ML20148T742

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Rev 4 to BRW-97-0624-M, Determination of Div 11 & 12 Miscellaneous Electrical Equipment Rooms Transient Temp Profiles Following Loss of Ventilation
ML20148T742
Person / Time
Site: Byron, Braidwood  Constellation icon.png
Issue date: 06/25/1997
From: Mitts C, Peterson R
COMMONWEALTH EDISON CO.
To:
Shared Package
ML20148T669 List:
References
BRW-97-0624-M, BRW-97-0624-M-R04, BRW-97-624-M, BRW-97-624-M-R4, BYR97-277, NUDOCS 9707090307
Download: ML20148T742 (96)


Text

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Exhibit C NEP-12-02 i Revision 4 I k

i COMMONWEALTH EDISON COMPANY l CALCULATION' TITLE P AGE l CALCULATION NO. BRW-97-0624-M, BYR97-277 PAGE NO.: 1 l

@ SAFETY RELATED O REGULATORY RELATED 0 NON- SAFETY RELATED  !

I l

CALCULATION TITLE: Determination of the Division 11 and 12 Miscellaneous Electrical Equipment l Rooms' Transient Temperature Profiles Following a Loss of Ventilation I l

l STATION / UNIT: BYR/BRW I & 2 SYSTEM ABBREVIATION: VE EQUIPMENT NO.: e=> N/A PROJECT NO.: e=> 09050-059 j 1

l REV: 0 STATUS: Verified QA SERIAL NO. OR CHRON NO. N/A DATE:

PREPARED BY: Chad J. Mitts OTd9 Rbh DATE: 6/25R7 REVISION

SUMMARY

Revision 0 Text pages 1-13, Atta:hment A pages A A-5, Attachment B pages B B-3, Attachment C pages C C-75 ELECTRONIC CALCULATION DATA FILES REVISED:

(Name. ext / size /date/ hour: min / verification method / remarks) 4 DO ANY ASSUMPTIONS IN THIS CALCULATION REQUIRE LATER VERIFICATION YES O NO @

~ /

REVIEWED BY: Michael J. Duffy [6f' - p / )

DATE: & /F/G REVIEW METHOD: .hfhe/u/ b dW e

MMENTS (C, NC OR CI):

a N,

/ /

APPROVED BY: Robert J. Peterson / DATE: /7/2W

, gf ~! -l '/

v 9707090307 970627 PDR ADOCK 05000454 F PM 4

Exhibit C l NEP-12-02 i Revision 4 j l

l l COMMONWEALTH EDISON COMPAhY  !

CALCULATION REVISION PAGE  !

CALCULATION NO. BRW-97-0624-M, BYR97-277 PAGE NO.: 2 REV: 0 STATUS: QA SERIAL NO. OR CHRON NO. N/A DATE: j PREPARED BY: DATE:

REVISION

SUMMARY

I l

ELECTRONIC CALCULATION DATA FILES REVISED:

l (Name. ext / size /date/ hour: min / verification method / remarks) i DO ANY ASSUMPTIONS IN THIS CALCULATION REQUIRE LATER VERIFICATION YES O NO O l

REVIEWED BY: DATE:

l REVIEW METHOD: COMMENTS (C,NC OR Cl): l APPROVED BY: DATE:

REV: STATUS: QA SERIAL NO. OR CHRON NO. N/A DATE:

PREPARED BY: DATE:

REVISION

SUMMARY

1 1

ELECTRONIC CALCULATION DATA FILES REVISED:

(Name. ext / size /date/ hour: min / verification method / remarks).

l t

DO ANY ASSUMPTIONS IN THIS CALCULATION REQUIR*i LATER VERIFICATION YES O NO O i REVIEWED BY: DATE:

REVIEW METHOD: COMMENTS (C, NC OR CI):

APPROVED BY: DATE:

.. . - - . - . --. - = . - . . . . - - _

Exhibit D >

NEP-12-02  !

Revision 4 I

COMMONWEALTH EDISON COMPANY '

CALCULATION TA11LE OF CONTENTS '

PROJECT # 09050-059 CALCULATION NO. BRW-97-0624-M, BYR97-277 REV.NO.O PAGE NO. 3  ;

j DESCRIPTION PAGE NO. SUB-PAGE NO.  !

j B

TITLE PAGE 1

REVISION

SUMMARY

Z j TABLE OF CONTENTS 3

1. PURPOSE / OBJECTIVE 4
2. METHODOLOGY / ACCEPTANCE CRITERIA 4 l 4
3. ASSUMPTIONS 5 I

! 4. DESIGN INPUT 6

5. REFERENCES 7
6. CALCULATIONS 9
7.

SUMMARY

AND CONCLUSIONS 12 ATTACHMENTS:

A Heat Structure Surface Area and Room Volume Details 5 pgs s B Auxiliary Calculations 3 pgs F KITTY 6 Input and Output Files for the MEER Transient Temperature Model 75 pgs l

1 L

1 Exhibit E ~

i NEP-12-82 l COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 PAGE NO.4

1. PURPOSE / OBJECTIVE
  • De purpose of this calculation is to determine the transient temperature profiles of the Byron and Braidwood Div.11/12 Miscellaneous Electrical Equipment Rooms (MEERs) following a loss of the Miscellaneous Electrical Room Ventilation (VE) and Switchgear Heat Removal (VX) Systems. De VX and VE Systems are disabled by fire damage to the power circuits. The fire is assumed to be physically separated from the VE and VX envelope, therefore, it does not -

have an impact on the temperature transient other than causing the loss of ventilation.

2. MEnlODOLOGY/ ACCEPTANCE CRITERIA 2.1. Dermal Modeling of the Miscellaneous Electrical Equipment Rooms Following a loss of ventilation, the primary means of dissipating the heat load from each of the rooms are transmission through the walls, ceilings, and floors and air exchange with i

surrounding rooms through openings such as ducts, cable iu L4 ions, and doors. As the air temperature begins to increase, mass contained within the rooms such as equipment and structural steel also serves as a heat sink. In addition, the energy dissipation dynamics of the heat generating equipment within the rooms has an impact on the characteristics of the transient temperature profile. However, the interaction of the electrical equipment with the room air and the heat capacity of the mass contained within the room are conservatively neglected in the - '

current analysis. A thermal model is constructed that includes only the room volumes, walls, ceilings, and floors, and therefore, the results of the model represent a conservative bound of the actual temperatures in the Div. I 1/12 MEERs.

4 De methodology used to develop the model is summarized in the following steps.

I 2.1.1. First, the general room arrangements, the wall, floor and ceiling surface areas, and the room volumes are determined from Reference 5.1. The rooms volumes and heat structures are assigned ruxie numbers and the information is developed into a MITY6 (Ref. 5.12) thermal model.

2.1.2. De applicable heat transfer mechanisms bc.- .. the room volumes and each of the heat structures are identified and the heat transfer coefficient data are built into heat transfer paths in the KITTY 6 (Ref. 5.12) thermal model.

2.1.3. The initial temperatures of the MEERs, Battery Rooms, and their associated boundaries are used to generate initial temperature distributions through the room partitions.

2.1.4. The duration of the transient is set at eight hours and the model is executed.

2.2. Acceptance Criteria nere are no specific acceptance criteria that apply to the results of this calculation.

I REVISION NO. O i

l Exhibit E NEP-12-02 COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 PAGE NO. 5

3. ASSUMPTIONS 3.1.

All of the room dimensions are determined from Braidwood drawings, however, a sample of the Byron drawings were examined and there were no observed differences in the configuration or construction of the rooms modeled that would impact the results of the analysis. Furthennore, the heat loads utilized are the maximum values based on both plants. Therefore, the results presented in this calculation are applicable to both Byron and Braidwood.

3.2.

It is conservatively assumed that the heat generated from the electrical equipment within the Div.11/12 MEERs and Battery Rooms is transferred directly to the room air.

3.3.

Following the loss of ventilation, the maximum temperatures of the diesel generator exhaust shaft and silencer room are conservatively assumed to be the maximum temperatures present when the diesel generators are operating. These temperatures are taken from Reference 5.9.

3.4.

He temperature of the cable spreading room following the loss of ventilation is conservatively assumed to instantaneously increase to 200*F and then remain constant for the duration of the transient (Ref. 5.10).

3.5. Water vapor to surface radiation heat transfer is modeled by assuming an mitiai relative humidity of 40%. This is not the minimum value listed in Reference 5.3, however, when combined with the maximum design temperatures it is appropriately conservative.

3.6.

The total volumes of the MEERs and Battery Rooms are conservatively reduced by 10% and 20% respectively to account for equipment.

3.7.

The Non-ESF Switchgear Room is assumed to heat up at a rate less than or equal to the heat up of the Div. I 1/12 MEERs and Battery Rooms. Therefore, an adiabatic boundary condition is imposed at the midpoint of the walls separating the Non-ESF Switchgear Room from the Div.

11/12 MEERs and Battery Rooms. The initial temperature of the walls bounding the Non-ESF Switchgear Room is conservatively assumed to be 109 F, which is the maximum initial temperature between the rooms.

3.8. Air exchange between the Miscellaneous Electrical Equipment Rooms and their various boundaries is conservatively ne;;lected.

3.9. Heat transmission through the doors and fire dampers is conservatively neglected.

3.10. The tunnels above the Division 11/12 Battery Rooms are modeled as closed volumes with no internal heat load. This is conservative since the tunnels are connected to constant temperature boundaries with lower temperatures (i.e., the Turbine Building and the HVAC air intake shaft).

3.11. The thermal properties of the 8" and 12" hollow block walls are determined by combining the j

properties of the air within the cores and the properties of the concrete face shell and web. This

is conservative since it underestimates the thermal diffusivity of the walls near the surface, therefore, it reduces the heat transfer to the walls during the early stages of the transient.

REVISION NO. O

i

, Exhibit E i NEP-12 42 COMMONWEALTH EDISON COMPANY Revision 4 -

, CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059

PAGE NO. 6 I

3 J. DESIGNINPUT

! 4.1. De dimensions of the various rooms and the constructions of the walls, ceilings, and floors are l' obtained from Reference 5.1. The resulting surface areas and volumes are detailed in j Attachment A.

4.2. The initial and relevant transient temperatures of the Division 11/12 MEERs, Division 11/12 8'

Battery Rooms, and their associated boundaries are:

1 Room / Area Initial Temnerature Transient Te.Tse-

! Div. I1 MEER: 108 'F (Ref. 53) Calculated j- Div.12 MEER: 108 'F (Ref. 53) Calculated

Div. I1 Battery Room
108 'F (Ref. 53) Calculated

, Div.12 Battery Room: 108 'F (Ref. 53) Calculated Tunnel Above Div.1I Batt. Room 108 'F (Ref. 53) Calculated

} Tunnel Above Div.12 Batt. Room 108 'F (Ref. 53) Calculated l Ambient 95 'F (Ret 53) i 95 'F (Ref. 53)

Non-ESF Switchgear Room 109 'F (Ret 53) . Adisbatic Boundary l Turbine Bldg. (Above El.451 ') 104 'F (Ref. 53) 104 'F (Ref. 53) j Cable Spreading Room 108 'F (Ref. 53) 200 'F (Ref. 5.10) i Diesel Generator Exhaust Shaft 108.5 'F (Ref. 5.9) 150 'F (Ref. 5.9)

[ Diesel Generator Silencer Room 162 'F(Ref 5.9) 960 'F (Ref. 5.9) l HVAC AirIntake Shaft 95 "F (Ref. 53) 95 'F (Ref. 53) .

i

43. The bounding Byron /Braidwood equipment heat loads for the Division i 1/12 MEERs and i Bauery Rooms are:

I Div.1I MEER: 12,777 W (43,599 Btu /hr) (Ref. 5.4)

Div.12 MEER: 34,780 W (118,680 Btu /hr) (Ref. 5.4 and 5.5, Attachment B) l Div.1I Battery Room: 410.1 W (1,399 Btu /hr) (Ref. 5.4)

! Div.12 Battery Room: 410.1 W (1,399 Btu /hr) (Ref. 5.4) f The value for the Div.12 MEER heat load is reduced to account for equipment that will not be jc energized during the loss of HVAC. The heat load reduction is based on Reference 5.5 and it is j.. detailed in Table B-2 of Attachment B.

4.4. The thermophysical properties of dry air are obtained from Reference 5.7.

! 4'5.

The density, specific heat, and thermal conductivity of steel and steel reinforced concrete are I

[

obtained from Reference 5.11. '

] 4.6. The emissivities of painted steel and concrete are obtained from References 5.7 and 5.8.

i

{. 4.7. The sol-air temperature for the exposed roofis 162 'F (Ref. 5.6, page 26.6). The corresponding I heat transfer coefficient is 3.0 Bru/hr *F-ft2, REVISION NO. 0 '

S 4

.,.,,...o..._s.- _ . . _ _~ .. . , _ , . , ,, -, , , . - . _ m,, _. . . - , . - . . .,, . - . - - -

Exhibit E NEP-12-02 COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 PAGE NO. 7 4.8. The effective thermal conductivity, specific heat, and density of the 8" and 12" hollow blocks are (Ref. 5.10):

Thermal Conductivity Specific Heat Density (Btu /hr-ft *F) (Btu /lbm 'F) (ib /ft')

8" Block 0.0839 0.200 60.64 12" Block 0.0662 0.200 35.56

5. REFERENCES 5.1. Braidwood Drawings Drawing No. Ery, 5.1.1. A-100 N 5.1.2. A-261 AD 5.1.3. A-266 BG 5.1.4. A-281 T 5.1.5. A-290 K 5.1.6. A-1200 K 5.1.7. A-1201 H 5.1.8. A-1202 G 5.1.9. M-1293, Sht. 2 BC 5.1.10. S-724 AF 5.1.11. S-727 W 5.1.12. S-1309 BN 5.1.13. S-1347 AT 5.1.14. S-1348 AN Latest drawing revisions verified through EWCS by Florinda Bonsol on 6/23/97.

5.2. Byron Drawings Drawing No, Rev.

5.2.1. A-261 AD 5.2.2. A-266 AV 5.2.3. A-281 T 5.2.4. A-290 L 5.2.5. A-1200 B 5.2.6. A-1202 C Latest drawing revisions verified through EWCS by Florinda Bonsol on 6/23/97.

REVISION NO. O

Exhibit E ;

NEP-12 42 l COMMONWEALTH EDISON COMPANY- Revision 4  !

)

CALCULATION NO. BRW-97-0624-M. BYR97-277 PROJECT NO. 09050-059 PAGE NO. 8

j 4
= I 5

5.3. Byron /Braidwood UFSAR, Section 3.11 Revision 6.

s j 5.4. DIT BB-EPED-0173-003, Rev. 3, " Heat Loads of Electrical Equipment in the Miscellaneous ll . Electrical Equipment Rooms and Battery Rooms," 11/23/93.

l 5.5. NDIT No. BRW-DIT-97-199, Rev. O " Electrical Equipment in the Division 11 & 22 Miscellaneous Electrical Equipment Rooms That is De-Energized After A Reactor Trip and i Would Contribute Negligible Heat Load," 6/19/97.

. 5.6. 1993 ASHRAE Handbook: Fundamentals,I-P Edition, American Society of Heating, l- Refrigerating and Air Conditioning Engineers, Inc., Atlanta,1993.

j 5.7. Incropera, F. P. and D. P. DeWitt, Introduction to Heat Transfer,2nd edition., John Wiley &

j Sons, New York,1990.

S 5.8. McAdams, W. H., Heat Transmission,3rd edition., McGraw-Hill Inc., New York,1954.

, 5.9. S&L Calc. No. 3C8-0691-001, "ESF Switchgear Room Temperature Transient Following Turbine Bldg. HELB," approved 7/10/91.

! 5.10. S&L Calc. No. ATD-0072, Rev.1," Miscellaneous Electrical Equipment (MEE) Rooms

{ Transient Temperature Following a HELB," approved 6/1/92.

1

{ 5.11. NUREG-0800, Section 6.2.1.5, Minimum Containment Pressure Analysis for Emergency Core Cooling System Performance Capability Studies, Table II, Revision 2, July 1981.

l l , 5.12. KITTY 6: Thermal-Hydraulic Transients in Arbitrary Solid and/or Fluid Channel j_ Configurations, Sargent & Lundy Program No. 03.7.481-6.0, October,1996.

I i

l l

l l

)

REVISION NO. O

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Exhibit E

' NEP-12-82

' COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 4

PAGE NO. 9 a

- 6. CALCULATIONS 6.1. ' Nomenclature A Surface area (ft')

c, Specific heat of air at constant pressure (Btu /lb. *F)

! g I Gravitational acceleration ( = 4.17 10' ft/hr') .

hw. Natural convection heat transfer coefficient for a horizontal plate (Btu /hr-ft2,.7)  ;

! h, '

  • Radiation heat transfer coefficient (Btu /hr-ft' *F)

' h. Natural convection heat transfer coefficient for a vertical plate (Bru/hr-ft2 ,.p) k Thermal conductivity (Bru/hr-ft *F)

L Mean beam length defined for a gas volume radiating to a surface (ft)

P. Saturation pressure of water vapor at T. (psia)

P. Partial pressure ofwater vapor in air (psia)

P. Ambient pressure (psia)

Pr Prandtl number of air ( = c,p/k.)

q. Heat transfer rate (Btu /hr)

T, Heat structure surface temperature (*F)

T. Saturation temperature of water vapor at P. (*F)

T. Average room temperature (*F)

AT Temperature difference between the room air and the heat structwe surface (*F)

V Room volume (ft')

GutflG cz, Water vpr absorptivity c, Heat structure surface emissivity

c. Water vapor emissivity 4' Relative humidity Dynamic viscosity of air (Ib./ft-hr) v Kinematic viscosity of air (ft2 /hr) p Density (ib./ft')

a 4 Stefan-Boltzman constant ( = 0.1714 10 Bru/hr-ft2,oR') I SubscrIDis a Air ss Steady-state w Water vapor

?EVISION NO. O

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

Exhibit E

- NEP-12-02 COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M. BYR97-277 PROJECT NO. 09050-059 PAGE NO.10 6.2. Transient Temperature Calculation of the Div'.11/12 MEERs As stated in Section 2, the transient temperature profiles of the Div.11/12 Miscellaneous Electrical Equipment Rooms are determined using KITTY 6 (Ref. 5.12). The model consists of 101 nodes and 140 heat transfer paths. The nodes are described in detail in Attachment A. The KITTY 6 input file is given in Attachment C.

The heat transfer coefficients utilized in the KITfY6 model for natural convection and water vapor to surface radiation between the room volumes and the various heat sinks are detailed in Sections 6.3 and 6.4 respectively.

6.3. Natural Convection Heat Transfer Coefficient Natural convection heat transfer between the vertical heat structures and the room volumes is
  • modeled using the simplified correlation for air shown below in Equation (1)(Ref. 5.8, pg.

'73).

hun = 0.19(AT)3 (1)

Natural convection heat transfer between horizontal heat structures that are heated and facing upwards or cooled and facing downwards and the room volumes is modeled using the simplified correlation for air given in Equation (2)(Ref. 5.8, pg.180) hw = 0.22(AT)3 (2)

The correlations of Equations (1) and (2) are applicable for turbulent conditions and they are applied at the surfaces of the walls, ceilings, and floors. Heat transfer between the room volumes and horizontal heat structures that are cooled and facing upwards or heated and facing downwards is modeled using conduction.

6.4. Water Vapor to Surface Radiation Heat Transfer Coefficient Radiation heat transfer between water vapor in the rooms and exposed heat structure surfaces is modeled using the fundamental relation shown below in Equation (3)(Ref. 5.8).

q = Ac[(I + c )/ 2). c,Td - a ,T,' (3)

The parameter (1 + c )/ 2 accounts for the gray body effects of the heat structure surfaces where c, is the emissivity of the surface. The parameters c, and a, are the water vapor emissivity and  !

absorptivity respectively. In the current model, the water vapor absorptivity and emissivity are conservatively assumed to be equal. This assumption underestimates the absorptivity by less '

than 5 % and it greatly simplifies the analysis by allowing an effective radiation heat transfer coefficient to be defined as shown in Equation (4).

2 h, = oc ((1 + c,)/ 2)(T. + T,)(T + T,2) (4)

REVISION NO. O

1 P

Exhibit E NEP-12-02 ,

COMMONWEALTH EDISON COMPANY Revision 4 CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 PAGE NO.1I The emissivity of the water vapor is a function of the vapor temperature, vapor partial pressure, total pressure, and mean beam length. The mean beam length. L, for an arbitrary room of volume V and surface area A is given by Equation (5)(Ref. 5.7, pg. 788). ,

L = 3.6. V / A (5)

)

The relationship given in Equation (5) is a fundamental description of the mean beam length for  ;

a simple enclosure. However, the interference of equipment, cable trays, ducts, and partitions can affect the applicability of Equation (5). Therefore, the value of L detennined from Equation (5) is reduced by 20 % in the current analysis.

Once the values of the mean be'am length, the vapor temperature, the vapor partial pressure, and the total pressure are known, the value of the water vapor emissivity is estimated from Figure 4-

' 15 of Reference 5.8. The detailed calculation of the water vapor emissivities is given in i Attachment B.  ;

t s

9 I

a i

l l

l REVISION NO. O

Exhibit E NEP-12-02 l COMMONWEALTH EDISON COMPANY Revision 4 I CALCULATION NO. BRW-97-0624-M, BYR97-277 PROJECT NO. 09050-059 PAGE NO.12 l

l

7.

SUMMARY

AND CONCLUSIONS The transient temperature profiles of the Byron and Braidwood Div. I 1/12 Miscellaneous Electrical Equipment Rooms (MEERs) following a loss of the Miscellaneous Electrical Room Ventilation (VE) and Switchgear Heat Removal (VX) Systems are given in Figure 1. The I corresponding temperatures at various times are summarized in Table 1. The KITTY 6 output j s

file is included in Attachment C.

i l Table I: Transient Temperature Summary For the Byron /Braidwood Div.11/12 MEERs Time Div.11 Div.12 4

(hours) MEER ('F) MEER (*F)

0.0 108.0 108.0 0.5 134.2 142.3 i l 1.0 136.8 145.4

~

2.0 139.6 148.7 i.

3.0 14L5 151.0

4.0 143.0 152.9 4

6.0 145.6 156.1 4

8.0 '147.8 159.3

/

i j

c REVISION NO. 0

Figure I. Transient Tensperature Profiles of the Div.11 and 12 Miscellaneous Electrical Equipneemt Rooms Following a Loss of the VE and VX Systems 160 Div 12 MEER _

150 -

g - ----  : ---- - - - --

149 . _ _ . _ _. . _ ._______

Div. Il MEER _ __ _ ___

E E

l 130 - - - - - - - - - - - - - - - -- ---- - - - - - - - - - - - - - - - - - - - - --

8.

g .

H 120 -- - - - - - - - - - - - -- -

l10 - - -- - - - - - - - - -- - - - - - - - - - - - - - - - ' - - - - - - - - - -

100 "

0 1 2 3 4 5 6 7 8 Time (hrs)

Calc. No.: BRW-97-0624-M, BYR97-277 Rev. No.: O Page No.: 13 Project No.: 09050-059 (Final Page)

l I

Attachment A l

l Heat Structure Surface Area and Room Volume Details j 1

I

)

Attachment A Contents:

Table No.:

Description:

Pane No.:

A-1 Room Volume Details A-2 A-2 Wall Surface Area Details A-3 A-3 Floor and Ceiling Surface Area Details A-5 i

l Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

Attachment:

A Page No.: A-1

. . . .. . .~ .. . . . - - . . ...

Table A-1: Room Volume Details Nede Enclosed Structures Volume Reduction Net Room Reference Number Room Descriptiosi Ismgeh(R) V' W.(R) lleight (R) Length (R) Width (ft) lleight (R) For Ealeepment (%)

~

Volemme (ft') Drawings I Div.12 MEER 41.28 35.28 24.00 23.00 I2.00 12.00 10 % 31 % 5.9 A-266, 11.03 16.25 24.00 23.00 5.03 3.67 S-1347

  • 2 Div.11 MEER 22.00 35.28 24.00 22.00 12 00 12.00 10 % 13119.0 A-266, 22.00 5.88 6.83 S-724 3 Div.12 Bst. Rm. 22.00 Is.36 ;i33 20 % 2265.9 A-266 S-I347  ;

4 Tunnel Abova Div.12 Bat. Rm. 22.00 4.00 3.00 10 % 237.6 A-2%, S-1347 j 10 Div. II E at. Rm. 22.00 10.87 II33 20 % 2167.I A-2%, S-724 ,

II Tunnel Aboe* Div.1I Bat. Rm. 22.00 4.00 6.16 10 % 487.9 A-266, S-724 l

Nodes 5 'hrough 9 are not actively calculated in the model, therefore, the volumes are not determined.

i Calc. No.: BRW-97-0624-M, BYR97-277 Rev, No.: 0

Attachment:

A Pry:ct No.: 09050-059 Page No.: A-2

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

Table A-2: WallSurface Area Details llend Node Deers Opesings Net Wall Serface Reference Teil Nede Description length th) lleight (R) Thickness (n) Construction Door # Width (R) Height (R) W Web (R) Height (R) Area (R'l Drawings 19 Wall Be'wcen Div.12 MEER A 6.00 24 00 2.5 Concrete 144.0 A-2M, 20 Cntrl. Rm. IIVAC Intake Plenum S-1309 21 Wall Between Div.12 MEER A 18.25 24.00 0.969 Unreinforced Hollow D 413 333 733 4.50 2.00 404.6 A-2%,

22 Non-ESF SWGR Rm. Concrete Block S-1309 23 Wall Between Div.12 MEER & I1.18 12.00 1 Concrete 134.2 A-266, 24 Div. Il Bat. Rm S-1309 25 Wall Between Div.12 MEER A 35.28 24.00 0.969 Unreinforced floilow D 463 633 8.67 6.00 6.83 609.6 A-266, 26 Div.11 MEER Concrete Block 11.18 12 00 S-1309 1.58 4.50 27 Wall Between Div.12 MEER A 47.28 24.00 2.5 Concrete 1834 8 A-266, 28 IIVAC Eq. Rm. 53 S-1309 29 Wall Beturen Div.12 MEER & 16.25 24.00 3 Coricrete 390.0 A-266, 30 Arnt ient S-I309 31 Walt Between Div.12 MEER A 15.78 24.00 0.969 Unveinforud flollow D 417 4.00 733 5.03 3 67 194.6 A-266, 32 Air intake Shaft (Sum of West and South Walls) Concrete Block i136 12.00 S-1309 33 Wall Between Div.12 MEER & 15.00 24.00 1 Concrete 360.0 A-266, 34 DG Exhaust (Sum of West and South Walls) S-1309 i 35 Wall Between Div.12 MEER & 22.50 12.00 0.635 Reinforced Hollow D 761 333 733 I.25 1.67 241.4 A-266, r

~

36 Div.12 Bat. Rm. Concrete Block 1.25 1.67

  • S-1309 37 Wall Between Div.12 MEER A 22.50 3.67 i Conct te 82.5 A-266, 38 funnel Above Div.12 Bat. Rm. S-1309 39 Wall Between Div. I2 MEER & 23.00 833 0.969 Urreinforced Hollow 3.50 3.42 1643 A-266 I 40 Non-ESF SWGR Rm. Concrete Block 4.50 3.42 S-1309 4I Wall Detween Iunnel Above Div.12 22.50 3.67 I Concrete 82.5 A-266, 42 Bat. Rm. A Non-ESF SWGR Rm. S-1309 ,

43 Wall Between Div.12 Bat. Rm & 2230 1833 I Concrete 255.0 A-266, 44 Non ESF SWGR Rm. S-1309 45 Walt Between Div.12 MEER & 12.00 12.00 1 Concrete 144.0 A-266, ,

46 Div.12 Bat. Rm S-1309 s 47 Wall Between Div.11 MEER A 22.00 12.00 0.635 Reinforced Hollow D 780 3.33 733 1.25 1.67 235.4 A-266, 48 Div. Il Bat. Rm. Concrete Block I.25 1.67 S.I309 49 Wall Between Div. II MEER A 44.00 6.83 i Concrete 300.7 A-266,  !

50 Tunnel Above Div. II Bat. Rm. S-1309 i

Calc. No.: BRW-97-0624-M, BYR97-277 l Rev. No.: 0

Attachment:

A Project No.: 09050-059 Page No.: A-3

s Table A-2: Wall Surface Area Details llend Node Doors Opeelegs Net WeH Surface Reference l

Tail Node Description Length (R) lleight (R) Thickness (n) Constreetion DoorN Width (h) Bleight (R) Width (R) lleight (R) Area (n') Drawlege 51 Wall Between Div. Il MEER & 22.00 12.00 0.%9 Unreinforced Hollow 264.0 A-266,

$2 Non-ESF SWGR Rm. Concrete Block S.I309 53 Wall Between Div. II Bat. Rm. & 22.00 I133 I Concrete 249.3 A-266, 54 Non-ESF SWGR Rm. S-1309 55 Wall Between Div. II MEER & 35.28 24.00 3.5 Concrete D 856 833 8.67 11.50 12.00 588.0 A-266, 56 rurbine Bldg. SD 208" 5.88 6 83 S-1309 3.58 233 M-1293 57 Wall Between Div. II Bat. Rm. & 10.8f 1133 3.5 Concrete 123.1 A-266, 58 Turbine Bldg. 5-1309 59 Wall Between Div. Il MEER & 22.00 24.00 2.5 Concrete D 418 333 733 503.6 A-266, 60 IIVAC Eq Rnt S-1309 6i Wall Between Div.12 Bat. Rm. A I138 12.00 0.969 Unreinforced llollow 136.5 A-266, 62 IIVAC Air intake ShaR Concrete Block S-1309 i

    • The given dimensions are the combined values for D 856 and SD 208.

l T

Calc. No.: BRW-97-%24-M, BYR97-277 Rev. No.: 0

Attachment:

A Project No.: tt9050-059 Page No.: A-4

Table A-3: Floor and Ceiling Surface Area Details llend Node Enclosed Structure Reduction for Eq. Net Serface Reference lail Nede Description 14egth (ft) Width (R) nickness (R) Ceestreetles Width (ft) Length (ft) and Obstreetless (%) Area Ift') Drawlegs 63 Slab Between Cable Spread Rm. A 53.28 35.28 1.25 Concrete 12.00 22.97 1375.76 A-261, 64 Div.12 MEER 12.00 19.03 A-266 65 Stab Between Cable Spread Rm. & 22.00 35.28 1.25 Concrete 22.00 11.50 523.16 A 261, 66 Div. II MEER A-266 67 Stab Between Cable Spread Rm. & 22.00 1836 1.25 Concrete 250.02 A-261, 68 Div.12 Bat. Rm. A-266 69 Stab Between Cable Spread Rm. A 22.00 10.86 1.25 Concrete 239.02 A-261, 70 Div. II Bat. Rm. A-266 il Stab Between Div.12 MEER & 22.50 6 00 0 667 Concrete 135.00 A-2%, j 72 Div.12 Dat. Rm. S-724 73 Slab Between Tunnet & 22.00 4.00 0.667 Concrete 88 00 A-266, 74 Div.12 Bat. Pm. S-724 75 Stab Between Tunnel & 22.50 4.00 0.667 Concrete 90.00 A-266, 76 Div.12 MEER ,

5-724 77 Slab Between Div. II MEER & 22.50 5.50 0 667 Concrete 123.75 A-266 78 Div.1I Bat. Rm. S-1347 79 Slab Between Tunnel & 22.00 4.00 0.667 Concrete 88 00 A 266, 80 Div. Il Bat. Rm. S-1347 8i Stab Between Tunnel & 22.50 4.00 0.667 Concrete 90.00 A-266, 82 Div. Il MEER S-1347 i 92 - mb Between Div. II MEER & 17.29 1533 2.25 Concretc

  • A-266, 93 DG Exhaust Silencer 4.71 8 67 A-281, Fotal 305.94 A-290 94 Stab Between Div. Il MEER & 22.00 35.28 2 Concrete 1533 17.29 470.22 A-266, A-281 95 Ambent Sol-Air 4.71 8.67 A-290 06 Stab Between Div.12 MEER & 53.28 35.28 2 Concrete 15.25 11.04 723.68 A-266, 97 Ambient Sol-Air 27.03 736 A-281, 27.86 1533 A-290 14 25 9 33 12.00 19.03 98 Slab Between Div.12 MEER & 15.25 11.04 2 Concrete 367.47 A-266, A-281 99 IIVAC AirIntake 27.03 736 A-290 100 Slab Between Div.12 MEER & 27.86 1533 2.25 Con ete_1 560.20 A-266, A-281 101 DG Exhaust Silencer 14.25 933 l A-290 Calc. No.: BRW-97-0624-M, BYR97-277 Rev. No.: 0

Attachment:

A Page No.: A-5 Project No.: 09050-059 (Final Page of Attachment A)

l l

i Attachment B -

l l

Auxiliary Calculations Attachment B Contents:

Description:

Page Nm Table B-1: Determination of Water Vapor Emissivity B-2 )

Table B-2: Summary of the Div.12 MEER Heat Load Revision B-3 l

)

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l l <

l I

I i l

Project No.
09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 i Rev. No.: 0

Attachment:

B l Page No.: B-1 I

Tcble B-1: Determination ef Water Vcpor Emissivity 1

4 Div 11 MEER I initial Temperature: 108*F (Design input 4.2) l Initial Pressure: 14.7 psia (Atmospheric) i j Initial Relative Humidity: 40 % (Assumption 3.5)  ;

Saturation Pressure: 1.2030 psia (ASME Steam Tables) [

Pa 0.4812 psia = 0.03274 bar P.,: 14.2188 psia = 0.96746 bar l l Ve,i: 14570 ft' (Attachment A (No Volume Reduction))

i Ami: 4000 R' (Conservatively Estimsted from Attachment A) l V/A: 3.64 ft 4 - Mean Beam Length Reduction: 20% '

j Mean Beam Length, L: 13.11 ft (= 3.6*V/A, Reference 5.7, pg. 788) j Reduced Mean Beam Length,Iw: 10.49 ft (=L*(1-Mean Beam Length Reduction)) ,

P lw:

} 034 ft-bar j r ,: 0.2 (Approximate, Reference 5.8, Figure 4-15) 1 Div.12 MEER i l i InitialTemperature: 108*F (Design input 4.2) ,

initial Pressure: 14.7 psia (Atmospheric)

Initial Relative Humidity: 40 % (Assumption 3.5) l l . Saturation Pressure: 1.2030 psia (ASME Steam Tables) l P.: 0.4812 psia = 0.03274 bar i i P.,: 14.2188 psia = 0.% 746 bar f V m 2: 35500 ft' (Attachment A (No Volume Reduction)) ,

2 l Am2: 7500 ft (Conservatively Estimated from Attachment A) t V/A: 4.73 ft l Mean Beam Length Reduction: 20 %

Mean Beam Length, L: 17.04 ft (= 3.6*V/A, Reference 5.7, pg. 788)

Reduced Mean Beam Length,Iw: 13.63 ft (=L*(1-Mean Beam 1.ength Reduction))

P lw: 0.45 ft-bar i r: 0.22 (Approximate, Reference 5.8, Figure 4-15)

Value of r, used for all rooms in the model
0.2 Calc. No.: BRW-97-0624-M, BYR97-277 l Rev.No.: 0

Attachment:

B

Project No.
09050-059 Page No.: B-2

Table B-2: Summary of the Div.12 MEER Heat Load Revision Dased on NDIT BRW-DIT-97-199 Total Div.12 MEER Heat Loads (DIT BB-EPED-0173-3 Ref. 5.4) 44596 W Equipment Numbers and Heat Loads for 1RD023 1215 W I Components That Will Not Contribute to IRD03J 1215 W the Div.12 MEER Heat Load. IRD04J 1215 W (Heat Load Source: DIT BB-EPED-0173-3, IRDOSE 500 W Ref.5.4) 1RD05J 1215 W (Non-Energized Equipment Source: IRD06J 1215 W BRW-DIT-97-199, Ref. 5.5) 1RD08J 1215 W IRD083A 0W 3 Phase Bus Duct 2026 W Reduced Heat Load (Total - Contribution of Eq. Listed Above) 34780 W 118680 Btu /hr 1

1 1

I i

Calc. No.: BRW-97-0624-M, BYR97-277 Rev. No.: 0

Attachment:

B i Page No.: B-3 I

^

Project No.: 09050-059 (Final Page of Attachment B) l 4

t 4

Attachment C J

KITTY 6 Inout and Output Files for the MEER Transient Temnerature Model 4

Attachment C Contents:

Description:

Pane No.:

KITTY 6 Input File for the MEER Transient Temperature Model C-2 i

KITTY 6 Output File for the MEER Transient Temperature Model C-7 i

)

i i

j j

4 4

i Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

Attachment:

C Page No.: C-1

i i

l 1

, orate a Contr.1 mm. end Asa Trennant Meer a za e um vc avece-101 140 11 27 0 0 8. 0 0 16 144. 0 0

/IfV NF- IM . WF IG Int EleA1 RCN IVIP NasS PCF IIQB INe 6 0. .S 1. 2. 3. 4. 6. 8.

a 31966, 108. 3.?1269 0 0 1 /81 Iest 12 AIR IIODs (n00. TO ACCouwT POR IIow 31313) 8 13119. 104. 3.32335 0 0 1 /$ 2 Inst la MR (1100. TD ACCOERrf FOR 9bli HBlas 8 2256. 104. 0.61756 0 0 1 /8-3 RAT RIt DTV 12 A2R 1 237.6 108. O. 0 0 1 /S-4 TUInf 'a&T RN DIV 12 AIR

21. 22 1 /S-S BREADST STACE AIR 2 95. 01 /S-6 NVAC AIR SUP AIR 2 95. 01 /S-T AIslerf MR

( 2 104. 0 1 /$-0 G AC ARSA MR

-1 /S-9 WOII-BSF SNEt RIt AIR

& 2167. 104. 0.64S59 0 0 1 /5-10 SAT an DIV 11 AIR (MOD. 70 ACCotBrF POR IION RBla) 1 464. 106. O. 0 0 1 /S 11 Ttam *aAT Rn DIV 11 A2R 2 104. 0 1 /S-12 75 MR 2 162. 0 1 /$-13 AleterIWs0 LAIR Tee I 2 1. 26 1 /S 14 CARIA SPRSAD an AIR i 2 1. 27 1 /5-15 DG SIIAICER MR '

-1 /S 16 NULL IIODE IIDT USED

-1 /$-17 IICLL IIODS IIDT OBED

-1 /5-10 IIULL IIODS IRFT OBE 6 9. 0 0 $ /S-19 Come ela11 tote 1 6 8 7 /S-20 60.009 /S 21 FIRS IIALL DETW 3 & 9

? /S 22 60.00$ /S 23 CXNIC unLL petu 1 & 10 9 /S-24 6 04 009 /S-29 FIRE GIALL te7W 1 & 2 7 /S 26 6 0. 0 0 $ /$-27 CORIC IIALL BETW 1 & 8 9 /S 20 46.OO$ /$-29 CDIIC unLL BETW 1 & 7 l 9 /$ 30

[ 66.009 /$-31 FIRS IIALL BETW 3 & 6 f 7 /$-32 i

60.00$ /$-33 CONC IIALL arru 1 & 8 7 /5-34 6 9. 0 0 11 /S-35 0' FIRE MALL StrW 1 & 3 T /S-36  !

l 6 0. 0 0 5 /S-27 CONC IIALL BB1W 1 & 4 l 7 /$-38 ]

I 60.009 /S-39 FIRS NALL DETW 1 & 9

? j

/S-40 j 69.00$ /$-41 Conc NALL DETW 4 & 9 1 /$ 42 l 69.005 /S-43 Couc IIALL Dr W 3 & 9 7 /$.44  :

O0.005 /S-45 Couc unLL tr!w 1 & 3

? /S-46 6 6. 0 0 13 /S-41 8' HALL BrfW 2 & 10

? /S-48 6 9. 0 0 $ /5-49 CONC IIALL DETW 2 & 11 7 /S-50 69.009 /S-81 FIRS MALL BETW 2 & 9 s 7 /$ 52 '

60.00$ /S-53 Couc MALL DETW 10 & 9 7 /S 54

  • v. 005 /S-SS CCIIC HALL BETW 2 & 12

? /S 56 69.00$ /S-ST Couc IIALL BB1W 10 & 12 9 /S-58 60.50S /S-59 COIIC uhLL 3rru 2 & 8

? /S-60 60.009 /S-61 FIRS MALL DETW 3 6 6 7 /S 62 6 0. 0 0 $ /5-63 Couc SLAB BETW 14 & 1 9 /S 64 \

69.00$ /$ 65 COIIC $1A3 BrrW 14 & 2 1 7 /S 66 6 0. 0 0 $ /S 67 COIIC Staa Drru 14 6 3

? /S-68 69.00$ /S-69 Conc SIAB 857W to & 10 1 /S-10 69.00$ /$-71 Couc 31A8 trW 3 6 3 7 /S 12 40.00$ /S 73 CDuc 51As BrIW 3 & 4 7 /S 74 60.00$ /5-?S Couc SLAB 381W 4 & 1 7 /5 16 l Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

Attachment:

C Page No.: C-2

... - . . . . - . . _ ~- ~ _.n .. - - , - ~ _ , = ~ - . . .. . ~ . - - .

66.005 /5-77 CONC SIAs Betw to & 2 7 /5 78 66.005 /5 79 CONC SIAs Br71s 10 & 11 7 /5 80 66.005 /5 81 CONC SEAR BETW 11 & 2 7 /5 82 1 /5 83 NULL NODS NUT USED *

-1 /5-84 NULL NODE NOT USED

  • 1 /5-85 NULL NODE NOT USED

-1 /5-86 NULL 50D5 507 USED

-1 /5-87 NULL NODS NDT USED

-1 /5 68 NULL NODE NUT USED

-1 /5-49 NULL NODS 57T USED

-1 /5-90 NULL NODE NOT USED 1 /5 91 NULL N0DE NUT USED 60.005 /5-92 CDNC CBIL Dr7W 2 & 15 7 /5 93 60.005 /5-94 CONC Cs1L asm 2 a 13 9 /5-95 49.005 /5-96 CONC CB1L arm 1613 7 /5-97 66.005 /5-98 CUNC CEIL 387W 1&7 7 /5-99 6 0. 0 0 $ /5100 CONC CEIL 387W 1 & 15 7 /5*191 2 1 19 1 144. /5 1 CW 8 19 30 30 144, 2.5 /6-2 d 20 8 1 144. /4-3 2 1 21 1 405. /5-4 CW i 8 21 22 6 40s 0.5 /6 5 half thck uses for trees

-2 22 9 1 405. /4-6 NULL (Adiabatic Assumpt1w.1 2 1 23 1 134. /4-7 CW 8 23 24 12 134. 1. /6-8 2 24 10 1 134. /4-9 2 1 25 1 ele. /6-10 FW 8 25 26 12 610. 1. /6 11 22621610 /4-12 2 1 27 1 1135. /4 13 CW 8 27 28 30 1135. 2.5 /6-14 2 28 8 1 1135. /6-15 2 1 29 1 390. /6-16 CW 8 29 30 36 390. 3.0 /6-17 23071390 /5-18 2 1 31 1 195. /6-19 Ft*

8 31 32 12 195. 1. /6 20 3 32 6 1 195. /6 21-2 1 33 1 360. /6-22 CW 8 33 34 12 360. 1. /6-23 8 34 5 1 360. /6-24 21351241. /6-25 FW 8 35 36 8 241. 0.635 /6 26 23431241. /6-27 3 1 27 1 83. /6-28 CW 8 37 38 12 83. 1. /4-29 2 38 4 1 83. /6-30 3 1 39 1 164. /6-31 FW 8 39 40 6 19. 0.5 /5 22

-24091 ' . . /6 33 NULL (m ahats *, As sumg*1ca) 244118 /6-34 FW f 84142683.0.5 /6 35

-2 42 9 1 83. /4-36 NULL W ,abatte Assumptical 33431255. /6 37 CW 8 43 44 6 255. 0.5 /6 38

-2 44 9 1 255. /6 39 NULL (Adiabatic Assumption) 21451144. /6-40 CW 8 45 46 12 144. 1. /6-41 3 46 3't 144. /6 +4 2 2 3 47 1 235. /6-43 FW 8 47 48 8 235. 635 /6-44 2 48 10 1 235. ,6 $5 l 2 2 49 3 301. /6-es CW 8 49 50 12 301. 1. /6-47 8 50 11 1 301. /6-48 t- 32511264. /6-49 /W l

8 51 52 6 264. 0.5 /6-Fd

-25291244. s6 51 NULL (Adiabatic Assumptica) 3 to $3 1 249 /5-52 CW 8 53 54 6 249, 0.5 /6-53

-2 54 9 1 249, /6 54 NULL (Adiabatie Assumptical 22551588. /6-55 CW 8 55 56 42 588. 3.5 /6 56 2 56 12.1 588. /6-57 Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

Attachment:

C Page No.: C-3 r

N.

,4. 8 CW 2 10 ,, 1 u3.

8 59 58 42 123, 3.5 /4 59 2 58 12 1 123. /4-60 2 3 SD 1 $04. /6 61 CW 8 59 60 30 SO4. 2.5 /4-43 .

3 60 8 1 $04. /6-62 {

2 2 61 1 137 /6 64 M

  • B 61 62 12 127. 3. /6 65  ;

2 62 6 1 131. /6-66 '

2 to 63 9 1376. /4-67 CRILING SW1W CABLB SPB AM 6 MER1^ l S 43 64 15 1376. 1.25 /6-65 2 64 1 2 13?6, /4-69 2 14 65 9 533. /610 CBILING SETW CSR 6 feet 11 i 45 66 15 523. 1.25 /6 71 s6632523. /6 12 214679250. /6-13 CBILIIIG DETW Csk & SAT DTV 12 8 61 68 15 250, 1.25 /6 94 8 68 2 9 250. /6-78 2 to 69 9 239. /616 CSTLING DOTW CSR 6 BAT DTV 11 6 49 90 15 339. 1.25 /6-TT 270109239. . /6-18 8 3 71 9 135. /619 81AS BrtW BET DIV 12 & seer 12 8 ft 72 8 13$. 661 /6 80 8 T3 1 9 138. /4-81 2 3 13 9 88. /6-82 SIAs SSTW SAT DIV 12 6 ftm 12 8 T3 14 8 88. 667 /6-43 8 74 4 9 98. /6-04 2 4 ts 9 90. /4 85 SLAS Br!W T1IN 12 & leer 12 8 TS 76 0 90. 661 /6-86 8 16 1 9 90. /6-07

/,6 I 8 ,10 8  ??89 n124.

7 ,. .. 66, 698,6 S!SI BETW DET DIV 116 DEER 11 I 2 10 2 0 124. /6 90 2 to 79 9 88. /4-91 SLAS DETW SAT DIV 11 & TUN 11 8 19 80 8 te. 667 /6 92 28011988. /6 93 2 11 51 9 90. /6-94 SEAS BETW Tint 1& 6 feet 11 8 81 82 6 90. .667 /6 95 3 82 2 9 90. /6 96 2 2 93 2 306. /5-91 CE2L!sIG e 92 93 21 306. 3.28 /4-98 DETW ISS 11 6 DG SILENCER 2 93 15 S 306. /6-99 RAD PATR 2 2 94 2 470. /4-100 CEILING l 8 94 95 24 470. 2. /6-101 DETW MBE 11 6 SQL-AIR 2 95 13 11 470. /6-102 8 1 96 2 124. /6103 CEILING 6 96 97 to 724. 2. /6-104 Drfu ses 12 & SQL. AIR 2 91 13 11 724. /6-103

' 8 1 90 2 367. /6-106 CBILIIC 8 90 99 24 367. 2. . /6101 BETW ISS 12 6 AIR IMAKE 8 99 7 2 367. /6 104 i 2 1 10D 2 560. /6-109 CEILING '

8 800 101 at 560. 2.25 /6 110 DETW MBS 12 & DG SILafCER 8 101 15 5 560. /6111 RAD PATE 2121 6 405. /4112 WV 19 SIR DAD. PW 8 1 23 T 134. /6113 WV TO SUB RAD. CW 3125 6 610. /6-114 WV TO SIR RAD, PW 2 2 26 6 610. /6115 WV TO SUR RAD. rw 2127 1 1135. /6-114 WV TO SUR BAD. CW 2 1 29 7 390 /6111 WV TO SUR RAD. CW f

21 al 6 195. /6-118 WV TO SUR RAD. FW 8133  ? 360. /6119 WV TO SIR RAD. CW 8135 6 241. /6 130 WV 10 SUR RAD. PW 2137 7 83. /4-121 WV 19 SUR BAD, CW 3139 6 164. /6122 WV TO SUR RAD. PW 2345 6 144. /6-123 WV TO SIR RAD. PW

'8241 6 238. /5 124 WV TO SUR RAD, PW 3349 1 301. /6125 WV TO SUR RAD. CW 8851 6 264. /6126 WV TO SUR RAD, PW ,

2855 7 580. /4127 WV 19 SUR RAD. CW 2859 1 $04. /6-128 WV TO SIR BAD. CW 3864  ? 1376. /5129 WV TO SUR SAD. CW 8266  ? $23. /6130 WV TO SUR RAD. CW 2 1 72 9 135. /4-131 WV TO SIR RAD. CW

! 2 1 96 1 90. /6132 WV TO SUR SAD. CW l 2 8 TO T 124. /6133 WV TO SUR RAD, CW [

j 2 8 92 ? 304. /6134 WV TO SUR RAD. CW 2 2 82 7 90. /4139 WV TO SUR RAD, CW 2 2 94. 9 4tc. /6-136 WV TJ SIR RAD, CW 2198 7 T24. /6131 WV 10 SUR RAD. CW  !

2198 7 361 /6134 WV TO SUR RAD. CW 8 1 100 9 560. /6+139 WV TO SIR RAD. CW Project No.: 09050-059 Calc No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

Attachment:

C Page No.: C-4 i i

h r

1

- --. .. . . - _ . - - . .. s , .- - _ =. -- ._- .

I I

2 1 19 1 '144. /6140 WV TO SUR LAD. CW 3 0 0 0 0 /1A.1 NC vertical Plate. Turculent 0.19 0.33 / Ts.1 3 0 1 3 0 / 7A.2 NC Norisontal faste, Turbulent 0.32 0.33 / 78 2 1 0 0 0 0 / TA-3 Cnd f rom Air 112' Cnd Length) 0.0013 / 73-3 1 0 0 0

  • 0 / TA.4 Condensation
  • j 1120. / 78 4 4 0 0 0 0 /1A-5 Surface to surf ace kad 1.0 / 98-5 Conservettve1F Assynes All hatssavaties Ar, One 4 23 0 0 0 / 1&-6 WV To sur had (Sur km. $4*=n so 8F 238 0.3 / 15-6 KV haiselvity e Absorttavsty 4 to 0 0 0 / Th-? WV To Sur had (Sur Dn. Given la 19 24) ,

0.2 / 78-9 WV emessivity & Absorbtivity '

4 26 0 0 0 / TA-8 WV To sur had (Sur me. Given to SF 25l 0.2 / 73-0 rv Balseavity & Absorbtivity 3 0 1 10 0 / 1A 9 NC morisental Plate. Turbulent 0.22 0.33 / 75-9 1 0 0 0 0 / TA 10 cnd to Air 16' Cnd Length)

D.0027 / 7D 10 t 1 0 0 0 0 / TA.11 sol. air htc 3.0 / Ts.11 1 0. 0.064 /0 3 kno Att 1 9. 0.1? /8 2 cv 1 C. 0.0184 /4-3 k 1 0, 0.24 /8-4 Cp 1 0. 148. /8 5 REO CONCRETE 1 S. 0.156 /8-6 CV 1 0. 0.92 /8-9 k 1 9. 0.156 /0 0 Cp 1 9. 35.56 /0 9 RMO 12* FIRE MALL 1 0. 0.20 /8-10 cv 1 0. 0.0662 /9-11 k 1 9. 0.20 /8 12 Cp 1 0. 60.64 /8-13 kho 8' FIRE uhLL 1 6. 0.30 /8 14 Cv 1 8. 0.0839 /8 15 k t

1 9. 0.20 /B-16 Cp 1 8. 400. /8 17 kho FTBEL 1 9. 0.12 /8-15 cv 1 0. 21 /8 19 k 1 S. 0.12 /0 20 Cp 3 32, 1.04 200. 1.667 200. 1.4?? /0 21 FC HTF C05FF 2 8. 108.5 1.8-5 150. /0 22 kahaust Stack Air 1 C. 0.95 /4 33 (1+3PS114N_5) OVER 2 (FIRE NALL)

10. 0.95 /8 24 (1* kP81LON,8 ) DVER 2 (CDNC MALL) 4
10. 0.95 /8 25 (1.sps!LoN,sl Ovan 2 (Flas DAMP 3  !

2 1.e-6 108. 1.5 5 200. /8 26 Cable spreadang koom Air 2 1.s.6 162. 1.5-5 960. /s.27 DG hahaust silencer ]

l 6N4851 2PONVe.1. 170MCo-1, IPOPCVe.1. IP00LT 1. IPOTMFe.1, IP00tk 1.

170CFMe.a. IPOP!7e.1,19093 0.190V3 0, 2 Aces.1.310, NETPMKet0000 2P07. 1, MF0p.2. IPDP8m-1. 270Me.1. MRSSIT*2000 / 9 NhfSLIST j l

100.0000 100.0000 108.0000 100.0000 108,5000 98.00000 95.00000 104.0000 108.0000 108.0000 '

108.0000 104.0000 129.0000 10s.0000 129.0000 100.0000 108.0000 108.0000 107.0004 108.8393 109.0000 109,0000 108.0000 108.0000 100.0000 100.0000 107.0004 105.0393 164.9481 99.86634 106.6357 91.40650 105.1270 108.1142 100.0000 108.0000 100.0000 108.0000 109.0000 109.0000 -

109.0000 109.0000 109.0000 109.0000 108.0000 108.0000 100.0000 108.0000 100.0000 106.0000  !

109.0000 109.0000 109.0000 109.0000 101.1051 105.6725 106.5??5 105.4225 107.0004 105.8393 10s.1413 l 97.25sto 108.0000 10s.0000 10s.0000 108.0000 10s.0000 10s.0000 10s.0000 100.0000  ;

100.0000 108.0000 108.0000 108.0000 100.000'0 108.0000 100.0000 100.0000 100.0000 108.0000 1 106.0000 108.0000 108.0000 100.0000 108.0000 100.0000 108.0000 100.0000 108.0000 108.0000 108.0000 119.?t68 126.9062 f 120.9540 127.9303 120.9540 127.9303 104.5168 100.2152 119.9868 126.9062 A D6.9617 106.9230 106 8043 106.6456 106.6069 106.9682 106.7295 106.4908 106.6521 ]

106.6134 106.5147 106.5360 106.4913 106.4566 106 4199 106.3812 104.3425 106.3030 106.2650 l

106.2363 106.1976 106.1409 106.1102 106.0715 106 0320 105.9941 105.9554 105.9161 105.8780 109.0000 109.0000 109.0000 109.0000 109.0000 108.0000 100.0000 100.0000 104.0000 108.0000 100.0000 108.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 108.0000 100.0000 100.0000 100.0000 100.0000 108.0000 100.0000 100.0000 108.0000 106.9611 106.9230 106.0843 106,8456 106.9069 106.7682 106.7295 106.6908 106.4134 106.6521 106.574? 106.5360 106.4973 106.4566 106.4199 106.3012 106.3425 104.3038 106.2650 104.2363 104.1996 104.1489 106.1102 106.0715 106.0320 105.9941 10s.9554 105.9147 105.8100 104.0015 1>4.6664 104.5252 104.3640 104.2428 104.1817 103.9605 103.8193 103.6781 103.5369 103.3958 103.2546 103.1134 103.9722 102.5311 162.6899 102.5481 102.4075 102.2664 102.1252 101.9840 101.8430 101.7016 101.5605 101.4193 101.2101 101.1369 100,9958 100.8546 100.7134 100.8722 100.4110 100.2899 100.1407 100.0075 105.8666 105.0975 104.32s4 103.5593 102.7902 102.0211 101.2520 100.4839 99.71305 90.94476 98.17567 108.1316 108.1355 108.1394 108.1433 100.1471 100.1510 108.1549 100.1581 100,1426 200.1665 108.1104 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 100.0000  !

10s.0000 108.0000 10s.0000 108.0000 100.0000 Sce.6000 10s.0000 100.0000 10s.0000 10s.0000  ;

108.0000 109.0000 109 0000 109.0000 109.0000 109.0640 109.0000 109.0000 109.0000 105.0000 l i

i l Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 I

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109.0000 109.0000 109.0000 100.0000 109.0000 109.0000 100,0000 108.0000 100.0000 10s.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 [

108.0000 100.0000 10s,0000 100.0000 108.0000 100.0000 100.0000 100.0000 108.0000 108,0000 104.0000 100.0000 108.0000 '

100.0000 100.0000 108.0000 108.0000 100.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 107.0?09 107,0368 107.0027 304.9606 106.9345 106.9004 106.8663 106.0322 106.?981 106.1640 806.7299 106.6958 106.4614 106.6275 106.5934 106.5593 106.5252 106.4911 106.4570 106.4229 104.3880 106.3547 106.1206 106.1665 106.2523 106.2152 106.1841 106.1500 106.1159 106.0818 106.0471 1D4.0116 i 105.0771 105.9795 105.9454 105.9113 105.6430 105.8089 105.7148 105.7407 105.7066 106.5500 106.5225 106.4400 106.4950 106.4675 104.4125 106.3850 104.3575 106.2300 106.3025 106.2950 106.2475 106.8650 106.1200 106.1535 106.1375 106.1100 165.0025 106.0550 106.0275 104.0000 105.9725 l

105.89De 105.0425 105.9450 105.9175 105.8350 105.8075 105.?t00 105.?l25 105.7250 105.4975 105.6700 105.6150 105.5075 105.6425 105.5600 105.5325 105.5050 105.4??5 105.4500 106.961T 106.9210 106.8456 106.8069 106.6643 106.?642 106.7295 106.6904 106.6521 106.6134 106.5741 104.5360 106.4186 106.4199 306.4973 .

106.3012 104.3425 106.3030 106.2650 106.2363 106.1976 106.1489 106.0715 166.0222 106.1103 }

105.9941 105.9554 105.9167 105.8780 105.0344 104.3275 103.6206 102.2069 101.5000 102.9138 100.?931 100.s462  ?? 17935 98.67247 97.96559 100.0000 108.0000 100.0000 108.0000 100.0000 10s.0000 108.0000 100.0000 108.0000 1G8.0000 %08.0000 100.0000 108.0000 100.0000 100.0000 108.0000 100.0000 108.0000 108.0000 100.0000 100.0000 104.0000 100.0000 100.0000 108.0000 166.5030 108.0000 108.0000 100.0000 108.0000 108.0000 10s.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 104.0000 108.0000 100.0000 108.0000 108.0000 100 0000 108.0000 108.0000 106.0000 100.0000 108.0000 108.0000 104.0000 10a.0000 108.0000 100.0000 108.0000 109.0000 100.0000 100.0000 108.0000 108.0000 100.0000 108.0000 108.0000 100.0000 108.0000 100.0000 108.0000 100.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 104.0000 106.0000 108.0000 100.0000 104.0000 108.0000 108.0000 108.0000 100.0090 100.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 100.0001 120.0505 120 3142 120.5710 121.3489 130.6415 111.1053 123.6326 121.0963 122.1599 322.4236 122.4873 122.9510 123.2147 i

124.005? 123.4783 123.?420 124.2694 124.5331 124.7968 125.0604 125.3241 125.54?8 125.0515 126.6425 126.1152 126.3788 121.2447 121.5353 121.5260 122.1167 122.4074 122.6981 122.9607 121.8604 123.2794 111.5701 124.1515 124.4421 124.7328 125.0235 125.3142 125.6049 125.0955 124.1676 126.1662 126.4769 127.0583 127.3489 127.6394 121.2447 121.5353 131.8260 122.1167 122.9487 122.4074 122.6981 133.2794 123.5701 123.8608 124.1515 124.4421 124.7324 125.0235 i 125.0955 125.3142 125.6049 126.1862 126.4749 126.?6?6 127.0503 127.3489 127.6396 104.3375 103.7998 104.1581 103.9791 103.6206 103.4414 103.2621 103.0829 102.9037 102.7244 102.5452 102.0075 102.3660 102.166?

101.82s3 101.4490 101.4698 101.3906 101.1113 100.9121 100.7529 100.5716 120.0505 120.3142 100.1544 120.5778 120.8415 121.1053 121.3609 121.6324 121.8963 123.1599 122.6073 122.9530 122.4236 123.2147 123.4783 123.7420 124.0057 124.2694 124.5331 124.7960 125.3241 125.50?S 125.0604 125.0515 124.1152 326.3788 126.6425 / 10 us11 touperature vector 1 19 20 0 /11 1 1 21 20 0 /11 2 1 29 30 7 /11 3 1 31 32 6 /11 4 1 33 34 5 /11 5 1 39 30 4 /11 4 8 49 50 11 /11.?

3 55 56 12 /11-8 3 59 60 8 /11 9 3 61 62 6 /11 10 10 57 58 12 /11 11 8 il 93 15 /11 12 3 94 95 13 /11 13 1 94 91 13 /11 34 3 98 99 ? /11 15 1 100 101 35 /11 16 Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 i

Rev.No.: 0

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s Trys 01.1.as!..s.O prosect No.. Ososo.Oss

) meer-tr.out Os/is/st 0s:00:31 Pa,e 00 Listing of imput Data for Case 1 from File emer tr. tap 1, titlei trai$ wood Centrol Am. sad ABER Treaetent af ter e Loos of the VC system ,

3. Problem Countere and Opttener Number Of Nedee WV ,,... .... 101 Number of Pathe. NPs . . ...
Nummer of Nest treaefer Punettone (Irly). sets . . 140

. 11 Nummer of 81eple Punettone (SF). NF . , it Blueber of Nos.condeaettle Gee IN33) Species, NG: O Presence of Nater Option teeno,1.yees , Nos . .

Choking Flow Option (Geoff,1 on) . Echake 0

. ., . O tecord Type 6e Input option (Gene.1=yee). 1Y194 0 q Calculetten Bad 71am thr), EName , , . . 8.000000 Ilummer of Stade Ger&es for initial Simedy State. 31888 la Prosauro Conversion Factor. PCPs . . 144.0000 Number of Internal Meet Gelas, WA . . 0 thumber of Nees Sloudsome. age . . . . . . 0 Unite for all pree'Aires ubles!8 otherwise esteds Se epOC1fied by PCF pef / unite

3. st.c. No e e r%,e .re No serf.cs oss a, 1.e pr.e.nt se the .eGal
4. ii-. f t.r . Pvt.toute int).

4 0.000000 0.500000 1.00000 3.00080 3.00000 4.00000 5.00000 8.00000

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i Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 Rev. No.: 0

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I IITTY6 03.7.481.=6.0 Fro}ect No.: 09050 059 I meer-tr.out 06/26/91 00:00:31 Foge 002

5. Zeput date for NV *101 Voluem podes d!VT . onde type),

Nede As IVr 1 A2 V 31966.00 TF 108.0000 08 3.712690 fv1.F(Il 0 IV2.F(T) 0 Iv3.F(T) 1 seat 12 AIR NODS (1100 TO ACCOUNT FOR NON NEIA)

Nees 2s TVT 1 AI V 13119.00 TF 100.0000 3 3.323350 IvterfIl 0 tv2. FIT) 0 TV3eF(T) 1 j 888R 11 AIR 1810D.10 ACCDiart FOR Nmf NBLS) l Nose St IVT 1 AI V 2266.000 TF 100.0000 GB 0.6175800 IV1.F (I) 0 IV2* FIT) 0 TV3eF(T) 1 l DAT AN DIV 12 AIR Node 4: Ivf 1 AI V 237.6000 TF 10s.0000 cm 0.0000000 1931 ' BAT RN DIV 12 Att TV1.F (I) 0 IV2

  • F (T) 0 IV3.F(T) 1 hade Si TVT 2 St TFs 1.000000 2V1 P'8) 22 IV2 Ftfl 1 EsuRUFT STACIt AIR Nede 6s IVT 2 BI TFS 98.00000 IV1 F(I) 0 TV2 F(T) 1 NVAC AIR SUF AIR

! Nees Ti IVT 2 BI TFB 95.00000 IV1 F(I) 0 2V2 F(T) 1 AISIENT A!B Nede si TVT 2 31 TFS 104.0000 !Y1 Fill 0 IV3 F(T) 1 CR AC Akan AIR eae 6: IVT *1 tou11) NON B8F SMGR RII AIR IInde 10s IVT 1 A1 V 2167.000 TF 108.0000 3 0.6485900 IV1.F(Il 0 IV2*F(Tl 0 !YlertT) 1 i RAT RN DIV 11 AIR (1100. TO ACCDOIFT FOR IItti NE1A)

Nees 11 IvT 1 A' V 408.0000 TF 100.0000 GB 0.0000000 fv1.F(I) e TV2 F(T) 0 IV3.F(T) 1 T13I111

  • BAT RN DIV 11 AIR Node 12 IVT 2 St TPB 104.0000 !Y1 F(I) 0 !Y2 F(T) 1 79 MR Node 13e 3ff 2 51 TPS 163.0000 IVS F(I) 0 IV2 F(T) 1 AISIBFIDSO1 AIR TWIF Woes 14: IFF 2 B1 TPB 1.000000 IV1 F(I) 26 TV2 F(T) 1 CARIA SFRSAD RN MR Nade 15: TVT 2 St TPB 1.000000 IV1 FtI) 27 IV2 F(T) 1 DG $11alCER AIR Node 16e IVT .1 tou11) IIULL IIODE IIDT USED Nede 17 IVT 1 (pull) NULL IIODS 81177 U$ED Nede 14: IVT .1 tou11) IIDLL 3I305 NOT J5ED

! Node 19 IVT 6 Irf GB 0.0000000 fv1 F(1) e TV2 FID) 0 TV3 F(T) $ Coor Nell totu 16 8 l lIces 20s IVT T In1 Nade 21s TVT 4 IFF 08 0.0000000 TV1 F(I) 0 TV2 FID) 0 IV3 fit) 9 FIRS IILLL BETN 16 9 i

1 Mode 22: IVT T Nu i Mode 23 IVT E Irr OB 0.0000000 TV3 F(I) 0 IV2 FtD) 0 IV3 F(T) $ CDIIC MALL DETN 1 6 10 l l

pod. n. rvf T NR l

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Rev.No.: 0

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a E!1TY6 03.T.401. 6.0 Fre}ect peo.s 09050-059 meer.tr.eut 06/25/97 04:00:31 Pepe 003 t

Nede 25: IVf 6 WT OB 0.0000000 m F(I) 0 !Y2 FIDI O IV3 F(T) 9 FIRS NALL DETW 3 6 3 Mode 26e !YT T WR Nede 27e TVT 4 trf 08 0.0000000 IV1 F(X) 0 XY2 F(D) 0 TV3 F(T) 5 Cuer? MALL htTW 1 6 e a

Wade 20i IVT T M e*

Nees 291 IVT & WT 08 0.0000000 IV1 FtEl 0 TV2 FID) 0 IV3 F(T) S CDelC WALL SRfw 1 6 1 peode 30s IVT T us Nees 31: IVT 5 WT 08 0.0000000 TV3 FtI) 0 TV2 F(D) 0 IV3 F(T) 9 FIR 8 NALL 881W 16 6 Isode 22: IVT T un i teode 23: TVT 4 trf OB 0.0000000 !Y1 F(El 0 TV2 F(D) 0 3V3 FIT) 5 CDelC MALL Sffw 16 5

) Mode 34i IVT T um Nees als TVT 4 WT 08 0.0000000 m F(K) 0 TV2 F(D) 0 IV3 F(T) 13 $* FIks WAIL eBTW 1 6 3 stade 36: TVT T WB Nede 31: IVT $ trr 0B 0.0000000 271 F(XI e !Y2 FID) 0 IV3 F(T) $ CONC MALL DSTW 1 & 4 i Noea 36 !Yr T WR Nede 39 !Yr 6 ert GB 0.0000000 IV1 F(I) 0 TV2 F(D) 0 TV3 F(T) 9 FIkE WALL DETW 1 6 D 4

Mode 40s IVT T WE Nees 41s 3YT 4 WT OB 0.0000000 Iv1 FtEl 0 2V2 F(D) 0 IV3 F(T1 5 CONC MALL DsTW 4 & 3 Made 42s IVT T HB Node 43s IVT 4 WT 08 0.0000000 IV1 F(I) 0 TV2 F(D) 0 IV3 F(T) $ CONC NALL BETW 3 6 9 Isode 44: TVT T un Isoes 45: TVT 5 WT 08 0.0000000 2V1 F(I) 0 TV2 FtDI O IV3 P',T) S CONC MALL DETW 3 6 3 teede 46: IVT T NE Isode eis IVT 4 WT 08 0.0000000 TV3 F(Il 0 TV2 FID) 0 IV3 FIT) 13 0* MALL BETW 2 & to Mode 40: TVT T Wu Node oli TVT 4 WT 05 0.0000000 !Y1 F(K) 0 !Y2 F(D) 0 IV3 FtT) $ CONC esALL saTW 2 611 Isode 50: IVT T Wu Made $1s IVT 5 trf 0F 0.0000000 IV1 F(El 0 TV2 F(D) 0 IV3 F(Tl 9 Flas NALL DETW 3 6 9 Nede $2a IVT T WM l

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Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

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[ EIT776 03.T.401.-6.5 Project No.s 09050 059 eser-tr.eut 06/25/97 00:00:31 Fage 004 Mede $3s IVT 6 WT OB 0.0000000 TV3 F(I) 0 !Y3 F(D) 0 fv3 F(T) 5 CONC MALL D m to e i Mode 54s 1V7 T WW Nede 65s YTT 6 FF 08 0.0000000 TV1 F(Il 0 IV2 F(Id 0 IV3 F(T) 5 CONC NALL Sm 2 612 Mode $4s IVT T WM . .

Node 574 !?T 6 FT 08 0.0000000 Iv1 F(2) 0 IV2 F(D) 0 fv3 F(T) $ CONC MALL D m 10 6 12 3 Nede 60: IVT T WR f

Nees 59s IVT 4 WT G8 0.0000000 IWS F(E! O TV2 F(DI O fv3 FIT) 5 CONC uhLL tsTw 2 6 e i Mode 60: . !?? ? WE Nede $1a IVT 6 WT GB 0.0000000 1V1 F(El 0 172 F(DI O TV3 F(T) 9 FIRE NALL S m 3 6 6 Mode 62: IVT T WM Nees $3 IVT 6 WT GB 0.0000000 IV1 F(El 0 TV3 F(D) 0 TV3 F(T) 5 CONC SLAB Sm 34 41 I

Nede 64: TVT T WE l Node 65: !YT 6 WT GB 0.0000000 TV1 F(Il 0 IV2 F(DI O IV3 F(T) $ CONC STAB Sm 14 6 3 ,

1 Wees 66: tVT T un Nees 67: IVT 6 NT 05 0.0000000 IV1 F(E) 0 IV2 FID) e IV3 F(T) $ CmuC SLhs Drfw 14 6 3 l

Nede 68: IVT T uu i

Nees 69: 3YT 4 WT GB 0.0000000 IV1 F(I) 0 IV2 F(D) 0 IV3 F(T) S CONC SIAS Sm to & 30 1 Nede 70s !YT T WW Nede 71: Ivf 6 WT G5 0.0000000 171 F(x) 0 172 F(Dp 9 IV3 F(T) 5 CONC STAB Defu 3 6 3 i Nede 13: TVT T NN Woes 73: ITT 6 rr 08 0.0000000 IV1 F(K) 0 IV3 F(D) 0 173 F(T) S CONC SLhD Drru 3 6 e l i

Noes 14: !VT T WW None 75: IVT 6 WT GS 0.0000000 TV3 F(E) 0 TV2 F(D) 0 fv3 F(T) 5 CONC SLAS DBtw e 61 Neee 16: TVT T wa Nude 71: IYT 5 WT 00 0.0000000 IV1 F(X) 0 IV2 FID) e IV3 F(T) $ CONC BLna asTW to 6 2 Nede 18: IVT 7 Nu pode 79r IVT 6 MT 08 0.0000000 TV3 F(I) 0 TV2 FID) e IV3 F(T) S CONC SIAR DWTW 10 611 Wade to, m,N l

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i Project No.: 09050-059 Calc.No.: BRW-97-0624 M, BYR97-277 Rev.No.: 0 3

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IITTT6 03,7.481.-6.0 . Project No., 09050-059 meer.tr.out 06/36/97 ce200:31 Dave 005 Nees 81: !VT 5 WT 08 F.0000000 !V1 F(I) 0 IV2 F(D) 0 3Y3 F(T) S Caerc SLAB 331w 116 2 Nees 42s TVT ? un Nede 83 IVT *1 tau 11) NULL seaps pKrF DEED Nedo 04: IVT *1 (mull) NULL N0pE NOT D80p

  • Nede 85: !VT *1 (null) NULL Noos Nyt Dsso j

Nees 06: TVT *1 (au11) NULL 31003 NDT DSED 80ede 87s IVT -1 (null) NUL*, Naps pyr Osso Neen 88s IVT *1 taull) aiULL Naps Nyt Dago tiede 09: TVT -1 (mull) NULL sKge Myr Usap Nede 90s TVT -1 (mull) IsuLL Noos Nyr Damp Isade 91: IVT 1 (mull) NULL astmE NOT DBED Node 92: IVT 6 WT es 0.0000000 TV1 F(El 0 IV2 F(D) 0 IV3 F(T) S CDuc CEIL Satw 3 & 13 Nede 93: IVT T un Nede Der TYr 6 wr as 0.0f J0000 TV1 F(El 0 IV2 F(p) e TV3 F(T) $ CONC CEIL Bent 3 6 13 Nees 95: TVT T um Wade 96: IVT 4 WT on 0.0061000 JY1 F(I) 0 fv3 F(D) O IV3 P(Tl S CONC CBIL DETW 1 6 13 Nede 91a 377 ? WM Node 96: TVT 6 WT OB 0.0000000 IV1 F(E) 0 IV2 F(D) 0 TV3 P(b S CONC CEIL trru aa1 Nede 99: TVT T Wu Moon 100 KYT 6 WT GB 0.0000000 IV1 F(I) 0 IV2 F(D) 0 sV3 F(T) S CONC CEIL DETW 3 & 15 Mose 101: TVT T Wu 1

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Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0 Attrehment: C l Page No.: C-11 l

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KITTY 6 03.7.481..d.0 Project No.: 09050 069 i einer.s t .aut 06/25/97 00:00:31 page 006 i 6. Input data for NF e 140 Patha (IPT e path type. IT = Lail node, IN e hand medal Path 1: IFT 2 CR !? 1 23 19 IPleirrF 1 A 144.0000 Pp 1.000000 CW Path as IFT 8 WP TT 19 IN 20 1P1.E 30 A 144.0000 Irf 2.500000 '

I Path 3: IPT 2 CR IT 20 15 0 IPleuTF 1 A 144.0000 Pp 1.000000' Path as IFT 2 CR IT 1 15 21 IFleBTF 1 A 405.0000 Pp 1.000000 CW Path 5: IPT $ WP 17 21 IN 22 IFlem 6 A 405.0000 Irr 0.5000000 half thek used Ier trana Path 6: IFT .2 (null) NULL (Adiabat1C Amaumptaan)

Path 1: IFT 2 CR IT 1 2E 23 IFleirrF 1 A 134.0000 Pp 1.000000 CW Path 36 IPT 4 WP IT 23 25 24 IP1 as) 12 A 134.0000 DT 1.000000 Path De 3FT 2 CR IT 24 tu 10 IFleffrF 1 A 134.0000 Pp 1.000000

). Path 10: 3FT 2 CR IT 1 IR 25 IFleNTP 1 A 510.0000 Pp 1.000000 FW J j

Path 11: IFT 5 WP IT 25 2N 26 IF1 2 12 A 610.0000 DT 1.000000 Path 12: IFT 2 O IT 26 IM 2 IPlair!T 1 A 610.0000 Pp 1.000000 l l Path 13: IPT 2 m IT 1 IE 27 173=srF 1 A 1135.000 Pp 1.000000 CW j Path See IFT 0 WP IT 27 IE 24 2Plem 30 & 1135.00J DT 2.800000 Path 156 IPT 2 CR IT 28 !b 8 2PleIrrF 1 A 1135.000 Pp 1.000000 ,

Path 16s IFT 2 m IT 1 35 29 JFlelfrF 1 A 390.0000 d '

Pp 1.000000 CW 4

Path 17: IFT S WP IT 29 13 30 IFloss) 26 A 390.0000 DT 3.000000

  • Path 18e IFT 2 3 IT 30 IE 7 IFleNTF 1 A 390.0000 Pp 1.000000 Path 19s IFT 2 G IT 1 IN 33 IFleNrF 1 A 195.0000 Pp 1.000000 FW

} Path 20s 3PT 8 WP 17 31 IN 32 2 F1 85) 12 A 195.0000 DT 1.000000 Path 21s IFT 2 m !? 32 35 6 2PlearrF 1 A 195.0000 Pp 1.000000 Path 22: 3FT 2 3 IT 1 15 33 2PleirrF 1 A 360.0000 Pp 1.000000 CW l Path 23: IFT 8 WP IT 33 SM 34 IFleIE) 12 & 360.0000 DT 1.000000 i

Path 24: IFT 2 m IT 34 EM S f r3.IrTF 1 A 360.0000 Pp 1.000000 Pat.h 25: IPT 2 CR IT 1 15 35 IPlellTP 1 A 241.0000 Pp 1.000000 FW 4

Path 26s 3FT S WP IT 35 15 36 1P1 05) 8 A 241.0000 DF 0.6350000

, Path 27: 3PT 2 CR 37 36 IE 3 IFleNTP 1 & 241.0000 Pp 1.000000 l

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Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97 277 Rev.No.: 0

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EITf76 03.7.481. 6,0' Project No. 09050 059 miser.tr.out 06/25/97 00:00:31 Page 00?

Path 36i IPT 3 CR IT 1 IN 37 IPleNTF 1 A 83.00000 Pp 1.000000 CW Path 39: IPT S WP !? 3? IR 38 171 MD 13 A 83.00000 Irr 1.000000 Path 30s IPT 3 CR IT 38 IE 4 2PleNTT 1 A 83.00000 Pp 1.000000 Path 31: 1FT 3 CR 17 1 15 39 2PleNTP 1 A 164.0000 Pp 1.000000, Pu Peth - 32s frT 8 wp IT 39 IN 40 IPleID 6 A 164.0000 Ir" 0.5000000 Path 33: IPT .3 (mull) NULL (Adlebatic Aeeusytion)

Path 34i 2P; 3 CR IT 4 34 41 IF1=Irrr . 1. A 83.00000 Pp 1.000000 Pu Path 35: IPT S WP IT 41 2M 43 2PleMD 6 A 83.00000 DT 0.5000000 Path 3an IPT .3 (sull) NULL (Adishetic Assumptice)

Path 17: IPT 3 CR !? 3 15 43 IFleWIT 6 A 355.0000 Pp 1.000000 CW Peth 38: IFT 8 NP IT 43 15 44 IP1=ND 6 & 355.0000 trF 0.5000000 path 39: 2PT .3 (mull) NULL (Adiabetic Assugtten)

Peth 40s IPT 3 CR IT 1 15 45 IFleNTP 1 A 144.0000 rp 1.000000 Cu 1

Path als IPT I WP TT 45 15 46 IPlete 13 A 144.0000 trF 1.000000 I Peth 43s 3PT 3 CR IT 46 IB 3 IFleNTP 1 A 144.0000 Pp 1.000000 Path 43: IPT 3 CR IT 3 15 4? IFleWTF 1 h 335.0000 Py 1.000000 FW

[ path 44s 177 8 WP !? 47 IE 48 1F1e85 6 % 335.0000 Irr 0.4350000 Path 45: IPT 3 CR IT es 15 10 IFleNTF

?. A 335.0000 Pp 1.000000 Path 46: IPT 3 CR IT 3 25 49 IPleNTF 1 & 301.0000 Pp 1.000000 CM Path 41 IPT s WP .27 49 ER 50 IFlese 13 A 301.0000 trf 1.000000 Path 40s IPT 3 O IT 50 IN 11 1F1.ETF 1 & 301.0000 Pp 1.000000 Path eps 3PT 3 CR IT 3 35 51 IFlearFF 1 & 364.0000 Pp 1.000080 Pu Path 50s IFT S hp 17 51 IN 53 IFlele 6 A 364.0000 DT 0.5000000 path 51: IPP .2 (anall NULL (Adishetic Aeeusyt&oel Path 53: IPT 3 CR IT 10 IN 53 IFleETF 1 A 249.0000 Pp 1.000000 CW Path 53s IFT 4 WP !? 53 IE 54 IFleIm 6 & 249.0000 Irr 0.500009,0 Path 54: IPT .3 (null) NULL (Adishetic Assumption)

Path 55: IFT 3 CR IT 3 IE 55 fra MTF 1 A 580.0000 Pp 1.000000 CN l

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Path 56s IPT 8 NP 17 55 IN $6 IPleND 43 A 588.0000 DT 3.500000 Path 51: IPT 2 CR IT 56 IN 12 2PleNTP 1 & 588.0000 PP 1.000000 Path 58: IPT 2 CR IT 10 15 57 2PleKTP 1 A 123.0000 Pp 1.000000 CW Peth 59: IPT 8 NP !? 51 15 58 IPleND 42 & 123.0000 DT 3.500000 3

Path 60s IPT 2 CR 37 58 15 12 171oNTP 1 A 123.0000 Pp 1.00060F

{ Peth Gli IPT 2 CR TT 2 15 59 IP).NTP 1 A SD4.0000 Pp 1.000000 CN Path 62: IPT 4 NP !? 59 !N 60 IPleND 30 A 504.0000 DT 2.500000 Path 63: IPT 2 CR 27 60 IN 8 IPterTP 1 A 504.0000 Pp 1.000000 Path 64: IPT 2 CR IT 3 IN 61 191*NTP 1 A 137.0000 Pp 1.000000 PN '

i Path 65a Ir? 8 WP IT 61 IE 63 IP1eND 11 A 131.0000 DT 4.000000  !

Path 66e IPT 2 CR TT 62 IB 6 3PleETF 1 & 137.0000 Pp 1.000000 l j Path 6?a IPT 2 CR IT 14 IE 63 2PleNTP P A 1376.000 Pp 1.000000 ]

CBILING SNTW CABLB BPR RM & MEER12 i s

Path 65t SF? 4 NP IT 63 15 64 1PleND 15 & 1316.000 DT 1.250000 Path $9e IPT 1 CR TT 68 IN 1 171=NTT 2 A 1376.000 Pp 1.000000 e Path 70s IPT 2 CR IT 14 25 65 IPleNTP 9 A 513.0000 Pp 1.000000 CSILING DETW CSE & MBER11 1

l Path f1e IPT 8 WP 17 65 2B 66 IPleND 15 A 523.0000 DT 1.250000 )

}

Path 73r IPT 2 CR IT 66 15 2 IPi=NTP 2 & $23.0000 Pp 1.000000 Path ?): IPT 2 Cd IT 14 ZE 67 IPleNTP 9 A 250.0000 Pp 1.000000 CEILING DETW CBR & HAT DIV 12 i

1 Pett 74s IPT S NP TT 57 15 68 IPneND 15 & 250.0000 DT 1.250000 Pe64 TS: IPT 2 CR 17 68 2N 3 2PleNTP P & 250.0000 Pp 1.000000 Path 16s IPT 2 CR 27 to 3R 69 IPl*KTP S A 239.0000 Pp 1.000000 Cif! LING DKfW CSE & BAT DTV 11 Path ??: IPT S NP 17 69 IN TO 2PleND 15 A 239.0000 DT 1.250000 Path its IPT 2 CR IT TO IN 10 !PleNTT 9 A 239.0000 Pp 1.000000 Path 79: IPT 2 CR I"* 3 2M 71 IPleNTP 9 & 135.0000 Pp 1.000000 SLAS DK!W SAT DIV 12 & es a 12 Path 80s IPT 8 WP TT 71 IN T2 IPleND 8 A 135.0000 DT 0.6670000 Path 81s IPT 2 C3 IT 72 IN 1 2PleNTF 9 & 125.0000 PP 1.60n000 Path $2e iPT 2 CR IT 3 IN T3 1PleNTP 9 A 80.00000 Pp 1.000000 SEAR BETW BAT DTV 12 & TUN 12 Path 83: IPT 8 NP TT 73 15 94 IPleND 8 A 88.00000 DT 0.6670000 l

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I EITTT6 03.7.481. 6.0 Project No.s 09050-059 meer tr.out 06/25/91 00:00:31 Page 009 Path 44: IPT 2 CR IT 74 15 4 IPlerTF 9 A 08.00000 Pp 1.000000 t

Path als IPT 2 CR IT 4 IE 75 IPS NTP 9 A 90.00000 Pp 1.000000 S!AS DETW 71al 12 4 NEEE 12 Path 46t 2PT 4 NP IT TS IN 76 IP3 2 8 A 90.00000 pr 0.6670000 Path STs IPT 2 CR IT 76 15 1 IPleNTF 9 A 90.00000 Py 1.000000 Path tes IPT 2 C3 !? 10 13 77 2PleNTP D A 114.0000 rp 1.000000 $1AB DE11r SAT DIV 11 & MBER 11 Path 89s IPT S NP !? 77 IN T4 IPleND 0 & 124J 000 D1 0.66?0000 Path 90s IFT 2 CR IT 98 IE 2 TPleHTF 9 A 124.0000 Pp 1.000000 Path 91s IPT 2 CR IT 10 2N 99 2PleRTF 9 A 30.00000 Pp 1.000000 SLAB BETW RAT DIV 11 & TUN St Path 93: IPT 0 WP 17 79 IB 80 IPleND 0 A 88.00000 DT 0.6670000 Path 93: 2PT 2 O IT 80 15 11 IPleNTP 9 A 08.00000 Pp 1.000000 Path 94: IPT 2 CR IT 11 ZE 81 IPi=ETF 9 A 90.00000 Pp 1.000000 SLAS BaTu TUM 11 & MBER 11 Path 99: IPT 0 WP 17 81 1R 82 2PleND 8 A 90.00000 DT 0.6410000 path 96s IPT 2 CB IT 82 IN 2 2PleNTP 9 A 90.00000 Pp 1.000000 Path 91: IPT 2 CR tt 2 15 92 IPl=ETF A A 106.0000 Pp 1.000000 CBILING Path 90s IFT S WP IT 92 IN 93 171 8E) 27 A 306.0000 DT 2.250000 SWfW MBR 11 & DG 811JusCER Path 99s IPT 2 CR IT 93 1R 15 171oNTF 5 A 306.0000 Pp 1.000000 BAD PATN Path 100s IPT 2 CR IT 2 15 94 IP1 arf 7 2 & 470.0000 Pp 1.000000 CE1 LING Path 101s IPT 8 NP IT 94 2N 95 IP1 sE) 24 A 470.0000 UT 2.000000 BETW MBE 11 4 SOL-AIR Path 193s IPT 2 CR IT 95 IN 13 2 PleirrF 11 A 470.0000 Pp 1.000000 Path 103: IFT 2 CR IT 1 IN 96 IPtsNTP 2 4 724.0000 PP 1.000000 CEILING Path 104: IPT S WP IT 96 IN 91 IPleND 24 A 724.0000 DT 2.000000 SETW MER 12 & SOL-AIR Path 105: IFT 2 CR IT 97 IN 13 Ir1 Ir!T 11 A 724.0000 Pp 1.000000 path 106: IPT 2 CR IT 1 15 98 Ipi Ir!T 1 & 367.0000 Pp 1.000000 CEIL 1HG Path 1974 IPT $ NP IT 98 35 99 Ita=MD 24 A 341.0000 DF 2.000000 DETW MBE 12 & AIR IIFTAKE Path 108: IPT 2 CR IT 99 IN  ? IPleirTF 2 A 341.0000 Pp 1.000000 path 109 IPT 2 CR IT 1 II 100 2PleETF 2 & 560.0000 Pp 1.000000 CEILING Path 110s IPT 8 WP 17 100 15 101 !PleIIP 2? ? 460.0000 DT 2.250000 DETW ISS 12 & DG 811meCER Path 111 IPT 2 at IT 101 15 15 IPleir!T 5 A 560.0000 Pp 1.000000 RAD PAtil i

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Path 112: IPT 2 CR IT 1 IN 21 2P1 MTP G A 405.0000 Pp 1.000000 WV 10 SW RAD. FW Path 113: IPT 2 S IT 1 IN 23 IPleNTP 7 & 134.0000 Pp 1.000000 W TO SUR RAD. CW Peta 114: IPT 3 S !? 1 IM 35 1PlearrP 6 & 610.0000 Pp 1.000000 WV 10 SUR BAD. PW 5 A Path tile IPT 2 CR IT 2 It if IPleirrF 6 & 610.0000 Pp 1.000000 WV TO SUR RAD, PW '

Path 116 IPT 2 CR IT 1 IN 37 iP1 ETF 7 & 1135.000 Pp 1,000000 WV TO SUR RAD, CW Peth 117: IPT 2 CR IT 1 15 29 IttaMTP 7 & 390.0000 Pp 1.000000 WV to SUR RAD, CW Path lies IPT 2 CR IT 1 is 31 Ita=1rrP G A 195.0000 Pp 1.000000 WV TO SUR RAD. FW Path 119s IPT 3 CR IT 1 1R 33 171.E77 7 & 360.0000 Pp 1.000000 WV to SUR RAD, CW Path 120s IPT 3 CR IT 1 3R r,5 IPleNTF 6 A 341.0000 Pp 1.000000 WV 10 S W RAD, PW i

Path 121 1PT 3 CR IT 1 IN 37 2P.eNTP 7 A 83.00000 Pp 1.000000 WV to SUR RAD. CW i Path 132s IPT 3 G IT 1 15 39 IPterrP 6 & 164.0000 PP 1.000000 WV to Stm RAD, PN Path 133s IPT 2 CR 17 1 IB el IP1 NTF 6 A 144.0000 Pp 1.000000 WV TO SW RAD, PW 1

Path 134s IPT 2 CR IT 3 15 47 IPl=IrrP G A 235.0000 Pp 1.000000 WV To s a RAD, PW i Peth 125: IPT 3 CR TT 2 15 49 IPlerFF 7 A 301.0000 Pp 1.000000 WV 10 stb RAD, CW I

8'eth 126s 377 3 CR if 3 IN 51 IPleWTF 6 A 264.0000 Pp 1.000000 WV to SUR RAD, PW Path 127: IPT 3 CR 17 2 IN 55 IPleNTF 7 A 540.0000 Py 1,000000 WV to Sim RAD, CW Path 134: IPT 2 CR IT 2 IR 59 IPaerTP 7 A 504.0000 Pp 1.000000 WV TO SUR RAD. CM Path 129s IPT 3 CR IT 1 IE 64 2PleNTF 7 & 1376.000 Pp 1.000000 WV 10 SUR RAD, CW Path 130 IPT 3 CR IT 3 IE 66 IP1 NTF 7 A 523.0000 Py 1.000000 WV TO SUR BAD, CW t

Path 131s IPT 2 CR IT 1 25 72 2PlellTF 7 A 135.0000 Pp 1.000000 WV TO SUR RAD, CW Path 132i IPT 3 CR IT 1 IN 76 IPleIFFF 7 A 90.00000 Pp 1.000000 WV 10 SUR RAD, CW j Path 133e IPT 3 CR 17 3 1M 74 IP3.NTP 7 A 134.0000 Pp 1.000000 WV TO SUR RAD, CW Peta 1341 IPT 3 CR !? 2 IM 93 IPleirFP 7 & 306.0000 Pp 1.000000 WV 10 SW RAD, CW Pett 135s IPT 2 CR IT 3 IE 43 2PlettrP 7 A 90.00000 Pp 1.000000 WV to SUR RAD, CW Path 136: IPT 2 CR IT 2 IN P4 2PlearFP 7 A 470.0000 Pp 1.000000 WV TO SUR SAD, CW Path 137: IPT 3 CR !? 8 IN 96 IPteirrF 7 A 734.0000 Pp 1.000000 WV TO SUR RAD, CW Path 136: IPT 3 CR IT 1 IN PS iPlelfrP 7 & 367.0000 PP 1.000000 WV TO SUR RAD, CW i

Path 139: IPT 2 CR I'? 1 IN 100 IPleNTP 1 A 560.0000 Pp 1.000000 WV to SUR RAD, CW Project No.: 09050-059 Calc. No.: BRWe97 0624-M, BYR97 277 Rev. No.: 0

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.RITTT6 03.1.441.-6.0 Project No.:' 09000 09e user tr.eut 06/25/97 Dei 00:33 Page ett I

- path 1404- IPT 3 S IT 1. IN 19 2PlolrTF T A 144.0000 Pp 1.000000 WV 19 $UR RAD. CW .

I se. say.c Arny cemenlei - svir . 0, . there en no input errore.- '

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l EITTY4 03.1.481,=6.0 Project No. 09050 059 emer tr.out 06/28/97 04:00 31 Page 012 l

T., Input data for NN e 11 Neat Transfer Functanna (KrF):

NTF l Irf 3 Natural Convectione TA-1 NC vertical Flate. Turbulent 13-1 J

18. 181, I function 0 IE2, Direction centrol 0 183, Mternate NTF 0 154, T function o
  • e tb. C1, Constant factor 0.1900000 C2. Exponent 0.3300000 '

NTF 2: INT 3 Natural Convection TA 2 NC Norisontal Plate, hrbulent 75-2 I 1a. 151, X function 0 IE2, Direction control 1 183, Alternate frF 3 154, 7-functaan 0

?). C1, Constant factor 0.2200000 C2, asponent 0.3300000

]

l l NTF 3 INT 1 Specified Taos (X) and/or Temperature (T) functions TA-3 Cnd f ran Air (12' Chd Length) TS-3 J f

I t

93. 1E1. E-function 0 152, Direction control 0 1E3 Alternate NTP O 154, T-functnen 0 7b. C1, Constant factor 1.30000003-03 I

NTF 4: INr 1 Specified Tane (X) and/or Temperature (T) functions TA-4 t'aad==== tion 73 4 73 2H1. E-function 0 IR2, Direction control 0 IE3, Mternate NTT 0 154. T-function 0 Tb. C1, Constant factor 1120.000 ETF Si trF 4 ceneral Radiation TA-B Surf ace to Surf ace Red 79-5 Comeervatively Assumes All Smissivitaes Are One 93 1E1, 3-function 0 152. Direction control e ' 153, Alternate NTF 0 354, T-function 0 I

j Th. C1. Constant factor 1,000000 See respective Fath data for cenetant factor FP.

f NTF 6: INT 4 General Radiation TA-6 W To Sur Rad (Sur Ba. Given in SF 23) 78 6 W Daissavity a Absorbtivity 14.181, X-function 23 ZE2, Direction control 0 IE3. Alternate NTF 0 154, T-function 0

13. C1, constant factor 0.2000000 NrF 1: INT 4 General hadiations TA-7 W To Sur Rad (Sur gn. Given in SF 24) TS-? W anisoivity e Absorttivity
74. IEl. 2 function 24 132, Direction contrti 0 IE3, Alternate WIT 0 254. T-function 0 tb. C1, Constant factor 0.2000000 l NTF 8: INT 4 General hattations 7A-8 W to Sur had (Sur Sm. Given in SF 25) 75 8 W haissivity & Absorbtivity I

i 1a. INI, 1-function 26 352, Direettun svatrol 0 1E3. Alternate NTF 0 254. T function 0 l 7b. C1. Constant factor 0.2000000 l i

NTF 9: INT 3 Natural Convection: TA 9 NC horisontal Plate, hrDulent 19 9 l

13. IRS. X function 0 IE2 Direction control 1 3E3. Alternate NTF 10 154. T function 0 TD. C1, constant factor 0.2300000 C2. Suponent 0.3300000 l

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l EITTY6 03.7,481. 6.0 Project no.: 09050-059 emer-tr.out 06/25/97 08:00:31 page 013 l NTF 10: 11rf 1 Epecified Time (I) and/or Tgrature (?) functions TA.10 Cnd to Air (4* Cad Imagth) 75-10 ta. 1E1, I.fumetton 0 152, Direction control O 153, Alternate IrrF 0 the, T function 0 18, C1, Constant f actor 3,70000015 03 l

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NTF 11: INT 1 Specified Time (I) and/or Teeperature (T) function TA 11 Sol-ear hte 15-11 i te, 2K1, I. function 0 152, Direction contro! 0 IN3, alternate NTF 0 the, T.fumetten 0 I i

TD. C1, Cemetant factor 3.000000 I

! Por any constant Factor or Damension C1 o 0, ese respective path data for value Pp.

!  ?.1 There are no 1 sternal meet esins (type 7.M is the undel.

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There are no sites si- styre t.2) ta the model. I I

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1 EITIT6 03.T.401. 6.0 Pro)oct No.: 90050-050 seer-tr.out 06/2S/07 08:00:31 Fogo 014

8. Input Sata for NF e 27 Staple Functaeas (SFis SF No. 1 T (eFI 0.0.3000 1 pts. Rho (1b/cf) 6.u t: < 15-02 SP No.' 2 T (er) 0.000000 **

1 pts. cv (3/ther) 0.170000 SP No. 2 7 (eF) 0.000000 1 pts. Ftr? 1,5400005-02 i'

SF No. 4 7 (erl 0.000000 r

a pts. Cp 18/1her) 0.240000 SF th. 5  ? (eF) 0.000000 1 pts. Rho (1b/ct) 146.000 SP No. 6 T (eF) 0.000000 1 pts. CV (S/theFI 0.156000 SF No. T T (eF) 0.000000 1 pts. k (D/h for) 0.020000  ;

t

$F M. 8 T lor) 0.000000 1 pts. Cp (3/1her) 0.156000 SF No. O T teFl 0.000000 1 pts. Rho (1b/ct) 25.5600 SF Wo. 10 T (er) 0.000000 1 pts. FNT 0.200000 SF No. 11 T (er) ' O.000000 1 pts. k (3/h-for) 6.6200005 02 SP No. 12 T (eF) 0.000000 1 pts. Cp (5/ther) 0.200*J00 SF No. 12 T (er) 0.000000 1 pts. Rno (ib/ct) 60.6400 SF No.14 T teF) 0.000000 a pts. CV (Bilber) 0.200000 SP No. 15 7 ter) 0.000000 1 pts. l k it/h-for) 0.3000008-02 i

SP No. '6 7 (er) 0.000000 1 pts. Cp (8/1ber) 0.200000 SF No.17 Y 0.000000 1

1 pts. F(T) 400.000 '

SF No.18 Y 0.000000 1

1 pts. FIT) 0.120000 I i

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TITTY 6 03.7.481.*6.0 Pro)ect No. 09050-059 meer tr.out 06/25/97 08:00:31 Page 015 l SF No. 19 Y 0.000000 1 pts. FIT) 27.0000 ,

I sF No. 10 Y 0.000000 1 pts. P tT) 0.120000 SF No. 21 Y 32.0000 100.000 200.000 3 pts. FIT)- 1.64000 1.64700 1.47700 1

$P No. 22 I thrs) 0.00(4 00 1.0000005 05

- 2 pts. TFB a 100.500 150.000 j

SF No. 23 K thre) 0.000000 1 pts. FME 0.950000 l

SP No. 24 X thre) 0.000000 1 pts. FIEL 0.950000 l SP No. 25 Y J

0.000000 ,

1 pts. PtT) 0.950000 '

i SF No. 26 2 thrs) 1.0000003 06 1.0000005-05 l 2 pts. PMX 108.000 200.000 '

SF No. 27 X (bre) 1.0000003-06 1.0000005-05 2 pts. TPS N 162.000 960.000

9. Namelist Massa Input (*) er Default Values, 9 NApSLIST l F

IFOP * *1 190 0 iPOCFM

  • 1 IPOCNE * *1 IPODN 1 IPODND 1 2PDFCV * *1 IPONP 1 IPOP 1 17094 * -1 2P0FI
  • 0 IPOPTT * -1 IPOOLT * -1 IPOOP 1 1907 1 IPOVI
  • 0 iPOW * *1 IPONC
  • 1 IPOWY
  • 1 IPOVMF * -1 MF07
  • 2 80tN0!T 100 Massit
  • 2000 totAIBR 15 NsTract
  • 50000 MS190P 1 IFTF 0 IFPA 0 IPNCIN 0 2FDN O 1PWV 0 IFFCV O IPOLTY 0 IFTMF 0 1PTMFW D IFru 0 IF9P O IFSCPM 0 IPNCIF 0 !PTF 1 2 PPA 1 27WCIN 1 IPDN 1 2PNV 1 IPFCT 1 3POLTF 1 IPTMF 1 IPYMPW 1 IPFW 1 2PDP 1 IPsCPM 1 2PWCIF 1 IPhCFM 1 IPAN 0 IPAP 0 NNTW 10.01600 C1A1M 14.69600 COAAV 0.41690000 09 CCSCN 1545.430 Otsuf 718.2600 .

CTRalR 0.10000005-01 CTRTF 459.4700 Dem!As 2.000000 MI 0.30000005 06 214 0.30000005-07 I PACTOR 1.010000 FINC 1.260000 GMcFAC 0.3000000 GRAT 1.000000 PA0 100000,0 I kLIDtIN 0.2000000E-34 SEWf is. 4000005 02 81 pea 0.17110005 08 88Tol 0.10000005-05 T51A8 560.0000 TH0 1.000000 IEEIAS 100.0000 tm0 MIN 0.5000000 VPOSIst 100.0000 MBIAS 1000000, j IACD 0.10000005-01 IADet

  • 0.10000003-09 KTDL 0.10000005 09 itMPMIN 0.10000005-19 i

' For Wall 1. Peth 2, IPT 4, Added Modes 102 thru 130, Added Pathe 141 thru 169 For Wall 2, Fath 5, IFT 5 Added modes 131 thru 135, Added pathe 170 tAru 174 For Wall 3, Peth 8, IFT 4, Added Nedes 136 thru 146, Added Pathe 175 thru 105 For Wall 4 Path 11, 1FT 0 Added Nodes 147 thru 157, addae Pathe 146 thru 196 -

Por Wall 5, Path 14 IPT 0, Added sendes 158 thru 186, Ad0ed Paths 197 thru 225 For Wall 6, Path 17, 3FT 0, Added Modos 187 thru 221, Added Pathe 226 thru 260 For Well 7, Path 20, IPT 0, Added asedtes 222 thru 232, Adead Pathe 161 thru 271 For Wall 8, Path 23, 2FT 8, Added Nedes 233 thru 243, Ad*=d Pathe 272 thru 282

  • For toall 9, Path 26, IFT 8 Added alodes 244 thru 250, Added pathe 283 thru 209 For Wall 10, Peth 29, 3FT 0, Added Modes 251 thru 261, Added pathe 290 thru 300 j For Wall 11, Path 32, IPT 0, Added Nodes 262 thru 266, Added Pathe 301 thru 305 j

Por Wall 12, Path 35. IPT 4. Added leados 267 thru 271. Added Pothe 304 thru 310 i For Wall 13. Path 30, IFT 0, Added stodos 272 thru 276, Added Pathe 311 thru 315 l

Project No.
09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev, No.: 0

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K17776 03.7.481. 6.0 Pro}ect No.a 09050-059 eser-tr.out 06/2S/97 08:00412 Page 016 Por Mall 14 Path 41. IPT 8, Added Nodes 277 thru 207, Added Pathe 316 thru 326 i j

l Por Wall 19. Path 44. IPT 0, Added Modes 250 thru 294, Added Paths 327 tan 333 i

! For Wall 16. Path 47, 3PT 0, Added Nodes 295 thru 305, Added Pathe .i14 thru 344 4

Por Wall 17, Path 50, 3PT 8. Added Noees 306 thru 310 Added Patas 349 thru 349 For Wall 18, Path S3. IPT 0, Added Modes 311 thru 315, Added Pe.he 350 t,hru 354 For Wall 18, Path 56 IPT 8, Aeded Modes 316 thru 354, Added & the 3$5*thru 295 For mall 20, Path St. 2PT 8, Added Modes 387 thru 397, Added &sthe 396 thru 436 Por Wall 21 Path 62, IPT 8, Added NoJoe 398 thru 426, Added Pathe 437 thru est For Wall 22. Path 65, Irr 8, Addest modes 427 thru 437, Added Pathe 466 thru 476

  • rg Wall 23. Path 65, IPT 0, Added Modes 438 thru 451 Added Pathe 477 thru 490 For Wall 24 Path 71, IPT 8, Added Modes 482 thru 465 Added Pathe 491 thru 504

, Por Wall 25, Path 74, IPT 4 Added Modes 466 thru 479, Added Pathe 505 thru Sas i

Por Wall 26 Path 77, IPT 8. Added Modes 480 thru 493, Added Pathe S19 thru 532 5 Por Wall 27 Path 80, IPT 8, Adde 6 M es 494 thru $00 Added Patha $33 thru 539 i Por Wall 20, Fath 83. IPT 0. Added Nodes 501 thru 50?, Added Pathe 540 thru 546 Por Wall 29, Path 86, IPT 8 Added Noa'te 508 thru $14. Added Petha S47 thru $53 For Wall 30, Path 89, IPT 8, Added Modee $15 thru 521. Added Patha 554 tLru $60 Por hall 31, Path 92, IPT 8, Added Nedes $22 thru S28, AdecNS Pathe SGI thru S47 Por mall 32. Path 95, IPT 5 Added Nodee $29 thru 535. Added Petha S68 thru $74 For wall 33. Path 98, IPT 8, Added Modes s36 thru $61, Added Pathe 575 thru 600 a Por Wall 34 Path 101, IPT 8. Added Wadee $62 thru 504, Added Pathe 601 thru 623 Por Wall 35, Path 104, 2PT 8 Added Modes les thru 607, Added Pathe 634 thru 636 Por Wall 36 Path 107 IPT 0, Adddd Modee 400 thru 630, Added Pathe 647 thru 669

  • Per Wall 37, fath 118, IPT 0, Added Modes 631 thru 666 Added Paths 670 thru 495 t 10. W1th Walla present, the T-vector (TPl W A.1,NV) tot 1.08.0000 100.0000 108.0000 108.0000 100.5000 95.00000 95.00000 104 0000 108.0000 108.0000 108.0000 104.0000 129.0000 108.0000 129.0000 106.0000 108.0000 108 0000 107.0004 105.0393
109.0000 109.0000 100.0000 108.0000 108.0000 108.0000 107.0004 10'.8393 104.9487 99.8663d

} 106.6357 97.40650 104.1270 104.1742 108.0000 108.0000 100.0000 *d8.0000

. 109.0000 109.0008 109.0000 109.0000 109.0000 109.0000 108.0000 100.0000 108.0000 108.0000 108.0000 +? 2 00'*0 109.0000 109.0000 109.0000 109.0000 107.1011 105.6725 106.S*,8 105.s225 107.0004 105.02t1

, 105.7413 97.25870 100.0000 108.0000 108.0000 108.0000 10P 0000 108.0000 108.0000 108.0400 100.0000 108.0000 100.0000 108.0000 104.0000 100.0000 100.0000 108.0000 108.0000 108.0000 109.0000 108.0000 108.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 119.7860 126.9062 120.9540 127.9303 120.9540 127.9303 104.5160 100.2152 119.7865 126.9062 106.9617 106.9230 106.8043 106.8456 106.0049 106.7682 106.7295 106.6934 106.4521 l 106.6134 106.6747 106.5360 106.4973 106.4566 106.4199 106.3012 106.3425 106.3038 106.2650 1 106.2263 106.1976 106.1489 106.1102 106.0715 106.0320 105.9941 105.9554 105.9167 105.0700 109.0000 109.0000 109.0000 109.0000 109.0000 108.0000 104.0000 108.0000 104.0000 324.0000 108.0000 108.0000 108.0000 100.0000 100.0000 100.0000 108.0000 108.0000 108.0000 1ee.0000 108.0000 108.0000 108.0000 10s.0000 100.0000 108.0000 108.0000 104.9617 106.9230 106.8043 106.8456 106.0049 106.7682 106.7295 106.690s 104.6521 106.6134 106.5747 106.8360 106.4973 106.4586 104.4199 ]

106.3812 106.3425 106.3038 106.2650 106.2263 106.1876 106.1489 106.1102 106.0718 106.0320 105.9941 105.9554 105.9167 604.a't3 104.8075 104.6664 104.5252 104.3840 104.2438 104.1017 103.9605 103.8193 102.6781 143 J369 103.3958 103.2546 103.1134 102.9722 102.0311 102.6899 102.8487 102.4075 102.2664 102.1252 101.9640 101.8424 101.7016 201.5605 101.4193 101.2781 101.1369 100.9958 100.e',4s 100.7134 100.5722 100.4310 100.2099 att 2487 1 100.0075 105.8666 105.0975 104.3284 103.S$93 102.7902 102.0111 101.2520 100.4029 99.71385 90.94476 98.17567 100.1316 108.13SS 106.1394 108.14?) 104.1471 100.1510 108.1549 108.1587 108.1626 108.1465 108.1704 104.00'O 108.0000 100.P000 108.0000 108.0000 108.0000 100.0000 104.0000 108.0000 100.0000 104.000J 108.0000 100. J000 100.0000 108.0000 108.0000 100.0000  ;

108.0000 109.0000 109.0000 109.0000 109.0000 109 0000 109.0000 109.0000 109.0000 109.0000 j 209.0000 109.0000 109.0000 109.0000 109.0000 10s.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 3se.0000 108.0000 100.0000 10e.0000 108.0000 Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev. No.: 0

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EITTT6 03.7.481.-6.0 pro 3ect No. ' 09050-059 meer-tr.out 06/25/97 08:00:32 Dope 017 100.0000 100.0000 100.0000 108.0000 100.0000 108.0000 108.0000 1.*.0000 108.0000 108.0000 10s.0000 100.0000 108.0000 108.0000 108.D000 109.0000 109.0000 109.9000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 107.0709 107.0368 107.06*7 106.9686 104.9345 106.9004 106.8663 106.8322 106.7901 106.7640 106.7299 106.6958 104.661J 106.6275 104.5934 106.5593 106.5252 106.4911 146.4570 106.4229 106.3888 106.3547 106.3206 106.2865 106.2523 106.2182 106.1841 106.1500 106.1159 104.0818 106.0477 466.0136 105.9795 105.9454 105.9113 105.8771 105.8430 105.8089 105.??44 105.7407 105.7066 106.5500 106.5225 106.4950 106.4675 106.4400 106.4125 106.3050 106.3575 106.3300 106.3025 106.2750 106.2475 106.2200 106.1925 106.1850 106.1375 106.1100 106.0825 104.0550 106.0275 106.0000 105.9725 105.9450 105.9175 105.0900 105.8625 105.8350 105.0075 105.7800 105.7525 105.7250 105.6975 105.6700 105.6425 105.6150 105.5875 105.5600 105.5325 105.5050 105.4775 105.4500 106.9617 106.9230 106.0843 106.8456 106.0069 106.7682 106.7295 106.490s 106.6521 106.6134 106.5747 106.5360 106.4973 106.4586 106.4199 106.3812 106.3425 106.3038 106.2650 106.2263 106.18". 106.1409 106.1102 106.0715 106.0228 105.9941 105.9554 105.9167 105.8780 105.0344 164.3275 103.6206 102.9138 102.2069 101.5000 100.7931 100.0862 99.37935 98.67347 97.96559 100.0000 108.0000 108.0000 108.0000 100.0000 108.0000 108.0000 100.0000 100.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 105.0000 108.0000 108.0000 108.0000 100.0000 100.0000 100.0000 108.0000 108 0000 100.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 104.0000 100.0000 100.0000 108.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 100.0000 108.0000 100.0000 108.0000 108.0030 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 105.0000 100.0000 108.0000 108.0000 106.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 104.0000 108.0000 108.0000 120.0505 120.3142 120.5778 120.8415 121.1052 121.3689 121.6326 121.0963 122.1599 122.4236 122.6873 122.9510 123.2147 123.4703 123.7420 124.0057 124.2694 124.52J1 124.7968 125.0604 125.3241 125.5870 125.0515 126.1152 126.3788 126.6425 121.2447 121.5353 121.8260 122.1167 122.4074 122.6981 122.9887 123.2794 123.5701 123.8608 124.1515 124.4421 124.7320 125.0235 125.3142 125.6049 125.8955 126.1862 126.4769 126.7676 127.0583 127.3489 127.4396 121.2447 121.5353 121.8260 122.1167 122.4074 122.6901 122.9887 123.2794 123.5701 123.860s 124.1515 124.4421 124.7328 125.0235 125.3142 125.6049 125.8955 126.1862 126.4769 126.7676 127.0503 127.3489 127.6396 104.3375 104.1503 103.9791 103.1998 103.6206 103.4414 103.2621 103.0429 102.9037 102.7244 102.5452 102.3660 102.1867 102.0075 101.8243 101.6490 101.4690 101.2906 101.1113 100.9321 100.7529 100.5736 100.2944 140.0505 120,3142 120.5778 120.8415 131.1052 121.3609 121.6326 121.8953 122.1599 122.4236 122.6873 121.9510 123 2147 123.4783 123.7420 1:e.0057 124.2494 124.5331 124.1968 125.0604 125.3241 125.5878 125.0515 126.1152 126.3788 126.6425 MMIKING: TPO*F(Il has psecedence over TF for kmndaey mode 13 hARNING: TFD*FtI) has psecedence over 17 for boundary mode 15 i

Project No.: 09050-059 Calc. No.: BRV 0624-M, BYR97-277 Rev.No.: 0

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' meer-tr.out 06/25/91 00:00:32 page Ole

11. Nede Sortes for Steady state laittaatsaties. 16 series with input and estinsted temperatures ans %ths mopative path gummers laeacate backward paths. hatoriska W 1asacate parallel paths or houmeary nose temperatures.

. Ser1*e 1, 33 peeees 1 19 102 103 104 105 1*C 10? 104 109 110 113 114 115 116 117 111 112 }

118 119 '20 121 122 123 126 127 128 129 $*, 124 125 130 20 l 4

l Input Tempei 100.00 101.00 106.96 106.92 106.64 106.85 106.01 104.7

106.73 106.69 104.65 106.61 106.57  !

1D4.54 106.50 106.46 106.42 106.34 106.34 166.30 106.2 ' 106.23 106.19 106.15 106,11 106.07 196.03 105.99 105.96 105.92 105.40 105.64 104.00 33 Doths: 1* 140* 3 141 142 143 144 145 146 141 f

154 156 187 158 189 160 161 162 163 16s 144 165 149 150 151 152 153 154 i J 166 167 168 169 3 Series 2. 33 poemet {

1 22 184 159 160 161 162 163 164 165 169 170 166 167 164

' 171 172 173 114 1"5 182 143 116 177 170 179 180 183 l 164 19% 186 24 e Input Tempe >

  • 100.00 107.00 104.96 106.92 106.84 106.85 106.81 104.71 104.73 106.69 106.65 106.61 106.57

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SD6.54105.99 106.03 106.50105.96106.46105.92 106.42105.08 106.35105.44 106.34164.00106.30 106.27 106.23 104.19 166.15 106.11 106.07 1

33 Dethsa 13* 116* 14 191 198 199 200 201 202 203 211 212 213 214 215 216 21?

204 205 204 207 20e 209 310 i 27.8 219 220 221 222 223 224 225 AS Serica 3, 39 neessa 1 29 187 184 189 190 191 192 193 194 195 196 194 199 200 201 202 197 1 Y 203 2D4 205 206 201 204 alt 212 213 214 215 tot 210 216 211 218 219 220 221 30  ?

l j Input Tempse 100.00 104.95 104.01 104.67 104.53 104.38 104.24 104.10 103.96 103.82 101.64 103.54 103.46

, 103.25 103.11 102.97 102.83 102.69 102.55 102.41 102.27 102.13 101.98 101.44 101.70 101.56 ,

4 101.43 101.28 101.14 103.00 100.65 100.71 100.57 100.43 100.29 100.15 100.01 99.87 95.00 39 paths: 16* 11?*

f 340 241 242 I? 236 343 221 244 220 245 229 244 230 231 232 233 234 235 236 Ilt 235 139 241 248 249 4

257 250 259 260 18 250 251 252 253 254 255 256 I

$sries 4. 18 hates 1 31 222 223 224 225 226 221 224 229 230 231 232 4

32 6

  • taput Towys: Sun.00 106.s4 105.87 105.30 1D4.33 103.54 102.79 102.02 101.25 100.48 99.11 98.94 98.18 97.41 95.00 15 Deths: 19* 118* 20 ~ 261 262 263 264 265 264 267 260 2

2fD 270 271 21 t f

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Project No.
09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 i

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KITTY 6 03.7.481. 4.0 Pre 3ect I:.6 09050 059 l eser tr.eut 06/25/97 00:00 32 Pepe 019 h series 5, 15 Modest 1 33 233 234 235 234 237  !

238 239 240 241 242 243 34 5 I

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108.17 108.50 ,

l 15 Pethea 22* 119* 23 272 273 374 275 276 277 270 279 280 281 282 to Sertoe 6, 15 hadees 1 37 251 252 253 254 255 254 257 250 25p 260 261 n 4 l

1pt Tempos 100.00 108.00 100.00 100.00 104.00 108.00 108.00 100.00 100.00 108.00 108.00 100.00 100.00 l 108.00 108.00 3 I

llatform temperatures 108.00 15 Dethes 20* 121* 29 290 291 292 293 294 295 296 297 298 299 300 30 series 7, 15 modeos 3 49 295 296 297 398 299 300 301 302 303 304 305 50 11 taput Ta g s 108 00 100.00 108.00 108.00 108.00 100.00 108.00 108.00 108.00 108.00 108.00 100.00 108.00 108.00 10" 00 lanatorm temperature 100.03 15 Dethes 46* 125* 47 334 335 336 337 338 339 340 341 342 343 344 48 Sernee 8, 45 undes: 2 55 316 317 314 319 320 321 322 323 334 325 326 327 328 329 330 331 332 333 334 335 336 337 338 33s 340 341 342 343 344 345 346 347 See 349 350 351 352 353 354 355 356 56 12 Emput Tempe: 108.00 107 A1 107.07 107.04 107.00 106.97 106.93 106.90 104.07 106.83 106.80 104.76 106.73 106.70 106.66 106.63 106.59 106.56 106.53 106.49 106.46 106.42 106.39 106.35 106.33 106.29 106.25 106.22 104.18 106.15 106.12 106.08 106.05 106.01 105.00 105.95 105.91 105.40 105.44 105.01 105.77 105.74 105.71 105.6* 104.00 45 Pathe 55* 127* 56 355 356 357 *SS 359 360 361 362 363 364 365 344 367 360 369 370 371 372 373 374 J75 376 377 378 379 340 381 382 383 384 3e5 a6 u? ut n9 2n m m m zu m 57 1

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Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

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. KITTY 6 03.7.481.-6.0 project Iso.: 09050 059 sineratr.out 06/25/97 08:00:32 Page 020 l Series 9. 33 potes: 2 59 394 399 400 402 402 403 404 405 '

I 404 407 40s 409 410 411 412 413 414 415 els 417 418 419 420 421 '

422 423 424 425 426 60 0

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1sput Tempea 100.00 107.00 106.96 106.92 106.88 104.05 106.01 }06,17 106.73 104.49 106.65 106.61 106.51 l 106.S4 106.80 106.46 106.42 106.38 106.34 104.30* 106.27 106.23 106.19 106.15 106.11 104.07 I 104.03 105.99 105.96 105.92 105.08 105.64 104.00 i l 33 Dethei 41* 120* 62 43? 438 439 440 441 442 443 444 445 446 44? 448 449 i

I 450  ;

481 452 483 454 455 466 457 454 459 460 463 462 463 464 465 63 Sertoa 10, 15 madees 3 61 427 426 429 430 r

431 432 433 434 438 434 437 62 6 input Tempos 108.00 105.14 105.03 104.33 103.52 102.91 102.21 101.50 100.19 100.09 99.36 90.67 97.9?

97.26 95.00 14 Dethe: 64 65 466 467 460 esp 4?0 471 472 473 474 475 416 66

& artes 11, 45 Isodes: 10 57 357 als 359 360 341 362 363 364 365 366 347 368 369 370 371 372 373 3?e 315 376 3?? 370 379 3e0 381 382 383 384 305 386 387 368 309 390 391 392 393 394 395 396 397 SS 12 p

l Input Tempo 10s.00 104. u 104.85 106.52 106.50 106.41 106.44 106.41 106.39 106.36 106.33 104.30 106.28 106.25 104.22 106.19 106.17 106.14 106.11 1 06. 04 104.06 106.03 106.00 105.91 105.94 105.92 105.99 105.06 105.03 105.41 105.?$ 105.?$ 105.72 105.70 105.67 105.64 105.61 105.59 105.56 105.53 105.50 105.48 105.45 105.42 104.00 44 Dothes 50 59 396 397 390 399 400 401 402 403 404 405 4 06 401 400 409 410 l 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 436 427 424 429 430 431 432 433 434 435 436 de Series 12. 30 Isodes: 2 92 $35 531 538 539 See S41 542 543 Se4 545 546 541 544 $49 $50 581 $$2 553 554 558 596 957 556 559 560 $41 93 15 1mput Tempei 108.00 119.79 120.09 120.31 120.u 120.04 121.11 121.31 121.63 121.90 122.16 122.42 122.49 i 122.95 123.21 123.48 123.74 124.01 124.27 434.53 124.00 125.06 125.32 125.59 125.05 126.12 134.32 136.64 126.91 162.00*

30 Doch., 9,* 1m u Sn Su e?, Sn En u u3 Su su u6 u? Su 59 590 391 592 593 59. ill $96 .u9,0 59.n .n992 600 99 I

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t! TTY 6 03.7.481.*6.0 Pro 2ect No.: 09050 059 meer.tr.out 06/25/97 08:00:33 Dave 021 5ernes 13, 27 Neessi 2 94 562 543 564 565 566 $67 548 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 95 13 Input Tempos 108.00 120.95 121.24 121.54 121.83 122.12 123.41 {33.70 122.99 123.28 123.57 123.06 124.15 138.e4 124.73 125.02 125.31 125.60 125.90 136.19

  • 126.40 126.77 127.06 127.35 127.64 127.93 163.00*

27 Pether 200* 136* 101 601 602 603 6De 605 606 607 608 609 410 611 612 613 614 615 616 617 618 619 620 621 622 633 102 ,

Bertes 4. 27 N se, 1 96 its 586 58, 5.. 509 590 591 592 593 59. 595 l 596 597 598 599 600 601 603 603 605 606 S D6 607 97 13 Seput Tempo 108.00 110.73 121.24 121.54 121.83 122.12 122.41 122.70 122.99 123.20 133.57 123.06 134.15 134.44 124.73 135.03 125.31 125.60 125.90 126.19 126.40 136.77 127.06 127.35 127.64 127.93 161.00*

27 Pathe s 103* 137* 104 624 625 626 527 628 639 630 631 632 633 634 635 636 637 634 639 640 641 642 643 644 645 644 105 Series 15. 27 Nodes: 1 90 608 609 Sie 611 613 413 614 615 616 617 618 619 630 621 622 623 624 625 624 627 638 629 630 99 7

loput Tempos 100.00 104.52 104.34 104.16 103.99 103.80 103.52 103.44 103.36 103.08 102.90 102.02 103.55 102.37 95.00 103.19 102.01 101.53 101.65 101.47 101.29 101.11 100.93 100.75 100.57 100.39 100.32 27 Pathes 206* 138* 107 647 640 649 650 651 652 453 654 655 656 657 658 $59 660 661 662 663 664 465 666 es? 660 669 100 Sortes 16. 30 Nedees 1 100 631 632 633 634 635 636 637 638 619 640 641 6d2 643 644 646 644 647 640 649 659 451 652 653 6 54 e55 656 101 14 Input tempo 100.00 119.79 120.05 120.31 120.50 120.84 121.11 121.37 121.63 121.90 122.16 122.42 122.69 123.95 123.21 123.48 123.74 124.01 124.27 124.53 124.00 125.06 125.33 135.59 125.85 124.12 126.38 126.64 126.91 162.00*

3F isthes 109* 139* 110 Eye 671 672 673 674 675 676 6 77 678 679 480 601 542 683 684 605 686 607 688 689 690 691 692 493 She 695 111 After Steady State Inittelisetton and 6 iterations. the ande temperatuss vector (TF) tes 108.0000 108.0000 404.0000 106.0000 105.5000 95.00000 95.00000 104.0000 104.0000 104.0000 100.0000 104.0000 162.0000 108.0000 162.0000 108.0000 100.0000 10s.0000 107.0004 105.8393 109.0000 109.0000 100.0000 100.0000 108.0000 108.0000 107.0004 105.8393 1D4. 640 7 99.46634 106.6357 - 97.406&S 108.1270 108.1743 300.0000 101.0000 108.0000 108.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.000b 208.0000 100.0000 108.0000 100.0000 100.0000 108.0000 109.0000 109.0000 109.0000 109.0000 107.1051 105.6725 106.5775 105.4235 107.00D4 105.8393 105.7413 97.35871 104.0000 108.0'00 108.0000 108.0000 106.0000 108.0000 108.0000 105.0000 105.0000 108.0000 108.0000 108.0000 104.0000 100.0000 100.0000 100.0000 100.0000 108.0000 100.0000 100.0000 100.0000 108.0000 100.0000 108.0000 100.0000 108.0000 108.0000 105.0000 100.0000 138.1196 157.3046 140.6503 159.1616 140.6503 159.1614 104.5160 100.1152 138.1196 1

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Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

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j 108.0000 100.0000 105.0000 100.0000 100.0000 108.0000 *108.0000 104.9617 106.8454 106.8069 106.9130 106.8643 -

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' 103.9605 103.8193 103.6781 103.5369 103.3958 103.2546 102.0311 102.6099 103.1134 102.9722 i 102.5487 102.4075 102.2664 102.1252 101.9840 101.6428 101.4193 101.7016 101.5605 101.2781 101.1349 100.9950 100.8546 100.7134 200.5722 100.4310 100.007 105.0666 100.2499 100.1487 I 105.0975 10 102.7902 102.0211 101 98.944,56 100.4429 99.71389 )

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.1394 100.1433 10. 1471 10..1510 2520 108.1549 10. 15.,

108.1426 108.1665 100.1794 100.0000 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 100.0000 106.0000 100.0000 108.0000 106.0000 100.0000 109.0000 108.0000 100.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 199.0000 109.0000 100.0000 109.0000 109.0000 109.0000 109.0000 100.0000 108.0000 108.0000 100.0000 10s.0000 100.0000 100.0000 106.0000 100.0000 108.0000 100.0000 100.0000 106.0000 100.0000 108.0000 108.0000 100.0000 100.0000 100.0000 100.0000 108.0000 108.0000 '

100.0000 100.0000 104.0000 108.0000 100.0000 100.0000 108.0000 109.0000 109.0000 109.0000 109.0000 109.0000 109.0000 Sf).0000 109.0000 109.0000 109.0000 107.0709 107.0360 107.0027 106.9606 104.9004 104.6663 106.9145 106.8322 106.7981 106.7640 106.7299 104.6958 106.6616 104.5593 406.5252 106.6275 106.5934 106.4911 106.4570 106.4229 106.3888 104.3547 104.3206 106.2152 106.1641 106.2865 106.3533 106.1500 106.1159 106.0818 106.0477 106.0136 105.9795 105.8772 105.D430 105.9454 105.9113 105.8089 105.7748 105.7407 105.7046 106.5500 106.5225 106.4400 106.4950 106.4675 106.4125 104.3850 106.3576 106.3300 106.3025 106.2750 104.2478 104.1650 106,1375 106.2200 106.1925 106.1100 104.0825 106.0560 106.0275 106.0000 105.9725 105.9450 105.o900 10s.s42s 105.9175 10s.s350 105.s075 10s.7o00 105.7525 10s.7250 10s.4975 105.s700 105.6150 105.642s l 10s.5sts 10s.5600 105.5325 105.5050 105.477s 105.4500 106.9617 - 106.9230 106.5458 106.8069 106.se43 106.7652 104.7295 106.6908 106.6521 106.6134 106.5747 106.5360 106.4564 106.4911 106.4199 106.3812 106.3425 156.3038 106.2650 106.2263 106.1876 106.0715 106.1489 106.1102 106.0324 105.9941 105.9554 105.9167 305.0780 105.0344 104.3275 102.2069 103.6204 102.9130 101.5000 100.7931 100.0062 99.37935 90.67247 97.96559 108.0000 108.0000 108.0000 104.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 104.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 104.0000 100.0000 100.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 108.0000 108.0000 100.0000 100.0000 104.0000 100.0000 108.0000 100.0000 108.0000 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 108.0000 100.0000 100.0000 104.0000 100.0000 100.0000 108.0000 108.0000 108.0000 100.0000 108.0000 100.0000 106.0000 104.00C0 4ks.0000 108.0000 108.0000 108.0000 100.0000 100.0000 108.0000 104.0000 100.0000 108.0000 10s.0000 108.0000 100.0000 100.0000 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 100.0000 100.0000 108.0000 100.0000 100.0000 136.8364 139.5333 140.2401 142.3407 140.9470 141.6530 143.0675 143.7744 144.4412 145.1981 145.8950 146.6019 147.3087 148.0155 148.7234 149.4292 150.1361 150.4429 151.5498 153.2566 152.9435 153.6703 154.2772 156.4977 155.0640 155.7909 141.4216 142.1929 142.9642 143.7385 144.S068 145.2781 146.0494 146.8207 147.5920 140.3633 149.1346 149.90S9 150.6772 151.4466 152.2199 152.9912 153.7625 154.5338 155.3051 155.0764 156.0477 157.6190 158.3903 141,4216 142.1929 142.9642 143.7355 144.5066 145.1781 146.0494 146.8207 147.6920 148.3633 149.1346 149.9059 150.6772 151.4466 153.2199 152.9912 153.7625 154.8338 155.3051 156.0764 156.6477 157.6190 258.3903 104.3375 103.7998 104.1583 103.9791 103.6206 103 4414 103.2621 103.0829 102.9037 102.7344 102.5432 102.3660 102.1447 102.0075 101.8383 101.6490 101.4690 101.2904 101.1113 100.9321 100.7829 138.8264 100.5736 100.1944 139.5333 140.2401 140.9470 141.4538 142.3607 143.0675 143.7744 144.4812 145.8950 145.1981 146.6018 147.3087 148.0155 148.7224 149.4292 150.1341 150.6429 151.5498 152.2546 152.9635 153.6703 154.3772 155.0840 158.7909 156.4977 Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 Rev. No.: 0

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l EI??T6 03.7.481. 6.0 pro 3ect No. 09050-059 meer-tr.out 06/25/97 08:00:32 DeDe 023

12. Imatial
  • solution Weetor* (&&tJ),J.1.NE), NB e 635 (UI) energy, inceeprese12,3a. tieu MCG a moles. (MW) water mese, (DC) energy, compressable. (W9) path mase fine (01) 203599.7 (UI) 83558.29 (UI) 14432.74 (UI) 1513.336 (UI) 13802.18 (Ull 76750.93 (U2) 310s.190 (Ut) 74908.52 (U1) 68248.94 (U2) 68248.94 (UI) 11693.09 (VI) 71693.09 (UI) 102613.9 i

(UI) 606148.7 (UI) 404946.5 (UI) 207539.7 * (UI) 102413.9 l (UI) 205411.6 (UI) S2123.98 (UI) 32190.47 (U1) 192653.s (UI) 192669.6 (UI) 65550.02 (UI) 66050.03 (UI) 4440'.43 (UI) 44401.41 I

'U2 ) 44485.63 (UIl 27636.41 (UI) 27636.61 )'

(UI) 44485.63 (UI) 136672.7 (UI) 136602.7 (U1) 77044.10 (UI) 77S44.38 (Uta 64210.60 (TI) 141043.7 (U1) 161043.7 (UI) 64210.60 (UI) 44488.19 (UI) 44488.19 (UI) 133456.9 (U3) 133456.9 (UI) t14101.1 (U2) 313307.2 (UI) 65643.66 (UI) 65509.76 (UI) 269179.8 (UI) 12610.01 (UI) 264628.2 (Ull 12954.36 (U1) 734199.9 (UI) 736199.9 (VI) 279820.2 (UI) 279020.2 (UK) 133757.3 (UI) 127871.9 (U2) 127871.9 (U2) 72265.03 (UI) 133757.3 (UI) 72265.03 (UI) 47306.09 (UI) 47106.09 (UI) 48176.69 (UI) 48176.69 (UI) 66376.?? (UI) 66376.77 (UI) 47106.09 (Ut) 47108.09 (UI) 172405.5 (U11 48176.69 (UI) 48176.69 (91) 177909.7 (UI) 245926.9 (U2) 274126.9 (U2) 409640.6 (UI) 422273.1 CUI) 193662.9 (UE) 315513.4 (UI) 325586.4 (01) 195150.8 (UI) 153806.5 (UI) 153796.0 (UI) 153785.5 (Ull 153775.0 (UI) 153764.5 (U1) 153754 0 (UI) 153743.5 (UI) 153733.0 (Ull 153722.5 (U!) 153891.0 (UI) 153712.0 (U1) 153701.5 (UI) 153600.5 (UI) 153669.9 (UI) 153659.4 (U2) 153648.9 (U2) 153438.4 (UI) 153417.4 (U2) 153606.9 (UI) 153596.4 (UI) 153527.9 (UI) 153545.9 (UI) 153575.4 (U1) 153564.9 (UI) 151554.4 (01) 153543.9 (01) 153533.4 (U2) 153522.9 (U2) 153512.4 (UI) 136497.9 (UI) 136497.9 (UI) 136497.9 (UI) 136497.9 (UI) 136497.9 (UI) 143387.0 (UI) 143387.8 (UI) 143387.5 0U3) 143347.8 (UI) 143387.0 (UI) 143387.6 (UI) 143387.8 (UI) 143387.8 (UI) 143387.8 (Dil 143307.8 (U2) 143387.8 (U1) 205227.9 (Ull 205237.9 (91) 205227.9 (UI) 205227,9 (UI) 205227,9 (Ull 205227.9 IU1) 205227,9 (UI) 205227.9 (pi) 205227.9 (UI) 205227.9 (UI) 205227.9 (UI) 1212295. (UI) 1212212. (UI) 1212129. (Ull 1212046 (UI) 1211963. (UI) 1211660. E UI) 1211794. (UI) 1211715. UUI) 1211632.

(UI) 1211364. (UI) 1211549. (UI) 1211466.

(D1) 1211301. (U3) 1211214. (pt) 1211135. (U2) 1213052. (UI) 1210970. (U2) 1210887, (U2) 1310804. (U2) 1210721. (U2) 1210638. (UI) 1210556. (UI) 1210473.

(UI) 1210224. (UI) 1210390. (U1) 1210307 (UI) 1210142. (01) 1210059. (UI) 1209976. (Uti 414975.7 (Ull 414671.9 (UI) 414664.3 (Uti 414560.5 (U1) 414766.1 1UI) 414456.7 (UI) 414353.0 (UI) 414249.2 (UI) 434145.4 (01) 414041.6 IUI) 413937.8 (UI) 413834.0 (UI) 413730.2 (U!) 413626.5 (UI) 413422.7 (UI) 413211.3 (UI) 413418.9 (UI) 413315.1 (U1) 413107.5 (UI) 413003.7 (UI) 412900.0 (UI) 412796.2 (UI) 412692.4 (U3) 412484.8 (UI) 412381.0 (UI) 412588.6 (UT) 412271.2 (UI) 412173 4 (UI) 412069.7 (UI) 411965.9 (UI) 411862.1 (UI) 411758.3 (U2) 411654.5 (UI) 411550.7 (UI) 411446.9 (UI) 65359.07 (U1) 65091.42 (UI) 65270.10 (U1) 65181.30 (01) 65003.53 (UI) 64914.65 (UI) 64025.76 (U2) 64736.88 (UI) 64648.00 (UI) 64470.23 (UI) 305310.2 (U1) 385312.8 (UI) 64559.11 (UI) 385315.5 (UI) 385310.1 (UI) 385320.7 (UI) 385323.3 (UI) 305326.0 (U3) 385228.6 (U2) 305331.2 (UI) 345333.9 (UI) 385336.5 (01) 131700.0 (UI) 131700.0 (UI) 131700.0 (U3) 131700.0 (VI) 131700.0 (UI) 133700.0 (UI) 131700.0 (UI) 80814.01 (U2) 08814.81 (Ull 88814.01 (U2) 88014.01 (UI) 88814.81 (UI) 99814.81 (UI) 88814.81 (U2) 98814.01 (UI) 88814.8%

(Ull 98024.81 (UI) 88814.81 (UI) 55273.21 (UI) 55273.21 (U1) 55273.21 (UX) 65971.27 (UI) 55273.21 (UI) 55273.21 1U1) 99971.27 (UI) 80971.27 (UI) te971.27 (UI) 88971.27 (UI) 273345.5 0p!) 273345.5 (U2) 273345.5 (UI) 273345.5 (U2) 273345.5 (UI) 154088.4 (UT) 154068.4 (UI) 15400s.4 .(UI) 154068.4 (UI) 154008.4 (UI) 154088.4 (U3) 154088.4 (U2) 154006.4 (01) 1b4006.4 (71) 125411,3 (WI) 154000.4 (UI) 154068.4 (U1) 128421.2 (U2) 120421.2 (U2) 126421.2 (U1) 126421.2 (U1) 126421.2 (UI) 322087.5 (UT) 322007.5 (U2) 138421.2 (UI) 322087.5 (UI) 322087.5 (UI) 322087.5 (UI) 322087.5 (UI) 322007.5 (UI) 322087.5 (UI) 322087.5 (UI) 322007.5 (UI) 322087.5 (U2) 88976.39 (UI) 68976.39 (UI) 80974.39 (01) 80976.39 (U1) 98976.39 (UI) 266913.0 (UI) 266913.8 (UI) 266913.8 (UI) 266913.0 (UI) 424164.4 (UI) 438126.6 (U1) 266913.0 (UI) 620008.7 (UI) 620050.9 (UI) 628013.1 CUI) 627975.3 (D1) 627937.5 (Ull 627999.7 IUI) 627861.9 (UI) 427824.1 (UI) 627706.3 (U2) 627740.5 (UI) 627635.1 (FI) 627710.7 (UI) 627672.9 (UI) 627597.3 (UI) 627559.5 (UI) 627521.7 (UI) 627483.9 (UI) 627446.1 (UI) 627400.3 (UI) 627370.4 (01) 627332.6 (UI) 627294.8 (UI) 627257.0 (UI) 627215.2 (U1) 627105.8 (UI) 627181.4 (UI) 627143.6 (U1) 627068.0 (U3) 627030.3 (UI) 624992.4 (U1) 626954.6 (UI) 626916.8 (UI) 625841.2 (U2) 626079.0 (UI) 626803.4 (U2) 626765.6 (UI) 626727.8 (U3) 626690.0 (01) 626652.2 (UI) 131280.5 (Ut) 131274.6 (UI) 131268.2 (Uti 131261.8 (UI) 131255.4 (UI) 131249.1 (UI) 131129.9 (Ull 131242.7 (UI) 131236.3 tB1) 131223.5 (UI) 131217.2 (UI) 131210.8 (UI) 131304.4 (UI) 131198.1 (UI) 131185.3 (FI) 131178.9 (UI) 131191.7 (UI) 131172.6 (UI) 131166.2 (UI) 131159.8 (UI) 131153.4 (Url 131347.0 (U1) 131140.7 (U1) 131134.3 (UI) 131127,9 (UI) 131121.5 (UI) 131115.2 (UI) 131108.8 (UI) 131102.4 i

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EITTY6 03.1.481. 6.0 Droject tio. : 09050-059 emer tr.out 06/25/97 00:00:32 989e 024 (UI) 131096,0 (UI) 131089.7 (UI) 131083.3 (UI) 131076.9 (UI) 131070.5 101) 131051.4 (UI) 131045.0 (UI) 131030,7 (UIl 131064.3 (UI) 131057.8 (U1) 131032.3 (UI) 131025.9 (UI) 538322.8 (UI) 538249.3 (UI) 538212.5 (UI) 530375.8 (UI) 538139.0 (UIl 538286.3 (UI) 538102.2 (UI) 538065.4 (UI) 538020.7 (UI) 531991.9 (UIl 537955.1 (Uil 537918.4 (UI) 537881.6 (UI) 537844.8 (UI) 537134.5 (Ull 531508.0 (UI) 537771.3 (UI) 537697.7 (UI) 537661.0 101) 537624.2 (UI) 537587.4 (UI) 537550.6 qu!) 531477.1 (UI) 537440.3 (UI) 531403.6 (UI) 537513.9 (UIl 537366.8 (UI) $$7330.0 (UI) 537393.2 (UI) 45051.37 (UIl 45193.97 (UIl 45736 58 (UI) 45679.18 (UI) 45621.79 (UI) 45564.39 (UI) 45392.20 (Ull 45506.95 (UIl 45449.60 (UI) 45334.01 (UI) 45217.41 (UI) 1472400. (Ull 3472400. (UI) 1472400.

(UI) 1472400. (UI) 1472400 (UI) 1472400. IUI) 1472400.

(UI) 1472400. (UI) 1472400. (UI) 1472400. (Ull 1472400.

(UI) 1472400. (UI) 1472400. (UI) 1472400. (UI) 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 55bs40.3 (UI) 559640.3 (UI) 559440.3 (UI) 559640.3 (UIl 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 559640.3 (UI) 267514.5 (UI) 257514.5 (UI) 167514.5 (Ull 167514.5 (UI) 257514.5 (UI) 361514.5 (UI) 267514.5 (U11 267514.5 (UI) 267514.5 (UI) 267514.5 (UIl 247514.5 (UI) 267514.5 (UI) 267514.5 (UI) 267514.5 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (VI) 255143.9 (UIl 355743.9 (UI) 255743.9 (UI) 255743.9 (UI) 255743.9 (UI) 144530.1 (UI) 144530.1 (UI) 144530.3 (UI) 144530.1 (UI) 144530.1 (UIl 144530.1 (UI) 144530.1 (UI) 94212.10 (UI) 94212.18 (UI) 94112.10 (UI) 94212.18 (UI) 94212.10 (UI) 94212.18 (Ull 94212.38 (UI) 96353.37 (UIl 96353.37 (Utl 96353.31 (UI) 96353.37 (UI) 96353.37 (UI) 96353.37 (UI) 96353.37 (UI) 132793 5 (UI) 132753.5 IUI) 132753.5 (UI) 132753.5 (UI) 132753.5 (UI) 132753.5 f tf!) 132753.5 (911 94213.10 (UI) 94212.18 (UI) 94212.18 (UI) 94212.18 (UI) 90212.18 #UI) 94212.10 (UI) 94212.18 (UI) 96353.37 (UI) 96353.37 (UI) 94153.37 (Ull 96353.37 (UI) 96353.37 (UI) 94353.37 (UI) 96353.37 (UIl 345213.7 (UI) 345426.5 (UI) 346849.6 (UI) 346034.2 (UI) 346441.9 (UI) 347257.3 (UI) 347645.1 (UI) 348072.8 (UI) 348480.5 (UI) 348888.2 (UI) 349703.1 (Ull 350111.4 (UIl 349295.9 (UI) 350519.1 (UI) 350926.8 (Ull 351334.5 (Ull 151741.2 (UI) 352150.0 (UI) 352557.7 (UI) 352965.4 (UI) 353373.1 (UI) 353780.0 (UI) 354180.6 (UI) 355411.7 (UI) 354596.3 (UI) 355004.0 (UI) 532537.1 (UI) 533220.5 (01) 533903.8 (UIl 534507.1 (UI) 535270.5 (UI) 536637.2 (UI) 537320.5 (UI) 535953.0 (UI) 538003.0 (UI) 53ss07.2 (UI) 539370.5 (UI) 540053.8 (Utl 540737.3 103) 541430.5 (UI) 542103.9 (UI) 543707.2 (UI) 543470.5 (UI) 544153.9 (UI) 546203.9 (UIl 544837.2 (UI) 545520.5 (UI) 546487.2 (UI) 547570.6 (UI) 820333.8 (UI) 821384.4 (UIl 822439.0 (UI) 834544.3 (UI) 825596.9 (UIl 523491.6 (UI) 826649.5 (UI) 827702.2 (UI) 038754.8 (UI) 829807.4 (UI) 830060,1 (UI) 031912.1 (UI) 832965.3 (UI) 834017.9 (UI) 535070.6 (UI) 036123.2 (UI) 839201.1 (UI) 837175.8 (UIl 838220.5 (UI) 640333.7 (UI) 841386.4 (U!) 842439.0 (UI) 643491.6 (UI) 390177.6 (UI) 389929.6 (UI) 389805.6 (UI) 350053.4 (UI) 309681.7 (UI) 309557.7 (UI) 389433.1 (UI) 389309.7 (UIl 359105.7 (UI) 389041.7 (UI) 388937.7 (UI) 308013.7 (UI) 388689.7 (UI) 388565.7 (UI) 388193.7 (UI) 380441.7 (UI) 368317.7 (UI) 388069.7 (UI) 387945.7 (UIl 307Atl.8 (UI) 307697.8 (Utl 387573.8 (UI) 631772.9 (UI) 632519.0 (UI) 357649.5 (UI) 433265.2 (UI) 634011.3 (UI) 634757.5 (UI) 635503.6 (Utl 636249.8 (UI) 636996.0 (UI) 637742.1 (UI) 638488.3 (UI) 439234.4 (UI) 439900.6 (UI) 642219.0 (Ull 640126.7 (UI) 641472.9 (UI) 642*65.2 (UI) 643711.1 (UI) 644457.5 EUIl 645 UP.6 (UI) 645949.8 (UI) 646695.9 (UI) 641442.1 (UI) 648188.2 (UI) 640934.4 (UI) 649600.5 (UI) 650426.J 93*s output tales meer-tr. pit (Ultf ormat ted) kestart output filei mone l

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EITTV6 03.t.401. 6.0 Project No.: 090B0-059 meer-tr.out 06/25/91 00:00:34 Page 025 In the above input and in the following results, Mode. Path, and IrTC types are desagnated as f ollowe r ACs Active Compressible A34 Actave, Incompressible BCs soundary. Compressable bis Soundary, incompressible the Conduction only I Cas Film condensation, lamanar Crs Fila condensatson, rapple Ct s Film condenaatton, turb. I CRs Convection or Radiation PCs Porced Convection Fis Forced Convect' son, anteria. Fla Forced Convection. lasunar Pts Porced Convection, turb. NIa Neat exchanger MCs CFS act$ve Mass flow mis Mase flow. Incompressible Mrs CF8 Mass flow (delta p) Mx; Mass flow. condensate Na Null NA: Not Applicable NCi Natural Convect &oe Ints Natural conduct &on Wa s Natural conv'n, lasunar Nes Natural conv'n, sub-lan't Nt s Natural conv'n, turbulent NKs Natural exchange Ras general Radiation RVs Radiation. Vapor / surf ace

$Xs Specified beat flux Tas Tagami condeneation Ucs Uchida condensation V3s CF3 Volume flow (delta El NCe Wall. Cylindr6 cal WP CF5 Volume flow (delta PI NN: Wall Need node N!: Wall, Internal mode / path MPs Mall, Planar (slabi NS Wall, SpherAcal NTa Na11 Tail node ITs specified I/T fumetten ta...tes FC/NC by Re/Ra reage I

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meer tr.out 06/25/97 08:00:34 Pope 026 IITTY6 03.7.481. 4.0 Pro}ect No.( 09050 059 Case 1 af ter stop me. O, taas IXA) le 0.000000 hre, O re3ected De steps, east tame step to 1.000000B-02 hrs.

1 A! Node 2 Al Nade 3 Al Nede 4 AI Node 5 BI Mode 6 BI Wode 7 31 Mode 3 31 Nede Resulte Mode 105e5900

............95.00000 95.00000

............ 104.0000 Temperatuse, or 100.0000 108.0000 108.00:0 108.0000 -

Density, 1kun/ft**3 4.60000005 02 6.60000005-02 6.60000005 02 6.60000005-02 6.60000003 02 6.60000003 02 6.60000003-02 6.60000005-02 >

Node Resulte Mode 9N Node 18 Al Nede la AI Made 12 31 Mode 13 31 Nede 14 32 Nede 15 31 Nede 16 N Temperature, OF 459.6700 108.0000 108.0000 104.0000 162.0000 100.0000 162.0000 459.6700 l*L61ty. !bm/f t**3 0.0000000 6.60000008 02 6.60000005-02 6.60000005 02 6.60000003 62 6.6000000E 02 6.60000003 02 0.0000000 t

Mode Beaulte pode 17 N Node 10 N Node 19 WT Nede 20 UN Node 21 WT pode 22 WN Nede 23 WT Node 24 un r

Tenperature, eF 459.4700 459.6700 107.0004 105.8393 109.0000 109.0000 100.0000 108.0000

' Density, INm/f t**3 0.0000000 0.0000000 145.0000 145.0000 36.56000 35.56000 145.0000 145.0000 Mode Resulto Mode 25 WT Nede 26 NN Node 27 W Nede 20 WM Nede 29 WT Node 30 uu Nade 31 WT Node 32 un Temperature, or 108.0000 100.0000 107.0004 105.0393 104.9487 99.66634 104.6357 97.40650 Doneity, 1bm/ft**3 38.b6000 35.56000 145,0000 14!L . 0000 145.0000 145.0000 35.S6000 35.56000 i

Nede Resulte Nede 33 WT Nede 34 um Nede 35 WT Nede 36 WM Nees 37 WT Node 30 up Nede 39 WT Rede 40 MW

................... ............ ............ ............ ............ ...........a ............ ............ ............

Temperature, or 108.1275 108.1742 10s.0000 104.0000 108.0000 108.0000 109.0000 109.0000 Doesity, ihm/ft**3 145.0000 145.0000 60.64000 60.64000 145.0000 145.0000 35.56000 35.$6000 Nade peoulte Mode 41 WT Nede 42 WK Node 43 WT Nede 44 WN Nede 45 WT Node 46 H Nede 47 WT Node 48 up Teequereture, or 109.0000 109.0000 109.0000 109.0000 108.0000 108.0000 100.0000 100.0000 [

Denesty, itsm/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 50.64000 60.64000 )

L Node Seoulte Node 49 WT Nede 50 NM Nede $1 W Nade $2 un Made 53 WT Nede 54 NE Nede SS NT Nade 54 MN Temperature, eF 108.0000 108.0000 109.0000 109.0000 109.0000 109.0000 107.1051 105.6725 I Donesty, lha/ft**3 145.0000 145.0000 35.66000 35.56000 145.0000 145.0000 145.0000 145.0000 I

made Resulte Mode 57 WT Node $8 NE Nade 59 WT Nede 60 uu Nede 41 WT Node 62 WB Nade 63 WT Name 64 NM Temperature, or 104.8775 105.4225 107.0004 105.4393 305.7413 97.25871 104.0000 108.0000 ,

Doneity, lan/ft**3 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 g Made eesulte Made 65 WT pode 66 NH Nade $7 WT Node SS WR Wade 69 WT Nade 70 WE Noes 71 WT Node 72 un .

................... ............ ............ ............ ............ ............ ............ ............ ............ [

Temperature, et 10s.0000 100.0000 108.0000 100.0000 108.0000 100.0000 100.0000 100.0000 Donesty, 13xn/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 148.0000 145.0000 145.0000 Node Seoulte Nede 73 WT Nade 74 WB Node 75 WT Nade 76 Na Mode  ?? WT Node 78 NH Node 79 WT Node 80 un >

Temperature, eF 100.0000 100.0000 108.0000 108.0000 108.0000 108.0000 108.0000 100.0000 Density, 1bm/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 .

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i EITT76 03.7.481. 4.0 Project No.s 09050 059 eser.tr.out 06/25/97 06:00:14 Pete 027 Nude Resulte Nede 81 IFT Nees 82 nil Mode 03 af Nees 94 N Nede 85 N Nede 66 M Nose 37 N Nc.de 3e W

................... ............ ............ ............ ............ ............ ............ ............ ............ f Temperature, or 108.0000 108.0000 459.4700 4SD.6700 459.4700 459.6700 459.6700 469.6700  !

