ML20128H918
ML20128H918 | |
Person / Time | |
---|---|
Site: | San Onofre |
Issue date: | 01/20/1993 |
From: | SOUTHERN CALIFORNIA EDISON CO. |
To: | |
Shared Package | |
ML20128H910 | List: |
References | |
M-73-116-01, M-73-116-1, M-73-116-R01, M-73-116-R1, NUDOCS 9302170229 | |
Download: ML20128H918 (331) | |
Text
{{#Wiki_filter:- _ , .. _- . - -. - - Southern California Edloon Company CALC NO. 4CCN-NO4 PAGE TOTAL NO. OF PRELIM. CCN NO. N-1 1 PAGES INTERIM CALCULATION M-7s.1 t e 32s CHANGE NOTICE (ICCN)/ BASE CALC. REV. UNIT CALC. RE'V, CALCULATION CHANGE CCN CONVERSON; [- NOTICE (CCtQ 1 2/3 CCN NO. CCN- / CALCULATION
SUBJECT:
ROOM TEMPERATURE RESPONSE DUR;NG STATION BLACKOUT (SBO) CALCULATON CROSS-INDEX ENGINEERING SYSTEM NUMBER /PRMARY STATON SYSTEM Q-CLASS 3 New/ Updated index included DESIGNATOR 1510 & 1513 / GKA, GLB GLF, GLH m O Existing Index is Complete CONTROLLED PROGFMM OR PROGRAM / DATABASE NAME(S) VERSION / RELEASE NO.(S) DATABASE IN ACCORDANCE O ALSO, LISTED BELOW WITH NES&L 415-1 3y
. BRIEF DESCRIPTON OF ICCN/CCN:
WP O WNE mg Reason for CCN-The ressorts for the CCN are:
- 1. To incorporate resolutone to Science Applications intomational Corporation (SAIC) Technical Evaluation Report (TER);
Reference # 6.4.
- 2. The program which was used in revision 1 has limitation (one t,pe of material heat sink), but the PCFLUD Program has the capability to handle different types of host sink construction materials
- 3. The temperature rise analyses were performed for the following:
- 1. ESF SwitcFgear Room 302A
- 2. Distribution Room 3108
- 3. Computer Room 232
- 4. Control Room Cabinet Area 229
- 5. Control Room (228 and 240)
Ho**ver, the temperature rise eneFysis for the AFW Pump Room was accepted by the NRC. Therefore temperature rise for this room was not revised. INITIATING DOCUMENT (DCP/MMP. FCN, OTHER) N/A Rev. l 2. OTHER AFFECTED DOCUMENTS (CHECK AS APPUCABLE FOR CCN ONL'f); O YES S NO OTHER AFFECTED DOCUMENTS EXIST AND ARE IDgNTIFIED ON ATTACHED FORM 26 503.
- 3. APPROVAL: DISCIPLINE, C: N/M PARVIZ TIGE 51342 h ?-
ORIGINATOR (Pnnt namerwtia!)N OS (S4caeafel O . R (Signat ye) 1 % 13 bflM N4%l[ v GH/ "- V . H M S. IRE (Print namelinfbal) FM NES&L DM (Signature). l 'Date' I
- 4. ASSIGNED SUPPLEMENT ALPHA DESIGNATOR:
CONVER$10N TO CCN DATE b - k-
/ / V SCE CDM-SONGS ecs as-ina mv. em 9302170229 930212 PDR ADOCK 05000361 P PDR
-CALCULATION CROSS-INDEX g g -(c,, ,,o. m e _r_ or N-1 Calculation No. M 73-116 Sheet No. 2 lCCNCONVERSIoN CCN No. CCN- 1 INPUTS OUTPUTS Does the Calc. rev- Identify output These interfacing out-put interface-number and calculations and/or Results and conclusion of the interface responsible calc /doctament CCN, documents provide input to subject calculation are used cale/ TQ/Rev.,
supervisor the subject calculation, and in these interfacing document initials if revised may require calculations and/or require pg -or trac % and date revision? d r. revision of the subject documents. calculation. kb n Calc /Doctment No. Rev. No. Calc / Document No. Rev. No. YES / NO Calc # M-73-10 0 Document 90051 0 YES LKC-91-427 Calc # M-74-1 2 DBD-5027-140 0 YES DB0-5027-140 Calc.:#E4C-105 0 s DWG. 10101 27 DWG.-10102 12 DWG. 10119 26 DWG. 10114 9 DWG. 10121 39 :3 DWG. 10132- 13 DWG. 25131 5 ' DWG. 53000 '13 l SCE 26-424 REV. 0 7/92 [
REFERENCE:
NES&L 24-7-15]
+
w
r - NES&L DEPARTMENT-CALCULATION SHEET 1eC m/ PRELIM. CCN NO.g-i PAGE 3 0F CCN CONVERSION Project or DCP/MMP SONGS 2/3 Calc No. M73-116 CCN NO CCN - I
-- subject _ Room Temperature Res)onse Durina Station QliLqkout (1B0) sheet No.
RIV ORIGINATOR DATE IRE Daft Rtv ORIGINATOR Daft IRt DATE
-PARv!! TIGER [ 10/15 '\ b OttIn //~
i TABLE OF CONTENTS f6G.1-
- 1. PURPOSE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 -
- 2. RESULTS/ CONCLUSIONS . . . . . . . . . . . . . . . . . . . . . . . . . 6
- 3. ASSUMPTIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
- 4. DESIGN INPUT . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
- 5. METHODOLOGY , . . . . . . . . . . . . . . . . .'. . . . . . .-. . . 18
- 6. REFERENCE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22 A
- 7. NOMENCLATURE . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
- 8. CALCULATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . 26.
8.1 Switchgear Room 302A . . . . . . . . . . . . . . . .-. . . . . . . 27 8.2 Distribution Room 310B . . . . . . . . . . . . . . . . . . . . . - . 63-8.3 Computer Room 232 . . . . . . . . . . . . . . . . . . . .-. . . . . 102 8.4 Control Room (228 and 240) .................... 151 8.5 Control Room Cabinet Area 229 . . . . . . . . . . . . . . . . . . . 183 8.6 Control Room Cabinet Area 227 . . . . . . . . . . . . . . . . . . . 225
.8.7 Cable Riser Gallery Room 224 . . . . . . . . . . . . . . . . .- . . 270 - 8.8 Calculation for:
(1)' Thermal conductivity of air and
'(2) ; Temporary fan capacity for the Distribution Rooms . . . . . . . 310
- 9. APPENDICES .-.............,.............. 313 L .
l l [
' NES&L DEPARTMENT - i . CALCULATION SHEET ma a/ -
PREllM.'CCNNO.w_i i PAGEw~OF CCN CONVERs!ON Project or DeP/MMP SONGS 2/3 : Calc No.-M73-116 I CCN NO. CCN - schject Room Temperalgte Res)onse Durina Station Blackout (SBO) sheet no.-
ary ' carsi=Aton - natt int. nAtt arv entsinaron eAir int natt I PARVIZ TICERI 10/1$ \hh R19] '!
f/V '
] .
Reason for CCN: The reasons for the CCN are:
- 1. -To incorporate resolution responses to Science Applications -
International Corporation (SAIC) Technical Evaluation Report (TER); Reference # 6.4.
- 2. Program which has been used in revision 1 has limitation (for one type-of material heat sink), but the PCFLUD Program has the capability to handle different types of heat sink construction materials.
!. The temperature rise analysis performed for the following: .
- 1. ESF Switchgear Room 302A
- 2. Distribution Room 3108
- 3. Computer Room 232.
- 4. Control Room Cabinet Area 229 5.
~ b~
Control Room (228 and 240) However, the temperature rise analysis for the AFW Pump Room was accepted by the NRC. Therefore temperature rise for this room was not-revised. P 1 l-i- l l l ', , ., , _ -.
4 lNES&L DEPARTMENT CALCULATION SHEET wmr7 PRELIM. CCN NO. p g PAGE oF-CCN-CoNVER$!ON Project or ocP/ m p SONGS-2/3 Calc No M73-116 CcN No. CCN - I-srbject- Room Temperature Res)onse Durino Station Blackout (SBO) sheet No. AtV ORIGINATOR DATE !qE ~DAtt Riv -ORIGINATOR DATE IRE Daft PARVII TICERI 10/15 kkh hh y ~ 1.0 Purpose 1.1 Puroose/Backoround
1.1.2 Purpose
The purpose of this calculation is to determine the temperature rise'in _- the following) Blackout (SB0 :Dominate Areas of Concern (DACs) during Unit 2 Station
-l A. Coping Duration of four hours were used for the following areas (Ref. # 6.19):
Switchgear Room (Room #302A), Unit 2 Computer Room (Room #232), Unit 2 . Distribution Room (Room #310B), Unit 2 Control Room Cabinet Area (Room #229), Unit 2 B. Coping Duration of one hour was used for the following areas (seeassumption3.12): Control Room Area (Rooms #228 and #240), Unit 2
.1 1.1.3 Affected Documents:
The results of this calculation partially supersedes results of the Station Blackout calculation M-73-116, Revision 1. However, temperature rise analysis for the AFW-Pump Room was ' accepted by the NRC.. Therefore, the data for the AFW Pump Room from Revision 1 will be used as valid information. 1.1.4 Backcround
-Southern California Edison (SCE) provided the Station Blackout i
submittal to the U. S. Nuclear Regulatory Commission--(NRC). The
-submittal was reviewed by the NRC. Staff and Science ~ Application -;
International Corporation ~(SAIC) under contract with the NRC. As a i result of the review, the NRC; issued a Technical Evaluation _ Report-(TER) : i SAIC-91/1252 to SCE in a letter dated February 6, 1992. t The.TER identified several concerns with regards to the Methodology and Assumptions used in Station Blackout Calculation:M73-116,lRev. 1. In ' summary,-the TER recommended the licensee to reassess the temperature L rise analyses for all control building rooms containing Station Blackout-(SBO)_ equipment. The areas that require temperature rise reanalysis are: i_ the Switchgear Room, Distribution Room, Computer Room, Control Room, and , Control Room Cabinet Area. 1 f' _ s e, - ,,, - - L..-... .
. - --___o-__.__-_.-
- NES&L DEPARTMENT
( CALCULATION SHEET enc PRELIM.CcNNO.g- PAGE b oF CCN CONVERSION
-Project or Dcr/MMP SONGS 2/3 Cale-No. M73-116 cCN No. CCN - - l schject' Room Temperature Res)onse Durin1 Station Blackout (SBO) sheet No.
RIV ORIGIhATOR DATE ,17tt CAft l REV ORIGINATOR Daft IRE DATE PARvl! TIGERI 10/15 h hb&ha AX ' ' 2.0 Results/ Conclusions ar/ Recomendatio_qi
2.1 Results
ROOM AMBIENT TEMPERATURES AFTER STATION BLACK 0UT c-R00H NAME Normal room VOLUME ROOM TEMP. -ROOM TEMP. temperature (ft^3) AFTER 1 Hr. AFTER 4 period to SB0 ( F) Hr. SB0 SB0(*F) (* F) SWITCHGEAR ROOM 302A 95 24218.0 N/A 96.788 DISTRIBUTION ROOM 310B 95 4370.0 N/A 123.777 COMPUTER ROOM 232 72 17380.0 N/A 112.223 CONTROL ROOM CABINET 75 57092.0 N/A 105.281 AREA (ROOM 229) . CONTROL ROOM 75 24840.0 108.103 N/A !- ' (ROOMS #228-& #240) - 2.2
Conclusion:
Based upon result analyses, the four Distribution Rooms (310-A, B, C, and D) are the only rooms that are expected to have a temperature in exess of 120 F(Room 310-8 is one of the four similar rooms which have approximatelythesameheatloadandconfiguration).
. . - . . _ , . _ - .. . ~. - - . . . , .. . .- -
NES&L DEPARTMENT / LCALCULATION SHEET teca no./ w -; PRELIM. CCN No. PAGE 7 oF Project or DCP/MMP SONGS 2/3 - Calc No. M73-116 - ff" hCN - l ! sihject Room Temperature _RanLonse Durino Station' Blackout (SBO) sheet No. 1 REV _ ORIGIhATOR DATE . IRE DATE l RIV ORIGINATOR DATC 1RE Daft D% t itGtal 1ons \N \ \O % q , i m
2.3 Recommendations
2.3.1 To reduce the temperature in the Distribution Rooms (310-A, 310-B, 310-C, i and 3100) the actions should be taken'as follows: (1) all Distribution room doors should be opened 30 minutes after SB0 and temporary ventilation (min. 800 cfm capacity-for each room) should be started to-maintain Distribution Room temperature under 120 *F or (2) manually - start ESF Switchgear Emergency A/C units one hour after SB0 with chilled water as heat sink. 2.3.2 Open control room cabinet doors after 30 minutes of SB0 (Ref, f 6.19) 2.3.3 The results of this analyses have no effect on Technical Specification of Surveillance Procedures. 2.3.4 Revise Administrative Procedures to maintain the normal temperature in each DAC at or below the values used in Section 4.1. (Ref. 6.22) The rest 3ckum, h +het Nccal m encktc ro oiN bE
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TEMPERATURE 97,5 RESPONSE DURING UNIT 2 -- SBO T'D SWilCIIGEAR ROOM 302A(EL. 50) 97.~
- - -G -E " "4 h 963 m
DC' i e x
$ 95.5 r >
k 94 5 , 0 5 10 35 l b sa d. CCN/. 1
'I1Mii AIq1:.R 5fAllON BLACKOUT (Sec) gg' g_ f 8
cac.no: M- 73--#6 mmon: M
.r. r raes _ .c,, . ~
CHECKED: gyne [/[gMpv l SMEET M- ' ' OF l
TEMPERATURE RESPONSE DURING UNIT 2 - SBO 170-
' DISTRIBUTION ROOM 310-B(EL50) 160 -.
150 - {140 - E! ' CcN / 130 - Cc t! p/ ! ,, R 9 m - 2 '
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M ~SO ~((
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CALC. NO: + itE ON: 110 -
' B Y. -
4ff DAypj *M-7 V
,,- a - 4:n s 100 SHEET 9 OF 1.*
l l ' g' f f
-0. 5 10 '15 , Thousands s TIME AFTER STATION BLACKOUT (Sec) . ,_ y--a.. ' ' ' ~ ' " - -
TEMPERATURE RESPONSE DURING UNIT 2 - SBO COMPUTER ROOM 232-A(EL30) 110
= :
g_ 100 - b a 90 - CC/V/ ie cc,v : e 4 /-/ f. e
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80 l . ute.no:44 -Y b -11/2 i HEV1 1 dedi DATE: / /d - 0 - I ') CATE: .4 SHEET in OF' l 60 * ,
'O 5 10 15 Thousands TIME AFFER STATION BLACKOUT (Sec)
TEMPERATURE RESPONSE UdRING UNIT 2 - SBO CONTROL ROOM 228 & WORK AREA 240 115 110 - 105 - 100 - b 95 - CCA// W 90 - (cf); Al- I f. Il 9 < 2 85 - j //[ 80
. ra n;l
- Q c: -
l19&ff ou - C.l[-k
; CHECKED: '
O. NL 75 1 [ SHEET // OF , j 70 ' ' ' ' ' ' ' O 500 1000 1500 2000 2500 3000 3500 4000 TIME AFTER STATION BLACKOUT (Sec.)
~
TEMPERATURE RESPONSE DURING UNIT 2 - SBO CONTROL ROOM CABINET AREA, ROOM 229(EL 30) l 115 110 - l j 105 - - :-A l 100 - C IIJ CN/
$ 95 -
c c A): Al- I f. /2 i Q ' M f 90 - mwo: N-U- Ib f REVISION: I \ 85 - sy: P.74Ef/ mm tz-n-9z P' CHECKED: [ DATE: //,4 I 80 l SHEET 11 OF l 75 l l. 70 O 5- 10 15 Thousands TIME AFTER STATION BLACi;OUT(Sec.)
-..A
- NES&L DEPARTMENT- ' CALCULATION SHEET = = >
PREUM. CCN NO.q/ _b I3 or PAGE
~
CCN CONVER$!oN Project er ocP/MMP SONGS 2/3 Calc No. M73-116 b-ccM No. CCN - Sihject Room Temperature Res>onse Durina Station Blackout (SBO) sheet No.' 13
' RtVaf ~ ORIG!nATOR QATE - IRE Daft ' RIV ORIGINAf0R DATE IRI DATE
[ PA 12 TIGlRI 10/15 /h/// -i
'k Im .
3.0 Assumotions
3.1 All plant equipment are in their normal operating conditions prior to station blackout. 3.2 The initial temperature in each DAC and the initial temperature of the rooms (areas) surrounding tha DAC is assumed to-be equal to the maximum design / ambient temperature during nonnal plant operation.- Also, if the nonnal design temperature of the adjacent room is different from the normal design temperature of DAC at SB0 initiation, the initial surface temperature of the common wall facing the DAC is the arithmetic average temperature of the two rooms. I - t The effect of increased temperatures in the rooms above and.below the DACs was not considered because the Auxiliary Building floors are composed of approximately-12 inches of concrete on a metal deck. Since concrete is capable of storing large amounts of heat,. the~ heat ' generated in the room below the DAC will be stored in the concrete A rather than transferred to the DAC. Q-3.3 At SB0 initiation, all AC powered heat sources on the' blacked out unit, such as switchgear, electrical equipment and lighting in the i rooms, are deenergized. The batteries in the ESF Battery Room provide emergency DC power to the equipment in the Distribution Room. However, the batteries produce-negl_igible heat so it is e conservatively assumed that the battery room _ temperature remains constant. 3.4 There _are four Distribution and two Switchgear rooms, with same physical arrangements. One room from each-group was analyzed as representative of the rest (Distribution Room #310B and Switch Room #302A were analyzed as the rooms with highest heat load) gear . y 3.5 The temperature'in the adjacent Distribution Rooms #310A'and 310C is expected to increase at the same rate as in Distribution: Room-#310B because'the heat loads'are approximately the same.. Consequently,
.the=partitionsLwhich separate the distribution rooms are not -
considered as heat sinks. Also this assumption applies:to the partitions separating:(1) Control Room #228 and Cabinet Areas
#22//228, and (2) Computer Room #232 and Control Room Cabinet Area- #229. The analysis also assumes that the temperatures in the areas l: above the Distribution room (Corridor and Health Physics Area) remain constant through the 580 coping duration because their heat loads (i. e emergency lights and a small number of computers) are negligible, i
I.~.,
,, ys .-r r , - . , , , , , ,w,- - -
u NES&L DEPARTMENT CALCULATION SHEET w a./ PRELIM. CCN NO.3/- rPAGE
,a OF CCN CONVERSION Project or DCP/MMP -SONGS 2/3 Calc No. M73-116 cCN NO. CCN - - I' - srbject ER oom TemDerature-Response Durino Station BlackouL(SBO) u Sheet No. Ik RIL.,,, , - ORIGINATOR DAff IRE DATE R[Y _ ORIGINATOR DATE !RE DAtt Il TIGIRI 10/16 kb l} d 1 ~A \
n _ 3.0~ Assumptions (continued): 3.6 The maximum design temperature of the rooms directly above the Control Room Area is 95'F. However, because the suspended ceiling above the Control Room Area is being used as a supply air plenum (design supply air temperature discharged _to the plenum with low turbulence is 54*F-(Ref 6.23)), it is assumed that the ceiling temperature is initially 75'F. It should be noted that 75'F is the maximum design temperature in the Control Room Area #228 during normal plant operation. 3.7 Heat is transferred in the room by convection and conduction only. 3.8 Heat transfer is in one direction only. 3.9 The doors are the same temperature as the walls. This is conservative because the door will likely have a lower temperature resistance than the wall. 3.10 Only the walls, ceiling, and room air are considered as a heat-sink in heat transfer analyzes, 3.11 Heat loads-from personnel and emergency lights are negli 3 ible for b . all rooms except the Control Room Area. 3.12 The emergency chillers are aligned to the Unit experiencing _ blackout and it will take one hour for operator action to switch the emergency chillers ESF buses from one Unit to the other by using available-Kirk-Key locks and realigning CCW valves from the-Train A chillers a the Train B chillers or visa versa.- -
-Therefore, the Control Room will only have a one hour Station Blackout coping duration. (Ref. 6.21) .
3.13 Station Blackout will only occur at one Unit with the other Unit
- having at least one Diesel Generator.available and running, i Although, this calculation considers Unit 2 as the unit ,
experiencing SB0 and Unit 3 as the Mode 3 Unit, it bounds the !
-opposite configuration. The basis for this assumption is that the !
areas / rooms addressed by this calculation for' Unit 2 are the same for the Un!t-3. The Unit 3 areas / rooms are adjacent to Unit 2 with. si.,ilar equipment.((ESF & DC equipment) systems on the same elevation is a mirror image (ref 6.7).) 1
NES&L DEPARTMENT CALCULATION SHEET : = x.; PRELIM. CCN No. g t
,5 PAGE OF CCN CONVER$10N -Project er Der /MMP SONGS 2/3 Cale No. M73-116 ccN No. CCN - l srbjec't Room Temperature Resggnse Durinoltation Blackout (SBO) sheet me.
Rtv _ /* ORIGINATOR DAff IRL DAff RIV ORIGINATOR DATE- IRE ~ DAff
,[ Il T!LERI 10/16 k, h 1, v w 3.0 Assumptions (continued):
3.14 Rear sides of the Control Room control panels face the Control Room Cabinet /,rea. Therefore, for Control Room Cabinet Area heat-transfer analysis it was conservatively assumed that 50% of.the heat loss from Control Room panels is dissipated to the. Control Room Cabinet Area. 3.15 For Control Room Area (Room 228) heat transfer analysis it-was conservatively assumed.that 100% of the heat loss from control panels is dissipated to the Control Room Area. 3.16 The air gap between composite plaster wall is assumed to be 3.5 inches (the smallest air gap is four i..ches). This assumption is conservative because it will resulted in the smaller thermal conductivity of air and the higher rcom temperature. t 3.17 All DAC room volumes are equal to that calculated in the- . Revision 0 of the subject calculation, because the rooms physical layout has not changed since the Rev. O issue. 3.18 The thermal conductivity of the air is equal to: h,,,=1.47 Btu /hr-f 2t .of (Ref.6.10) . This value is conservatively - used for all rooms and all heat sinks including ceiling. The technical justification for this assumption is provided in Appendices.
+
u
-NESM. DEPARTMENT - CALCULATION' SHEET - + e ./- - -
n. PRELIM.CCNNo.g"'[ PAGE OF CCN CONVER$!oN-
- Project or DCP/MMP SONGS'2/3 Calc No. M73-116. CCN No. CCN '- l' ,
. subject Room Temperature Res)onse Qurina' Station Blackout (SBN sheet No. 1 6 - ;,
RIV ORIG 1hATOR DATE IRE DATE REV ORIGINATOR DATE 1Rt DATE
/ -
V!2 TIGtRI 10/15 k b,, b kk gn M EM M M M " "' " M IMm M 4.0 Desian Input 4.1 Normal Ooeratina Desian Temperatures Aret(Ref. # 6.21) -, 4.1.1 Distribution Rooms El. 50 ft. 95'F Ref, f 6.3) 4.1.2 ESF Switchgear Rooms, El. 50 ft. 95'F Ref, f 6.3) 4.1.3 Computer Rooms El. 30 ft. 72'F Ref, f 6.23) - 4.1.4 Control Room Cabinet Area 75 F Ref.f_6.3) . 4.1.5 Control Room Area (Rooms 228&240) 75'F Ref, f 6.3 4.2 Station blackout coping time for all Rooms.above except Control Room Area is four hours (Ref. # 6.19). 4.3 Station blackout3.12 (see assumption cop)ing
. time for Control Room Area is one hour 4.4 Rooms Heat Load are:
4.4.1 Distribution Room 310B, El. 50 ft. 5.76 kW (R?f. # 6.7) 4.4.2 Switchgear Room 302A, El. 50 ft. 1.92 kW (Ref.#6.7)_ 4.4.3 Computer Room 232,,El. 30 ft. 27.94 kW (Ref. # 6.7) 4.4.4 Control Room Cabinet Area 229 El. 30 ft. 51,67 kW (Ref.#6.7) 4.4.5 Control Room 228 El. 30 ft. -38.89 kW (Ref. # 6.7)- 4.4.6 Work Area Room 240 E1. 30 ft. 13.25 kW- (Ref.#6.7)- , 4.5.1 Heat per person in Control Area 400,0 BTV/hr(Ref # 6.11) 4.5.2 Total occupancy in Control Room Area 11 The number of operators -(nine plus~ 25%) is -based on the Minimum Shift Crew Com)osition (Technical Specification, Table 6.2-1) with Unit 2 and Unit 3-L boti normally operating. This is the plant o)erating condition postulated at the 500 initiation. Per the referenced ta)le, Control Room. occupancy consists of one Shift Supervisor, one Senior Reactor 0)erator, three Reactor Operators, three Auxiliary Operators and one Slift Technical l Advisor. Two people were added to account for per:.onnel such as Nuclear d
- Plant Operators and TSC personnel who may intermittently gain access to-the Control Room. Because-Units _2 & 3 are sharing a common Control Room, "
SCE's license was approved with one less Shift Su)ervisor, Senior Reactor-L Operator and Reactor Operator /Auxil:ary Operator tlan two individual: reactor units operating with a dedicated Control Room each.
1 NES&L DEPARTMENT CALCULATION SHEET m m ./ PRELIM. CCN No. A j i PAGE o0F CCN CONVER$10N reeject er DCP/mP SONGS 2/3 Calc No.- M73-116- CCN No. CCN - I s~hjeet Room Ttmoerature Res sonse Durina Stdion 31ackout (!BQ) = -shee't No.- Il Rg _ ORIGINATOR. DATE 1Rt DAff- RIV ORIGINATOR DATE 1Rt - DATE
'/) kARvirT1stR1 10/15 \khI/ Nnh ' %% \\
l. 4.0)DesionInout(continued) 4.6) Properties of Constriction Material Components: Plaster Properties p = 51.0 lbm/ft 3 (Ref.#6.17) Cp = 0.74 BTV/(lbw'F) (Ref.#6.17) K = 0.25 BTU /(hr-ft*F) (Ref.#6.17) 1 Concrete Propertieg, p,= 143.6 lbm/ft 3 (Ref. # 6.6) ~ Cpe= 0.21 BTU /(lbm*F) (Ref # 6.6) Ke=-1.04 BTU /(hr-ft*F) (Ref,f6.2) Insulation Properties p,= 36.0 lbm/ft 3 (Ref. # 6.11) CP,= 0.20 BTU /(Ibm *F) (Ref.#6.11) K,= 0.092 BTV/(hr-ft*F) (Ref.#6.11)
- Air Properties p = 0.07 15m/ft 3 (Ref.#6.2)'
C, = -- 0. 2 4 BTU /(Ibm *F) (Ref.#6.2) K = 1.24 BTU /hr-ft F(for 3.5-inches and at 90*F) (seesection8.8) R =.0.85 ft'-F-hr/ BTU (for _3.5 inches and at. 90'F) (Ref.-f.6.2) h = 1.47 -BTU /hr-ft' F ~(see.section9) R = 0.81 f tr_.F-hr/ BTU (for 3.5- inches and-at 95 F) (seesection8.8) _ l-p
=
NESM. DEPARTMENT CALCULATION SHEET 2CcN No./ PRELIM.CcNNo.g_; PAGE 1SoF i CCN CoNVER$10N-Preject or OcP/mP SONGS 2/3 Cale No. M73-116 ccN No. CCN - I srbject Room Temperature Resppnse Duringltati_on Blackomt (SBO) sheet No. IT
& ORIG!hATOR DATE IRE , DAT[ Rty ORIGINATOR Daft IRt CAT [
[ Vl! TIGERI 10/15 [ ku/
" () ~ ! 1%
5.0 Methodoloav Since normal ventilation is not available during station blackout (SB0), equipment needed to achieve and maintain safe shutdown in a blackout may be subject to elevated temperatures. Loss of ventilation concerns are thus limited - to rooms housing these equipment. These rooms are labeled Dominant Areas of Concern (DAC) and are limited to areas that will have significant heat loads in ' SB0, and also contain safe shutdown equipment.
'i he temperature rise analyses were perfcrmed for the following DAC:
- 1. Switchgear Room 302A
- 2. Distribution Room 310B [
- 3. Computer Room 232
- 4. Control Room Cabinet Area 229 -
- 5. Control Room (228 and 240)
The Control Room Cabinet Areas foc the Units 2 and 3 are separated by a common open passway and heat generated in the Unit 3 Cabinet Area may affect the temperature rise in the Unit 2 dabinet Area. Also heat generated in the Cable Riser Gallery Unit 3 (#224) during SB0 may affect the adjacent Unit 3 Control g Room Cabinet Area. Therefore, the temperature rise analyses were performed for ~g these areas to evaluate overall impact of the heat generated in these rooms on the temperature rise in the Unit 2 Control Room and Control Roam Cabinet Area. The PCFLUD Program developed by BECHTEL CORP was used for the heat transfer analysis to calculate the ambient room temperature following loss of ver.tilation. Prior to utilizing PCFLUD, a uni ue input data file was prepared which describes the actual DAC area ph sical geometry and thermodynamic conditions. The electrical heat load for eac DAC area was calculated in Ref. # 6.7 and used as input. Also Thermal Conductivity (K) for air at 95 F(see section # 8.8) As a result of drawing reviews (Ref. # 6.8)-and walkdowns, the walls, ceiling, floor, cabinets, carle trays ductwork, and hangers were identified as the heat sinks. However NUMARC 87-00 (Ref. # 6.18) recommends that only the walls and ceiling be considered in the heat transfer analyses. Therefore the NUMARC - recommendaticn was utilized. Heat transfer by convection, conduction, and heat storage in the walls and-ceiling were considered in this analysis. Due to the fact that the subject program analyzed each heat sink as a uniform material, the physicG properties for the plaster wall (which consists of two plaster boards and an air gap were input into the program as the combined effective physical property for this wall. l l
NNS&L DEPARTMENT CALCULATION SHEET
~
n= ea PRELIM. CCN NO. //* PAGE a OF CCN CONVERSION traject or ocP/ HHP SONGS 2/3 Calc No M73-116 ccN No. CCN - I srbject _ Room Temp rature Response Durina Station Blackout (SBQ)_ Sheet No. I trv _ omin34;oa i 64Tt ipt eart . arv onici=Aton cAtt int BAir PARVII TIGtRI s. 13/15 \kV g ~ l {' The plaster wall ef fective values for the thennal conductivity, density and specific heat capacity (Ke, Pe, Cpe) were calculated as follows: M1 +M 2 + M, + . . . Total Mass V, + V2 +V 3
+.... Total Volume
, Where M = V X p2 3 3 Ma = V2 X p2 M3 = V3 X p3 Vi =A 1 XC 1 V2 =A 2 XC 2 V3 =A 3 XC 3 A=A 1 =A 2 =A 3 = Constant V, p 1 + V2 P2 +V 3 p,.... V1 + V2 + V3 + .... I l
NES&L DEPARTMENT CALCULATION SHEET ice =.t-PRELIM. CCN NO. M f PAGE 2 t> OF CCN CONVER$10N Project or ocP/mr SONGS 2/3 Cale No. M73-116 CCN No. CCN - I s';bject Room Temperature Response _Qurina Station BlackoqL{S30) Sheet No. _1 Q . R[v ORIGINATOR DATE IRI DATE Riv ORIGtMAT0a ' Daft _ IRE DATE
/ DvtrTictRI u
10/15 dd wNb
. "F% n' _
p, , A X C 1 X P1 +A XC X p2 + A, X C, X p , + . . . . 1 2 2 A 1 xC 1 +A 2 XC 2 +A 3 X C, + . . . . A X (t 1X p1 + t, X p2 + t, X p , + . . . AX(C 1
+ C, + C +
3 .... e= (C2 X p1 + C2 X p2 + C X p3) 3 c+C 1 2
+C 3 + . . . .
CT = c1 + C2 +C 3
+ -
Fu, - C1 X p1 +t 2 X p2
- C, X p3 + -
A CT p1 X V X Cp1 + p2 V2 X Cp2 + p, X V, X Cp, + . . . 1 p1 XV1 + p2 XV2 +p, V3 + .... Cpe = p1 XA X c X Cp1 + p2 XA 2X t, X Cp2 + p , X A, X t, X Cp, + . . . . 1 1 p1 A Xt +1 p2 XA XC 1 2 +2 p, X A, X C3 + .... cyg , A X (p1 XC X Cp1 + p2 XC 2X Cp2 + p , X C, X Cp, + . . . . 1 A X (p1 XC1 + p2 XC2 +p3 X C,+ .... 4 Cpe , p1 XC1 X Cpt + p2 X c 2X Cp2 + p , X c, X Cp, + . . . . p1 XC1 + p2 XC2 + p3 Xc+.... 3
NES&L DEPART'iENT CALCULATION SHEET anr=/ PREllh. CCN NO. Al i u PAGE oF l CCN CONVERSION . Project or DCP/MMP SONGS 2/3 Calc No, M73-116 CCN NO. CCN - l subject Room Tempf tature Res_p_oDILEuring Station Blackout (SBO) sheet No. D _ arv onrainAton DAtt IRE cAtt Rtv outsinAtoR DAtt Int DAtt
/Ykytriteral 10/15 \ \hN \\\N 5w4 \\ = X ( Tl - TO) =
X ( Ti - T ) 1
= , X (T1 -T) 2 = , X ( T, - TO) =
Ui X AT1 = Uo X ATO 1 Uo =
+ + +....
Uo . 1
. xe AX1 AX2 AX3 AXr K1 K2 K3 AX l AX1 .
4X2 . AX3 . !; K1 K2 K W The LOTUS 123 print-graph program was used to develop graphs of temperature response during SB0 for each DAC. The Mathcad Program was used for the Section 8 calculations.
NES&L DEPARTMENT CALCULATION SHEET m ~.t PRELIM. ccN No N - , ., PAGE 'oF CCN CoNVER$loN Project or ocP/mr SONGS 2/3 Calc No M73-116 l ccN No. CCN - s bject Room Temperature Response Durij)o Station Blackout _(IEO) sheet No. 22 _ Rrv_ oRrat=AteR DATE 1Rt CAtt REY l ORIGINATOR DAtt IR[ DAt[ PARVIZ TIGERI' 10/15 h Mn inj i y 1 6.0 References 6.1 (Delete) 6.2 Cooling and Heating Load Calculation Manual. ASHRAE GRP158 6.3 Calculation #M-73-10 Rev. O, HVAC Aux. Bldg. General Data. 6.4 Reference letter from R. M. Rosenblum to NRC dated June 11, 1992;
Subject:
Docket Nos. 50-361 and 50-362 Response to Unit 2/3 SB0 Safety Evaluation Report. 6.5 (Delete) 6.6 Calculation #M-74-1 Rev. 2, Radwaste Area Normal Cooling system - Heat load Calculation. - 6.7 Calculation #E4C-105 Revision 0. 6.8 Drawings for SONGS Units 2 & 3. 6.8.1 10101-27, Aux. Bldg Control Area Flr. Plan Elevation 30. 6.8.2 10102-12, Aux. Bldg. Control Area Fir. Plan Elevation 50, 6.8.3 10119-26, Aux. Bldg. Finish Schedule. 6.8.4 10114-9, Aux. Bldg. Control and Radwaste area. 6.8.5 10121-39, Aux. Bldg. Door Schedule. 6.8.6 10132-13, Aux. Bldg. Miscellaneous Details. 6.8.7 25131-5, Aux. Bldg. Control Area, Conc. Section & Detai?s. 6.8.8 53000-13, Aux. Bldg. Main Control Room Panel Arrangement. 6.9 Fundamentals of Heat and Mass Transfer. Frank P. Incropera and David De Witt - 2 g Edition. 6.10 ASHRAE Handbook - Fundamentals 1985. 6.11 ASHRAE Handbook - Equipment 1988. 6.12 National Gypsum Construction Guide 92 Edition. 6.13 Heat Transfer 5th Edition by J. P. Holman. 6.14 Principles of Heat Transfer 5th Edition 1986, by Frank Kreith & Mark S. Bohn. 6.15 ACI Manual of Concrete Practice Part 3,1989. 6.16 Mechanical Engineering for Professional Engineering Examinations, 4th Edition by John D. Constance.
NES&L DEPARTMENT' ' CALCULATION ' SHEET = er PRELIM. cCN No. g _ I u PAGE OF CCN CoNVER$10N Project or DCP/lWP SONGS 2/3 ._ Calc No. M73-116 ccN No. CCN - l t schject .__.R_qom Tempera.fyre ReiponseJurirtglial.ifn Blackout ISBO) sheet No. 13 Riv , oRIGlhATOR' OAft IRt 0ATI RIV ')RIGINATOR Daft IRE Daft gibizT!stal'
~
10/15- \ % h( h\N, ' s 9 g l 6.0 References (continuedl-6.17 Heat Transfer by Shao Ti Hsu, 1st Edition 1963. 6.18 NUMARC 87-b. Guidelines and Technical bases for NUMARC initiatives addressing Sm tion Blackout. 6.19 Document 90051 Rev. O Station' Blackout Analysis, Units 2 & 3. 6.20 Document 0B0-5027-140, revision 0. 6.21 Ref. Letter from T. Yackle to V. B. Fisher dated 08/2B/92; subject impact on operating procedures by SONGS 2 and 3 SB0 SER. 6.22 Ref. Letter from George Kalman - 06/06/92; subject SONGS, Unit 2(NRI) and 3 to Harold Station B. Ray Analysis. Blackout (SCE) dated 6.23 Calculation M 73-41 Rev.7 Aux. Bldg.-Heat Load calculation. A
NES&L DEPARTMENT CALCULATION SHEET iCCN No./ - PRELIM. CcN NO. M *f Pact "q 0F CCN CONVER$10N-Pr* Ject or DCP/MMP __ SONGS 2/3 Cale No. M73-116 A ccx ho. CCN - subject Room TepAeIJLtVLe Re12fLnitpurina Station Blackout (SBO) sheet me. _2 d
%g ORIG 14ATDA Daft lat DAtt R[v 021614At0A D' f t IRE CATE /
v v!I t!GER! 10/15 \
\N h \'
7.0 Nomenclature DAC -dominant area of concern Dwg -drawing h -surface conductance BTU /hr-ft2 ,.y hr -Room height ft K -thermal conductivity BTU /hr-ft *F k, -Effective thermal conductivity BTU /hr-f t *F Le -length along a heat flow Path (Concrete) ft L, -Length along East Wal's ft L, -Length along North Wall ft L, -length along a heat flow path (Plaster wall) ft L, -Length along South Wall ft L, -Length along West Wall ft L, -LengthalongWall(wherei=1to17) ft A -area through which heat flows ft' A, -Area of concrete ft' A,c -Area of ceiling ft A, -Area of East wall ft2 A, -Area of plaster ft2 A, -Area of South wall ft' Ar -Total Area ft' Am Area ft' A, -Area of West wall ft' A, -Area of wall or ceiling (where i = 1 to 17) ft2 Cp,,, -specific heat of air at constant pressure BTV/lbm F 4 Cp, -specific heat of Plaster at constant pressure BTU /lbm *F C3 -Effective specific heat at constant pressure BTU /lbm F I I
NES&L DEPARTMENT CALCULATION SHEET .=** . / 25 PRELIM.' CCN NO. N *"! PACE --- 0F CCN CONVERs!ON Freject er DCP/mP- SONGS 2/3 ' Calc No. M73-116 I ccN NO. CCN - sibject Room Temperature Res>onse qu_r_{no Station Blackw t (SBO) shut No. ,,#8 RfV ,. ORIGINATOR DATE IR r - DATE RfV ORIGINATOR Daft DAf t - IRt_
/ -
VIZ TIGER!' 10/15 kh/ gf g k 11
- h. i 7.0 Nomenclature (Continued)
Q -Rate of heat generated / transferred BTU /S or W' Q, -Total rate heat generated / transformed BTU /S or Kw i Qi -Rate of heat generated / transferred BTV/S or Kw ! Q, -Rate of heat generated / transferred BTU /S or Kw I Q2 cr -Rate of heat generated / transferred BTU /S or Kw Q3 -Rate of heat generated / transferred BTU /S or Kw-Q3cr -Rate of heat generated / transferred BTU /S cr W Q,3cr -Rate of heat generated / transferred BTU /S or W cr -Control panel R -Thermal resistance ' F-h r-f t'/ BTU S -Second time t -Thickness ft t,,f Thickness of air ft t,i -Thickness of insulation ft /b t, -Thickness of plaster ft tr -Total thickness ft U -Heat transfer coefficient BTU /hr-f t'
- F UFHA -Updated Fire Hazards Analysis UFSAR.-Updated Final Safety Analysis Report V -Volume ft 3
w -Wall p -Density lbm/ft 3 p, -Effective density lbm/ft 3 Ti -Room temperature 'F-T, -Surrounding surface temperature 'F 6T=AT -Temperature difference ' *F AX 7 -Total length increment ft AX -Length increment ft U2 -Area of Unit'2 Control Room fta
NES&L DEPARTMENT CALCULATION SHEET inwee PRELIM, CCN NO. A/;_f__ pacgh oe Proj xt or Ocr/ mr SONGS 2/3 Die No, M73-116 CCN CONVERSION CcN No. CCN - l , sybjwt _Ropm Tempantyre Re3ppnie Durina Station Blgkout (SBOL sheetno._M__, arv ontotutoa _ att int, cAtt larv entotuten eatt ist oatt rhu rinai mii \.hl , it Al e , cl
- 8. CALCULATIO"?
s
\
NES4t. OEP A.7NENT CALCULATION SHEET * *'
- st u eev e a-i r.es 2 7_ _,__.
pworocps,wp SONGS 2/ 3 CCM COutl440s Cat No. M'.'3- 116 y,, ,e C C N.. l Lext __ Room Temperature Resconse During SB0 my cac ron Sn., y, J 7 eats i o.n i wv i o . roa on i ,, j o,n c"4
/\ ij /\ \ 8.1 SWITCHOEAR ROOM 302A (EL 50)
(Ref. # 6.8.2)
.<- y *1, , *b"5 2.*'t.65' .6 y \c) $6 O f b t
n g l W Y l L
- g A .
s s V v l 0
%% M ' ' ~
c, a .v. Y s ese es no, ., f. g ,,, , , [
NES&L DEPARTMENT CALCULATION SHEET := =.e 27 : PRELIM. CCN NO. M *I PAGE OF CCN CONVER$!ON Project ei DCP/mP _ SONGS 2/3 Calc No. M73-116 ccN No. CCN - l I 5:bject Roam _Irmstraigre_Ressonsf_pyrLng_110 tion Dj n kqu1 J BO) sheet me. 73 [ h g CAIG144104 0 Aft IRt BAtt sty 0a 0144704 DAff Ikt Daft
/ by!!ilstel 10/16 . Olb lE%
v g i i m m mmmm ' mm1m , Input data summary used for the Switchgear Room 307-A Temperature Rise i Analysis. l Q = 1.82 BTV/S (Ref.f6.7) V = 24,218 ft 8 (seeassumption3.17) Heat X p C? A t Ti Sink (3TU/hrIft*F) lbm/ft' BTU /IE*F (f t t) (ft) (*F) Plaster 0.508 18.572 0.739 2158.0 0.459 95 t wall- - West 1.04 143.6 0.21 943.73 2.0- 95 wall - Concrete ceiling 1.04 143.6 0.21 1561.0 1.0 95 : Concrete- -
/\,
Jee data below fo'r reference to above table. I { t l' 1 l I r
,y-,--.y.,. c -r-.m..-,--7.-- ..w-w,, --wr-r -
r.r,- re=-,-- -+r + - + - e ,****w ' '
CALCULATION SH5ET er ~.7 portto.ccmno.Al-I pagg z.9 er Project er ocP/sey SONGS 2/3 CCN C MVitSION Cale lie. M73-116 cen no, ccy . i Sg hgggg 4ct tuttures g M_ ,,,,,,h catt tot eatt eri carstutos oatt tot satt
/ av!! 't*,ter 10/15 k.M, it pn v 's s CAICULATION FOR SWITCHGEAR ROOM 302-Al UNIT 21 GL t= 49.67 ft (Ref. # 6.8.2) '
GH t= 31.96 ft (Ref. f 6.8.2) DE t= 38.5 ft (Ref. # 6.8.2) BC := 11.17 ft (Ref. # 6.8.2) AB t= 29.63 ft (Ref. # 6.8.2) CD := 2.33 ft (Ref. f 6.8.2). hr := 19.0 ft (Ref. f 6.8.4) Q := 1920 W (Ref. # 6.7) 3.4121 Q t= Q ' 3600 Q = 1.82 frIU/S CALCUIATION OF WALLS AND CEILING AREA: An t= GH hr An = 607.24 ft*2 i As = GH hr As = 607.24 ft*2 Aa := GL hr Aa = 943.73 ft*2 Av t = GL hr Aw = 943.73 ft*2 Ace = AB DC + CH+DE 3 Ace = 1.561 10 ft*2 NORTH, EAST AND SOUTH WALL ARE P!AS1TR WALIS WITH THE SAME THICKNESS AND AIR' GAP. Ap t= 607.24 + 607.24 + 943.73 3 Ap = 2.158 10 ft*2 I MEST WALL AND CEILING ARE CONCRETE aca an. ems New see l- ,_ ,, _ . , - - - - --- , ,_ _ . _ _ . __...- - - -- - - - ~ ~ ~ ~ ' " "
we, w w e 8eVt1.Cf1CC0 ^ g,l Project er MP/see __50NGS 2/3 Cale its. M73 116 y l v.mc an entstutes u.!nsmuuhuhamukaL uit , tot utt erv oatstutom am-m:
/ kvl!'!?tel ~ 10/18 hN h, llO att in 3,g -
v ) M MMMM mmlm y CAIIU1ATION OF PROPERTIES FOR COMPOSITE WAI1(PIA tp := 0.0833 ft (Ref. # 6.8.2) tair != 0.292 ft (Ref. # 6.2) tT t= 2 tp + tair tT = 0.459 ft k t= 0.25 p m/(hr-ft-T) (Ref. # 6 17) . 4 e = 51.0 lba/ft*3 p (Ref. # 6.17) ', Cp := 0.74 p m/ (lban-F) (Ref. f 6.17) k := 1.24 air m/(hr-f t-F) (Seesection8.8) f ,/\ ' P air
*= 0.07 lbe/ft*3 (Ref. f 6.2)
Cp := 0.24 M/(lha-F) (Ref. # 6.2) i tT Es := . Ya = 0.508 m /(hr-F) 4 2- + , k k .i . p air *
'2 tp p ' + 'tair p '
pe = . p. air , pe = 18.572 lba/ft*3 tT
'2 tp p Cp + 'tair P
- p Cp Cpe t=
. p, , air air , '2 tp e ' + 'tair p ' . p. . air Cpe = 0.739 M/(lbui-F)
== = ae. \ l
i
.t
- 1 SONGS 2
$WifCHGEAR ROOM 302A = $60 ,
0.000 + tom 302A 14.7 24218.0 95' O 50 1.00 0.0000 0.0000 0.0000 1 0 i 0.0000 1.62 + 2V600 1.51 aE0r' I 0.0000 0.0000 ; EOF i 0 0 000.00 000.00 000.00 000.00 000.00 1 GEOF ' O 000.00 000.00 060.00 000.00 1 I Mof aEOF
-l 0.0000 0.0000 0.0000 I 1.e20 0.0000 0.0000 . i +
aEOF i. 1 1.00
- Stof .
'I 0.0000 14.70 95 0.50 1.e20 14.70 95 0.50 '
QEOF . _[ l I 3 2158 0 0.459 0.01 1.00
-g{ .
- l. f. M l '
0.000 1.47 i g . . . . . 0.000 0 0.00 1.47 CALC'NO: * * *
~!! ~ ' ~ ~ " - * * ~ ' .
1.t6 1,47 TIEV1 N.* - _ _ . . - - - _ . - - - . 0.508 18.572 0.T39 t/; ,DAfC ..d*k" - West WALL (CONckETE) - 3 943.73 2.0 0.01 1.00 CHECKEO . 0A'l- E: A.Slld1
- 0.00 1 1 {
1 0.000 .1.47 A ~ - - * * * - 1 86 1? GEOF SHEIT '2 I _CF . 1.04 143.6 .0.21
- CEILINC(CONCRETE) 3 1561.00 1.00 0.01 1.00 I 1 0.00 1 1. .
0.000 1,47 1.E6 1.47
- GEOF. . _ '
1.04 143.6 0.21
- DEOF i 0100010000 .9 aEOF 14400 1 00 10 25 -1.E20 0.001-500 0.01 1.0 '
O.10- 10.0 t 1.0 20.0 1 1-I
-f I
x . ., ..
-. n ,, .n, , 7 u n .-
I'
.? gg e' . . , WA, fl l' V4> L .C:i 4 's . l .
4
+
g c, N l
- C C P l <' N T $ ' Si 32 , ,. ,,.,. 8. 7 3 - l / /= , p$ I M ,
4 M 4$34+ e-- ra 1/ Afbean: .3_-/G A, .v ... l_CHf GMED: ., C AYF: . 2 I/; e SHECT3 2. - CF _ =.
- L-2 4 'l .....,.....I,, . . ..
_________m , . _ _ _ _
e- , Pace 1 12-15-92 20:06:35 a ^ PCFLW Version 3.7 , 50mCS 2 $WITCMCEAR ROOM 302A - 580
*** PCFL N 3.7 ***
- Thermofluid Dynamics for a System of Intercerrected Cytments <
, MAP-120 . 1111 0 (C) Copyright 1990 sechtel Corporation t (C) Copyright 1998 Sechtet Eastern Power Corporation ALL RIGHTS RESEPVED (C) Copyright 1976, 1985, 1987 Dechtet Power Corporation ALL RIGMTS RESERVED r a N Retense Record U Date~ version ' Description of Dianges ! 3/25/85' 1.00. . criginet PC version l 8/25/86 2.00 Air-only version (SF) 4
- 1/06/87 3.00' Added SIGFLO routine
! 6/G2/88 3.10 Modifled for new cospi1er. L 2/06/90- 3.61 61 Cosportment version 12 5/21/91' 3.7 - Automatic aero reverse flow CCN r ggyq h \ s fo Y INPUT fite name: b:r302a.inp OUTPUT file name: b:r302a.0UT f P.[ %g - Ptof file name: b-r302a.Ptf' g 7) / m : . f ~ 7/ m M_Y.[-).
-] L._'._D $ :
l' y,s ,,wn" am
?3 3. . n= _'M ~ % ,
y, ,
.,- , .,.,m. s-.%,._ , . , . . + , ,, ,-,,s.... ~ , . , . . . , . , , . - -,,.r,., .r .. , , , . . ... . - ...r=. , e,. ,.._.-4 , , _ . . . . . . - . , . . . _ . . . - - . ~ . .
Page 2 12-15-92 20:06:35 PCFLtm Verstar 3.7 SOKGS 2 WITCMGEAR RCDs 302A - $80 COMPARTMENT Iu!TIAL CO CITIOts
. _____ ..======================
Compartner:t - Description volume fesperature Pressure Ret. RJaidity Fl0W to CoppertMCTS (ft**3) (Degrees F) (psia) (Fraction) ( 0 = Atmoschere ) O Atmos;Aere 95.00 14.7000 .50 1 ROCM 3324 2.421SE 4 95.00 14.7000 .50 C W/ ccd: A/-) , P 3'/
~
191- 9 3 -//l i 7
$1Ije i 0-/ -1P \. ) lL-n 4L 2 > -
34
Page 3 12-15-92 20:06:35 PCFLLD Vers?on 3.7 SONGS 2 WITCMGEAR RE N 302A - 580 COMPARTMENT AUXILIARY CopDITIOers
========================....._____
Co mertment Compartment Air Cooler Constant Air Cooter Teg eratures Equipamt neat Loed Leakage Constants Dese. (BTU /sec-deg) Water (F) Start (F) Options Rate (CFM) e Press.(in. 520) 1 Room 302A .000 .0 .0 1, 0 .00000 .0000 COMPARTMEET NEAT LOAD
=======================
Carpartment 1 Time (seconds) Meat Load (BTU /sec)
.00 1.82 23800.00 1.82 CC N l ,.
cca; H-I , P. S o M 173 __'1 . . _ 1mpd
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1 . ( p. 00 M c. T e 00 T = / m b a. A . 77 R A= O r. D r. u A E D=== ts. i . O f s 44 G ( . l C s 11 M m= 00 O . I e. C l . 00 L _ R r. T O=
= te. . 00 00 B - E n P..
A_ I W O= b a. r. 00 F P 0= O s L= S= e l u. o. T I o M T F . A i t
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2 ) . S t F. - G n g 00 6 8 0 e e- 00 m - 00 5 . d. ( t. r. a p. 1 p. m
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Page 5' 4: 12-15-92
- 20
- 06:35 PCFLLO Version 3.7 *
. . - m2 utTCNGEAR ROOM 302A - SLJ
. Meat Sink Ntsuper 1: PLASTER WALL CONVECTIVE REAT TRANSFER PARAMETERS Stab Materlat' user-Defined Stab Thickness . 459 ft Surface Area- 2T58.00 ft**2 7herme1 Conductiwity'- .506 8TU/hr-ft-deg. F Density 18.572 tbm/f t"3 Therset Dif fusivity .037 f t"2/kr West Capacity .739 BTU /ttan-des. F
,.i' First mode Thickness - .01000 ft mode Thickness Ratio 1.00 Nwber of Nodes . 47 , Externet Boundary Condition Convective Externet neat Transfer Coefficient tkhida
- Outside Environment Inden 0 Inside Environment Index 1 Interior Neat Transfer coefficient ' Uchida TA3LE OF EXTERNAL NEAT TRANSFEst COEFFICIENTS -Temperature Difference (Oegrees F) pent Transfer Coefficient (BTU /hr/ft**2/F) .00000- - 1.4700 1.00000E+06 1.4700 CC /
TAsLE OF INTEttOR NEAT TRANSFER COEFFICIENTS c cfh d- I , P. s7
- -- ---4 ... . . _ _..
Tempersrure Difference (Degrees F) Meat Trant?er Coefficient (BTU /br/ft**2/F)
.00000 . 1.4700 .., - /
1.00000E+06 .
- 1.4700 ,
TAALE OF MEAT SINK suESM POINT COORDINATES (feet) '
-- - /M*
, .000000 .010000.- .020000 .o30000 .04o000 . 050000 . .n60000 .o70000' 0e000o . 0,oooo - O id-
. 3;
- 0[ 1_+
a
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f'97 4 es4 . e 7 e en + .,3 p 8 ,'e-7% ap-- ,e _w me<.gi ecw een.--r .+ __ ___.___,__2_ - mm.m__._ _ _ _ _ . _ m..__._____,m._- __,. caw..m.
<- r a a - - . -xs .e - >s ->--*t+-*-a--8 a
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- Waiber 2: WEST Watt (ComCRETE)
CowvECTIVE MEAT TRANSIER PARAMETERS Stab Material Usee-Defined
- Stab Thickness 2.000 ft surface Area 943.73 ft*2 Thermist Cenductivity . 1.040 STu/hr-ft-des. F
- Density 143.600 ttun/f t**3 Thernet Diffusivity .034 f t**2/hr
. Neat Capacity .210 BTU /t!ze-deg. F First mode Thickness .04082 ft made Thickness Ratio 1.00 number of modes 50 i Externet Soundary Condition Adiabetic e Irelde Envircreent Indez 1
. Interior Meat Transfer Coefficient Ochide ~
TA8tf OF INTERIOR NEAT TRANSFER COEFFICIENTS
=__________ = _______
, Tengerature Difference (Degrees F) Neet Transfer Coefficient (ETU/hr/f t"2/F) ' '.00000 1.4700 1.00000E+06 . 1.4700 CcN/ TABLE OF MEAT Simit MESN PC.'NT COORDINATES (feet) _ _ _ - - - - - - C c d , //- 1 , L '3'? 9
.000000 . 000816 .081633 '.122449 .1632e5 .M4082 .244808 .28tS714 - .326531 .367347 - .408163 .44P900 c .489796' .530612 - .. 571429' .612245 .653061 .693878 .734694 .775510 '~^~ .816326 .. 857143 .697959- -.938775 .979592 1.020408 1.061224 1.102041 1.142857 1.183673
- 2 1.224490
- 1.265306: 1.306122. 1.346938 1.387755 1.423571: 1.469387 1.510204 1.551020 1.591836 l .
1.632653 '1.673469- 1.714285 1.755102 1.795918 1.836734 1.877550 1.918357 T.959183 2.000000 .y, ,,
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i Page 7 12-15-92 20:06:35 I PCFLUD version 3.7
~
] StasCS 2 VITCnGEAR 4004 302A - 580
! Nest Sink Nunter 3: CEILitG{CDuCRETE) l' CDuvECTIVE MEAT 1RANSFER PARMEETERS ==2_______=_________m Stab ptaterial User-Defined stab Thickness 1.000 ft . Mace Area 1561.00 f t"2 Theral Conchetivity 1.040 ETu/he-ft-deg. F Densin 143.500 ttarft**3
- l. Therest Diffusivity .034 f t**2/hr 4 - Beat C gacity .210 sTu/ttse-deg. F First &cde Thickness .C2041 ft mode Thickness Ratio 1.00 usaber of modes 50 -
4 Enternet Boindery Corw$ition Adiabetic Inside Erwirorument Inden . 1 Interior Meet. Transfer Coefficient Uchide TASLE OF IMIER10R MAT TRANSFER CDEFFICIENTS
===.2======= _ __ ===
Temperature Dif ference (Degrees F) . Nest Transfer Coefficient (ETu/hr/ft**2/F) .
. - . . . . . . . . . . . . . . . . ~ . . . .. ............. .. ............... . . . .00000 1.4700 1.00000E+06 . 1.4700 .CcW l I- TABLE cF MEAT Stut R $4 PoluT C00RGesasts . feet) =============___ -- ______a (C e s 8 ^ ' ~~ .000000 .020408 .040816" .061224 .081633 .102041 .122449 .142857 .163265 .183673 . 20s.082 L.224490; .244898- ~.265306 ~ .285714- .306t22 '.326531 ' .346939 .367347 .387755 . . 408163 .428571- 448980 469388 489796 .510204 .530612~ .551020 .571428 .591837 -
17
.612245 "'.632653' ,.653061- . 673469 .693877., .714286' .734694 .755102 .775510 .795918 ~7 "" ' .816326 .836734: .857143 .377551- .897959 .918367 ~ '. 938775 .959153 .979592 1.000000 ' ~ ' ' " ~ ~ ' ~ ; ,a -now 97p& 1. hup 8
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Page 8 12-15-92 20:06:35 PCFLt2 Version 3.7 SONGS 2 WITCNEAR ROOM 302A - $80 AUXILIARY CDNDITIONS SELECTED m._.._____... Slowout Panets CFF Corweetive Feat Transfer os tMit Air Cooters OFF Reating and Ventitation Flow 0FF Conpartment Leakage OFF Compartment EtpJipment Heat Loads on Atmos M e Exhaust Fan CFF 8icudows DropoJt OFF Iero Reverse Floh DFF 8% Revaporization OFF PROBLEM CONTROL PAiLANTERS
===s..._....======3===
Probles Time Limit 14400.0 seconds Flow Calculation output /Fre m ency OFF/ 0 Corportment Pressure Difference Output CFF Meal Sink Calculation Output / Frequency ON/ 1 Estended Meetsirt Outpat: tode Terperatures Cu Restart Optfori OFF ksiter of Plot Points 25 StGFLO Switch Time 1.000000E+20 seconds
$!GFLO tteratfort Tolerance .001000 i Maxinua mater of Flow Iterations 00 CCH/
CALCULATION / PRINT TIMES SELECTED __ - -. esse. _ . _. 2 ( (. e l f* 4.[/ Calc. Time Step _ Change Time Print Intervat Change Time 1.000E-02 1.000E+00 3.600E+03 2.000E+0E 1.000E-01 1.000E+01 0.000E+00 3.000E*00 1.000E+00 2.000E+01 'O.000E+00 0.000E+C0 1.000E+01 1.000E+02 0.000E+00
. yy .,,f 0.000E+00 -.. -.__m. - .
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Page 9 12-15-92 20:06:35 Ptitto version 3.7 SchGS 2 WITCEEAR R004 302A - sao Time = 0 Mours O Minutes .00000 seconds ( .0000 secords ) (Calc. Time step = 1.000E-02 seconds)
----- Co m artment ---- T em. S-Nest / Ret. -- Pressures (psia) -- Tetal Frac. Trac. meat Tctal (Deg F) Custity S.an. Total Air steam K Rass (tha) Air vapor Load Energy (8'U) === = ====== = === m . ==== ======= ==== == = === = == = ====== ==== = ===== ............ ....... == = == --- ._
0 Atmos $ere 95.000 .50 14.700 14.292 .408 1.40 .9825 .0175 1 ROOM 302A 95.000 21.3 S .50 14.700 14.292 4C8 1.40 1.714487M +C3 .9525 .0175 1.82 1.924C10M+05 Compartments It itial Energy 1.9240E+05 STU Co m artments Initial mess 1.7145E+03 (tsa Current Energy in Compartments 1.9240E+05 STU Current pass in Co m artments 1.7145E+03 tbo 8Iowh Enthaipy Ad$ed 0.0000E+00 Bfu aiowh mass Ad$ed 0.0000E+00 itm irreversible Energy Loss 0.0000E+00 8TU (Conde*w. + DecSr;ut) Mass toss 0.0000E @ tta Energy Lost to Atmos #ere 0.0000E+00 STU Mass Lost to Atmosphere 0.0CCCE+00 tta I Rate of Energy Loss to Atmos M e 0.0000E+00 BTU /sec ] [ tate of mass toss to Atmoschere 0.0000E+C0 Itm/sec I Absolute Energy Isbalance 0.0000E+00 STU Absolute 4ss Iabalance 0.0000E+00 the Relative Energy Isbetance 0.0000E+00 % Relative Pass lebetence 0.0000E+00 1 C c/V / C.C. ;): N' ! ) ?. NZ HL f73{ m. h ae 50 Ikk IL * $ 1/2 T
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7ege 12 32-15-92 20:06:35 PCFLW wersie 3J sonCS 2 utTCMGEAa acoM 302A - sso Time = 1 Mours 0 pimtes .00000 seconds ( 3600.0000 seconds 3 (Calc. Tlac a tep = 3.00CE+01 secon+st
- ~ ~- Carpartment --- Tup. S-Meat / act. -- Pressures (psia) -- Total Frac. Frac. Een Total (Deg F) Gustity num. Total Air steam I mass (Itm) Air Varsr LNti Energy (STU) = = = = = = = = = = = = = = = = = = emm = = = = = mm = = = _ _ _ _ . _ _ _ _ _ . - = sm _________==_____________we== secimus, mmm==
0 Atan @ ere 95.000 .50 14.700 *%.272 .405 1.40 .9825 .0175 1 ROOM 302A 96.355 22.6 5 48 14.736 14.326 409 1.40 1.7144870E+03 .9825 .0175 14 1.92SCS.0E45 Compartments initial Energy 1.9240E+05 BTU Compartments initist Mass T.7145E+% ftse Current Energy in compartments 1.9281E+05 STU Current mass in c m ,i .ts T.7'45E+C3 IPs l 8towdomen Enthalpy Adbed 0.0000E+03 BTU Stoh Mass Ached 9.0000E40 itsn l Irreversible Energy Loss -4.5262E+02 BTU (Condens. + Oropout) mass Loss 0.0000E+00 ttaa Energy lost to AtmosNe 4.4765E+01 stu mass Lost to Atmos @ere 0.0000E+00 itse [ Rate of Energy Loss to Atmosphere 3.9746E-02 giu/sec } t Este of pass Loss to Atmos @ere 0.0000E+00 tcse/we } Absolute Energy Imbetance -3.7331E-01 STU Absolute mass labetance 0.00JJE+00 lba aelative Energy Iabatance -1.9362E-04 % aetative m ass Iabatance 0.0000F W 2 CC/V / CCt :I hl-I ' h YS
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Page 14 12-15-92 20:06:35 PCFLLC versiers 3.7 SC ES 2 VITCMGEAR Rotr 302A - sao Time = 1 Mours O feinutes .00000 seconds ( 3600.0000 Seconds ) (Calc. Time step = 3.000E41 seconds) Extended keatsirk output: mode Te m eratures Meat Sink No. 1, PLASTER WALL 95.530360 95.506810 95.483920 95.461700 95.440220 95.419460 95.399380 95.379973 95.361180 95.343110 95.325710 95.309050 95.293000 95.277560 95.262790 95.248690 95.235200 95.222320 95.209900 95.198210 95.186980 95.176360 95.166230 95.156590 95.147490 95.138820 95.130650 95.122960 95.115690 95.108860 95.102450 95.0964 9 95.090790 95.085540 95.080660 95.076140 95.071 % 0 95.068080 95.064480 95.061190 95.058200 95.055510 95.053070 95.050870 95.048920 95.047210 95.045930 Heat sinu ko. 2. WEST VALL(ConCRE1E) 95.296110 95.239040 95.190090 95.148770 95.114350 95.086330 95.063930 95.046360 95.032750 95.022490 95.014920 95.009370 95.005600 95.002660 95.000700 94.999420 94.998630 94.998140 94.998020 94.998020 94.998020 94.998080 94.998260 94.998260 94.99S260 94.998260 94.998080 94.998260 94.998020 94.998260 94.998020 94.998260 94.998020 94.998140 {C ' j 94.998C20 a 94.998020 94.996020 94.998020 94.996020 94.998020 94.998020 94.998020 94.998020 04.998020 94.998020 b.4 = b[ t *' daf' f 3 J. Mh 94.995020 94.997960 94.997890 94.997830 94.997830 Meet Sinit No. 3, CEILINC(CONCRETE) 95.314483 95.188930 95.285490 95.169400 95.258450 95.151580 95.233370 95.135350 95.210240 95.120760
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0 Atmosphere 95.000 .50 14.700 14.292 408 1.40 9525 .0175 1 Room 302A 96.535 22.7 3 .48 14.741 14.331 .410 1.40 1.7144870E+03 .9825 .0175- 1.82 f.9286250E*05 Carpartments Initial Energy 1.9240E+05 STU Compartments initial Mass 1.7145E+03 tta Current Energy in Corportments 1.9236E+05 BTU Current Mass in Compartments 1.7145E+03 ttaa Blowdown Enthalpr Adied 0.0000E+00 STU Stoudows Mass Added 0.0000E+00 tta Irreversible Energy toss -8.1756E+02 STU (Condens. + Oropout) Mass Loss 0.0000E+00 tta Energy Lost to Atmosphere 3.5550E+02 eTU Mass Lost to armatchere 0.0000E+00 the I Rate of Energy Loss to Atmosphere 1.3505E-01 STU/sec 3 ( Rate of Mass Loss to Atmosphere 0.0000E+00 t.w/see I Absolute Energy letalance -5.1514E-01 BTU Absolute Mass latelance 0.0000E*00 tbo Relative Energy tabalance -2.6710E-04 % Relative mass Imbalance 0.0000E+00 % CCA: Al- I, f. 5 I
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' 95.047270 95.044590 95.042210 95.040070 95.038130 95.036470 95.035060 95.033780 95.C32680 95.031710 95.030910 95.030240 95.029630 95.029080 95.023660 95.028290 95.027930 95.027680 95.027500 95.027440 C cq / . ,3 CC M, N - l , i'. 3 M.na-i>L f' ipui i>- -n n . \t.- u -81r 53 . . _ .
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Page 18 . . ' 12-15-92 i' 20:06:35 PCFLUD version 3.7 Sout.S 2 WITCIKTAR ROCM 302A - 580 1 Time = 3 Mours O mirutes .00000 seconds ( 10000.0000 seconds ) (Catc. Time Step = 3.000E+01 secorris) e $ ----- Ccupertment ' ---- Temp. S-Meat / Ret. -- Pressures (psia) -- Total frac. Frac. #est Totat l (Deg F) Quality Mun. Total Air Steam K pass (tbe) - Air vaquor Load Energy (BTU)
- ========_ _ ..,.____.=== ======= ======= ue== ____ ======= ==== _________ ======= '
O: Atmosphere 95.000' . 5C 14.700 14.292 .LOS 1.40 .9625 .0175 _1 ROOM 30ZA. 96.673 22.9 $ .48 14.744 14.335 .410 1.40 '1.7144870E+03 .9825 . 0175 1.82 1.9290390E+05 l Concertments Initia1 Energy' 1.9240E+05 8TU compertaents Initiei mass 1.7145E+03 Ibe I current Energy in Carpertsumts ' 1.9290E+05 STO Current mass in Compartments 1.7145E+03 ttse i
- Bloudoun Erithatpy Added 0.0000E+00 ETU Bloudoun mass Ached 0.0000E+00 tbn .1 I ~ Irreversible Energy' toss -1.507&E+03 STU (Condens. + Dropout) Mess Less 0.0000E+00 tbo i
Energy Lost to Atmosphere .1.003SE+03 giu Mass Lost to Atmos;t.ere 0.0000E+00 the ( Rate of Energy toss to Atmos;fiere 2.2336E-01 STU/see ] I tate of mass Less to Atmosphere 0.0000E+00 ttweee 1 '
+ Absolute Energy labotance ..-6.5393E-01 STU Absolute Mass Isbetarce 0.0000E*00 ttus ReIative Energy Ie6etance -3.3899E-04 % . aeietive Mass Iseeiance 0.0000E+00 %
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, PCFLUD version 3.7 SONGS 2 WITCNCEAR ROOM 302A - CP1 Time = 3 Hours O Minutes .00000 seconds ( 10800.0000 seconds )'.(Cate. Time Step = 3.000E+01 seconds) Estended Heatstre output: Node Temperatures Neat Sink No. 1, PLASTER 01L 95.905240 95.883150 95.861480 - 95.840120 - 95.819180 95.798550 95.773410 95.758580 95.739110 95.720000
.95.701320 95.683070 95.665130 95.647550 '95.630340 -95.613560. .95.597140 95.581090 95.565340 95.549960 95.534940 95.520290 95.505950 95.491970 95.478300 95.465000 ^95.452000 95.439300 '95.426910 95.414830 95.403110. 95.391690- 95.380580 95.369780 95.359220 95.348970 95.339020 95.329380 < 95.319980. 95.310820 ~ 95.301910 95.293240: 95.284820 95.276640 95.268710 95.261020 95.254300 Heat Sink No. 2,' WEST WALL (CONCRETE)'
95.549160 95386790 95.429470 95.377110 ' 95.329380 95.181060 , 95.286040 95.129550 95.049220 95.247040 95.108490
- 95.039400 95.212130 M.090120 -
95.031160' 95.074310 95.024260 95.153590 95.060760 95.018650 {(M / - K[ ] j. . .. Q b . 95.013890 95.000890
. 95.010100 94.999790' 95.006930 94.998990 95.004360 94.998440 95.002410 94.996140 { 9 /y*
I 94.998080. -94.998020 94.998020 94.998020 94.998020
.94.998020 94.998020- 94.998020 94.998020 -.-----4 - ~.94.998020 g - '94.998020 . 94.998020 94.998020'. 94.998020 94.998020 a; 94.998020 94.997960 94.997890 94.997530 94.997830 .
1 Heat $1nk No. 3; CEILluG(CONCPETE) w~ ' ' ,. 273 -//4
~ ~"~ ~
95.577610 ' 95.546660 95.516940 . 95.488310' $95.460850 PT ' ~
- 95.362640 _95.340650. .~.
95.434600 - 95.320100c
. 95.409520 95.300450 95.385470 95.281770 95.264130 95.24744 . [- a.' M $ L D Uyb. ~['I*i k 95.231720 95.166050 95.216890..
95.155300 :
' 95.202910 : - 95.145290 95.189790 95.135890 . 95.177580 x 95.127110 /) [', h "bh-95.118990 . 95.111480 95.104520? .95.0961to 95.092190..
24 %.# - -_
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- 95.086760 - 95.081760 - 95.077120 95.072910 - 95.069060 95.065520 95.062350 ' . 95.059480 95.056920 95.054660 95.052640 - 95.050810 : 95.049220- 95.047820 95.046720 95.045810 95.044530. 95.044160 ..95.045070 95.044040 4
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Page 21 12-15-92. + 20:06:35 PCFLLO Version 3.7 ' SCNGS 2 UITCHCEAR ROOM 302A - 580-Time = 4 Hours O Minutes .00000 Seconds -( 14400.0000 Seconds ) .(Cate. Time Step = 3.000E+01 sc ends)
----- Conpartment .---- T ealp. S-Meat / Ret. -- Pressures (psia) -- Total Frac. Frac., Heat Total -(Deg F) Quality 'Mue. Total Air Steam IC Mass (tbm) Air Vapor Load' . Energy (STU) =================================== sus ======= ============== ==== = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = .
O Atmosphere " 95.000 .50 14.700 14.292 .408 1.40 .9825 - .0175 1 ROCM 302A - % .788 23.0 5 .47 14.747 14.338 410 1.40 1.7144870E+03 .9825 .0175- 1.82 1.9293860E+05 Conpartments initial Energy 1.9240E+05 8T0 Compartments Initiat Mass 1.7145E+03 the !' Current Energy in Compartments 1.9294E+05 BTU Current Mass in Compartments 1.7145E+03 ttsu Stowdown Enthalpy Added 0.0000E+00 87U Stowdown Mass Added 0.0000E*00 lba irreversible Energy Loss ~-2.4816E+03 STU (Condens. + Dropout) Mass Loss 0.0000E+00 the Energy Lost to Atmosphere 1.9433E+03 BTU Mass Lost to Atmosphere 0.0000E+00 itsa
. ( nate of Energy Loss to Atmosphere 2.9683E-01 STu/see ] ( ante of Mass Loss to Atmosphere 0.0000E+00 ttzn/sec 1 Absolute Energy labalance -7.2937E-01 STU Absolute Mass lebetance 0.0000E+00 lbe me tative Energy labatance -3.7803E-04 1 Relative Mass Isibalance 0.0000E+00 %
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Page 23 12-15-92 20:06:35 PCFLLD Versfort 3.7
$04GS 2 WITCMGEAR ROOM 302A - 580 Time = '4 Hours 0 Mirutes .00000 seconds ( "14400.0000 seconds ) (cale. Time step = 3.000E+01 seconds)
Extended Meatsirk output: aiode Temperatures . 4 Heat Sitt Mc. 1, PLASTER WALL
. M.036900- % .015290 95.993990 95.972930 95.952240
!- 95.931850 95.911830 95.892060 95.872530- 95.853360 95.834500 95.816010 95.797760- 95.779620 95.762180 95.744840 95.727810 95.711030 ' 95.694550 .95.678380
-95.662450 95.646820 95.63000 95.616420 95.601590 '95.587070 - ' 95.572780 95.558750 - 95.544950 95.531460 95.518220 95.505220 95.492400 95.47989u 95.467620 t- 95.455540 95.443700 95.432100 95.420680 95.409450 95.398470 95.387660 95.377040 95.366670 95.356410 '95.346340 95.337490-Heat Sird No. 2, WEST WALL (CONCRETE) 95.645230 95.581450, 95.522130 95.467190 95.416290. -3 95.326750 95.287690 95.252170 95.220120 i ' 95.369600- -95.191190-95.087370 95.165310.: ' 95.073330 '
95.142120 95.061070 95.121490-95.050510
- 95.103360 95.041410 kg .[ 1 195.033540 95.026890' 95.021270 :95.016510 95.012480 ,
- 95. = 9060 94.999300 95.m 6260
'94.998570:
95.w3940 - 94.998140 95.wi980 -
.94.998020 95.=0460 94.998020 - (d. /-4 ) . garV' g 5 t# (, o -
f-
- 94.998020 94.998020 _q 94.998020 - 94.998020 - 94.998020 i 94.998020 - 94.998020 94.998020 - 94.998020 94.998020 . . _ ~'
1 94.998020 94.997960- 94.997890 94.997830 94.997830 #
!]
Heat Sir
- No. 3, CE!LIWG(CONCRETE). ,
g j./
- 95.678380- 95.647000 95.616550- 95.587130 '95.558750 :
95.531400- 95.505100 05.479710 - 95.455350 95.431920 . ' e- -
--95.387970 : 95.',67460 - '95.347870 95.329130 : . - . - -l 95.40945G :j 95.311310' ' 95.294340 ' 95.278170. .95.262850 95.197660' -- 95.248320-95.186680 . g ff - ~ . , +
p.fyp ' 95.234530 '95.221530 95.209260 95.149080 95.141000 95.176420 :95.166720. 95.157620 lt. M, v - 28 'I
~ . ~ ~ u . . . '- ~__hb _.
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a '4 h 4 18' 95.133640 '95.126600 95.120270 95.114290 95.108860. 95.103790. 95.099150 95.094940 .- 95.091090 - 95.087620 95.084560 ?95.081820 95.079380 95.077300 95.075530
- 95.074070 ,. 95.072910 95.072050 - 95.071500 95.071260 ^
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Page 24 12-15 20:06:35 PCFLtJD Verston 3.7.' SokGS 2 viitKEAR R00M 302A..- 580 MAXIMUM AMC Mikl e PRESSURES AND TEMPERATURES
. . . . . . .. . . . . . . . . . . . M ax i mun- - -- ~~ - - - u - -'- - - - + - - - - - - - - - ~ - - - ~ ~ -- M i n i sue--- - - - - - - -- - - ~ ~ - -
(sec) -(psia) ~
'(psie) (deg. F)' '(sec)~ (sec) (deg. f) (sec)
Compartment Pressure- .at Time Tepperature at Time' Pressure at Time Temperature ' at Time
================== === 3s== ======== ==== ... ====s : ========. ==.s==== =====3===== ========
1 Roam 302A 14.7473 1.4400E+04 E 788 1.4400E+04 14.7000 1.0000E-02 95.000 .0000 685 ' Calculation cycles enere performed M
==> . Execution time: --00:01:16.46 '
1. 6 0
. t_:,c pj d A s VM a }f ']5-jfL ffjysi i - /61L; 30 h '
l'l'u &
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' ' m . MAL _-r TeuC oeeemehr CALCULATION SHEET Al- t neuvu een w ues43, Protect or DCPMMP SONGS 2 / 3 ' Calc No,iM7 3-116 CCN 00sVEASdON' , '
RN No CCN - _ sweg Room' Temperature Resconse During SBO-sn., g,;j d
%Y 1 Odnose66 0475 -I WIE Daft afv i 02:0se47081 - Daft WIS 04fg E - IGERI. 'p.id /
gg pp - A~ m . A Q
~
8.2 DISTRIBUTION ROOM 310B(El 50) g_ (Ref. # 6.8.2) I - I
/ e \i.o:
1 _ t- - - ____m- v
/ / . / l8.0 j,
m.33 s E O O
. I' % 7 ar a . .-
4-
~ J. . ;. ,
NES&L DEPArtTMENT CALCULATION SHEET lee m + PRELIM. CCN NO. N ' f cs4OF PAGE CCN CONVERs10N l Pr0 ject or DCP/MMP SONGS 2/3 Calc No, M73-116 CCN NO CCN - I srbject Rqqm TemDerature Reipon_se During S_tation Blackout (SB0) sheet No. bd nry onicinAron cart rat catt l ntv onisinAton oAtt int oatt
/ N N=virtictni to/is \M - N oh .
Q \ V\ Input data sumary used for Distribution Room 310B Temperature Rise Analysis Q= 5.46 BTU /S (Ref.#6.7) V = 4,370.0 ft (seeassumption3.17) Heat Sink K* p Cp* A t Ti BTV/hr-ft F lbm/ft 3 BTU /lbm F (ft) 8 (ft) (*F) North 0.508 18.572 0.739 342.0 0.459 95 wall Plaster South 0.567 15.337 0.738 342.0 0.417 95 wall Plaster Ceiling 1.04 143.6 0.21 266.94 1.00 95 Concrete /s\ See data below for reference to above table. I
n vML.VUL.A I avN SHEET jig;,*-(c, ,,, f /- t ,,,66;, Project er DCP/w SONGS 2/3 CCM CMVERSIM Cale No. M73-ll6 . _ ._ce,no, ccg , l
'M '
A carstnaron cart tat neus N eart aty caraturou ! cart tat- cAtt t' 3 haviriterat 10/15 I_ N/ h A4 w mammme ammmmmmmmmmmmmmum numman A ' mammmmme mummme maamma mummmmmmmmmmmmmmme amann musumumme i enemme . , CA1CUIATION OF DISTIRBUTION ROOM (ROOM 310-B); UNIT 2 l Ln := 18 ft (Ref. # 6.8.?,) La := 14.83 ft (Ref. # 6.8.2)- -
- 4 Ls := 18 I ft (Ref. # 6.8.2);
t j* IN := 14.83 ft (Raf. # 6.8.2) K := 0.25 P BTU / (hr-ft-F) (Ref.- '# 6.17) 'b p := 51.0 P lbm/ft*3 (Ref. # 6.17) Cp := 0.74
'P B'ITJ/ (lbm-F) (Raf. # 6.17) ,
i K := 1.24 air BTU / (hr-ft-F) (Seesection8.8) e := 0.07 i air BTU /ft* 3 (Ref. # 6.2) i Cp := 0.24 air B'IU/ (lbm-F) (Ref. . #~6.2)
CALCULATIONLSHEET :iabwe PttLIM. ccM NO. g .i pagg g, fr Prejut er DcP/ mP SONGS-2/3~ CCM CONVERSION Cale No. M73-116 - ccN mo. CCN - l subjut Room Temoerature Ret g i g g h _ he.
-w estatutos cart ter eart arv earsinatos nart tat
{ cart f* - avl! TIGtt! 10/15 k'lk r \1 O h y n
====================== ====== nummme museum massim ammmmmmmei sansa .
CALCUIATION OF WALL AND CEILING AREAS An := 18+19 ==>> An = 342 f t" .: As := 18 19 ==>> As = 342 ft*2 Ace := 14.83 18 ->> Ace = 266.94 ft*2 HEAT ICAD(Q) 3 !
-Q := 5.76 10 W {-
(Ref. # 6.7) ; i 3 3.4121 Q :=~5.76 10 - ->> Q = 5.459-3600 BW/S l, i
\
L scama new m.
CALCULATION SHEET jijg-(c, ,, ha ,,,6% g< _. Project er DCP/Mnt SONGS 2/3 CCN CONVER$10N'- Cale No. M73-il6 CCN 40. CCN - I Sybject Room Temoerature Responso Durino Station Blackout (580) sheet me.- 67
% entstnaroa- catt rey cart arv carstmaron cart rat cart - ,, /3 hvit7:ctat ~ '10/15 } 9A ,,
h4k samm e ammmmmmmmmmmmmmmesummmme s , v mammen maammenaammmmensmemummmmmmmeimmensmaammmmmmei .. FINDING Ka, pe AND Cpe BASE ON METHODOIDGY *. FOR NORTH WALL (COMPOSITE WALL) tp := 0.0833 ft (Ref # 6.8.2) tair := 0.292 ft (Ref. # 6.2) tT := 2 tp + tair J tT = 0.459 ft tT Ka := tp Ke = 0.508 BIU/ (hr-ft-F) tair 2- + -- K K p air
'2 tp p ' + 'tair p p, air , pe = 18.572 pe :=
lbm/ft*3 tT
'2 tp p Cp +
tair p Cp _
, p p, , air air, Cpe := "2 tp p ' + "tair p ' . p. . air ,
i Cpe = 0.739 BIU/(lbm-F)
~sesas.aas tape me i
33,- gQ gq-- g
,g qC,,,7p ,
PRELIM. CCN *). A .' pagg m w CF Projwt or DCP/mP SONGS 2/3 Cale No. M73-ll6 " ' CCN [CN - I subjut Room Temocrature Res)onse Durino Statio'n Blackout (SBO)
% , et!Grnaron- cart sh t n., 67
[tl CAft RIV Ot!G!4AtC4 yf( tag ggtt
/ D v!z 7:stti 10/15 IM h . ti lo pq .- g.-
ITNDING Ka, pe AND Cpe BASE ON METHODOIDGY FOR SOUTH WALL (COMPOSITE WALL) tp := 0.0625 ft (Ref. # 6.8.2) tair :n 0.292 ft (Ref. # 6.2) t.T := 0.417 ft tT Ka := Ke = 0.567 BTU / (hr-ft-F) /\ 2- +- K K p ah ,
'2 tp p ' + 'tair p ' . P, air , pe = 15.337 pe := .
lbm/ft'3 tT
'2 tp p Cp ' + 'tair p Cp ~ . p p, air Cpe := .
air.
'2 tp p ' + 'tair p ' . P. . air, , Cpe = 0.738 BTU /(lbm-F)
$0NGS 2 O!$TRIBUTICW ROOM 3108 - 580-0.000-ROOM 310s.
14.7 4370.0 95 0.50 1.00 0.0000 0.0000 0.0000 1 0
,0.0000 S.46 28800 5.46 SEOF 0.0000 0.0000 .
GEOF 0 0 000.00 000.00 000.00 000.00 000.00 1 GEOF 0 000.00 000.00 000.00 000.00 1 GEOF DEnF 0.0000 0.0000 0.0000
-1.e20 0.0000 0.0000 ELOF 1 1.00 -
GEOF 0.0000 14.70 95 0.50 1.e20 14.70 95 0.50 QEOF >
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*** PCFLLD 3.7 *** > Thermofluid Dynamics for a System of Intercomected Cwpartments <
MAP-120 0110 (C) Copyright 1990 8echtel Corporation (C) Copright 1988 8echtel Eastern Power Corporation ALL RIGHTS RESERVED (C) Copyright 1976, 1985, 1987 8echtet Power Corporation ALL RIGMtS RESERVED Release Record Date version Description of Change
- 3/25/85 1.00 Original PC version 8/25/86- 2.00 Air-enty version (SF) 1/06/87 3.00 Added SICfLO w ine
- 6/02/88 3.10 ModIfled for eew coupi1er 2/06/90 3.61 61 Compartment version 5/21/91 : 3.7 Automatfc zero reverse flow.
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, PCTLUD version.3.7 SOHC5 2 DISTRieUTION ROOM 3108 - 580 COMPARTMENT AUXILIART CONDITIONS ==================================
Cw partment Compartment Air Cooler Constant Air Cooler Tenperatures E45pnent Heat Load Leakage Constants Desc. (BTU /see-deg) Water (F) Start (F) Options Rate (CTM) a Press.(in. M20) 1 Ro0M 310s .000 .0 .0 1, 0 .00000 .0000 COMPARTMEiuT NEAT LOAD
=======================
Coupertment 1 Time (sectrids) Meat Load (BTU /sec)
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Page- 5 12-07-92 15:05:03 PCFLID Version 3.7 SONGS 2 DISTRIBUTION Room 3109 - S80 Heat Sink Nunber 1: NORTH UALL(PLAS*ER) CONVECTIVE HEAT TRANSFER PARAMETERS Stab Material User-Defined Stab Thictness .459 ft surface Area 342.00 ft**2
' Thermal Conductivity .50$ BTU /hr-f t-ceg. F oensity- 18.572 Lhaif t**3 Thermat Diffusivity .037 f t**2/hr Heat Capecity .739 8TU/1be-deg. F First Mode Thickness .o1000 ft Node Thickness Ratio 1.00 -
Nu 6er of Nodes. i.7 External tomdary Conditicro Convective Externat Heat Transfer Coefficient Uchide Outside Environment Inden o' Inside Envirorsnent Inden 1 Interior Heat Transfer Coefficient Uchida TABLC OF EkTERNAL HEAT TRANSFER COEFFICIENTS
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..................................... ............................................. . .- -~, .00000 1.4700 1.oooooE+o6 1.4700 f- m.
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CONVECTIVE HEAT TRANSTER PARAMETERS
. . a . us . ..
Stab Materlat User-Defined Stab Thickness .417 ft Surface Area 342.00 f t"2 Thermal Conductivity .567 STU/hr-f t-deg. F Density 15.337 Ltus/f t"3
.Thernet Diffusivity .050 ft**2/hr-Heat Capacity .738 BTU /tbe-deg. F 'First Mode Thickness .01000 ft Node Thickness Ratio 1.00 Ntsuber of Nodes 43 External Botsidacy Condition Convective External Nest Transfer Coefficient. Uchida Outside Erwircrrient Index 0 Insi:le Environment. Inden . 1 Interior Heat Transfer Coefficient Uchida TABLE OF EXTERNAL HEAT TRANSFER CCEFFICIENTS -
Temperature Dif ference (Degrees F) Neat Transfer Coefficient (STU/hr/ft**2/F) c c~1',:' 6 d-I a K97
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.. .. ..... . . s. . ..
Stab Materiet User-Defined Stab Thickness 1.000 ft Surface Area 266.94 ft**2 Thermat Conductivity 1.040 btu /hr-ft-deg. F Density 143.600 (tun /f t**3 Therinat offfusivity Heat capacity
.034 ft**2/hr .210 BTU /ttss-deg. F C C g' . g. - - - First Mode Thickness .02041 ft Node Thickness Ratio Ntaber of Modes .
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Teeperature Dif ference (Degrees F) Heat Transfer Coefficient (STU/hr/ft**2/F) y .
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Page B l l 12-07-92 l 15:05:03 PCFLtD version 3.7 SONGS 2 DISTRIBUTION Room 3108 - Sao AUXILI ARY CON 0!TIONS SELECTED
====se =2 s . s=========== e==3 l
Stowout Penets CFF Convective Heat Transfe ON Unit Air Coolers OFF j Heating and Ventiiati<n Ftou OFF Compartsient Leakage OFF Capartment Equipment Heat Loads ON Atmosphere Exhaust Fan OFF 8towdown Dropout OFF 1 Zero Reverse Flow 0FF 8% Revaporization OFF 1 PROBLEM CONTROL PARAMETERS !
====== ...msses==========s Probtem Tfee Limit 14400.0 seconds CCN [
Flow Calculation Output / Frequency OFF/ 0 , Compartment Pressure Difference Output OFF C- [. e
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J {* CoO l Meat sink Catcutation output /Frequercy ON/ 1 ' Extended Heatsink output: Node Teeperatures ON R-start Option OFF Number of Plot Points . 25 SIGFLO Switch Time 1.000000E+20 seconds SIGFLO lteration Tolerante .001000 psi - Maxistan Murnber of Flow Iterations 500 r.g g, CALCULATION / PRINT TIMES SELECTED DP ' g*7 . _ Cate. Time Step Change Time Print Intervat Change Time I . -I[.hM 1.000E-02 1.00CE+00 3.600E+03 2.000E+04 [ b 1.000E-01 1.000E+01 0.000E+00 0.000E+00 ' ' ' 1.000E+00 2.000E+01 0.000E+00 0.000E+00 1.000E+01 1.000E+02 0.000E+00 0.000E+00 Pc,
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Page 9-12-07-92 15:0%:03 PCFLUD Versten 3.7
. SONGS 2 OISTRIBUTION ROOM 310B - 580 Time . O Hours O Minutes .00000 Seconds ( .0000 Seconds ) (Cate. Time trep = 1.000E-02 seconds)
Coppartment ---- Teep. S-Meat / Ret. -- Pressures (psia) *- Total Frac. Frac. Heat Total (Oeg F) Quality Hus. To*at Air Steam K Mass (ttyn) Air Vapor toed Energy (BTU)
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---- Compartment ---- Temp. S-Meet / Ret. -- Pressures (psia) -- Totst Frac. Frac. #est Total (Deg F) Quality Hum. . Total Air Steam. E Pass (tha) Air vapor Load Energy (BTU) ==c -
______________ _ _____ _ _ _ _ _ _ _ _ === O Ateosphere 95.000 .50 14.700 14.292 408 1.40 .9825 .0175 1 Roam 310s 116.090 41.3 S .28 15.259 14.835 .426 1.40 3.0736960E42 .9825 .0175 5.46 3.586T960E44 Cm t-.is initiet Energy 3.4718E+06 STU Compartments Initiat ** ass 3.0937E42 than Currer't Energy in compertments 3.5862E46 STU Current mess in Campertments 3.0937E+C2 tbn stoissaic Enthalpy Added - 0.0000E+00 8T0 sic =donc mass A& sed 0.0000E+00 tta irreversittle Energy Loss -1.4169E+03 BTU (Cordens. + Detpeut) Mass toss 0.0000E+00 itsu Energy Lost to Atmosphere 2.7259E42 BTU mass Lost to Atmosphere 0.0000E*C0 itse [ Rate of Energy Loss to Ai % e 2.6146E-01 87U/see ) [ aate of mess Loss to Atmosphere 0.0000E+00 ttuntsee 1
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page 18 12-07-92 15:05:03 PCFLUD Version 3.7 songs 2 0tSTa!SUTIou R00m 310s - Sao I Time = .3 Mours O minutes .00000 Seconds ( 10800.0000 Seconds ) (Calc. Time Step = 3.000E+01 seconds)
---- Conqpartment - -- Temp. S-Meat / Ret. -- Pressures (psia) -- Totat Frac. Frac. Meat Total (Deg F) Quality Num. Total Air . Steam K 8 tass (ttst) Air Vapor Load Energy (STU) ! .. 4...... . ..... . _ _ _ _ _ _ _ _ _ _ _ _ . __ !
O Atmos;Aere 95.000 .50 14.700 14.292 .408 t.40 .9625 .0175 t actn 3108 121.765 .46.6 S .24 15.409 14.981 428 1.40 3.0936940E+C2 .9625 .0175 5.46 3.6169870E+04 Cor:partaents Initiet Energy 3.471E+04 8TU Ccupartse ets Initiat Mass 3.0937E+02 itze Current Energy in Cmises 3.6170E+04 STU Current Mass in conometments 3.0937E+C2 ttus 8towdown Enthalpy Added 0.0000E+00 BTU 8toma$ceri Mass Ad$ed 0.0000E+00 lbus irreversible Energy Loss -7.3820E+C3 STU (Condens. + Droocut) Mass Loss 0.0000E+00 ttsn Energy Lost to Atmosphere 5.9298E+C3 STU Mass Lost to Atmossbeee 0.0000E+00 Itze
! Rete of Energy Loss to Atmosphere 1.2677E+00 STU/sec 3 t ante of mass Loss to AtW,.i. 0.0000E+00 ttuvsee ] ................... ...................... ............ .. ... .................~ .... .. .... - -.
{ Absetute Energy Imbalance 4.6387E-02 BTU Absolute mass is6atance 0.0000E+00 ttus Relative Energy tabatence 1.282SE-04 1 Relative mass tabstance 0.0000E+00 % cc A! Al I . l'75 A4 *15 -11L _Q_, O 23
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CONia0L NO. os,n CERTIFICATE OF AUTHENTICITY
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CO N N LA-~ O N , 1 This is to certify that the microphotographic images appearing in this microform are direct and facsimile reproductions of the original records of the Southern California Edison Company and were microfilmed in the regular course of business. The microfilming has been performed according to established routine r Company Policy for systems utilization and/or maintenance and preservation of records through the storaye of such microforms in protected locations. i THE DOCUMENTS CONTAINED ON THIS MICROFORM ARE ORIGINAL RECORDS OF: fMSouthern California Edison i For the MATERIA!, r. ArMINIS*11tATIVE SERVICF.S - CDM/ sot 4GS Department Sars Cro@e Mclear Our===tirs; Stat.icn Desigrs almimeinne 4 This microform file is a complete record of the transaction herein recorded. The documents are arranged on this microform in the following manner: Ij by month m Location and Work Order sequence O Order of Payroll Location Number Alphabetical order by-- O Grievance File Number sequence [ Numerical order by Design Cal.Mo. h Date order C Order of Customer Service Store Numbe, O other The hardcopy documents used to create this microform have been authorized for destruction after verification of correctness and acceptability of the microfilming. It is further certified that on the date specified below, the micrographic images appearing on this microform were made at a reduction ratio of 29 :1 under my direction and control. The aeove information is deemed necessary in compliance Licensees - issued March 14,1972. This order has subse. with the Federal Power Commnuon Order No. 450. Regu. quently been approved by the Public Utilities Commotion lations to govern the Preservation of Public Utilities and of the State of Califorma on October 29,1974. 19W A ,L / AWS BLDG., 0-2-P. SONGS C 4 - m
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Page 21 12-07-92 15:05:03 PCTLUD version 3.7 S0=GS 2 OlsTR! suit 04 Room 310s - sac Time = 4 Nours O Minutes .00000 seconds ( 14400.0000 seconds 3 (Calc. Time Step = 3.000E+01 seconds)
---- Compartment - *- Teso. S-Meat / Ret. - Pressures (psis) -- Totat Frac. Frac. Meat Te %l (Deg F) Quality Nue. Total Air Steam K Mass (tbm) Air vapor Load Energy (87U)
O Atmosphere 95.000- .50 14.700 14.292 406 1.40 .9825 .0175 1 ROOM 3108 123.777 43.5 S .23 15.463 15.033 430 1.40 3.0936940E+02 .9625 .0175 5.46 3.6279050E+04 Compartments initial Energy 3.4715E+04 STU Campertments initiat Mass 3.093M ttus Current Eneegy in Cmrtments 3.6279E+04 STU turrent Mass in Compartnetts 3.0937E+02 tbo stowdown Enthalpy Added 0.0000E+CJ BTU slowdown Mass Adoed 0.0000E+00 the
-Irreversible Energy Loss -1.2753E+04 afu (condens. + Dropout) Mass Loss 0.0000E+00 the Energy lost to Atmosphere 1.1192i+04 BTU Mass Lost to Atmsphere 0.0000E+00 tbo
( Rete of Energy Loss to Atmos #we 1.6454E+00 STU/sec 3 I Rate of Mass Loss to Atmosphere 0.0000E+00 ttun/see ] Absolute Energy tubstance 2.8320E-02 sTu Absetute Mass tseelance 4.0000E+00 itse Relative Energy labetance T.8062E-05 % Relative Mass isoelance 0.0000E+00 1 Cc/y/ CC A: M- l 3 S 97 M '13-ill __. f-Tosn N _ _% n / 4 fl r .
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CALCULATION SHEET ";";,, 7. i ,, go ., P*opet or DCPiilWP SONGS 2 / 3 Ca No. M73-116 am ... ,
,xw w CCN..
sw i Room Temperature Rosconse During 580 _
.%._ - , n i o.n so,a se _/03 m //2 p . TIGERI /,A( { }{p g(g(4/\ E . .. .., i . .. n g
A * ' ' A . l
. i 'j 8.3 COMPUTER ROOM 232 t (Ref. # 6.8.1) ' /
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NES&L DEPARTMENT CALCULATION SHEET x=/ PRELIM. CCN No. b f g PAGE,03 oF CCN CONVER$loN Project er DCP/ mP SONGS 2/3 (alc No. M73-116 CCN No. CCN - subject Room _ Temperature Res >onse DurinLS11t191L11ackout (SBO) _ sheet No. [O atV , OtttlhA10R DAff IRt Daft arv ORIGlhAf0R Daft 14 Daft f\bkvilflC[RI 10/15 t b l[ OC unmaan -
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v) , n umuseums mummmmmmmum namens muumunu ummmmme ununummusum i mammu . 8.3 Computer Room 232 Temperature Rise Analysis. TheresultsoftheheatloadanalysesofCabinetAreaRoom229(Section8.5) and Computer Room 232 are as follows ROOM NAME Normal room ROOM TEMP. temperature AFTER 4 period to lir. 580 SB0(*F) (*F) COMPUTER ROOM 232 72 112.223 CONTROL ROOH CABINET 75 105.281 AREA (ROOM 229)
;onclusion:
Based on the temperature rise analyses of the Computer Room 232 and the Cabinet Area Room 229 it can be concluded that the Computer Room heat load has no affect on the temperature rise in the Cabinet Area because the ambient temperature for both rooms after 4 hours of the SB0 is below the design limit (120 'F). Input data summary used for Computer Room 232 Temperature Rise Analysis. [\ " Q = 26.48 BTU /S (Ref.#6.7) 3 V = 17.380 ft (seeassumption3.17)
!HeatSink K C A t Ti BTU /hr*-ft'F lbm/ft3 BTU /lb'm*F (f t') (ft) (*F)
North 0.567 15.337 0.738 114.0 0.417 72 - wall Plaster North 1.04 143.6 0.21 592.23 2.0 72 wall Concrett South d.567 15.337 0.738 706.23 0.417 72 wall Plaster West wall 0.23 23.224 0.516 589.0 0.626 72 Plaster Ceiling 1.04 143.6 0.21 1152 1.00 72 Concrete Jee data below for the reference to the above table.
CALCULATION SHEET acc e r ' Pa[LIO. CCN NO. [!" l pag [,c4 cr { Project er DcP/mer . SONGS 2/3 CCN CONY [R$10N (ale No. M73-il6 ccN No. CCN . i i ati RNTM earctutos cart M i M M M A - ret Q h hee /Q m este arv eniciutoa cart tar catt
/ #Vil tititl 10/15 (h t k, h tlk ;
numagui-unuuuuuuuu ununum m m l o i CAlcVIATIOM FOR COMPUTER ROOM 2321 UNIT 2 - EF := 31.0 ft (Ref. # 6.8.1) ' BE t= 37.17 ft (Ref. # 6.8 1) AB := 31.0 ft (Ref. # 6.8.1) KF := 31.17 ft (Ref. # 6.8.1) AK := 6.0 ft (Ref. # 6.8.1) i hr tm GE o
- l GE t= 19.0 ft (Ref. # 6.8.4) !
3 ' Q := 27.94 10 W I (Raf. # 6.7) l 3 3.4121 t Q := 27.94a10.
- 3600 D. .
t Q = 26.482 BTU /S CAI4UIATION OF THE WALIS(SOUTH, EAST, AND WEST) AREA i 1 Am = BE'GE , Am = 706.23 ft'2 Aa := AB'GE Aa = 589 ft*2 i i Av t= AB'GE Av = 589 ! ft'2 i-AREA OF 'IHE NORTH WALL Ap = AK GE Ap = 114 ft*2 Ac = KF+GE Ac = 592.23 ft*2 AREA OF THE CEILING Ace = BE AB 3 ft*2 Ace = 1.152 10 l MMMW ! I I' . . _ . , . . . . _ __ - - - ~ ' ~' "*~"~ ~ ~' '
CALCULATION SHEET f, g -[c, ,, g_l ,,,e 5 Pnject er DCP/ltep SONGS 2/3 "# Cale No. M73-116 cs [CN-
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ce1stutoa M avfl '!:st! 10/16 k/(( h 11k natt iat *Att ums=== ======mm q mmmmm mmmens mammmmme ====== mammme =====mmmmmmmmmmmmmm mmmmei mmmm .. CALCUIATION OF PROPERTIES FOR COMPOSITE WALL (PIASTE NORTH WALL tp := 0.0625 .ft (Ref. # 6.8.1) tair := 0.292 ft (Ref. # 6.2) tT := 2 tp + tair tT = 0.417 ft k := 0.25 P M /(hr-ft-F) (Ref. #.6.17) 4 p := 51.0 lbm/ft 3 P (Raf. # 6.17) Cp = 0.74 BTU /(lbun-F) P (Raf. # 6.17) k := 1.24 BTU /(hr-ft-F)- (seesection8.8) A p air
- = 0.07 lba/ft*3 (Ref. # 6.2)
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~2 tp p ' +' "tair p '
p, air, pe = 15.337 lba/ft*3 pe -:= ,
'2 tp p Cp + 'tair p Cp . P P. air air, Cpa := . '2 tp p ' + "tair p ' .- P. . air. -
Cpe = 0.738-BIU/ (lba-F) sca s umsasse wee
r CALOULATION SHEET @c, ,, ,v i ,,,i c%, < Preju t er DCP/ mP SONGS 2/3 Cale No. N73-116 CCN C MVER$!M cca no. CCN - f 4Lv estatutes att . tat u it arv estatutos uit tat uit i
/ N vit tteret 10/1s $\ b./* It O h munammm ausb mummune muummm mausumumme mamma i SOUTH WALL tp t= 0.0625 ft (Ref. f 6.8.1) tair = 0.292 ft (Ref. # 6.2) tT t= 0.417 ft t.
tT Ke != Ke = 0.567 M/ (hr-f t-F) . q 2- + k k p air . I
~2 tp p + 'tair p pe -t= . P. . air ,
pe = 15.337-d i tT lbm/ft*3
! :i '2'tp P Cp + 'tair p Cp -Cpe t= . P P. . air air ,_ j ~2 tp p 'tair p + . P, , air , i .
Cpe -0.738 : m/ (1bmi-F)
. s i
4
, ,,,~pn-
CALCULATION 555ET =petuo. cu ccm mo. /g I :' past m7or proj,et ,e scp/mer_ SONGS 2/3 Calc lie. M73-116 CCN C00lVER$104 < ce# to. CCN - [ 4(L 04 tGleatM ' MTt - thf Mit 8IV Mf8!#AfM Mff th( Mit
/) Savirftstal 13/15 N M \Oh i
m Emuuseum HERWE 4
-I m i v
WEST WALL tp = 0.0833 ft (Ref. # 6.8.1) I tair := 0.292 ft (Ref. I 6.2) titt = 0.167 ft tT = 2 tp + tair + tin ft . tT = 0.626 ft . ! k t= 0.092 Ln M/ (hr-f t-F) (Ref. # 6.11) p in t= 36.0 lba/ft*3 (Ref. # 6.11) Cp ta 0.2 m/(1ba-F) (Ref. # 6.11) tT Ke = - Ke = 0.23 m/ (hr-ft-F) 2- + + k k k p air in "2 tp e ' .
+ 'tair p + ' tin p ' . p. air, in ,
pe t= . tT Pe = 23.224 lba/ft*3
- r.
"2 + bp p Cp +- tair p ' '
B p Cp + ' tin p- *Cp Cpe:t=
. - p, . air- air., . in in , ~2 tp p -1 ' + " tin p '
pd + .tair*p---- air . . in , Cpe = 0.516
- m /(1be-F) scaapesusesee 4-
_ , , . , - - - e
$0ht.5 LMlis 2 COMPUTER ROOM 232 500 0.00 tooM 232 14.7 17380.0 72.0 0.$0 1.00 0.0000 C.0000 0.0000 1 0 0.0000 26.48 28800 26.48 MOF 0.0000 0.0000 SEOF 0 0 000.00 000.00 000.00 000.00 000.00 1 SEOF 0 000.00 000.00 000.00 000.00 1 GEOF 0 0 1.00 0.60 0.60 0.00 0 KOF 0.0000 0.0000 0.0000 _ - 1.0E6 - 0.0 0.0 SEOF 1 1.00 SEOF 0.0000 14.70 75 0.50 ,
i.e20 14.70 75 0.50 DEOF e-NORTN WALL (PLASTER)
- 3. 114.0 0.417 0.01 1.00 1_ 014 ,
0.000 1.47 1.E6 1.47
*Eo' , CCN i tl"6 GEOF 'l0 C.c &: N' - I > Y ICE 0.567 15.337 0.738 ^ ' " " ' ' ' ^ * *
- NORTH WALL (COLCRETE) 3 1
592.23 014 2.00 0.01 1.00
*. " 9, to ,gQ 0.000 1.47 k,.
1.E6 1.47 u --.+
'cl' ,,, i' $' . fi $-l#4V 0.000 1.E6 1.47 1.47 . , ,3 g ; ; g '. ,,. _ ,. M .
f4.. hMh GEOF 1.04 143.6 0.21 3 589.0 WEST WALL (PLASTER) _ f[T '^^-*" ~+ O.h 0.626 0.01 1.00-
't 014 0.000 1,47 1.E6 ' 1.47 - DEOF --
0 -0.00 0.000 1.47-1.E6 1.47 1
t I alot ~ 0.23 23.224 . 0.516 l ctlL1kc(contattr)- , 3 1152.00 1.00 0.01 1.00 1 011 ' O.000 1.47 1.E6 1.47 at0F 1.04 143.6 0.21
$alTN JLL(PLA17ta) L 3- 706.23 0.417 0.01 1.00 r 1 014 -
0.000 1,47 ; 1.t6 1.47
- St0F 0 0.00 0.000 1.47 1.t6 1,47 "
EOF 0.567 - 15.337 0.738 9t0F 0100010000 ' t ht09 14400 1 00 10 25 1.t20 0.001 500 1 0.01 1.0 / 0.10- 10.0 1 1.00 20.0 , 40.00 100.0 25.00 36000.0 I GEOF 3600.0 28800.0 SE07 e L C CH I cc y: d l ,, T. Ic1 .
-Ill Y. lho $.py.1%
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Papa .j 12-GT 52 12:26:46 PCFLUD Version 3.7 SONGS UNITS 2 COMPUTER ROCM 232 $80
*** PCFLLO 3.7 * ** -> Thereoftuid Dynamics for a System of Interconnected Compartments
- M4P-120 000 -l (Cy copyright 1990 Sechtet Corporation z(C) Cc(V 1988 sechtel Eastern Power Corporation ALL RIGHTS RESERVED (C) f4 - ST 1976, 1985, 1957 sechtet Power Corporation
' ALL RIGMTS RESERVED Release Record ~ Date Version Description of Changes ' 3/25/85 1.00 orisinet PC version 8/25/86- 2.00 Air-only version (SF) . 1/06/87- 3.00 Added SICFlo routine - 6/02/88 '3.10 Modified for new compiter' /
2/06/90
- 5/21/91- '3.61 3.7 -61 Couperteent version Automotie zero reverse fIow C' C . N CCA: Yl ' 'f, ffC INPUT file name: b:r232.inp CUTPUT file name: b:r232.00T. -
[ " f , , PLOT file name: b:r232. PLT.. j ff N f$4;34L : (.&g_ J/ n u-g 4-e N
+ n 4 y we e- 4-s,-v- y e y ~ 4- -f v r - vv ,- -w, e v v e -, -,
' n . _. .
Page 2 12-07-92 12:26:46 PCFLtD Yersion 3.7 l SONGS (JNITS M' ' 00M 232 - 580 COMPARTMENT ins IA.L CON 01TIONS
====.r.z,= . ==================
Coopertsent Description Vcture Temperature Pressure Ret. Munidity Flow to Conpartments (f t"3) (Degrees F) (psia) (Fraction) ( 0 = Atmosphere ) O Atnesphere 75.00 14.7000 .50 1 ROOH 232 1.7380E+04 72.00 14.7000 .50 l l Cc M / ( c pt- }/ I > Y.I!! M- 3-H6 3 P Trisn' 1pagni a fA$ /V-Zex i
///
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i Page 3 12-07-92 i.. 12:26:46 PCTLtJD Verslm 3.7 ' SONGS UNITS 2 C W .lTER Ro0N 232 . sao COMPARTMENT AUXILIART CONDITIDuS
==================================
Cweartment . Compartment Air Cooler Constant Air Ccoter Temperatures Espalpment heat Load Leakage Coretants Desc. (BTU /sec-deg) Water (F) Start (F) Options. Rate (CFM) 3 Press.(in. N20)
.l .
1 200M 232 .000 ~ .0 .0 1, 0 .00000 .0000 COMPARTMENT NEAT LOAD
=======================
compartment 1 Time (secorris) Heat Load (STU/sec)
.00 26.48 28800.00 26.48
((Y l' c c g 3 A/ I 2 '?.1/2 i
# A. I fTiieci ap-in %
3 /$ .
/z-n -N
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c e r u 0 c 0 s) . 0 8 sd. 0 5 ei. 0 rs.
- Pp.
( . 2 t . 3 e . 2 S . M O O = R-A= T = R A= E D= - T = U H= - . P T= e. M O A=
' = s. . 0 0
C W=
=
tse. r. v. 6 2 S O= L= F = ne. eR T I
= ic i .
t f f e . S o . C C . u o S emd r . 0 l a. 0 F w. 6
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- F a .
e) . r2 . 0 A" wt .
. 1 of .
l ( . F . t o nT 0 e . m t r a .
. 0 ma or z
c . CF I, 1 lll l l ll l\t , 1llil, lllJl1 l
F H_ Page 5 12-07-92 12:26:46 PCFLt2 Version 3.7 SONGS (MITS 2 COPEUTER ROOM 232 - 580 SLOlDOWN DATA
===============
Time (sec) Flowrate (itm/sec) Enthalpy (BTU /lbs)
.00000- .00000 .00000 1.00000E+06 .00000 .00000 SPLlf OF BLOWDOHd DATA ===========r============
Compartaent Fraction of 81oudown 1 1.00000 ATMOSPHER*C DATA
================== . Time (sec) Temp (deg.F) Pressure (psis) Relative tatsaldity .00000 75.000 14.700 .50000 1.00000E+20 '75.000 14.700 .50000 CCN! 'f- ) f' //g' M.13-ilk />
8Tsjeri =/p-9 I J..f n-r2$c 5 //4 :. e Sf' f I
V Page 6 12-07-92 12:26:46 PCFLtm Version 3.7 SCNGS UNITS 2 COMFUTER ROOM 232 - S80 Heat Sink Nunber 1: NORTH WALL (PLASTER) CONVECTIVE HEAT TRANSFER PARAMETERS
=.. ......... .......... .
Stab Material User-Defined Slab Thickness 417 f t Surface Area 114.00 ft**2 Thermal Conductivity .567 sTU/hr-ft-deg. F Density 15.337 1bm/ft**3 Thermal Diffusivity .050 ft**2/hr Heat Capacity .738 STU/lbn-deg. F j First Node Thickness .01000 ft Node Thickness Ratio 1.00 Nuter of Nodes 43 i Externai Boundary Condition Convective External Heat Transfer Coefficient Uchida Outside Envirarsnent index 0 Inside Envirorsnent Index 1 Interior Heat Transfer Coefficient Uchida CC/V/ *# TALZ OF EXTERNAL HEAT TRANSFER COEFFICIENTS
-l '/*
C C tJ '- ' Temperature Difference (Degrees F) Heat Transfer Coefficient (BTU /hr/ft**2/F) ,
.00000 1.470*
1.4700 1.00000E+06 M- b-HL TA8tE OF INTERIOR MEAT TRANSFER COEFFICIENTS
. ...... ........... .... = =... ....
Teaperature Dif ference (Degrees *) Heat Transfer coefficient (BTU /hr/ft**2/F)
. / gag [f , [Mdh l
00000 1.00000E+06 1 4700 1.4700 lff *
. * // 47--9(-
l l l TABLE OF HEAT $1NK MESH POINT CCORDIWATES (feet)
. _ . .... . .... = --- - -- - -- - - - #5 , .000000 .010000 .020000 .030000 .040000 .050000 .060000 .070000 .080000 .(00000 6
s . L- . _ _ _ _ _ _ . . . . - . . . , . . . - . . -
- - -s .m.-. - - - - - - - - '--= = - - - - - ,- -' g
Ic a ra r
.y. -\' 't % !1 k]
u- Q'h T ic e' D4 i
!>g %) $ = ..e x ll,l - u %
u
""9 ill =.m .
Eli
=.m $$5- =.m . lkh!-
- lili
= 88c.
!1 l.
- . ~ _ _ _
.A Page 7 12-07 12:26:46 PCFLUD Version 3.7 SONGS UNITS 2 COMPUTER ROOM 232 - Sao Heat Sink Nurber 2: NORTH WALL (CONCRETE) ' CONVECTIVE MEAT TRANSFER PARAMETERS Stab Materfat User-Defined Stab Thickness 2.000 ft surface Area 592.23 ft**2 Thereal Conductivity 1.040 BTU /hr-ft-deg. F Density 143.600 tta/f t**3 Thermal Diffusivity .034 ft**2/hr -
Heat Capacity- .210 STU/tta-des,. F First Mode Thickness .04082 ft Node Thickn=ss Ratio 1.00 uts2ber of Modes 50 External Boundary Condition Convective Externat Heat Transfer coefficient- Uchida Outside Environment Index 0 Inside Environment Index 1 Interior Heat Transfer Coefficient Uchida M c c af: A/-I , WlIT TABLE OF EXTERNAL HEAT TRANSFER COEFFICIENTS Terperature Difference (Degrees F)
.................................... . Heat . . . .Transfer . . . . . .Coefficient . . . . . . .(BTU . . . ./hr/ft . . . 2/F) ~ ~ .00000 1.4700 1.00000E+06 1.4700 TASLE OF INTERIOR HEAT TRANSFER COEFFICIENTS ......n....n.......n.
M '13-nV
+..
Temperature Difference (Degrees F)- Heat Transfer Coefficient (BTU /hr/f t**2/F) * *
.00000 1.4700 ,[p y a.. .f -
p. 1.00000E+06 1.4700 [. " 7/ ~$2. TABLE Or NEAT SikC MESH POINT COORDINATES (feet)-
.000000 .040816 .081633 .122449 .163265 .204082 .,,, y .244898- .285714 .326531 .367347 8 ~
v m
.408163 .448980 .489796 '.530612 .571429 .612245 .653061 .693878- .734694 . 775510 .816326 .85 7143 .897959 .938775 .979592 1.020408 1.061224 1.102041 1.142857 1.183673 1.224490' , 1.265306 '1.306122 . 1.346938 1.387755 1.428571 .1.469387 1.510204 1.551020 1.591836 ~ 1.632653 -1.673469 -1.714285 1.755102 1.795918 1.836734 1.877550 1.918367 1.959183 2.000000 f
CCd M-1 > - "@ - a ,.3 A4- 5-Ill. U
/$, f' x-zig. m //e 9 .m.
W gn y 3 g.- p=; ...w
Page 8 12-07 12:26:46 PCFLtc version 3.7
' SONCS UNITS 2 COMPUTER ROOM 232 - S80 Heat SisA, Number 3: . WEST VALL(PLASTER)
CONVECTIVE HEAT TRANSFER PARAMETERS Stab Materlat User-Defined Stab Thickness .626 ft
. Surface Area 589.00 ft**2 Thernet Conductivity .230 STU/hr-ft-deg. F Density 23.224 Ibm /ft**3 Thernet Diffusivity .019 ft**2/hr- ' Meat Capacity- .516 STU/ttsu-deg. F 'First Node Thickness .01278 ft Mode Thickness Ratio 1.00 - Ntaber of Modes . 50 External soi.ridary Condition Convective External Heat Transfer Coefficient Uchida Outside Environment Index - 0 Insicle Environment Index 1 Interior Heat Transfer Coefficient Uchida
{CW / CC Al : A[ - / > f f/f ' TABLE OF EXTERNAL MEAT TRANSFER COEFFICIENTS
. !':!!"'!.? !!!!'!"'!. !!!"*.! ?. .""*.!!'"'!".***!!!*!'"! !*."""!!**2'!!. --
00000 1.4700 1.00000E+06 1.4700 . M- 3-llL g' TABLE OF INTERIOR NEAT TRANSFER COEFFICIENTS - I,
.Jr a ; fesperature Difference (Degrees F) 00000 Heat Transfer Coefficient (STU/hr/ft**2/7) -1.4700
- f. K f./.w u.,y,f$=/)-{k..;
g
- .1.00000E+06 1.4700 +
' [ gp ,g +>..
TABLk OF NEAT SI M MESN POINT C00NDINATES (feet)
. . _ . . . . . _ . . . . . . _ . . _ _ . ((f .000000 .012776. .025551 .038327 .051102 .063878 .076653 .089429' .102204' . . .114960 ' 10 '
N' s 4 e i^s i n - y-
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i
. 1277551 .. 140531' .153306 .166082 .178a57 - . 191633 '.294408 .217134 .229959- .242735 . 255510 .268286 .281061' .293837~ .306612 . 319388 ,332163 ' .344939 .357714 .370490 .353265 .396041 - .408816 .421592 .434367 .44 7143 .459918 .472694 - 485469 .496245 -
, .511020 .523796 - . 536571 .549347 .562122 . 574898 .587673 . .600449 .613224 .626000 S 4 i+L. N c c d ; '^f~ A A " O
- m ,, , ' p . S '-pg ' ..#.'N P1]; arf , Qa.m 9&-
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I' ,
< .I 4 .,Q' ,n '*'
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1 . . , . . . ,.
,Page 10 12-07-92 12:26:46 PCFLUD Vetslan 3.7 SONGS UNITS 2 COMPUTER ROCM 232 - 580 Heat Sink Ntster .5: SOUTN WALL (PLASTER)
CONVECTIVE HEAT TRANSFER PARAMETERS
============== 3- -=========
Stab Materiet User-Defined Stab Thickness .417 ft Surface Area . 706.23 ft**2 Thermat Conductivity .567 87U/hr-f t-des. F . Density' - 15.337 Itavit**3 Thernet Of ffusivity .050 ft**2/hr Heat Capacity .738 BTU /ttun-deg. F First Node Thickness ~ .01000 ft Node ~hickness Ratio 1.00 Nts6er of Nodes - 43 External. Boundary Condition Convective External Heat Transfer Coefficient Outside Environment Irdex Uchida 0 {(Y -- Inside Environment Inden Interior Heat Transfer Coefficient Uchida 1 P Afe* g,f 3 ,[ -
~
TABLE OF EXTERNAL NEAT TRANSFER COEfflC3ENTS
===================================== n Teaperature Dif ference (Degrees F). Heat Transfer Coefficient (BTU /hr/ft**2/F) , .00000
_ 1 1.4700 - l 1.00000E+06 1.4700
-",. m.,.
TA8LE OF INTERIOR NEAT TRANSFER COEFFICIENTS P T1yXl 1 -1)4. L - j Tenperature Dif ference (Degrees F) y Heat Transfer Coef ficient (BTU /hr/f t**2/F)
.00000- 1.4700 1.00000E+06 1.4700 . - k. .&
TABLE OF HEAT SINK MESM POINT COORDINATES (feet)
===== a=====================..=============== .000000 .010000 .020000 .030000.. '.040000 .050000 .060000 .070000 .080000 .090000 13 gg T
+ f+, ,v .w e
Page 9 12-07-92 12:26:46 PCFLib Version 3.7 5 , UNITS 2 COMPUTER ROOM 2'? - 580 l Heat Sink Nurter 4: CEILING (CONCRETE) CONVECTIVE HEAT TRANSFER PARAMETERS Stab Material User-Defined Stab Thickress 1.000 ft Surf ace Area 1152.00 ft**2 Thermal Conductivity 1.040 STU/hr-ft-deg. F l Density 143.600 ttma/f t**3 Thermat Diffusivity .034 ft**2/hr Heat Capacity .210 STU/lbe-de9. F First Node Thickness 812041 f t Node Thickness Ratio 1.00 Nm ber of Modes 50 External Bomdary Corditirm Adiabatic (/* / Inside Envirorynent trdex 1 %- Interior Heat Transfer Coefficient Uchida TABLE OF INTERIOR HEAT TRANSFER COEFFICIENTS c c tl: Al I > P 101 ~ - ' - Temperature Difference (Degrees F) Heat Transfer Coefficient (BTU /hr/ft**2/F)
.0x. 1.47 . _. ._
1.0G000E+06 1.4700 TABLE OF HEAT SINK MESH POINT COORDINATES (feet) f*T!]'ert 55Ab
.000000 .020408 .040816 061224 .081633 .102041 .122449 .142857 .163265 .183673 /./ ~ ~ ' /z-u -ri .204082 .224490 .244898 .265306 .285714 .306122 .326531 .346939 .367347 .387755 .408163 .428571 .448980 469388 .489796 .510204 .530612 .551020 .571428 .591837 .612245 .316326 .632653 .836734 .653061 .857143 .673469 .877551 .693877 .897959 .714286 918367 734694 938775 755102 .959183 .775510 .979592 .795918 1.000000 G/
12
~
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Page 11 12-07-92 12:26:46 PCFLtJD Version 3.7 SONGS tJNITS 2 COMF=JTER ROOM 232 - $80 AUXILI ARY CONDIT101.S SELECTED Blowout Panels OFF Convective Heat Transfer CN Unit Air Coolers . OFF Heating and Ventitation Flow 0FF
- l. Compartment Leakage- CFF
[' Compartment Equipment Heat Loada Atmosphere Exhaust Fan ON OFF i
"l . 81owdots) Dropout- 0FF Zero Reverse Flow OFF 8% Revaporization OFF PROBLEM CONTRCL PARAMETERS ... . ......s.. ...
Problem Time Limit' 14400.0 seconds Flow Calculation Output / Frequency Compartment Pressure Difference Output OFF/ 0 OFF (g -
-1 . Heat Sirk Calcutation Output / Frequency ON/ 1 2 f
Extended Heatsink Output: Mode Tenperatures ON I (( y . . Restart Option OFF Nupber of Plot Points ' ' 25 + SIGFLO Switch Time 1.000000E+20 seconds -- 1-SIGFLO It<-'ation Tolerance MaxiMLE Number of Ftow Iterations
.001000 psi 500 "-". -Ill :
CALCULATION / PRINT TIMES SELECTED
. . - - . . . . . . . . . . . p
- Cate.' Time Step Change Time Print Intervat Change Time
. qg ,r p 1.000E-02 1.000E+00 3.600E+03 - 2 880E+04 1.000E-01 1.000E+01. 0.000E+00 0.000E+00 [ .
i[~ / -[/ -[(,,
~ ' ' ' ^ ~ ~ -1.0COE+00 2.000E+01 0.000E+00 - 0.000E+00 ~ '^ ~ ' ~~
1.000E+01- 1.000E+02 0.000E+00 0.000E+00 0.000E+00 - ' -- 0.000E+00
~-
2.500E+01- 3.600E+04
;12 4 a
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~
__. -____1_ _ _ -
si,... Page 12 12-07-92 12:26:46 ., PCFLtD Version 3.7 "
)
SOUGS UNITS 2 COMPUTER ROOM 232 - 580
- ._ Time = 0 Hours O Minutes .00000 secords ( .0000 seconds ) (Cate. Time step = 1.000E-02 seconds)
----- Compartment ---- Temp. S-Heat / Ral. -- Pressures (psie) -- Totat Frac. Frac. Meat Total (Deg F) -Quality' Hun. Total Air stessa K Mass (Ltze) Air vapor Load Energy (STU) ========s============= ======= ======= ==== ====================== ==== ============================= ======= =============
0 AtmosFAere '75.000 .50 14.700 14.485 .215 1.40 .9908 .0092 1 ROOM 232 72.000 19.1 S - .50 .14.700 14.505 .195 1.40 1.2907450E+03 .9917 .0083 26.48 1.2844960E+05 Compartments initial Energy 1.2345E+05 BTU Caepartments initial Mass 1.2907E+03 ttze Current Energy in Cenpartments . 1.2845E+05 BTU Current Mass in Compartments 1.2907E+03 tiss 8towdows Enthalpy Added 0.0000E+00 STU Blowdown Mass Added 0.0000E+00 ites Irreversible Energy Loss 0.0000E+00 STU (Condens. + Dropout) Mass Loss 0.0000E+00 ttum Energy Lost to Atmosphere- 0.0000E*00 BTU Mass Lost to Atsosphere 0.0000E+00 ttus [ Rate of Energy Loss to Atmosphere 0.0000E+00 BTU /sec 1 [ Rate of Mass Loss to Atmosphere 0.0000E+00 itzvsec 3 Absolute Energy Incatance . 0.0000E+00 BTU Absolute Mass Imbalance 0.0000E+00 lba Relative Energy'letalance 0.0000E+00 %.- Relative Mass Imbalance 0.0000E+00 3 C c m -/ - c c A/: ^/ - I >$ @# - j-9S>-///, . f.7,pri a-ss4v
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. 0'0 . = 00 .
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S t Y.00EE.EE.00 N 00 00.00.0 00
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EE.. 00 00 00 0 00 00 v . e m O.00.00 C 00 000.00 000 00 f Q.00.00. 00..
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Page 14 12 07-92 12:26:46 PCFLLD Version 3.7 SONGS UN!iS 2 COMPUTER ROOM 232 - Sao Time = 0 Hours 0 Minutes .00000 Seconds ( .0000 seconds ) (Calc. Time Step = 1.000E-02 seconds) Extended Neatsink Output: Node Temperatures Heat sink No 1 NmTR WLL(PLASTER) 73.099270 73.118620 73.138030 73.157380 73.176790 73.196200 - 73.215550 . 73.23*890 73.254240 73.273650 73.293060 73.312470 73.331880 73.351290 73.370700 73.390110 ' 73.409450 73.428800 73.448150 73.467500 73.486850 - 73.506200 73.525540 73.544890 73.564180
-73.583470 T3.602750 73.622040 ~ 73.641330 73.660610 73.679900 73.699190 73.718480-: 73.737760 73.757050 73.776280 . 73.795560 73.814790 73.834010 73.853240 - 73.872530 73.891750 73.905240 ' . C y /j -J ~
Heat Sink No." ' 2, ' NORTN WALL (CONCRETE) *
-72.764500 72.794460 72.824430 T2.854400 '72.884370 - .72.914400- 72.944430 72.974460 73.004490- 75.034520- '73.06454C '73.094570 73.124540' 73.154510 73.184540 73.214570 TI.244600 73.364720 73.394740 73.274630 73.424840 U.304660 '73.454860 73.334690..
73.484890
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73.514920 73.54&950 73.664950 73.694920 73.574980
-73.724880 73.605010 73.754850 .
73.634980 73.784820
- - - - _u,,,., '73.814790' 73.844760 73.874730- 73.904690 73.934660 - - .73.964690 - 73.994T20. 74.024750 '74.054780 74.084750-74.114720 74.144740 74.174710 74.204680 74.234710 y/gg2 a f) p ~.$ p~ ,*,
Heat Sink No. : 3, ' JEST WLL(PLASTER) '. l .- f/**[Ejsl S 72.634980-72.811490 J72.988250 72.670260 72.846830 73.023650 72.705540 72.882170 T2.740810-72.917510 72.776150 72.952850 [
?73.059050 73.094390 73.129730 73.165070 73.200410 .73.235750 73.271090 - 73.306430 -73.341830 73.377170' 73.412510 73.447850 : ' 73.483180 73.518460: - 73.553740- ~73.589020 73.624300 . 73 659580 73.694850 73.730130 73.765350 73.800570 73.835780 18
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PCFLLD Verster: 3.7 ,.
, SonCS LMITS 2 COMPUTER ROOM 232 - 580 Time = - 0 Hours O Mirutes .00000 Seconds ( .0000 Seconds ) (Calc. Time Step = 1.000E-02 seconds)- ~ Extended Heatsird Output: Mode Temperatures Hest SirA Wo.' 5; SOUTN WALL (PLASTER) 73.099270 . 73.118620 73.138030 . 73.157380 . 73.176790-73.196200' 73.215550 73.234890 73.254240 73.273650 , . 73.293060 73.312470 73.331880 73.351290 73.370700' t73.390110 73.409450 ' 73.428800 73.448150 - 73.467500' 73.486850 73.506200 73.525540 73.544890' 73.564180 73.533470 73.602750 75.622040 ' 73.641330 73.660610 73.679900 73.699190 73.718480 : 73.737760 73.757050
- 73.776280 ' 73.795560 73.814790 73.834010. 73.853240 73.872530 73.891750 ' 73.905240 (W/
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Page 16 12-07-92 12:26:46 PCFLLD version 3.7
$0NGS tMITS 2 COMPUTER ROOM 2'S - 580 ' Time = 1 kours O Mirutes .00000 seconds ( 3600.0000 Seconds ) (cate. Time step = 2.500E+01 seconds) --- - Compartment -- - Temp. S-Meat / Ret. -- Presst& es (psia) -- Total Frac. Frac. Heat Total (Deg F) Custity Htse. Total Air Steam C Mass (ttze) Air vapor Load Energy (BTU) ====================== - ======= ======= ==== ====================== ==== ============================= = = = = = = = = = = = = = = = = = =
0 Atuosphere 75.000 .50 '14.700 14.485 .215 1.40 .9908 .0092 1 ROOM 232 _ 102.483 48.1 $ .20 15.543 15.337 .206 1./.0 1.2907450E+03 .9917 .0083 26.48 1.3529020E+05 !2
' Conpartamts Initial Energy 1.2845E+05 BTU conpartaents initial Mass 1.2907E+03 itse current Energy in Conpartments 1.3529E+05 STU Current Mass in Compartinents 1.2907E+03 (tse Slowdown Enthalpy Ad$ed G.0000E+00 BTU Blowdown Mass Added 0.0000E+00 itsu f rreversible Energy Loss -5.207BE+03 STU (Condens.
- Dropout) Mass Loss 0.0000E+00 ttze Energy Lost to Atmosphere -1.6323E+03 BTU Mass Lost to Atmosphere 0.0000E+00 ttze I Rate of Energy Loss to Atmosphere 4.432SE-03 BTU /sec 3 ( Rate of Mass Loss to Atmosphere 0.0000E+00 ths/see 1 Absolute Energy lacatence 2.8259E-01 STU Absolute Mass 1sbalance 0.0000E+00 ttze Relative Energy labalance- 2.CSGSE-04'% Relative Mass le6 stance 0.0000E+00 %
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M H Page 18 12-07-92 12:26:46 PCTLLD version 3.7 SONGS tmITS 2 COMPUTER ROOM 232 - 58G Time = 1 Hours O Mirutes .00000 secorris ( 3600.0000 Seconds ) (cate. Time Step = 2.500E+01 seemis) Exterded Heatsitt Output: Node Teeperatures Heat SirA No. 1,. NORTH WALL (PLASTER) 85.018770 84.572050 84.137480 83.715060 J3.304900 182.907010 82.521330 82.147800 81.786350 81.436980 l 81.099760 80.774510 80.461150 80.159580 79.869720
=79.591520 79.324800 79.069490 78.825410 78.592440 -78.370390. 78.159150 77.958590 77.768520 77.588780 77.419160.
76.717070 77.259550 76.604580 77.109710 76.500950 76.%9450 76.405980 76.83865C 76.319490 (k . / 76.241300 76.171230 76.109160 76.054780 76.006030 75.968660 75.936430 75.918G60 (( ,
*3 '
Heat sitt Ilo. 2, NORTH W4LL(CONCRETE). 79.384430 78.144620' 77.084630 76.194850 74.871490 73.446320 74.405550
-73.355620 -
74.046910 73.299900 73.778170 73.270230 75.462190 73.582860 73.259490 J"A #llh + 73.262360 - 73.368380. 73.2743801 73.396700-
'73.292940 73.425690 73.315640 73.455230-73.341090 73.485020 -
( 73.515050 -73.544950 73.574980 .73.604890 73.634800
- g- s , 81 73.664890 73.814970 73.694850 73.845370 73.724700 73.876130 73.754490 73.907070 73.784700
" 73.938450 . r .E C g" L,! '73.970120 74.139250 74.002350 . 74.175930 ....
74.035370 74.213710-74.069000 74.252840' 74.103670 74.292940
.N N k ,
Heat Sink No. 3,- WEST WALL (PLASTER) ' k S'
- 87. % 1760 86.804600 85.705350- 841664640 83.682830
, 82.759740 81.895050 81.088040 80.337680 79.642730 79.001560 78.412450 77.873380 77.382350- 76.937040 76.535000 - ~ 76.173860 ' -75.851040 75.564180 75.310700 ~75.088100' ' 74.894010 74.726100 - 74.582000 - 74.459630 74.356900 , 74.272000 ' 74.202970 74.145100 74.105930 74.075040 74.054170 74.042080 74.037570 74.039890 ~
23 ..
' to a L.ia. a . - . . . . . . . = .. . - .
4 w. -T 74.048070 74.061370 74.079130 74.100740 74.125640 74.153530 74.185870 74e216400 74.250820 76.236830 74.324310 .74.362950 74.402740 74.443510 - 74.485200
- Heat Stri No. 4, CEILING (CONCRETE) 78.695590 78.032560 ' 77.415500 76.843600 76.315890 -75,830960 75.387300 74.983310 74.617030 - 74.286470 73.989530 73.724030 73.487760 '73.278530 73.094210 72.932590 '72.791531 72.669100 72.563320 72.472440 72.394680 72.328520 '72.272550 72.225490 72.186000 72.153170 72.126010 - 72.103550 72.085170 T2.070220 72.058070 72.048250 72.040370 72.034150 72.029210 72.025300 72.022250 72.019370 72.018100 72.016690 .
72.015720 T2.014980 72.014373 72.014010 72.013760 , 72.013640 '72.011700 72.013820 72.013890 72.013890
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r-Page 19 12-07-92 12:26:46 PCFLt.D Version 3.7
. w ' SONGS tmITS 2 COMPUTER ROOM 232 - sao Time . .'1 tours O Mirutes .00000 seconds' ( 3600.0000 seconds ) (Cale. Time step = 2.500E+01 seconds)
Extended Heatsirdt Output: Mode Tenperatures Heat sink No. 5, SOUTN WALL (PLASTER) 85.018770 84.572050 84.137480 83.715060 83.304900 82.907010 82.521330 82.147800 81.786350 81.436980 81.099760 80.774510 . 80.461150 80.159580 79.869720 79.591520 79.324800 >79.069490 78.825410 78.592440 78.370390 ,78.159150 : 77.958590 77.768520 77.588780 L 77.419160 -77.259550 77.109710 76. % 9450 76.838650 76.717070 76.604580 76.500950 76.405980 76.319490 76.241300- '76.171230 76.109160 76.054780 ' 76.0C8030 75.968660 75.936430
~
75.9*8060 ($W/ cc/J : 61 - 1 # Pc64
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'I %.E M Page 20 12-07-92 12:26:46 PCFLLD Versice 3.7 SONGS UNITS 2 COMPUTER ROOM 232 + Sao Time = 2 Hours O Mirutes .00000 Seconds' ( 7200.0000 Seconds ) (cate. Time Step = 2.500E+01 seconds) ----- Compartment ---- -Teap. S-Neat / Bel. -* Pressures (psia) -- ' Total Frac. Frac. West Totat '(Deg 7)! Quality Num. Total Air Steen K Mass (itsu) Air vapor Load Energy (BTU), . ========= =c========== ======= ======= ==== ============ ========c ==== ============================= = = = = = = = = = = = = = = = = = = =
0 Atr.rssAere - ' 75.000 .50 14.700 14.485 .215 1.40 .9908 .0092
-1' PocM 232 106.631 52.1 S .16 15.657 15.450 .207 1.40 1.2907450E+03 .9917- .0083 26.48 1.3622090E+05 Conpartments Initial Energy 1.28t.5L+05 BTU Coppartments Initial Mass 1.2907E+03 itse '
Current Energy in Ccapartments 1.3622E+05 STU Current Mass in Compartments 1'.2907E+93 itse Blewdown Enthatpy Added.' ' O.0000E+00 STU stoudoun Mass Added 0.0000E+00 itsa -
.. Irreversible Energy Loss -8.2631E+03 STU (Condens. + Dropout) Mass Loss 0.0000E+00 its=
Energy Lost to Atmos @ ere 4.9221E+02 BTU Mass Lost to Atmosphere 0.0000E+00 (tze ( Rate of Energy Loss to Atmosphere 1.1661E+00 BTU /sec ] [ tate of Mass Loss to Atmosphere 0.0000E+00 ttun/see 1 Absolute Energy Imbalance ' 2.2058E-01 STU Absolute Mass fabalance 0.0000E+00 itsu Relative Energy Isbalance 1.6193E-04 % Relative Mass Isbatance 0.0000E+00 %- C:g/ : L C c h!: AI-I > M35 M-95-]th
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m Page 22 12-07-92 12:26:46 PCFLUD Version 3.7 SONCS UNITS 2 COMRJTra 200m 232 - Sao
- 7tre = 2 Nours. O Minutes .00000 Seconds ( 7200.0000 Seconds ) (Cate. Time Step = 2.500E+01 seconds)
Exterded Heatsitt Output: Mode Temperatures 4 Heat Sinit No. 1, NORTH W4LL(PLASTER) 90.004850- 89.578030 89.159640 88.749660 88 h 8300 87.955410 87.571140 87.195340 86.828090 86.469330 86.119110 83.7775no 85.444310 85.119660- 84.803440 84.495640 84.1 % 200 83.905240 83.622530 83.348050 83.081820 82.R23700 . 82.573640 82.331570 82.097440 4 81.871120 81.652620 81.441740 81.238490 31.042760 80.854400 80.673310 80.499420 80.332550 80.172640' - j 80.019560 79.873140 79.733310 79.599850 79.472810. .
/.-
79.351900 79.236970 79.160060 Heat Sift No. 2, {(j ~
)
- WOR 1N WALL (COWCRETE)
~ ~ -
82.605870 81.287320 80.101100 79.043180 78.107880 77.288850 76.578700 75.969210 75.451810 - 75.017610 . 74.657620 -:74.363130 . 74.125890' 73.937770 73.791720
,(17'*%
s
'T3.600940 '73.599460. 73.542140 73.504360 73.482390
- 73.472930 ~ , ~ ~ ~ . . - - -
73.473300 73.481170 73.494900 73.513090. -
~ '
73.534580 73.558350 73.584080 73.611110 '73.639190 73.668000 73.697420 73.727390 73.75 7720 73.788420 73.819550 73.851040 73.883030-
-. ' "~ t ~ 73.915370 . 73.948210 4*
73.981600' 74.157750 74.015590 74.195040: 74.050080 74.233060 74.085240 - 74.271820 74.121120 74.311190 f f Nfl I gg Ij g'.
- Heat Sira , c. '3, ,"i _ . ~ . -
WEST WALL (PLASTER)-
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93.190160 92.110810 91.068150 89.094270
'88.163480- ' 90.062530 '
84.071870-: 87.270290 86.414760 85.5 % 710 84.815890 '
~ ~ "[' '3 7 ' W 83.364350 82.692720 82.056490 .81.454930' ^
80.887300 . 80.352870 79.850680 79.379910 78.939540 78.528590 E78.145030. ' 77.790740 , 77.461760 77.157870 76.878020 76.621060- '76.385890' 76.171420 - 75.976590-75.800320' 75.641570 - 75.499240 75.372410 75.260100 28 4'> e t e v" ' -Y w *'w'i - " 'e' - -, '* -' s n ^-
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365 5465806376 9a76387715 3730411585 977 - 446 9 2 3 0.~.6 3 1 0.C. 777 9754322222 7777777777 000 v0000 569 212 000" 167 572P s01617 e1797 112 8520524*.27 085 6473806895 077 564 5 7 6 2 2 7 3 1 0.C. 777 ) 0754322222 27777777T7 E T E R C N D C ( Cr t 000 s 0000G00000 166 t 4061058471 440 s 71205671T3 576 704 087 E C 0737491006 3 25156961 544 2."4 C.4 4 7 4 2 1 0 777 1864322222 877777777T 000 0000000000 , 159 8514533324 493 4461992674 2 115 698C296096 644 2714197416 187 9747684210 544 , 1864322222 777 4 87777777T7 o N tf iS t a e N
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Vege 24 12-C7-92 12:26:46 PCFLI.D Version 3.7
$0mGS Uu!TS 2 C09 UTER Eom 232 - sao Time = 3 wours O Mirut=s .00000 seconds ( 1J800.0000 seconds 3 (Cate. Time step = 2.500E+01 seconos) ----- Concertment ---- Tem. S-Meat / Ret. -- Fressures (psia) --
- To-tat Frac. Trac. peat Total (Dg F) Cuality Am. Total Air steam K Mass (Ibs) Air vapor Load Energy (STU)
================ ====== = = = = = ==== . ======= ==== _ ...._.. _ ......
O Atsesphere 75.000 50 14.700 14.485 .215 1.40 .99C8 .0092 1 acon 232 109.718 55.0 $ 16 15.743 15.534 .208 1.40 1.2907450E+03 .9917 .0083 26.48 1.5e91360E+C5 Coupertsents Inittat Energy T.2845E+05 btu Camerteents Initial mass 1.2907E+C3 the Current Energy in Co mertments 1.3691E+0S STU Current mass in Ca pertsents 1.290?E+C3 tte Blowdonan Enthalpy Ad$ed 0.0000E+00 STU sto h mass Added 0.0000E+00 tbn Irreversible Energy Loss -1.50G1E+04 BTU (Conders. + Dropout) ttass Loss 0.0000E+00 (tse Energy Lost to Atmos #ere 6.5371E+03 STU mass Lost to Atnes;Aere 0.0000E+03 ttze [ Este of Energy toss to Atagere 2.1693E+00 STU/sec 3 I tate of mass Loss to Atmoss+ere 0.0000E+0C ttsersee ) Absolute Energy lebatance 2.1436E-01 STU Absetute mass tobetance G.0000E+00 the Relative Erypy Isbelance 1.5656E-04 % setative mess tabstance 0.0000E+00 % CC N / cc p t: dI , P,/OO M- 3-IIL a
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Page 28 12-07-92 12:26:46 PCFLLO Version 3.7 SowCs tmITs 2 COMPUTER ROOM 232 - 580 Time = 4 Hours O Minutes .00000 seconds ( 14400.0000 secoruss ) (Cate. Time step = 2.500E+01 seconds)
----- Com ertment ---- Tem. S-Meat / Ret. -- Pressures (psia) -- Total frac. Frac. Heat Total (Deg F) Queiity Htsu. Total Air steme 10 Mass (ttEP) Air Vapor load Energy (STU) 0 Atmosphere 75.000 .50 14.700 14.485 .215 1.40 9908 .0092 1 ROOM 232 112.223 57.4 5 .15 15.812 15.603 .209 1.40 1.2907450E+03 .9917 .0053 26.48 1.3747590E+05 Comartents Inittet Energy 1.2845E+05 STU conparte nts initial Mass 1.2907E+C3 the Current Energy in Cceportments 1.3748E+05 BTU Current mass in Co m ertments 1.2907E+03 the 8towdown Enthalpy Added 0.0000E+00 BTU Blowdoun Mass Ad*mf 0.0000E+GO ttze Irreversible Energy Loss -2.4907E+04 BTU (Condens. + Dropout) Mass Loss 0.0000E+00 the Energy test to Atmosphere 1.5881E+04 BTU Mass Lost to Atmosphere 0.0000E+00 ttso
( Rate of Energy Loss to Atmosphere 3.0008E+00 BTU /see ] ( Rate of Mass Loss to Atmosphere 0.0000E+00 ttsVsec 3 Absolute Energy tabalance 2.0020E-01 BT*J Absolute Mass lebetance 0.0000E+00 ttus Relative Energy Imbatence 1.4562E-04 % Relative mass isbelance 0.0000E+00 % CCN/ - CC Al; Al- 1 ) E / #' ' pt-n 3 -n L _ 4 G I (' m y ri sen y 4 t. -f_e,[.
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Pa9e 30 12-07-92 12:26:46 PCFLLO Wersion 3.7 SONGS UNITS 2 ftMPUTER R00* 232 - S80 Time = 4 wours O Mirutes .00000 seconds ( 14400.0000 Seconds ) (Cate. Time Step = 2.500E+01 seconds) Extended meatstr* Output: Mode Tenseratures Meat Sir
- Wo. 1, WOPTM WALL (PLASTER) 96.468290 96.062290 95.661290 95.265230 94.874240 C4.488250 94.107210 93.731170 93.360080 92.993870 92.632660 92.276460 91.925140 91.578700 91.237150 90.900480 90.568630 90.241670 89.919460 89.602020 89.289280 87.794710 88.981170 87.509370 88.677700 87.228360 88.378810 86.951690 88.084500 86.679350 CN /
86.411220 85.131740 86.147250 84.887660 85.887360 84.647310 85.637560 84.410680 85.3 M 70 84.177580 bb . e b/ ~ f O f~ /M7 83.948030 83.721890 83.565640 _ Meat Sir
- No. 2, WOtTN WALL (COmCRETE) 87.297450 81.298550 85.908290 80.371000 84.615810 79.527070 83.418240 78.7629 M 82.313260 75.074860 M A.3__liL _
77.458160 75.289640 76.908480 75.*07480 76.421360 74.765660 75.9927?0 74.560090 75.616490 T4.387050
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74.242890 74.124360 n.028290 .I 73.848110 73.816310 75.795500 73.5 1930 73.783970 73.892610 73.780240 fr # 1 -!') .-}1 73.783290 73.791900 73.805210 73.822360 73.8 2860 / T3.866120 74.010650 73.891690 74.043430 73.919220 74.077180 73.948270 74.111790 73.978910 74.147360 ._
,/ " *~ k 74.1030!0 74.219640 742W5810 74.294530 74.332730 m q Heat Sir * #e. 3, iKST fnALL(PLASTER) !'"C [<.-7 '. ._ _
99.861420 98.863560 97.886890 96.937770 96.010350 95.106720 94.227080 93.371610 92.540310 91.73325G 90.950350 90.191560 89.45 .760 88.746000 88.058990 87.395600 86.755710 86.139010 85.545260 84.974150 84.425510 83.898830 83.393800 82.910250 32.447540 82.005340 81.583220 81.180760 80.797450 8G.432830 80.086400 79.757660 79.446080 79.151090 73.872220
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Page 32 12-47-92 12:26:46 PCFLtc versi m 3.7 50RICS LMITS 2 CD4PUTER ROCM 232 - SSO MAXIMLM AniD MIN!MLM PtESSURES Amo TEMPERATURES
................. .pa,5 w .......... ....... ..................-Mini w -------------------
(psia) (sec) (deg. f) (sec) (psis) (sec) (deg. F) (sec) Compartment Pressure at Tise Temperature at Time Pressure at Time Tepperature et Time we==ses=*23sessnes samassas merewsse assesensass seme==== massesse menesess __ sessness 1 ROOT Z32 15.8121 1.4400E+04 112.223 1.4400E 6 14.7000 1.0000E-02 72.000 .0000 731 Calculation cycles were performed
==> Execution time: 00:01:54.03 CCN/
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NES&L DEPARTMENT #GJ l CALCULATION SHEET Cfe'c,, A/- l c,,,gA me cca cav6um Project or DCPMMP 6O h /$ Ca k: No. "bb ecN m CCN-. suo,.a hn mTcmPedore EesPowse D d r iq S R o ss..i no. 15J att r_ oniossaton oata re 04t5 my omosuton esis was oats
/fhUll716&I IofI( N$ \btqu0
[ i W f
&cklicom 240: (Ao \ \ ,N , l'. ' ks $ , ,
L, 4 (,,j \
- k, L,I i 4,14 LsIM'
-y ja g-- y <=L> s t 10.Y Ligs'Lo.4
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, _ . - - _ _ _ _ _ , . - _ _ f ,__ _ ___.. __ _ _ .
7.o )( $ 44.$' > IY Iw' U* 4 h-ud i 6>i.t , z.;. g lv% L44' g ,, _
NES&L DEPARTMENT CALCULATION SHEET = m e- "i isa PRELIM. CCN NO. PAGE OF CCN CoNVER$1oM Preject er ocP/MMP SONGS 2/3 Cale No. M73-116 ceN No. CCN - srbject _8993_TfmterAtutLReno_ nae _QuringJtation_ Bl.gkovi .(SBO) sh t me. 163 R( L , 04181h470R DAff IRf DAlf RIV ORIGINATOR DAtt IRt 04tt [ hl!f!GIRI 10/16 k.<
,t h {t n 6, -m namens mummmmmmmmmmmmmmmmmm ummmm nummmmmme i mamm .
InputdatasummaryusedforControlRooms(228&240) Temperature Rise Analysis. Q = 50.64 BTU /S see section 8.4) V = 24,840 ft 8 ((see assumption 3.17) Heat K p Cp A t Ti Sink BTU /hrIft'F lbm/ft 3 BTU /l b,m.* F (f t') (ft) (*F) Plaster 0.567 15.337 0.738 4466.0 0.417 75 wall Ceiling 1.04 143.6 0.21 2058.0 1.00 75 Concrete Jee data below for reference to above table. b 4
CALCULEIIdUN5NT = 5a PRELIN.CCNho.'Y' PAst or Project er ecP/ seer SONGS 2/3 'CCN CONVER$!04 -l Cale No. M73-ll6 f ccN no. CCN - l i D5
- NMMb M" etL Ct!ClsAf04 - CAff tat CAff trv 081GlhAt0e OAff lef Catt
[ !! f!Gtal 10/11 h bYh l MMM MM M1m n, CAI4'UIATION OF WORK AREA (ROOM 240) L1 = 6.4 ft (Ref. # 6.8.1) L1 t= 20.8 ft (Ref. # 6.8.1) - L3 := 4.8 ft (Ref. # 6.8.1) l L4 = 9.6 ft (Ref. # 6.8.1) L5 t= 4.0 ft (Ref. # 6.8.1)
- L6 = 28.8 ft (Ref. # 6.8.1)
L7 t= 24.0 ft (Ref. # 6.8.1) - L8 = 9.6 ft (Ref. # 6.8.1) , L9 = 8.0 ft (Ref. # 6.8.1) L10 = 12.0 ft (Ref. # 6.8.1) Lil := 22.4 ft (Ref. # 6.8.1) L12 = 4.8 ft (Ref. # 6.8.1) 3-L13 t= 20.8 ft (Ref. # 6.8.1) L14 t= 6.4 ft (Ref. # 6.8.1)- L15 = 51.2 ft (Ref. # 6.8.1) L16 t= 30.4 ft
-(Ref. # 6.8.1)
L17 := 4.8 ft (Ref. # 6.8.1) t t
-I
^ .. ..: <~, w, c CALCULATION SHEET := ; r PRELIM.CCN100.N"; isior pagg _
Prejut w scp/leep SONGS 2/3 CCN CONVit$104 Cale h. M13-116 -- CCN No. CCN - l t 8 f L.,.. carstnAtoa cAtt at sty m tatt Otistnat0A BAtt tar tatt I
/ *b!!?!G(Al 10/15 k d # D 1M V\ '
usamma-unumansmammmmmme summmma masammu usamme =========1 mmmmm , hr := 19.0 ft (Ref. # 6.8.4) CAlcu1ATION OF TE '* E AREA (ROOM 240) A1 := L1 hr A1 = 121.6 ft'2 A2 := L2 hr A2 = 395.2 ft*2 A3 := L3 hr A3 = 91.2 ft*2 A4
= L4 hr A4 = 182.4 ft'2
- A5 := L5 hr ~ A5 = 76 ft*2 -
A6 := L6 hr A6 = 547.2 ft'2 A7 :=L7hr A7 = 456 ft'2 A8 := LB hr A8 = 182.4 A9 = L9 hr A9 = 152 ft'2 b . ft'2 A10 := L10 hr A10 = 228 ft*2 All := Lil hr All = 425.6 ft*2 A12 := L12 hr A12 = 91.2 ft*2 A13 = L13 hr A13 = 395.2 ft*2 A14 - := L14 hr A14 = 121.6 ft*2 t 4 sca as4an Num em i
,w , .m.. - , , , - - , _ , , ......,,.r.~.. ._ _ . , , - .-....-.....,,_..m.,-.,c...--. , . _ . . . . - .-. _ _ , _ , . _ , ,- _ - - . ..,_.-~-,v,
....~,.3,.
CALCULATION SHEET gni, lc, ,,,,d- I
,,,15%
Project er Dcp/wer SONGS 2/3 CCN CMVER$1M l Cale No. N73-ll6 ccN =o. CCN - I SM NMMb muus ! ag . entstutos catt int uit arv ontstaston att tar cart
,[ N av!! fttfat kMW 10/18 '
- h. @4.
\
- muuns- unuseum usummunnen ununum, luunment num-I um i-TOTAL PIASTER WALL AREA AT t=A14 A1 + A2 + A3 + A4 + A5 + A6 + A7 + A8 + A9 + A10 + All + A12 + A 3
AT = 3.466 10 ft*2 L CAICULATION OF CEILING FOR WORK AREA (ROOM 240) i 1 . A1 : = -- (10. 8 + 6. 4 ) 4. 8 2 (Ref. # 6.8.4) 2 < A1 = 82.56 ft'2 t A2 t= (20.8 + 52 + 20.8) 4.8 (Ref. # 6.8.4) A2 = 449.28 ft*2
/
A3 t= 24.8*4.0 ft'2 (Ref. # 6.8.4) A3 = 99.2 ft*2 A4 t= 8.0 12 ft"2 (Ref. # 6.8.4) A4 = 96 ft*2 AREA OF WORK AREA (ROOM 240) AT t= A1 + A2 + A3 + A4 AT = 727.04 ft'2 scsLas.eus usanwas i. l
.~ _ _ _ _ _ _ - _ - - ....._.....~..
m CALCULATION SHEET w n e./ PRELIN. CCN NO.- A/-! pgg ,,7 or . Pnjut er DcP/mer SONGS 2/3
'Cale No M73 116 _
fe","[fN. f -
% san ,
04tG!4Afee Catt let tatt sty Detsinates carg tag $4rg [~ b8vitttcter 10/13 } Mk h O $ r9 muumma mususummmmmmmmmmuum ummmen mummmumusu unmusma musume manusumannssummmmmmen amesma muumsamen t ummonen < AREA OF THE CONTROL ROOM (Room 228) AB != 9+ sin 45-
, 180, AB = 6.364 ft 1 2' A5 := - ,AB , ==
2 A5 = 20.25 ft*2 - 1 2' A6 := - .6.36 A6 = 20.225 ft*2 A7 t= 11 6.36 i A7 = 69.96 ft*2 FE := 6.36 + 6.36 + 11 FE = 23.72 ft l KE := 13 + 2 i i KE = 15 ft J
. . .. w se~1 # Cr* i CALCULATION SHEET jgy(c, ,,o, a-1 ,,d 5 f ,
e Projwt er ocP/mp SONGS 2/3 Cale lie. M73-116 _j$C[C' - [ subjwt Rpqm Temperature Res sonse Durino St ition Blackout (580) arc _sheetme.]bl i esisturen eart rer ! str an ! ca;sturoa cart tar
,f M vit tratal te/ts }. g.h k '- b utt MmmmMM M m ml m ,
DE := 23.72 sin 45*
. 180, DE = 16.773 ft ~
1 2' A8 != - .16.77 A8 = 140.616 ft*2 CONTROL ROOM AREA, ROOM 228(CoffrI!UED) ' A9 t= 3.5 16.77 A9 = 58.695 ft*2 A10 = 15 23.72 A10 = 355.8 ft*2
'ICIAL AREA OF CONTROL ROOM (ROOM 228) i AT = 2- (A5 +-3A6 + A7 + A8 + A9 + A10) !
AT = 1.331 10 ft*2 ! f TCfrAL CEILING AREA OF CONTROL ROOM AND WORK AREA ROOM 240 A = 1331'+ 727.0 I 3 i A = 2.058 10 ft*2 l' l ses.awas NRuf es
m m.oe m menwr CALCULATION SHEET ia**r PNtLIN. CCN leo. N ,"", iu9 PA&E OF Projwt er MP/ seer SONES 2/3 CCN CONVER$!0N Cale No. M73-116 CcN N0, CCN - f sehjwt Roosi_Tennerature Res >onse Durino St ition Blackout 1590) sheetme./b a@,, 081GihAt0e Mit Int DAtt arv DaltinA10e Mit tat uit f Maytttistet to/is I. O ' n 9 k PIASTER WALL M' - -. tp := 0.0625 tair := 0.292 tT := 2 tp + tair tT = 0.417 k t= 0.25 m/(hr-ft-F) P P := 51.0 lba/ft*3 P Cp P
- = 0.74. M/(1be-F)
- k = 1.24 M /(hr-ft-F) air p := 0.07 air lbee/ft* 3 Cp := 0.24 M /(1 bum-F) tT ke := ka = 0.567 tp tair M/ (hr-ft-F) '
2- + k k p ,, , air
'tair 9 '2 tip +
pe :=
. P. . air ,
pe = 15.337 lber/ft* 3 tT '
'2 tp p cp + 'tair p cp P P. air air.
cpe :=
'2 tp p ' + 'tair p . P. . air ,
Cpe = 0.738 m/(1 bum-F) sce m4as wcw w
wasa asumeam I CALCULATION SHEET mm u,o Pettia. een no. N i Paar or Project er DcPher SONGS 2/3 CCN CONVtH ION Cale Ms. M73-116 _ ces no. CCN - l 5 M" er% . carsrutos NMMb u it tot tatt nry - oarsintos mumm ". uit sat
/ h h !! ttttt! 10/16 I hY \t es @ I att '/7 T , ,
imensam summmmmmmmmmmmmmmmmesummmun muuamma me w .ammmmmmmmmmmmmmmmmmesummmemuumssumimeIsamme, HEAT LOAD FROM ROOM 228 AND ROOM 240 I i 3 Q1 := 38.89+10 W (FOR ROOM 228) (Ref. # 6.7) Q := 400 InU/ person (Ref. # 6.10) N := 11 NUMBER OF PEOPLE IN CONTROL ROOM (SEE SECTION 4.5.2) Q2 := Q N 3
= 0 3
M/hr (HEAT IDAD FOR 11 PERSONS) 10 Q2 := 4.4-3.4121 3 Q2 = 1.29 10 W 3 Q3 := 13.25 10 W FOR ROOM 240 (Ref. # 6.7) HEAT IDAD FOR CONTROL ROOM UNIT 2 QT := Q1 + Q2 + Q3 4 QT = 5.343 10 W 3.4121 QT := QT-3600 QT = 50.641 B1U/S
' sta an.4as hear s es .-
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SONGS Unlis 2L3 conta0L Ro0M 228 & Woer AntA 200M 240 0.00 R228 4 R240 14.7 24540.0 75 0.50 1.00 0.0000 0.0000 0.0000 1 0 0.0 50.64 28800 50.64 MOf 0.0000 0.0000 Mof 0 0 000.00 000.00 000.00 000.00 000.00 1 M07 0 000.00 000.00 000.00 000.00 1 Mof 0 0 1.00 0.60 0.60 0.00 0 MOF 0.0000 0.0000 0.0000 1.0t 6 0.0 0.0 Mof 1 1.00 Mof 0.0000 14.70 75 0.50 1.e20 14.70 75 0.50 M0f , PLAlftR WALL 3 3466.0 0.417 0.01 1.00 1 0.00 1 4 0.000 1.47 1.13 1.47 M0f 0 0.00 0.000 1,47 1.E3 1.47 KOF 0.567 15.337 0.738 CEILING (Crscrete) 3 2058.00 1.00 0.01 1.00 0.00 1 4 1 0.000 1.47 4g l 3 1.47
*[* \ ' ,. ' s I~ f([
0 0.00 - ~ ~ ~ ~ -- - ' ' ' 0,000 1.47
" , CALC.NO: -I ., - . -
QEOF REV1 N ' ,, b- . . M0 3600.0 1 00 20 25 1.E20 0.001 500 ie.((1ifwi.ai9I'-4O
.y , , , ,, , gg i
0.01 1.0 T'"'_' ' (- O.10 10.0 1.00 20.0 10.00 100.0 SH EE.~." IO/ OF-- l 25.00 36000.0 J i-i l l
i. N0f 900.0 36000.0 Kof . 4 ( c H I. . ccN: M\ it u
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a > . 9ege 1 12-15-92 20:13:51 PCTitjD Wersion 3.7 SONGS LMITS 2L3 CD4720L Roue 228 & WORC AREA 200M 240
*** PCFLtD 3.7
- Thermofluid Dynamics for a System of Intercomected Careertsumts
- MAP-120 0 C f1 (C) C w yright 1990 sechtet Corporation (C) Ccpyright 1988 Bechtei Easteen Power CorporatI"JR ALL RIGMTS RESERVED (C) Copyright 1976, 1985, 1957 Sechtet Power Cor p ation ALL RICNYS RESERVED Release Record Date version Description of Changes 3/25/85 1.00 originst PC version 2/25/86 2.00 Air e ly version (SF) 1/06/87 3.00 Added SIGFLO routine 6/02/SS 3.10 Modified for new ctreiter 2/06/90 3.61 61 Ca pertsent version 5/21/91 3.7 Auttumatic rero reverse flow CC Q/
c c ot; Al - l 2 ? 163 INNT file rene: b:r22S&r240.iro . . _ _ _ _ DJTPUT file name: b:r228&r240.0Ut Plot file name: b:r22S&r240.Ptt . 1 2 - 87iii--ip-u.sv
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er pg. 55 77 u M _ me. o T . eD. C R . T( . A s 3 P= 4 1 M= 0 2 O= ) . + e3 . S T C== m* u*. O
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.,t Page . 3 12-75-92 20:13:51 - PCFLLID version 3.T i. i SONGS iMITS 243 CouTROL Rotm 22S & WORK AREA norm 240 i; - i CapFA2TIENT AUKILIARY Coselfl0NS Coupertment Compartment Air Cooler Constant- Air Cooter Temperatures Emaipmerit meet Lead Leekage constants. Desc. (BTU /see-deg) Water (F) Start (F) options Este(CFM) 3 Press.(in. N20) 1 R228 & E240' .000 .0 .0 - 1,' 0 .00000 .0000 C:MPARTMENT uEAT LOAD Compartment 1 Time (secords) meat toed (RTU/sec)
.00 - 50.M 28800.00 50.M i
4 Cc 4 / - i-c ut - IJ- l > T8"
- e t
- A_1 '1,5-ut _.
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.d' page 4 '
,m 12-15-92 20:13:51 PCFLtJD Version 3.7 EGNGS LWits 2&3 COWTROL ROOM 228 & .dORK MEA none 240 TLOW PATR DATA ========er s====
Ccapartment . Flow Area --- Flow Coefficients --- Set Pressure .-------+ .vs'twe Setpoint ---------
- Fross - , ' To (ft**2) Forward Reverse. (psid) ' Pressure (psid) Taiperature (F) 0 -0 - 1.0 600- .600 .0000 Cy ' /.'
- c c pj ; fJ _ O 3 ' ?.16 6
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7 ,,. 4-4 4 I " Page .$' 12-15-92
- 20:13:51 .PCFLtD Version 3.7 SONGS tMITs 213 CouTROL Roan 228 & tontt AREA ROOM 240 Stono0WN DATA =========3m==== ... Time (sec)- Flowrote (ttus/sec)' Enthalpy (BTU /ths) .00000 00000 .00000 1.00000E+06 .00000 .00000 SPLIT Of BLO m0WW DATA ======3======= =========
Cospertaent . Fractien of 8Lc h b 1 1.00000 ATMOSPHERIC DATA 3 ======..s========s. - Time (sec) Temp (deg.F) Pressure (psla) Relative Mumidity i
.............. .............. ................ ......... . c 00000 75.000 -14.700 .5C S 1.00000E+20- 75 000 14.700' .50000
- Ccy f: .. .
cc,A : pl F h //.7 3
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s* Y: Page 6' 12-15 20:13:51-PCFLLO Version 3.7- . ~ SONGS UNITS 213 CONTROL 200M 228 & WORK AREA ROCM 240'
~ Neat Sink ahster 1: PLASTER WALL CONVECTIVE HEAT TRANSTER PARAMETERS ======== === _ ======== _
Stab Material User-cefined Stab Thickness' .417 ft Surface Area .. 3466.00 ft**2 Thernet conductivity .567 STU/hr-f t-deg. F Density . 15.337 ttsm/f t**3
'Thernet Diffusivity .050 ft**2/hr Heat Capacity . .738 8TU/ttedeg. F - First Mode Thickness ~.01000 ft Node Thickness Ratio - 1.00 Nssber of Nodes ' .
43
- Externet Boundary Condition ' Conwetive
- Externst lieat Transfer Coefficient Uchida ' Outside Erwircrrnent Irdex 0 ~ Inside Envirersent index 1 sinterior Heat Trm wfer Coefficient Uchida
_- TABLE OF EXTEReiAL MEAT. TRANSFER COEFFICIENTS
==== _ ====3==================================
Temperature Dif ference (Degrees f) Nest Transfer Coefficient (ETU/hr/ft**2/F)
.00000 1.4700 -1000.0' 1.4700 -
TABLE OF INTERIOR NEAT TRANSFER COEFFICIENTS
._l: f.lb . = _ _ _ _ _ = _ _ _ _ _ _ _ _ c c a .y .
Temperature Dif ference (Degrees f) Heat Transfer Coefficient (Stu/hr/ft**2/F) 1.
.00000- . 1.4700 .1000.0 ; .1.4700 l , [
J"a
'i: (feet).
g g' a
' _ TABLE OF. MEAT _ _ _SINK MESN PO!st_._._ CDORD! HATES p.m, . '.000000 .010000 .020000 .030000: . 040000.'- .050000 .060000 .070000 .080000 . 090000 3 ,~ /' N _ '/-fn-9n:- /
6 M 4 , m,-
'(' m -$ m.r. d-* y. --
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Page 7 12-15-97
' 20:13:51 ,
PCFLiD Version 3.7 SONGS UNITS 2&3 CONTROL RC m 228 & UDRE AREA ROOM 240 Heat Sink Number 2: CEILING (Concrete) CONVECTIVE HEAT TRANSFER PARADETERS
===================================
Stab Material User-Defined Stab Thickness- . 1.000 ft
. Surface Area . . 20$8.00 ft**2 Thermal Corductivity 1.040 STU/hr-ft-deg. F Density .
143.600 tin /ft**3
'Thernet Dif fusivity; . .034 ft**2/hr Reat Capacity- .210 STU/lbe-deg. F First Node Thickness - .02041 it ;- Node Thickness Ratio L 1.00 N
- r of Nodes .. 50 External Boundary Condition Corweetive
'Externet Meat Transfer Coefficient Uchida.
Outside Environment Inden-- 0 Inside Envirorument Inden 1 Interior Meat Transfer Coefficient Uchida TABLE OF EXTERNAL HEAT TRANSFER COEFFICIENTS
==============================================
Temperature Dif ference (Degrees F) Heat Transfer Coefficient (BTU /hr/ft**2/F) L . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
.00000 1.4700
( q ,' n1000.0- 1.4700'
~
CC tJ ', M I O f*') ] g TA8tE OF INTERIOR HEAT TRANSFER COEFFICIENTS -- --.
==============================================
Temperature Differeme (Degrees F) Meat Transfer Coefficient (BTU /hr/ft**2/F)
.00000 1.4700 }} y { '='
1000.0. '1.4700 j ,- Djef ' TA8LE OF NEAT $1NE MESN POINT COORDINATES (feet) f>-lb-4k 3
.000000 .020406 . .040816 ====== - ===============================.====.=== '.061224. . 081633 .102041 ;.122449 . 142857 .163265' ~ .183673 ;j y y ~;' .g- . - - ~ - g - . - s. .Y e x $i . _. . _ . . . .
3
. -h ? .204082- .224490' .244898 ,265306 .285714 .306122 .326531 .346939 .367347 .387755 . 408163 428571 .. .448980-- 469388 '.489796 . .510204 .530612 .551020 .571428 .591837 ' 612245 . .632653 .653061 .673469 .693877 .714286 .734694 .735102 .775510 .795913 .816326 .836734 .857143 ' .877551 .897959 .918367- .938775 .959183 .979592 1.000000 t
4 Ccq/ cc Al i . Al- 1 3 T: 17/ a'e - s e, ; . > , . . . .
. p 1. rf 3 - y g i
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;e -M 'Page 8 12-15-92 20:T3:51 PCFLt2 Version 3.7 ' SONGS UNITS 2&3 CONTROL 900M 228 & WORK AREA ROOM 240 AUMIL'IAff COWDITIONS SELECTED ' =============================== ?" B1owout Paneis OFF "- ~ Corwective Heat Transfer CN ^
Unit Air Coolers' - OF F
. Heating and Ventilation Flow OFF Compartment Leakage OFF-Compartment Egsipment Heat Loads ON Atmosphere Exhaust Fan OFF ' Blowdows Dropout OFF 2ero Reverse Flow OFF 8% Revaperization OFF . PROBLEM CONTROL PARAMETERS ============================ -Problem Time timit . 3600.00 seconds i-Flow Calculation Output / Frequency . OFF/ 0
! Compartment Pressure Difference output . OFF Heat Sir
- Calculation Gutput/ Frequency ON/ 2 Extended Heatsfr* Output: Node Temperatures ON Restart Option - OFF
~ ' Wimber of Plot Points . 25- $1GfLO Switch Time 1 -1.000000E+20 seconds StGFLO lteration Tolerance Marious Number of Flow Iterations '- .001000 ' 00 i
{( . [
- CALCULATION / PRINT TIMES SELECTED ' b ======================== _ ... ,- ' Calc. Time Step '. ............
Change Time Print Interval Change Time
'1.000E 1.000E+00 '9.000E+02 3.600E+04 -
I1.000E-01; 1.000E+01 0.000E+00 0.000E+00 'f
':1.000E+00 2.000E+01, 0.000E+00 0.000E+00 '
1.000E+01.. '1.000E+02 0.000E+00 0.000E+00
.0.000E+00 0.000E+00 g. . .
2.500E+01 -3.600E?O4-
, }jyff l 'f ~/bb ffL- ,0 , na .
k
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Page 9 12-15-92 20:13:51 PCFLtJD Versf ore 3.7 S0WCS LMITS 2&3 CONTROL ROOM 228 & WORK AREA ROOM 240 Time = :0 Rours O Minutes 00000 Seconds ( .0000 Seconds )- (Catc. Time Step = 1.000E-02 seemis)
----- Compartment..+--- .. Temp. S-Heat / . .' Rel . -- Pressures '(psia) -- Total Frac. Frac. Heat Total (Deg F) Mus. Total Air Steam , Mass (itzu) ....c= = ........ .- .. .'Ouality C =
Air
......u===...
Vapor. Load Energy (BTU)
.====== =.=.
- 0 Atmos @ ere 75.000 .50 14.700 14.485 .215 1.40 .9908 .0092 4 1~ R228 & R240 75.000...19.4 5 .50 14.700 14.485 ..215 1.40.1.8334430E+03 .9908 .0092 50.64 1.8493880E+05
- Compartmen:s fr.isitt Energy 1.8494E+05' BTU cospartments Initial Mass 1.8334E+03 tta .
Current Energy ir* Conpartments 1.8494E+05 BTU Current Mass in Compartments- 1.8334E+03 tbo Blowdown Enthalpy Added 0.0000E+00 BTU 8tcu:fown Mass Added 0.0000E+00 tbn , irreversible Energy Loss 0.0000E+00 BTU (Condens. + Dropout) Mass Loss 0.0000E+00 (tzn Energy Lost to Atmosphere 'O.0000E+00 STU Mass Lost to Atmosphere 0.0000E+00 ttua 4 , i Rate of Energy Loss to Atmosphere . 0.0000E+00 BTU /sec 1 ( Rate of Mass Loss to Atmosphere 0.0000E+00 ttsm/sec I Absolute Energy tabatance 0.0000E+C0 STU Absolute Mass 1stelance - 0.0000E+00 tta Relative Energy Isbatance - 0.0000E+00 % Relative Mass Isoalance 0.0000E+00 % [Y[ ccg: AlV>t M
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Page .10 12-15-92 20:13:51 PCfLLD Version 3.7, SONGS LMITS 213 CONTROL ROOM 223 & WORK AREA ROOM 240 Time =. O Mours 15 Mirutes .00000 seconds ( 900.0000 secords ) (Cate. Time step = 2.500E+01 seconds)
---*- Ca partment ---- Temp. S-Heat / Get. ~ Pressures (psla) -- s otal Frac. Frac. Meet total (Deg F) Qual ity Num, fotal Air Steafa . K Mess (Ltys) Air Yapor ' Load Energy (STU) massasss===ssssssssses ======= sessses same sesssssss===ssssssss== sees asses ====sssssssssssss======= sesassa ==========s==
0 ' Ataosphere 75.000- . .50 14.700 14.485 .215 1.40 .9908 .0092 1 R223 & R240 -101.889 45.0 s .22 15.439 15.213 .226 1.40 1.8334430E+03 .9908 .0092 50.64 1.9351660E+05 Capartaents initia1 Energy 1.8494E+05 BTU Ca pertaents Initial Mass 1.8334E+03 1tum Current Energy in Compartments 1.9352E+05 Siu current Mass in Cenpartments 1.8334E+03 tbo Blowim Enthalpy Added ' O.0000E+00 BfD 8towdown Mass Added 0.0000E+00 ttze irreversible Energy Loss 8.5883E+03 BTU (Condens. + Dropout) Mass Loss 0.0000E+00 itsu Energy lost to Atmos @ ere '1.0013E+01 BfD Mass Lost to Atmosphere 0.0000E+00 lbs l. ( aate of Energy Loss to Atmosphere 4.2041E-02 STU/see 1 ( aate of Mass Loss to Atmosphere 0.0000E+00 ttza/see 1 L 'Absolut e' Energy; Imbolance . ' -4.4641E 01 stU Absolute Mass tabalance 0.0000E+00 itse Relative Mass imbalance 0.0000E+00 %
~
Relative Energy'Isbatance ' -2.3069E-04 1 [W/ ' cc g; A/-t- a t 17 4 p1 rib-//C
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t-Page 12 . 12-15-92 20:13:51 .1 PC7LLD Version 3.7 SrMGS UNifS 213 CONTROL' ROOM 225 & IFJINC ARE4 ROOM 240 Time = J ' 0 Hours 15 Minutes - .00C00 Seconds L ( 900.0000 Seconds ) (Cate. Time Step = 2.500E+01 seconds) Extended weatsink Output: sode Temperatures Heat SirA Wo. 1,- PLASTER WALL 81.252470 ' 80.732330 80.241910 N.780980 79.349090 78.945770 78.570280 78.221830 77.899510 77.602260 77.329130 '77.079010 76.850680 76.642850 76.454380 76.233970- . 76.13C400. 75.992460 75.868990 75.758820 r, 75.660800 75.573880 75.497100 75.429410 75.369960
'75.317960 75.272550' - 75.233120 75.196940 75.169400 75.144010 75.122220 75.103670 75.087920 75.074680 75.063630 75.054530- 75.047090 75.041230 75.036710 75.033420 .'75.031280- 75.030490 Neat Sir
- No. 2, CEILING (Concrete) 78.165620 ' 77.531280 - 76.993130 76.545070 76.179050 75.885650 75.654940- 75.476960 - 75.342320 .75.242220
<75.169220: 75.116910 75.080110 - 75.054720 75.037380 75.025790 .75.018160 " .75.013280 75.010160 75.006210 75.006990 75.006320 75.005830' 75.005580 75.005460 n.m54m 75.mS400 75.m54m 75.0054m 75.mS4m 75.mS4m 75.mS4m 75.mS4m .75.0054m 75.mS4m 75.mS4m 75.mS4m - 75.wS4m 75.wS4m n.m54m 75.mS4m -75.005280.
- 75. mS400
'75.005220-75.mS4m 75.005100 75.0054m 75.mS4m CC N / -
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4 Page 13 12-15-92 20:13:51 , PCFLtc version 3.7 SONGS 1217$ 213 CONTROL ROOM 228 & WORK AREA ROOM 240 T ime = . O Hours 30 Minutes .00000 seconds ( 1800.0000 seconds ) (cate. Time step = 2.500E+01 secorv3s)
----- Ccmpartment ---- ' Teep. -$-Heat / Rel. .-- Pressures (psia) -- Total frac. Frac. Heat Totat '(Deg f) Quality Mtm. Total Air Steam K Mass (Ltm) Air Vapor Load Energy (BTU) ======... . . . . . . . . .. ... .. . .... . . .. .
O Atmosphere 75.000 .50 14.700 14.485. .215 1.40 .9908 .0092 1
. 1 R228 & R240 104.619 47.6 S .21 15.514 15.287 .227 1.40 1.8334430E+03 .9908 .0092- 50.64 1.9438780E+05 i
f b Compartments Initial Energy 1.8494E+C5 BTU Compartments Initial Mass 1.8334E+03 ttum Current. Energy in conpartments 1.9439E+05 8Tu current Mass in Compartments- 1.8334E+03 ttze Slowdown Enthalpy AMed 0.0000E+00 STU Blowdown Mass Ad$ed 0.0000E+00 ttze irreversible Energy Loss -9.6748E+03 BTU (condens. + cropout) Mass Loss 0.0000E+00 ttum Energy Lost to Atmosphere -2.2531E+02 siu Mass Lost to Atmosphere 0.0000E+00 ttze ( Rate of Energy Loss to Atmosphere 5.6579E-01 BTU /sec ] ( tate of Mass Loss to Atmosphere 0.0000E+00 tta/sec ) 1 Absolute Energy Inbalance -4.4829E-01 BTU Absolute Mass febatance 0.0000E+00 ttan - Relative Energy febatance -2.3062E-04 % Relative Mass Imbalance 0.0000E+00 X C C W /. a gt p) l w T. 5 1
$1 ']34/f
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e Page 14 12-15-92 20:13:51 PCFLtJD Version 3.7 SONGS tJNITS 213 CONTROL 200M,275 & Wtar AREA ROOM 240 Time = 0 Hours 45 Minutes .00000 Seconds ( 2700.0000 Secoruss ) (cate. Time Step . 2.500E+01 seconds)
- ---- Capartment ---- Tenp. $-Heat / Rel. -- Pressures (psta) -- . Totat Frac. Frac. Neat Total ......... .... ....., (peg F)...
Quality
. ....Hus.
Total Air Steam K Mass (itsi) Air vapor Load Energy (81U) O Atmosphere 75.000 .50 14.700 14.485 .215 1.40 .9908 .0092 1 R228 & R240 '106.529 49.4 5 .23 15.567 15.339 .228 1.40 1.8334450E+03 .9908 .0092 50.64 1.9699710E+05 Compartments initial Energy ' 1.8494E+05 BTU Compartments Initial mass '1.8334E+03 tima Current Energy.In Compartments 1.9500E+05 STU Current Mass.in Cospertments 1.8334E+03 itsu 8towdown Enthalpy Ad$ed . 0.0000E+00 8TU Slowdown Mass Added 0.0000E+00 ttum IrreversitAe Energy Loss -1.1230E+04 BTU (Condens.
- Dropout) Mass Loss 0.0000E+00 itse Energy Lost to Atenas# tere 1.1712E+03 STU Mass Lost to Atmosphere 0.0000E+00 ttze
[ Rate of Energy Loss to Atmosphere _1.6251E+00 8Tu/sec ) t Rate of Mass Loss to Atmosphere 0.0000E+00 Itzn/sec )
.......................................................... ....................................... .......g..........
Absolute Energy Intaalance -4.4275E-01 STU ' Absolute Mass Indaatance, 0.0000E+00 Ltze Relative Energy Imbatence _- --2.2705E-04 % Relative Mass tacatance 0.0000E+00 % CCN! c c N '. W, l g 17E- ~ p.orv 31 st y - p -ji-9 V f19l*g )u
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I my Page 15 12-15-92 20:13:51 PCFLLD version 3.7 SONCS tmlis 213 CONTROL Ro0N 228 & WORK AREA ROOM 240 Time = 0 Hours 45 Mirutes .00000 seconds ( '2700.0000 seconds.) (cate. Time step = 2.500E+01 seconds) Heat Sirdt Calculation output
.HS# Corp - T' .TSAT TWALL: NCOND HCONV' AREA OCOND QCONV QSENS QTOT WS8 ..................................................... .............................................................................. '- t 1 Le!t '1 106.529 - 57.139 86.313 .000 1.4 70 3466.0 0.000000E+00 -2.MJutt4E+01 0.000000E+0C -2.868834E+01. 1 1 Right 0 75.000 *** *
- 76.169 .000 - 4 1.470 3466.0 0.000000E+00 .1.62 M ~E+00 0.000000E+00.. 1.621045E+00 1 2 tef t . 1 106.529 57.139- 81.158 .000 1.470 2058.0 0.000000E+00 '-2.134840E+01 0.000000E+00 -2.134840E+01 2 2 Right 0 75.000' ~ * = 75.005 .000 : 1.470 2058.0 0.000000E+00 4.051981E-03 0.00GOOOE+00 4.051981E-03 2 CcN1 c.c h , -
g 1 , % l79-
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9' Y 4 rm e s . . w _ . . . se n ..~ = w.*-
Page 16 12-15-92 20:13:51 PCFLUD version 3.7 SCWGS UNITS 213 CouTROL tocs 228 i WORK AREA R00M 240 Time = 0 Hours 45 Minutes .00000 seconds ( 2700.0000 Seconds ) (Cate. Time Step = 2.500E+01 seconds) ExteW Heatsira Output: Node Teeperatures I Heat Sink No. 1, PLASTER WALL ; B6.312530 85.796050 85.295010 84.809360 84.339200 83.884430 83.444980 83.020720 82.611600 82.217440 81.833230 81.473790 81.123930 80.788420 80.467070 80.159700 79.866000 79.585850 79.318940 79.065030 i 77.980440 l 78.823820 78.595060 78.378450 78.173680 77.798490 77.627530 77.467250 77.317350 77.177580 ; 76.816130 76.714020 76.620700 l 77.047640 76.927220 ' 76.535860 76.459260 76.390660 76.329860 76.276640 76.230800 76.192110 76.169220 deat Sink No. 2, CilLIJ (Concrete) 81.158480 80.455470 79.809230 79.218600 78.681790 78.1 % 750 77.761020 77.371980 77.026760 76.722260 76.455350 76.222930 76.021820 75.848970 75.701320 75.576020 75.470'30 75.382050 75.308500 75.247710 75.197850 75.157260 75.124360 75.097990 75.076870 75.060150 75.046970 75.034650 75.028720 75.022610 75.008330 (Cg/ 75.017910 75.014430 75.011750 75.009800 75.007290 75.006620 75.006070 75.005 770 75.005520 {C g.
- g _l 3 d
O 75.005460 75.c05400 75.005400 75.005400 75.005400 75.005280 75.005220 75.005100 75.004970 75.004850 . _ _ - _ _ _ _, A AfD- //l-
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Page 17 12-15-92 20:13:51 i PCFLtc Versice) 3.7 SON:s UWtis 213 CouTROL RCKM 228 & WCar AREA RO M 240 f ir.e = 1 Mours O Mirutes .00000 seconds ( 3600.0000 seconds ) (cate. Time step = 2.500E+01 sectrds)
----- Corpartment ---- T eep. $-Meat / Eet. -- Pressures (psia) -- Total frac. Frec. Meat Totst (Deg F) Quality m.m. Total Air Stean K Mass (Ita) Air vapor Load Energy (STU) sans ====================== sess ======ss==== ,=ss3=sses=====rs ======= =====3s==== 3 ======s =========s3=== ======= ss=3s==
75.000 .50 14.700 14.485 .215 1.40 .9908 .0092 0 Atmos @ ere .9905 .0092 50.64 1.9549720E+05 1 R228 & R240 108.103 50.9 s .19 15.610 15.332 .229 1.40 1.8334430E+03 Ccapertments initial Energy 1.8494E+05 BTU Carpartments Initial Mass 1.8334E+03 ltze Current Erergy in Ccapartments 1.9550E+05 STU Current Mass i* Cmportments 1.8334E+03 tte ]
'Blo h Enthalpy Added 0.0000E+00 BTU Blondown Mass Ad$ed 0.0000E+00 ttze Irreversible Energy toss -1.3746E+04 BTU (Condens. + Dropout) Mass Loss 0.0000E+00 lba l
Energy lost to Atmos &ere 3.1851E+03 STU Mass Lost to Atmosp ere 0.000M+00 ttze ( Rate of Energy loss to Atmos @ere 2.9030E+00 BTU /see 1 [ tate cf Mass Loss to Atmos #ere 0.0000E+00 (ba/sec } Absolute Energy Irbatance ' -4.5291E-01 STU Absetute Mass febatance 0.0000E+00 ttze Relative Energy 1statarre -2.4701E-04 % aetative Mass latatance 0.0000E+00 % Nl C C Ah 6I> eeerM -
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);- sveiect Rocm Temperature Resconse During 580 -, . , - $3..g s,_ s f; .EV_ _ i
- C#sCaeATOS Daft { seg .cr DA TE -
/$%MM 6 0010.e4 704 04TE ins I cart tosii \.& \h (I ,/\
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NES&L DEPARTMENT CALCULATION SHEET g-(c, ,, #-l ./ Pl o, CCN CoNVER$10N Project er scr/mr - SONGS 2/3 ,Cale No.'M73-116 ccN No CCN - I sibject Room Temocrature Res sonse Durina Station Blackout (SBO) sheetNo.-)3 d RIV. L ORIGINATOR DATE- IRE DATE' Rtv - ORIGINATOR DATE IRE Daft
/ 2 T!GERI 10/15 k V NQ M , ~R \:
musume nunummmmmmmmmmanummum numanum musummimamm muusumam ummunem - summans ammanusmann i ammmmu . 8.5 Control-Roos Cabinet Area # 229 The results of the heat load analyses of Cabinet Area Room 229 and Cabinet Area Room 227(Ref.# 6.7) are as follow: Name Heat Load (kw) Control Cabinet Area Room 227 51.71 Control Cabinet Area Room 229 51.67
Conclusion:
Based on the heat load review of the Cabinet Area Room 227(Unit 3) and
+heCabinetAreaRoom229(Unit 2)itcanbeconcludedthatthe -
temperature rise in the none blackout Unit 3 Cabinet Area Room does not affect the Unit 2 Cabinet Area. Input data sunanary used for Control Room Cabinet Area (Room 229) Temperature Rise Analysis. Qm a = 54.41 BTU /S 3 (seesection8.5) A V= 57092.0 ft (seeassumption3.17) Heat Sink K p Cp A 't- Ti. 3 BTU /hrI ft F lbm/ft BTU /lb*m *F :(ftr) (ft)- ('F) North wall 0.509 18.556 0.739 1196~ O'.459 75-Plaster East wall 1.04 -143.6 0.21 1685 2.5 75 Concrete South wall 0.567 -15.337 0.738 91.2 0.417 75 Plaster South wall 1.04 143.6 0.21 237.5- 2.00 75 Concrete i West wall 0.567 15.337 0.738 589 0.417 75 Plaster Cei1ing 1.04 '143.6 0.21 3723 1.00 75-i ' Concrete dee data below for reference to the above table.
. CALCULATION SHEET jght-(c, ,,, s-l ,g, Project. er DcP/mer SONGS 2/3- CCM CONVERs10N i.
Cale No. M73 ll6 ccm No. CCN - I-
-subject Room Temperature Res3onse Durino St ition Hackout (580) sheet me, l [ $
fe art entsinArea - cart - ta : CAff Eff ORIG!hATOs DATC [A[ 0A7[ f M r itstal ~ 10/15 i.N) % 0 4 O i mammmmmmmmmmmmmmmmm musamma mamammann summme mammu sumumm nummmmmmmm l ummmmu . CAICUIATION OF CABINET AREA (ROOM 229) UNIT 2 La := 62.96 ft (Ref. # 6.8.1) Le := 88.67 ft (Ref. # 6.8.1) Lw := 31.00 ft (Ref. # 6.8.1) hr := 19.00 ft (Ref. # 6.8.4) CAICULATION OF THE CEILING CABINET AREA (ROOM 229); UNIT 2 AND UNIT 3 CABINET AREA ARE THE SAME.- 2 A1 := 11.167 12.5 , A1 = 139.588 ft*2 A2 := 42.17 4.8 A2 = 202.416 ft*2 A3 := 46.92 88.67 3 A3 = 4.16 10 ft*2
'U2 := 665.54 ft*2 1
A4 : = -- (21. 6 + 26) 4. 8 2 A4 = 114.24 ft*2-Anet := A3 - (U2 + A4) 3 Anet ='3.381 10 ft*2 Ace := A1 + A2 + Anet 3 Ace = 3.723 10 ft*2 scalas4us MItW Wee I. -
' ~ ~ .c ..om,..n. .ar CALCULATION SHEET tce e /- .
PRELIM. CCN NO. w i PAGt n t,or
. Project er ocP/wer SONGS 2/3 CCM COMYER$!0N i Calc No. M73 116 ceu No. CCN - f SM '
g g r g h,,,,3 at y,g- entatmatos cart tat eart arv osistaatos cart tar - cart
# sanN ttctal k ik u ~
10/15 ldn 40 e a.
.4 k. L -
a a a- -n. CAIIUIATION OF WALLS AREA (FOR CABINET AREA ROOM 229 UNIT 2) CAICUIATION OF AREAS; .FOR NORTH, EAST, AND WEST WALIS An := Ls hr 3 An = 1.196 10 tt'2 4 Ae ;= Ia hr 3 Ae = 1.685 10 ft"2 Av := Im hr Av = 589 ft*2 [\ CAIEUIATION OF AREA; FDR SOUTH WALL Ic := 12.5 ft (Ref. # 6.8.1) Ac := I.c hr Ac = 237.5 ft'2 Lp := 4.8 ft (Ref. # 6.8.1) Ap := Lp hr Ap = 91.2 ft*2 actzu Mawwas
LCALCUL IId 5 5NT au+ =s PRELI:1. CCN 40. g r IRor pagg
- Projoct er DCP/me SONGS ~2/3 Cale No. M73 116 CCN CONVER$10N-CCN No. CCN -- b-sg '
_!La.usar.m2.MME.2E!aibu
- sty ./ A- earatuton ~ -( Y t2 tictal urt ter uit hlhna'diEL---- $dd atv- calsturae - natt tot cart 'te/ts \.Ak h ok g '
CAI4VLATION OF PROPERTIES (Ke, pe, AND Cpe)- POR COMPOSITE WALLS NORTH WALL tp := 0.0833 ft tair := 0.292 ft (Ref..# 6.8.1) (Ref. # 6.2)' tT := 2 tp + tair tT := 0.459 ft k := 0.25 P BTU / (hr-ft-F) (Ref. # 6.17) p := 51.0
'A '
P lbm/ft*3 (Ref. # 6.17) , Cp := 0.74 s l' P BTU /(lba-F) (Ref. # 6.17) k air
- = 1.24 HIV/(hr-ft-F) .p (Seesection8.8) i p := 0.07 l- air lbm/ft'3 (Ref. # 6.2)
Cp := 0.24 air BTU /(lbm-F) (Ref. # 6.2) tT Ke := - >>
.tp 'tair Ka = 0.509 BIU/ (hr-ft-F) 2- -+
k k p air
~ '
2 tp p + "tair*p '
, -- p , air, pe = 18.556 pe := ,
lbm/ft*3 tT E
'2 tp p. Cp ' + 'tair p Cp , p p, air Cpe':= ,
air.
'2;tp p ' + "tair p ' . P. . air ,
Cpe = 0.739 BTU /(lba-F) scamass unsem
CALCULATION SHEET a u : = ./- PRELIO. CCN NO. w _ c PAgt pgop Project er ocP/ m p SONGS 2/3 CCN CONVER$!0N-Cale No. M73-116 Ces 40. CCN - / *
-.atv . 1-Sg hQQiM entsinatos carr g .
y bee ret eatt arv -catsinaron 'natt tat' k.k / khe catt v!! flGtp? 10/15 AM - - m -- .r SOUTH WALL tp := 0.0625 ft (Ref. # 6.8.1) tair := 0.292 ft (Ref. # 6.2) tT := 2 tp + tair-tT = 0.417 ft i tT Ke := , Ke = 0.567 2-BTU /(hr-f t-F) -
+
k k
. P air. "2 tp p ' + 'talt p ' b' . p, air, pe = 15.337 pe := lbm/ft's tT ~2 tp p cp ' + 'tair p
- Cp
. P .P, air air ,
Cpe := .
'2 tp p ' + 'tair p ' . P, . air ,
Cpe = 0.738 BTU / (lba-F) 4
' CALCULATION S$~EET -tec e.*-
PRELIM. CCN No. N -I- pact \ r Projwt er DCP/wer - SONGS 2/3 - CCN CONVER$10N Cale No. M73-116 r ceN n0. CCN - i 5g 3.9.QE.lt!!!IttIA1F,{,,R,g aw A caratures gg g h m sw catt . , tat catt - sty oarsturon oart tat cart
/ kM!Z?!Clat 10/1$ _ h4Ah a- mmmmmmmmmmmmm ES anemmemammmmmmmmmmmmmmmmesu ..
WEST WALL tp := 0.0625 ft , (Ref. # 6.8.1) tair't= 0.292 ft (Ref. # 6.2) tT := 2 tp + tair tT = 0.417 ft ,. 4 tT - Ke :=
- J tp tair , Ke = 0.567 BTU /(hr-ft-F).
2-+- k k
. p air , /s '2 tp p ' + 'tair p
- pe :=
P. . air. pe = 15.337 tT lba/ft*3
~
2 tp p Cp + 'tair e Cp cpe := . .P P. . air- air ,
'2 tp p ' + 'tair p '
P. . air. l I ! .Cpe = 0.738-BTU /(lba-F) l l
,SCE N W &m8
CONTROL NO. os9 31 CERTIFICATE OF AUTHENTICITY
~~
CO N-~ N ON Thn is to certify that the microphotographic images appearing in this microform are direct and facsimile reproductions of the original records of the Southern California Edison Company and were microfilmed in the regular course of business. The microfilming has been performed according to estabilshed routine Company Policy for systems utilization and/or maintenance and preservation of records through the storaee of such microforms in protected locations. THE DOCUMENTS CONTAINED ON THIS MICROFORM ARE ORIGINAL RECORDS OF: f[8 Southern California Edison For the MATERIAL & AIDlINISTRATIVE SERVICES - CDM/SOceGS Department m e pet =r Generatirq Station Desirps mimi"4ais This microform file is a complete record of the transaction herein recorded The documents are arranged on this microform in the following manner: [ By month in Location and Work Order Sequence O Order of Payroll Location Number [ Alphabetical order by O Grievance File Number sequence [ Numerkal order by Design Cal.No. O Date order C Order of Customer Service Store Number O other The hardcopy documents used to create this microform have been authorized for destruction af ter verification of correctness and acceptability of the microfilming. It is further certified that on the date specified below. the micrographic images appearing on this micr'o form were made at a reduction ratio of 29 : 1 under my direction and control. The above information is deemed necessary in compliance Licemees - issued March 14,1972. This order has subse. with the Federal Power Commisuon Order No. 450. Regu. quently been approved by the Public Utilities Commmion latiom to govern the Preservation of Public Utilities and of the State of Califorma on October 29,1974 b}0-9] ,/$p< , -- I AWS BLOG., 0-2-P. SONGS Cgw w s o . . .. ., ......e..........
...,...... ......... .n. . -- - ~ .
CALCULATid5'55~$ET pfj% ,,,, g-l ,,1% Prej ut or DCP/MMP SONGS 2/3 Cale No. M73-116 jc #((CN 3 f subjwt Room Temperature Resgqnit_Durino Station Blag_k.quilSBO)' stv ./A carst=At0e DA T[ sheet me. 3 0_ tt( CAft l 2[V 04fCf 4A T04 CAT ( !R(
./ Mvrz7: star 10/ts Mudt OAtt \ N, , \\
CAI4ULATION OF HEAT IDAD FOR CABINET AREA (ROOM 229); UNIT 2 Q2cr057 := 2431.04 W (Ref. # 6.7) Q2cr056 := 2249.2 W (Ref. # 6.7) Q2cr058 := 712.46 W (Ref. # 6.7) Q2cr050 := 576.32 W (Ref. # 6.7) Q2crO51 := 292.96 W (Ref. # 6.7) Q2cr052 := 912.23 W (Ref. # 6.7) ' Q2cr053 := 1042.41 W (Ref. # 6.7) Q2cr054 := 1609.4 W (Ref. # 6.7) Q2cr064 := 708.0 W (Ref. # 6.7) Q23cr061 := 1861.03 W (Ref. # 6.7) / Q23cr061 IS FOR UNIT 2 AND 3 THEREFORE HEAT IDAD FOR(Q) UINT IS 3 Q23cr06 Q := I 2 Q = 930.515 W TOTAL HEAF IDAD THAT, CONTRIBUTING HEAT TO THE CONTROL ROOM CABINET AREA (ROOM 229) UNIT 2 1S Q2 := Q2cr057 + Q2cr056 + Q2crO58 + Q2cr050 + Q2cr051 + Q2cr052 + Q2cr053 + Q2cr054 + Q2cr064 + Q r 4 Q2 = 1.146 10 W , l 50% OF THIS LEAT IDAD (Q2) TRANSFER 'IU CABINET AREA (ROOM 229) l L Q2 Qt := 50-100 3 Qt = 5.732 10 W sca as.4as New wee i
CALCULATION 55'5ET == v, m u n. sen o. N -1 nu u e Project or ocP/ar SONGS 2/3 #"# ' " [ ale No M73-116 c N CN - ! $:bject Rqom Temeerature Ressong J urino Station B Rqkout (SBO) sheet ue. N / A,1 Otf5! TAT 04 OAft !bt 0 Aft 4ty OR!t!4ATOR Daft ttt CAfg_
/ v!! TICtt! 10/1$ \ Af kl\t h musumuse - - - -
r---
*d^ \ \'
namammeunamm enmunemammmmm. -
- ammesmaammu .
THEREFORE CABINET AREA (ROOM 229) UNIT 2, HEAT IDAD IS Q := 51670 W (Raf. # 6.7) Or := Q + Q% 4 gr = 5.74 10 W 3.4121 gr := gr-3600 QT = 54.406 BTU /S ' sca m m e w w us.
SONGS UNITS 2 CONTROL ROOM CABINET 229 0.00 ROOM 229 14.7 57092.0- 75 0.50 1.00 0.0000 0.0000 0.0000 1 0 0.0000 54.41 28800 54.41 SEOF l 0.0000 0.0000
# EOF
~ 0 'O 000.00 000.00 000.00 000.00 000.00-1 9 EOF 0 000.00 000.00 000.00 000.00 1 SEOF
.0 0 1.00 0.60 0.60 0.00 0 9 EOF 0.0000 0.0000 0.0000-1.0E6 0.0 0.0 SEOF ^
1 1.00 9 EOF ;. 0.0000 14./0 75 0.50 1.e20 14.70 75 0.50 SEOF , NORTH WALL (PLASTER) 3 1196.0 0.459 0.01 1.00 1 0.00 1 4 0.000 1.47 1.E6 1.47 . 9 EOF 0 0.00 gg g./ 0.A000 1.47 C.C. Al ' ,
~ 7- 3 y' lcj'1 '
1.E6 1.47 9 EOF i ' O.509 18.556 0.739 . EAST WALL (CONCRETE) - N-.73- //f, - 3 1685 2.5 0.01 1.00-1- 0.00 1 4 REV1Sl0N: ' I' rk
'BY: DATE: W~l7'fl SEOF 0 0.00 CHECKED: DhTE:h it kV L}
0.000 1.47 l' E6
. 1.47 9 EOF SHEET l@ OF l'.04 143.6 0.21 SOUTH WALL (PLASTER) 3- 91.2 0.417 0.01 1.00 1 0.00 1 4 0.000 1.47 1.E6- 1.47 -9 EOF 0 0.00 0.000 1.47 1.E6 1,47
1 I l i SEOF ! 0.567 15.337 0.738 SOUTH WALL (CONCRETE) 3 237.51 2.00 (.01 1.00 ; 1 0.00 1 4 0.000 1.47 1.E6 1.47 9 EOF O 0.00 0.000 1.47 1.E3 1.47 9 EOF 1.04 143.6 0.21 , WEST WALL (PLASTER) -[ 3 595 0.417 0.01 1.00 "- ' 1 0.00 1 4 O.000 1.47 ' 1.E6 1.47 . GEOF ' 0 0.00 0.000 1.47 1.E6 1.47 , SEOF
- 0.567 15.337 0.738 i CEILING (CONC E) 3 3723.Os 1.00 0.01 1.00 1 0.00 4 1 0.000 1,47 1.E6 1,47 9 EOF 1.04 143.6- 0.21 SEOF '
0100010000
'9 EOF 14400 1 00 20 23 1.E20 0.001 500 b0 bb b, CCf/,'
1.00 20.0 M - I. ) ' 10.00 100.0 25.00- 36000.0 I i-SEOF 3600 14400 CALC.NO: II - !. REVISION: sy: 1. 7478 #/ DM:&=h*SI 6CKED: DATE: W "T L l' . SHEET I6(3 OF --
fate -1
!!1111 10:H:H PCFLH terslu 3.1 10808 Cll!! ! 00 tit 0L ROM Callitt til att FCFLH 5.1 6 8 8 ) fleruflild traulce for ilistes el Intercouetted Cuprtunts (
lifIll Illll) (C) Cottright llH lechtel Corpratin (C) Cotitight Illi Bechtel luters foser Corpration all t'Citt it8 tit!D , (C) Cottrignt lift, Illi, liff techtel fuer Corporattu ' att110I18!!!!!!!D teleue tecoed late fersien lescription of Chuge: 3/!!/11 1.00 OriginiFCversion 1/11/16 1.00 lit-only version lit) 1/08/11 3.H ' Added !!CFLO restiu , I/01/11 1.10 sodilled for ne costiler 1/01/10 3.61 11 cceprtuit versies ll!!/fl 3.1 htoutie s.tn reverse flo
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ll If 41 18:00:04 f PCfLH ferrin 3,f 8 % I Ulti t M it0L toon tiripty ggg J Mtalttttt littlat cutitlns ; sussnussunssnnnnnunn i C'8ikil8'll Otectlptlet fe[i,, te,p,,,gif' Ift'Hft 101.lulilty aten ,11 o,iii <,,oiioi flu 4 Cupthe, i,s,1,,,,,,,,
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, - , - - - -a- s..,-,,,',,
- er, .- - w.,.,-- e ,,,-wn ,, y, ,- m. ,,nu ~ , , - - - 7 - + - - . , - ~9
file 3 i 11 11 l! ll:H:Cl i I PCFLUtersien1.f e 808C3 tilti 1008tt0L iM Callitt !!! ! Mfitttttt it!!tlAlt 00illticil 8888tV288tiftslitB88ttft888tstitti Cosprisent Cosntient Air Coolet Cosetut litCoolerteaptatttes Ittipentfeatload -! Lethie Constuts-lesc. (ItO/seedet) later (f) Statt(f) Opting late (Crt)Ifress.(it.110) I RM !!! .0H .O .0 1, 0 .000H .0000 00tilitilft Itaf L0li , 83tt8882888818888832818 Cceptisent 1 flee (seconds) lest Lead (ItOhee)
.H 14.41 tilH.H I4.41 l
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tage 4 1111l! 16:00:01 PC KUI tersia 3.1 80HI Clift ! C0ftt0t LX1 Callitt !!! l'.01iltilitt ttttttttttsta8ts Costartsett flee tret - flos Coelliclette ~ letfresente ~ ~ laite letpolit ~ ~ - free to (fteel) Forstri teverse field) tren ite (tali) testerature (f)
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fate i 1111l! i 10:00:08 PCFLD) ferstes !.f _ t 10808 Ollf81 CCitt0L tX4 CAlliff !!! t I IL0fXVIlift 288888888888888 fles(see) fleera'e (thhec) titialt; (170/16e)
.00000 .00000 ...00000 1.00000ft01 .00000 .00000 ,
t . IPL!fOfIL0f00fltAfA - 85$383888888888888888118
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Captteest traction el lloedon , 1 1.00000 : Aft 0!Pitt!C 0A71
$t&tttttttttttttti ?se(seel fest(def.f) Preuere(pala) telallee lealditt .00000 fl.000 14.700 .50000 1.000001610 fl.000 14f00 .50000 CCNI i Cc H? NI) l' A Y .
R:\lf, r4Gl . . . . . . <*. I mnw_ f874 fluml2-114 _.X.5 % , w( ys:M ivi SHEET _1 1# 1OF-1- w - --.e, *. w a--e. -f - e-g. ---t 3 - - y'
inte i
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t CALC.NO: . 00litCf!!! !!At ftAllitt FA1Allt!!! I WWON' - 188titittttttttttttttttttttttttttttts / BY: 2 MU DDATE:.ld'h L a C, llanlaterial 73 ..DATE: il W jk-Oser4eflied CHECMED: llan flichen .illft ^ '
~ ~ ~
litfaceArea 1196.00fitt! flereal tenduttelt; .500if0/htftdef.I leulti ll. illite /ftt83 flerul lif fultit! .0ltfit81/hr test Ca cit! .filifl/Itedet.7 SHEET 1 M OF First lode thithes .61000ft ~ ~,~ l - lade flichess idle 1:00 luber of lodes it liternal losidar; Conditle Consutlie . Litetul lest traufer Coeft .ut Ochid Ottelde hiirouest indu 0 1: side hvirossent lidet I literior test truster Coeffiele:L Ocnida fAlt! Of !!!!Elit itif ftllifft 00!!flCitif8 S$!stStttttttttttttttttttttttttttttttttttttttt . fuerattre lifferene (Degrees F) lett fraufer Coefficient (if0/hr/f tt81/F)
.00000 1.4f00 1.00000! ell 1.4f00 tiltt Of lifttlet itAt itAI5 Fit 00tillCittf8 Ittttttttttttttttttttttttttttttttttttttt!!stts tuprattre Difference (Detrees f) . lest fruster Coefficlett (if9/hr/f tullf) .00000 1.4f00 1.00000!e06 1.lf00 falt! Of !!af Illt it3170!If C00tiliitti (feet)
Et ttttt t t t!**tt tt t tt t t t tttt t t tttt t 3 I t t tttt tt t t ttt t
.000000- .010000 .020000 .030000 .040000- .050000 .050004 .0f0000 .080000. .090000 I
.. . . . . . . . . ~ . . . . . . , .
. ann .iaOn .unn .inon . .inni .iina ,ii,,,, , i,,,, ,,,,,,, ,,,,,, -.!H0H .tinH .!!0000 .!! OHO .10006 .!!0000 .34000 ,gngy ,ggg, ,gggg .30n00 .3100n .3t00H .33H00 .llHH .1100H .3800H .lf00H .380000 H0000 .nnu .unn .nnn .nnn .unn .nono .n,n, 1
i , l-1 i -.-. t C C. N I ccN: A/ / , P. E co
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j f
i fate f
!! lf It -
10:00:ll PCftliferslu1.1 4 80808 tilt! ! 00ftt0L 8001 Ci!!lti !!! Itat lid lieber 1: IAltflLLIC013tt!) 00lftCill! !!!! ftAllftt FA1Allt!!I tit tt t t t t t ra t t t t ttt t t t t t tit t 3 tit t 8888 lidlaterial Os*r4ellied Ild thichten 1.100ft 66N / firfacetres till.00 ftH1 3 thereal Condutlettr hult 1.010if0/htftdef.f 141.800 thelftill C. C O M ' > l. [Cl-flersal liffulelt; .034 ftttt/hr
~ ~ ~ ~ ~ ~ ~ ' ~ ~ ~ ~ ~
ItatCapacit; .!!0It0/lbedeg.i first 104: fnictien lode thickten latie
.05101ft 1.00 , . q gn, g[.U. l(g , ^ -- ~ . -
luber of lodes it N a-
,,, q * - ~ ' !sternalloudarf Conditin intetul test fraufer Coefficient Coseectlee Ocnid f?7 b 9*: l2.~ O 2 .- - i I '
0stelde tieltcuest lade 0 luide 1:eiruant lade laterior feat traufer Coeffielut Ochida 1 I ~
'*4 N ' h' SHEET 4 01 CF. ___j ~~
fAlltOfiltit!AtIlititAllfttC0!fflCitifl ' ttist388tt238125tst38titt38ttt3818838828153 48 festerstate Differnee (hgrees f) lett truster coefficient (if0/irlf t:8t/f)
.00000 1.(f00 1.00000!+08 1.4f00 tilltOfIItttit!Ilitfililitt00!ff!Cititt 333333338313333: :1838t313t33I1883883318531538 -
fnperature Difference (letten f) ' ini frusfer Coefficint (ltt/hr/f tut /l)
.00000 1.if00 1.00000!t08 1.if00 tillt Of IIAf Illt it!I P0llt C00t!!IAftl (feet) 23333 ttt t tt t t t t tt t3813 tittt t tt tt 311218233333183338 .000000 .051010 .101041' -.113011 .10408 .!!!!O! .30llt! .31 fill. ,401113 .45illt i
1
,.m.,...,r._,,- . , . . . -,. . . . -. , , . . . _ _
.511111 .Illitt .61!!41 .661115 .flitll .fillel .llitti .iltitt .llillt .lll3tl 1.flillt 1.0f!Ill 1.l!!!49 1.lf34tl 1.!!4419 1.!!illt 1.116630 1.lftill 1.(llit! 1.lfillt 1.130111 1.111631 1.l!!Ill 1Illif! 1.f!(681 1.filfil 1.l!Ifil 1Ilffl4 1.138tfi 1.llifil .l.510118 1.011111 1.14till 1.1938f! 1.!(illf- l.!Illli- 1.141131 3.31f111 1.4(lift 1.500000 C C. N I C c th tJ l > ?. 20.2 P7 .73-il L 2
P.Ti(W pz-n.9z
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l . I' l' y--
fate i lllfl! 18:00:01 PCFtDI terales 1.! 10lGI tilti ! C0ltt0L LM Callitt !!! lett link lieber 1: 80011 fitt(ftalttt) 0011tCfitt tilt itAltitt FAtattf tll tittt tt t ttttttttttt tttttt ttitt tttt tti 1166Interial On r4eflied litb thiches .41 fit hrttee Ares 91.11 ft881 flersalConductivit; hultt
.llt if0/ht ft del, f II.lltthlft8tl 6CN I 7 therealDiffL. lilt; .010fttt!/kr Cd Nt' Al I 5 I + 0 9 0--
lett C6pcit; .fll It0/lk-det, f , .. . . _ _ first lode thlehen .01000ft ' '/ ~ " lode tilchies htio 1.00 luber of lodes il . k f,$.-ll 6 Interial loudstr Cnditin Cavestlie htetul lett trusfer Calliclett Ochih N Outside lettronent lades _l p* , luih Intirneest lider 1 i I " b.. .
- literior test transfer coefficient Ochidt j 1 g tillt Of fif ttlit 1111 ftAllf!! COEfflCl!It! ~
$38383838888811388:18882 2888888titt!!stttttts l SHEE' 242M CC _M**.i:'."
r y
?
testerattre Difference (htrees !) lest truster Coefflefeat (It0/hr/f tHl/F)
.00000 1.lt00 1.00000!+08 1.lf00 fAlt! Of lit!!!0t 1111 ftAliftt 00tFFIC!ttft Ettttttttttttttttttttt ttttttttttttttttttt ttt ti -
temperatare lifferenet (htrees i) lent trusfer Caffielut (ItUlkr/f ttst/P)
.00000 1.4700 1.00000t+06 1.4700 tillt Of tilt litt I!!! t0llt C00ttiliitt (feet) ttttttttttttttttttttttttttttttttttttttttttttttttti . 000000 .010000 .010000 -.010000 .040000 .050006 .050000 .0f0000 .000000 .990000 16 hahr. -mmahrtiinas - c.u-, i
N I -. g g
.100000 .!!0000 .!!0000 .130000 .340000 .ll00H .180000 .3f0H0 .3g000 ,3 0gg .30H00 .!! OHO .!!0000 .!!0000 .!(0000 .!!0000 .3H000 .H0HO .lHH0 .!HHQ .800H .41H00 .41f0D0 g- .I LcN I.
ccH: H1 ,r 4 p1-73 I(L P.Tki > Ir.. IT-1t
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11
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lste l 111t11 10:00:08 Kftti fersin 3.t I0ICI tilft ! Ctitt0L 1XI Cil!Itt !!! lest tid tider 4: IXtt liitt00l0titti CtlitCflit flat itillft1 f atiittttl tit ttt tttt tt!*I tt t t tttt t tt tt tt t t t t tti tid hterial Enr4eflied
!!d thidieu 1.000ft {Cy /
larfacetrea 13f.11 litt! . - therial Ccadictielt; 1.040ItC/hrft-det,f CCAl l / A-I$ I'. c)C G tenitt 14).600Italfttel flertalDiffielelt; .034fttel/hr lestCaptiti .!!0 ITUllts-det. i Fint ude tuaun . san ft p1 II 4 lode thithen Latio 1.00 lieberoflades il 2 titetut loudar; Conditin titetul lett traufer Coeffielut Coseettlee Ochldt { j . Citeide fieltcuent lide: 0 hp Qp luide titirouest lades literior feit trusfer CoeIfielut Ochida 1 ( I f ?"M-[dC.I_ e r_,_
~ ~ ~ "
tiltt Cf titttilt flat it115 fit 00fff!Cititi fttttttttttttttttttttttttttttttttttttt35333331 temperatueDifference(Degrenf) lest fruifer coefficient (It0/kr/f ttel/F)
.00000 1(f00 1000.0 1.(f00 tilt! CF liittl0! !!!! ft11111100ttflCl!It!
ttttttttttttttttttttttttttttttttttttttttttttta temperstate Difference (Degrees il lett trusfer Coeffhiest (It0/hr/f ttil/F)
.00000 1.4f00 1.00000te06 1.4700 tillt CF !!!! $111113170187 C00Elliitt! (feet)
Batt t t rttt ttt tt t ttttu t t t ttttt tttttt ttt t tt tt tttt ti
.000000 .040811 .011633 .!!!ill .161185 .!!Gl! .!(illi .!!!!!4 .316511 .36734f !! t
.401111 .441180 .411fil .530811 .lf1411 .ll!!1l .611011 .liliti .fillil .9 fili. .811318 .117141 .19711) .13fffl .lfill! 1.l!Cill 1.081114 1.101041 1.141181 1.lillfl 1!!(410 1.!Il306 1.3081!! l.lill38 1.38ttll 1.ttil!! 1.4113ff 1.810104 1.111020 1.Illill 1.111111 1.lfl(l) 1.114!I1 1.fillt! 1.filill 1.131fil 1lffill 1.111381 1lillit t.000000 ccN r, dc 6 I cc gl: A! i - >,n . .t$. 73 II,.
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10:00:01 FCFLOS tersies 3.1 10HI tilf! ! C0fft0L 8005 CAllitt !!I Itat link lieber it fltfIALL(fLAlftt) 00lltCfill IIAf itAlift! FA1Altt!!! tittitaittttttttttttttttttttttttttt12
!!d laterial her-Deflui llan flickneu .Ilt fL-larface tres $15.00litt! "
thereal Condectielti .llilia/htft-der.I Deult; ll.Ilf16/(t881 i flersalliffisiitti .010f1881/it bb 7 ' lestCapaciti flut lode thlehess
.filIft/lbedeg.F C C g ., .01000ft 4/ _ l ,f,gC/ ;
lode filchne latie 1.00 luber of lode il literial loudstr Cudillon titetul test trusfer Coeffielut Coniectlie Ocnida
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Citside hiiruseit lide 0 # inside livirusent ledet Interior Best frusfer Coeffielest Schldt I f' c,< l{, { TAILI Of !!!!!IAL EIAf ftAllfit 00!!flCitiff l 1 g-I i 33333333838313318 1381833232333333282833382288 ,% , l B urr =2.ppy --~~ fesperatureDifference(Degree;f) lest fraufer Ceefficient lifD/hr/fl881/f} 'A I -
.00000 1.4700 1.00000!+0i 1.4f00 ,
fAlt! Of liittl0111.'! ftAIIFtt 00!TflCitift 22832$3238331333132152t:23 3333333333333333838 fesperature plffernce (legree f) lest triufer Cufficient (if8/hr/f tist/F)
.00000 1.4700 .l.00000ttli 1.4f00 .s fAlt! Of IIAf 1111 It!! F0117 000t!!IAft! (feet) ' 2311312333338333332283333827333tetttttttttttttttt! .000000 .010000 .0!0000 .630000 .040000 .050000 .010000 .0f0000 .010000 .010000 l 14 -
.mm .umo . nmo . mm . umo .unn .uHn . nmo .soom .ipmo .!HNI . .!!0HI . 18000 . 14000 . !HH0 .!IN00 .H0000 .!Imo .Hom .30HH '.!!0HI llNN .!!HH . !!HH , 14He . ;jong ,ggg ,ppgg ,;ggg ,ggg . unn .unn .mm . t h
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fate 11
!!!!11 10:00:08 FCFL0i firsle 3.f ,
10103 011tl i C0lft0L 2008 CAllitt !!! l lett litt tuber I: Clltlli(C003tt!) ; CCitt0fift Illt ftAllitt fitAttfiti
$18888338883888888888888888888818 tit t tid laterit! 0 ar4eflied l Ild filetten 1.000ft i litfue trea It!!.00fitt! '
flersal Codictitit! 1.040Ift/hr*ftdel.f ! leutti flerul lif finitit! 113.600 lbs/ftt:1-
.834fil81/br gg f r lettCapeit! .!!0 til/lbe del. I C C M ! A/-/ , h jdC/
- First lode fittleen .0!!Il!! ,
hde flictuu title 1.00 lider of lodu 10
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Inside tavironest Inde literior lett trusfer coefficient Odida A i P.9iceti e. g fAlti Of liftt101 Illt ftillitt 00tiflCitift } mmtmannuntuunnuunusunnu
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fesperaturetifference(legreesf) lett truster Coefficient (if0/hr/f t:81[f)'~-
......... ......... ... ..... ...... ...... ...._. . ... ..... . . ... Q,3 0 9 ~ .00000 1.4f 00 --
1.00000!t08 1.1700 i fill! Of Ill! illt Illi F0llt C00tDilAfts (feet) tt t t tt t t t t t t ttt ttttt titit t t ttt a t**ts tig s t a t t t t tt tt
.000000. .010101 .010818 .Oll!!( .011133 .101041 . .!!!449 .ittilt .163161 .1134f3 .!04082 .!!(190 .!I4818 .tll106 .! lit!4 .3081!! .321531 .346139-- .36f347 .38tfil .408163 .411111 .448110 .411388 .411f18 .410204 .130811 .581016 - .ifil!I - .lllllt .61!!45 .63!ill .553081 .l7346) .Illiff .f14!l8 - .f34814 .fil101 - .ffille .711918 .Ill3!I .838f34 .lill43 .lffill. .llfill .418317 134ffi .tllllli L lfill! 1.000000
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!!Itil 10:ll:ll PCFt09 tersin 1.t 10808011tl!00ftt0L800ECallitt!!l 10lltlitt C0llitlHI !!!!Ctp 88 tit 3Fitttttttttttttttttttttti lleent fuel Off dC N/
Cueettin test trusfer 0ltiltCoolers el off c Q,e A/ j 3 ft [lD -- leallig ud testilattu fin Off - Cosprtuit teskap Off Cospriant tqilput lent loads H llanthere Ideist fu Off N=-]8= $ k4 , lio, don inini Hf ters teeern fles off 11 Insporintion off f, ggg natu CHttet lauttal titittttttttttttttttttttttta % N I W frollestimetisit 14400.0 neuds l P"thn .. %"WAni flu Csicilatin Ditnt/Preqiese; Off/4 Cosprient Frentre Difference Ostpt Off test 11:1Calcalttle:Cittit/fregienel H/1 litended Itatsid Catpt: lode tespratare H tulart Optics Off luber of flet tolats tl IICfLO liitd tin 1.H0000!+10 nconds llGFLD lterstles toleruce .H1000 pl - luine f. der of flos Iteration lol CitCOtitiH/fillt !!Ill !!!tCtt0 tttttttiststs**tittttttttttttttttt Calc.fleeItep Chute ties fritt Intereal Chute fin 1.0Hi-01 1.000t+H 8.600t+0! 1,410!+0i 1.000101 1.000t+01 8.600!+08 1.lHt+04 1.000l+00 1.000t+0! 0 H0t+00 0.000t+00 1.H0t+0! 1.000t+0! 0.000!+00 0,H0!+H 1.500t+01 1.600!+04 0.H0!+00 0.000!+00 It h . . .
t Page il 111f l! 10:00:08 Kfl09 fersion 1.1 10101 L'Ilft ! C0lfl0L 800t Callitt !!! ilstt iloirs 0 llules .00000 leends ( .0000 tecuh ) (Calt, flu liep 3 1.000t02 seconds) , I
~~ Ccanttout -* fesp. 1 leit/ tel. frenites(ple)- total - ftte. Trac. last fetal (let f) litlitt lu. fotal alt fleu ( tus (!ns) Air tape tad tierg;(Ift) 85t8851388831833818818 ttttttt tittttt litt 93383t8888185833383838 3348 tittttttttttttattttttttttttti 23 33t3 3333333333333 0 itsn inete !!,000 .50 14.f00 14.(11 .lli 1.40 . hcl .0011 1 100t !!! 18.000 11.1I .50 14.f00 14.481 .!!! 1.48 1.tllllftt603 .lH8 .0011 14.41 f.!!0ll40l+0i -
Cuntteetts !altlal tiergt (.!!QllttiIfD CospriseitsInitiallos (.!!40860316: , Carrut tierg; in Cn riseits 4.!!0lI45Ifg Current lus la Cosprtent 4.!!40!+03the
. i llevdas Istitin added 0.0000!+H 1f0 linden tus Added 0.0000tt00lbe Irrnetsible tiert; Loss 0.00Ht+00iff (Codens. 6 Drspit) lui toss f.H00t+00 lha Iserir Int to linepnere 0.0000140170 lui tut to iteosplete i.HHt+00 the 'l late of tiert; f.oss to Atusthere 0.00Hl+H If0/see 1 l his of Ius Less to itiospit*e 8 H00!+00 lbs/nc ) !
9 Absolate hergy 1 bluce 0.0H0!*00iff Abniste tus inalues - 0.0000t+00 lbs telatin tiergt libaluu 0.00001401 telatin lus Ishtuce 0.H0016?0t [, C N l C C Al ^/- L $ f W/ L- ~ yr-1s- u . L f:T/c MMg.-nA
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10:00:01 PCFLUB lersion 1.1 ! l 80s;l tilf! I CCitt0L 8001 Cailltf !!! f flee 1 lure i tintes .00000 leccids ( 3500.0000 feends ) (Calc. flee itep 3 1,500f t0! seconds)
- Cceprisest ~ fest. 1 leat/ tel. - Pruntu (pit) - fetal frac. Trac. test total .
(leg f) tullt; tu. fotal att Iteu ! tus (lbs) Alt fspr. Lead tiergr (if0) 188883838831388221 324 ttttttt $$38138 titt ttttstgattttittttstr*.3 tatt titttttttttttttttttttttttttts 2333159 titttttttttti 0 itenshere fl.000 . 50 14.f00 14.411 .!!I 1.40 .1901 .0011 i
-. ! 1001 !!) 18.143 41.98 . !! ii.1;G 15.111 .!!! 1.40 4.111tifet+03 .1101 . 0061 14.414,4111850!+0i -
Cesprtuits littlil 1: erg; 4.!!0lt+0iITU Cospriseits lattial Bus 4.!!40!t03lhe , Cartent tierg; la Caprteesta 4.4140t*01870' Carrnt tus la Cosprtutte 4.!!401601 lbs llahn Isthalp Idded 0.00001600iff liefden tus added ' t.00001606Ils irreteralbletierg;Lns 1.1038t+04IfD (Conden. # Iropit) aus Less 0.00001600the tierg!Enttolins$ere 5.1160l+0!179 lan Int to itsurhete 0,0000!+00lle
. l tite of fiergr Loss to atundere f.0738101 if0/see ] l tate of tus Lon to atenthere 0.0000t40 lbs/nc ]
Abulate tiergs libaluce 1.1001t+00ITU Abulate Ius libalance 0.00008600lbs telative tiergi Inhalues 1.fl328041 telatin tus libaluce 0.0000t+001 (N S ccN: (N I > DN
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fate il 11lf48 1000:08 PCFLOO ferelen 3.1 10108tilti!C0fft0L1004 cal!Ilf!!! flee Ilotts 0 tiittes .00000 leconds ( 3800.0000 tecends ] (Cale, fine Itel : 1.100!601 seconds) testlittCalculatica0 tnt til Coop i titt flitt 1C080 000ft Atti E0ll 011 Qttil (f0f til 1telt 1 11.143 II. fit 14.01) .000 1.4fD 1116.0 0.0000001600 f.It!!!!!600 0.0000001600_ f.!!!!!!!+00 1 1titht i fl.000 8888888 fl.(10 .000 1.4fl 1111.0 0.000000!t00 - 3.0118881-01 0.0000001600 1.0t!l881-01 1 1telt i 11.643 II. fit 80.183 .000 1.4fl till.0 0.000000tt00 1.1711001601 0.0000001600 1.!!!!008601 1 ' 1 tight 0 fl.000 888188 fl.001 .000 1.410 till.0 0.0000001600 f.511011104 0.0000001600 f.lil0l!!44 1 4 3telt 1 II.843 18.f14 14.311 .000 1.410 11.1 0.000000100 1.331144t41 0.000000t*00 l.1318841-01 3 1 tight 0 fl.000 8888888 fl.481 .000 1.4ft 11.1 0.000000tt00 1.3fifitt41 0.000000t+00 1.3fifl!!41 3 41,ef t 1 11.143 it.fil 10.188 .000 1 lft !!f.I 0.000000te:0 1.filfifl600 0.0000001600 1.filfit!*00 4 . I111h1 0 -fl.000 8888888 14.111 .000 1.470 137.8 0.000000t+00 l.lll!!!!45 0.000000tt00 4 ll!!!ft45 (' Itelt 1 11.143 18.114 14.35f .000 1.lf0 195.0 0.0000001600 3.4fillitt00 0.000000f t00 4.lfillf!600 I llight 0 fl.000 8888888 78.441 .000 1.4f0 195.0 0.000000t+00 3.10710f141 0.0000001600 3 llfl0fl41 I Itelt i 11.143 IIfli'40.103 .000 1.(f0 !!!3.0 0.000000t+00 4.80l!!!!601 0.0000001600 1.1063111601 6 ( (,,. N ' l CCA; hl-I ) N _.g.- I p gg ; 1gg- y e
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10:00:tl PCFLUDfetiles3.f 801081:1178 ! CCitt0L D01 CAllitt !!! flee 1 lear OIliites .00000 lecends ( 3800.0000 teccide ) (Cale, fine Stel 1.500l+01seccids) DON dC A/ l A/ l
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g 14.088110 13.874190 13!!!880 !!.181600 ~ 'It'.10!!C
!!.llillo 11.f!!!!0 11.440510 11.1103!0 10filtli ,
10.411440 10.110460 fl.10f0ft it.631100 ft.lf4300 ft.114400 fl.llif70 fl. lift!0 18.431970 fl.131170 fl.031110 ff.lifl30 ff.lilll0 17.500110 ff341!10 .. .. . ff.00400 ff.048130 fl.llillo fl.fl!!(0 fl.lf00f0 2.N
~
11.111410 fl.45 fill fl.111830 fl.!!O!ll fl.lif410 fl.110110 fl.0(0310 fl.lfill0 fl.llifl0 fl.ll3310 fl.ill!!0 fl.ff!!!0 fl.f34100 fl.100fl0 11.671010 fl.lifill fl.l!!fl0 lett tid lo.1, lAlt titl(001 Clift) 80.183160 11.163470 ff.lil!00 ffIl!000 fl.itifl0 fl.Cittil fl.fl!430 !!.431110 fl,tillll f1.111:10 11.111180 11.06f050 fl.03ttl0 fl.Ct! ISO fl.013030 fl.00fl00 fl.00till fl.00!!00 fl.00llit fl.00!!!O 75.000890 fl.000f00 fl.000f00 fl.000f00 fl.000f00 fl.000f00 fl.000f00 fl.000f00 15.001010 fl.001100 fl.001100 fl.00ll00 I!On'500 fl.00llit 15.001110 75.001880 fl.00lill 11.901880 !!.001110 15.001180 fl.00lill f5.001680 f5.001180 fl.Collio 75.001500 f!.001190 15.001130 fl.001110 fl.00!!!0 f5.001130 lett tid lo, 3,IXfllittlftalfit) 11.356100 11.191110 13.834610 13.!!1380 I!.14100 11,111000 11.10!!!0 II.lltif0 11.611140 81.40180 31.118!!0 10.145810 10.51!!!Q 10.311fl0 10.Cl!!!Q fl.lll340 fl.Illll0 fl.400410 fl.ll0f00 18.989110 ft.fillf0 f1.111760 18.438860 fl.!!ll30 78.10l(10 11.157610 ff ll3630 ft,lff!!0 ff.1483f6 f f.41850 s
- _ _ _ _ _ . _ ___.________________________________._._________________.___________________m
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ff.31till ff.10lill if.10llte ff.0l!!!0 18.l!(150 fl.l(l!!0 fl.ff0110 f1.f01110 fl.litill fl.llille fl.13(f00 fl.(ll!00 16.461310 led lid lo. 4.10 Vfl llLLt0003tt!) 10.111150 ft.llifl0 fl.340(10 11.118160 17.019500 fl.131tfi fl.14till fl.138til fl.10!!f0 fl(!I!!O fl.!Ill!0 15.101110 fl.135100 f5.011180 fl.0lfl00 fl.138100 fl.0titl0 fl.013400 fl.00ft(0 fl.004110 fl.00!!!0 fl.000lli fl.000lli fl.lllill ft.llifl0 fl.lillit ft.llill0 ft.lilll0 ft.lli;ll fi.llllit it.lHill it.lHfl0 ft.filfl0 ti.fillit it.llil00 14.l!!!40 fl.lll480 fl.Ill(20 fl.Ill(10 14. fill!0 fl.lill!O fl.lHi!0 fl. Hit!O 14.191410 f(. fill'l a fl.llll!0 !(.191110 ft.lHi!0 ti.Hil!Q ft.lllll0 h I
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PCTt00fersies3.7-80801 Ullft ! 00lft0L LOOR CAltitt !!!- fine 1 lotte 0 timites .00000 seconds ( 3600.0000 lecends ) (Calc. flee iter : 1.1001601 secosis) t Intyded lentelik Ostritt lode festeraltres Ieat !!al io. I, I!!! Ittt(Plast!!) .; 14.351100 13Ill!!0 13.624110 13.18 fill .!!.141410 l!l!!000 !!.301850 fl,ll!!!0 81.611440 41.400110 ; j
= $1.111160 10.lill10 ft.ll!!!$ 10.3ttfl0 10.0l!!!0 fl.848340 71,111980 fl.400610 fl.llif00 fl.lilll0 fl.fillf0 fl.Illfl0 fl.1368!0 18.181130 fl.10l(10 -
ff.Ilfill if.Il3830 tf.lff!!0 tfl(1370 ' ff.4tiill ff.!!!!!0 ff.105310 ff.1010ft it.0!!!!O fl.l!4lle fl.l(4tf0 fl.ff0137 fl.f01410 fl.Illll0 fl.llll10 fl.13(f00 ff.410!00 ti.(11!!0 , lett flat lo. I, CtltllG{C05"t!ft) 80.103til fl.611000 ft.20lif0 fl.fillf0 18.351130 ff.lffill 77.l!!!40 .ff.31tl60 ff03till fl.ffl!IO ^ fl.l(4100 fl.33f(30 14.113190 !!.!!0410 fl.14 fill fl.f!!020 ft,ll!!!0 fl.llfill fl.431700 fl.365310 fl.305130 -fl.!!4300 .71.!!!!!0 fl.lfill0 fl.144610 18.111 0 0 fl0llill fl.0l!450 fl.Olfl10 f1.058010 fl.046140 fl.031480 fl.033140 fl.0!!!00 .fl.0!!!!0 fl.0!!310 fl.020110 fl.llll50 !!.017140 fl.0!l330 ' flOllitt fl.0ll!30 fl.014180 fl.014f40 fl.014 fit fl.014800 fl.014100 .fl.014920 'fl.01080 fl.0ll010 GCN/ ce nt: H r , PcpIV i C EC. NO, . [ **
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fage 18
!!1111 10:00:08 PCittifersies3.1 1011 L'Ilti ! CCItt0L 10'JR Caillit til fleeI t Ints 0 Ilute: .00000 fecnds ( T100.0000 8eends ] (Calc. time Step I !.1001601 seconds) ~~ Cos prisent - - tesp. 3 lett/ tel ~ fremru (pla) - total frac. frac. Int fetal (leg f) hality fu. total att fleu ! tus (Ital Alt tapr Lud hergi (It0) ttttttttttttttttttttti 8288888 1883838 1818 $383883318333381828882 titt 8288tttttttttttttttttttttttti titttt! $338888888888 0 itenphre fl.000 .50 14.100 11.411 .tli 1.40 .1108 .0011 1 2001 !!! 101.441 44.6I .!! ll. lit 15.101 .!!I 1.40 4.!!!!It0!+03 .9908 .0011 14.41 1.14413601605 Cosprtients hitit! Iserg; 4!l08t+05ITU Cunttsut: 'titial tus (31408603lbs ,.
CarrentIserg;laCospriseits 4.4441t+0i 870 Carrent Ian in Cciprtsent 4.!!(0!*03 lie lloeduetitittprAdded 0.0000t+00ITU lloidon tus added - 0.0000!+00its irrever:161 tierg; Los 1.14 tit +04tia (Cudeu. 6 Bropit) tus Los: 0.0000!+00lbs 1: erg;Losttoitsosphere i.101:!t03ITU tus test to itinphere 0.0000!+00the I tite o' ttiergy tus to itsosphere 1.19831600 Ita/sec l [ hte of Rus Loss to itsos; tere 0.0000l+00Italsee) Atulite turg; libaluce 1.!Ilitt00 ITU ibulite sus libluce 0.0000tt00Its telattie turgr lihlue 1.litit-041 telatiis tus Inhaluce '0.0000t+001 G$ 0 CC A: h~l ) 00
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!!Itil 10:00:08 PCFtt0fersics1.1 SCl*l tilti ! CCitt0L D:>t Calli!! !!!
tinet i loira 0 II:ites .00000 fee n ds ( 10800.0000 lecends ) (Calc. time step 8 3.100l+01 neads) Cce ntistit - tesp. 1 lett/ tel. freestret ( pit) -- total fric. 7tte. lett total (Det f) Cialitt tie. total Alt itet I tus (its) Alt tapt tend tiert;(ItV) SIttttttttttttttttttts 3331883 Ettttta tits tttttttttttttttttttsts tatt 1331238333333333333t333313133 3 31233 ttttttttttstl O Ainsphere fl.000 .50 14 f 00 14.481 .115 1.40 .PCI .0011 1 tXI !!! 101.141 (l.1I .!! 15.481 li.!!I .!!! 1.40 4.!!!!870!+03 .Il01 .00l! 14.414.46tf(00t+0i Cu ttnets laitial 1:ertr 1.!!061601ItB Ccaprtients initial tus 4.!!(CI+03the , Carrent tierg; in Cn rtient: 4.lilit+0!It0 Current its: la Cceprtient: 4.!!40t+03 Its llcedna tilkalpr Added 0.0000!+00179 !!ndco tus added 0.0000l+00Its Irteetreille inrti tes: 3.filit+04110 (Condens.6fropost)Itsetus 0.0000t+30Its tiert; tut to Alsosphere 1.1880t+04 IfD tus tut to Atenthere 0.0000!+00Its I tite of turgl tcn to Atentiere 3.l(Itt+00 ItO/nc l l Inte of tus ton to Atenphere 0.0000!+00 Its/nc ] Absolite tier!r libalute 1.1914!+00170 Anniste tus Inhaluce 0.0000l+00Its telstice tutt; !steluce 2.11141 04 1 telattie tus libaluce 0.0000t+001 CLN.IY' W-I ) p~ CCd; H 7 s-II tt
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tage 10
!!1111 10:00:01 PCit00fer8los1.f 80108 tilti ! 00lft0L t00t Calli!! !!!
flee: 3 Ints 0 Ilute .00000tecend8 ( 10100.0000 seccids I (Cale. fise itet e 1.5001601 s8 ends) d test litt Calcolatin Citpt til Ccap t flat tillt 80010 IC0lt Att! Q"0IO Q0071 45111 Of0f til Ileft 1 103.149 18.114 10.111 .000 1.410 till.6 0.000000t+00 l.(II431st00 0.000000t+00 l.tll433t+00 1 1tilht O fl.000 8888888 fl.!!! .000 1.4ft 1191.0 0.000000t+00 1.00ffilt+00 0.000000!+00 1.00ff46tt00 1 1telt i 101.141 ll.lli 14.4tl .000 1.410 till.0 0.0000001600 1.1111118601 0.000000l+00 1.11184!!*01- ! Itight I fl.000 8888888 fl.001 .000 1.4ft 1885.0 0.000000t600 f.1810128 04 0.000000!+00 f.lll0lti01 1 3telt ! 103.141 II.llt ll.fil .000 1.Ifl 11.1 0.00000f;+00 4.fft10!! 01 0.0000001600 1.fft10!! 01 3 3t!!ht i fl.000 8888888 ll.Ill .000 1.4f0 11.1 0.000000t+00 1.18000lt41 0.000000tt00 f.ll0008t01 1-4teft ! 103. lit 11.194 14.4ll .000 1470 13f.I 0.0000008600 1.8411111600 0.000000lt00 1.148168!+00 4 4titht 0 fl.000 888H 88 ft.Ill .000 1.410 131.8 0.000000t+00 l.ll!!!!!41 0.000000t+00 1.llittit 05 4 Itelt 1 101.14! II.llt II.fil .000 1.lf0 195.0 0.0000001600 3.!!!3fil+00 0.000000t+00 4.1133181600 8 Itilkt 6 fl.000 8888888 10.lil .000 1.410 ' 111.0 0.0000001600 1.4t!!Ilt+00 0.000000t+00.1.4111841600 'l Itelt i 103.149 lI.lli 14.101 .000 1.470 !!!3.0 0.0000001600 1.Ilfillte01 0.000000t+00 1 llfillt+01 4 cc g: 4 c, NN l, Jl . DM
&.13-IU. . at' k f.1TG . LlR-Mt \ AMv Yt
_, ._n. . . _ _ _w-tl
fale !! 1111l! 10:00:08 FC?l.00ternion3.1 10838 Ollfi ! CCitt0L t00f Calliff !!! s/0bNh fise: 1leira 0 llistes .00000 tecesis ( 10100.0000 seconds 1 (0 le, flee ller i 1.1001601 secoi4) I > 1 000 cc.N1 litended lentslik Citrit: lode festeriteres y4 2%'L wn-St. . leit 11:1 is. 1,10tti litL(ftttfill f , fl.ffill0 10.183030 11.111410 11.508010 ll.140lf0 > > 11.413430 88.014810 if73t!!0 It.3)llfi 17.018140 .. II.f43tl0 ll.itf030 ll.lllf30 18.11!!00 11.111410 11!!4330 14.131810 14.lil!!O 14.3till0 14.11!!I0 -- 63.163160 13.110100 13.313310 13.!!!!!0 !!.llt'.40 - It.Ill!!0 !!435tlO 11.!!1110 11.006110 11.891300 11.101410 fl.40ftl0 - 11.111100 11.031318 10.lifl0 40.681030 10.lltf30 10.311180 10.!!I310 ll.0481tl it.lll!!0 fl. fill 10 fl.Ill0fl it.414l30 19.315440 11.130680 . fl.Illt00 lest!!ak10. 1, Illt till(C01Cittt) 14.411110 13.181910 11.001110 10.110590 40.011710 19.118310 fl.4f0310 ft.llOi!0 ff!!!Ill- fl.lf4300 fl.4fl410 fl.llifl0 fl.133110 f6.116140 fl.llO480
!!.418130 fl.114130 fl.1430ft fl.110lli fl.133110 fl.0lf310 fl.0f0630 fl.0!Ofl0 fl.036til fl.0tifl0 fl.0ll!Il fl.0!!Ill fl.009060 fl.006440 11.004550 11.001000 fl.00!!!0 fl.001140 !I.001480 75.001880 fl.00lill fl.00lill fl.00llit 15.001440 fl.00llil -!!.001680 11.001180 11.001610 fl.00ll0 fl.00ll00 11.001110- - fl.00!!!0 fl.00llit fl.00ltil fl.00ll30 lestslik10, 3,100ft IALL(ft41till 10.filfl0 90.411130 10.091410 .ll.ffilll 11.4607:0 11.141130 18.143900- II.ll!!!O 88.141180 . 17.953190 ft.lillit 17.114190 if.106310 -- II.833110 18.544f10 '
II.301080 11.041900 15.781410 ll.13fiti 11.!!!330 ll.0llitt 14.811400 14.183710. 14.358480 14.133f00 13,115!!0 13.101140 13.411360 13.165100 13.084440 - If
.. - .. . . - . ., . . ~
12.88f110 !!.694000 11.194850 81.311670 81.138400 II.ll0lli ll.fift00 ll.11till- 11,(19780 11.!!!!30 41.111510 80.971500 10.165250 lett lid la. 4, 800ft IALL(0010ttt!) 84.119360 13.441100 11.416010 11.170110 10.fl3690 10.O!!380 fl.343660 fl. fill 10 fl.10ll10 . -ff.f36140 ff.31till fl.lill30 - fl.138ttl fl.38(fl0 fl.130!!0 fl.130!f0 fl.fl1010 11.118610 11.1012J0 f5.310110 fl.!!3fl0 f1.191800 t)lliisef i .4tJp)J 73.111130 ii.093800 f5.011110 fl.054(10 15.040990. f5.030510 15.0!!!!0 fl.016310 fi.filllt fl.00lif0 fi.00!!!0 fl.003390 fl.00!!60 fl.000640 14.111110 ft.lill10 14.951410 f1.119410 fi. fill!O f4.!!!4!0 !4.191410 f t.llH10 f4.99)(10 14.191(20 ft.lll(10 ft.Ill530 ccM I - ccg,v h/-J' > f* Dal
-7 l l@}3-1(L%
- f. . ~ lt- lT-%L
,e n\- - . } Rv .'G ? 22), l l
9
!! ~
k > Pale -. !! -
!! !! 12 '-
10:00:08 : PCfLODferiton3.f-- 10123tilft!C0ffl0L8001Cailltf!!! : flae: 3 lout 0II:ste .00000leconds( 10800.0000 lecondt ] (Calc. flee Itel s' !.1006601 seccids) litended lettstat Ostpit: lade fesperstates lett 31:1 lo. 5, Illt flLL(PLAltit) 10filfl0 10.l!!!30 10.091410 19.7 fill 0 II460f!0 11.145!10 11.143500 II.l(!!!O -18.!(5180 ifll3890 - 47lill10 17.314190 87.106150 81.133120 16.564790 18.301080 18.0(1900 - !!.fiftl0 ll.llfift ._l5.191330 -
~
15.051110 14.811400 14.113f10 ' 14.356(10 14.131700 . 13.111150 - 13.f01140 83.491380' 13.185800 13.084440 - 11.18f180 11.114000 11.10(150 81.319870 62.131400 -. 81.180910 11.f87100 - II.llfil0 !!.450fl0 11!!!!)0 11.!!!510 10.171500 - 80.181160 ieat liti la I, Cl!LilG(CCIClift) . 14.501180 -13.181450 13.((1880 - - !!.145f10 -- 81l417800 12.010180 11.172310 11.15(!!0 i10fil(80 10.375180-30.014!50 fl.lfil10 79.341870 fl.03fif0 78.741190 f8.4f1160 ft.111110 - ff Ilfill 17.f31610 .ff.l!3650 ff.31100. ff.133140 fl.158110 fl.714530 . fl.141140 = fl.100l!0 78.389780 ft.148500 71.138510 ft.033380 fl.133510 - fl.131130 fl.ffil40 fl.Ill!!0 fl.133210.. ~ 75.5731f0 fl.illl30 fl.4703f0 = fl.4!If30 ~ fl.18 fill - 75.313110 fl.313840 15.297f00 fl.!!ilf0 fl.!!!350 - i fl.!(!!IO - fl.131174 f5!!3110 15.118350 fl.118170 l; IN -k - ~ n a y; { (l- A y r y. 99 e
- C. Mi'
+ -- . _3. . . .
r.7/cp % A -q t 4f W Lo l y
,y g, , y , _ , - . . . , , _ . . . _ _ _ , . _ , , _ ., m ., p.: 4
g, . . - - . . - - , -. .-- . .. . . . - , s hie !!
- !! 1191 - ,
10:00:01 PCFL0i ferslos 3.f
-y 10001 Ollfi ! C0fft0L 1001 Callitt !!!
tise3 4 ture 0 Ilutes .00000 Seccids ( 14400.0000 lecords ) (Cale, flee liep 3 1.800!*01 seends) >
--- Comprtsett - fesp. 3 test / tel. - Presnres (pla) - total. frac. Frac. leat total-(hg f) Qitlitt tie, total alt itete I tus (Ibs) Alt hpr Lud turgi(ITU) 1333333322383223232278 8812238 titttt$ Stat 8tt8333333335213352332 3:33 tttttttttttttttttttttttttttts - 3233333 8tg3323833333 e
6 its: sphere 15.000 .it 14.?00 !!.ini .!!! 1.40 .1908 .0011 1 200X til 101.111 48.1 8 . 30 !!.531 15.305 .!!! 1.10 4.!!3tifott03 .llM .0011 54.(1 1.41l tit 0!tQi - Cciprtments !altial 1: erg; 4.150i!+05If8 Ccapriante lattial In: 4.!!(Ott03 lbs / Carrot herg; la Ceeprtuits 4.4ttlt+0!ITO Curnt Ias la Cosprtant 4.!!(Ott03 the. Blovdon hthalp; Added 0.0000t+06170 llowdon Rus Added. 0.0000t+04 e
~
Irnursible her!! Lou 1.4200t+04ITU (Cadeu + 6tyoit) tus Los 0.0000ft00lbs- ,
. r:r test to Atusplete 1 ltillt04 Ata tus Lost to Atusphere 0.0000!t00 lha l tate of tierg! Lon to Atusphere 1.f!!ftt04 Ifpliec 1 ( tale of lus In: to ilusslere - 0.0000tt00 lle/sec } . . - ~ . . _ . . . .... , .. .
Absoltte turgt Idaluce 1.116(!+00 hit usolate sus Inhaluce -0.00001600the talitin hergy letaluce -1 ll!!!-041 telatin In inaluce. 0.00001t001
-l
( C 14 cim tJ I P. 9D 5 p+-75 _IIL
?% war e7/ce \ \fv; ~
- Yr ,,$y)$ <
3, } , .
fate !( 111113 10:00:08 FCFLO8fersion1,f-80803 011781 CCitt0L t001 CAllitt !!! RA11108 All IllilDE !!!83U113 All tilftlifDit!
-.------ .---_ ..g u i s ta -~~---------- ~~-- --------I l a i n s -------- ---- -
(pela) (nc) (deg.f) (nc) (pla) - (sec)- -(det, f) (see) ., Comprtsett Frenare atfine fesperatare at fine Presnre atfise fesperatare atfise I 5:2233135232132:13 12221323 11323223 53135333232 33333333 32 31333 3333:333 3:g4333:g:3 33333333 1R00I!!! 15.5315 1.4400!+04 101.111 1.11001604 li.f000 10000101 fl.000 .0000 fil Calculatici c u les sere perforned
- ) taecutics tise: 00:01:01.34 ,i I
g. b .p- ,9 al j c cg. ,v t - 2. ), f1-73-IIL l
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NES&L DEPARTMENT l l CALCULATION SHEET m m.e PRELIM. CCN NO. N _f PAGE ns OF CCN CONVERSION l Project or DCP/MMP SONGS 2/3 Calc No M73-116 CCN NO. CCN - I s:bject Room Temperature Regnonse Durina Station Blackout (SBO) sheetNo.8r)[ Rh & ORIC1hATOR DATI 1RE DAtt REV ORIGINATOR DATE 1Rt DAf[
/ MvrzTIGtRI 10/ts .d W
if f){ H2 8.6 Control Roon Cabinet Area # 227 The results of the temperature rise analyses of Cabinet Area Room 227 and Cable Riser Gallery Room 224(Section 8.7) are as follow: Name Temperaturer Ihr SB0 [*F] Control Cabinet Area Room 227 98.656 Cable Riser Gallery Room 224 98.765
Conclusion:
Based on the temperature rise review of the Cabinet Room 227 and the Cable Riser Gallery Room 224 it can be concluded that the temperature change in room 224 does not affect the temperature rise in room 227. b 1 l
NESet 0EPARTMENT CALCULATION SHEET C7L a-1 l
,_22 g, ;
Propct or OCPMMP SONGS 2 / 3 ccN Coevemasoy
)
caic No. _ M7 3-116 _ ccwo CCN.- 1 svepet Room Temperature Resoonse During SB0
.m x o n. ur. un sh.aNohdb 1 avv ==waroa un = un
[ TIGERI gt} 4 {gd g E I 8.6 CONTROL ROOM cat,.i4ET AREA, ROOM 227(EL30) ou l (Ref. # 6.8.1) t . 565 NOTE 18
, m, * /1!h ,' W ~~
vv" en ~ ,
, uu- - ,,
un p-9b N._ L " p. 3 i ' P" -e @K, 3 I
" h m - - ~ ~
us *4
*NN I 1ssa 7*eos u a -
FLOC 4 )* r
~
_tse !-Stw
= ~ ,g \ ;
r'
.g m Y- M 4>
[4
- _ EA, I hh ry f
nn, s :
, 3 t_ :- ,
v f.eswise asew s geg:= j
- w. .
ff
.a..=.
f* r/ O- -
TEMPERATURE RESPONSE DURING UNIT 2 SBO 'E CONTROL ROOM CABINET AREA, ROOM 227(EL30) 105
,, W ' -- = =
_ = - 95 - E
-g 90 _
a CCN( y 85 . c c nl: Al-l> V.937 g .-- -- 8 Lcate.uok-2hllL an
. mpti oxaja-CAg I .ecua/ onredgup SHEETMJ '/ OF _ j' 70- ' ' ' ' ' ' '
0 . 500 1000 -1500 2000- 2500 3000 3500 4000' TIME AFTER STATION EALCKOUT(Sec) 4 g" g g ig 4
-% 4 m
l NES&L DEPARTMENT CALCULATION SHEET *Cm/ PRELIM. CCN NO.
._ ) prt PAGE OF CCN CONVER$10N Project or DCP/MMP _ SONGS 2/3 Calc No. M73-116 CCN No. CCN - f s:bject Rpom Tempgralure Ruponse Du_rJqq_Sg_ti_on_Bigiout (SDO) $heet No. N _T,
_gb(onisinaton oats int oAtt l nty onisinAton oAtt int oatt
/ Ydirtistni ions \N yx ddn - .m _ \( .
Input data sunnary used for Control Cabinet area (Room 227) Temperature P.ise Analysis. Q = 54.44 BTU /S(seesection8.6) V = 57092.0 ft' (seeassumption3.17) Heat Sink K p Cp A t Ti BTU /hrIft 'F lbm/ft' BTU /lb'm.*F (f t') (ft) (*F) South Wall 0.509 18.556 0.739 1196 0.459 75 Plaster East Wall 1.04 143.6 0.21 1685 2.5 75 Concrete North Wall 0.567 15.337 0.738 91.2 0.417 75 Plaster North Wall 1.04 143.6 0.21 237.5 2.00 75 Concrete West Wall 0.567 15.337 0.738 595 0.417 75 b Plaster Ceiling 1.04 143.6 0.21 3723 1.00 75 Concrete See data below for reference to abo <e table.
roctcL UWAH TMSN I CALCULATION SHEET -ieerm PRELIM. CCN NO. g _ t y Pact or Fr$j ut or ocr/MMP SONGS 2/3 Calc No. M73-ll6 cc( [ "CN l s::bjut Room TemMrature Re,Jpo_nte Durina_S_tatio!LDIAtk_qut (530] sh : n.. M M/ ar u earct= Area cart tac cart erv entainArea OArt rat cart f avr2 flatat 10/15 k (ib MOh _ "4 \' CALCULATION OF CABINET AREA (ROOM 227) UNIT 3 Is := 62.96 ft (Ref. # 6.8.1) Le := 88.67 ft (Ref. # 6.8.1) Lw := 31.00 ft (Ref. # 6.0.1) hr := 19.00 ft (Ref. # 6.8.4) CAILULATION OF THE CEILING (PLEASE SEE UNIT 2 CAIEUIATION OF CABINET AREA ROOM 229 OF THIS CAIr. ; UNIT 2 AND UNIT 3 CABINET AREA ARE THE SAME.) A1 := 11.167 12.5 A1 = 139.588 ft*2 A2 := 42.17 4.8 A2 = 202.416 ft*2 A3 := 46.92 88.67 3 A3 = 4.16 10 ft*2 U2 := 665.54 ft"2 (Ref. UNIT 2 CEILING AREA OF THIS CAIC.r 1 UNIT 2 AND UNIT 3 FIDOR AREA ARE THE SAME.) A4 : = -- (21. 6 + 2 6) 4. 8 2 A4 = 114.24 ft*2 Anet := A3 - (U2 + A4) 3 Anet = 3.381 10 ft'2 l Ace := A1 + A2 + Anet 3 Ace = 3.723 10 ft*2 SCE M NEW #90
m..e oeyea r CALCULATION SHEET h ./
"3 23o PRELIM. CCN No. PAGE or Prejut er ocP/MMP- SONGS 2/3 Cale No. N73-ll6 CCM CONVERSION .CCN no. CCN -- I subjut Room,Jemoerature Res)onse Durino St ition Hackout (SBO) sheet me. M M w .(- entsturae cart rat. eart - arv en tstaaron -- nart tar eart jf PYvtrirrtat :c/ts kD d DN, ' , c -- -namensmummmmmmmum - - umanu mmmmeiummmmu.
CAICUIATION OF WALIS AP.EA(FOR CABINET AREA ROOM 227 UNIT 3) CAICUIATION OF AREAS; FOR SOUTH, EAST, AND WEST WALLS As := Ls hr 3 As = 1.196 10 ft'2 Ae := Le hr 3 ' Ac = 1.685 10 ft*2 Aw := Lw hr Aw = 589 ft*2 CAICUIATION OF AREA; FOR NORTH WALL Ic := 12.5 ft (Ref. # 6.8.1) Ac := Lc hr
-Ac = 237.5 ft*2 Lp := 4.8 ft (Ref. # 6.8.1)
!. Ap := Lp hr j-. Ap = 91.2 ft*2 ' l l l l SCE 26438 NEW 4/96 l l. L'
,, _ m n, m .
CALCULATION SHEET u w.r PRELIM. CCN No. g ~i pw PACE OF Project or ocP/mr SONGS 2/3 CCNCONVE5104
.(ale No. M73-116 ccN No. CCN - I tbject Rqpm Temocratyre Restonie Diarina Station Blackojtt (SEQ) _ _ ant meh 3 a r y,.-m estaturea .cAtt tar . _ cart l arv catet=Atos cart , _ . tat _ Att / M rz ttstat to/ts \ k$ th\ h / \ '
CAICULATION OF PROPERTIES (Ke, pe, AND Cpe) FOR COMPOSITE WALLS SOUTH WALL rp := 0.0833 ft tair := 0.292 ft (Ref. # 6.8.1) (Ref. # 6.2) tT := 2 tp + tair tT := 0.459 ft k := 0.26 BTU / (hr-f t-F) p (Ref. # 6.17) p p
- = 51.0 lbm/ft"3 (Ref. # 6.17)
Cp := 0.74 p BTU / (lbm-F) (Ref. # 6.17) k := 1.24 air BTU / (hr-ft-F) (Ref. PG. # 8) p air
- = 0.07 lbm/ft'3 (Ref. # 6.2)
Cp := 0.24 air BTU / (lbm-F) (Ref. # 6.2) tT Ke := ==>> Ke = 0.509 tp tair BTU /(hr-ft-F) 2- + k k p air /
'2 tp p ' + 'tair p ~
p. pe :=
. air. pe = 18.556 lbm/ft'3 '
tT
'2'tp p Cp ' + 'tair p Cp . p p. air Cpe := .
air.
+ '2 tp p ' 'tair p . p. . air.
Cpe = 0.739 BTU / (lbm-F) scalM NEM MO
MALGULAliUN SHEET = +- _ PRELIM. CCN NO. @ PAGE _ i P33or Project er ocP/w SONGS 2/3 Cale No. M73-116- CCN CONVER$104 , CCN w CCN - -l
'S$
M MMMM mk entotuton catt rat eart : erv M* ' ' entsturos - natt tac . catt
/ ' *Et: Victal 10/15 \N N@M g \
mummmenummmmmmmmmmmmmmuammununmammmmmmmamuumuss menismum sammumnumsmmmmaniusumum u NORTH WALL tp := 0.0625 ft s (Ref. # 6.8.1)- tair := 0.292 ft
.(Ref. # 6.2) tT := 2 tp + tair tT = 0.417 ft tT Ke := ,,
Ke = 0.567 BIU/ (hr-ft-F) 2 + , k k
. P air , '2 tp p ' + 'tair p
- b
. p, air , pe = 15.337 pe := ,
lbm/ft*3 .
.tT '2 tp p Cp + 'tair p- Cp- , p p ,, air Cpe := ,
air ,
'2 tp, p - ' + 'tair p ' . P, . air , >
j Cpe = 0.738 EET/ (lbm-F) . i [- MMMM l=
CALCULATION SHEET m =.c pr.y PRELIM. CCM No. Aj "I Pact or Project er.DCP/me SONGS 2/3 CCN CONVER$10*l Q1e No. M73-ll6 _ccm wo. CCN - I subject _ Room TempgttyrJLRUDonse Ourina Sta_ tion Blatkqut (SBO) sh t me. d 8 3 ashiA catermarce : Art _r at cart l arv entsrsATOs DAff ($( SAtt _/ _ *Mititstat 10/15 k kkk hhh 1 IfEST gaJ1 __ tp := 0.0625 ft (Ref. # 6.8.1) tair := 0.292 ft (Ref. # 6.6) tT := 2 tp + tair tT = 0.417 ft i tT Ke := -
, Ke = 0.567 IIIU/ (hr-f t-F) -
2- + k k
. P air , ~ '
2 tp p + 'tair p
- p. air, pe = 15.337 pe :=
lbm/ft*3 tT _
'2 tp P Cp + 'tair p Cp . P p. air air, Cpe := . '2 tp p ' + 'tair p ' . P. . air ,
Cpe = 0.738 B7U/(lbm-F) ___m- - . - ~ - ~ ' - ' - - - ' ' - _ _ _ - -___ . _ - - - - - - - - . . - - - - - - - - - - - - - - - - - - -
- CALCULATION SHEET = -.< nq '
PRElfM. CCN NO. y _ i ' PAGE OF Project er DCP/Mnp SONGS 2/3 CCM CONVERs!0N Calc No M73-ll6 Ccw No. CCN -
~
schject ] Room Temoerature Res)onse Durina 'St ition Blackout (SBO) sheet me. M M - se ft CarGINAt044 OAft- !at CATE ary Ot!GINAf04 OAff - tat ' catt
/ May!!tterat \ hk/ .
10/15 hhhh mamme maammmmmmmmmmmmmm measums '{ t imamme mumm.m } swam %imaimummmme umanums -i maamm . , CA74UIATION Ol' HEAT I4AD FOR CABINET AREA (ROOM 227) 'I Q3cr057 := 2431.04 W (Ref. # 6.7) Q3cr056 := 2249 2 W (Ref. # 6.7) Q3cr058 := 712.46 -W i (Ref.-# 6.7) I Q3cr050 := 576.32 W (Ref. # 6.7) Q3cr051 := 292.96- W (Ref. .#.6.7) Q3cr052 := 912.23 W (Ref. # 6.7) ,- Q3cr053 := 1042.41 W (Ref. # 6.7) Q3cr054 := 1609.4 W (Ref. # 6.7) Q3cr064 := 708.0 W (Ref. # 6.7) Q23cr061 := 1861.03 W (Ref. # 6.7) - Q23cr061 IS FOR UNIT 2 AND 3 THEREFORE lEAT I4AD FOR UINT 3 ( Q23cr061 Q := 2 Q =-930.515 W TOTAL HEAT IDAD THAT, CONTRIBUTING HEAT TO THE CONTROL ROOM CABINET AREA (ROOM 227) UNIT 3 IS Q3-:= Q3cr057 + Q3cr056 + Q3cr058 + Q3cr050 + Q3cr051 + Q3cr052'+
-Q3cr053 + Q3cr054 + Q3cr064 + Q 4
Q3 = 1.146 10 .W 50% OF THIS LEAT IDAD (Q3) TRANSFER TO CABINET' AREA (RO Q3 Q% := 50-100 Q% = 5.732 10 W __ __ ___.__u__--- - - - - - - - - - -
1, . ~, . m , . CALCULATION SHEET m *-a.<- Sg PREllN. CCN NO. g Ti PAGE --or Project er ocP/me SONGS 2/3 CCN CONVER$10N Cale No. M73-116 _cCN no. CCN - f subject __ Room Temoerature Res ponse Durina St ition^ Blackout (580) s w t me. O M REV,/1 CafGINAT04 $ Aft !tt CATt -aty 04!CINAf04 DAff IRE CAft
/ v!! ftGt41 10/15 \h hi -. r1 A -- .
