEAK DET PANEL A S
X H21 P017 RCIC 3YS LOCAL PANEL A 5
X H21 P018 RHR SYS LOCAL PANEL A S
X H21 P019 CS SYS LOCAL PANEL B S
X
~
H21 P021 RHR SYS LOCAL PANEL B S
X H21 P022 RECIRC PUMP B LOCAL PANEL S
X V
H21 P025 MAIN STEAM FLOW LCL PNL D S
X H21 P026 RV LVL & PRESS LCL PNL D S
X H21 P030 SRM & IRM PREAMP ENCL A-D S
X H21 P031 SRM & IRM PREAMP ENCL A-D S
X H21 P032 SRM & IRM PREAMP ENCL A-D S
X H21 P033 SRM & IRM PREAMP ENCL A-D S
X H21 P034 HPCI SYS LOCAL PANEL A S
X H21 P035 RCIC LEAK DET LOCAL PNL A S
X VK:cas:gmm/21E 30
SAFE ADEQUACY T0 1
SHUTDOWN ORIGINAL
' MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITLRIA H21 P036 CS/HPCI LEAK DET PANEL B S
X H21 P037 RCIC SYS LOCAL PANEL B S
X H21 P038 RCIC LEAK DET LOCAL PNL B S
X H21 P041 MAIN STEAM FLOW LCL PNL C S
X H21 P073 MSIV LKG CONTROL DIV 1 LP X
H21 P074 MSIV LKG CONTROL DIV 2 LP X
H22 P001 LPCS INST PNL Z
X LPCS LOCAL PANEL H22 P002 REA WTR CLNUP INST PNL Z
X
}
H22 P004 RV LEV & PRESS INSTR PNL A Z
X H22 P005 RV LEV & PRESS INST PNL C Z
X H22 P006 RECIRC PUMP A INST PNL Z
X RECIRC LOCAL PANEL A H22 P009 JET PUMP INST PNL B Z
X JET PUMP LOCAL PANEL B l
H22 P010 JET PUMP INST PNL A Z
X JET PUMP LOCAL PANEL A H22 P015 MAIN STEAM FLW INST PNL A Z
X MAIN STEAM FLW LCL PNL A H22 P017 RCIC INST PNL A Z
X p) q RCIC LOCAL PANEL A H22 P018 DIV I RHR INST PNL Z
X RHR LOCAL PANEL A H22 P021 DIV II RHR INST PNL Z
X RHR LOCAL PANEL B H22 P022 RECIRC PUMP B INST PNL Z
X RECIRC LOCAL PANEL B H22 P024 HPCS INST PNL Z, L X
HPCS LOCAL PANEL H22 P025 MAIN STEAM FLW INST PNL C Z, L X
MAIN STEAM FLW LCL PNL D YK:cas gmm/21E 31 m_.
Y SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA H22 P026 RV LEV & PRESS INST PNL D Z
X RV LVL & PRESS LCL PNL D H22 P027 RV LEV & PRESS INSTR PNL B Z
X RV LVL & PRESS LCL PNL B H22 P028 HPCS DESL GEN PROT RLY VB L
P H22 P029 RCIC INST PNL B X
RCIC LOCAL PANEL B H22 P030 IRM & SRM PREAMP CABINET Z
X SRM & IRM PREAMP ENCL A-D H22 P031 IRM & SRM PREAMP CABINET Z
(
)
H22 P032 IRM & SRM PREAMP CABINET Z
X SRM & IRM PREAMP ENCL A-D H22 P033 IRM & SRM PREAMP CABINET Z
X SRM & IRM PREAMP ENCL A-D H22 P041 MAIN STEAM FLW INST PNL 0 Z.
X H22 P073 MSIV LKG CONT DIV 1 LF X
H22 P074 MSIV LKG CONT DIV 2 LP X
[
)
\\m /
VK:cas:gmm/21E 32
m FUEL SAFE ADEQUACY TO SHUTDOWN ORIGINAL MPL ITEM NO.
DESCRIPTION EQUIPMENT CRITERIA Jll D001 FUEL BUNDLE
)
X J11 0002 FUEL BUNDLE X
J11 D005 FUEL BUNDLE X
,l,Y 1, : -
~
^%.~.
_ :,.~,,.
~
~
M w,., t.:
[khh w
4 i
H VK:cas:gmm/21E 33 i
- CONThlNME!IT ELECTRICAL PENETRATIONS SAFE ADEQUACY TO SHUTDOWN HPL ITEM NO.
DESCRIPTION EQUIPMENT
~ ORIGINAL CRITERIA T23 ZEA1 REAC CNTMT ELEC PEN, LV S
X T23 ZEA2 REAC CNTMT ELEC PEN, MV S
X T23 ZEA3 REAC CNTMT ELEC PEN, LV S
X T23 ZEB2 REAC CNTMT ELEC PEN, LV S
X I
T23 ZEB3 REAC CNTMT ELEC PEN, LV S
X T23 ZEB5 REAC CNIMT ELEC PEN, LV S
X T23 ZEB6 REAC CNTMT ELEC PEN, LV S
X T23 ZECS REAC CNTMT ELEC PEN, LV S
X T23 ZEC6 REAC CNTMT ELEC PEN, LV S
X T23 ZEDS REAC CNTMT ELEC FEN, LV S
X T23 ZED 6 REAC CNTMT ELEC PEN, LV S
X
.q T23 ZWA2 REAC CNTMT ELEC PEN, MV 5
X T23 ZWA3 REAC CNTMT ELEC PEN, MV S
X T23 ZWB1 REAC CNTMT ELEC PEN, LV S
X T23 ZWB2 REAC CNTMT ELEC PEN, LV S
X T23 ZWB4 REAC CNTMT ELEC PEN, LV S
X T23 ZWB5 REAC CNTMT ELEC PEN, LV S
X T23 ZWB5 REAC CNTMT ELEC PEN, LV S
X i
T23 ZWC4 REAC CNTMT ELEC PEN, LV S
X T23 ZWC5 REAC CNTMT ELEC PEN, LV S
X T23 ZWC6 REAC CNTMT ELEC PEN, LV S
X T23 ZWD1 REAC CNTMT ELEC PEN, LV 5
X T23 ZWDZ REAC CNTMT ELEC PEN, LV S
X l
t T49 D001 FLAMMABILITY CONTROL P
I VK:cas:gmm/21E 34
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ - _ _ _ _ _ _ _.