ML20202D905

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Rev 0 to 0VA-0114, Control Bldg Transient Temp Analysis During Spring Conditions
ML20202D905
Person / Time
Site: Brunswick  Duke Energy icon.png
Issue date: 01/21/1998
From: Tomlins V
CAROLINA POWER & LIGHT CO.
To:
Shared Package
ML20202D867 List:
References
0VA-0114, 0VA-0114-R00, VA-114, VA-114-R, NUDOCS 9802180027
Download: ML20202D905 (101)


Text

ENCLOSURE 3 BRUNSWICK STEAM ELECTRIC PLANT, UNIT NOS,1 AND 2 IX)CKET NOS. 50 325 AND 50 324/L1CENSB NOS. DPR 7i AND DPR 62

' RESPONSE TO REQUEST FOR ADDITIONAL INFORMATION REQUEST FOR LICENSE AMENDMENTS

. CONTROL BUILDING EMERGENCY VENTILATION SYSTEM (NRC TAC NOS, MA0ll2 AND MA0ll3) l l

CALCULATION NUMBER OVA 0114

" CONTROL BUILDING TRANSIENT TEMPERATURE ANALYSIS DURING SPRINO CONDITIONS" p

PDR 1

SYSTEM #

8?20 CALC. WPE -

EMMECH CAROLINA POWER & LIGHT COMPANY OVA -0114 fantrol Buildina Transient Temperature Analysis Durina Sprina Conditiom Control Room AQ Replacement Project Brunswick Nuglear Plant _ Unit 1 & 2 YES NO SAFETY RELATED 8

O SEtSMIC D

9 APPROVAL Rev.

Prepared By Date Venfied Dy Date Resp. Manager Date No.

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O Vg Tomhns

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Method of Venfication:

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Alternate Calculation

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O ouahfication Testing Method of Venfication:

O Design Review O

Alternate Calculation O

oualification Testing Method of Venfication:

O Design Review 0

Alternate Calculation O

ouahfication Testing

CALCULATION NO. OVA-0114 PAGE 1 of W/T ato j.,,,,, f REVISION O UST OF EFFECTIVE PAGES PAGE REV PAGE REV PAGE REV 1

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0 4

0 5

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0 9

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18 0

l ATTACHMENTS A

0 0

0 C

0 D

0 E

O F

0 REVISION

SUMMARY

Revision 0 is the first issue to support ESR 9700598 and 9600757.

2

l CALCULATION NO. OVA 0114 PAGE 2 of 18 REVISION 0 I

i TABLE OF CONTENTS i

Page No.

List of Effective Pages.....

1 Revision Summary...

1 Table of Contents............

2 4.

1 Purpose........

3 References..

3 Body of Calculation.

4 Methodology.

.4 Inputs and Assumptions

........5 Event Analysis...

.7 Room Definitions and Initial Conditions...,

...8 HVAC Flow and Cooling Loads...

....9 Changes from OVA-0104, CBCase2..

.10 Summary of Case TORNADO 1 hputs.

.13 Results and Conclusions.........

13 Attachment A -Tomado Model HVAC Air Flows Table and Flow Diagram..

.Page(s) 3 Attachment B Computer Program Input Data..

,........ Page(s) 42 Attachment C Computer Program Output Data Tabulation.

..Page(s) 14 Attachment D Temperature Plots for Different Time of Day Event Start....

.Page(s) 4 Attachment E References......

....Page(s) 16 Attachment F Design Verification Record.,

. Pages 2

1 Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V. A, Tomhnt.

01/14/98 OVA-0114 Checked by:

Date:

Pg of Rev Norton 01/10/98 CALCULATION SHEET 3

Project No :

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spring Conditions 1.

PURPDSE This calculation determines the air temperature profiles in selected areas of the Brunswick Nuclear Plant Unit 1 & 2 Control Building for an eight (8) hour period following a postulated loss of temporary control room air conditioning equipment during the spring. The temporary air conditioning equipment is planned to be mounted on the control building roof and could be susceptible to a tornado event. The permanent control building air conditioning equipment is to be replaced during the months of February through April. The purpose of this calculation is to provide an estimate of the amount of time from the beginning of the event ta the point at which intervention may be required to maintain control room habitability.

Since the initiating event for failure of the temporary air conditioning system is a tornedo or seismic event, which are low probability events not generally assumed to occur concurrently with an accident, the boundary conditions for a LOCA are not nssumed for this analysis. This assumption, as well as the time of the year for the work,is documented in reference 15. These external events may cause a Chlorine or other toxic pas hazard, therefore outdoor air is assumed to be isolated and the ventilation system is generally assumed to be in the Chlorine mode..

2.

REFERENCES References from Section 2.0 of Calculation OVA 0104 (Base Case) for clarification RI 1993 ASilRAE ilandbook, Fundamentals,1 P Edition i

R2 National Bureau of Standard Report, February 1,1971 Nils Report No.10373 R3 Plant hiodification No. 87125 " Control Room IIVAC Upgrade" R4 Fax Transmittal from Tom Devote to NL llaskell Dated 7/18/96 RS CP&L Drunswick Nuclear Station Design liasis Document, DBD 37, Rev. 2, "CBilVAC" R6 IINP DCBF Il PID S0033D-010001 R7 Notes of Telecon Dated 7/31/96 R8 Fax Transmittal from hir. Victor Weber of Tamms Industries; dated 8/22/96.

l R9 Comoutational Fluid and hicehanies lleat Transfer, Anderson, Tannehill and Pietcher, hicGraw 11i11 RIO Flow of Flpids throuch Valves. Fittines. and pios, CRANE Technical Pape No. 410, 1991.

R11 lleat Transmissien, William II. hicAdams, Third Edition, hicGraw - llill Book Company, Inc.1954.

h a

Computed by:

Date-CAROlJNA POWER & LIGHT COMPANY Calculatlon ID; j

V. A. Tom! nh 01/14/98 OVA-0114 i

Checked by:

Date' Pg.

of Rev

~ ~ ~ ~

D. Norton 01/16/98 CAI.CULATION SHEET 4

g Project Noa File. 8220 I

Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Calculation

Title:

Controt Building Transient Temperature Analysis Dunng Spang Conditions i

+

R12 OVA 0084, Rev. O, Control lluilding Mechanical !!ngineering Room Tempeinture on i

Loss of Ventilatica.

i Additional references used for this calculation:

R13 Ilrunswick Nuclear Plant UFSAR pages 2.3.211,13,14 Site Temperature Data l

R14 PT 26.0, Control lluilding Ventilation System Testing Adjusting, and Balancing,

p'rformed August 1997 R15 Letter IISlip 97 0454, dated November 06,1997. Request for 1.icense Amendments Control fluilding limergency Filtration System Note: The relevant pages for References 2,4,7,8,9, and i1 are included in the Attachments I

3 Il0DY OF CAI.CUI.ATION 3.1 Methodology Brunswick Control Building Room / Area transient temperature pronles are obtained from model simulations calculated by Version 1.52 of RT as used and described in calculation OVA 104. This calculation is performed by modifying a copy of the CBCase2 model for Unmsy,:a Nuclear Station developed in calculation OVA 0104.

CilCase2 was chosen as the model from OVA-0104 that most closely matched the conditions desired for the calculation. In CBCase2, a LOCA has occurred in Unit 1, both i

control room supply fans are operating, and only one of the three air conditioning units is operating. The modincations for this calculation will, in general, adjust the CBCase2

[

model to renect normal plant operating conditions, isolation of external control complex makeup air, and the loss of all roof mounted (control room and computer room) air conditioning units during the spring. The new model will be identined as TORNADOl 4

1 3

RT is a transient heat transfer calculation program developed by llGP, Inc. and licensed to CP&l 's Brunswick Nuclear Plant. Thb sonware is safety related and was installed t,nd validated as correctly reproducing the validation project (s) results an Brunswick Nuclear Plant computer CPU # SA61211WZ5F278, P/N 96143811.

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  • r-Computed by:

Date.

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V A. Tomlins 01/14/98 OVA-0114 Checked by:

Date.

Pg.

of Rev

)

D. Norton 01/10/9B CALCULATION SHEET 18 0

Project Noa File: 8200 Project

Title:

Control Room AC Replacernent Project Brunswick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control 0uilding Transient Temperature Analysis During Spring vonditions 3.2 Inputs and Assumptions 3.2.1 All assumptions for the initial model CilCase 2 from OVA 0104, Revision 0 apply except as modilled or adjusted in this section.

3.2.2 As the event analyzed in this calculation is assumed to occur during February thmugh April, the input for daily outdoor amblent air temperature is 76 Degree F (hiax.) and 63 (hiin.) using data that envelopes hiay, hiny temperatures were l

used since the modi 0 cations may proceed untilla'e April and hiay provides conservative temperatures for the entire length of time. These minimum and maximum temperatures were determined based on UFSAR Tables 2.3.2-4 and 2.3.2 5. From these tables, 'he mean minimum and maximum temperatures for February through hiny are:

hican temperatures in hiin hiax Feb 37.1 53.6 hiarch 46.5 61.6 April 56.1 70.6 hiay 62.3 75.6 3.2.2.1 This information was based on onsite dae from January 1976 through December 1981. Note that this information is more conservative for the months of hierch, April, and hiay than that provided in Table 2.3.2 2 for the average temperatures from 1941 through 1970 based on Wilmington data. The temperature chosen for the analysis was 76

  • F, which envelopes the data from UFSAR table 2.3.2 4 for the mean maximum in February through hiay. Temperature also envelopes the maximum temperature data recorded for February through April from 1941 to 1970, but not the 4

maximum temperature in hiay, Since this case is only expected to exist through the end of April 1998, this is acceptable.

3.2.2.2 The daily range used for this case is based on the mean minimum of 62.3 degrees provided for hiay. A minimum night time temperature of 63 degrees was chosen to be slightly conservative relative to the expected hiay temperatures. Since high temperatures are of concern, this minimum is also conservative for the remaining months.

i

Computed t y; Date:

CAROUNA POWER & UGHT COMPANY Calculaton ID.

V. A. Torekns

' !14/98 -

OVA 0114 Checked by:

Date:

Pg of Rev

~

D. Norton 0 li6/9A cal.CULATION SHEET 6

18 0

Project No2 j

File: 8220 Project

Title:

Control Room AC Replacement Project Brunsmck Nuclear Plant. Unit 1 & 2

~

Ualculation

Title:

Control Building Transient Temperature Analysis During Spnng Conditions 3.2.3 There is no concurrent LOCA event. That is, modificatio :s are required to project model CilCase2 to remove LOCA conditions such as:

3.2.3.1 The emergency fan is assumed to be off, so the outdoor air make-up is reduced to O cfm and the heat load from the fan motor is reduced to 0. In OVA 0104, revision 0 this heat load was distributed across various areas of the control room, so 5 heat load reductions for areas AORRMEF, CTLRMEF, UIEEREF, U2EEREF, and SCTRRMEF are required. The net reduction in heat load is 22,700 llTU/hr for the 7.5 horsepower ^n.

3.2.3.2 Reset the Unit I reactor building temperature from calculated LOCA temperature of 123 F back to normal operating temperature of 91

  • F determined by OVA 0104.

3.2.3.3 Unit I cabi spreading room ventilation fans are asumed to be operating normally (were off for LOCA), but can be restarted using the key-locked bypass switch.

3.2.4 All exterior roof mounted air conditioning units (condensers) are assumed inoperable due to the tornado / seismic event including unit 1 & 2 computer room roof mounted coolers. There is no Control Complex air conditionir.g.

3.2.5 Ground temperature is assumed to be 60 Degree F for the spring of the year (R2).

This is the middle of the yearly temperature variation range for earth 0 to 10 feet 1

below the surface.

3.2.6 -The temperatures in the elevator shall and pipe chase area are assumed to be 80 Deg F for the spring season, which is slightly higher than the selected ambient temperature of 76 'F, The temperatures used in OVA-0104 (90 *F) were based on actual summer measured temperatures and were slightly lower than ambient.

Therefore, the 80

  • F is conservative.

3.2.7 The mechanical equipment room ventilation system is assumed to be shutdown (consistent with the CBCase2 LOCA model) due to a chlorine isolation signal.

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Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V. A. Tomhns 01/14/98 OVA-0114 Checked by:

Date.

Pg of Rev D Norton 01/16/98 CALCULATION SHEET 7

18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Ceiculation

Title:

Control Building Transient Temperatura Analysis During Spring Conditions 3.3 Calculation OVA-0104 project (model) description table below is included for reference, No.

EVENT PROJECT ASSUmTIONS NO LOCA/WO CilCASEI A.

'I wo controi complex lans and two A/C umts runmng; LOOP 11.

Only U2 cable spreading room fans running; C.

l.oss of mecharwal equipment room fans; D.

Only U2 computer room NC rtmning; I:.

Total number of people in central control room Ul EE room and U2 I:E room are 20,5, and 5; F.

Ih ent dutation - 720 hours0.00833 days <br />0.2 hours <br />0.00119 weeks <br />2.7396e-4 months <br /> (30 day s);

G.

Emergency fan running; an6 11.

All banery room sentilation fans runnine.

t OCA!WO CllCA51.2 A.

I wo control complex fans and only U2 A/C umt runmng; IOOP 11, Only U2 cable spreading room fan running; C.

I oss of mechanical equipment room fans; D.

Only U2 computer room A/C running;

(

E.

Tetal number of people in central control room, UI EE

]

toom und U2 EE room are 20,5, and 5; F

Event duration - 720 hours0.00833 days <br />0.2 hours <br />0.00119 weeks <br />2.7396e-4 months <br /> (30 days);

G.

Emergency fan rtmning; and 11.

All battery room ventilation fans running.

LOCA/W O CDCASE3 n.

Only U2 fan and its NC umt m control compicy running; 1.OOP II.

Only U2 cable spreading room fans running; C.

Loss of mechanical eqmpment room fans; D.

Only U2 computer room NC running; E.

Total number of people in central control room, UI EE toom and U2 EE room are 20,5. and 5; F.

Event duration - 720 hours0.00833 days <br />0.2 hours <br />0.00119 weeks <br />2.7396e-4 months <br /> (30 days);

G.

Emergency fan running; and 11.

All battery roorn ventilation fans running.

NISLil W/O CllCASE4 A.

Iwo control complex fans and only U2 NC umt running; IOOP II.

Only U2 cable spreading room fan.,mning; C.

Loss of mechanical equipment room fans; D.

Only U2 computer room A/C running; E.

Total number of people in central control room. Ul EE room and U2 EE toom are 20,5, and 5; F.

Es ent duration - 720 hours0.00833 days <br />0.2 hours <br />0.00119 weeks <br />2.7396e-4 months <br /> (30 days);

G.

Emergency fan running; and 11.

All battery room ventilation fans running.

3.4.1 Event Analysis 3.4.1.1 This calculation examines the transient heat up of the control building for postulated external events which assume concurrent failures of portions of the CBilVAC system for a tornado event on unit #1 &2 causing loss of control room air conditioning cooling capaci!y, computer room cooling capacity, and a concurrent chlorine accident dictating isolation of all Control Room outside air makeup flow. All normally operating plant

~

Computed by:

Date:

l CAROLINA POWER & LIGHT COMPANY Calculation ID.

V. A. Toml:ns 01/14/98 OVA-0114 Checked by:

Date:

Pg cf Rev D. Norton 01/16/98 CALCULATION SHEET 8

18 0

Project No.:

File. 8220 Project

Title:

Control Rooni AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spnng Conditions equipment, other than llVAC Fan / Cooler heat loads specifically modeled,.

is assumed to remain energized (heat load continues) because there is no assumed LOCA nor concurrent loss of off site power (LOOP).

3.4.2 Calculation OVA 0104 scenario case 2 (CBCASE2) is the existing model most easily modified to represent the Tornado conditions. The CBCASE2 model assumes a Unit 1 LOCA occurs with other concurrent failures leaving only one Control Building Air Conditioning Unit supplying the 49' elevation, and both the supply and exhaust ventilation to the Unit 1 Cable Spreading Room on elevation 23' shutdown and isolated. Two (2) of the three control room supply / recirculation fans continue to operate.

Both supply and exhaust fans in the Mechanical Equipment Room (MER) automatically isolate on high radiation. The emergency fan for the 49' elevation is started and runs to provide outside air makeup and emergency flow recirculation to Unit 1. Modifications to the CBCASE2 model will remove the LOCA specific conditions and then add the specific conditions and assumptions required to model the postulated Tornado cvent. Specific model changes are identified in section 3.6 below.

3.5 Room Definitions and initial Conditions 3.5.1 Table 3.1 provides a bnerdefinitior, of the rooms ar.d the corresponding ID, as well as the initial temperature in each room for case TORNADOl. The differences between OVA-0104 and this model are described in Section 3.7. A more detailed description of the rooms and boundary conditions may be found in OVA-0104, revision 0, At.tschment D.

Table 3.1 initial Room Temperatures No.

Room Room Descriptiott Type Initial Temp 1 EARTH Ground B

60 2 E LECW Electncal Wire way B

70 3 PIPTL Pipe Tunnel B

70 4 RW1 Radwaste Bida et from 23' to 44' B

87 5 RW2 Radwaste Blda el from 44' to 64'6" B

87 6 U1RX Unit 1 Reactor Buildino B

91 7 U1181 Unit 1 TB en from 23' to 38' B

87 8 UlrB2 Unit 1 TB el frorn 38' to 55' B

87 9 UITB3 Unit 1 TB el from 55' to 70-B 87 10 U2RX Unit 2 Reactor Buddinq B

91 11 U2TB1 Unit ? TB el from 23' to 38' B

87 12 U2TB2 Unit 2 TB el from 38' to 55' B

87 13 U2TB3 Un t 2 TB el frnm 55' to 70' B

87 14 WCC Work control center B

76 15 ATM01 outdoor ambient F

76 L

16 AIRLK Air Lock rrt e8 49'0" C

76 17 AORRM U t & 2 auuman/ operator ready im C

74 18 CTLRM U182 control room C

75

Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation !D-V. A. Tomlins 01/14 h OVA-0114 Checked by:

Date:

Pg of Rev D. Norton 01/16/98 CALCULATION SHEET 9

18 0

Project No.:

File: 8220 Project Title.

Control Room AC Replacement Project Brunsuick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spring Conditions No.

Roc m Room Description Type initial Temp 19 ELVTS EWyator shan C

80 20 KITCH Kitchen C

75 21 toVRM L ady's room C

78 22 MENRM MENS ROOM C

78 23 MERM1 Mechanical room 1 C

76 24 MFRM2 Mechanical room 2 C

76 25 MFRM3 Mechanical room 3 C

79 26 PL E MN HVAC MIXING POINT C

75 27 RATL1 Rattle space between C8 and TG8 C

81 5 28 RATL2 Rattle space between CB and Radwst C

77 29 RATL3 Rattle space btwn cb & 2RX C

75 30 RATL4 Ra' tie space btwn eb A 1RX C

75

31. CTRM Secunty room C

78 32 U1 AIR Dead air space h gi 8 C

91 33 U18RA 01 Battery Rm.1 A C

88 34 U18RB U1 Battery Rm.1E C

89 35 UICA3 U1 Cable access way 1 C

94 36 UICAA U1 Cable access way 2 C

84 37 UICPU U1 computer rm C

68 36 U1CSA U1 Cable spreadmq area C

87 39 UIEER U1 electncal equipment rm C

75 40 U1 PIC U1 pipe chase C

- 80 41 U1STW U t staina eil C

88 42 U2 AIR Dead air space @ cl 18 C

91 43 U28RA U2 Battery Rm. 2A C

87 44 U2BRB U2 Battery Rm. 28 C

89 45 U2CA1 02 cable access way 1 C

94 46 U2CA2 U2 cable access way 2 C

84 47 U2 CPU U2 computer rm C

68 48 U2CSA U2 cable spreading area C

83 49 U2EER U2 electncal equipment rm C

75 50 U2PIC U2 pipe chase C

80 51 U2STW U2 stairway well C

88 52 AC01 AC Supply B

n/a 3.6 HVAC Flow & Cooling Loads 3.6.1 HVAC Flow The total normal supply of HVAC flows to control building 49' elevation are 15233 CFM and 16671 CFM for Unit I and 2, respectively. A smaller flow of 15233 CFM is used for both Units for conservatism. The total supply of HVAC llow for the control areas and the spreading rooms is the same as in the CBCase2 i

model. The total supply for the battery rooms for both unit 1 & unit 2 has been reduced to a minimum flow of 3000 CFM for conservatism and physical flow balancing margins. Exfiltration from the electrical equipment rooms and the cable spreading rooms has been rerouted directly to atmosphere instead of the respective cable spreading rooms as a more conservative assumption. HVAC flows between the battery rooms and the cable spreading rooms have been

Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V. A. Tomhns 01/14/98 OVA-0114 CNecked by:

Date:

Pg of Rev L>. Norton 01/16/98 cal CULATION SHEET 10 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Calculetion

Title:

Control Building Transient Temperature Analysis During Spnng Conditions reduced to zero to reDect physical plant IIVAC balancing efforts and is also a more conservative assumption for the cable spreading room transient temperatures. For this TORNADO model case, the unit #1 cable spreading room and battery room ventilation is operable per assumption 3.3.4 The mechanical equipment room ventilation is shutdown per assumption 3.3,8. During normal plant operation configuration, the control complex outdoor make-up air and exhaust air now rates are 2000 cfm and 512 cfm, respectively For this case, aj make-un damners oce closed allowing for the additional assumption of concurrent tornado damage causing a chlorine release, 3,6,2 Cooling Loads The design cooling capacity is 254,293 Btu /hr with 10,000 CFM air now per cooling coil which includes 202,352 Btu /hr r.ensible heat. The total sensible cooling capacity for each unit (2 coils per unit)is 404,704 Btu /hr (=2 coil X 202,352 BTU /IIR-coil). The cooling capacity for each areas @ Elevation 49' l

under the design basis scenario is distributed based on the Dows calculated in OVA-0104 For this TORNADO model, the air conditioning cooline capacities are irrelevant as all cooline capacity is assumed to be reduced to 7ero.

3.'

The following are the changes made to model CBCase2 to create model TORNADOl.

(Chances Only)

These changes are in boundary and fixed conditions. The " room" temperature are fixed between the high and low limits shown.

Room item Iwm To Notes ATM01 Room Temp U3 76 was summer Low Limit 75 63 was summer Iligh Limit 93 76 was summer Fi.RTil Room Temp 70 60 was summer Low Limit 70 60 was summer liigh Limit 70 60 was summer UlTB2 Room Temp 104 87 adjusted forlower Low Limit 104 87 ambient liigh Limit 104 87 UlTB3 Room Temp 104 87 adjusted for lower Low Limit 104 87 ambient fligh L.imit 104 87 U2TB2 Room Temp 95 87 adjusted for lower

_ __J

-.- ~

I Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V, A Tomhns 01/14/98 OVA 0114 Checked by:

Date:

Pg.

of-Rev D. Norton 01/16/98 CALCULATION SHEET 11 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis Dunng Spring Conditions Room Item From To-Notes Low Limit 95 87 ambient liigh Limit 95 87 U2TB3 Room Temp 95 87 adjusted forlower Low Limit 95 87 ambient liigh Limit 95 87 WCC Room Temp 93 76 adjusted forlower Low Limit 93 76 ambient fligh Limit 93 76 RWl Room Temp.

104 87 adjusted forlower Low Limit 104 87 mnbient liigh Limit 104 87 R W2 Room Temp 104 87 adjusted forlower Low limit 104 87 ambient High Limit 104 87 UIRX Room Temp 123 91 See 3.2.3.2 Low limit 123 91 liigh Limit 123 91 Note: All of the following adjustments are for the lower ambient and apply to the room starting temperature only, the model immediately adjusts these room temperatures to the appropriate value.

MERMI Room Temp 92 76 MERM2 Room Temp 92 76 MERM3 Room Temp 96 79 RATL1 Room Temp 98.5 81.5 RATL2 Room Temp 94 77 RATL3 Room Temp 92 75 RATL4 Room Temp 92 75 UlBRA Room Temp 105 38 UIBRB Room Temp 106 89 UlCSA Room Temp 104 87 U2 BRA Room Temp 104 87 U2BRB Room Temp 106 89 UIPIC Room Temp 90 80 See 3.2.7 U2PIC Room Temp 90 80 See 3.2.7 U2CSA Room Temp 100 83

Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculatjon ID:

V. A Tomhns 01/14/98 OVA 0114 Checked by:

Date:

Pg.

of Rev D Norton 01/16/98-CALCULATION SHEET 12 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Calculation Title.

Control Building Transient Temperature Analysis During Spring Conditions Walls item From To Comment eel-llV2 RoomB UICSA ATM01 Extiltration to Atm eel-llV2 Flow 770 0

Assumed zero EE2-IIV2 RoomB U2CSA ATM01 Extiltration to Atm EE2-IIV2 Flow 770 0

Assumed Zero BRl-llVI Flow 3549 3000 Min Flow BRl-IIV2 Flow 3549 3000 Min Flow BRI-ilV3 Flow 390 0

Assumed Zero BR2-1IV1 Flow 3481 3000 Min Flow BR2 IIV2 Flow 3481 3000 Min Flow BR3-1IV-1 Flow 3252 3000 Min Flow BR3-ilV2 Flow 3252 3000 Min Flow BR4-ilVI Flow 3290 3000 Min Flow BR4-IIV2 Flow 3290 3000 Min Flow BR4-IIV3 Flow 245 0

Assumed Zero MIX-WO2 Flow

-11649.68

-11712.18 Recire MIX-W12 Flow

-11765.48

-11791.98 Recire MIX-W17 Flow 1541 0

Makeup Air Off MIX-W16 Flow 548 0

Makeup Air Off Ileatsource/ sinks item From To Comment U2EERCL BTU /ilR

-344553 0

No NC U2CTLCL BTU /HR

-47348.6 0

No A/C SCTRMCL BTU /IIR

-12822.3 0

No A/C U2CPUCL BTU /IIR

-60000 0

No AiC U1CSAFN BTU /1IR -

0 44400 Cable Spread Fan On AORRMEF Delete 296.1 0

Emergency Fan Off CTLRMEF Delete 3041.33 0

Emergency Fan Off UlEEREF Delete 359.60 0

Emergency Fan Off U2EEREF Delete 9340.47 0

Eme gency Fan Off c

SCTRMEF Delete 9662.50 0

Emergency Fan Off Globals item From To Comment Description Tornado with loss ofA/C Avg.

69.5 Daily Range 6.5 63 to 76 Deg Data Out Skip 20 0.1 hourly data

4 Computed by:

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID.

V. AcTomhns 01/14/98 OVA 0114

-Checked by:

Date:

Pg-of Rev D. Norton 01/16/98 CALCULATION SHEET 13 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spring Conditions 3.8 Assumption Summary for TORNADO] Model No.

EVENT PROJECT ASSUMPTIONS A

Normal 1ORNADO A.

Control Complex air conditioning capacity lost Plant

11. UI & U2 only computer room A/C Off.

Operation C.

Two control complex supply /recire fans running with D.

Makeup air closed due to chlorine release; i.e.;

external E.

Emergency fan not running es ent.

F.

Ui & U2 cable spreading room fans running tornado G.

UI & U2 ilattery Room fans running II. Mechanical equipment room fans not running 1.

Total number of people in central control room, UI EE room and U2 EE toom are 20,5 and 5 J.

Escnt duration - 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> ( calculate 10)

K.

Outside air daily range is 63 to 76 Degrees F.

4 RESULTS AND CONCLUSIONS 4.1 Results for Project Model TORNADOl 4.1.1 Tmnsient Temperature Profiles The database for case TORNADOI was used as indicated above. Runs using the RT' computer program were made for a duration 6f 10 hours1.157407e-4 days <br />0.00278 hours <br />1.653439e-5 weeks <br />3.805e-6 months <br /> although only eight hours are expected to be used. A time increment of 0.005 hour5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> was selected to obtain stable and convergent results. Simulation parameters and other input data are provided in the following pages. In order to assure that the most conservative time of day for the starting time for the simulation was used, runs were made starting at 9 AM,12 Noon, and 5 PM. The temperature difference in the control room was less than one degree F however, the highest temperatures in the control complex were observed when starting the simulation at 5 PM therefore the calculation results presented are based on the run starting at 5 PM. A set of graphical plots of the transient temperature profile in each calcuhtion room / area in the Control Building is provided in this section along with a tabulation of the maximum resulting temperatures over the 8 hour9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> duration. Graphical plots only of the data output for the 9AM and 5 PM start times for the critical areas are included in Attachment D. A complete set of temperature data output for the 5 pm run at 0.1 hours1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> increments for 10 hour1.157407e-4 days <br />0.00278 hours <br />1.653439e-5 weeks <br />3.805e-6 months <br /> duration is included in Attachment C.

4.1.2 Maximum Temperatures The maximum temperatures (rounded to the nearest degree F) for each calculation roont area in the Control Building are summarized in the Table 4.1 below at a

/

+

Computed by:

Date; CAROLINA POWER & LIGHT COMPANY Calculation ID:

V. A -Tomlins 01/14/98 OVA-0114 Checked by:

Date:

Pg.

of Rev D, Norton 01/16/98 cal.CULATION SHEET 14 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spring Conditions time increment of 0.1 hours1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br />. All are based on a 5 PM start time and 8 hour9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> duration.

The Unit I and Unit 2 Cable Spreading Room maximum temperatures are 89 and 85 "F, respectively. The maximum temperature @ 49' elevation occurs @ about hour 8 in U2 Computer Room in which A/C is lost and is 115 "F. The maximum temperatures in the Central Control Room, Ul Electrical Equipment Room, and U2 Electrical Equipment Room are 95 'F,97 'F, and 98 'F respectively and all occur @ hour 8.

Table 4.1 NO.

ROOMID ROOM DESCRIPilON MAX MAX TEMP TEMP OCCUR @ ilR

( 'F )

i U2CA1 U2 Cable Access Way @ elevation 23' 93 0.1 2

U2CA2 U2 Cable Access Way @ elevation 49' 85 1.9 f

3 U2CSA U2 Cable Spreading Area 85

. l.0 4

U2STW South Stairway Welt 88 8,0 5

U2Plc U2 Pipe Chase 78 0.4 0

U1PIC U1 Pipe Chase 82 80-7 U2BRB U2 Battery Room C 2b 90 05 8

U1BRB U1 Battery Room C 1b 90 04 9

U2 BRA U2 Battery Room C 2a 88 0.6 to U1 BRA U1 Battery Room C 1a 89 0.4 16 UICSA U1 Cable Spreading Area 89 2.1 12 UICA3 U1 Cable Access Way @ elevation 23-u3

o. g 13 UICA4

. U1 Cable Access Way @ elevation 49' 85 3.0 14 U1STW North Stairwell 94 8.0 15 U2EER 14 Electncal Equipmant Room 98 8.0

.16 U2 CPU U2 Computer Room i15 80 17 MENRM Men's Room 93 30 18 SCTRM Secunty Room 91 80 19 LDYRM Lady's Room 88 80 20 KITCH Kitchen 91 8.0 21 CTLRM UI&2 Control Room 95 8.0 22 U1EER U1 Electncal Equipment Room 97 80 23 AORRM Ut & 2 Auxiliary Operator Ready Room 93 80 24 UICPU U1 Computer Room 144 8.0 25 ELVTS Elevator Shaft 88 7.9 26 MERM1 Mechanical Room 1 76 0.3 27 MERM2 Mechanical Room 2 77 1.0 28 MERM3 Mechanical Room 3 75 0.1

Computed by;

- Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID:

V. A:Tomlins 01/14/98 OVA-0114 Checked by:

Date:

Pg of Rev D Norton 01/16/98 CALCULATION SHEET 15 18 0

Project No.:

File: 8220 Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 Calculation

Title:

Control Building Transient Temperature Analysis During Spring Conditions 29 AIRLK Air Lock @ elevation 49'0" 77 8.0

- 32 U2 AIR Dead Air Space @ Cl.18 90 0.1 33 U1 AIR Dead Air Space @ Cl. 8 90

0. t

. 4.1.3 - 72 Ilour Simulation An additional calculation (run) using a copy of the Tomado Project was made for a simulation duration of 72 hours8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br /> with hourly data output. The results for the Control Complex areas is provided as the last plot in this Section 4 and the output data is included in attachment C.

4 i

1 l

Computed by.

Date:

CAROLINA POWER & LIGHT COMPANY Calculation ID:

V. A. Tomlins 11/25/97 OVA-0114 Checked by:

Date:

Pg.

of Rev l

D. Nortun CALCULATION SHEET 16 18 0

i Project No.:

File 8220

\\

\\

l Project Title.

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 & 2 l

Calculation Title.

Control Building Transient Temperature Analysis During Spring Conditions Tornadol Model Temperature Profile Simulation start at 5 PM Max outdoor Temp 76 Degrees Control Areas & Cable Spreading l

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Checked by.

Date-Pg.

of Rev D. Norton CALCULATION SHEET 17 18 0

l l

Project No.:

File: 8220 Project

Title:

Control Room AC Rep'acement Project Brunswick Nuclear Plant Unit 1 & 2 Calculation Title.

Control Building Transient Temperature Analysis During Spring Londitions Tomadol Model Tempes.iture Profile l

Simulation start at $ PM Max Outdoor Temp 76 begrees t

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l V A. Tomlins 11/25/97 OVA-0114 Checked by; Date:

Pg.

of Rev D Norton CALCULATION SHEET 18 18 0

1 l

Project No.:

File: 8220 l

l Project

Title:

Control Room AC Replacement Project Brunswick Nuclear Plant, Unit 1 r 2 Calculation

Title:

Control Building T ransient Temperature Analysis During Spring Conditions Case Tornado for 72 llours Run 1/20'98 on benchmarked Project Computer # P46-143811 Copy Project to Tornado 3 from Project Tornadol

{

Change Global Screen Duration to from 10 to 72 llours l

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Calculation OVA 011-1 Revision 0 Attachment A Page1of3 CAROLINA POWER & LIGHT COMPANY OVA -0114 Qpntrol Buildina Transient Ternoerature Analysis Durina Sprina Conditions Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Attachment A IIVAC Air Flows & Diagram

N OVA-0114 ATTACHMENT A Page2 of 3 i

I lsTw K l EXFilTRATION f

NOTE NUMBERS IN PARENTNES!S ARE DESIGN DATA TAKEN FROM DRAW!NG FRW SH1 125M o u gi%903 l

UIEIR 7

EMERG RECIRC FAN OFF 15233 (19000)CFM 397 OM (615) l^NM lM Ut Off r

3M (382$FM

~

'VC CFM (1700) 00IsIDE AtR St.Rf llP Of F

';f' F

KEUP O CFMf2000) h AIR F il.TI R h

v AIR CASING y

^)

14187 M(15500) 13749 CfM(15500)

J 0

U2 Off 3000 CFM(3450) 3000 CTM(3450) l l

15233 (19000)CT M r

3000 Cru(3-50) 3000-.FM(3.50) 832 CTM (615)

.x. 4 ot I?*8CTM U2 BRA (1611 9 h

4 F

=

U2CSA

'IONE 2BRB 0 CF J MEN

-0 CFM Enhant UFF d

u U1CSA 304S6 CFM Ba!anced Flow (MiOCC)

C EXHAUST r

FIGURE A-1 HVAC FLOW PATH FOR TORNADO MODEL

( __

m CV44114 AnachmerQ A -

Page 3 of 3

'Tomado Modet COOLING LOADS AND FLOWS FOR TORNADO R40 DEL

^# h i

RM DES 8Gr?

MEASURED REF FLOW USED IN ROOM.TrALL REC 1RC WALL COOLleeG NEAT CALCULATION,

SPECFIED FLOW SPECF3ED LOAD SOURCE /S1HK UICSA, SUPPLY 15500 13749 no,R14 13749 CSimvtr2 UICSA EAHAUST 15300 12774 R4 R14 12774 U2CSA. SUPPL Y 15500 14187 R4 R14 14187 CS2*v1/2 U2CSA EXHAUST 15300 13396 R4 Rt.

13396 U1 BRA. SUPPLY 3350 3252 R4.R14 3000 tsR3-Hv1/2 U1 BRA EAMAUST 3450 3e52 R4. R14 3000 U16Rfs. SUPPLY 3350 3290 R4.R14 3000 BH4.wv1/2 018R8.EAHAUST 3450 3535 R4 R14 3000 U2 BRA SUPPLY 3350 3549

44. R14 3000 BR 1-Hv1/2 y

U2EER 21000 16525 R3 ll 12968 18 0

ViA-WO1 i 12968 16 IRLWO2 OFF U2EE Rt,t UtEER 2200 15961 5 R3 l

12535 98 l

UtK-W11 l 12535 976 l MthW12 ) OFF l U1E ERCL UtCTL 2000 2926 R3 j

2299 62 l

MILWO9 j 2299 6171l MILW10 l 06F l

U1CTLCL I

U2CIL 2000 2271 R3 l

1782 19 l

M;LWOS l 178213 l MILWO6 l OFF l

U2C T LC L SCTRM FROM U2 00CT 615 615 NO MEASUREMENI DA T A l

462 63 l

M A-WO3 l 462 63 l M;A-WO4 l OFF l SCIN MCt AORRM FROM U1 OUCT 10L0 506 R3 397 41 M:LW13 397 40sti M5 a.W14 OFF AC4*MCL U1 CPU 5 TON BNP F-04060 LH 1 OFF OFF UtCeuct U2 CPU S TON BNPDr F-04u80 SH 1 OF F -

OFF U2Crin RE TURN & MAP EUP AtR M1AING PLENUM PLE MN FLOW FROM U2CSA TO U2 BRA 0

6H 1 *v3 FLOW FROM U2SCA TO U2tsR8 0

6R2*v3 FLOW FROM U1CS A TO U1 BHA 0

BR3-Hv3 FLOW FROM U1SCA 10 U1BRB 0

BH4mv3 EARLTRATION FROM U1EER 825 0 00 E E1*V2 EAFiliRAilON FROM U2EER 825 0 00 E E2WV2 NORMAL ExMAUS1 FROM MENRM 350 0

R4 0 00 ux-W15 0

Mtx-fr16 U1 CONTROL COMP IOTAL SUPPLY 19000 15233 R3 U2 CONTROL COMP TOTAL SUPPLY 19000 15233 Use U1 h for conservatism U1 CONTROL COMP IOTAL FROM SUPPLY REGtSTER 19395 5 U2 CONTROL COMP TOTAL F ROM SUPPLY l

l l

l l

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REGISTER 19411 g

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l U1 RECIRC FLOW l

15233 00 lwA l

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l U2 RECiRC FLOW l

15233 ro lNsA l

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TOTAL REC 1RC FLOW l

30466 00 l l

l l

l OUISIDE MAKEUP air 0

l cjwA.W17 l

l l

l IOI AL U1 RECIRC 15233 TOTAL U2 RECIRC 15233 TOTAL OUTSiOE MAKEUP O

15233

{

TOTAL EMERGENCY RECIRC 0

15233 i

TOTAL 30466

  • TOTAL St*PPL r NOTE.

I

1. EXFILTRATION IS ASSUMED TO BE FROM U1 EER TO Atmosphere whether dwect or wra 01 CSA.
2. EXFILTRATION IS ASSUMED TO BE FROM U2 EER TO Atmosphere whetner dwect or via 02CSA.

3 Erft! raton between Battery Rooms and Cable Spreading Rooms es conservatvely assumed b be zero 4 Flows on 49' elevaton are distreuted based on duct configuraton and total fan et.pply calculated as follows Actual h to U2 EER = 1296818 CFM = (measured flow from supply regrs*ar (16525 CFMy Total U2 total flow from supW regreers (19411 CFM) ) X U2 actual tan h (15233 CFM)

- I 5 All Battery Room supply and exhaust fan flows are assumed to be balanced and are set at 3003 CFM for cor' servat'sm i

1/2098 5 22 PM i

Calculation OVA-0114 Revision 0 I

Attachment Il Page I of t 2 CAROLINA POWER & LIGHT COMPANY OVA -0114 Control Buildina Transient Temperature Analysis Durina Sprina Conditions C_ontrol Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Attachment II Computer Program Input Data

l ova-otm, A %ck 6,pp l

.j Roem/ Wall Layest Data Fom ID Cell D*scrireion Tvrie Volume Call Tee Lo 1.imit Hi' Lim:t N! !

Film Desistances Wall ID Room A Room B Wall D*scrirt ion

  • utl Slicas Wall R A S d*

P Sida Ws!!' Arn AIRLK Air Inck # el 4 9' 0* -

C 2078.13 76.00

-2t0.OD 400.00 AIR 002 A-ALK-E02 AIPl t WCC Docr 203 e rw btwn Ne & P DOOPRMI 1

2.525 0.680 D ASD

.19 A0 A-ALK-E01 AIRLK ATM01 Wall e tw bt wn Mc & P f rom el 49' t CCNCO2 -

16 2.000 0.680' O.680 35.39 A-ALK-E03 AIRLK AMI Wall e rw btwn Ne b P f rom el 49' t CON 72 16 2.000 0.680 0.250

25. M B-EE2-FL3 U2EER AIRLK Floor a el 57*-9*

C:.*"02 12 1.500 0.610 0.610 36,94 B-EE2 EC4 U2EER - AIRLK. Door 204 from electrical egsipment SBR 1

2.253

. 0.660 OAe9 17AS B.

CS2-CL4 U2CSA AIRLK Ceiling e el 43*-O*

COFCO2 12 1.465 0.610 0.610 36.94 B-EE2-E03 U2EER A.RLK Wall boundad by Air Lock e rw btwn CotCO2 16' 2.000 0.650 O Aeo 66.10 B-EE2-E02.. U2EER AIRLE Wall boundec by Air Lock a el 49' b CONCO2 16 2.000 O ASC 0 660 24_17 Room A!RLK has 3, Owned Walls and jl[ Non-Owned Walls Pooe TD Cell !*scrirt ion Tyre Volume Cell Tem Lo Limit Hi Liad

' =L Film Ferista v *s Wall TD Room A Soam B wall D*scr2ptton hti Slicas Wall R A S M*

9 S Ma hi l ' 3tm ACRRM

- U1 & 2 auxiliary cperator ready re C

7552.94 74.00.

-200.00 400 AIR 002 A-AOR-CL1 AORRM M2 ceiling e el 70'0*

CONCO2 6

0.667 0.610 C.610 109.90 A-AO"t-CL2 AORRM ATM01 ceiling e el 70'0*

CONCO2 16 2.000 0.61C 0.250 246.t1 A.

AOR-WO1 AORRM RATL1 Wall e tw J btwn el 11s & 13 from e C03 02 16 2.000 0.680-4.550 159.24 A-MIX-W14 AORRM FLEPCf MIIIN3 WALL AIR 002 1 * * " * -

0.690 0.680 6 00 A-MIX-W13 AORRM FLEMN MIXING WALL AIR 002 1' * * ***

C.660 C A8U OAQ A-AOR-WC2 ADRRM RATL1 Wall e tw J btwn el 10e 6 ile from CCNCO2 16 2.000 0.680 4.550 310 ?!

B-CTL-WO6 CTLRM ACFRM Wall # tw Lc bt wn el 11c & 13 from CRBI01 1

0.620 UA80 0,480 ~

71.11 B-KIT-N01 KITCH ACFAM Wall e el btwn 11c & 13 and rw btwn CRSLC1 1

0.823 O A93 0.660 n7 05 B-eel->05 UIEER AORRM Wall e tw Le btwn el lie & 13 from CPSLO2 1

0.820 0.f80 0 660 e6.17 B-CSI-CL7 UICSA ACRRM Ceiling e el 49'-C' C W "02 6

0 A67 0.610 D.610 Me.69 B-eel-WO6 UIEER ADERM Mall e tw Le 1-twn el ice 6 11C from CFPLC1 1

0.823 0 A80 C A80 2sL 97 B.

eel-WO7 UIEER AORRM Door 214 e rw Le btwn el loc & lic AIR 002 1

0.000 0.34E 0 330 42, M B+

ST1-SO2 U1SW ACRH4 Wall e el btwn 10c & lic and btwn r CRELC1 1

0.623 0.650 D A80 305 M s Room AORRM has 6 Owned Walls and 7 Non-Owned Walls Emm ID rell Descriptien gpg Volum*

Call Tam Lo Limit Fi Livit Mat i Film Fesistan m Wall ID Room A Recm B wall Deser mtion Nel Slicas Wall R A FMa B SMe Will Arn ATM01 outdcor ambient F 1000000000.00 76.00 63.00 76.00 AIR 002 A-CSI-E03 AW01 UICSA Wall e rw btwn Mc & P and btwn el CCNCO2 16 2.000 0.250' C.680 215,22 B-ME2-S01 MERM2 ATM01 Wall e cl 14e btwn rw J & Nc from e CONCO2 16 2.000 0.690 0.250 5%.71 B-BR4-HV1 MERM1 Am01 Dummy wall for vantilation supply AIRCO2 1 * * ". * "

0.140 '

O.340 0.00 B.

ME3-CL1 MERM3 AW01 ceiling e el 80'C" CCNCO2 9

1.000 QA10 0.250 142 22 B-EE -CLS-U2EER Am01 Ceiling e el 70*

CONCD2 16 2.v00 0410 0.250 3929.63 B-ME3-S01 MERM3 ATMG1 vall e el btwn 14e & 15e btwn rw J CDNCO2 8

1.000 0.680 0.250 120.03 B-ME2-S03 MERM2 ATM01 Door 3C2 A & 9 e el 14e btwn rw J 6 DOCERM1

'1 2.530 0 680 0.250 44.58 B-ME3-E01 MERM3 ATM01 vall e rw btwn Le & Me and cl btwn CONC 02 8

1.000 0.680 0.250 96.00 B-BR2-Hv1 MERM1 ATM01 Dumm/ wall for vent supply AIR 002 1 **** * ~

0.340 0.340 0,M B-SCT-CL1 SCTRM Am01 ceiling e el 7D*-G" COFCO2 16 2.000 0 A10 '

J 250 36.44 B.

CSI-HV1 MERMI ATM01 dummy wall for ul esa ventilation AIR 002 1 " * * * "

0 340 0.340 0.03 B-CA3-E02 UICA3 ATM01 Wall e zw btwn Ne & P btwn el 8 & 9 CONC 02 16 2.000 0.650 0.250 43 33 B-CS2-E04 U2CSA AW01 Wall e rw btwn Mc & P and btwn el 1 CONCO2 16 2.000 0 A60 0.250 136 AC B-CA4-E01 UICA4 ATM01 Wall e rw btwn Ne & M and btwn el 9 CONCO2 16 2.000 OA80 0.250 1W. &J B-EE2-Ela U2EER ATM01 Wall 4 tw btwn Nc & P and btwn el 1 CONCO2 16 2.000 C A00 0.250 590.03 B-eel-E03 UIEER ATM01 Wall e rw btwn NC & P and btwn el 8 CurCO2 16 2.000 0 680 0.250 IJ23.GD B-BR3-HV1 MERMI ATM01 Duncy wall for ventilation supply AIR 002 1 **** ***

0.340 0.340 0.00 B-ST1-CL2 U1STW ATM01 Ceiling e el 70'-0*

CNCO2 16 2.000 0.610 0.250 140.95 B-CS2-HV1 MERM1 ATM01 Dummy wall for vent supply AIR 002 1 " * * "

  • 0.340 0.140 0.00 B-CA1-E02 'U2CA1 Amol Wall e rw btwn Nc E M btwn el 18 an CONCO2 16 2.000.

OA80 O A40 43.33 B-ME2-CL1 MERM2 ATM01 ceiling e el 88'0" CONC 02 16 2.000 0.610 0.25G 2MOMO B-CA2-E01 U2CA2 Am01 Wall e rw btwn Ne & M and btwn el 1 CCNCO2 16 2.000 0.680 0.640 130.00 B-ME2-N01 MERM2 ATM91 Wall e cl lic btwn rw J & NC from e CONC 02 16 2.000 0.660 0.250 744.90 Reom Types: B-Bound. C*Caelulated, F* Function, L* Limit, M* Managed 18:24:30 01/21/98 CP6L Brunswick Etation Ng.

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0.823' O.460 0.680 114.00 B-EE2-WO7 LU2EER ELVTS Wall e rw ic bounded by elevator sh CRBLO1

'l 0.823 0.640 0.660 114.00 3,, CS2-WO8 U2CSA ELVTS Wall e el btwn 14c & 15e btwn rw J 'CRSLC1 1

0.823 0.660 0.640 177J 3 B-CS2-WO7 U2CSA ELVTS Wall a rw k btwn el 14e & ISc from.CeELC1 1

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0.823 0.680 0.680 131,00 B-ST2-N02 U2STW E!VTS Wall e el htwn ite & 15c and btwn r CRBLO1 1

0.823 0.680 0.680 146.11.

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4726.04 75.00

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0.823 0.680 0.680 Iss.67 A.

KIT-E02 KITG U1EER Door 213 e rw k L wn el 11e & 13 AIR 002 1

0.000 0.340 0.340 19,60 A.

KIT-Mol KITCH DATL1 Wall e Tw J btwn el lie 6 13 from e CON 002 16

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0.823 0.680 0.660 164. M B.

CSI-CL3 UICSA KITCH Ceiling # el 49*-0*

CCNCO2 6

0.667-0.610 0.610 221. M S.

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1.000 0.680 0.660 142 M B-PCI-E03 U1PIC RITCH Wall e tw btwn J & Le and el btwn 1 - CCNCO2 f

1.000 0.680 0.6s0 111.*3 I

Room KITCH has 6,, Owned 4 alls and 4 Nen-Owned Walls.

Rm m ID Cell Descrirtion Tvrse Volume

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876.59 70.00

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A-LDY-CLI IIrtRM' MERM2 ceiling a el 70'0*

CONCD2 6

0.667 C.610 0.610 42.11

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A-LDY-E03 LDYRM CTLRM Wall e - rw Le bt wn el 13 & 14 e f rom CRBLD1 1

0.823 0.680 0.480

49. 7 I

A-LDY-E02 LDYRM U1EER Door 212 e rw Le btwn el 11c & 13 DOORRM1 1

2.540 0.600 3.690 19.60 l

A-LDY-E01 LEYRM 01EER Wall a rw Le btwn el 13 & 14e from CPBLO1 1

0.823 0.680

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CRBLC1 1

0.823 0.680 0.680 164,36

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B-SCT-N05 SCTRM LDYRM Double mineral board from el 60* to MINLBRD 1

1.900 C.680 0.680 81.47 i

B.

PC1-E02 U1PIC LDYPM Wall e rw btwn J & Le and el btwn 1 CONC 02 8

1.000 0.680 0.680 IM A4 B-EE2-W16 U2EER IFtRM Wall e el 13 btwo rw J & Ir f rem el CRBLO1 1

0.823 0.680 0.680 64 67 3

CS2-N13 U2CJA LDYRM Wall e el 13 btwn zu J & Le from el CONC 02 8

1.000 0.6dc 0.680 14.86 B.

CSI-CL4 UICSA LDYRM Ceiling a el 49'-0*

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0.667 0.610 0.610 41 11 Room LDYliM has i Owned Walls and 5 Non-Owned Walls i

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1574.72 78.00

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A-MEN.NO3 MENRM. SCTRM Wall a el 14c btwn rw J & Le from CRELC1 1

0.823 0.680 0.680 12c.00 A-MEN-S02 MENRM ELWS Wall e rw btwe J & Le bounded by el CRSLO1 1

0.823 0.680 0.680 114 03 A-MEN-Sol MENRM 'ELVTS Wall e el btwn lec & 15e bounded by CPBLO1r 1

0.823 0.680 0.680 133 00 A-MIX-W16 MEEM FLEMN MIXING MALL AIR 002 1 ~ * ***

0.680 0.680 0.00 A.

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0.667' O.610 0.610 82 H i

Room Types: B. Bound, C=Caelulated, F= Function, L= Limit. M-Malagad IF:24:30 01/21/99 CP&L Brunswick Station i

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1574.72 78.00

-200.00 400.00 AIR 002 B-CS2-M1 " U2CSA MENEM Wall e el 14c btwn rw Middle of J & CONCO2 8

1.000 0.680 0.680 29 y l

B-EE2-W10 U2EER MENRM Wall e el 14e btwn rw J & Lc frm e CRBLC1 1

0.823 0.680 0.680 6f.67 B- _EE2-WO9 U2EER ME!GM Door 211 e zw Lc btwn el 14e & 15c SSR 1

2.250 0.660' O.680 17.49.

B.

??t2-WC8 U2EZR ME!EM Wall e rw Le bounded by 11wnsroom f r CRSLC1 1

0.828 0.680 0.690 E7.Q B.

ST2-N06 U2STW MENRM Mall e cl b*wn el loc & ISC from el CRBLC1 1

0.820 0.680 0.600

% 27 Room MENRM,has B Owned Walls and i Non-Owned Walls Room ID Cell D*seritation Type Volume M T*mp Lo limit Ni Liait N!I Film Fasir* e-es

. Wali In Rom A Reo, B Wall D-scrtet ten Marl slie s Wall R A side e sse n:1 p.,

MERM1 UI & 2 Mechanical roem 1 C

16640.60 76.00

-200.00 400.00 AIR 002 A.

BR3-HV1 MERM1 A*M01 I4.ney wall for ventilation supply AIR 002 1 **."*

0.340 0.340 0 00 A-MEl-E02 MERM1 RATL2 wall e rw btwn NC & P and btwn el CONC 02 16 2.000 0.680' O.550 22.94 A.

MEl-E01 MERM1 Amel Wall e zw btwn NC & F and btwo el 1 CON 002 16 2.000 0 68s 0.250 1010.41 A.

MEl-CL3 MERMI ATM01 cpening 2.

AIR 002 1

0.000 0.610 0.250 60 03 A-MEl-N01 MERM1 Am01 Wall e el lie btwn rw Ne & P f rm e CCNC02

. 16 2.000 0.680 0.250 244.09 A-MEl-CL4 MERM1 A'M01 cpening 3 AIR 002 1

0.000 0.6'O O.2$3 77.00 A.

BR1-HV1 MERMI Amot Dummy rw for vent. supply ATR002 I **.=

0.340 0.340 D.09 A.

MEl-CLS MEFM1 X"M01 opening 4 AIR 002 1

0.000 0.610 0.250 77 M A-MEl-S01 MERM1 ATM01 Wall e el 14e btwn rw Ne & P from e CONCO2 16 2.000 0.6t3 0.250 244 c0 A-MEl-WO3 MERM1 MERM2 vertical epening a rw Ne btwn el 13 AIR 002 1

0.000 0.340 0.340 100.0?

A-CSI-HV1 MERM1 ATM01 dummy wall for ul esa ve-tilation-AIR 002 1

  • m.m 0.340 0.340 C.e0 A-MEl-WC2 MERMI MERM2 vertical oper.ing e tw Nc btwn c1 13 AIR 002 1

0.000 0.340 '

O 340 1M.00 A-BR2-HV1 ME7M1 ATM01 Dummy wall for vent s@ ply AIR 002 1 **

  • 0.340 0.340 0.99 A-MEl-CL1 MERMI Amal ceiling e el 86'0*

CONC 02 16 2.000 0.610 0.250 671:$0 A-BR4-HV1 MERM1 A301 Dumy wall for ventilatiou supply AIR 002 1

.m 0.340-0.340 0.00'

    • ".000 A.

MEl-CL2 MERM1 ATM01 *pening 1 AIR 002 1

0 0.610 n.250

60. 0c A-CS2-HV1 'MERM1 Am01 Dum y wall for vent supply' AIR 002 1 * * * * "
  • 0.340 0.340 0.03 A-MEl-WC1 MERM1 MERM2. Wall e rw N,3 b' wn el lie & 14c from CONCO2 16 2.C00 0.600 0.660 m33,33 B-CTL-CL1 CTLRM MERM1 Ceiling e el 63'4' CCNCO2 16 2.000 C.610' D 61J 945.50 B.

BR1-HV2 U2SRA MERMI Dumy wall for vent supply AIR 002 1 ****

  • 0.34 0 '

O.340 5.00 B.

BR3-HV2 U1 BRA MERN1 Dum y wall for ventilation supply AIR 002 1 ****

  • 0.340 0.349 0.00 B-CSI-HV2 UICSA MERM1 du m y wall for ul csa ventilation AIR 002 1 ** *
0. 34 0 0.340 0.03 B-BR4 M/2 U1BRB MERM1 Dummy wall for ventilatior. supply -

AIR 002 1 * *

  • C. 34 0 '

O.340 0.c0 B-CS2-HV2 U2CSA MERM1 Duway wall for vent supply AIR 302 1 " * * "

  • 0.340
0. 34 0 0.00 3

BR2-HY2 U2BRB MERM1 Dumy wall for vent Fupply AIR 002 1 *"*

  • 0.'340 0.340 0.00 Foom MERMI has 31 Cwned Walls and 2 Nan-Owned Walls Emm ID Cell Descrirtion LTe Volu*

Ce!! T**R Lo Limit Hi Limit Wt l Fil= Rasist eces Walt ID Poom A Room B Mall Desermt ion mtl Slices Wall R A Sida P Side M11 Aram MERM2 U1 & 2 Mechanical room 2 C

  • 2104.80 76.00

-200.00 400.cc AIRoc2 A-ME2-CL1 MERM2 ATN01 ceiling e el 68'0*

COWCO2 16 2.000 0.610 0.2%

2 % 0.50 A.

ME2-S03 MEPM2 Amol Door 302 A 6 B e el 14C btwn rw J & DOORFM1 1

2.530 0.680 0.250 44.9a A.

ME2-W31 MERM2 ATM01 Wall e tw J btwn IIc & 14c from el CONCO2 16 2.000 0.640 0.250 M2MO A.

ME2-N01 MERM2 A301 Wall e el lic btwn rw J & Ne from e CONCO2 16 J.300 0.650 0.250 764.00 A.

ME2-S01 MERM2 Amol Wall e el 14e btwn rw J & Ne from e CONC 02 16 2.000 0.680 0.250 565.71 A-ME2-S32 MERM2 MERM3 Wall e el 14c btwn rw J & Mc f-mi e CONC 02 16 2.000 0.680 0.640 120.00 B-PC2-CL1 U2PIC MERM2 Ceiling e el 70*-0*

AIR 002 1

0.000 0.305 0.305 105.58 B-CTL-CL2 CTLRM MERM2 Ceillng e el 70'0*

CONC 02 6

0.667 0.610 0.610 1M3.00 B-ME*-WO2 MERMI MERM2 vertical opening a rw Nc btwn el 13 AIR 002 1

0.000 0.340 0.340 200.00 B-KIT-CL1 KITCH MERM2 Ceiling e el 70*?*

CONC 02 6

0.667 0.61G O.610 221.36 B-SCT-CL2 SCTRM MERM2 ceiling e el 70' 0*

CONC 02 6

0.667 0.610 0.610 329.02 B-LDY-C1,1 LDYRM MERM2 ceiling e el 70'0*

CONC 02 6

0.667 0.610 0.610 43.11 5-MEl-WO1 MERM1 MERM2 Pall e rw NC btwn el lie & 14e from CONC 02 16 2.0"O 0.680 0.680 633.33 5-MEl-WO3 MERM1 MERM2 vertical opening a rw NC btwn el 13 AIRD02

?

0.000 0.340 0.340 10J.09 Rocn. Types: B.Beund, C=Caelulated, F.Fanction, LaLimit, M-Managed 18:24:30 01/21/98 CP&L Brunswiest Station rsy 5

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o v n - o n % A & A % ' P"J" T Roem/ Wall Layout Data Rym ID Cell Descriotion Type Vel uw Cell Temo Lo Limit E Limit Matl Film F*sist enc *s Wall ID poem A Rom B Wall Descriptim ht!

Flicas Wall R A Sida B Stoe Wall Aras RATL1 Rattle space between CB and 2GB C

911.28 61.50 4 00.00 400.00 PVC300 A.

RT1-WO6 RATL1 Ul?B3 Wall e rw J btwo el 8 & 13 from el. CCMC02 16 2.000 4.550 0.690 1745 00 B-ACR-WO2 AORRM RATL1 Wall s rw J btwn c1 10e & lic from CCNC02 16 2.000 0 680 4.550 310.33 5-CP2-WOI U2CFU RA*LI Wall e rw J btwn el 15c & 16e from CONCO2 16 2.000, 0.690 4.550 148.14 B-ADR-WO1 AOREM RATL1 Wall e rw J ttwn el 11c & 13 fr'w e CCNCO2 16 2.000 0.660 4.550 15?.28 B-ST2-WO4 U2S"Dd RATL1 Wall e rw J btwn el 14c & 15c f rom CONC 02 16 2.000 0.690 4.550 216.32 B.

KIT-W0i KITCH'R TL1 Wall e rw J btwo el lle & 13 from e CONC 02 16

'2.000 0.680' 4.550 213.50 B.

CS2-WO1 U2CSA RATL1 Wall a rw J btwn c1 16 & 16c from e CONCO2 16 2.000 0.690 4.550

,759,09 B- ' SCT-WOI SCTRM RATL1 hall e rw J bt wn el 13 & 15e f rom e CONCO2 16 2 000 0.680 4.550 5.1 M2 8

ST1-WO2 U1STW RATL1 Wall e rw J bt en el 9e & 10c f rom e CLWCO2 16 2.000 0.680-4.550 13 L E 9 B-BR4.WO3 UIERS RATL1 Wall e zu J and btwn el 11c and 13 CONCO2 16 2.CCO 0.660 -

4 550.

444_O B-ST2-WO3 U2STW RATL1 Wall e rw J btwn el 15e & 16c 1.om NO2 16 2.000 0.660 4.550 333.56 B-CPI-WOI UICPU RATL1 Wall e rw 14 btwn el 9c & 10c f rom CONC 02 16 2.000 0.680 4.550 34029 B-EE2-W01 U2EER RATL1 Wall e tw J btwn el le & 16e from e CONCO2 16 2.000 0.680

~ 4.550 626.58 B.

CSI-WC6 UICSA RATL1 Wall e rw J btwn el 20c & Ile from CONC 02 16 2.000

-0.680 4.550 405 3)

B-ST1-W34 U1STW RATL1 Wall e rw J btwn el 10c & 11e from CONCO2 16 2.C00 0.680 4.550 12 L 65 B-CSI-WIS UICSA RATL1 Wall e rw J btwn el lic & 13 from e CONC 02 16 2.000 0.680 4.550 191,17 B-BR2-WD1 U2BRB RATL1 Wall e rw J btwn c1 13 and 14c from CONCO2 16 2.000 0.680 4.550 444,31 B-CSI-W12 UICSA RATL1 Wall e tw J btwn el 6 & 10c from el CONC 02 16 2.000 0.680 4.550 1267.76 B.

CS2-W14 U2CSA RATL1 Wall a rw J btwn el 13 & 14c fsom e CC5002 16 2.000 0.610.

0.680 196.47 B-eel-W16 U1EER RATL1 Wall e rw J btwn el 8 & 9e from el CONCO2 16 2.000 0.640 4.550 633.33 B.

CS2 WO3 U2CSA RATL1 Wall e tw J btwa el 16 & cl btwn 15 CONC 02 16 2.000 0.680 4.559 474.50 B.

eel-W15 U1EER RATL1 Wall e tw J btwn el 9e & 11e from e CCNC02 16 2.000 0.660 4.550 15 c. 6 7 -

B-EE2 W20 U2EER RATL1 Wall e rw J bt wn el 15e & 16e from CONC 02 16 2.000 0.660 4.550 150.69 B-PCI-WOI U1PIC FATL1 Wall e rw J and c1 btwn 13 & 11C fr CON"02 16 2.000 0.690 0.680 M#.00 B-PC2-WO1 U2PIC RATL1 W&1l e tw J btwn el 13 & lac.from e CONCO2 16 2.000 0.660 4.550 504.00 B-ST1-W0i U1STW RATL1 Wall e rw J btwn el 10c & 11c f rm CCNCO2 16 2.000 0.680 4.550 195,73 B-ST2-WO1 U2STW RATL1 W-11 e rw J btwn el 15c & 16e from CnMCO2 16 2.000 0.680 4.55c 11a.29 B-CS2-W11 U2CSA RML1 Wall a rw J btwn el 14c6 15e from e CONC 02 16 2.000 0.680 4.550 295.56 Room RATL1 has 6 Owned Walls and 2,,,7,Non-Owned Walls prm in cell Description Type Volume Cell Tem Lc Liwit Hi Ini t mt1 Fi1= Pasist anca9 Wall ID Room A Room B Wall D*scrirt im mt Slices Wall R' A side B Sida Wall Ar m RATL2 Rattle space between CB and Radwst C

500.56 77.00

-200.00 400.00 PVC3 00 A-RT2-E01 RATL2 RW1 Wall e rw Nc & P and btwn el 8 & 18 CONCO2 16 2.000 4.550 ~

0.680 4586.00 B- ' CTL-E01 CTLRM RATL2 Wall e rw btwn Ne & P and btwn el 1 CONCO2 16 2.000 0.680 4.550 165.86 B.

CS2-E01 U2CSA BATL2 Wall e rw Ne plus btwn el 13 and Mi CONC 02 16 2.000 0.480 4.550 2160.?O B-CTL-N05 C.ILRM RATL2 wall e el btwn Ne & P and bt n cl13 CONC 02 16 2.000 0.680 4.550 2e6.00 B-CSI-E01 UICSA RATL2 Wall e tw btwn Ne & P and btwn el CONCO2 16 2.000 0.490 4.550 21+0.90 B-MEl-E02 MERM1 R.4TL2 wall e zw btwn "c & P and btwn el CONCO2 16 2.000 0.680 C.550 22.94 B.

CSI-E02 UICSA RfTL2 Wall e rw btwn NC & P and Ltwn el CONC 02 16 2.000 0.680 4.550 234<72 5-RT2-E02 RW2 RATL2 Wall e rw Nc & P and btwn el 10c &

LJNCO2 16 2.000 1680 4.550 1159.12 B.

EE1.E01 UIEER RATL2 Wall e tw btwn Nc & P and btwn el 1 CONC 02 16 2.000 0.640 4,550 66.00 B-CA3-E01 UICA3 RATL2 Wall at tw btwn Ne & P btwn c1 8 &9 CON 32 16 2.000 0.600 4.550 -

21000 B-CA1-E01 U2CA1 RATL2 Wall e rw btwn Ne & M bten el 18 an CONC 02 16 2.000 C J90 4.550 21c.00 B-eel-E02 UIEER RATL2 Wall e rw btwn Ne & P and btwn el 8 CONC 02 16 2.000 Oa d0 4.550 351.33 Poom RATL2 has owned Walls and n Non-Owned Walls poom Ic cell Desertorion Type volume Cell Temo Lo Limit Hi Limit Wt l Film P*wi st ances Wall ID poem A Room B Walt D* script ion Wt l Silces Wall R A Side B S24*

W311 To *

  • RATL3 Rattle space btwn eb & 2RX C

75.00 75.00

-200.00 400.00 PVC300 A.

RT3-S01 RATL3 U2RK Wall e C1 18 btwn Iw Nc and P f rom CCMCO2 44 S.450 4.550 0.680 90'.00 B-CA1-S03 U2CA1 R:ITL3 Wall e C1 18 btwn rw Ne and P from CONCO2 16 2.000 0.680 4.550 5 %.67 B-CA2-503 U2CA2 RATL3 Wall e C1 la & around tw Ne from el CnNCO2 16 2.000 0.680 4.550 350.00 Room Types: B. Bound, C=Caelulated, F= Function, 1* Limit. M-Managed 18:24:30 01/21/98 CP&L Brunswick Station Pag - 7

OV A -on% AH e cb B, PM d Roem/ Mall Layou2 Data Reem ID Cell Descrietfen h

Volume cell Terp' Le Limit Mi Limit Nt1 Film Resirtances W11 ID Room A Room B Wall Descrirt itm Nt l Flices Wall R A Sida B Sida L 11 Area RATL3 Rattle space btwn cb & 2RX C

75.00 75.00-

-2C0.00 400.00 PVC300 Rooni RATL3 has J, Owned Wils and 2 Nen-Owned Walle Rvm TD Cell Description

-Tyre Vcluma Cell T*-p Lo Limit. Mi Limit ht 1 Fil5 Resistarves Wall !D Room A R_ om B Wall Descriet t en mt1 Slic*s WulR A Side P S2d*

W il Area RATL4 Rattle space htwn cb & 1RX C

75.00 75.00

-200.00 400.00 PVC300 A-RT4-N01 RATL4 U1RX Mall e c18 btwn rw Mc & M from el CCNC02 44 5.450 4.550 0.680 900.00 B.

CA3 NO3 'UICA3 RATL4 Wall e cl 4 btwn rw Ne & P from el CONC 02 16 2,000 0.680 4.550 506.67 B-CA4-NO3 UICA4 L TL4 Wall e el 8 btwn rw Nc & P from el CONC 02 16 2.000 c.650 4.550 506.67 Room RATL4 has 1 Cwned Walls and 2 Non-Owned Walls Fonm ID Cell Descriptinn Tvoe Volume Cell Temp

.Lo Limit Hi Limit Mr L Film F**ista v a9 Wall ID Roce A Form M Mall D*scr s etion Matl Slices Wall R A Side B Side Wall Ares RW1 Ra dwe st e Bldg el f rom 2 3 ' to 4 4 '

S 1000000000.00

.67.00 87.00 87.00 AIRDc2 A-CSI-E04 RMI UICSA Door 105 e rv btwn Mc & P btwn cl-1 STS 1

2.410 C 490

'O.680 1).51 B-RT2-E01 RATL2 FW1 hll e rw NC & P and btwn el B & le CONCO2 16 2.000 4.550 0.680 4886 00 B-CS2-E05 U2CSA RW1 Door 106 e rw btwn NC & P and btwn STS 1

2.410 0.600 0.690 19.58 Room RW1 has i Owned Walls and 2 Non-Owned Walls T

Vol uw Cell Te-o Lo Limit Hi Liwit mt1 Film Fasi*t ares R,om ID Cell Descrirtion m

Wall ID Room A Room B Wall Dascrterion mtl Slices Wall R A Fide B Sida Wil Ae*4 EW2 Radwaste Sidg el from 44' to 64'6" 8 1000000003.00 87.00 87.00 87.00 AIRD02 A-RT2-E02 RW2 RATL2 Wall e zw Ne & P and Ltwn el IDc &

CONCO2 16 2.000 0.690 4.550 1155.12 Roce RW2 has 1 Cwned Walls and

,0, Non-Owned Walls a

Room ID Cell rnerir t ion Type Volume Cell Tem In Limit Hi Limit ht1 Film Fad na eas Wall ID Room A Room B Wall D*Merirtion Ntl Slices Wall R A Sida B SHe Wall Am SCTRM Security room C

5534.10 78.00

-200.00 400.00 AIR 002 A-SCT-N05 SCTRM LDYRM Double suneral board f rom el 60' to MINLBRD

.1 1.900 0.680 0.660 61.67 A.

SCT-EC2 SCTRM CTLRM Wall e rw 1A btwn el 13 & 14c from MINLBRD 1

1.900 0.690 0.640 186.67 A-SCT-CL2 SCTRM MERM2 ceiling e el 70*-0*

CONCO2 6

0.667 0.610 0.610 329.02 A-SCT-W0l SCTRM RATL1 Wall e rw J btwn el 13 & 15c from e CONCO2 16 2.000 0.6e0 4.Sto Sn. 92 A-SCT-CL1 SCTRM A7M01 reiling e el 70*-0*

CCNC02 16 2.000 0.610 0.250 36_44 A-MIX-WO3 SCTRM PLE.wN MIXING WALL ILIR 002 1 **** ***

0.680 0.680 0.00 A.

MIX-WO4 SCTRM PLEMN MIXI!Y3 WALL.

AIR 002 1 **** ***

0.600 0.600 e 00 B.

MEN-NO3 MENRM SCTRM Wall e el 14c btwn rw J & Lc from CRBLC1 1

0.823 0.600 0.690

  • 10.00-3 MEN-WOI MENRM SCTPM Wall e rw btwn J & Le f r om el 4 9 * - 0 CRBLC1 1

0.823 0.690 0.680 212.17 B.

EE2-CL2 U2EER SCTRM Ceiling e el 60 * -0*

MINERD 1

1.900 0.610 0.610 70.00 B.

CS2-CL6 U2CSA SCTRM ceiling e el 4 9 * -0*

  1. TJNC02 6

0.667 0.610 0.610 38.15 B-PC2-SO2 U2PIC S'"rRM Wall e el btwn 13 & 14 and btwn rw CCNCO2 9

1.000 0.660 0 490 121.33 B-CS2-CL2 U2CSA S,TRM Ceiling a el 52'-0*

CON 002 6

0.667 0.610 0.610 262.25 3

EE2-W22 U2EER SCTRM glass window wall

.GLAsJ1 1

0.060 0.680 0 / 80 9.00 B-CS2-N10 U2CSA SCTRM Wall e el 14e etwn rw J & P of J &

CONC 02 6

1.000 O A80 0.640 7.97 B-PC2-E04 U2PIC SCTPM hll e zw btwn J & Le and rw btwn 1 CONC 02 8

1.003 0.680 0.680 74.67 B-ST2-N05 U2sTW SCTRM Wall e el btwn 14c & 15e f rom el 49 CRELoi 1

0.823 0.660 0.680

.42.38 B-EE2-W21 U2EER SCTRM glass window wall CU.501 1

0.060 0.630 0.660 IV.00 B-EE2-W11 U2EER SCTRM Bullet Resistant wall BR-WALL 1

1.900 0.680 0.680 174.44 B-EE2-W23 U2EER SC1'RM glass window wall GLA501 1

0.060 0.660 0 680 27.00-3 EE2-W14 U2EER SCTRM Bullet Resistant wall from el 43' t BR-WALL 1

1.900 0.680 0.660 70.00 B-PC2-E02 U2PIC SCTRM Wall e rw btwn J & Le and rw btwn 1 CONC 02 8

1.000 0.680

0. 6 ti c 134,.33 B-EE2-M13 U2EER SCTRM Bullet Resistant wall from el 49' t BR-MALL 1

1.900 0.680 0.680 69.M B-ST2-N06 U2STW SCTRM Door 210 e el btwn 14e & 15e SBR 1

2.410 0.660 0.660 2L55 3-EE2-W12 U2EER SCTRM Bullet Resistant well BR-WALL 1

1.?00 0.680 0.680 n. 22 Raom Types: B-Bound, C.Caelulated, F=Punction, L-Limit, M m naged 18:24:30 01/21/96 CP&L Brunswick Station pg 4

d Y k *.hIk kg '

O

/

Roem/ Wall Layout Data Emm ID Cel! Descr i rt len Tyoe Voluma Cell Tam Le limit Mi 1.iH t Matt pg]. p.s!s:sne,s Wall TO Room A Room B Wall Descrirtion ht !

Slices kall R A Side 3 Sida Wall Area SCTkat

. Security rocea C

5534.10 78.00

-20C.00 400.00 AIROO2 Room SCTRM has

,7, Owned Walls and le,Non-Owned Walls Poc.m ID Ce!! Description Type Volume Cell T=me

!.o Liait Hi Litit Nt l Film F*?ist ances kall ID Em A Pnem B Wall Desert e+ 1en mt1 Slicas Wall R A sida e s ur.

w311 g-.a U1 AIR Dead air space e cl. 8 C

34736.04 91.00

-200.00 400.00 AIR 002._

A-DA2-CL1 U1 AIR AT'401 Ceiling e el 70' STEL10 1

0.000 0.610 0.250 499.20 A.

DA2-FL1 UlAIR EARTH Floor e el

-3*

CONCO2 1

10.000 0.000 0.000 499.24 A.

DA2-E03 U1 AIR U1RX Wall e cl89 btwn rw L & M f rom el CONCO2 32 4.000 0.600 C Aeo 1650.75 A-DA2-N01 U1 AIR U1RA Wall e el (R btwn J & K from el

-3' CONCO2 32 4.000 0480 0.660 142.03 A-DA2-E02 U1 AIR U1RX Wall e c18R btwn rw K & M from el CONC 02 16 2.000 0.690 0.640 1216.00 A-DA2-S01 U1 AIR FI m Wall a el 8 btwn J 5 M imm el -3

  • CCNCO2 16 2.000 0 680 D AGO M 9.04 A.

DA2-W31 U1 AIR EARTE Wall e rw J btwn el 6R & 8 from +1 CONC 02 t.

10.000 0.000 0.000 2 % 67 A-CA2-S03 UIAIR ELECW wall a cl8 btwn JEM f rom el 9' to 3 CONCO2 16 2.000-0.680 0.680 463.94 B.

DA2-WC2 UlTB1 U1 AIR Wall e rw J btwn el 6R & 8 from el CONC 02 16 2.000 0,680 0.680 2M2.40 8

CA3-N01 UICA3 U1 AIR Wall e el 8 btwn rw Le & Ne from el CONCO2 16 2.000 CARO 0.690 631.00 B-eel-N01 U1EER U1 AIR hall 4 el 8 btwn rw J & Le f rom el CCNCO2 16 2.000 0.660 C.680 259 fJ5 '

B-CA4-N02 UICA4 U1 AIR Condait opening AIR 002 1

0.000 0.340 0.340 M A0 B-cst-N34 UICSA U1 AIR Wall e c1 e tet wn rw J and Le from e CONOC2 16 2.000 0.680 0300 384,31 B-DA2-WO4 UlTB3 UIAIR Wall e tw J btwn el 6 k BR from el CCNCO2 16 2.000 0.680 0.E e 3 1705 M 3 i

B-DA2-E01 UIRX U1 AIR Wall e rw K btwn el 6R & 9R f rom el CDNCO2 16

.000 0.690 0.680 4 9N. 00 B-CA3-Ne2 UICA3 U1 AIR Conduit cpening AIR 002 1

0.000 0.340 0.340 M. 03 B.

CA2-WO3 U132 U1 AIR Wall d rw J btwn el 6 & BR f rom el CONCO2 2.000 0.660 0.680 us4.17 I

B.

CA4-N01 UICA4 MAIR Wall e el 8 btwn rw Lc & P from el CONCO2 n

2.000 C ASO O ABC 4M.M Room UIA!R has s owned Walls and Ic Non-Owned Walls

==

t Emm ID Cel1 Descrirt ten Tyr*

Volum*

Cell Temo In Limit Ni U mit Matl FiIm Fe*ist ancel Wall ID Roen A Foom 9 Wall D* strict ion Nt1 Slices Wall R A Side B S24*

W +11 MN U1 BRA UI Battery Rm - 1A C

15816.27 48.00

-200.00 400.00 AIR"02

(

A-BR3-CL1 U1 BRA UICSA Ceiling e el 388-0*

CONCO2 6

0.667 g.610 0.610 919A7 A.

BR3-E01 U1 BRA.UICSA Wall e rw btwn Ne & P btwn el 11c & CRBLO1 1

1.235 0460 OA60 444.H I

.A-BR3-N02. U1 BRA UICSA Door 118 e el lic btwo rw Mc & Ne DOCRHM1 1

2.560 0 A80 0390 17 88' A-9R3-N01 U1 BRA U1CSA Wall e el lic btwn rw Mc & P from e CONCO2 8

1.000 0.680 UABC 407.34 A.

BR3-FL1-U1 BRA EAR *H Floor e el 23*-D' CONCO2 1

10.000 0.000 C#00 919 37 A.

BR3-Hv2 U1 BRA MERM1 Dummy wall for ventilation supply AIK002 1 * * ". * "

U.340 0.340 0.00 A. BR3-HV3 U1 BRA UICSA dummy wall for leakage f rcwn ulcsa AIR 002 1 ****.***

C.340 0 340 Ole 3

BR4-E02 U1BPB U1 BRA Door 116 e rw Mc btwn el lle and 13 ICCRiiM1 1

2.560 0.600 0340 39.s4 r

B.

BR4-E01 U1BRB U1 BRA Wall e tw Mc btwn el lie and 13 fro CRELOI 1

1.235 0 A90 0.680 4 04. M

[

B.

BR1-N02 U2 BRA U1 BRA Loor 120 e el 13 btwn rw Ne & P DOCPleti 1

2.560 0.690 OAs0 4 3. 0c -

[

B-BRI-N01 U2 BRA U1 BRA Wall e el 13 btwn rw Mc & P far.m el CONCO2 8

1.000 0.640 C Aec 382 22 Room U1 BRA has 2 Owned Walls and 4 Non-Owned Walls I

h poom 1D Cell Descrirtion Type volume cell Temp to Limit Hi Limir Nt l Film Pasistances b

Wall ID poom A Poom B Wall Dascription mtl Slices Wall R A Sida B Sida Wa li Ar-a U1 ERB UI Battery Rm - 1B C

15996.00 89.00

-200.00 400.00 AIRCO2 A-BR4-N01 U1BRR ~UICSA Wall e cl-lle htwn rv J & Mc f rom e CONC 02 8

1.000 0.683 O A83 390.62 A-BR4-N02 MBRB UICSA Door 1173 c1 11c btwn rv Le & Mc DOCP3D41 1

2.560 0.680 OA80 39.38 i'

A-BR4-E01 U1BRB U1 BRA Wall e rw Mc btwn el lic and 13 fro CRELC1 1

1.23%

0.680 0.690 404.95 A-BR4-FL1 U1BRB EARTH Tloor e el 23*-D*

CONCO2 1

10.000 0.0M 0.000 930.00 l

A-BR4-CL2 U1BRB U1CSA Ceiling e el 38'-0" CONCO2 6

C A67 0.610 0 A10 933.00 A-BR4-WC1 U1BRB RATL1 Wall e tw J and btwn el lie and 13 CONC 02 16 2.000 0 A80 4.550 444.33 A.

BR4-E02 U1BRB U1 BRA Door 116 e rw Me btwn el 11c and 13 DOCFJM1 1

2.5 0 0.680 0 A80 19.18 A

..BR4-HV2 U1BRB MERM1 Duasty wall for ventilation supply AIR 002 1 ****.***

0.340 c.340 0,00 I

A-BR4-H73 U1 Bps UICSA dummy wall for leakage from ulesa AIR 002 1 * * ". * *

  • 0.340 0.340 0.00 Room Types: B-Bound. C=Caelulated. F= Function, L= Limit, M-%naged l

18:24:30 01/21/9e CP&L Brunswick Statien

[

Pap e

?

I i

i e

+

- o

- Roem/ Wall Layout Data pm >m ID Cell Ces-rir,ticn Type

' Volume Cell Te-o Ib Li9it Pi 7 >it

  • 'at l Film Fesistances Wall ID Room A Room B Wall D-vrir* ion bil Slims Wall R A Stde B Si*e W+11 Ares U1BRB U1 Sattery Rm'-

1B C

15996.00 99.00

-200.00

. 400.00 AIE002 B -- PCI-FL1 MPIC U1BRB Floor a el 38*-O' COM'02 6

0 667 0 A10 0.410 GO.50 5.. BR2-N02 'U2BRB U1BRB Docr 119 e el 13 btwn rw J and ic DOORIN1 1

2.58 0 D 660 0.6sc 4 3 AC B--

BR2-N01. U2BRB U1BPB Wall e el 13 btwn rv J & Mc f rom el CONC 02 8

1.000 0.680 O Aso.

397.co

.toom U1BRS has 9 Owned Walls and ], Non-Owned Walls Rece ID Cell Descrirtica Tvoc velume C,11 Te-o Ec Lielt Hi Liait

%t i Film R-52wt eca?

Will ID Pmm A Rom B Well reserict ion

%ti Sliaes Wall R A Sida B H +=

Wd) Ama UICA3 U1 Cable access way 1 C

12096.67 94.00

-200.03 400.90 AIR 002

(

A-CA1-E02' UICA3 A'Im 1 Wall

  • rw btwn se & P btwn el e & 9 CONCO2 16 '

2 A00 O A80.

Q.2$0 43.33

. A-CA3-NO3 UICA3 RATL4 Wall 4 cl A btwn zw Ne & P from el CONCC2 16 2.000 0 A80 -

4.550 506 A7 A-CA3-CL1 UICA3. M CA4 Ceilina e al 4 9 * -0*

CONCO2 6

0.667 0.fl0 0.610 4 77. M A-CA3-NC1 MCA3 DIAIR Wall e el 8 btwn rw Lc & Ne f rom el CC19002 16 2.070 0.690 C ABO 631.00 A-CA3-N02 UICA3 U1 AIR Conduit cTening AIR 302 1

0.000 0.340 0.340 36.0c A-CA3-E01 UICA3 RATL2 Wall e rw btwn NO 6. P btwn el B & 9 CONC 02 16 2 000 0.683 4.55C 210.00 A-- CA3-FL2 UICA3 ELECW Floor e el 23*-0*

CONCc2 32 4.000 OA10 0 610 477.50 B-CSI-NO3 UICSA UICA) Wall e rw Le and btwo el 6 & 9e f ro CONCO2 16 2.000 OA80 0 660 253.33-

'S-CSI-N01 UICSA UICA3 Wall 4 c1 btwn 8 & 9e and btwo rw L CONC 02 16 2 900 0.650 0.680 1190.07 3-C31-502 UICSA UICA3 Door ill e c1 btwa 8 & 9e and btwn STS 1

2.410 0 A80 0.6-80 19.60 -

Room UICA3 has 7 Owned W ils and J,Non-Owned Walls Fcem ID C*Il Description Type volume cell Taep L, Limit Mi Limit Matt Film Festst r o s Wall ID Room A Rom B Walt D*scrid ien ht !

Slicas Wall et A Elia 9 sid.

Wall Ar.a UICA4 U1 Cable aceees way 2 C

9072.50 84.00

-200.00 400.00 AIROO2 A-CA4-CL1 UICA4 A'17 'l Ceiling e el 70*-0*

CONCO2 16 2.000 C A10 0.253 477.57 A-CA4-NO3 UICA4 RAL4 Wall e el e btwn rw N: & P from el-CCNCO2 16 2.000 0 A80 4.553 Sc6 AT A-CA4-N32-UICA4 U1 AIR Conduit opening AIR 002 1

0.000 0.340 0.340 A-CA4-E01 UICA4 AN01 Wall e rw btwn Ne & M and 6twn el 8 CONCO2 16 2.000 0.680 0.250 190. H -

A-CA4-SO2 MCA4 UIEER Door 218 a el btwn 9 & 9c and btwn STS 1

2.410 O A80 0.655 19 30 A-CA4-S01 UICA4 UIEER Wall 4 cl btwn 86 9c arf btwn zw Le CONCO2 16 2.000 0.680 0.48; sa7,65 A-CA4-N01 UICA4 U1 AIR Wall 4 <1 8 btwn rw k & P f rom el CONCO2 16 2.000 0 A90 0A80 4%.25 A-CA4-WC1 UICA4 U1EER Wall e rw te and btwn el 8 & 9c fro CONC 02 16

'2 000 0.680 OA80

-*90.00 B-CA3-CL1 UICA3 UICA4 CeJ11ng d el 49'-0*

C05CO2 6

0.667.

C A10 0.610 477.9 Room UICA4 has

,8, Owned Walls and 1 Non-Owned Walla poem ID Cel! Descrirtion g

Volum*

Cell Te-o Lo Limit Hi limit Nt 1 Film Pesist a~ es Wall ID Poom A Room B Will Nscr2pt ion

%1 Slices Wall R A Side B $ P.1m Wa l l M* 4 UICPU U1 computer rm C

5896 / 5 68.D?

-2 ') 0. 0 0 400.00 AIROC2 A-CPI-CL1 UICPU' U1EER Ceilirg e el 62 *- 2*.

CUNCO2 3

0.271 0.610 C A10 406.19 A-CP1-E03 UICPU UIEER door 221 e rw Le btwn el 9e & loc DCOFJM1 1'

2.560 0.680 0.680 Je A7 A-CP1-E01 UICPU l'13ER Wall e rw Lc btwn el 9e & 10c from CDNCO2 8'

1.000 0 A40 0.660 9.42 A.

CP1-501 U1 CPU U1STW Wall e el 100 btwn rw J & Le from e CRELOI 1

0.000 0 680 0.680 222.49 A-CPI-E02 UICPU UIEER Wall e rw ic btwn el 9e & 10c from CRBLO1 1

0.823 CA80 0.680 295.17 A-CP1-N01 UICPU U1EER Wall e cl 9e ewr1 rw J & Le from el CCNCO2 8

1.000 C A80 0360

s. M A--

CP1-WQ1 UICPU RATL1 Wall a rw k btwn el 9e & 10c f rom CONC 02 16 2.000 DA80 4.550 349 29 A-CP3-N02 UICPU UIEER Wall e el 9e btwn rw J & Le from el CRBI.01 1

0.623 0.680' O A90 206,40 5- - CSI-CL1 UICSA UICPU Ceiling e el 48*-D*

CONCO2 --

6 0.667 0.610 0.410 302.93 B-ST1-CLI U1STW UICPU Ceiling 8 el 49*-0*

CCNCO2 6

0 667 0.610 0.610 66.42 Room ff1 CPU has 8 Owned Walls and,2,Non-owned Walls

= = -

Room Types: B. Bound. C Caclulated.

F= Function, L. Limit, M* Managed 18:24:30 01/21/98' CPEL Brunswick Station rage ic

.m

-- - - - - ~ - -

poom TD Cell D.-s rict ion Tvre volu-e Cell Temo to Limit Hi Limit Mt1 Film Pasistanus Wall ID Rom A Rom B Wall Descriction Matl Slices Wil R A S2de B Side Wall Area M CSA U1 Cable spreading area C.

164152.80 87.00

-200.00 400.00 AIRDG2 A-CSI-WO8 UICSA U1STW Wall e tw 14 btwn el loc & 11c from CRBLC1 1

0.823

. C ASO 0.680 171.82 A-CSI-CL7 UICSA AORRM Ceiling 4 el 49'-0*

CONCO2 6

0.66" 3.610 0.610 388 A8 A-CSI-W12 UICSA RATL1 hall e rw J btwn el 6 & 10c from el CONC 02 16 2.000 0.670 14.550 1267.76 A-CSI-CLS UICSA U1EER Ceiling a el 49'-0*

CONC 02 6

0.667 0.610 0.610 4026.cl A-CSI-E02 UICSA RATL2 Wall e rw btwn N: & P and btwn el CCNCO2 16 2.090 0.680 4.550 233.72 A.

CSI-CL4 UICSA 12YRM Ceiling *.1 49'-0*

CONCO2 6

0.667 0.610 0.610 43.11 A-CSI-501 UICSA UICA1 Wall e el btwn 8 & 9c and b*wn rw L CONCO2

~6 2 J00 0.680 0.689 1190.0?

A-CSI-CL6 UICSA U1EER Ceiling # el 4 9 *-0*

CONCO2 6

0.667 0.610 0.610 339 45 A.

CS1-WO6 UICSA RATL1 Wall e rw J btm c1 10c & 11e from CONC 02 16 2.000 0.690 4.550 405.33 A-CSI-CL2 UICCA CTLRM Ceilin3 e el 49'-0*

CONCO2 6

0.667 0.61D 0.610 1163,36 A.

CSI-WO7 U1CSA U1STW Wall e CA bthn 10c & lie and bt-n r CRBLOX 1

0.823 0.680 0.650 420.11 A.

CSI-CL3 UICSA KITCH Ceiling # el 4 9 * -0*

CONC 02 6

0.667 0.613 0.610

-221..M-A-

CSI-W11 UICSA U1STW Wall e cl htwn 9c & IDc and tw btwn CRSLO1 1

0.823 0.640 0.660 311,ca A-CSI-WO9 UICSA U1SIW Door 110 e rw R btwn loc & 11c DOOR 30t1 1

2.560 0.6s0 0380 I s.19.

A-CSl+E01 UICSA RATL2 Wall 4 rw btwn NC & P and bt wn el CONC 02 16 2.000 0.600 4.550 IIA 0.90 A-CSI-N07 UICSA UICA3 Door 111 e el btwn 8 & 9e and btwn STS 1

..410 0.680 0380 19 Ao A.

CSI-IN2 UICSA MERM1 dunny wall for ut cza ventilation AIR 002 1 **** *"

0.340 0.340 0.00.

A-CSI-N04 UICSA U1 AIR Wall M cl 8 btwn rw J and Lc f rom e CONCO2 16 2.000 0.660 0.680 355.33 A-CSI-N03 U3CSA UICA3 Wall e rw Le and btwn el 8 & 9e fro CONCO2 16 2.000 OA80 0.680 n 3.33 A-CSI-CLI UICSA UICPU Ceiling e el 4 8 '-0*

CONCO2 6

0.667 C Als 0.610 NL 90 A-CSI-W10 UICSA MSTW Wall W rw Le btwn el 9e & 10e from CRBLO1 1

0.823 0.680 0.680 113.56 A.

CSI-Wla UICSA RATL1 Wall e rw J btwn el lie & 13 from e CCNCO2 16 2 000 0.680 4.559 191.17 B-CSI-E03 ATM01 UICSA Wall e rw btwn NC & P and btwn el CONC 02 16 2.000 0.250 0.650 215.22 B-CS2-N07 U2CSA DICSA Door 112 e wall 2LS-N06 DOCGUM1 1

2.560 0383 0.(69 19 60 B.

CSI-FL1 EARTH UICSA Floor e el 23h 0*

CONC 02 1

10.000 0.000 0.000 4515.04 B-BR4-HV3 U1BRB UICSA dumy Jall for leakage from ulesa AIR 002 1 **** ***

0.340 0.340 0.00 B-CSI-FL4 ELECW UICSA Floor e el 23'0" CCNCO2 48 6.000 0.elu 0.61J 183.00 B.

BR4-N02 UIPRB UICSA Cer 1173 c1 11e Ltwn rw Lc & Me DOCFJM1 1

2.560 0.680 0.E80 39.36 h CSI-E04 RW1 UICSA Door 105 e tw btwn Mc & P btwn cl 1 STS 1

2.410 0.600 0.680 19.58 B-PCI-EDI U1PIC. UICSA - Wall e rw btwn J & Lc and c1 btwn 1 CCNCO2 8

1.000 0.680 0.660 lie 6!

B -- BR3-CL1 U1 BRA UICSA Ceiling e el 38*-0*

CONCD2 6

0.667 C A10 0 61C 919.67 B-BR4-CL2 U1BRB UICSA Ceiling e el 38*-0*

CONCO2 6

0.667 0.610 0.610 83G.c0 B-BR3-N02 U1 BRA UICSA Door 118 e el lle btwn rw Mc & Nc DOO91M1 1

2.560 0.600 CABO

17. M B-BR4-N01 U1BRB UICSA Wall e el lie btwn rw J & Me
  • rom e CONC 02 J

1.000 0.650 0.680 390 32 B-BR3-N01 U1BR4 UICSA Wall a el lac btwn rw Mc & F f rom e CONCO2 8

1.000 0.680 0.650 477.34 B-PCI-N01 U1FIC UICSA Wall e el btwn lic & 13 and tw btwn CONC 02 8

1.000 0.660 0.680 72.33 B-BR3-E01 U1 BRA UICSA Wall e zw btwn Ne & P btwn el lic & CPBLO1 1

1.235 0 A80 0.680 4!4.33 B.

CS2-N08 U2CSA UICSA Wall e el 13 btwn rw btwn J & P f ro - CO!" 12 6

1.000 0.680 0.680 55i9.00 B-BR.3 -HV3 U1 BRA UICSA dun *y wall for leakage from ulesa AIk002 1 " * * * "

0.340 0.340 0.00 B-CS2-WO6 U2CSA UICSA Wall a el 13 btwn Mc and east wall CONCO2 8

1.0C0 OA80 0.690 30,40.

B.

CSI-Wie.UlTB1 U1."'SA Door 104A & B e tw J and btwn el 8 DOORrM1 1

2.525 0.680 0 480 64.35 Room UICSA has M Owned Walls and jj Non-Owned Walls Ronm TD cell Descrirtion h

Volume Cell Temo Lo Limit Hi Limit Matl Fi]m tesistan& s Wall ID Room A P om B Wall Dascriptinn Ma j elices Will R A Sta f B side WallAmt U1EER U1 electrical equipment rm C

99103.30 75.00

-200.00 400.00 AIR 002 A-MIX-W12 UIEER PLEMN MIZI?C WALL AIR 602 1 * * ".

  • OA80 0.

40 e no A-eel-WO6 UIEER AORRM Wall e tw Le h% u cl 10c & ile from CRELO1 1

0.823 0.640 OA80 M 7. 97 A-eel-WO7 U1EER AORRM Door 214 e rw Ic btwn el 20e & 11c AIR 002 1

0.000 0 340 0.340

- 4 2.36 A-eel-W16 U1EER RATL1 Wall e tw J btwn cl 8 & 9e from el CONC 02 16 2.000 0.680 4.550 6i3 31

. A-eel-N01 UIEER. U1 AIR Wall e el 8 btwn rw J & Le from el CONC 02 16 2.000 O A80 0.680 249.75 '

A-eel-HV2 U1EER A7M01 Dunwy w411 for exfiltration AIR 002 1 * * ". "

  • 0.660 0.680 0, t 7,

A-eel-E01 UIEER RATL2 Wall e tw btwn Ne & P and btwn el 1 CONC 02 16 2.000 02680 4.550 66.c0 A-eel-WIS U1EER RATL1 Wall e rw J btwn el 9e & 11c from e CONCO2 16 2.000 OAeo 4.550 150.69 A- ' eel-E02 U1EER RATL2 Wall e rw btwn Ne & P and btwn el & CONCO2 16 2.000 0.680 4.550 351.3)

Room Types: B. Bound, C=Caelulated, F= Function, L. Limit, M= Managed 18:24:30 01/21/96 CPEL Brunswick Statio9 Fag

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_ mt l Slites Wall R A Side 9 Stda bli Arn UIEER U1 electrical equipment rm C

. 99103.30 75.00

-200.00 400.00 AIR 002 -

A -- eel-WOS C1EER AORRM Mall e tw Ir btwn el lle & 13 from-CSSLD1 1

0.820 0.680 D As0 86.17 A-eel-E03 MEER ATM01 Wall a rw btwo Nc & P and btwn cl e CONC 02 16 2.000 0.680 0,250.

1023.00 A.

MIX-Wil U1EER PLEMN MIXINO Wall ATR002 1 * * *.

0.680 0.680 0.03 A-eel-CL2 U1EER-A*Mol ceiling e el,70'0" CONC 02 16 2.000-0.610 0.250 4H3A6 B.

CT!<N33 - CTIJtM U.EER - Scrdle mineral board above ccotrol MINLBRD 1

1.900 0.680 0.680 102. 2 J '

B-CTL-NC4 CTIJiM U1FER Double sineral board e el lie btwn MINLBRD 1

1.900 0.683 0.680 99 L25 B- 'CP1-N02' UICPU M EER Wall e el 9e btwn rw J & Le from el - CRBLOI 1

0.823 0.660 O A80 2140 B-CTL-FL4 CTIJM U1EER Floor a el 60'-0*

MINLBRD 1

1.900 0.610 0.610 653.52 B-CA4-W01 M CA4 Y1EER Wall a rw Le and bt wn el 6 & 9e f ra CONC 02 16 2.000 0.690 CA30 199 CC B-CTL-N02 CTLF34 UIEER Glass door & window MINLBRD 1

1.900 0.680 0.680 25.11-B-

CSI-CL6 UICSA DIEER Ceiling e el 49' 0*

CONC 02 6

0.667 0.610 0.610 338.45 B -- CTL-1501 CTLRM U1EER U 1 control room control panel wall STEL10 1

0.000 0.000 OAe3 647 24 B-CP1-E03. UICTU U1EER door 221 e rw Lc btwn el 9c & 1c DOCOM1 1

2.560 0.680 OA80 28.67 B-CTL-N2A CTLRM U1EER open door P.alf)

AIR 002 1

0.000 0.340 0 340.

8.73 B-CP1-E02 UICPU U1EER Wall a rw Le btwn el Dc & Acc f rom CRStol 1

0.823 CA80 O Aes 255.37 B.

CTL-N29. CTIJtM U1EER closed doorfhalf)

WOODDR 1

1.710 C A80,

0.650-10.13 B-ST1-E04 U1STW U1EER Wsil a cl 10c ttwn rw J & Le from e CRBLol 1

.823 CA60 0.680 12L37 B-KIT-E02 KITCH U1EER Doct 213 a rw Le btwn e1

  • M & 13 AIR 002 1

0.000 0.340 0.340 19.60 B-CP1 CL1 UICPU U1EER Cellirg 9 el 62'-2*

CCNCO2 3

0.271 0.610 0 A10 4 a.10 B-KIT-E01 KITCH U1EER Wall e rw Ic btwn el lie & 13 from CPBLC1 1

0.823 O A80 C A80 167,4 J B-CPI-N01 UICPU U1EER Wall e cl 9e btwn rw J & Lc frum el CONCD2 8

1.C00 0380 0 A50

$.36 B-LDY EC2 LDYRM U1EER Door 212 e zw Lc btwn el lie & 13 DOCH N1 1

2.560 0.680 0 680 17.6J q

B.

CP1-E01 UICPL U1EER Wall e rw Le btwn el 9e & IOc from CCt9CO2 8

1.000 0.680 0.680 9.42 B-LDY-E03

    • 'RM U1EER Wall e rw Le btwn el 13 6 14c from CPBLC1 1

0.823 0 A80 0480 39 07 B.

CSI-CL5 RCSA U1EER Ceiling e el 49'-0*

CONCO2 6

0.667 0.610 0.610 4026.01 B-CA4-S02 UICA4 U1EER Door 218 e el btwn 8 & 9e and btwn STS 1

2.410 0.680 0.680' 19,69 B-STbE05 U1STW U1EER Door 215 e tw Lc btwa 10e 6 ile e e SBR 1

2.253 0.680 O A80 17.ec B-CA4-S01 UICA4 U1EER Wall 4 cl btwn 84 9c and btwn rw Lc CONC 02 16 2.000 OA80 0 Geo 68L(5 B-EE2-N02 U2EER U1EER Wall e c113 btwn rw Le and panel f r AIROC2 1

0.000 0.340 0.340 44.00 B-ST1-NO3 U1STW CEER Wall ecl 10c btwn rw J & Le f rom el CRBLD1 1

0.823 0.681 C A8b 93 A2 Room U1EER has 11 Owned Walls and

_2,,6, Non-Owned Walls Room TD Cell Descriction Tme Volume cell Te-o lo Li=it Hi Limit N? 1 Film Fasist aneas Wall ID Room A Room B Wal] Descrirtion Mt i Slicas Wall R A Sida B sida Wa!I A m UIPIC U1 p!ce chase C

3348.80 80.00

-200.03 400.00 AIRD02 A-PCI-CL1 UIPIC U2 AIR Ceiling # el 70'-0*

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.1 0.000 0.305 0 30s 75 #3 A-PCI-FL1 U1PIC U1BRB Floor e el 38'-0*

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O A67 0.610 CA10

/ 1A3 A-PCl-E02 UIPIC LDYRM Wall e rw btwn J & Lc and cl 1-twn 1 CONC 02 8

1.000 0.6B0 C A80

. d.44 A-PCI-N01 U1PIC UICSA Wall e el btwn 11c & 13 and rw btwn CONCC'2 8

1.000 O A80 0.660 7L 33 A-PCI-E01 UIPIC UICSA Wall e rw btwn J & Le and el btwn 1 CONCD2 8

1.000 0.680 O A80 123,83 A-PCI-NO2 U1PIC KITCH Wall e el btwn ile & 13 and rw btwn CONCO2 8

1.000 0.680 0.600 142.33 A.

PCI-WOI U1PIC RITL1 Wall e rw J and cl btwn 13 & 11c fr CONCD2 16 2.000 O A80 0 A80 369.30 A.

PC1-E03 UIPIC K1'CH Wall e rw btwo J & Le and c1 btwn 1 CONCO2 8

1 A00 0.690 OA80 111.93 B-PC2-N01 U2PIC U1PIC Wall e c1 13 btwn rw J & Le from el CONCO2 8

1 C00 QA80 0A80 224,0e Room UIPIC has 8 Owned Walls and 1 Non-Or ed Walls '

Poom !D Cell Derrittion Twe Volume Cell Temo Io Liwit Hi 1.imit Ntl rilt. Rasistan m Wall ID Room A Room B Walt Dascription wl Slices Wall R.

A Sida B Side Wall A es B 1000000000.00 9L OO 91.00 91.00 AIR 002 UIRJt Unit 1 Reactor Building DA2-E01 U1RX U1 AIR stall e rw K btwn el 6R & 8R from el CONCO2 16 2.C00 0.680 DABO 4628.00 A.

B-DA2-E03 U1 AIR U1RX Wall a cI8R btwn zw L & M from el CONCO2 32 4.0C0 0.680 0,680 165? 75 B-RT4-N01' RATL4 UIRX Wall e el 8 btwn rw Nc & M from el CONC 02 44 S.450 4.550 0.680 EG D1 B.

DA2-E02 UIAIR UIRE Wall a c18R btwn rw K & M from el CONC 02 16 2.000 0 680 0.680 1278.?J B-DA2-N01 U1 AIR UIRX wall e el 6R btwo J & K from el

-3' CONCO2 32 4.000 0.680 0.680 142.00 Room Types: B Bound, C.Caclulated, F. Function, L Limit, M. Managed 18:24:30 C1/21/96 CP&L Brunswick Station Pag--

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Calculation OVA-0114 Revision 0 Attachment C Page 1 of 14 CAROLINA POWER & LIGHT COMPANY OVA -0114 Control Buildina Transient Temperature Analysis Durina Sprina Conditions Control Room AC Regipcemenf Project Brunswick Nuclear Plant. Unit 1 & 2 Attachment C Computer Program Output 1)ata Tabulation he

TORNADO 1 Case HVAC Analysis OVA-0114, Revision 0 (5 00 PM Start)

Atta::hment C Page 2 of 14 RT3 Temperature Analysis Version 152 N 01/20/98 MCalc No. NOP WTORNADO LOSS OF ALL AC Room Temperature TIME ATM01 EARTH AIRLK AORRM CTLRM ELECW ELVTS KITCH LDYRM MENRM MERM1 MERM2 MERM3 0 00 76 00 60 00 76 00 7d.00 75.00 70 00 80 00 75.00 - 78 00 78 00 76 00 76 00 79.00 O.10 76 00 60.00 76.15 79 25-80.62 70 00 83 23 78 89 79 70 81.44 76 09 76 99 78 10 0 20 75 99 60.00 76.25 81 41 83 34 70 00 84 57 80 69 80.76 83 62 76.10 77.10 78.05 0 30 75 98 60 00 76 32 82 45 84.70 70,00 85 29 81.58 81.32 84.77 76 10 77.13 78 01 O 40 75 97 60.00 76 36 83 06 85.57 - 70 00 85 69 82 11 81.65 8552 76 09 77.15 77.99 0.50 75 95 60 00 78 39 83 48 86.16 70.00 85.97 82 48 61.90 85 97 76.08 77.16 77.96 0 60 75 92 60.00 76.41 83.81 86 55 70.00 86 14 82.78 82.09 86.28 76 06 77.17 77.94 0.70 75 89 60 00 76 43 84.09 86.86 70 00 86 27 83.02 82.25 86 53 76.04 77.17 77.92 0 80 75 86 60.00 76 44 84.33 87.13 70 00 86.37 83.24 82.40 86 76 76 02 77.17 77.91 O.90 75 82 60 00 76 46 84 54 87.37 70 00 86.7 83 43 82 53 86.08 75.99 77.17 77.89

'1.00 75.78 60 00 76.47 84.75 87.58 70.00 86 56 83.62 82 65 87.16 75.96 77.17 77.88 1.10 75 73' 60 00 76.48 85.11 87 83 70 00 86 63 83 93 82.80 87.35 75.92 77.17 77.86 1 20-75 68 60.00 7649 85.39 88 09 70 00 86 72 84 19 82 05 87.55 75 88 77.16 77.85 4

1.30 75 63 60 00 76.50 85 59 88 30 70 00 86.79 84 37 83 07 87.72 7584 77.15 77.83 1.40 75 57 60.00 76 51 85 77 88.49 70 00 86 86 84.53 83.17 87.88 75 80 77.14 77.82 1.50 7551 60.00 76 52 8594 88 67 70 00 86 92 84 68 83 27 88 03 75.75 77.13 77.81 1.60 75.44 60 00 76 53 88.10 88 83 70 00 86 98 84 83 83 37 M17 75 70 77.12 77.80 1.70 75 37 60 00 76 54 86 25 88 99 70 00 87.03 84 97 83 46 88 30 75 64 77.11 77.79 1.80 75 30-60 00 76 54 86 39 89 14 70.00 87.08 85.10 83 55 88 43 75.58 77.10 77.78 1.90 75 22 60.00 76 55 86.53 89 29 70 w 87.13 85 23 83 64 88.55 75.52 77.08 77.77 l

2 00 75.13 60.00 76.56 88 67 89.57 70 00 87.18 85.36 83.73 88.67 75.46

.77.06 77.76 2.10 75 05 60.00 76.57 86 82 89.79 70 00 87.22 85.49 83 83 88.80 75 39 77.0*

77.75 2 20 74 96 60.00 76.57 88 06 89 95 70.00 87.27 85 62 83 91 88 93 75.32 77.02 77.73 1

2.30 74.86 60 00 76 58 87.09 90.09 70 00 87.31 85 74 84 00 89.04 75.24 77.00 77.72 2 40 74.76 60.00 76 59 87.22 90 23 70.00 87.36 85.86 84 08 89.15 75.17 76.98 77.72 2.50-74 66 60 00 76 59 87.34 90 35 70 00 87.39 85.97 B4.16 89 26 75.09 76.95 77.71

-2.60 74.56 60.00 76 60 87.46 90 48 70 00 87.43 86.09 84 24 89.37 75 01 76.92 77.70

-- 2.70 74 45 60.00 76 61 87.58 90.60 70 00 87.47 86 20 84.31 89.47 - 74 92 76.89 77.69 2.80 74 34-60 00 76 61 87.70 90.72 70.00 87.50 86.30 84 39 89.57 74.83 76.86 77.68 2.90 74.2k 60.00 76.62 87.81 90 84 70 00 87 53 8641 84.46 89 67 - 74.74 76 83 77.67 3 00 74.10-60.00 76.63 87.92 90.96 70.00 87.57 86.51 84 53 89.77 74 65 76.79 77.66 3.10 73 98 60.00 76 63 88.03 91.07 70.00 87.60 86.62 84.61 89 87 74.55 76.76 77.65 3.20 73.86 60.00 76 64

-88.14 91.18 70 00 87.62 86.72 84.68 89.96 74 46 76.72 77.64 3 30 '

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- 3 50 73 46 60.00 76.66 88.46 91.51 70.00 87.70' 87.01 84 89 90.24 74.15 76 60 77.61 3 60 ~ 73.33 60.00 76 66 88.56 91.61 70.00 87.73 87.11 84 95 90 32 74 04 76 55 77.60 j.

3.70 73 19 N GO 76.67 88.66 91.72 70.00 87.75 87.20 85.02 90 41 73 93 76.51 77.59 3 80 73 05 60.00 76.68 88.76 91.82 70 00 87.77 87.30 85 09 90.50 73.82 76 46 77.59 3.00 72.90 60.00 76 68 88 86 91.92 70 00 87.80 87.39 85 15 90.58 73.71 76 41 77.58 4 00 72.76 60,00 76 69 88.95 92.02 70.00 87.82 87.48 85.22 90.67 73.59 76.36 77.57 4 10 72.61 - 60.00 76 69 89 24 92,12 70 00 87.84 87.58 85 29 90 75 73.48 76.30 77.56 4 20 72 46 60.00 76.70 89.34 92.22 70.00 87.85 87.67 85.35 90 83 73.36 76.25 77.55 4 30 72 31 60.00 76.71 89 43 92.32 70.00 87.87 87.76 85 42 90 91 73 24 76.19 77.54 4 40 72,15 60 00 76.71 8952 92.42 70 00 87.89 87.85 J5 48 90.99 73.11 76 14 77.53 l

4.50 72.00 60.00 76.72 89 61 92.51 70 00 87.C0 87.94 8554 91.07 72.99 76.08 77.52 4.60 71 84 60 00 76 72 89.70 92.61 70.00 87.92 88 02 85.60 91.15 72.87 76.02 77.51 4.70 71 68 60 00 76.73 89.79 92.70 70 00 87.93 88 11 85 66 91.23 72.74 75.96 77.50 4 80 71.52 60 00 76.74 89.88 92.79 70 00 87.95 88 19 85.73 91.30 72.61 75 89 77.49 4 90 71 35 60.00 76 74 89.96 92.88 70 00 87.96 88.27 85.79 91.38 72.48 75 83 77 48 5 00 71.19 60.00 76.75 90.05 92.97 70.00 87.97 88.36 85 85 91 45 72.35 75.76 77.47 TORN ADO 1 out.x!w 1/21/98 n - - -

TORNADO 1 Case HVAC Analysis OVA-0114, Revision 0 (5:00 PM Start)

Attachment C Page 3 of 14 TIME ATM31 - EARTH AIRLK AORRM CTl 9M ELECW ELVTS KITCH LDYRM MENRM MERM1 MERM2 MERM3 5 10

.71 03 60 00 76 75 90 13 93 06 70 00 87.98-88 44 85 90 91 53 72 22 75 70 77.46 5 20 70 86 60 00

.76 76 90 22 93 15 70.00 87.99 88 63-85 97 91.60 72 09 75 J3 77.44 5 30 70 69 60 00 76.77 90 31 93 24 70 00 88 00 88 74 86 04 91.67 71.96 75 56 77.43-4 5.40 70 53 60 00 76 77 90 39 93 32 70.00 88 01 88 82 86.10 91 74 71.83-7549 77.42-5 50 70.36 60 00 7678 90 47 93 41 70.00 88 02 88 90 86 16 91.81 71.69 75 42 77.41

- 5 60 70.19 60 00 76 79 90 55 93 49 70.00 88 03 88 97 86.22 91.88- '71.56 7635 77.40 5 70 70.02 60 00 76 79 90 63 93.58 70.00 88 03 89 05 86 27 91.95 71.42 75 28 77.39 5 80-69 85 60 00 - 76 80 90 71 93 66 70.00 88 04 89.12 86 33 92.02 71.29 75.20 77.37 f.

5 00 69 68 60.00 76 80 90.79 93.74 70.00 88 05 89.20 86.38 92 08 71.15 75.13 77.36 :

6.00 69 51 60,00 76 81 90 87 93.82 70 00 88 05 83 27 86.44 92.15 71.02 75 05 77.35 6 10 69 34 60.00 76 82 90.94 93.90 70 00 88 06 89 35 86 49 92.22 70.88 74.98 77.33 e

6.20 6J.17 60 00 76 82 91.02 93 98 70.00 88 06 89 42 86 55 92.28 70.74 74.90 77.32 I

6.30 69.00 60 00 76 83 91.10 94 06 70 00 88.07 89 49 86 60 92.35 70 61 74.82 77.31-6 40 68 83 60 00 76 84 91.17 94.14 70.00 88 07 89.56 86 65 92.41 70 47 74.75 77.29

]

6 50_

68.66 60 00 76 84 91.25 94 22 70 00 88,07 89 63 86.71 92 47 70 34 74 67 77.28 6 60-68 49 60 00 76 85 91.32 94 29 70 00 88 07 89.70 86.76 92.54 70 20 74.59 77.26

)

6.70 68 32 60.00 76.86 91.39 94 37 70 00 88 08 89.77 86.81 92.60 70 07 74.51 77.25 6.80 68.16 60.00 76 86 91.48 94 45 70 00 88 08 89.84 86.86 92.66 69 93 74 44 77.23

'6.90 67.99 60 00 76 87 91.53 94 $2 70 00 88.08 89 91 86 91 92.72 69 80 74.36 77.22

)

7.00 67.83 60 00 76 E?

91.61 94 60 70 00 88 08 89.98 86.96 92.78 69 67 74 28 77.20 7.10 67.66 60 00 76 89 91.68 94.67 70 00 88 08 90.04 87.01 92.84 69 54 74 20 77.18 7.20 67.50 60.00 78.89 91 75 94,74 70 00 88.08 90.11 87.06 92.90 69 40 74.12 77,17 7.30 67.34 60 00 76 90 91.81 94 81 70 00 38.08 90.18 87.11 92.96 69 27 74.04 77.15 i

7.40 67.18 60 00 76 91 91.88 94 89 70 00 88 09 90.24 87.16 93.02 69.15 73 97 77.13 7.50 67.02 60 00 76 91 91.95 94.96 70.00 88.09 90.31 87.21 93.08 69.02 73 89 77.11

' 7.60 66 88 60 00 76 92 92.02 95 03 70 00 88.09 90 37 87.33 93.13 68.89 73 81 77.10 l -

7.70 66.71 60.00 76 93 92.09 95 10 70 00 88.09 90.44 87.39 93.19 68.77 73 73 77.08 7,80 66.56 60.00 76.94 92.15 95.17 70.00 88.09 90.50 87.43 93.25 68 64 73 66 77.06 7.90

- 66.41 60 00 76.94 92 22 95.23 70 00 88 09 90 56 87.48 93.30 68 52 73.58 77.04 8 00 66 26 60 00

'5 95 92.28 05.30 70 00 88 08 90 63 87.53 93 36 68.40 73 51 77.02 8.10 66.11 60.00 76 90 92.35 95.37 70.00 88.08 90.69 87.57 93 41-68 28 73.43 77.00 8.20 65 97 60 00 76 97 92.41 95.44 70 00 88 08 90.75 87.62 93 47 68.16 73.36 76.98 8.30

. 65 ILJ 60 00 76.98 92.48 95.50 70 00 88 08 90.81 87.67 93 52 68 05 73.28 76 96

- 8.40 65 69 60 v0 76.98 92.54 95.57 70.00 88 08 90 87 87.71 93 07 67.93 73.21 76.94

' 8.50 65.55 60 00 76 99 9460 95.63 70 00 88.08 90 93 87.76 93.63 67.82 73.14 76 91 8 60 65 42 60.00 - 77.00 92.66 95.70 - 70.00 88 08 90 99 87.80 93.68 67.71 73 07 76.89 8 70

65.29-60 00 77.01 92.73 95.76 7700 88.08 91.05 87.85 93.73 67.60 73.00 76.87

].

8 80 65.16 60,00' 77.02 92.79 95.82 70.00 88 08 91.11 87.89 93.78 67.50 72.93 76 85 8,90 -

6503 - 60 00 77.02 92.85 95 89 70 00 88.08 91.17 87.93 93 84 67.39 72.86 76.82 9 00 64 91 ' 60 00 77.03 92.91 95 9C 70 00 88 08 91.22 87.98 93 89 67.29 72.80 76.80 9.10 64.79 60.00 77.04 92.97 96.01 70.00 88.08 91.28 88.02 93 94 67.19 72.73 76.78 9.20 64 68 60 00 77.05 93 03 96.07 70.00 83 c/

91.34 88 6 93.99 87.10 72.67 76.75 9.30 64,56 60 00 77.06 93.09 96.13 70 00 88.09 91.39 88 10 94.04 67.01 72.60 76.73 9,40 64 45 60 00 77.07 93.15 96.19 70.00 88 09 91.45 88.15 94 09 66 91 72.54 76.70 9 50 64.35' 60 00 77.08 93.20 96.25 70.00 88 09 91.51 88.19 94 14 66 83 72.48 76.68 9 60 64 25 60 00 77.09 93.26 96.31 70.00 88 09 91.56 88 23 94.18 66 74 72.43 76 65 9.70 64 15 60.00 77.09' 93.32 96.37 70.00 88.09 91.62 88 27 94.23 66 66 72.37 76.63 9 80 64 05 60 00 77.10 93.38 96 43 70.00 88 09 91.67 88.31 94.28 66 M 72.31 76.60 9 90 63 96 60 00 77.11 93 43 96 49 70.00 88.10 91,72 8035 94.33 66.50 72.26 76.57 10.00 63 88 60.00 77.12 93 49 96 54 70.00 88 10 91.78 88.39 94.38 66.43 72.21 76.55 1

a i-i TORNADO 1 out.xtw 1/21/98 i

t

...._,m.---

TORNADO 1 Case HVAC Analysis OVA-0114, Revision 0 (5 00 PM Start)

Attachment C Page 4 of 14 TIME PIPTL PLEMN RATL1 RATL2 RATL3 RATL4 RW1 RW2 SCTRM U1 AIR U1 BRA U1BRB UICA3 0 00 70 00-75 00 81 50 77.00 75 00 75 00 87.00:

87.00 78 00 91 00 88 00 89 00 94.00 0 10 70 00 R2.11 81 93 78 37 77.04 77,12 87.00 87.00 82 22 8 9.73 88 63 89 55 92.83 0.20 70.00 84 94 82.24 79 40 78 57 78 68 87,00 87.00 83 46 8936 88 73 89 63 92.72 -

0.30 70 00 86 33 82.47 80 17 79 71 79 82 87.00 87.00 84.12 89 82 88.83 89 65 92 67 040 70 00 87.09 82.64 80.74 80.58 80 67 87.00 87.00 84 53 89 59 88 85 89.66 92.64 l

0.50 70.00 87.60 82.76 81.18 81.23 81.29 87.00 - 87.00 84.82 89.56 88.85 89.66 92.60-0 60 70 00 87.99 82.86 81.51 81.73 - 81.76 87.00 87.00 85.05 89.53 88.85 89 66 92.58 0.70 70 00 88 30 82 93 81.76 82.10 82.11 87.00 87.00 85 25 89 51 88,85 89 66 92.55 0 80 70.00 88.58 82.98 81 95 82.39 82.37 87.00 87.00 85 57 89.49 88.84 89 65 92.53 l

0,90 70 00 88.83 83.02-82.10 82.61 82.57 37.00 87.00 85 80 89.47 88.83 89 64 92.51

(

1.00 70.00 89.06 83.06 82.21 82.79 82.73 87.00 87.00 85 95 89 45 88.81 89 63 92.49 1.10 70.00 89/0 83 08 82.30 82.92-8?.84 87.00 87.00 - 86 11 09.44 88 80 89 62 92.47 1.20 - 70.00 89 75 83.10 82 37 83 03 82.94 87.00 87.00 86.27 89 42 88.79 89 60 92.45 1.30 70.00 89 97 83 12 82 43 83 11 83.01 87.00 87.00 86.41 89 40 88 77 89 $8 - 92 44 1.40 70.00 90 17 83 13 82.48 83.18 83 07 87.00

' 00 86 54 89 39 88 74 89 56 92 42 1.50 70 00 90 35 83 14 82 51 83 24 1 11

??,00 87.00 86 66 89 37 88 72 89 54 92 41 1.60 70 00 90 53 83.15 82.55 83.29 83 15 87.00 87 00 86 78 89.36 88 69 89.52 92.39 1.70 70 00 90 70 83.16 82.57 83 32 83.19 87.00 87.00 86.89 89 35 88 66 89.49 92.38 1.80

. J 00 90 86 83 17 82.60 83.36 83.22 87.00 87.00 86.99 89 33 88.63 89 47 92.36 1,90 70.00 91 01 83.18 82 62 83 39 83.24 87.00 87.00 87.10 89.32-88 59 89 44

%.35

' 2.00 70 00 91.18 83,18 82 63 83 41 83 27 87.00 87.00 87 00 89.30 88.56 89 41 92.34 2.10 70.00 91.36 83 19 82 65 83 44 83.29 67.00 87.00 87.31 89.29 88.52 - 89 42 92.33 2.20 70 00 91.52 83.20 82 66 83 46 8b1 87.00 87.00 87.41-89 28 88.48 89.39 92.31 2.30-70.00 91.67 83.20 82 68 83 48 83.32 87.00 87.00 87.51 89.27 88 44 89 35 - 92.30 2 40 70 00 91 81 83 21 82 69 8349 83 34 - 87.00 87.00 87.60 89.25 88.39

-89 31 92.29 2 50. 70.00 91 94 83 21 82.70 8351 83.36 87.00 87.00 87.69 89 24 - 88 35 89.27 92.28 2.60 70 00 92.07 83.21 82.71 83 53 83.37 87.00 87.00 87.78 89 23 88.30 89.22 92.27 2.70 70M 92.20 83 22 82.72 8354 83 38 87.00 - 87.00 87.87 89 21 88 25 89 17 92.26 2.80 70 00 92.33

-83.22 82.73 83 56 83 40-87.00.

87.00 87.96 89.20 88.20 89.12 92.24 2.90 70.00 32.46 83.23 82.74 83 57 83.41 87.00 87.00 88 04 89.19 88.14 89.07 92.23 3 00 70.00 92.58 83 23 82.75 83.58 83.42 87.00 87.00 88.13 8918 88 08 89 02 92.22 3.10 - 70.00 - 92.70 - 83.23 82.76 83 60 83 44 - 87.00 87.00 88.21 89.17 88.03 88.97 92.21

  1. 20 70 00 92.82 83.24 82.77 83.61 83.45 87.00 87.00 88.29 89.15 87.97 88 91 92.20 3.30-70.00 92 93 83 24 82.78 83.62 83 46 87.00 87.00 88.37 89.14 - 87.91 88.85 92.19 3.40 70.00 93 05 - 83.25

-82.79 83 63 83 47 87.00 87.00 88 45 89 13 87.P4 88 80 92.18 3.50 70.00 93.16 83 25 82.80 83 65 83 48 87.00 87.00 88.53 89.12 87.78 88 73 92.17 3.60 70.00 93.27 83.25 82.80 83 66 83.49 87.00 87.00 88.60 89.11 87.71 88 67 92.16 3.70 70.00 93.38 83.26 82.81 83 67 83.51 87.00 87.00 88 68 89 09 87.64 88 61 92.15 3.80 70.00 93.49 83.26 82.82 83.68 83.52 87.00 87.00 88.75 89 08 87.57 88.54 92.14 3.90 70.00 =9160 - 83 26 82.83 83 69 83.53 87 00 - 87.00 88 83 89.07-87.50 88 48 92.13 4.00 70.00 93.70 83.26 82.83 83 70 83.54 87.00 87.00 88 90 89 06 87.43 88.41 92.12 a.n 70.00 93 82 83 27

'82.84 83.71 83.55 87.00 87.00 88 97 89 05 87.36 88.34 - 92.11 4 20 70.00 93 92 83 27 82.85 83.72 83 56-87.00 87.00 89.04 89 03 87.28 88.27 92.10 4.30

- 70.00 - 94 03 83 27 82.86 83.73 83.57 87.00 87.00 89.11 89 02 87.21 88 20 92.10 4.40 70 00 94 13 83.28 82 86 83.74 83.58 87.00 87.00 89.18 89.01 87.13 88.13 92.09 4 50 70.00 94.23 83.28 82 87 83.75 83 59 87.00 87.00 89 25 89.00 87.0S 88 05 92.08

~ 4 60 70.00 94 32 83 28 82 88 83.76 83.60 87.00 87.00 89.32 88 99 86 97 87.98 92.07 4.70 70 00 94 42 83.29 82.88 83.77 83 61 87.00 87.00 89.39 88.98 86.89 87.90 92.06 4 80 70 00 94 52 83 29 82 89 83.78 83 61 87.00 87.00 89 45 88 96 86 81 87.83 92.05 4 90 70.00 94.61 83 29 82.90 83 79 83.62 87.00 87.00 89.52 88.95 86.72 87.75 92 04 5.00 70.00 9171-83 29 82.90 83 80 83.63 87.00 87.00 89 59 88 94 86 64 87 67 92 03 TORNADO 1-outxtw 1/21/98

TORNADO 1 Case HVAC Analysis OVA-0114, Revision 0 (5:00 PM Start)

Attachment C Page 5 of 14 TIME PMT:. PI EMN RATL1 RATL2 RATL3 RATL4 RW1 RW2 SCTRM U1 AIR U1 BRA U1BRB UICA3 5 10 70OU 94 BL ' 83 30 82 91 83 81 8304 87.00 87 00 89 65 88 93 86 55 87.59 9202 5 20 70 00 94 89 83 3D 82 92 83 82 83 65 87 00 87 Ou 89 71 88 92 86 47 87.51 92 02 5 30 70 00 94 98 83 30 82 92 83 83 83 66 87 00 87.00 89 76 88 91 86 38 87.43 92 01 5 40 70 00 95 08 83 30 82 93 83 84 83 67 87.00 87 00 89 84 88 90 86 29 87 35 92 00 5 50 70 00 95 17 83 31 82 93 83 84 8368 87 00 87 00 69 90 88 88 86 21 87.26 91.99 5 60 70 00 95 25 83 31 82 94 83 85 83 68 87 00 87 00 89 97 8887 86 12 87.18 91 98 5 70 70 00 95 34 83 31 82 95 83 86 83 69 87 00 87 00 90 03 88 86 86 03 87.10 91 97 5 80 70 00 9543 83 31 82 95 83 87 83 70 87.00 87.00 90 09 88 85 85 94 87.01 91.96 5 90 70 00 95 51 83 32 82.96 83 88 83.71 87.00 87 00 90 15 88 84 85 85 86 93 91.96 6 00 70 00 95 60 83 32 82 96 83 89 83 72 87 00 87 00 90.21 88 83 85 76 86 84 91.95 6.10 70 00 95 68 83 32 82 97 83 89 83 73 87 00 37.00 90.27 88 82 85 66 86 75 91 94 6 20 70 00 95 77 83 22 82 V.

83 90 83.73 87.00 87.00 90 32 88 80 85 57 86.67 91.93 6 30 70 00 95 85 83 33 82.98 83 91 83 74 87.00 87.00 90.38 88.79 85 48 86.58 91 92 6 40 70 00 95 93 83 33 82 99 83 92 83.75 87.00 87 00 90 44 88.78 85 39 86 50 91.91 6 50 70 00 96 01 83 33 82 99 83 93 83 76 87.00 87.00 90 49 88.77 85 30 86 41 91 91 6 60 70 00 96 09 83 33 83 00 83 93 83.76 87 00 87.00 90 55 88 76 85 21 86 32 91.90 6.70 70 00 96 17 83 34 83 00 83 94 83 77 87.00 87.00 90 61 88.75 85 11 86 24 91 89 6 80 70 00 96 25 83 34 83 01 83 95 83 78 87 00 87.00 90 66 88.74 8502 86 15 91.88 6 90 70 00 96 33 83 34 83 02 8396 83 79 87.00 87 00 90.72 88 73 84 93 86 06 91 87 7.00 70 00 96 41 83 34 83 02 83 96 83 79 87.00 87.00 90.77 88 71 84 84 85 98 91.87 7.10 70 00 96 48 83 35 83 03 83 97 83 80 87,00 87.00 90 82 88 70 84.75 85 89 91.86 7.20 70 00 96 56 83 35 83 03 83 98 83 81 87.00 87.00 90 88 88 69 84 66 85 81 91 85 7.30 70 00 96 63 83 35 83 04 83 99 83 82 87.00 87.00 90 93 88 68 84 57 85 72 91.P ;

7.40 70 00 96 71 83'.5 83 04 83 99 83 82 87.00 87.00 90 98 88 67 84 47 85 63 91 84 7.50 70 00 96 78 83 36 83 05 84 00 83 83 87.00 87.00 91.03 88 66 84 39 85 55 91 83 7 60 70 00 96 86 83 36 83 05 84 01 83.84 87.00 87.00 91.09 88.65 84.30 85 47 91.82 7.70 70 00 96 93 83 36 83 06 84 02 83 84 87.00 87.00 91.14 88 64 84.21 85.38 91.f 7.80 70 00 97.00 83 36 83 06 84 02 83 85 87.00 87.00 91 19 88 63 84.12 85 30 91.80 7.90 70 00 97 07 83.37 83 07 84 03 83.86 87.00 87.00 91.24 88.62 84 03 85 22 91 80 8 00 70 00 97.15 83 37 83 07 84 04 83.86 87.00 87.00 91.29 88 61 83 95 85.13 91.79 8 10 70 00 97.22 83 37 83 08 84 04 83 87 87.00 87.00 91.34 88 60 83 86 8105 91.78 8 20 70 00 97.29 83.37 83 09 84 05 83 88 87.00 87.00 91.39 88.59 83.78 84 97 91.78 8 30 70 00 97.36 83 38 83 09 84 06 83 88 87.00 87.00 91.43 88 58 83 69 84 89 91.77 8 40 70 00 97.43 83 38 83 10 84 06 83 89 87.00 87.00 91.48 88 57 83,61 84 82 91.76 8 50 70 00 97.49 53 38 83 10 84 07 83 90 87.00 87.00 91 53 88.56 83 53 84 74 91.75 8 60 70 00 97.56 83.38 83 11 84.08 83 90 87.00 87.00 91.58 88 55 83 45 84.66 91.75 8.70 70 00 97.63 83.39 83.11 84 08 83.91 87,00 87.00 91.62 88.54 83.37 84.50 91.74 8 80 70 00 97.70 83 39 83 12 84 09 83.92 87.00 87.00 91.67 88 53 83 29 84 51 91.73 8 90 70 00 97.76 83 39 83 12 84.10 83 92 87.00 87.00 91.72 88.52 83 21 84 44 91.72 9 00 70 00 97.83 83 40 83 13 84 10 83 93 87.00 87.00 91.76 88 51 83.14 84 37 91.72 9.10 70 00 97.89 83 40 83 13 84 11 83.94 87.00 87.00 91.81 88.50 83.06 84 30 91.71 9 20 70.00 97.96 83 40 83 14 84 12 83 94 87 00 87.00 91 85 88 49 82.99 84.23 91.70 9 30 70 00 98 02 83 40 83 14 84 12 83 95 87.00 87.00 91.90 88 48 82 92 84 16 91.70 9 40 70 00 98 09 83 41 83 15 84 13 83 96 87 00 87.00 91.94 88.47 82.85 84.09 91 69 9 50 70 00 98 15 83 41 83 15 84.14 83.96 87.00 87.00 91.98 88 46 82.78 84.03 91 68 9 60 70.00 96 21 83 41 83 16 84 14 83 97 87.00 87.00 92 03 88 46 82.71 83 96 91 68 9.70 70.00 98.27 83 41 83 16 84.15 83.97 87 00 87.00 92.07 88 45 82 65 83 90 91 67 9 80 70 00 98 34 83 42 83 17 84 15 8398 87.00 87.00 92.11 88 44 82,59 83 84 91.66 9 90 70 00 98 40 83 42 83.17 84 16 83 99 87.00 87.00 92 15 88.43 82 52 83.78 91.66 10 00 70 00 98 46 83 42 83 18 84.17 83 99 87.00 87.00 92.20 88 42 82 46 83 73 91 65 TORNADO 1-out.xtw 1/21/98

TORNADO 1 Case HVAC Analysis.

OVA-0114, Revision 0 (5:00 PM Start)

Attachrnent C Page 6 of 14 TIME UICA4 U1 CPU U1CSA U1EER U1Pic U1RX U1STW U1TB1 U1TB2 U1TB3 U2 AIR U2BPA

~

0.00 84 00 68 00 87.00 75 00 80 00 91.00 88 00 87 00 87.00 87.00 91.00 87.00 0.10 - 85 15 88 11 88 35 82 56 80 73 91.00 BB 19 87.00 87 00 87.00 89 67 87.84 0.20 85 17 92.71 88.73 85.17 80.78 91.00 86.76 87.00 87.00 - 87 00 89 60 87.97 0 30 85 19 94 23 88 87 86 39 80.81 91.00 87.22 - 87.00 87 00 87.00 89 56 88 01 0 40 85 20 95 12 88 93 87.10 80 83 91.00 87.50 87.00 87.00 87.00 8952 88 02 0.50 85.21 95 80 88 97 87.59 80 85 91 00 87.68 87.00 87.00 87.00 89 49 88 03 0 60 85.21 96 39 89 00. - 87.96 8086 91=0n 87.81 87.00 87.00 87.00 89.46 88 04 0.70 85 22 96 91 89 01 88.27 80.88 91?

87.92 ~ 87.00 87.00 87,00 89.44 88 03 0.80 85 23 97.40 89 03 88.55 80 89 91.C.

88 01 87.00 87.00 87.00 89.42 8803 J 90 85 23 97.86 89 04 88 80 80 90 91.00 88.10

-87.00 87.00 87.00 89.40 88 02 1.00 85.24 98 29 80.05 89.02 80 91 91.00 88.17 87.00 87.00 87.00 89.38 88.01 1.10 85 24 98 75.

89 29 "9 65 80 92 91 00 88 29 87.00 87.00 87.00 89.36 88.00 1.20 85 24 99,18 89.36 496 80 93 91.00 88 42 87.00 87.00 87.00 89.34 87.98 1.30 85.25 99 59 89 38 J.19 80 94 S o00 88 52 87.00 87.00 87.00 89 32 87.97 1 40 85 25 9997 89 39 139 80 95 91.00 88 60 87.00 87.00 87.00 89 31 87.95 1.50 85 25 100 35 89.38 90.5 80.96 91.00 88 67 87,00 87.00 87.00 89 29 87.93 1.60 85.26 100 71 89 38 90 75 80 97 91.00 88 73 87.00 87.00 87.00 89 28 87.90 1.70 85 16 101.00

.89 38 90 91 80 97 91 00 88 80 87.00 87 00 S7.00 89.26 87.88 1.80 85 26 101.41 89.37 91.08 80.98 91,00 8f.86 87.00 87.00 87.00 89.25 87.85 1.90 85 26 101.74 89.36 91.23 80 99 91.00 88 92 L7.00. 87.00 87.00 89.23 87.82 2.00 -

85.26 102.07 89.40 91.39 81.00 91.00 88.98 87.00 87 00 87.00 89.22 87.79 2.10 85.26 - 102.10 89 42 91.56 81.00 91.00 89.05 87.00 87.00 87.00 89.20 87.75 2.20 85 26 102.71 89 42 91.71 81.01 91.00 89.11 87.00 87.00 87.00 89.19 87.72 2 30 85 27 103 02 89 41 91.86 81.02 91.00 89 17 87.00 87.00 87.00 89.17

- 87.68 2.40 85 27. 103.32 89 39 92.00 81.03 91.00 89 22 87.00 87.00 87.00 89.16 87.64 -

2 50 85.27 103 62 89.38 92.14 81.03 91.00 89 28 87.00 07.00 87.00 89 15 87.60 2 60 85.27 103.91 89.36 92.27 81.04 - 91.00 89.33 87.00 87.00 87.00 89.13 87.55 2.70 85 27 104 19 89 34 92 40 81.05 91.00 89 38 87.00 87.00 87.00 89.12 87.51 2.80 85.27 104.47 89.31 92.53 81.06 91.00 89 43 87.00 87.00 87.00 89.11

- 87.46 2.90 85.27 104.74 89 29 92.66 81.07 91 00 89 47 87.00 87.00 87.00 89.09 87.41 3.00 85.27 105.01 89.27 92.78 81.07 91 00 89.52 87.00 87.00 87.00 o9.08 87.36 3,10.

85 27 105.27 89.24 92.90 81.08 91.00 89.57 87.00

-87.00 87.00 89.07 87.31 3.20

. 85 27 105 53 89 21 93.02 81.09 91.00 89 61 87.00 87.00 87.00 89.06 87.25 3 30 85 27 105.78 89.19 93.14 81.10 91.00 89.66 87.00 87.00 87.00 89 04 87.19 3.40 85 27 106,03 89.16 93 25 81.11 91.00 89.70 87.00 87.00 87.00 89.03 87.14 3 50 ' 85.26 106.27 89.13 93.37 81.11 91.00 89.74 87.00 87.00 87.00 89.02 87.08 3.60 85 26 106 51 89 10 93.48 81.12 91.00 89.78 87.00 87.00 87.00 89 01 87.02 3 70 85.26 106.75 89.06 93.59 81.13 91 00 89.82 87.00 87.00 87.00 88 99 86.95 3 80 85 26 106.98 89 03 93,70 A1.14 91.00 89 86 87.00 87.00 87.00 88.98 86.89 3 90-.

' 85.26 '107.21 "S.99 93.81 bl.15 91 00 89.90 87.00 87.00 87.00 88.97 86.82 4.00 85.26 107.43 o8 96 93.91 81.16 91.00 89 94 87.00 87.00 87.00 88.96 86.76 410 =

85 26 107.65 88.94 94.03 81.16 91.00 89 98 87.00 87.00 87.00 88 94 86.69 4.20 85.26 107.87 88.90 94.14-81.17 91.00 90.03 87.00 87.00 87.00 88.93 86.62 4.30 85.26' 108.09 88 86.

94 24 81.18 91.00 90 07 87.00 87.00 87.00 88.92 86.55 4 40 85.26 108 30 88 82 94.35 81.19 41.00 90.10 87.00 87.00 87.00 88 91 86 47 4 50 85 25 108.50 88.78 94 45 81.20 91.00 90.14 87.00 87.00 87.00 88.89 8640 4 60 85 25 108.71 88.74 94 55 81 21 91 00 90.17 87.00 87.00 87.00 88,88 88.33 4.70 85 25-108 91 88.69 94 64 81.22 91,00 90.20 87.00 87.00 87 00 88 87 86.25 4 80 85 25 109 11 88 65 94.74 81.23 91.00 00 23 87.00 87.00 87.00 88.86 86.17 4.90 85 25 109.30 88 60 94.84 81.24 91.00 90 27 8/.00 87.00 87.00 88.84 86 09 5 00 - 85 25 109 49 88 56 94 93 81 25 91.00 90 30 87.00 87.00 87.00 88 83 86 01 TORNADO 1-out.xlw 1/21/98

_ _ _. _ _ _ _ _ _ _ _ _. ~

TORNADO 1 Cabe HVAC Analysis OVA-0114, Revision 0 (5:00 PM Start)

Attachment C l

Page 7 of 14 TIME UICA4 UICPU UICSA U1EER U1PIC U1RX U1STW U1TB1 U1TB2 U1TB3 U2 AIR U2 BRA 5 10 85 24 109 68 BS 51 9502 81 26 91.00 90 33 87.00 87 00 87.00 88.82 85 93 i

5 20 -

85.24 109 87 8847-95 12 61,26 91.00 90 36 87 00 87.00 87.00 88 81 85 85 5.30 85 24 110.06 88 42 95.21' 81 27 91.00 90.39 87.00 87.00 87.00 88 80 85.77 540 85 24 110.24 88 37 95.31 81.28 91 00 90 42 87.00 87.00 87.00 88 78 85 69 5 50 85 24 110 42 88.32 95 40 81.29 91.00 90.44 87.00 87.00 - 87.00 88.77 85.61 5.60 85 24 110 59 88 27 95 48 81.30 91.00 90 47 87.00 87 00 87.00 88 76 85,52 5.70 85 23 110 77 88 22 95.57 81.31 91.00 90 50 87,00 87.00 87.00 88 75 85.44 5 80 85 23 - 110 94 88.17 95 66 - 81.32 91.00 90 52 87.00 87.00 87.00 88.74 85.35 5.00 85 23 111.11 88.12 95.75 81.33 91.00. -90 55 87.00 87.00 87.00 88.72 85.27 6.00 85 23 111.28 88.07 95.83 81.34 91.00 90.57 87.00 87.00 87.00 88.71 85.18 6.10 85 23 111.44 88 01 95 92 81.35 91.00 90 60 87.00 87.00 87.00 88 70 85 09 6.20 85 22 111.60 87.96 96 00 81.36 91.00 90.62 87.00 87.00 87.00 88 69 85.00 A 30 ~ 85.22 111.76 87.91 96 08 81.37 91.00 90 64. 87.00 87.00 87.00 88.68 84.92 -

,, 40 -

85.22 111.92 87.85 9617 81.38 91 00 90 67 87.00 87.00 87 -

88.66 84 83 6.50 85.22 112.08 87.80 96 25 81.39-91.00 90 69 87.00 87.00

'87hv 88 65 84.74 6 60 85 22 112.24 87.74 96 33 81.40 91.00 90 71 87.00 87.00 87.00 88 64 34.65 6 70 85.21 112.39 87.69 96 41 81.41 91.00 90 73 87.00 87.00 87.00 88.63 84.57 6 80 85 21 112.54 87.63 96 49 81.42 91.00 90.76 87.00 87.00 87.00 88 62 84.48 6 90 85.21 112 69 87.58 96.57 81.43 91.00 90.78 87.00 87.00 87.00 88.01 84.39 7.00 85 21 112.84 87.53 96 64 81.44 91.00 90 80 87.00 87.00 87.00 87,.59 84.30

)

7,10 85 21-112.38 87.47 96 72 - 81.45 91.00 90 82 87.00' 87.00 87.00 88 58 84 21 7.20 85 20 113.13 87 42 96.80 81.46-91.00 90.84 87.00 87.00 87.00

. 88.57 84.13 7.30 85 20 113.27 37.36 96 88 81.47 91.00 90 86 87.00 87.00 87.00 88.56 84.04 1

7.40 85.20 113 41 87.31 96 95 81.48 91.00 90.88 87.00 87.00 87.00 -

88.55 83.95

]

7.50 85.20 113 55 87.26 97.03 81.49 91.00 90.90 87.00 87.00 87.00 88.54 83.87 4

7.60 85.20 113.69 87.20 97.10 81.50 91 00 90 92 87.00 87.00 87.00 88 53 83.78 7.70 85.20 113 82 87,15 97.17 81.51 91.00 00.94 87,00 87.00 87.00 88.52 83.69

.7.80 85 19 113 96 87.10 97.25 81.52 91.00 90.96 87.00 87 00 87 00 88.50 83.61

'7.90 85 19 114 09 87.05 97,32 81.53 91.00 90 97 87.00 87.00 87.00 88 49 83.53 8.00 85.19-114 22 86.99 97.39 81.54 91.00 90.99 87.00 87.00 - 87.00 88.48 83.44 8.10 85.19 114.35 86 94 97.46 21.55 91.00 91.01 87.00 87.00 87.00 88.47 83.36 8 20 85.19 114.48 86 89 97.53 81.56 91.00 91.03 87.00 87.00 87.00 88.46 83.28 8.30 _

85.18 114 61 ' 86.84 97 60 81.57 91.00 91.05 87.00 87 00 87.00 88.45

-83.19 8.40 85.18 114 73 86.79 97.67 81.58 91.00 91.07 87.00 87.00 87.00 88 44 83.11 g

8.50 85_18 114.8o 88.74 97.74 81.59 91.00 91.08 87.00 87.00 87.00 88.43 83.03 8 60

.85.18 -114 98 86.70 97.81 81.60 91.00 91.10 87.00 87.0G 87.00 88.42

' 82.96 8.70

'85.18 115 10 86 65 97.88 ' 81.61 91.00 91.12 87.00 87.00 87.00 88.41 82.88 8.80 85.18 115.23 86 60 97,94 81.62 91.00 91.14 87.00 87.00 87.00 88.40 -

82.80 8.90 85 17 115.34 86.56 98 01 81.63 91.00 9t16 87.00 87.00 ' 87.00 88.39 82.73 9.00 85.17 115.46 86.51 98 08 81.64 91.00 91.17 S7.00 87.00 87.00 88.38 82.65 9.13 85.17 115.58 86 47 98.14 81.65 91.00 91.19 87.00 87.00 87.00 88.37 82.58 9.20 85.17 115.70 86 43 98 21 81.66 91.00 91.21 87.00 87.00 87.00 88.36 82.51 9.30 85.17 115 81 86 38 98.27 81.67 91.00 91.23 87.00 87.00 87 00 88.35 82.44 9.40 85.17 115 93 86 34. 98.34 81.67 91.00 91.25 - 87.00 87 00 87.00 88.34 82.37 9.50 85.17 116 04 86.30 98.40 81.68 91.00 91.26 87.00. 87.00 87.00 88 33 82.30 9 60 85.16 116.15 86.27 98 47 81.69 91.00 91.28 87.00 - 87.00 87.00 88.32 82.24 9.70 85 16 ' 116.26 86.23 98 53 81.70 91.00 91.30 87.00 87.00 87.00 88 31 82.17

- 9.80 85.16 116.37 86 19 98 59 81.71 91.00 91.32 87.00 87.00 87.00 88.30 82.11 9 90 85.16 116 48 86.16 98 65 81.72 91.00 91.34 87 00 87.00 87.00 88 30 82 05 10 00 85.16 11&50 86.12 98 71 81.73 91.00 91.36 87.00 87.00 87.00 88.29 81.99 TORNADO 1-out.xtw 1/21/98

TORNADO 1 Case HVAC Analysis OVA-0114, Rwision 0 (5:00 PM Start:

Attachment C Page 8 of 14 TIME U2BRB-U2CA1 U2CA2 U2 CPU U2CSA U2EER U2PIC U2RX U2STW U2TB1 U2TB2 U2TB3 WCC 0.00 89 00 94.00 - 84.00 68.00 83.00 75.00 80 00 91 00 88 00 87.00 87 00 87.00 76.00 0 10 89 83 92.65 85 20 88 42 84 43 82.82 78 39 91.00 85 89 87.00 87.00 87.00 78 00 0.20 - 89 93 92.53 85 21 92.79 84.89 85.71 78 45 91.00 85 74 87,00 87.00 87.00 76 00 0 30 89.96

.92.48 85 23 94 34 85.13 87.17 78 46 - 91.00 85 90 87.00 87.00 87.00 76.00 0.40 89 97 - 92 43-85 24 95 26 85 24 87.93 78 46 91.00 86.06 87.00 87.00 87.00 76 00 0.50 89 98 92.40 85.25 95 97 85 31 88 44 78 45 91.00 86.18 87.00 87.00 87.00 76 00 0.60 89 98 92.37 85.25 96 57 85 34 88.83 78.45 91.00 86.27 87.00 87.00 87.00 76.00 0.70 89 98 92.34 85.26 97.12 85 36 89.15 78 44 91.00 86.34 87.00 87.00 87.00 76.00 0.80

' 89 98 - 92.31 85 27 ' 97.63 85.38 89.42 78 44 91.00 86 39 87.00 87.00 87.00 76 00 0901 89.97 92.29 85 21 98.10 85.39 89 68 78.43 91.00 86.44 87.00 87.00 87.00 76 00 1.00 89 96 32.27 85 27 98.56 85.49 89 91 7342 91.00. 8649 87.00 87.00 87.00 76.00 1.10 81.9 5 92 25 85 28 99.00 85 40 90.18 78 41 91.00 86 53 87.00 87.00 87.00 76 00 1.20 89 94 92.23 85 28 99 43 85.40 90 44 78 41 91.00 86 57 87.00 87.00 87.00 76.00 1.30 89 92 92.21 85.28 99.85 85 40 90.67 78.40 91.00 86 61 87.00 87.00 87.00 76 00 1.40 89 90 92.19 85.29 100.25 85 40 90.87.

78 39 91 00 86 65 87.00 87.00 87.00 76 00 1.50 89 88 92.17 85.29 100.63 85.40 91.06 78 37 91.00 86 68 87.00 87.00 87.00 76.00 1.60 89 86.

92.16 85 29 101.01 85 39 91.23 78 36 91.00 86.72 87.00 87.00 87.00 76 00 1.70 89 83 92.14 85 29 101.38 85.38 91.40 78 35 91.00 86.75 87.00 87.00 87.00 76.00 1.80 89.81 92 13 85.29 101.74 85.37 91.57 78 34 91.00 86.78 87.00. 87.00 87.00 76 00 1.90 89.78 92.11 85.30 102.08 85.36 91.73

.78.32 91.00 86.81 87.00 87.00 87.00.

76 00 2.00 _ 89.75 92.10 85.30 102 43 85.35 91.89 78.31 91.00 86 84 87.00 87.00 87.00 76.00 2.10-89 72 92.08 85.30 102.76 85 34 92.06 78.29 91.00 86.87 87.00 87.00 87.00 76.00 2.20 89 68 92.07 85 30 103.09 85.32 92.22

'78 27 91.00 86.90 87.00 87.00 87.00 76.00 2.30 89.65 92.05 85.30 103.41 85.31 92.37 78.25 91.00 86 93 87.00 87.00 87.00 - 76 00 2.40 89 61 92.04 85.30 103,73 85.29 92.51 78 24 91.00 86.96 87.00 87.00 87.00 76.00 2.50 89.57 92.03 85.30 104 03 85.27 92.65 78.22 91.00 86.99 87.00 87.00 87.00 - 76.00 2.60-89,53 92.01 85.30 104 33 85.25 92.79 78.19 91.00 87.02 87.00 87.00 87.00 76.00 2.70 89 49 92.00 85 30 104.63 85.23 92.92 78.17 91.00 87.04 87.00 87.00 87.00 76.00 2.80 89.44 91.99 85.30 104 92 85 21 93.05 78.15 91.00 87.07 87.00 87.00 87.00 76.00 2.90 89 40 91.98 85.30 105.20 85.18 93.18 78.12 91.00

.87.09 87 no 87.00 87.00 76 00 3.00

- 89 35-91.97 85.30 105.48 85.16 93.30 78.10 91.00 87.12 87.00 87.00 87.00 76 00 3.10 89.30 91.95 85.30 105.75 85.13 - 93 43 78.07 91.00 87.14 d7.00

.87.00 87.00 76.00 3 20 89 25 91.94 85.30 106 02 85.10 93.55 78.04 91.00 87.16 87.00 87.00 87.00 76.00 3.30 89.19 91.93 85.30 106.29 85 08 93.67 78.02 91.00 87.19 87.00 87.00 87.00 76.00 3.40 89.14 91,92 85.29 106 55 85 05 93.78 77.99 - 91.00 87.21 87.00 87.00 87.00 76.00 -

3.50 A9 08 91 91 85 29 106.80 85.01 93.90 77.95 91.00 87.23 87.00 87.00 87.00 76.00 3.60 89.02 91 90 85 29 107.05 84.98 94.01 77.92 91.00 87.25 87.00 87.00 87.00 76.00 3.70 88.96 91.89 85 29 107.30 84 95 94.13 77 89 91.00 87.27 87.00 87.00 87.00 76.00 3.80 88_90 91.88 85 20 107.54 84 91 94.24 77.85 91.00 87.29 87.00 87.00 87.00 76.00.

3.90 88 84 91.87 85.29 107.78 84.88 94.35 77.82 91.00 87.31 87.00 87.00 87.00 76 00 4.00 88.78 91.85 85.29 108 01 84 84 94 45 77.78 91.00 87.32 87.00 87.00 87.00 76.00 4.10 88 71 91 84 85.29 108.24 84 80 94.56 77.74 91.00 87.34 87.00 87.00 87.00 76.00 4.20 88 65 91.83 85.28 108 47 84.76 94.67 77.70 91.00 87.36 87.00 87.00 87.00 76.00 4.30 88.58 91.82 85.28 108 69 84.72 94.78 77.66 91.00 1 37 87.00 87.00 87.00 76.00

. 4 40 88.51 91.81 85.28 108.91 84 68 94.88 77.62 91.00 87.39 87.00 87.00 87.00 76 00 4.50 88 44 91.80 85 28 109.13 84.64 94,98 77.58 91 00 87 41 87.00 87.00 87.00 76 00 4 60 88.37 91.79 85.28 103.34 84.60 95 08 77.54 91.00 87.42 87.00 87.00 87.00 76 00 4.70 88.30 ' 91.78 85 28 109.55 84.55 95.18 77.49 91.00 87.43 87.00 87.00 87.00 76 00 4.80 88 22 91.77' '85.27 109.76 84.51 95.28 77.45 91.00 87.45 87 00 87.00 87.00 76.00 4.90 88 15 91.76 85 27 109 97 84 46 95.38 77.40 91.00 87.46 87.00 87.00 87.00 76.00 5 00 88 08 91,75 85 27 110.17 84 41 95 47 77.35 91.00 87.47 87.00 87.00 87.00 76.00

' TORNADO 1-out.xlw 1/21/98

... - - - ~.

- -_ ~ -.

TORNADO 1 Case HVAC Analysis-OVA 0114, Revision 0 '

(5;00 PM Start)

Attachment C Page 9 of 14 TIME U2BRB U2CA1 U2CA2 U2 CPU U2CSA-U2EER U2Plc U2RX-U2STW U2TB) U2TB2 U2TB3 WCC 5.10 B8 00 91 = 74 85 27 110 36 84 37 9557 77.30 91 00 87 48-87.00 87.00 87.00 76 00 5 20 87.9) 91.73

.85 27 110 56 84 32 95.66 77 25 91,00 87.50 87.00 87.00 87.00 76 00 5 30 6,15 91.73 85 26 110 75 84 27 95 76 77 20 91 00 87.51 87.00 87.00 87.00 76 00 5 40' 8?,77 91.72 85 26 110 94 84 22 95 85 77.15 91.00 87.52 87.00 87.00-87.00 - 76 00 5 50 87.69 91.71 85 26. 111.13 84 17 95 94 77.10 91.00 87.53 87.00 87 00 87.00 76 00 5.00 87.61 91.70 85 26 111.31 84 12 96 03 77.04 91 00 87 54 87.00 87 00 87.00 76.00 5 70 87.53 91.69 85 25 111.50 84 07 96.12 76 99 91.00 87.54 87.00 87.00-87.00 76 00 5.80 87.45-91.68 85 25 111 68 84 02 96 =21 76 94 91.00 87.55 87.00 87.00 87.00 76 00 5 90 87.37 91.67 85 25 111 85 83 96 96,30 76 88 91.00 87.56 87.00 87.00 87.00 76.00 6.00 87.28 91.66 85 25 112 03 83 91 96 38 76 82 91.00 87.57 87.00 87 00 87.00 70.00 6.10 87.20 91.65 85 25 112 20 83 86 96,47 76.77 91.00 87.57 87.00 87.00 87.00 76.00 6.20 87.12 91.64 85.24 112.37 83 81 96 55 76.71 91.00 87.58. 87.00 87.00 87.00 76.00 6 30 87.04 91.63 85 24 112 54 83 75 96 64 76 65 91.00 87.59 87.00 87.00 87.00 76.00 6 40 86 95 91.62 85.24 112.71-83 70 96.72 76 59 91.00 87.59 87.00 87.00 87.00

.76 00 6 50 86 87 91.61 85 24 112 87 83 64 96 80 76 54 91.00 87.60 P7.00 87.00 87.00 76 00 6 60 86 79 91 61 85 23 113 03 83 59 96 89 76 48 91.00 87.63 87.00 87.00 87.00 76 00 6 70 86.70 91.60 85 23 113 19 8354 96 97 76 42 91.00 87.01 87.00 87.00 87.00 76 00 6 80 8662 91.59 85 23 113.35 83.48 97.05 76 36 91.00 87.61 87.00 87.00 87.00 78 00 6 90 86.53 91.58 85.23 113 51 83 43 97.13 76.30 91 00 87.62 87.00 87.00 87.00

,1 7.00 86.45 91.57 85.22 113 66 83 37 97.21 76 24 91.00 87.62 87.00 87.00 87.00 7.10 86 37 91.56 85 22 113 82 83 32 97.29 76.18 91.00 87.62 87.00 87 00 87.00 LOO 7.20 86.28 91 55 85 22 113.97 83 26 97.36 76.12 91.00 87.62 87.00 87.00 87.00 76 00

'7.30 86 20 91.5 85 22 114 12 83 21 97.44 76.06 91.00 87.63 87.00 87.00 87.00 76.00 7.40

. 86.12 91.54 85 22 114 26 83 16 97.52 76 00 91 00 87.63 87.00 87.00 87.00 - 76.00 7.50 86 04 91.53 85 21 114 41 83 10 97.59 75 93 91.00 87.63 87.00 87.00 87.00 76 00 7.60 85.95 91.52 85.21 114 55 83 05 97.67 75.87.9130 87.63 87.00 87.00 87.00 76.00 UO 85.87 91.51 85 21 114.70 83 00 97.74 75 81 91.00 87.63 87.00 87.00 87.00 76.00 7.80 85.79 91.50 85.21 114 84 - 82.94 97.82 75.75 91.00 87.64 87.00 87.00 87.00 76 00 7.90 85.71 91,49 85.20-114.98 82.89 97.89 75.69 91.00 87.64 87.00 87.00 87.00 76.00 8.00 85.63 91 49 85 20 115.11 82 84 97.97 75 63 91.00 87.64 87.00 87.00 87.00 76.00 8.10 85.55 91.48 85 20 115 25 82.79 98 04 75.58 91.00 87.64 87.00 87.00 87.00 76 00 8 20 85 47 91.47 85 20 115.38. 82.74 98 11 75 52 91.00 87.64 87.00 87.00 67 00' 76.00 8.30 85.40 91.46 85.20 115 52 82 69 - 98.18 75 46 91.00 87.64 87.00 87.00 87.00 76 00 8.40 85.32 91.45 85.19 115 65 82.64 98.25 75 40 91.00 87.64 87.00 87.00 87.00-76.00 8.50 85.24 9145 85 19 - 115.78 82.59 98 32 75.34 91.00 87.64 87.00 87.00 87.00 76.00 8 60 85.17 91.44 85.19 115 91 82.54 08 39 75.29 91.00 87.64 87.00 87.00 87.00 76.00 8.70 85.09 91.43 85.19 - 116 04 82 49 98.46 75.23 91.00 87.64 87.00 87.00 87.00 76.00 8 80 -

85.02 91 42 85,19 116.16 82.45 98 53 75.18 91.00 87.64 87.00 87.00 87.00 76.00 8.90 84 95 91.42 85.18 116.29

-82.40 98 60 75.12 91.00 87.64 87.00 87.00 87.00 76.00 9.00 -. 84.88 91.41 c5.18 - 116.41 82.36 98 66 75.07 91.00 87.64 87.00 87.00 87.00 76.00 9.10 84.81 91.40 8!.18 116.54 82.31 98 73 75 01 91.00 87.64 87.00 87.00 87.00 76.00 9.20 84.74 91.39 85 18 116 66 82.27 98 80 74.96 91.00 87.64 87.00 87.00 87.00 76.00 9.30 8167 91.39 85.18 116.78 82.23 98 86 74 91 91 00 87.64 87.00 87.00 87.00 7f 00 940-84.61 91.38 85.18 116 90 - 82.19 98 93 74.86 91.00 87.04 87.00 87.00 87.00 76.00 9.50

- 84.54-91.37 85.67 117.02 62.15 98.99 74.81 91.00 87 64 87.00 87.00 87.00 76.00 9.60 84 48 91.36 85.17 117.13 82.11 99.06 74.76 91 Os 87.64 87.00 87.00 37.00 76 00 9.70 84 42 91.36 35.17 117.25 82 07 99 12 74.72 91.00 87.64 C7.00 87.00 87.00 76 00 9.80 84.36 91.35 85.17 117.36 82.03 99.18 74 67 91.00 87.64 87.00 87.00 87,00 70 00 9.90 84.30 91.34 85.17 117.48 82 00 99 25 74 63 91.00 87.64 87.00 87.00 - 87.00 76 00 10 00 84.24 91.33 85.17 117.59 81.96 99 31 74.58 91.00 87.64 87.00 87.00 87.00 76 00 TORNADO 1-out.x!w 1/21/98

~.;

, = ~

-.~-----~-_n._~_._~._n-

~--

.a.- - - ~. ~ _ _ - -.

70RNADO3 Case HVAC Analysis C alc DVA 0014. Rev. 0

($PM start 72 hour8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br /> ruru Attachment C.

P49e 10

_ Rf3 feweereve kevois Versen 152 N 01We8 H 1a M $U M C#c No NOP V. TORNADO LOSS OF ALL AC i

i TIME ATM31 EAR 1H AIRLA AORRM CTLEM F.fC#

E WTS MTCH LDvRM MENRM MERM1 VERM2

~

00 76 0 60 0 '

76 0 74 0 75 0 70 0 60 0 75 0 78 0 78 0 76 0 76 0 10 75 8-60 0 -

76 5.

84 7 87 6 70 0 86 6 83 6 52 7 67 2 76 0 77 2

] ~

20 75 1 60 0 76 6 86 7 89 6 70 0 87.2 85 4 83 7 88 7 75.5 77.1 30 74 1 60 0.

76 6 87 9 91 0 70 0 -

87 6 86 5 84 5 69 8 74 7 76 8 j-40 72 8 60 0 76 7'

$9 0 02 0 F0 0 87 8 87!

65 2 90 7 73 6 76 4 i=

50-

? 1.2 60 0 76 7 90 0 010 150 68 0.

88 4.

.85 8 91 5 72 4

- 75 8 60 69 5 60 0 78 8 90 9 9h8 7( 0 88 1-89 3 86 4.

92 2 71 0 75 1 70 67 8 60 0

~ 76 9 91 6 94 6 7f.0 88 1 90 0

$7 0 92 8 69 7 74 3 80 f,6 3 60 0 77 0 92 3

~ 95 3

  • 00 88 1 90 6 67.5 93 4 68 4

' 73 5 90 44 9 60 0 77 0 92 9 95 )

70 0-88 1 91 2 88 0 93 9 67.3 72 8 10 0 03 9 60 0 77 1 93 5 96 5 70 0 84.1 91 8 88 4 94 4 66 4 72 2 -

' 11.0 63 2 60 0 _

77 2 94 0 97 1-70 0 88 1 92 3 88 8 94 8 -

65 9 71 8 12 0 63 0 60 0 77.3 94 5 97 6 70.0 86 3 92 8 89 1 95 3 65 6

'71 6 13 0 63 2

.60 0 77 4 95 0 98 1 70 0 88 4 03 2 89 5 95 7 65.7 71 6 14 0 632 60 0 77 5 ie5.5 98 5 70.0 88 7 93 8 99 8 96 1 66 2 71 9 15 0 64 9 60 0 77 6 95 9 98 9 70 0 89 0 94 1 -

90 1 96 5 67 0 72.3 16 0 66 2 60 0 77.7 10 99 3 70 0 89 4 94 4-90 4 -

96 9 64 0 73 0 17 0 67 8 60 0 77.9 96 7 99 7 70 0 '

09 8 94 8 90 7 97.2 69 3 73.7 18 0 69 6 60 0 -

79 0 97,1 100 1 70 0 90 3 95 2 91,0 97 6 70 8

~ 74 5 19 0 71 2 60 0 711 97.5 1005 70 0 90 8 95 6 91.3 90 0

' 72 0 75 4 20.0 72.7 60 0 78 2 97 8 1009 70 0 91 3 95 9 91 6 98 4 73 3 76 2 21 0 74 1 60 0

- 78 4 98 2 101 3 70 0 91 8

' 96.3 51 9 -

98 7

- 74 4 76 9 22.0 -

75 1 60 0 to 5 98 6 101 6 70 0 92 3 96.7 92 3 99.1 75 3 77 5 i

23 0 75 8 60 0 78 6 99 0 1020 70 0 92 7 97.1 92 6 99 5 75 9 77.9 e

24 0 7C O 60 0 -

78 8 99 3 102 4 70 0 93 0 97 4 92 9 99 8 76 1 78 2 25 0 75 8 60 0 78 9 99 7 102 8 70 0 93 2 97 8 93 2 100 2 76 0 78 2 25 0 75 1 60 0 79 1 100 0.

103 2 70 0 93 4 98 2 93 6 :

100 5 75 78.1 27 0 74 1 60 0 79 2 100 4 103 6 70 0 93 5 98 5

' 93 9 1008 74 7 '

77.8 28 0 72 8 60 0 79 4 100 7 103 9 70 0 93 5

,98 9 94 2 101.1 73 7-77.3 29 0 71 2 60 0 71, 5 101.1 104 3 70 0 93 4 99 2 94 5 101 4 72 5

- 76 6 30 0 89 5 60 0 79 7 101 4 104 6 70 0 93 3 99 5 94 4 -

'01 7 71.1 75 8 31.0 67 8 60 0 79 9 101.7 104 9 70 0 -

93 1 99 8 95 1 r019 69 6 75 0 32 0 66 3 60 0 80 1 102 0 105 2 70 0 93 0 100.1 95 3 102.1 68 5 74 2-

.33 0 64 9 60 0 80.3 102 3 1056 70.0 9; 8 100 4 95 6 102 4 67 4 73 4 34 0 63 9 60 0 80 4 102.5 1057 70.0 92.7 100 6 95 8 '

1026

. 66 5 72 8 35 0 63 2 60.0 80 6 102 8 105 9_

70 0 92 6 100 9 96 0 102 7 66.0 72.3 36 0 63 0 60 0 80 8 103 0 1061 70 0 92 6 101.1 96 1

- 102.9 65 7 72.1

-37 0 63 2 60 0 81.0 103 2 106 3 70 0 92 6 101 3 96 3 103 1

- 65 9 72 1 38 0 63 9 60 0 81.2 103 4 1065 70 0 32 7 101.5 96 5 103 3

- 66 3

- 72 4 39 0 64 9 60 0 81 3 103 6 106 7 70 0 92.9

- 101.7 96 6 103.5.

67.1 72 8 40 0 66 2 60 0 81 5 1038 1058 70 0 93 2 101 8 96 8 103 7 68 1 73 4 41 0 67.8 60 0 81 7 -

1040 107.0 70 0 93 8 102 0 96 9 103 9 69 4 74 2 42 0 69 5 60.0

.81 8 104 2 107.2

'O O 94 0 -

102 2 97.1

'04 1 70.7 75 0 -

430 71 2 60 0.

82 0 104 4 107.3 70 0 -

94 4 102 4 97.2 104 3 72.1 75 9 44 0 72.7 60 0 82 2

- 104 6 107,5 70 0 94 8 102 6 97 4 104 5 73 4

- -78.7 45 0 74 1 -

60 0 82.3 104 8 107.8 70 0 95 2 102.8 97.6

..104 7 74 5 77.4 46 0 -

75 1 60 0 82 5 '

105.1 1080 70 0 95 6 103 0 97.8 1049

- 75.4 78 0 47 0 75 8

' 60 0 82 7 105 3 1002 70 0 95 9 103 3 98 0 105 2 76 0 78 4 46 0 76 0 60 0 82.8 1055 108 4 70 0 96 2 103 5 98 3 105 4 76.2 78 6 49 0 75 8 60 0 83 0 105 7 -

108,7 70 0 96 3 103 7 98 5 105 6 76.1 78.7 50 0

- 75 1 60 0 -

83 2 1060 108 9 70 0 96 4 104 0 98 7 1058-75 6--

78 6 51 0 74 1 60 0 83.3 -

106 2 109 2 70 0 96 4 104 2 98 9 106 0 74 8 78 2 52 0 -

72 8 60 0 83 5 106 4 109 4 70 0 96 4 -

104 4 99 1 106.2 73 8 -

77.7 53 0 71 2 60 0 83.7 106 6 109 6 70 0 96 2 1046 99 3 106 4 72.6 77 0 54 0 69 5 60 0 83 9 106 8 109 8 70 0 96.1 1048 99 5 106 5 71.2 76.2 55 0 67 8 60 0 84 0 107.0 110 0 70 0

--95 8 105 0 99 7-1017 69 9

'75 4 56 0 66 3 60 0 84 2 107 2 110 2 70.0

- 95 6 105 2 99 9 106 8 68 6 74 5 57 0 64 9 60 0

= 84 4 107 4 110 4 70 0 95 4 105 4 100 0 106 9 67 5 73 8 58ft 63 9 60.0 84 6 1078 110 5 70 0 95 2 105 5 100.1 107.0 66 7 73.1 59 G 63 2 60 0-84 8 107.7

-1106 70 0 95.1 1057 100.3 -

107.1 66 1 72 7 60 0 63 0 60 0 85 0 107.9 110 7 70 0 95 0 105 8 100 4 107.2 65.9 715 61 0 63 2 00 0 85 2 108 0 110 8 70.0 95 0 105 9 100 4 107 3 66 0 72.5 62 0 63 9 60 0 85 4 108 1 110.9 70 0 95 1 106.0 100.5

.107 4 66 4 72.7 63 0 64 9 60 0 85 5 106 2 1110 70 0 954 106 1 100 6 107.5 67.2 73 2 64 0.

66 2 60 0

' 85 7 108.3 111 0 70 0 -

95 5 106 2 100 7 107 6 69 2 73 8 65 0 67 8 60 0 85.8 1085 t11 1 70 0 95 8 106 3 1008 107 8 69 6 74 5 66 0 69 5 60 0 85 9 1086 til 2 70 0 96 2 106 4 100 9 107 9 70.8 75 4 67 0

- 71 2 60 0 86 1 100 7 111 3 70 0 96 6 1066 101 0 100 0 72.2 76 2 68 0 72 7 60 0 86 2 108 8 111 5 70 0 97.0 106 7 101 1 108 2 73 5 77.0 69 0 74 1 60 0 66 4 1090 111 6 70 0 97 3 106 8 101.7 108 3 74 6 77 8 70 0 75.1 60 0 86 5 1C11 111 7 70 0 97 7 107 0 101 4 1085 75 5 78 4 71 0 75 8 60 0 86 7 109 3 111 9 70 0 98 0 107 1 101 5 106 7 76 1 78 8 72 0 76 0 60 0 86 8 109 4 112 1 70 0 98 2 107.3 tot 7 108 8 76 3 79 0

. TORNADO 3 C8se HVAC Analysis Calc DVA,0014 Rev 0

($PM 8tatt 72 hour8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br /> run)

Attachment O Page 11-MERM3 MP T L PLE MN RA7L1 R A1L2 R A7L3 RUL4 RW1 RM SCTRM USAIN V1BR A UlBRB 79.0 70 0 76 0 81 5 77 0 75 0 7$ 0 87 0 67 0 18 0.

91 0 88 0 89 0 77 9.

70 0

. 89 1 83 1 82 2 82 8 82 7 87 0 87 0 -

85 9 89 5 88 8 89 6 77 8 70 0 -

91 2 -

83 2 -

82 6 83 4 83 3 87 0 87 0 87.2 89 3 88 6 89 4 -

77.7 70 0 92 4 83 2 82 8 83 6 83 4 87.0 87 0 88 1 89 2 88 1 89 0 77 8 70 0 93 7 83 3 82 8 83 7 83 5 87 0' 87 0 88 9 89 1.

87 4 88 4 77 5

. 70 0 94 7-83 3 --

82 9.

83 8 83 8 87.0 87 0

- 89 6 88 9 88 f 87.7

' 77 3 70.0 95 6 43 3 83 0 83 9 83 7 87.0 87 0 90 2 88 8 85 8 86 8 I

77 2 70 0 96 4 83 3 83 0 84 0 83 8 -

87.0 87.0 90 8 88.7 84 3 86 0 77.0

= 70 0 97.1 83 4 83 1 84 0 83 9 87 0 87 0 91 3 88 6 83 9 85 1 78 8 70 0 97 8 83 4 83 1 -

84 1 83 9 87 0 87.0 91.8 88 5 83 1 84 4 j

78 5 70 0 98 6 83 4

' 83 2 84 2 84 0 87 0 87 0 92.2 88 4 82 5 83 7 g

76 3

' 70 0 99 0 83 6 83 2

-842 84 1 87.0 87.0 92 6 88 3 82.0 83 3 75 9 70 0 '

99 8 83 5 83 3 84 3 84 1 87 0 87 0 93 0 88 3 81 7 83 0 75 6 70 0 100 1 83 5 83 3 64 3 84 2 87 5 87.0 93 3 88 2 81 7 82 9 75 3

.70 0 1008 83 8 83 4 84 4.-

84 2 87.0 87.0 93 6 88 2 81 9 83.1 74 9 70 0 101 0 83 6 83 4 84 4 84 3 87 0 87 0 93 9 88 2 82 3 83 5 j,

- 74 6 70 0 101 4

- 83 8 83 5 84 5 84 3 87.0 87.0 94 2 -

88 2 82 9 84 0 g

74 3 70 0 101 9 83 7 83 5 84 5 84 3 87 0 87.0 94 5 88 2 83 6 84 1 74 1

- 70 0 102 3 83 7 83 5 84 6 84 4 87.0 87.0 94 8 88 2 84 5 85 5 73 9 70 0 102.7 83 8 83 6 84 6 84 4 87 0 87.0 95.2 88 2 85 4 86 3 73 8 70 0 103 0 83 8 83 6 84 6 84 5 87.0 87 0 95 5

- 88 2 88.3 87.2 -

73 8.

70 0 103 4 83 8 83 7 84 7 84 5 87.0 87.0 95 8 84 2 87=1 87.9 73 4 -

70 0 103 8 83 9 83 7 84 7 34 8 87.0 87.0 96.1 --

88 2 87 8 88 5 73 8 70 0 104 2 83 9 83 8 84 8 BJ 8 87,0 87 0 96 4 88 2 88 3 89 0 -

73 9 70 0 104 6 84 0 83 8 84 8 S46 87 0 87 0 96 8 88 2

- 88 5 89 3 l

' 74 0 to 0 1050 84 0 83 8 84 8 84 7 87.0 87.0 97,1 88 2 88 6

. b9 3 l

74 2 70 0 1052 84 1 -

83 9 84 9 84 7 87.0 87.0 97.4 88 2 88 4 89 1 ll 74 2 70 0 605 7 84 1 83 9 84 9 84 7 87.0 87.0 97 8 F81 88 0 88.8 j _-

74 4 70 0 106 1 84 2 84 0.

84 9 84 8 87 0 87.0 98.1 88 1 87 4 88 2 74 5 70 0 106 4 84 2 84 0 85 0 84 6 87.0 87.0 98 4 88 0 -

86 6 87 5 l

74 6 70 0 1068 84 3 84 1 85 0 84 8 87 0 87 0 98 8 88 0 85 8 86 7 74 6 70 0 107.1 84 4 84 1 850-84 9 87.0 87.0 -

94 9 87.9 84 9 55 9

].

74 7 70 0 107.4 84 4 84 2 85 0 84 9 87.0 87.0 '

99 2_

47 8 84.1 85 1 74 6 70 0 1071 84 5 84 2 85 1 84 9 87.0 87 0 99 4 87 8 83 3 84 4

- 74 6 70 0 107 9 84 6 84.3 :

85 1 84 9 87.0 87 0

' 99 6 87 7 82.8 837-d' 74 4 70.0 108.2 84 6 -

84 3 85 1 85 0 87.0 87.0 -

99 8 871 82.1 83.3

}

74 3 70 0

! 108 4 84 7 84 4 85 1 85 0 87 0 87.0 99.9 87.6 81.9 -

83 0 74 1

' 70.0 108 7.

84 7 84 4 85 2 85 0 87 0 87 0 100,1-87 6 81.9 83 0 j

73 9

- 70 0 108 9 84 8 84 5 85 2 85 0 87.0 87 0

- 100.2 87.6.

. 82.

  • 83 2 73 7 70 0 1091 84 9 84 5 85 2 85 1 87.0 87.0 100 4 87 6 82 $

83 6 e

73.5 70 0 109 3 84 9 84 8 85 2 85.1 87,0 87.0 -

100$

87 8 83 1 84 1 73 3

- 70 0-109 5 85 0 84 6 85 3 85.1 87 0 87 0

.1006 -

871 83 9 84 9 73 2 70 0 -

W91 85.1 84 7 85 1 85 2 87.0 87 0 100 8 87.7 84 8 85 7 73 1 -

70 0

109 9 85.1 84 7 85 3 85 2 87.0 87 0 101 u.

871 85 7 86 5 73 0 10 0 110.1 85 2 84 8 85 3 -

85 2 87.0 87 0 101.1 87 8 l-73 2 -

70 0 110 3 85 3

'84 8 85 4 85 2 87.0

~87 0 -

101.3 87.8

~ 84 6 87.3 87.4 88 1

[-

73 2 70.0 110 5 85 3 84 9 85 4 85 3 87.0

.87.0 101.5 87.8 88.1

- 88 7 73 4 70 0 110 7 85 4 84 9 "4

85 3 87 0 87.0 1013 87.8 88 5

  • A 2

~73 5 70 0 110 9 85.5 85 0 85,3 87.0' 87.0 101.9 87.8 88 8 89 5 4

73 7.

70 0 111 2 85 5 85 0 85 5 85 3 87 0 87.0 ~

102.2 87 8 88 9 89 5 73 9 70 0 111 4 85 6 85 0 855-85 3 87.0 87.0 102.4 87.8 88 7 89 3 74 1 70.0 1116 85 7 85 1 85 5 85 4 87.0 87.0 102.6 88 3 89 0 74 2 70 0 1110 85 7 85.1 85 5 85 4 87.0 87.0 102.0 8?.8 871 88 4 74 3 70 0 -

112 1 85 8 85.2 85 5 85 4 87.0 87 0 103 0 87 7 87.0 87.7 74 5 70 0 112.3 85 9 85.2 85 6 85 4 87.0 87.0 103 2 87.7 86 1 87.0 74 6 70 0 112.5 85 9 85 3 85 8 85 5 -

87.0 87.0 103 4 87 6 85 2 86 1 74 6 70 0 112 7 86 0 85 3 85 8 85 5 87.0 8: 0 1036 87.5 84 4 85 3 74 7 70.0 112 9 86 1 85 4 85 6 85.5 87.0 87.0 103 7 87 5 83 8 84 6 74 6 70 0 113 1 86.1 85 4 85 6 85 5 87.0 87,0 103 8 87 4 82 9 84 0 74 5 70 0 113 2 86 2 85 5 85 7 BS 5 87.0 87 0 103.9 87.4 82 5 83 5 74 4 70 0 113 3 86 3 85 5 85 7 85 8 87 0 87.0 104 0 87 4 82.2 83 3 74 2 70 0 113 5 86 3 85 6 85 7 85 8 87.0 87 0 1041 87 4 82 2 83 2 74.1 70 0 1136 86 4 85 6 05 7 85 8 87.0 87.0 104 2 87 4 82.4 834 73 9 70.0 1131 86 5 85 7 85 7 85 8 87.0 87 0 104 2 87 4 82 8 83 8 73 7 70 0 113 8 86 6 85 7 85 8 85.7 87.0 87.0 104 3 87 4 83 4 84 4 73 6 70 r 113 9 86 8 85 0 85 8 857 87 0 87.0 104 4 87 4 84 2 85 1 734 70-114 0 86 7 85 5 85 6 85 7 87.0 87 0 104 5 87 5 85 1 85 9 73 4 70 0-114 2 86 8 85 9 85 6 85 7 87 0 870 104 6 87.5 86 0 86 7 73 3 70 0 114 3

86 8 85 9 85 8 85 7 87 0 87.0 104 7 87.6 86 9 87 6 73 5 70 0 114 4 88 9 86 0 85 9 85 8 87.0 87 0 1048 87.6 877 88 3

_ 73 6 -

70 0 1145 86 9 86 0 85 9 85 8 87.0 87.0 105 0 87 6 88.3 89 0 73 7 70 0 114 7 87 0 86 1

- 85 9 858 87 0 87 0 105 1 871 88 8 89 4

. 73 9 70 0 114 9 87 1 86 1 85 9 85 8 87.0 87 0 105.3 87 1 89 1 89 7

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j TORNADO 3 Case HVAC Anatys;s Calc DVA-0014. Rev 0 (5PM start 72 hour8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br /> run)

Attachment C 4

Page 12 3

+

l UICA3 UICA4 UICPU U1CSA U1EER UthC U1Rx U1STW UtTat ut1B2 01783 U2Am U2 BRA 94 0 64 0 680 87 0 15 0 80 0 91.0 86 0 87 0 87 0 87 0 91 0 87 0 92 $

$5 2 98 3 89 1 89 0 80 9 91 0 88 2 87 0 87 0 87 0 89 4 88 0 j

92.3 85 3 102.1 89 4 91 4 81 0 91 0 89 0 87 0 87 0 87 0 89 2 87.8 i-92 2 85 3 1050" 89 3 92 8 81 1 91 0 89 5 87 0 87.0 87 0 89 1 87 4 l-92 1 85 3 107 4 89 0 93 9

~ 81 2 91 0 89 9 -.

87 0 87 0 -

87 0 89 0 88 8

' 92 0 85 2 109 5 88 6 94 9-.

-. 01 2 91.0 M3 87 0 97 0 87 0 88 8 86 0 i

91 9-85 2 111.3

- 88 1 -

95 8 81 3 91 0 90 6 87 0 af 0 87.0

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~ 85 2

- 112 8 87-.5 96 6 81 4 -

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).

91 8 85 2 114 2 87 0 97 4 81 5 91 0 91 0 87 0 87 0 87.0 88 5 83 4 91 7

$5 2-1155 86 5 98 1 81 6 91.0 =

91 2-87 0 87.0 87.0 88 4 82 7 91.7 85 2 118 6 86 1 98 7 81 7 91 0 91 4 870-87.0 87.0 88 3 82 0 j ~

91 5 85.1 =

118 6 45 8 99 9 81 9 91 0 91 8 87.0 87.0 87.0 88 1 81.1 91 6 85 2 117.6 85 9 99 3 81 8 _

91 0 91 8 87 0 -

87.0 -

87 0 88 2

-81 3 i-5

-91.5 85.2 119 4 e5 8 100 4 82 0 91 0 92 0 87 0 87 0 87.0 88 1 81.0 l.

91 4 85 2 120.3 86 0 100 9 82.1 91 0 92.3 87.0 87.0 87.0 88.1 81.2 1

91 4 85 2 121.1 86 4 101 3 82 2 91 0 92.7 87.0 87.0 87.0 88 0 81 8

- 91 4 85 2 121 8 87.0 101 7 82 2 '

91 0 93 1 87.0 87.0 -

87.0 88 0 82.2 91.3 85 2 1225 87 6 102.2 82 3 -

91 0 93 5 87 0 87.0.

. 87.0 88 0 83 0 91 3 85 2 123 2 88 4 102.6 82 4 91 0 93 9 87.0 87.0-87.0:

88 0 83 9 91.3 85 3 123 8 89 1 103 0 82.5 91 0 94 3-87.0 87 0 87 0' 88 0

' 84 8 91.3 85 3--

. 124 5 89 9 -

103 4 82.6 9t 0 94 8 87.0 87.0 87.0 88 1 85 8 91 3 85 3 1251 90 6 103 7 82 L 91 0 95.2 87 0

-87 0 87.0 88 1 86 4 91 2 85 4 125 7 91 2 1041 82 9 01 0 95 6 -

87.0 87 0 57.0 88 1 86.9 91 2 8$ 4 126 3 91.7 104 5 83 0 91 0 96 0 87 0 87.0 87.0 88 1

~ 87 4 91 2 85 4 126 9 92 0 -

104 9 83 1 91 0 96 3 87 0 87.0 87.0 88 1 87 7 91.2 85 5 127 4

- SL1 105 3 83 3 91.0 96 5 87.0 87 0 87 0 88 0 87.9 91 1 85 5 127 9 92 1 1056 83 4 91.0 96 7 87.0 87.0 87 0 88 0 87 8 91 1 85 5 1294 91.8 1060 83 6 91 0 06 9 -

87 0 87.0 87 0 88 0 87 4 91 1 85 5 1289 01 5 106 4 83 7 91 0 97.0 87 0 87.0 87.0 87 9 86 8 91 0 85 6 -

129 4 91 0 106 7 83 9 91 0 97 0 87.0 87.0 87.0 87.9 86.1 91 0 85 6 1298 90 4 107 0 84 0 91.0 97.0 87.0 87 0 87.0 87 8

$$ 2 '

91 0 85 6 130.3 89 8 107 4 84 2 91 0 97.0 87.0 87 0 87.0 87.7 84 3 90 9 85.6 130 7

- 89 3 107.7 84 3 91 0 97.0 87 0 87.0 87.0 87.7 83.5 90 9 85.7 131.1 88 7 108 0 84 4 91 0 97.0 87.0 87.0 87.0 87.6 82 7 90 9

- 85 7 131.4 88 3 108 3 84 5 91.0 97.0 87.0 87.0 87.0 -

87 5 82 0 90 9 85 7 1318

- 87.9 108 5 84 6 91 0 97 0 87 0 37.0 87.0 87 5

. 81 6 90 8

~ 85 8 132.1 87 8

~ 108 8 84 7 91 0 97.1 87.0 87 0 87.0 87 4 81.3 90 8 85 8 132 5 87 8 1090

- 84 8 91 0 97.2 87.0 87.0 87 0 87 4 81 3 90 8 85 8 -

132 8 88 0 109 2 84 9 91 0 97.3 87.0 87.0 87 0 874 81 5 90 8 85 9 1331 88 3 109 4 -

85 0 91.0 97.5 87 0 87 0 87 0 87 4 81 9 90 8 85 9 133 4 88 8 109 6 85 1 91.0 97 8 87 0 87.0 87.0 87.4 82 5 90 8 86 0 133.7 89 4 1098 85 1 91.0 98 1 87 0

87 0 87.0.

87 5 83 3 90 8 ft 0 134 0 90 1 110,0 85 2 91 0 98 4 87.0 87 0 87 0 87 5 84 1 90.8 86 i 134 3 90 8 110 2 85 3 91 0 98 7

, 87 0 87.0 87.0 87 5 85.1 90 8 88 1 134 7 91 5 110 4 85 4 91 0 99 1 87 0 87.0 87 0 87.6 85 9 90 8 88 2 135 0 92 2 110 6.

85 5 91 0 99 4 87.0 87 0 87.0 87.6 86 8 90 8 86 2 135 3 92 8 110 9 85 8 91.0 99 7 87.0 87 0 87.0 87.8 87.4 90 8 88 3 135 6

- 93 2 111.1

. 85 7 91.0 100 0 87.0 87.0 87.0 87 8 87.9 90 8 84.3 135 9 93 5 111.3 85 8 91 0 100 2 87 0 87 0 87 0 87.6 88 2

- 90 8 86 4 136.2 93 6 111.5 86 0 91 0 100 4 87 0 87.0 87.0 87 6 88 2

- 90 8

~ 88 4 136 5 93 5 111 8 86 1 91 0 1006 87 0 87.0 87 0 87 6 88 1

' 90 8

. 86.5 136 8 43 2 112 0 86 2 91 0 1006 87.0 87.0 87.0 87 6 87.7

- 90 8 86 5 137.1-92 8 112 2 86 3 91 0 100 6 87 0 87.0 87.0 87.5 87.1 90 7 86 5 137.4 92.3 112 4 66 5 91 0 100 6 87.0 87 0 87.0 87 5 86 3 90 7 86 8 1376 91 7 112.7 86 6 91 0 100 5 87 0 87.0 87 0 87.4 85 5 90.7 88 6 137 9 91 1 112 9 86 7 91 0 100 4 87.0 87 0 87.0 87.4 84 6 90.7 86 7 138 1 90 5 113 1 86 8 91.0 100 4 87 0 87.0 87 0 87.3 83 7 90.7 86.7 138 3 89 9 113 3 86 9 91 0 100 3 87.0 87 0 87 0 87.3 83 0 90 7 P6.8 1386 89 5 113 4 87 0 91 0 100 2 87 0 87 0 87.0 87 2 82.3 90 6.

86 8 138.8 89 1 113 6 87 1 91 0 100 2 87.0 87.0 87.0 87.2 81 8 90 6 86 9 139 0 88 9 113 7 87.2 91 0 100 2 87 0 87.0 87.0.

87.2

' 81 6

-90 6

_ 86 9 139 2 88 9 113 9 87.2 -

91 0-100 3 87 0 87.0 87.0 87.1 61 5 90 6 87 0 139 3 89 1 114 0 87.3 91 0 100 4 87 0 87 0 87 0 87.1 81 8 90 6 87 0 139 5 89 4 114 1 87 3 91 0-1005 87 0 87.0 87.0 87 2 82 2 90 6 87 1 139 7 89 9

14 2 87.3 91 0 100 7 87.0 87 0 87 0 87.2 82 8 90 6 87 1 139 9

. 90.5 114 4 87 4 91 0 101 0 87.0 87.0 87,0 87 2 83 6 90.7 87 2 140 1 91 1 1145 87 4 91 0 101 3 87 0 87 0 87.0 87 2 84 4 90 7 87.2 140 3 91 8 114 6 8? 5 91 0 101 6 87 0 87.0 87.0 87 3 85 3 90 7 87.3 140 5 915 114 7 87.5 91 0 101 9 -

67 0 87.0 87.0 87 3 86 2 90 7

'874 140 7-93 2 114 8 87 6 91 0 -

102.1 87 0 87.0 87.0 87 4 87 0 90 7 874 141 0 93 7 115 0 87.7 91 0 102 4 87 0 87.0 87.0 87 4 877 90 7 87.5 141.2 94 1 115 1 87.7 91 0 102 7 87 0 87 0 37 0 87 4 88 2 90 7 87,5 1414 94 4 115 3 878 91 0 1028 87 0 87.0 87.0 874 88 5

, TORNADO 3 Ce59 HVAC Analysis C81c OVA 0010, Red (5PM star 172 hour0.00199 days <br />0.0478 hours <br />2.843915e-4 weeks <br />6.5446e-5 months <br /> run)

Attachment C P8ge 13 U2BNB U?CA1 U2CA2 U2 CPU U2CSA U2EER U2PIC U2RX U2STW U2fB1 U2TB2 U21B3 WCC 69 0 94 0 84 0 68 0 83 0 76 0 80 0 91 0 65 0 87 0 87.0 87 0 76 0 90 0 :

92 3 85 3 96 6 85 4 89 9 78 4 91 0 86 5 87 0 87 0 87 0 76 0 89 8 92 1 85.3 102 4 85 4 91 9 78 3 91 0 86 8 87 0 87 0 87.0 76 0 89 3 92 0

- 85 3..

1056 85 2 93 3 78 1 91.0 87.1 87.0 87 0 87 0 76 0 88 8 91 9 85 3

' 108 0 84 8 94 5 77 8 91 0 87 3 87 0 87.0 87 0 76 0 88 1 -

91 8'-

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-844 95 5 77 4 91 0 87 5 87 0 87.0

. 87 0 76 0 87.3 91 7 -

85 2 112 0 -

83 9 96 4 76 8 91 0 87 6

. 87 0 87 0 87.0 76 0 86 5 -

91 6 85 2 113 7 83 4 97.2

_ 76 2 91 0 87 6 87.0 87 0 87 0 76 0

$$ 8 91 8 85.2 115.1 82 8 98 0 -

75 6 91 0 87.6 87 0 F9 87 0 76 0 84 9 91 4 85 2 1164 82 4 96 7 75 1 91.0 87.6 87.0 87.0 87 0 76 0 84 2 91 3 85 2 -

117.6 82 0 99 3 74 6 91 0 87 6 >

87.0 87 0 -

87 0 76 0 83 8 91.3.

85 2 -

118 7 81.7 99 9 74 2 91 0 -

87 7 87.0 87 0 87 0 76 0 83 6 91 2 85 2 119 6 81 6 1005 74 0 91 0 87.7 87.0 87 0 87.0 78 0 83 4 91.2 85 2 120 6 81 6 101.0 74 0 91 0 87.8 87.0-47 0 87 0 76 0 83 5 91 1

-852 121 4 01 8 101.5 74M 91.0 87.9 87.0 87.0 87 0 76 0 83 8 91.1 85 2 122 2 82.2 101 9 74 5 91 0 64 1 87.0 67 0 87.0 76 0 -

64 4 91 0 85.2 123 0 82 8 102 4 74 9 91 0 88 4 87 0 87.0 87.0 76 0

- 85 0

'10 85 2 123 7 83 4 1028 75 6 91 0 88 7 87.0 87.0 87.0 76 0 85 0-11 0 85 2 124e 84 2 103.2 76 1 91.0 49 0.

87.0 87.0 87.0 76 0

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- 90 9 85 3 125.1 84 9 1038 76 7 91 0 89 4 87.0 8/0 87.0 76 0 87 4 90 9 85 1 125 7 85.7 104 0-77.3 91 0 89 8 87.0 87.0 87.0 76 0

- 88 1 90 9 85 3 126 4 66 4 104 4 77 9 91 =0 90.2 87,0 87.0 87 0 76.0 88 8 -

90 9 85 4 127.0 86 9 104 8 78 3 91 0 90 6 87.0 87 0 87.0 76 0 89 2 90 8 85 4 1278 87.4 105 2 78 7 91 0 91 0 87 0 87,6 87 0 78 0 89 5 90 8

'85 4 128 2 87.7 105 6 78 9 91.0 91 3 87 0 87.0 87.0 76 0 89 8 90 8 85 5 128 7 87.9 105 9 79 1 91 0 91 8 87 0 87.0 87.0 76 0 89 5 90 7 8; ;

129 3 87 8 106.3 79 1 91.0 91 8 87 0 87.0 87.0 76 0 89 1 90 7 85 5 129 8 87 8 106 7 78 9 91.0 92 0 87 0 87 0 87 0 76 0 -

88 6 90 7 85.5 130 3 87 3 107.0 78 6 91 0 92 1 87.0 b7.0 87.0 78 0 88 0 90 6 85 8 130 8 86 8 107 4 78 2 91.0 92 1 87.0 87.0 87 0 78 0 87.2 90 6 85 8 131 3 86 2 107.7 77.6

- 91 0 92 1 87.0 87.0 87,0 76 0 88 4 90 6 85 8 131 7 85 6 108 1 77 0 91.0 92 0 87.0 87.0 87,0

.76 0-85 6 90 5 85 8 132 2 85 0 108 4 76 4 91 0 91 9 87.0 87 0 87.0.

76 0 84 9 90 5 M7 1326 84.5 108 7 75 8 91.0 91 8 87.0 87.0 87 0 76 0 843-90 5 85.7 133 0 84 0.

109 0 75 3 91 0 91 7 87 0 87.0 87.0 76 0 83 8 90 4 85 7, 133 3 83.7 109 2 74 9 91 0 91 7 87.0 87 0 -

87.0

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83 6 90 4 85 8 1337 83 5 109 5 74 7 91 0 91 6 87.0 87.0 87.0 76 0 i

83 4 90 4 85 8 134 0 83.5 109 7 74 7 91 0 91 6 87.0 87.0 87.0 78 0:,

'j 83 6 90 4 85 9 134 3 83 7 109 9 74 8 91 0 91 6 87,0 87 0 87 0 78 0 84 0 90 4 i 85 9 134 7 84 1 110.1 75 2

- 91 0 91 8 87 0 87.0 87.0 78 0 84 5 -

90 4

' 86 0 135 0 84 5 110 3

- 75 8 91 0 91 9 87.0 87.0

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~ 861 1358 85 8 110.7 ~

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  • 88.1 1359 86 6--

110.9 77 5 91 0 92.7 73 87 0 87.0 76 0 87 6 90 4 86 2 136 2 87 3 111.1 78.1 91.0 93 0 87.0 87 0 87 0 76 0 88 4 90 4 86.2 136.5

- 47.9 111.3 78 6 91 0 93 4 87.0 87 0 87.0 76 0 89 0 90 4 a

- 86 3 136 9 88 5 111.6 79 1 91.0 93 7 87 0-87.0 87.0

. 76 0 89 5 90 3 86 3 137.2 88 9 111.8 79 5 91 0 94 0 87 0 87.0 87.0 76 0 89 7 90.3 66 4 137.5 89 2.

112 0 79 7 91.0 94.3 87.0 87.0 87.0 78 0.

89 8 90 3

. 86 4 137.8 89 3 112.2 79 8 91 0 94 5 87.0 87.0 87.0 76 0 89.7

' 90.3 86 5 138.1

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79 8 91 0 94 8 87.0 87.0 87.0 78 0 88 9 90 3 '

86 6 1388 88 6 112 9 79 3 91 0 94 8 87 0 87.0 87.0 76 0 88 2

= 90 3 86 6 -

139 0 88 1 113 2 78 8 91.0 94 8 87 0 87.0 87.0 78 0 87 4 90 3 86 6 139 3 87.5 113 4 78 2 91.0 94 7 87 0 67.0 87.0 76 0 86 6.

90.2 84 7 1398 86 8 -

113 6 77 6 91 0 94 6 -

87.0 87 0 87.0 76 0 85 8 90 2 86.7 1398 86 2 -

1138 77 0 91 0 94 5 87 0 87 0 87.0 76 0 SS 1

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140.5 84 8 114 3 75 5 91 0 94 1 87.0 87.0 87 0 78 0 83 7 90 1 86 9 -

140.7 84 6 114 4 75 3 91 0 94 0 87 0 67.0 87.0 76 0 83.7 90 1 87 0 1409

-84 6 114 6 75 2 9 t.0 93 9 87 0 87 0 87.0 76 0 83 9 20 1 87 1 141.1 84 8 114 7 75 4 91 0 94 0 87 0 87 0 87.0-76 0 842-90.1 87.1 141.3 - - 85 1 114 8 _

7t 7 91 0 94 0 8*.0 87.0 87.0 76 0 84 8 90 1 87 2 141 5 85 8 114 9 76 1 91 0 94 2 87 0 87.0 87.0 76 0 85 5 90 1 87.3 141 7 86 2 1151 76 7 91.0-94 3 87 0 87.0 87 0 76 0 86 3 90 2 87.3 141.9 86 8 115 2 77 4 914 94 6 87 0 87,0 87 0 78 0 87.1 90 2 87.4 142.1 87.6 115 3 78 0 91 0 94 9 87 0 87 0 87 0 76 0 88 0 90.2 87.4 142 3 88 3 115 4 -

78 6 91 0 95 2 87 0 87 0 87 0 76 0 80 7 90 2 87 5 142.5 88 9 115 5 79 2 91 0 95 5 87 0 87.0 87 0 76.0 89 4 90 2 87.5 142 7 89 4 115.7 79.7 91 0 95 8 87 0 87.0 87 0 76 0 89 8 90 2

- 87.6 142 9 89 9 1158 80 0 91 0 96 0 87.0 87.0 87.0 f6 0

- 90 1 90 2 87 6 143 2 90 1 -

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ATTACHMENT 5 Sheet 1 of 2 Engineering Software Calculation Tracking Sheet ESW Hsme. /?C7I ' 7/f?f Ts?*?/k?a4p)C/77

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ESW Ver c ri ESW 10 No:

Output File Name(s):

Name Data Comments:

tsem cv e*3Gc-mt.4 os cc: ESW Coordinator CSP-NGGC-2501 Rev.1 Page 32 of 41

Calculation OVA 0114 Revision 0 Attachment D Page1of4 CAROLINA POWER & LIGHT COMPANY OVA -0114 t,

Control Buildina Transient Temperature Analysis Durina Sprino Conditions Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Attachment D Temperature Plots for Different Time of Day Event Start a

Cakulation OVA 0114 Revision 0 Attachment D Page 2 of 4 Tornado Model -Temperature Plot With Start Time at 9AM 4

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Calculation OVA 0 1-1 Revision 0 Attachment E Page 1 of 16 CAROLINA POWER & LIGHT COMPANY OVA 0114 Control Buildina Transient Temperature Analysis Durina Sprina Conditions Control Room AC Replacement Project Brunswick Nuclear Plant. Unit 1 & 2 Attachment E References

ATT A L H nEN T 2 (REFz) 3 Pyu l

NATIONAL BUREAU OF STANDARDS REPORT g,,

~NE57RQJECT NES REPORT 4212436 F+bruary 1,1971 10313

- EARTH TEMPERATURES BENEATH FIVE DIFFERENT St!RFACE3 Final Report

~~

j 0C0 Work Order D AH20-48-W-0106 l

Work Unit 1211 A by T. Kusuda Building Research Division 3

lastitute for Applied Technology National Bureau of Standards Vashington, D. C.

20234 Report to Office of Civil Defense Office of ths Sectetary of the Army Washington, D. C.

20310

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OCD Review Motice: This repstt has been reviewed in the Office Civil Defense and approved for issuance. Approval ooes not signify tha t!.e I

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Af7y HnEll!f 2

"(REF4) 3 PA6f3 i

CO P%4

~

To:

- Nate Hasidll, HOP b

l!.<

'1 Fax: 864-370 0215 From:

Tom Devore, CPAL Brunswie'k

- Phone: 910-457-3589 '

Fax: 910-457 3369 b

Date:

7/11/96 l-I Here is a compilation of air flow numbers for most of the CBHVAC. I don't have the main controt room 0.'et). Let me know ifyou need it. Several --%e ses provided for the battery rooms, since they have several combinations. I don't think the Mechanical room has ever been traversed (since start up), so a conservative number will have to be used there In general, for the MSLB case, only the main control room fans i ecin:), one EAF fan, and the banery rooms would be on. For the LOCA case, it would be reasonable to assume that everything is on in its normal mede (except for the single failure of CS),

Give me a callifyou have any questions. -

p s

1 e

.I s

l y.

Tabu!stica of Contml Building A!r Flow Mearanents CABLE SPREAD ROOM FANS: (Odginal design, supply 15,500 cfm; exhaust 15,300 cfm)

From actual flow measurements taken on 10/29/95 U-l SUPPLY:

13,749 cfmhd U-2 SUPPL Y:

14,187 cfm /

U-1 EXHAUST:

12,774 cfm)

U-2 EXHAUST:

13,396 cfm Emergency (Contml Room EAFITE (Original design,2000 cfm total,1000 cfm outside, 1000 cfm recirculation)

^~

From actual flow measmements taken on 11/9/92 (AI I17 TCF# 92 074) 2A EAF on (radiation mode C.S. Ems off, MER fans ofE fan off)

Outside air Recirculatiord548 n- -

2B EAF on (radi: tion mcde, C3. fins off, MER fans ofE baboom fan oa)

Outside air 1609 c54 Recirculation $12 c5n Normal Control Room Bathmom Exhaust flow (actmal system ope: Mon):

From actual flow measurements taken on 11/9/92 (AI-l17 TCF# 92-074)

Exhaust flow 512 cfm Normal Control Room Intake flow (nonnal system opemtion): Taken 10/28/95 j

Outside Intake (2L dxnper) 1522 cfm Original design 2000 cfm 2A Battery Room Flows, taken!ste Oct, early Nov.1995 (2-SP PM92 052 01):

r WITH CABLE SPREAD ON:

p 2A summer flow supply:

3549 cfm exhaust:

3939 cfm -

2A winter flow supply:

1439 cfm exhaust:

1609 cfm WITH CABLE SPREAD OFF:

9 2A winter flow supply:

1403 c5n e.chaust 1672 c5n f

T

i,3 a

i i:

jN

.2B Battery Room Flows,uken ide Oct, early Nov.1995 (2-SP.PM92-052 02):

WITH CABLE SPREADK:

2B mummer Cow supply:

MC erba"*' 2836 con-6R*2, 2B iGii!BrGu# supply:

1447 can exhaust:

14lic~fm WITH CABLE SPREAD OFF:.-

r 5

.2B winter Sow supply:.

1447 c6n exhaust:

.1591 c6n

- 1A Panery Room Nws, taken late Oct, esiy Nov.1995 (1-SP FM92-051-01):

s,-

Wrnt CABLE SPRP.AD ON: -

.w

('

~

1A-summer Dow supply:

' 3252 c6n ahne 3852 c6n (Jit.$

6 1

1A'-

winterflove supply:

'1419 cfm nhanet-1661 c6n i

WITH CABLE SPREAD OFF:

j 1A winter Sow

-supply:

1448 cEn nhanet:

1669.-fm 4

I-IB Battery Room mws, taken late Oct, early Nov.1995 (1 SP PhG245102):

I

!](,,

WITH CABLE SPREAD CN:

1B summer flow -

supply;-

3290 c6n c3 aust:

3535 c6n - $f?.E h

~IB winter flow supply:

1431 con whant

- 1560 cfm '

?'

WITH CABLE SPREAD OFF:

!.t n

IB winter flow supply:

141;l c6n exhaust:

1621 cfm

-t-I

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7-A T'T8c H MENT E (REF 7) l Rts e

NOTES OF TELECOM

, [e Su DATE:

7/31/96 Er ' ' -

4 FROM:

TOM DEVORE CP&L, BRUNSWIC NUCLEAR STATION TO:

NL HASKELL (HGP,INC)

SUBJECT:

DIMENSIONS ON CENTRAL CONTROL ROOM DOORS AND OPENING On 7/31/96, Mr. Devote of CP&L Brunswie Nuclear Station advised HOP the follow..

1.

Main Control Room Door (A)

Normal Closed l

(B) 28-1/2" wide X 79" high l

i 2.

Door behind RTGB (A)

Complete opening (B) 36" wide X 79" high 3.

Pass Window (A) 40" wide X 38" high - open portion (B) 42" wide X 38" high - open portion 4.

No Turbine Building Main Steam Line Break tecuperature' profiles available.

4 4

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Service and O u a ll t y You

.C a n, Sulld On FACSIMILE TRANSHITTAL SHEET DATE:

}

TIME:

)dd.

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PLEASE DELIVER TO:

FROM:

O D

TOTAL NUMBER OF PAGES (INCLUDING COVER SHEET) :

vba OO CLIENT /TRANSt,CTTAL DESCRI'PTICH.,:

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1 1AMuS INOUSmC; A O.,is.cn ad Laporte Constmcoon Cheme: Noe Amenca. Inc I,

11216 Conway Road. Becevote. MO 2 CMS-13c2 t 4w, a +/

740$ Production Ortve

  • Mersor CH 44000 * (21e> 774-2399. fax 716 755 itNe 383$ State Route 72 + Katand. IL 60146 * (015) $?24394 = FAX 615 5n 2323 5 74: East sania Ana St'***
  • Cme.o. CA 917G8 = (901) 996 7667 + fax 909 903 7888

l l

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1 l

l i

e nooorow to a unbeeuutar (etooed eeut none estruding, PVC foam. It le structurnity otrong INSTALLATION SUGCESTIONS:

reelettet to anoet olje, charnicale, ozone and' Care abould be taken trt postuoning Modofoam we ather. Traneanile IJR'a beat or tooleture.

to that it does not protruce n' ove the surf ace.

u Ideal where hjgh reell tuo to compreselon For the best results a minimum of M" should could c.ause damage er where it muet funeuen be provided from the eurface of the concrete aetween materinte exhibiting dinertnt co*

to the top of the filler if a oesdant is to be emeletata of erptnsion. f.lhould not be come used to finish.o2 the joint, pressed over M S, A highly recomtnended

  • CAUTION:

back up matarteA coa.pletely compauble with polyeultates and crther type sealante.

flodofoarn is an organic, cellular plastle team, and is, therefore, combustible, Erposure to oper. flam e, sparise, or excessive heat should OR ADE # 200 (soft): Resilient type vi t s

,,p e

El"aye be avoided.

W% recovery. Thicknese approximately 1%

hodcfoam abould be otored in origittal cartona, gtnatar than joint opening te rooorntnended.

stackeed no more than 4 feet h12h. Cartons abould be protected from ralrt and ground w at e r.

GRADE # 327 'setnt rigid). A 13ots flg.d type with greater reelstance to cornpression. Suit-

{

Able for poured coactelo julate. where undue R000FASTa Typs F Atihtsive A pressure tenettive adhestvo for bood!nr coturreselon of the joint fiUer is undeelrable, i

and for structuses subject ki esternal stresses Rodafoam to mSaonry, concrete, rieel, woed.

where a supporting type of b6ck up materias!

plaster sund itself, May be brush or roller to preferred for the enalant.

applied and will bood within one hour (dee i

padtr:g on temperature). Esceptionally water and moisture toetstant. This se a Sammable liquid. l'ollow precautions printed en label R0fiOFCAM PVC.10lNT fIlliRS pesert?

Characterleuc Data C#eme/Try, Kio/htt 321/$ md rsged Listet $4ee 44 X $4 in.

de M e4 In.

(eveestee in strips (se eilatet m strips i

cutt 814el cut 'o e,te) f Essesse The neos "ato2iA "a t a 2 tit l

Deasa atWcu ft 44*L3 6e2 v

Force rteeded to tempests te 6C% c t[cnness 4a30 4 5 e l o o**

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n a lo ese enan-a-.e,r en.r a como,n..eniis so.uode,e.e.ietorie, e.ch a procate end tosted one hour artw thers a spietsten e0% min 90 % men, Wetw Aeteeptun (1%,6 of pater steosted per to it et cwt IwHete a 1 *P e e s t>ttsq N.

o 1 m a t !Wg e, f t, atiet 48 haurt immeevon unose e 10 f t. heMH &$f he D166h Cementes ow es+es 0.acd irch Asoo'est A

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vreat*enne erws Ozone flesistarre O c e 4e nt aptar spee teenperatere ramte & terommenced esteeme

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t ewe FT S W '4%e g er ein est(

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  • *"W*"*

i

~

~

i

~ ~

. - -.~. _,, -

m

~m_,,,___

I)TT/M ll MEA!1' 3 (Rc t' 9)

/

P/i&E 1

46 11)N D AM ENT ALS O F flNIT E.Dirl'E RENCE IJ ETHO DS u(x + 1r,y. + ay) = ulx ye)+ (at g + dy p u(x yo)

~

b b

o o

+ h (> h + n ly)'u(x..y.>

. + h Lt h + ay { Y (xa + 0 ax.yo + 0 hv) u

+-

0<0<1 (3 37)

D IFFERENCE REPRESENTATION OF PARTIAL E. RENTIAL EQUATIONS i

Truncation Enor

]

tarttng point in our study of truncatwn error, let us consider the heat.quation l

U=a (3 55) j bt 32 l

Using a forward difference representatwn for the time derivative and a central-

}

difference representation for the second derivative, we can approximate the heat equation by uf * ' - u" a,(uf.i - 2uf + uf_i)

(3.W)

=

I flowever, we noted in Section 3 2 that truncation errors were associated with the forward and centraldifference representations used 'n Eq. (3 W). If we rearrange Eq. (3 55) to put zero on the right hand side and include the truncation errors asso.

ciated w th the difhrence representation of the derivatives we obtain

)s ("[+ '~ 2"I + #I-8 )

~"

3 PDE FDE 8u at 8'u (Ar)' + - l

~

2 (3 56b) i

,; 2 + a 8x*

+

Br

.s 12 j

8 l

T.E.

Jon errors associated with all derivatives in any one PDE should be ob-spanding about the same point (rt,/ in the above discussion),

I

,.fference representation given by Eq. (3-W) will be referred to as the I..,

aplicit scheme for the heat equation. An explicit scheme is one for which only one unknown appears in the difference equation in a manner whi:h permits evaluation tn terms cf known quantities. Sin:e the parabolic heat equation govems t

a marchmg problem for which an initial distribution of u must be specified.u's at the

f f ll ' ' /;'7 [",V? j r ( )l' f Pk(

44 llLA T l'It.4 NS31135 ION

't : I

1. Our. orutxarosat, TnAxantxr In applying the numerical methol the continuous process is seplaced by a stenwise one. The following is based mainly on the Dusinberre

generalt on of the increment method applied to one-dimensional tran-dent conouction.

Conduction and Storage in the Interior,

a. Genercl Numrical Jtethod of Dusinherre. Figure 310 shown a cron section of a large slab of thick-ness r, having a uniform cross-scetional 3

y.

i area.t ; the solid is divided into a number

!L

\\

of equal 6 nite slices of thickness at by b 'W P

temperature-reference planes. A heat I

i h,, )l balance is written on the crosshatched zone abcd; the slope -dt/dr at plane ad f;

j;l is approximated by the chord slope l,

lk gj (f. - (t)/az; similarly the slope -df/dx f

j at plane he is replaced by (ti - ts)/ax; the

'6 7 temperature at plane 1 approximates the I5-61 av rage temperature of the crosshatched

?

e

  • %Ih d'v

)

zone. The resulting heat balance is i

y

~+~

t.

A A(f. - it) ~ k A t ti - t,)

~ ;s. r+ 4 s - Js h e s -

si az

, (A ax)(%)(tl - ti) r.........x.........,

(36)

Fia. 3-10. Duninbetro diagram' of 38 oneshmenninnal t ransients in a where fg is the new temperature at plane slab, usad in denvmg Eq. (3-cwa) for temperatures in the intenor.

1, after the elapse of a 6 nite time in-crement as. Upon replacin::the thermal ddTusivity k/ac, by a, and the dimensionless ratio (ar)% as by the' modulus 3f, Eq. 3 6 becomes y, t. + (31 - 2)(t ) + t, i

(342) *

b. Schnndt Numerical jfethod. Schmidt employed 3f of 2 and hence obtained the simple rules:

(

t',

,f '.'

t; -

h (3-0 b;

  • h

{

Thu3. af ter elapse of one ae, the new temperature at a given section is the I

arithmetic mean of the temperatures previously prevailing at adjacent

{

sections. This method can be applied in tabular form, or graphically luueration :

\\ late ab of steel l it thkk. antat!!y has a urofortn temperature ni hu,*F Ndjrn:y both f aces are red t e ! 'a. and truuntained at, IWF The steel has a dennty of DJ pounds per cubic foot, a specific heat of 013 Btu per pound per durce Fahrenheit, arid a thermal conductivity nf 25 Btu /thr);f t)(deg FL lt is deur-4 to prmbe t the tern pe ra t u re of the nodplane when 14 A5 min have elapsed.

1 1j

7 s,1 s 5lt s 7 ( Es l>(T7 /t 45 re areta t e at n.Mu t t' ! b e ' o-V "f 2 tu t !W i M ^ '

t en.pe ra t u rer u t. '. IV)n i ; o e n ea u it.

nL but " 1 '

  • ro>m > u r k

1 e e n. p+ r a t m r e d

!. + 0 4 h Il etd 9' o gtb u:abt W n atee in ses. nun a ar at TakAv Mcthod ?! ~ ; ! ~ I,

~

= UTl -

a = 7 3ra nes = 1s it

- A gr, - 2 ' / ( 4 '40 ( D 13 i = 0 ? >.' !i',

f t < b r u

3 t[J 'i I 0$'

p-

- 0 01$4 hr nU 0w).

f 14 F $.-l.01

',.u'obet of time tups 4 =.u g g4 r,

t, a t, t,. 6 1,

t, =

fi + I.

,7 Since t h'- *yetem n syrntne trn al, I,. to i, f., a nd t, - f..

l at s,

I.

t, to I.

to is l

4 1

l t

i D

.00 7 tH) I 700 70] i 700 700 1 1(O 70h 7M 700 4DO ! 100 1

100 anh l

!.?>0 in 550 I 400 f100 e

100 400 3

no 325 ' 5%

550 550 305 ' 100 g

4 ' 100 M5 4M 550 439 ! 305 100

' Mo l 2n9 4%

an 439 ! 2rA l 100 5

4 6

100 i ?m 354 438 354 !

'10 t 109 7

leu ! 227 C4 354 l 354 1 027 109 i

i Omet tempereur" of sul. irf.n e s:.ces uart te (thr;cs. it. rurd it at " ay char ce on.y n er> other tan e incren erst. u utt a unrea! ate tlc f.r.a1 frod thne te n.pe r a t u t e 54'J, a F1' heivu the analytn a! vaim i ven ulth ' inch shee, and the torrnp ai;ne 75 tin,e ir.orn.ents, f a a stdl 11*r belew the ar,alytaal value

The.e darrepanties are rauwda by the uh hosto irata.! v:iiue of t.

6 !satial

t. = f. - ( f. -+ t U2 = (100 + 70C2 = 4W F, M = 2, thereaf ter r,. 100*I _

f i

l 1:

la j

t.

at ;

t.

ti la to j

1

__t.

t 0 l oO l 700 j 700 700 ! 700 700 400 1

100 l 550 { 700 700 700 5 '> 0 100 3

2 100 400 i 005 700 0:5 400 100 I

s le' 36; 550 ! (05 550 362 100 l

4 100 325 491 550 493 325 100 I

4 5

100 290 437 493 437 296 100 6

100 268 395 437 395 004 100 7

100,! 248 352 395 352 045 100 I

With this improved p wedure.' the 6nal rnidplane ten perature of 31:5'T a only 0*F alove the value from the analytcal solution.

I c Lyuatiori (341, ! = t, si = *.'

i t

a#

(0 39N)4 55 <60) a. - (,-

I A..

= 0 365 a. A. - 0 9 5.,

I

?

.8 (0 5)8 00 1

3r 1

be f __1.J-4 7'J - 110 c' '" sin. + 3-et *** un w + r c ' $4 D.; +

a

  1. V y

0

- (4/c) (0 354 + nerbgible) le 393'T a

{

t i

p g.

r

+ * ' -

v+-

r" u,

HE A T TiuNDilM!aN In the previsus example,.1/ of 2 was quite ratisfactory in part h, since the: retu!t agreed closely with the analytica! solution. Dusinberre' con-sidered a problem in which two very thick tilabs of a given material, one or emally at a high temperature and the other originally at a low temper-ature, were suddenly brought into perfect thermal contact. Upon employ-mg JI of 2, the enalated te mperature of the firrt slice in the colder slab (scillatrd alternately above and h!mv the analytical salutior.; the am;1i-tude <.f the osci!!ations decreased as 8 increased When 3/ of 3 (or 41

~

r,,

l l

l l

i

\\

4

\\

i t

X l

l tl/

i g

R_

l

^

l w/'

o w !?

,0*/

I I

E,,

f

.t / '

N.

'/

f

\\

j d

3l n' T.T

/

~

200 u

f-Z in..

Ms-KC 0

I 2

3 4

5 6

F3 311. Graphica! method of Pinder and of S hmnit" for determining tempera-s tures m the mtenor of a slab. M,cete:i to a sudden increa<c m surface temrerature, was used, the temperature of the <pecified slice changed at each time merement and agreed closely with the analytical solution.

&hmid! Grap! cal Jidhod. Fgtue 3-11 shows the prophical solution e

to part a of this example If the improvement of part b uere utthred, the f;rs : alignment of I: and in n ould be made with to at 400*I', and all sub-

. ent alignments of t, at d :. w ould be inade with :. at 100*F.

se:

Heat T ransfer at a Surf ace.

a. Dusteere Numvital 3/ethod. Let plane 00 be heated by n warmer f,uid at instantaneous ambient tempers-t u re :.. A heat ba: ante on the adpcent half slice (Fig 3-12: gives:

j 3.w, _ n _9 7 'J U 3' A p l_W (3.n i,;

w here t,, ana :;,, are the ad anJ nu temperaturn at the ads of this

{,-

ha.: C. i e As an approximation' at plane 0 25 the temperature rise is I

e i iM

~

1 e

{

'[f i

e..r t

)h.he

..(@

rusntsr s:xcr:os a

\\

J.

replaced by that at the surface, f, - ts Designating the dimensiotdeu

'{'y Susselt or Biot inodulus h ar/k ty N, rearraugement of Eq (3 7) gives o

  • b i

Nt. 4 lM - i 2X 4 2 @ e 2!

.; p,-

t,,

i g

(3.,. )

  • a 1

1 To retain a suitable inhence of te on ti, ita;4ection of the brackt.ted term

+

in Eq. (3 7a) shows that M > 2N a 2 (3-7b)

  • s.

In eases where N is large, this requires that N be large;and in view of the definition of M, the term ae/(ax)* may becorne -

I inconveniently smalh in such cues (large N)

O Cf

{

an alternate equation is employed. As an i

i

'a f f

'I approxirnation the ternperature gradient at the t,urface (~df/dr), is assumed equal to the

^

l j'

)

chord slope (C- (i)/ar, 'and a heat balance at, Le o

the surface gives A(f, - f.) - 1.(r, - f )/az, or

/p,@; ;

(

j i

i f.

A, 'y

}

c'[/

0' f

M, i$o

+ 1, + A,- r-- f1i (0 7c)

  • 1

/

When the heat-transfer coefErient at the sur- ',@mn:

J s

l ing water, the surface ternperature changes I.W..y p f ace is large, as with condensitag stearn or boil.

A

=

(L.1..i"...'

Substantially instantaneously from to to t. and l

I consequently the initial surface temperature

{

should be taken u th arithnietic rnean of the I*

U"'

" k

ortgmal surface temperatu2: and the ambient rram' used in aeriva.g Lq ternpera t ure.:

g In applying the inethod one first entativeiy f.xes the number of slices

)

% which fixes ax (snee n, = x/A2); this, together with the highest value of L/A, fixes N.

utdess N is large, in which case Eq. (3 7c) is used.The modulus M ir, S I

The modulus M need not be an integer, but it is quite convenient to employ integers (say 2,3, l

or more),

If the onginal distribution of temperature is seriously non-uniform, an M of 2 is undesirable, since the old value of ti would not 1

influence the,new value of'4; with an M of 3 or more, li is given weight along with to and f Nonintegral values of M are required (1) where it is desired ;o specify af, Ax, and a and (2) for a heterogeneous wall where the ditTusivities and slice thicknetses t." not permit use of a single value of M.

)

A preliminary calculation, based o 4 a relatively small nutnber of slices, a,nd correspondingly large time increments, gives the first estimate of the temperature distribution at the desired time e.

The calculation is then repeated, based on thinner slices and aborter time increments, ur.til the chance in the final temperature distribution is smalt v

t d

t j

~

w d

4 i

i a

a y

i I

b b

    • r

.- n l

48 r';stAMLNTALs or riN:TI t tirnrNCI MLTHODS l

l but if /,1 and At were to a), roach zero at the same rate su:h that at/1r = f, then the Duf ert Frankel $0 heme is cornistent with the hyper,bfiQquation,;,g y -

g 7 ' $'A,

N" + af k = abi h

O at

?!

c3 A f.t' w

C' JA i

3 3.3 Stability F

Namen:al stabibty is a cer,:ept appb:able in the Mrict sense only to mar: rung prob.

i lems. A stable numerical s: heme is one for wtuch errors from any source (round.off, l

trun; luon, mistake;) are not permitted to grow in the sequence of numencal pro-l j

cedures as the cal;ulation proceeds from one marcidng step to the next. Generally, j

con:ern over stabihty occupies mu:h more of our time and energy than does concern oser censisten y. Consistency is relatisely easy to check and most schemes whi:h h

are con;eived will be conscient just due to the methodology er-lo,ed in their deveh j

opment. Stabthty is much more subtle and usually a bit of hard work is requued in ife order in estabbsh analyti::dly that a r,cheme is stab le. Mu;h more wd! be presented k.

l 4

in Se:. cn 3 6 on stahdity and seme very aorkaHe methods WUI be devel0 ped fcr O

estabNur:g the stability limits for linear partial differential equations. It will,be,,,

{y /Npu:Eclo extend thesqmddines to nonlineagrs in an appry_itmate T

1.'smg these guidelines, the Qfmt hinkel schem.'. Eq. O 57), for the heat j

/j *g equaticn w ould be found to beig$EiTh7T$whereas the sirnple expu it j

k scheme wvuld be stable only if r = [a at/(ar)Yy, This restri: tion would limit j

h the si:e of the narchmg st p permitted for any specified spatialmesh.

1 A s; heme usmg a central time difference and having a more favorable truncation

)

enor O((at/,(at)3 },

l 7' 1-y7-t a

7 7- =

3 (uf. i ~ 2uf + uf.3 )

(3 58) is unconditiona!!y unstable and therefore cannot be used for real calculations despite l

the fact that it looks to be more a: curate,in terms of truncation error, than the ones l

}

pven previously w tu:h w di w ork Sometimes instability can be identified with a physual implausibdity. That is, 1-conditons wru:h would result in an unstable numerical procedure would also irnply J

~_

7

[N [f

'r<

unacceptable r-odeling of physical pro: esses, To illustrate this, we rearrange the simple expu::t representauon of the heat equati,n, Eq. (3 5fa) so that the unknown g, g appears on the left Lettirt r = a at/(Ar): our difference enuation be;omes l

uf' 3 = rtuf. i + uf. i) + (1 - Or)af (3,5 9) r shown in Fig. 3 2. If r > { f.i = uf_ i = 100'C and uf = 0*C This a Suppcse that at ttme t, a Q

g we see that the temperature at point / at time level n + 1 Y

l w d1 ex:eed the temperature at the tw o suneunding points at time level n. Uds seems unreasonable sin;e w e expe:! heat to flow from the warmer repen to a colder repon j

3. "-

j but

  • vue sen,a. The max. mum temperatare w tu;h we wouL; expe:t to find at point

/ at ti~e level n + 1 is 100'C !f r = 1, for cumple, af

  • 3 would equal :00'C by Eq.

t3 59; t

i

  1. u've'-

y am= e wen s'-w w.ar w =se ee.-,._

-mu a-em=+w-e-w-www-w

.m>r r

Calculation OVA-0114 ATTACHMENT 2 Revision 0 Sheet 1 of 2 Attachment F Record of Lead Review Design Calrylation OVA 0114 Revision R

'lhe signature below of the Lead Reviewer records that:

the review indicated below has been perfonned by the Lead Reviewer;

- appropriate reviews were performed and errors'denciencies (for all reviews performed) have been resolved and these records are included in the design package; the review was perfonned in accordance with EGR NGGC 0003.

8 Design Verification Review O Engineering Reviciv O

Owner Review 2 De<ign Review D Alternate Calculation O Qu.lineation Testing O Special Engineering Review 0 YES O N/A Other Records are attached.

Jds.pormko!

{Ad b *cknh (

YN/f9 t

1. cad Reviewer (p'rfnt/ sign)

Discipline Date item No.

Deficiency Resolution /Date 1.

Statement in Table 3.2.2, pg 4. Indicated Added "for March, April, and hlay..."

temperatures in table are more conservative than avg 1941 to 1970. The Febrmtry minimum 01/20/98 temperature is slightly less conservative than the 1941 to 1970 temperature?

2.

Se t ion 3.3.1 is incomplete, it indicates LOCA The next 3 paragraphs were intended c.iditions and does not indicate..:.at these to be subpragraphs and have been conditions are, corrected. 01/20/98 3,

in section 3.3.1 it indicates that 1.OCA conditions More explanation added, do not have to be accounted for, why?

01/20/98

~

4.

It states in section 3.1 hiethodology, that Cl) Case 2 CBCase2 was closest to the tornad'o is used. It is not completely clear why this is the case. Provided explanation.

appropriate case to use.

01/20/98 5.

Assumption 3.3.7, is there any other basis for the Provided explanation, 80F other than it is an assumption for this calc?

01/20/98 6.

/.asumption 3.3.6 carth assumed to be 60F where Reference 2 provides a range of temp OVA-0104 assumes 70F, Does reference R2 of 60 *F i 10

  • over the year, indicate that for the time of the year?

01/20/98 7.

In section 3.6 for the UITill room temp 87 was Changed back to 87 F used in OVA-0104 but 70 was used in this cale.

01/20/98 Basis?

8.

What does the comment 76F O/A mean?

Revised 01/20/98 EUR-NGOC-0003 =

l Rev.3 l

Page 24 of 26 l

Calculaton OVA-0114 ATTACHMENT 2 Revision 0 Sheet 2 of 2 Attachment F Record of L.ead Review Design _

Calculation OVA 0114 1(evision 0

9 Pg 9 for Ul Rx 91 was used as the starting Assumption was embellished, temperature. What is the basis?

01/20/98

10. 1, flows. Why are there several wall A separate wall ID is set Ibr each area Ids for the same flow such as MPRI?

with a different heat transfer coefficient.. 01/20/98 11.

Could not locate llR4 IIV3 in the wall data in This wall ID was deleted.

section F of 0VA 0104 01/20/98 12.

U2CTLCI, is stated as -67348.6 in OVA-0114 but is Typographical error corrected.

47348.6 in OVA 0104, appears to be a typo O!/20/98 13.

It would be helpful to provide the description of the A reference to table 4.1 for room ID referenced itern description was pravided. 01/20/98 14.

pg 14, U2CPUCl. is stated as -6000 in OVA 0114 Typographical error corrected.

and -60000 in OVA 0104, appears a be a typo 01/20/98 15.

Pg 14, lleat Sinks, ihr UICSAFN slGuldn't the Coirected.

comment be Cable Spread floom fan on? 44400 01/20/98 11TU is heat geaerated by a 15 hp fan 16.

The last 4 entries for heat sinks should not be Assumption 3.2.1 was corrected and eliminated. It appears that the praparer interpreted expanded to explain that these are the EF at the end of the Ids ns emergency fans when the heat loads from the emergency fan, EF designation is for EMF load. It appears that the which were distributed across various last 5 heat loads need to be added into the areas of the Control Room. 01/20/98 calculation.

17.

Add a statement on attachment A to identify the Added reference 14 and a note to source of the actual flow variables attachment A. 01/20/98 18.

On the 1" data sheet input for Att il either there is Average temperature was verified in no avg temp or it differs from the figure of pg 10, the computer model.

46 vs 69.5 01/20/98 19.

On the 1" data sheet input for Att 11 the skip data The skip data is 20. Second line on indicates 20 and 1. Should it be 20 and.l?

Global data refers to the trial case.

reference pg 10 globals The 0.1 hourly data printout is not shown on this report.

20.

pg 10 Walls, Wall ID EE2 IlV2 indicates Section 3.5.1 ( now 3.6.1) has been exfiltration is from U2CSA to ATM01 and the cale expanded to explain this more clearly.

data sheet pg 12 indicates EE2 IIV2 is from U2 01/20/98 EER to ATM

( now 301) 21.

Pg 10 Walls, Wall ID eel-llV2 indicates Section 3.5.1 has been expanded to exfiltration is from UICSA to ATM01 and the cale explain this more clearly.

01/20/98 data sheet pg 12 indicates EE2 IIVI is from Ul EER to ATM nun e um.uno