CALCUI.ATION OF HEAT IDAD FOR CABINET AREA (ROOM 227) Q3cr057 := 2431.04 W (Ref. # 6.7) - Q3cr056 := 2249 2 W (Ref. # 6.7) T Q3cr058 := 712.46 W (Ref. # 6.7) Q3cr050 := 576.32 W (Ref. # 6.7) Q3cr051 := 292.96 W-(Ref. # 6.7) Q3cr052 := 912.23 W (Ref. #-6.7) Q3cr053 := 1042.41 W ('Ref. #.6.7) . Q3cr054 := 1609.4 W (Ref. # 6.7) Q3cr064 := 708.0 W _(Ref. # 6.7) Q23cr061 := 1861.03 W (Ref. # 6.7) g Q23cr061 IS'FOR UNIT 2 AND 3 THEREFORE HEAT. LOAD FOR (Q)UINT
- IS 3 Q23cr061 Q := ,
2 Q = 930.515 W I TCYfAL HEAT LOAD THAT, CONTRIBUTING HEAT M THE CONTROL ROOM CABINET AREA (ROOM 227) UNIT 3 IS Q3
- = Q3cr057 + Q3cr056 + Q3cr058 + Q3cr050 + Q3cr051 + Q3cr052 +
Q3cr053 + Q3croS4-+ Q3cr064 + Q' i - 4 Q3 =-1.146 10 W ' i 50% OF THIS LEAT IDAD (Q3) TRANSFER TO CABINET AREA (ROOM Q3 Qt := 50-100 3 l 'Q% = 5.732 10 W i ! sca an4as NEW Wee o
..~.uvenn,-ant CALCULATION SHEET 4cc- - #
zuog-PRELIM. CCN 180. g g pgg Prejwt er ocP/w SONGS 2/3 Cale No. M73-116 - c"# [ICC -
-subjwt _Raq!!t Temperature Res)onse Durino St ition Blackout (SBO) sheetme.Nh/, - eM(( oarcrufca cart rat eart arv eticinaron oart tat Daft /W avtr fictet 10/15 ((h vAhy v
muumma maammmmmmmmmuuuuuuummusumans mammmml mmanum umanammmmmmmmmmmmmmme numme usammumme i sammuu , . THEREFORE CABINET AREA (ROOM 227) UNIT 3, HEAT IDAD IS Q := 51710 W (Ret, # 6.7).. Or := Q +.Q% 4 QT = 5.744 10 W 3.4121 QT : = QT- - 3600 QT = 54.444 BTU /S F SCE as.438 NRW Was -
; 1
' SONGS UNITS 3 CONTROL ROOM CAtlNE1 AREA (ROOM 227),
0.00- _ R00M 227- , 14.7 57092.0 75 0.50 '1.00 0.0000 0.0000 0.0000 1 0 0.0000 54.44 4
?
28800 54.44
- NOF 0.0000 0,n000 MOF 0 0 000.00 000.00 000.00 000.00 000.00 i KOF 0- 000.00 000.00 000.00 000.00 1 GEOF 0 0 1.00 0.60 0.60 0.00 0 >
QEOF 0.0000 0.0000 0.0000 0.0 1.0E6 0. ') MOF 1 1.00 GEOF 0.0000 ' 14.70 75 0.50 1.e20 14.70 75 0.50 EOF
~ SOUTH WALL (PLASTER)
[ 3 1196 0.450 0.01 1.00
'I 0.00 1 4 ,
0.000 1,47 1.E6' 1.47 KOF 0 0.00 0.0000 1.47 1.E6 1.47
- DEOF 0.509 18.556 0. 73 9 EAST WALL (CONCRETE)
-3 1685 2.5 0.01 1.00 1 0.00 1 4 0.000 1.47 1.E6 1,47 MO!
0 0.00 (0 N /' O.000 .1.47 1.E6 1.47 .'(C /\f [ !" t. .M, 7 ,y - 1.04 143.6 0.21' NORTH WALL (PLASTER) 3 91.2 0.417 0.01 1.00 CALC.NO: *7 N/A 0.000 1.47 R N" ' F BY 8 ' DATE:/
~ -3 000 1.47 CHECKED: DATE: bMM 1.E6' '1,47 SHEET M d '/OF 1
1 l
~
MOF
..O.567 15.337 0.738 ~
NORTM WALL (CONCRETE)
.3- 237.50 2.00' O.01 1.00 4 1- .0.00 1 4 0.000 1,47" 1.E6 1.47 t MOF i 0 0.00 0.000 1.47 -1.E3 1.47 MOF '
1.04 -- 143.6 0.21 WEST WALL (PLASTER) 3- 595.0 0.417 0.01. 1.00 1 0.00 1 4 0.000 1.47 1.E6 1.47- '
. MOF O 0.00 -
0.000 1.47 1.E6 1.47 , MOF 0.567 15.337 0.738
^
CEILING (CONCRETE)
'3- 3723.00 1.00 0.01 1.00 1 -0.00 1 1 ~
0.000 1.47 1.E6 1,47
- MOF 1.04- 143.6 0.21 MOF 0100010000 MOF 3600.0 1 00 20 25 1.E20 0.001 500 0.01 1.0 0.10 10.0-1.00 20.0 10.00 100.0 25.00' 36000.0 .0 36000.0' -
C C All NI 4l k -4 cal.C. NO:
. REVISl0 * '
e f 1 e9 v'i Dlre12'NA1-CHECKED: DATE:bkd SHEET d D&OF 2 ,4 '
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4 Page 1 12-15-92 20:19:56 PCFLtO Version 3.7 SONGS ON!iS 3 CONTROL ROOM CABINET AREA (ROOM 227)
*** PCFLLO 3.7 ***
- Thersiofluid Dynamics for a System of Interconnected Crapartments <
MAP-120 [](1 O (C) Cepyright 1990 Bechtet Corporation (C) Copyright 1988 Bechtet Eastern Power Corporation ALL RIGHTS RESERVED (C) Copyright 1976, 1985, 1987 8echtet Powee Corporation ALL RIGHTS RESERVED Release Record Date Version Description of Changes 3/25/85 1.00 originat PC version 8/25/06 2.00 Air-onty version (SF) 1/06/87 3.00 Ad$ed SIGFLO routine
' 6/02/88 3.10 Modified for new ccupiter 2/06/90 3.61 61 Compartment version 5/21/91. 3.7 Automatic re o reverse flow <C C N /
INPUT file name: b:r227. f rp OUTPUT file name: b:r227.ouT cc tJ *' g) [ ~ PLCT fite name: b:r227. PLT I CALC.NO: p . ri.3 - H L R 6flSIO ofGo 041E.%*-15 CHECKED: _, h DATE: h "D' b b
~
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,t ; Page '2 12-15-92 20:19:56 PCFLtB Version 3.7 SONGS LMITS 3 CONTROL ROOM CASINET AREA (ROOM 227) COMPARTMENT INITIAL CONDITIONS
==============================
Copportment Description voltane Temperature Pressure Ret. Numidity Flow to Compartments
' (...
f t"...3)........... (Degrees.F). (psla) (fraction) - t 0 = Atmosphere ) G Atsosthere 75.00 14.7000 .50
'1 ROOM 227 5.7092E+04 75.00- 14.7000 .50 (Cy/
C C N'; . Al- 1 y [ 01-10 i . CALC.NO:
~N REVI N: . .. b, nY:_. fS I190 11 OAm }}-IL-W 2 CHECKED:: , DATE: M ~ 2 7_-f% "( . $ ; gg_ ~g
.""--"""--"t '"' ":7." ==. "' - - - - - -
Page 3 12-15-92 20:19:56 PCFLUD version 3.7 SONGS tm!TS 3 CONTR-OL ROOM CASINET AREA (ROOM 227) l l COMPARTMENT AUXILIARY CONDITIONS
===========. s===================
l l Copportment Ccaparteent Air Cooter Constant Air Cooter Temperatures Equipmmt Heat Leed Leakage Constants t Desc. (BTU /sec-des) unter (F) Start (F) Options Rate (CFM) G Press.(in. M20) l l 1 RtVW 227 .000 .0 .0 1, 0 .00000 .0000 1 CCMPARTMENT HEAT LOAD
======================= ,
I Compartment 1 Time (seconds) Heat Load (BTU /sec) i .00 54.44 ! 23800.00 54.44
&cn /
ccsi: bl- I > V* N II 1
' ~
CAIC.NO: ntwfWe,efi r# 7 one,6 Ip-fi ')Z-7y. 3 mecyso; 24 Lone /t-TaL *11 m SHEET 'l'lI 0F
1, , --- Page 4 12-15 20:19:56 PCFLUD version 3.7 S(*GS L2175 3 CONTROL ROOM CASINET AREA (ROOM 227) FLOW PATH DATA
===33===========
Set Pressure --------- Valve Setpoint ----+---- Cosipartment flow Area --- Flow Coefficients --- Pressure (psid) Temperature (F) Fram. To (ft**2) ' Forward Reverse (psid) 0 0 1.0 .600 .600 .C000 L I t Ccw j cc. tJ : s/ I , h 949 i cAtc.no: # N'//E asvaand N ef.%eri odip-is-n cJun h4 sLoam s -u-o
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SHEET MSF O
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a w Pace 5 12-15-92 20:19:56 PCFLLD Version 3.7 SONCS tuliS 3 C a r0L Ro@t CABINET AREA (ROOM 227) SLOWDOdl DATA as==esess====== Time (sec) Flowrate (thn/sec) Enthalpy (BTU /lba)
.00000 .00000 .00000 1.00000E+06 .90000 .00000 - SPLIT OF BLO@0WW DATA ==== = ====e. s======= -
Compartment Fraction of Blowdenn I 1.00000 ATMOSPHERIC DATA
=====s============
Time (sec) .Tenp(deg.F) ' Pressure (psis) Relative Assidity
.00000 75.000- 14.700 .50000
'. 1.00000E+20. '75.000 14.700 .50000 Ccd ctg: . al- 1 s P, D'8
, r c.uc. to: $ 9 -//L newow A %1' ,. c.SMt eYi oxl)P 1EW ta<nen m / 8 oATE M - # -9k P' =
SHEET IM OF "
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Page 6 . 12-15-92 20:19:56 PCFLUD Version 3.7 . SONGS UNITS 3 CONTROL R004 CABINET AREA (ROOM 227) Neat $1nk Wimber 1: ' SOUTH WALL (PLASTER) CONVECTIVE HEAT TRANSFER PARAMETERS
....... = =. . .. .== . ' Stab Materlat User-Defined Sieb Thickness . .459 ft Surface Area . 1196.00 f t"2 Therent contisctivity .509 STU/hr-ft-deg. F Dersity 15.556 the/ft**3 Thernet Olffusivity .037 f t**2ihr Heat Capacity - . .~ .739 BTU /lbe-deg. F First Node Thickness .01000 ft Node Thickness Ratio 1.00 Ntaber of Nodes 47 External Bomdary Conditicn Convective . External Heat Transfer Coefficient, Uchida -Outside Environment Index 0 Inside Envirorinent Index 1 1 Interior Heat Transfer Coefficient Uchida TABLE OF EXTERNAL HEAT TRANSFER COEFFICIENTS ........ . n .. ..... . . .u Temperature Difference (Degrees F) Meat Transfer Coefficient { BTU /hr/ft**2/F) ................................e... ............................................ .00000 1.4700 1.00000E+06 1.4700 TABLE OF INTERIOR HEAT TRAWSFER COEFFICIENTS ..... . .. ... ....... . ...... Ccy / .IT:!!"".?!!!ria".!!:"!_!!. ""!.!:'a*!r.c"!!!!!'"!.!'""!!-2/ 3. cc gr: A/ _ f , f. M .00000 1.4700-1.00000E+06 1.4700 I ~~~ ~ '
TABLE OF NEAT Siht MESH POINT COORDINATES (feet)' cal C I!O:
.000000 .010000- ..020000 .030000 .040000 .050000 .060000 ~.070000 .080000 .090000 8s EV! %y , a
(
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Page 7 12-15 20:19:56 PCFLtc Version 3.7 I
' SONGS UNITS 3 (bNTROL ROOM CABINET A.'EA(ROOM 227)
Heat Sitt Number 2: EAST WALL (CONCRETE) CONYECTIVE HEAT TRANSFER PARAMETERS
========s====.s==========. . ... $ tab Materiet IJser-Defined ' Stab Thickness- 2.500 ft Surface Aren' 1685.00 ft**2 Therinal Conductivity .1.040 stu/hr-ft-deg. F Density' 143.600 ttun/f t**3 -
Thermal Diffusivity .034 ft**2/hr Heat Capacity .210 STU/tba-deg. F - First mode thickness .05102 ft Node Thickness Ratio 1.00 1 Nunber of Nodes 50
' Convective i External Boundary Condition j Uchida I External Heat Transfer coefficient 'Outside Environment index 0 l l
Inside Envirorinent Inden 1 Uchida j Interior Heat Transfer Coefficient l TABLE OF EXTERNAL HEAT TRANSFER COEFFICIENTS
===sses===s3s===.===============.ss===========
- l. - Temperature Difference (Degrees F). Heat Transfer Coefficient (BTU /hr/ft**2/F)
.00000 1.4700 1.00000E+06 1.4700 TABLE OF INTERIOR NEAT TRANSFER COEFFICIENTS ( ( g. /- ' Heat Transfer Coef ficient (BTU /hr/f t**2/F) bd -
- 3 pyG.
[ -Temperature Difference'(Degrees F)
.00000 . 1.4700 __
i.
~1.00000E+06.. 1.4700 .I _ __ _ , G } $}l{
l M C* N
. ~ TABLE OF HEAT SINK MESH POINT COORDINATES (feet) , '.459184 j g - 3 ~ . 000000 '.051020 .102041 .153061, .204082 .255102 .3 % 122 - .357143 ~ .408163' py. J l'56Il~DANh b " ,ia:rcreo:.
7E ,, onTE MDW ~
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---.--.--.-.--s-..s------.s.2-L--.:
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.663265 .714286 .765306 .816326 .867347 .918367 969388 .510204 .561224 .612245 1.122449 1.173469 1.224489 1.275510 1.326530 1.377551 1.4;3571 1.479591 1.020408 1.071428 1.632653 1.683673 1.734693 1.785714 1.836734 1.887754 1.938775 1.989795 1.530612 1.581632 2.040516 2.091836 2.142856 2.193877 2.244897 2.295918 2.346938 2.397958 2.4489 7 2.5 m l
l l i l b c c tJ: d- l > Y.. D'I 7 7 CALC. NO- M ' 7 h '(( nc:uuovN- _l
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Page 8' 12-15-72 20:19:56 PCFLLD Version 3.7 SONGS tmlTS 3 CONTROL ROOM CASINET AREA (ROOM 227) Neat Sird Nun 6er 3: NORTN WALL (PtASTER) CONVECTIVE NEAT TRANSFER PARAMETERS Stab Material User-Defined Stab Thickness- 417 ft Surface Ares . 91.20 f t"2 Thermal Corriactivity .567 btu /br-ft-deg. F Density 15.337 Itum/f t"3 Thermat Diffusivity .050 ft"2/hr Meat Capacity .738 8TU/1tsa-deg. F First Node Thicitness .01000 ft
' Node Thickness Ratio 1.00 Nu ter of Nodes 43 External Soundary Condition Convective External Neat Transfer coefficient tichida Outside Envirenaent Indes 0 1
Inside Environment Inden' Interior Neat Transfer Coef ficient Uchida TABLE OF EXTERNAL NEAT TRANSFER COEFFICIENTS Temperature Dif ference (Degrees F) Neat Transfer Coefficient (BTU /hr/f t"2/F)
.00000 .. 1.4700 1.00000E+06 1.4700 TABLE OF INTERIOR NEAT TRANSTER COEFFICIENTS g .A7 .., , y, p.ig-Temperature Difference (Degrees F). Neat Transfer Coefficient (87U/hr/ft " 2/F) _._ ..
I
.00000 - -1.4700 1.00000E+06 1.4700 1 . ; ,a c *<o: # Y//I TABLE OF NEAT SINK IESN POINT COORDINATES (feet) . _ h. . , , . . . , , . ~.
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12-15-92 20:19:56 e . FCFLtc version 3.7 i
. $0 HGS (MITS 3 CONTROL ROOM CABINET AREA (200M 227) neet Str* Nueer 4: NORTN WALL (CONCRETE) ~
jw CONVECTIVE MEAT TRANSFER PARMETERS Stab Materlat. User-Defined Stab Thickness 2.000 ft Surface Area 237.50 f t**2 Thenmal Conductivity 1.040 37U/hr-ft-deg. F Density 143.600 ttsu/f t**3 TherneL Of ffusivity .034 ft**2/hr
+ meet capacity First Node Thicknees .210 stu/tbe-d.eg. .040 2 ft F
. . Node Thickness Ratio 1.00 g Number of Modes 50 External Soundary condition Ccewective Externet meet Transfer Coefficient' Uchids outside Erwironment Inden 0 Inside Erwironment Inden 1 Interior Meet Transfer Ceefficient -Uchide TABLE OF EXTERNAL NEAT TRANSFER COEFFICIENTS
===
Temperature Difference (Degrees F) peat Transfer Coefficient (BTU /hr/ft**2/F)
......-__ -- ......._...- . m ..... .. _- _ -- .00000l -1.4700 '1000.0" 1.4700 CCH f -
TA8tE OF INTEtt0R NEAT TRANSTER COEFFICIENTS g,) ,3 h )Db Tenperature Difference (Degrees F) heat Transfer Coefficient (STU h r/ft**2/F) f ~'~
^~~ ~~ ~ .00000 . 1.4700 . ;; g p.y h T ..,, }
t
' ~~
TABLE Os NEAT SINK IESH POINT CODADINATES (feet) 1~
.000000 . 0.m 3 73a i; J' w w, >+m .20 0 2 j .0.u33 -.2224. , 0. .2. sri. .i.32.s. .24 .32.s3, .
g u,
. . W %h -
- m. 6
e 408163 . . % 8980 . 489796 .530612 .571429 .612245 .653061 .693878 .734694 .773510 -
.816326 . 857143 ' ~.897959 .938775' .979592 1.0204C6 1.061224 1.162041 1.142857 1.183673 ~
1.226490 1.265306 1.306122 1.346938 1.387755 1.428571 1.469387 1.510204 1.551020 1.5918M 1.632653 - 1.673469 1.714285 1.735*02 1.795918 1.836734 1.8 77550 1.918367 1.959153 2.000000 c $.l 4 4
- t. .
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Pase to 12-15-92 23:19:56 PCFLtB version 3.7 Songs LastTS 3 CONTROL ROOM CAEINET AREAtacom 227) neet sir
- wtacer 5: WEST WALL (PLASTER)
CordCTIVE HEAT TRANSFER PARAMETERS
-51ab Materist user-Defined Stab Thickness .417 f t surface Area 595.00 ft**2 Thernet Conductivity .567 STu/hr-f t-des. F Density 15.337 ttunff t**3 Thernet Diffusivity .050 f t"2/hr meet Capacity .738 BTU /the-des. F First mode Thickness .91000 ft Mode Thickness actio 1.00 number of modes 43 . -External Soundary Condition Carwective External seat Transfer coefficient Uchida Outside Environment inden 0 Inside Environment Inden 1 Interice Meet Transfer Coefficient Uchide TABLE OF EXTENsAL NEAT TRANSFER COEFFICIENTS . Tewature Dif ference (Degrees F) Neet Transfer Coefficient (STc/hr/ft**2/F) .00000- 1.4700 1.00000E+06 1.4700
{ TAsLE OF I4TERIOR REAT TRANSFER COEFFIC1ENTS C C. g_ } 3 f)~ - Teeperature Dif ference (Degrees F) . neat Transfer Coefficient (STU/hr/ft**2/F) -- -- - - - - . ~ -- - - -.
....... ..------= - ... _...... .-- - --- ---- - e .00000 1.4700 -1.00000E+06 1.4700 ' r" ..*. , tra1 - ~ -- ..._ . t TABLE OF MEAT stant Esa POlsi COURDinATES (feet) ?It7 -
on s-i #C +
.000000 .010000 .020000 .030000' .040000 .050000 .060000 .0M000 .000000 .090000 L
l'.$ge_ _ ^ -- - - i; *
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Page 11 12-15-92 20:19:56 a PCFLtD version 3.7 i '.. SONGS tastTS 3 CouTROL ROOM CA5! NET AstEA(R004 227) J 3- Heat $1r* thmber 6: CEILING (CONCRETE) CONVEC11VE MEAT TRANSFER PARAfuETERS
=== s -__ -
Stat #eterial user-Defined Stab Thickness- 1.000 ft Surface Area 3723.00 f t**2 Thernet Conductivity 1.040 BTU /hr-ft-deg. F-4 . Density .- 143.600 ttun/ft**3 Thernet Diffusivity - .034 ft**2/hr ., heat Capacity .210 stu/ttse-deg. F First made Thickness .C2041 ft
- morte Thickness Ratio 1.00 eksumer of modes .
50 External Boundary Condition Adiabatic Inside Erwirtwent Inden . 1 Interior West Transfer Coefficient Uchide
. TABLE OF itTERIOR REAT TRANSTER COEFFICIENTS g ==========
f,; Temperature Differenca (Degrees F) Meet Transfer Coefficient (STU/hr/ft**2/F)
'.00000 1.4700 L: 1.00000E+06 1.4700 CCW /
y == TASLE OF NEAT Stlut MEC P01WT COORDI4ATES (feet) [( /d e e
' g*" l . 3 f.[ .000000 .020408 .040816 '.061224 .081633. .102041 ! .122449 .142857 .163265 183673 _ _ _ _ = -.~ - .204052 .224490 .244898 .265306 .285714 .306122 ' .326531 .346939 .367347 .387755 '
3 j = 408163 - A28571 - .448980 469388 489796 . 5!0204 .530612 .551020 .571428. .591837 i .612245. .632653 .653061- .673469 .693877- .714286 734694 .755102 .775510 .795914
.816326- s.836734. 857143 .877551: 897959- .918367 - -..938775 .959183- .979592 1.000000 j g,. ,
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Page 12 12-15-92 20:19:56 PCFLIB Versicm 3.7 SomGS UNITS 3 CouTROL RtXM CA81 MET AREA (ROOM 227) AwtILI ARY Cuid0lf!Oh5 SELECTED
==
31owout Panels CFF Corwective Meat Transfer Ou Unit Air Coolers .. OFF heating and Ventilation Ficu. OFF r9rtment Leakage OFF Compartment Equipewr* Neat Loads Du A^ % '. ire Exhaust Fan OFF Slowdown Dropout OFF Zero Reverse fiss OFF 8% Revaporization OFF PROSLEM CONTROL PARAMETERS
============================
Problem Time Limit 3600.00 seconds
' Flow Calculation Output / Frequency OFF/ 0 rvrtment Pressure Difference output OFF Meat Sink Calculation Output /FregJency 08i/ 2 Extended Neotsink Output: made Temperatures ou - Restart Option .
OFF Number of Plot Points 25 StGFLO Switch Time 1.000000E+20 seconds SIGFLO Iteration Tolerance .C01000 pst
. Maatsua utsuber of Flow Iterations 500 c cm j CALCULAT10N/FRINT TIES SELECTED e#
Calc. Time Step. Change Time Print Intervat Change Time .ccW: #-h 2 - 1.000E-C2 1.000E+00- 9.000E+02 3.600E+06 f~~ ~ 1.000E-01 1.000E+01. 0.000E+00 0.000E+00 0.000E+00 0.000E+00 N M* 1.000E+00 2.000E+01 1.000E+01 1.000E+02 0.000E+00 0.000E+00 0.000E+00 4 Cl-14. m ---= Y) dI gC~ ' ' ~ ~ ~ i - 2.500E+01 3.600E+06 0.000E+00 {
, . .ggg
_.-I b g 'TTse d _a m & J A S. 1r , .%- 't. %_ -_a -n -s-17 l . 55'. J 1 --km m_.u_
-l i
N-4 3.- Page 13 12-t$-92 20:19:56 PCFLUD version 3.7 ?- 4 5040s tmlis 3 CouTROL R00m CABluET AREA (ROOM 227) I s Time = 0 Mours .O Minutes .00000 Seconds ( .0000 Seconds ) (Cate. Time Step = 1.000E-02 seconds) S-Meat / Ret. -- Pressures (psia) - Totst Frac. Frac. Rest Total Compartment ---- -- Temp.' (Deg F) . Quality muut. Total Air: Steam .K Mass (ttus) Air vapor Load Energy (BTU)
- ============ ---- ======= ======= ==== ==-
0 . Atmosphere 75.000 .50 14.700 '14.485 .215 1.40 .9908 .0092 1 ROOM 227 75.000 19.4 S - .50 14.700 14.485 .215 1.40 4.2139670E+03 .9006 .0092 54.44 4.2506140E+05
- conpartments Initial Energy 4.2506E+05 STU C - itments inittat Mass 4.2140E+03 ttse Current Energy in Compartments 4.2506E+05 ETU Current mass in compartments 4.2140E+03 ttus Slowdows Enthalpy Added . 0.0000E+00 STU staudoun mass added- 0.0000E+00 t's Irreversible Energy Loss 0.0000E+00 STU - (Condens. + Orepout) Moss Loss 0.0000E+00 itse Energy Lost to Atmosphere 0.0000E+00 STU Mass Lost to Atmosphere 0.0000E+00 ttun i
. I Rate of Energy Loss'to Atsesphwe 0.0000E+00 STU/see 1 [ tate of mass Loss to Atmosphere 0.0000E+00 Itum(sec 3 Absolute Energy labetarce 0.0000E+00 STU ' Absolute mass tubeiance 0.0000E+00 Itse setstive Energy tubstance 0.0000E+00 %. Retettwe mass taestance 0.0000E+00 % $W f L cc N: fll'P0" .,
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= ,,-mm. .,y-,+ e- .,y,, ,,.4%.,w- 3-e,. e...= ..i.m. .--+----,w,-.-i--,r.'
_u 1 Page 14 12-T5-92 20:19:50 PCFLt2 version 3.7 SouGS tat!TS 3 CONTROL ROOM CABINET AREAtROOM 227) Time = 0 Mours 15 Minutes .00000 seconds ( 900.0000 seconds 3 (Cate. Time step = 2.500E+01 seconds)
-m-- Covertment ---- Temp. $-Meat / Ret. -- Pressures (psia) -- Totat Frac. Frac. Meat Total (Deg F) Quality Mus. Total Air Steam K Mass (itsu) Air- Vapor Load Energy (BTU) =====.-_..- = ======= ======= ==== ==== - =======
0 Atmosphere 75.000 .50 14.700 14.485 .215 1.40 .9906 .0092 1 ROOM 227 94.400 37.9 5 .28 15.233 15.010 223 1.40 4.2139670E+03 9908 .0092 54.44 4.3928560E+05 Campertments initial Energy 4.2506E+C5 STU ' Compartments inittet Mass 4.2140E+03 tten
- Current Energy in Compartmeetts 4.3929E+05 btu current mass in Compartments 4.2140E+03 ttus - Stomadown Enthatpy Armed 0.0000E+00 STU ' Stowdown Mass Added 0.0000E+C0 (tse Irreversible Energy toss- -1.4226E+04 STU (Condens. + Dropout) Mass Loss 0.0000E+00 Itse Energy Lost to Atmosphere - 9.8518E-01 BTU Mass Lost to Atmosphere 0.0000E+00 lbe i Rate of Energy toss to Atmosphere 5.7374E-03 btu /see 1 ( Rate of mass toss to Atmosphere 0.0000E+00 itse/see ]
Absolute Energy 1s6atance '-1.2062E+00 STU Absolute Mass Imbalance 0.0000E*00 Ltse Relative Energy Isbalance ,-2.7459E-04 % Relatswe mass toestance 0.0000E*00 1
~
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d 4 i Page 15 12-15-92 20:19:56 PCFLtD Version 3.7 SOM;S UNITS 3 CDWTROL ROOM CABINET AREAtt00M 227) Time = 0 nours 15 minutes .00000 Seconds ( 900.0000 secords ) (Catc. Time Step = 2.500E*01 seconds) meat Sir
- Calculation output a,
Es* Camp 7 TSAT TWALL WCDS MCONV AREA QCDMD QCouv SSERS S DT RSS
~1 Left 1- 94.400 56.545 79.186 .000- 1.470 1196.0 0.000000E+00 -7.469142E+00 0.000000E+00 -T.469142E*00 1 1 Right 0 75.000 ****
- 75.002 .000 1.470 1196.0 0.000000E+00 6.355733E-04 0.000000E+00 6.855733E-04 1
................... ...... .................................. ............._...... ............... ......-- - --- m ......
2 Left.. 51 94.400 56.545 77.137 .000 1.470 1685.0 0.000000E+00'-1.190966E+01 0.000000E+00 -1.190066E+01 2' 2 Right .0 : 75.000 ""** 75.001 .000 1.470 1685.0 0.000000E+00 7.559052E-04 0.000000E+00 T.559052E-04 2
- ..................=_- ---- - ....._. ..
3 Left~ 1 94.400 - 56.545 79.333 .000 1.470 91.2 0.000000E+00 -5.641687E-01 ' O. ors 000E+00 -5.641687E-01 3 . 3 Rig 5t- ,0 75.000 ******* 75.013 .000 :1.470 91.2 0.000000E+00 5.796020E-04 0.000000E+00 5.796020E-04 3
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . _ . . . . . . . . . . . . . . . . . ..........- -m..................._..- .. .......
- 4 Lef t ' 1. 94.400- 56.545 77.155 000 1.470 237.5 - 0.000000E+00 J-1.6768tSE+00 0.000000E+00 -1.676815E+00 4
~
4 4 Right- 'O 75.000 ****** 74.999 .000 1.470 : 237.5 0.000000E+00 -6.511053E-05 0.000000E+00 -6.51105X-05 4 5 Left 1 '94.400 $6.545 79.333 .000 1.470 595.0 0.000000E+00 -3.680706E+00 0.00000dE+00 -3.680706E+00 5
; .5 R!ght 0 75.000 * **** ' 75.018 . COO 1.470 595.0 0.000000E+00 3.781395E-03 0.000000E*03 3.781395E-03 5
, ............. ........................... .............. ............ ..._. . ...................~......--- .......... 4 ' 6 Left 1 94.400 56.545 - 77.191 .000 1.470 3723.0 0.000000E+00 '-2.623084E+01 0.000000E+00 -2.623084E+01 6 d 4 {1 - cc.rl : H- I s
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iT 067310000 2000000000 290521 s s 565555555 5555555555 866555 O . e 777777777 7777777777 777777 C e r R ( t a u t A C a E ( r R e A g .
)
T s e E 7 W d e i n 000000000 0000000000 000000 s o d 828172446 5340626443 126689 A c o 495092756 9175785771 256057 C e M 974515272- 7611001111 990402 - t S 631176200 5000000000 951314 s o 0 0 t u
?.89410000 5000000000 512631 R 0 p 865555555 5555555555 876555 .
0 t 777777777 7777777777 ) 777777 L u R O E 0 O T R 0 S T u 9 *r A L o i P C e ( t L 3 s L . ( e . A S T N 0000000000 4625783304 0000000000' 4946663447 W 000000 857647 t s s de 5046562427 3275774770 H ' 76515 1 A d 2099698931 3511301111 T 446507 I n d 6958072000 4100000000 R 506266 o n 7004200000 1000000000 O 943731 S c e W G e t ) 8765555555 ) 655 555555 876555 W C S E i J R E 7'.77777777 E T 777M777777- 777777 S 0 T E , 0 . S R 0 A C 0 L w 0 P o ( C L ( 7 L L - A L s W . A e 0000000000 W 0000000000 3j0000 .f
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u .M 7730880540 7146963445 i 624376 2 T U 3065200798 T 8375874772 1 65042 m 6825775131 S 6011001111 308566 O 8627493100 A 30000C0000 373219 M S 1325200000 E 1000000000 365841 5 , 9765555555 , 7555555555 , 976555 1 1 7777777777 2 7777777777 '3 777777 s r . . . u .o o o - c N m - a ~4 0 kr Ar *r i i i S S S
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00 0000000000 62 6744656222 73 9955686444 24 1799999999 5 02 0 1099999999 4099999999 . 55 5544444444 77 7777777777 000 0000000000 125 0104053222 498 186S687444 ^ 277 0999999999 621 6199999999 000 7099999999 555 5544444444 777 7777777777 000 0000000000 244 6114059822 843 9195687444 328 9699999999 731 1499999999 0.C.0 3099999999 555 777 O 6544444444 T 7777777777 N L ( L 4 000 W 592 H 0000000000 , 296 9504455422 , 779 T R 4375553544 631 O 5109999999 000 5009999999 N 1109999909 555 , 7554444444 777 4 7777777777 o t
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Pags l' J. 12-15-92 20:19:56 PC7tLD Verstori 3.7 l 4 '; SONGS tmlTS 3 CoutROL ROOM CASINET AREA (ROOM 227) t i Tisie = 0 Hours 15 Minutes .00000 Seconds ( C00.0000 Seconds ) (Cate. Time Step = 2.500E+01 seconds) f Entended Heatsink Outout: mode Temperatures Heat Sir
- me. 5, WEST WALL (PLASTER)
" 79.333160 78.954380 . 78.599210 78.267180 77.957860 '
77.670620 77.404750 . 77.159520 76.933990 76.727330 76.538540- 76.366670 76.210660 76.069550 -75.942350 75.828030 - 75.725560 75.634060 75.552640 75.480380 75.416470 75.360140 75.310580 75.267180 75.229280 75.196260 75.167570 75.142790 75.121370 75.1G3000 75.087250. 75.073820 75.062410 75.052760 75.044710
- 75.037990 75.032440 75.027920 75.024320 5.021580 t 75.019620- 75.018340 75.017850. l Heat $1nk No. 6, CEILING (CONCRETE) 77.190700 76.733550 76.350860 76.036650 75.783600 75.583710 [
75.428740 75.311000 75.223110 75.158720 t 75.112340 75.079500- 75.056730 75.041230 75.030850 75.024000 75.019680- -75.C16880 75.015170 75.014190 75.013 MO 75.013460: h.013400 75.013400 75.013580 75.013700- ~ 75.013820 ' 75.013950 75.014070 75.014130 75.014190'. 75.014250l 75.014250 75.014250 75.014250 75.014310 75.014250 75.014250 75.014370 75.014250 75.014250 75.014250
.75.014250
{(M / ' 75.014500 M- f y
..75.014800 75.014860 75.014860 75.014920 75.014680 75.014980
(( g '** . h bk ! p-- - ~ __ . ._ ;
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1 N a Pope 18 12-15-92 23:19:56 FCTLtD Version 3.7 SONOS t*tTS 3 CONTROL 200m CA3tLET AREA (ROO* 227) Time = 0 Mours 30 minutes .00000 Secoruss ( 1800.0000 Seconds ) (Cate. Time Step = 2.500E*01 seconcs)
----- Cosportment - L Temp. S-pest / " Ret. -- Pressures (psia) -- Total Frec. Frac. West Total l(Deg F) Quality mun. Total Air Steam K ness (tbs) air vapor Load Energy (STU) . - = ... .. -
3 Atmos;*ere 75.000 .50 14.700 14.485 .215 1.40 .9906 .0092 1 200m 227 .96.514 39.9 $ .26 15.291 15.068 .224 1.40 4.213967DE+03 .9906 .0092 54.44 4.406355M+05 Compartsents initiet Energy 4.250f.E*05 STU Caspartments initfat ma ss 4.2140E+03 (tse
. Currwit Energy in Compartments 4.4C84E+05 BTU Current ma ss in Compartments 4.2140E*03 tbn Stewdow: Enthaf.py AdrJed 0.0000E+00 siu steudcen mass added 0.0000E*06 than . IrreversiMe Energy Loss .-1.5812E*04 STU (Condens.. + Dropout) mass Loss 0.0000E+00 ttum Energy lost to Atmos;*ere 3.7008E+01 sTu mass Lost to At e 0.0000E+00 ttua j [ Rate of Energy Loss to A%We - 1.0309E-01 ETu/sec 1 1 Rate of mass Loss to Atmosphere 0.0000E+00 tha/sec I
, ... ........................ .m,.............._.. ....... .... .......... ................- -- _ _ _ _ _ . . . . a Absolute Energy tabstance
~ -1.2753E+00 ETU Absoltate mass inbetance 0.0000E+00 Itse Relative Energy tubatence -2.8960E-06 % aetettwe mass Istatence 0.0000E+00 1 g,qr: tJ-f ,Y+3 0 1' ~e. -= _ , , _ ; c ,, A1 '73-ig , ;e- f f T ri a jp-a n Ql /yi ' ~
surtr 2L,1oc '
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- c. -
Page 19 12-15-92 20:19:56 PCFLLO Versten 3.7 SONGS tJNITS 3 CONTROL ROOM CA51 NET AREA (R008 227) Time = 0 hours 45 Minutes .00000 seconds ( 2700.0000 Secords 1 (Cate. Time Step = 2.500E+01 seconds)
---- Compartment -- I Temp. S-Heat / Ret. ~ Pressures (psia) -- Totat Frac. Frac. Heat Total.
(Deg F) Quality than. Total Air Steam K Mass (itsm) Air Vapor Load Energy (ETU)
= = = = = = = = = = = = = = = = = = ======= ======= ==== ====================== ==== ==========-- . _ _ . - _ _ _ ======= ===
0: Atmosshere 75.000 .50 14.700 14.485 .215 1.40 .
.9908 .0092 1 ROOM 227 97.710- 41.0 S .25' 15.324 15.100 .224 1.40 4.2139670E43 .9906 .0092 54.44 4.4171230E+05 Compartments Initial Energt 4.2506E+05 BTU Compartments initiat Mass 4.2140E+03 ttsu Current Energy in Conpartments 4.4171E+05 BTU Current Mass in compartments 4.2140E+03 ttum 8toudoun Entbatpy Added 0.0000E+00 BTU. Blowdoen Mass Ad$ed 0.0000E+00 itsu Irreversit9e Energy Loss -1.6882E+04 STU (Condens. + Oropout) Mass Loss 0.0000E+00 itsu - EN Lost to AtmosWre 2.3003E+02 BTU Mass Lost to Atmosghere O iC00E+00 ttne
[ Rate of Energy toss to Atmosphere 3.5533E-01 BTU /see ] [ Rate of Mass Loss to Atsesphere 0.0000E+00 itsysec ] o.. ................................ ... ............ ......._............................-- ........ .. Absolute Energy taRialance -1.2727E+00 ETU Absolute Mass Is6 stance 0.0000E+00 itse Relative Energy tabalance -2 8812E-04 1 Relative Mass Isentawe 0.0000E+00 % ((}}