Doesnty, lan/ft**3 145.0000 145.0000 8.0000000 0.0000000 0.0000000 0.0000000 0.0000000 '

0.0000000 Neen Gesulte Nees at M Neen 90 W Ik '40 MN alone 92 NT Nede 93 NN Nede 94 trf Nede DS NH Nede 96 IFT Temperature, or 459.6700 459.6700

...459.6i 110.1196 187.2044 140.6501 159.1616 140.4$03 Deeetty, 14et/tt**3 0.0000000 0.00000C0 0.0000000 145.0000 145.0000 145.0000 145.0000 145.0000 3 Mode Oesulte Itede 97 nit Nede 98 Irr Nede 99 NN Meen 100 NT Nede 101 NN j W reture, eF 199.1616 104.8168 100.2132 134.1196 187.2046 Doesity. 1Ne/tta3 145.0000 145.0000 145.0000 145.0000 145.0000 l'

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E!TT76 03.7.481. 4.0 Pro)act No. 09050 059 maar.tr.out 06/25/97 08:00:34 Pays 020 Path Results Path 3 CR Path 2 WP Path 3 CR Path 4 CR Path 5 WP Path &N Path 7O Path 8 WP Heat kata. Btu /hr 27.34367 61.53206 41.53203 76.95000 0.0000000 C.0000000 0.0000000 2.0000000 MTC. Stu/f tthrer 0.1900 WC 11.04 Ck O.2323 NC 0.1900 NC 0.7944 , Ck O.0000 N 0.0000 11.04 Ck Path Raoults Path 9 CR Path 10 CR Path 11 WP Path 12 CR Path 13 CR Path 34 WP Path 15 CD Path 16 CR Neat Rate. Stu/br 0.0000000 0.0000000 0.0000000 0.0000000 215.5213 454.9923 404.9920 326.7237 JFC, Stu/f tthrop 0.0000 0.0000 0.7944 Ck 0.0000 0.1900 NC 11.04 Ck 8.2323 NC 0.2746 NC Path Raoults Path 17 WP Path 18 CR Path 19 CR Path 20 WP Path 21 CR Path 22 G Path 23 WP Path 24 CR Neat Sata, Stu/br 60V.8517 607.0517 56.00606 119.1382 119.1382 4.431440 15.30955 15.38955 8F % Stu/ftthrer 11.04 Ch 0.3203 NC 0.2105 NC 0.7944 Ck 0.2539 NC 9.63548-02 NC 11.04 Ck 0.1312 NC Path Raoulta Path 25 CR Path 26 WP Path 27 CR Path 28 CR Path 29 WP Path 30 G Path 31 CR Path 32 WP Heat kata. Stu/hr 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 31.16000 0.0000000 3rfC, Stu/ftthrer 0.0000 1.057 Ck 0.0000 0.0000 11.04 Ck 0.0000 0.1900 NC 0.7944 Ck Path Sasults Path 33 N Path 34 CR Path 35 WP Path 36 N Path 37 3 Path 34 WP Path 39 N path 40 O Neat Sata. Stu/hr 0.0000000 15.77000 0.0000000 0.0000000 48.45000 0.0000000 0.0000000 0.0000000 NTC, Stu/ftthrer 0.0000 N 0.1900 NC 11. tre Ck 9.0000 N 0.1900 NC 11.04 Ch 0.0000 N 0.0000 Path Raoulta path 41 WP Path 42 CR Path 43 CR Path 44 WP Path 45 CR Path 46 CR Path 47 WP Path at G Heat kata. Stu/hr 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 NT1", Stu/f tfhrer 11.04 Ck 0.0000 0.0000 1.057 Ck 8.0000 0.0000 11.04 06 0.0000 Path Results Path 49 CR Path 50 WP Path 51 N Path 52 CR Path 53 WP Path 54 N Path 55 CR Path 56 WP Heat Rata, Stu/hr 50.16000 0.0000000 0.0000000 47.31000 0.0000000 0.0000000 96.38768 221.4154 N7C. Stu/ftthrer 0.1900 WC 0.7944 Ck 0.0000 N 0.1990 NC 11.04 Ck 0.0000 N 0.1832 NC 11.04 Ck Path haeulta Path 57 G Path 58 CR Path 59 WP Path 60 CR Path 61 CR Path 62 WP Path 63 CR Path 64 3 Neat kata, Stu/hr 221.4154 37.34344 37.34343 37.34344 95.702e6 215.3622 215.3621 76.93206 NTC, Stu/ftthrer 0.2251 NC 0.2134 NC 11.04 Ck 0.2134 NC 0.1900 NC 11.04 Ck 0.2323 NC 0.2466 NC Path Beaults Path 65 NP Path 66 CR path 67 CR Path 68 WP Path 69 CR Path 70 CR Path 71 WP Path 72 CR Neat Ra64. Stu/hr 74.93200 76.93206 0.0000000 0.0000000 0.0000000 0.00b0000 0.0000000 0.0000000 NTC. Stu/ftthrer 0.7944 Ck O.2486 NC 0.0000 11.04 Ck 0.0000 0.0000 11.04 Ot 0.0000 Path Results Path 73 G Path 74 WP Path 75 G Path 76 CR Path ?? WP Path 78 CR Path 79 CR Path 80 WP Meat Sata. Stu/br 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 NTC, Stu/ftthrop 0.0000 11.04 Ck O.0000 0.0000 11.04 06 0.0000 0.0000 11.03 Ot Path Raoults Path 81 G Path 82 CR Path $3 WP Path 44 G Path 85 CR Path 86 WP Path 87 CR Path SS O Nast Rate. Stu/br 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 NTC. Stu/ftthrop 0.0000 0.0000 11.03 Ch 0.0000 0.0000 11.03 Ck 0.0000 0.0000

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Path teoults Peth 99 WP Peth 90 CR Path 91 CR Path 92 WP Path 93 8"9 rath 94 Ot Peth 95 WP Path 96 O 1 Rest Aste, Stu/br 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000090 IrFC, Dtu/ftthrer 11.03 Ck 0.0000 0.0000 11.03 Ck 0.0000 0.0000 11.03 Ck 0.0000 Path Results Path 97 Qt path 98 WP Path 99 CR Peth 100 CR Path 101 WP Path 102 CR Path 103 O Path 104 WP Neat Ra m. Stu/hr 11.98157*

2347.912 2307.912 19.94932 4002.146 4ts02.148 30,73045 6165.008 -

WTC, Stu/f tttwer 1.30005-03 27 11.04 Ck 1.627 Ra 1.30005 03 IT 11.04 Ck 3.000 ET 1.30005-03 IT 13.04 Ck j Peth Roeulte path SOS G Peth 106 m Path 107 WP Path 108 CR Path 109 CR Path 110 WP Path 113 CR Path 112 CR

................... ............ ............ ............ ............ ............ ............ ............ ............ 3 West Race. Stu/hr 6165.005 434.5432 726.1940 726.1985 21.92704 4370.035 4370<034 94.70774 '

WTC, Stu/ftthrer - 3.000 ET 3.3321 NC 11.04 Ck 0.3794 NC 1.30005-03 IT 11.04 Ck 1.627 at 0.2368 he path Results Path 113 CR Path 114 CR Path 115 CR Path 116 CR Path 117 CR Pett 118 m Path 119 CR Path 120 CR '

heat Rate, Dtu/hr 0.0000000 0.0000000 0.0000000 269.4713 201.1275 63.13204 l 10.95??1 0.0000000 i NTC, Stu/ftPhrer 0.0000 0.0000 0.0000 0.237S tm 0.2362 as 0.2373 ha 0.2382 an 0.0000 '

Peth Results Peth 121 CR Pett 122 CR Path 123 CR Path 124 m Path 125 m Peth 126 O Path 127 CR Peth 120 CR -l

................... ............ ............ ............ ............ ............ ............ ............ ............ (

Noet kate. Stu/hr 0.0000000 39.16067 0.0000000 0.0000000 0.0000000 .63.03912 126.0278 89.6595 NTC, Stu/ftPhrsP 0.0000 0.2308 Ra 0.0000 0.0000 0.0000 0.2300 an 0.2376 na 0.2375 ha Peth Results Path 129 CR Peth 130 O Path 131 m Path 132 CR Peth 133 M Fath 134 CR Path 139 CR Path 136 m Neat mate, Stu/br 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 3375.927 0.0000000 1*S2.197 arrC. Stu/ftthrer 0.0000 0.0000 0.0000 0.0000 0.0000 0.2578 Ra 0.0000 0.2595 Ra Pam R.euu. Pam u, . Pam u. CR Pam 139 . Pam 140 .

I Neat Rate, Stu/br 4 D4.278 301.6525 4344.102 34.18643 MTC, Stu/ftthrer 0.2595 as 0.2360 Ra 0.2578 to 0.2375 Ra (WIh0P(21,1 1.2)s 0.0000000005 00 0.0000000008 00 1

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a KITTY 6 03.7.481. 6.0 Pro 3ect No.s 09050 059 I meet tr.out 06/25/97 08:01:08 Date 030 1 Caos 1 after step no. 99, time (SA) Se 0.500000 hre ,

t 15 rejected CH etops, mest tame step to 1.5920823-02 hre.

Node Raoults Mode 1 AJ Node 2 At Mode 3 AI Nade 1

4 Al Name 5 8% Note 4 BI Nede 7 31 mode g gg I Tonyerature, er ............ 134.1903 142.3134 ............ 112.7258 208.3487 150.8600 95.00000

............ ............ l Deasaty, Ita/ft**3 95.00000 104.0000 '

6.60000005-02 6.6000000E-02 6.60000005 02 6.60000003 02 f.60000003-02 6.60000003-02 6.60000005-02 6.60000003 02 N .eeulte Nede 9N Node 10 A: N. Si A Mode 12 .i Mode 13 1 N. 14 .x N . 15 1 Nede 1

Temperature, of 459.6700 112.9061 108.0000 104.0000 162.0000 200.0000

............ ............ 16 .

Density, Ita/ft**3 0.0000000 960.0000 459.6700 l

6.80000005 02 6.60000003-02 6.6000000B-02 6.60000003 02 6.60000003-02 6.60000005-02 0.0000000 i

4 Mode Resulte Mode 17 m Node 18 N Node 19 NT Nade 20 WB Node 21 WT Node 22 NH Nede 23 WT Node 14 uu I

................... ............ 459.6700 Temperature, or 459.6700 ............ ............

110.9490 105.8393 123.8296 109.0002 i

Denesty, lan/ft**4 0.0000000 111.6431 100.2368 I

{ 0.0000000 145.0000 145.0000 35.56000 35.56000

145.0000 145.0000 l Node Resulte Nede 25 WT Nade 26 NM Node 27 WT Wade 28 WR Node 1
4. 29 WT Wode 30 NH Nede 31 WT Nede 33 uH l ................... 123.3534 Temperature, oF ............ 119.4197 110.9490 105.0393 109.0376 99.86434 Density, 12sm/ft**3 35.56000 122.4132 97.40658 a

35.56000 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 made Resulte Nede 33 WT Wade 34 WM Node 35 WT Node 34 un pode 37 WF Node 38 um Nede 39 wt Node 40 un Temperature, or ............ 112.358.

111.9783

............ 119,7503 108.7375 111.0631 200.0073 Denesty, abm/ft**3 123.0296 109.0002 145.0000 145.00,0 60.64000 60.64000 145.0000 145.0000 35.56000 35.56000 Node Resulte Nede 41 UT Mp4 42 WM Mode 43 WT Nede 44 WR Node i

45 WT Node 46 WM Wade 47 WT Nede Temperature, eF ............ 104.9997 108.9813 109.1508 109.0010 111.8631 108.2130 et uu i 118.6869 108.1861 Denesty, inn /ft**3 145.0000 145.0000 145.0000 145.0000 145,0000 145.0000 60.64000 60.64000 l Mode Resulte Mode 49 WT Mode 50 uu Mode 51 WT Nede 52 NN Node la WT Node 54 NH Node 55 WT unde 56 WK

................... 110.8100 Toeperature, or ............ ............

108.0000 119.8842 109.0001 109.1636 109.0011 Denesty, thn/ft**3 109.9929 105.6125 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 145.0000 145.0000 Mode Resulte made 57 WT Nude 58 NH Node 59 WT Node 60 Nu Mode 61 WT Node 62 NR Node 63 WT Node 64 WR

................... 106.8535 Temperature, eF ............ 105.4225

............ 109.8955 105.8393 101.0050 97.25870 Donetty, 1bm/ft**3 121.1747 109.2862 145.0000 145.0000 145,0000 145.0000 35.56000 35.54000 145.0000 145.0000 Mode Reevite Node 65 WT Node 66 NR Node 67 WT Node 68 NR Node 69 WF Node 70 WM Nude 71 WT Node 72 WK

................... 121.1747 Toeparature, or ............ 100.9775 121.1747 108.0019 121.1747 Denesty, Iba/ft**3 200.0020 108.2456 109.2930 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Mode Resulte made 73 WT Node 74 wu mode 15 WT Node 16 us pode 77 WT Nude 78 un mode 79 WT Node 80 WR

................... 108.2449 Temperature, eF 100.0003 100.0091 109.2929 108.2613 108.9824 108.2607 104.0001 Denesty, Iba/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 1

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l Nede assults Nede 41 NT Mode 82 NN Nade 43 N Name 04 W Nede 85 N Nede 86 5 Nede 87 N Nede et N

................... 100.0006

............ 100.9827............ 459.6700

............+459.6700

............ ............ .459.6700 Teeperature, or s

' 469.6700 459.6700 499.6700 I Doestty, las/tt**3 145.0000 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 .

Nede Results  !

Nede 69 N Nede 90 W Nede 91 N Nede 93 NT Nede 93 NN Nede 94 NT tiede 95 WM Nede ~ 94 NT 4

................... 459.8700 Teeperature, or ............ 459.4700............ 459.6700

............ 139.0937

............ 786.2948 141.6210

............ ........ .. i 7

" Does&ty, lhe/tt**3. 0.0000000 159.1616 141.9114 j 0.0000000 0.0000000 145.0000 145.0000 145.0000 145.0000 2 145.0000 +

1 Nede Raoulte Nede 97 NN Nede 90 NT Nede 99 WM Nede 100 NT Nede 101 WN 4,  ;

................... ............ ............ ............ ........ .. ............ i Temperature er 159.1618 109.0369 100.2182 139.4625 786.2948 k Doestty, 1Ne/tt**3 145.0000 145.0000 145.0000 145.0000 145.0000 '

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E27FT4 03.7.481. 6.0 Pre 3ect 8!e.: 09050-059 eser.tr.out 06/25/97 08:01 08 Page 032 Path Results Path 1Q Path 2 WP Path 3 CR Path 4 CD Path 5 kP Path 6N Path 13 Path 8 WP

................... 2675.351 Neat Rate. Stu/hr ............ 3007.101 61.53203 3724.339 3604.245 0.0000000 3rTC. Stu/f tthrer 0.5924 2393.521 2758.623 NC 11.04 Ch 0.2323 NC 0.4975 NC 0.7944 Ck 0.0000 N 0.5866 NC 11.04 Ck Path Resulte Path 9 CR Path 10 G Path 11 WP Path 12 CR Path 13 CR Path 14 WP Path 15 CR Path 16 CR

................... 198.3421 heat Rate. Stu/hr ............ 5790.256 5619.372 4162.775 21084.9' 24111.99 MTC, Stu/ftthreP 0.3162 444.9931 7835.544 NC 0.5014 NC 0.7944 Ck 0.4620 NC 0.5924 NC 11.04 Ck 0.2323 NC 0.6040 NC Path Results Path 17 WP Path 10 CR path 19 CR Path 20 WP Path 21 CR Path 22 CR Path 23 WP Path 24 CR

................... 9076.724 Neat Rate, Stu/br ............ 607.0517 1974.217 1959.145 119.1382 6398.033 7373.259 8524.993 NTC, Stu/ftthrer 11.04 OL 0.3203 NC 0.5098 NC 0.7944 Ck 0.2539 NC 0.5859 NC 11.04 Ck 0.6291 NC Path Results Path 25 O Path 26 WP Path 27 CR Path 28 CR Path 29 WP Path 30 CR Path 31 m Path 12 WP

................... 2809.316 heat Rate. Stu/hr ............ 2382.547 208.2005 1482.554 1700.700 3.777545 1508.119 1459.497 NTC, Stu/ftthrer 0.5313 NC 1.057 3 0.2999 NC 0.5864 NC 11.04 O 0.1333 NC 0.4975 NC 0.1944 Ck Path Results Path 33 p Path 34 Ck Path 35 WP Path 36 N Path 37 CR Path 38 WP Path 39 W Path 40 m Neat Rate. Stu/br 0.0000000 8.576665 7.230901 0.0000000 263.7173 208.4612 0.0000000 M7C, Stu/ftthreP 0.0000 2572.142 N 0.1634 NC 11.04 m 0.0000 N 0.2093 NC 11.04 Ck 0.0000 N 0.5866 NC Path Results Path 41 WP Path 42 CR Path 43 O Path 45 CR Path 44 WP Path 46 CR Peth 47 WP Path 48 CR

................... 2964.490 Heat Rate. Stu/hr ............ 303.0123

............ 2009.889

............ 1708.034 293.518s 3791.747 4465.535 2.20136268-07 NTC. Btu /ftthrer 11.04 Ck 0.3124 NC 0.4866 NC 1.057 Ck 0.3032 NC 0.5376 NC 11.04 Ck 3.56598 03 NC Path Resulte path 49 CR Path 50 WP Path 51 N Path 52 CR Path 54 N 53 59 Path Path 55 CR Path 54 WP Heat Rate. Stu/hr 1726.634 1714.823 0.0000000 273.6924 210.4544 0.0000000 7736.475 9148.099 NTC, Stu/ftthrer 0.4572 NC 0.19e4 m 0.0000 N 0.2937 BC 11.04 Ck 0.0000 N 0.5437 NC 11.04 O Path Resulta Path 57 CR Path 50 CR Path 59 WP Path 60 CR Path 41 CR Path 62 WP Path 63 O Path 64 3

................... 221.4154 Neat Rate. Btu /br ............ 254.2363

............ 214.4337

............ 27.34344

............ 6666.707 7884.864 215.3621 259.8673 NTC, 9th/ftthrer 0.2251 NC 0.3442 NC 11.04 Ck 0.2134 NC 0.5445 - NC 11.04 Ck 0.2323 NC 0.3363 NC Path Beaults path 65 WP Path 66 3 Path 67 CR Path 68 NP Path 49 CR Path 70 3 Path 71 WP Peth 12 3

................... 107.7505 Heat Rate. Stu/hr ............ 14.93204 1007 ,.9 45743.80 59.07931 38325.69 32590.15 17.14215 NTC. htu/ftfbreP 0.7944 O 0.2486 NC 0.026 9 NC 11 04 Ck 1.30003 03 IT 0.9297 NC 11.04 Ck 1.30003-03 IT Path Results Path 73 3 Path 74 WP Path 15 CI Path 74 CR Path 77 WP Path 70 CR Path 79 M Path 80 WP Neat Rate. Stu/hr 18320.12 15570.47 3.180576 17514.03 1,093.01 3.164584 218.2638 173.6431 NTC. Stu/ftthreP 0.9297 NC 11.04 Ck 2.70005 03 IT 0.9297 NC 11.04 Q 2.70005-03 XT 0.3609 BC 11.03 m Path Results Path 81 CR Path 82 CR Path 83 WP Path to CR Path 95 CR Path 86 WP Path 07 CR Path 84 m

...................=12.03590 Heat Rate, Stu/hr ............ 142.3054 113.9 '6 8.2794245B-02 4.708876 3.101271 0.024019 210.3341 NTC. Stu/ftphreP 2.70005 03 27 0.3607 NC 11.03 Ck 2.70005-03 XT 0.1540 NC 11.03 Ck 2.70005-03 IT 0.3652 NC Project No.: 09050 059 Calc. No.: BRW.97 0624-M, BYR97 277 Rev. No.: 0 !

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! meer.te.out 06/25/97 08:01:08 Page 033 Path Results Path 09 MP Path 90 CR Path 91 CR Path 92 NP Path 93 CR Patn 94 m Pat.h 95 WP Path 94 CR

................... 168.8223 Neat Rata. Stu/h2 ............ 8.439447............ ............

149.2949 120.4299

............ ............ ............ ............ i j

1.52748065-04 3.4787106R.04 0.6243685 6.125441 NTC. Dtu/ftferer 11.03 Ck 2.70008-03 27 0.3652 NC 11.03 . Ch 1.19205, 02 are 2.70003 03 XT 11.03 j

Ck 2.70005-03 XT i i

Path Results Path 97 CR Path 90 WP Path 99 CR Path 100 CR Path 101 FP Path 102 G Path 103 CR Path 104 WP l i ................... 1.950182 heat Rate. Stu/hr ............ 819.3351............ ............

665911.9 4.541393 1594.009 4002.148

............ ............ I 44.31501 1214.923 IrfC, Stu/ftphrer 1.30005-03 IT 11.04 Ck 16.29 ka 1.3000B 03 IT 11.04 Ck 3.000 27 0.1603 IIC 11.04 Ck Path Beaulte Path 105 CR Path 106 CR Path .107 WP Path 100 CR Path 109 CR Path 110 WP Path 111 CR Path 112 CR

................... 6145.000 Heat mate, htu/hr ............ 0541.509............ ............

9518.848 726.1985 496.3348 275.0122 1564705. 2030.128 itTC, Stu/ftthrer 3.000 IT 0.6994 NC 11.04 Ck O.3794 NC 0.2109 NC 11.04 Ot 16.29 Ra 0.2712 Ra Path Results

.1 Path 113 CR Path 114 CR Path 115 CR Path 115 m Path 117 CR Path 110 CR Path 119 CR Path 120 CR 4 ................... 1973.839 Baet Rate. Btu /hr ............ 3128.031............ ............

2346.553 9347.156 3391.205 1048.644 MTC, btu /ftphreP 2074.861 1459.666

[ 0,2632 ka 0.2709 Ra 0.2627 an 0.2626 Ra 0.2413 . Ra 0.2702 Ra 0.2632 ha Ef.2684 Ra i

, Path Beaults j Path 121 CR Path 122 CR Pet? 123 CR Path 124 CR Path 125 CR Path 126 CR Path 127 O Path 120 CR

................... 665.1390 Meat hate, Stu/hr ............ 822.0765............ 1153.976

............ 1972.917 1907.891 993.1724 3648.713 3139.279 IrfC, Stu/ft.fbreP 0.2632 Ra 0.2712 Ra 0.2632 ka 0.2408 ha 0.2570 km 0.2630 en 0.2564 an 0.2564 na Path Res ate l Path 129 CR Path 130 CR Path 131 CR Path 132 G Path 133 CR Path 134 CR Path 135 CR Path 136 CR '

Heat Rate Stu/hr ............ 3372.833 11882.49 1165.615 777.0794 799.5192 414.1233 580.2994 970.5418 n

Ir!C Stu fitthreP 0.2615 Ra 0.2558 ka 0.2615 Ra 0.2615 Ra 0.2558 as 0.2761 Ra 0.2558 km 0.2778 Ra '

Path Rakults I Path 137 CR Pat' 138 CR Pata 139 CR Path 146 CR West Rate, Stu/hr 78.50506 31.o.a ? 450.2326 1185.895 IrfC, Stu/ftthreP 0.2837 Ra %ma as 0.2820 An 0.2626 an m

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i KITTV4 03.7.48 . 6.0 Proyect No.: 09050-059 meer tr.out 06/25/97 08:01:16 Page 034  !

I Case 1 after step no. 124 thee (IA) is 1.00000 hrt, 14 re3ected CN eteps, neat tame step to 3.1953623 0J hrs. i I

1 Node Resulta Mode 1 Al Nede 2 At Mode 3 A1 Node 4 A2 Wode i 5 33 Node 4 St Nor3e 7 31 Node 3 33 i .............. .... ............

Teemerature of 145.4375 136.7568

. . .113.0146

. . . . . . .108.3564 150.6000 95.00000 I

Denaaty, laus/f t"3 95.e0000 104.0000 1

i 6.60000003 02 6.60000003 02 6.60000603-02 6.60000005-02 4.60000003 02 6.60000005 02 6.60000003-02 6.60000003-02 e Mode Results Mode 9N Node 10 AI Node 11 A2 Node 12 BI Node 13 BT Mode 14 32 Nede 15 31 Node tg n

]

Teeperature, eF 459.6700 113.1211 108.0006 104.0000

. . . .162.0000 . . . . . . . 200.0000 Donatty, ina/f t"3 960.0000 459.6700 g 0.0000000 1 6.60000003 02 6.60000003-02 6.60000005 02 6.6000000E 02 6.60000005 02 6.60000003-02 0.0000000 Node Resulte Mode 17 N Node 10 N Node 19 WT Neda 20 Wu pode 21 trT dode 22 un mode 23 trT Nede

  • ................... 459.6700 Toeparature, oF

............ 459.6700

............ 113.2299

............ 105.8393

............ ........ 129.5926

... ............ ............ . 24 WM 109.0134 114.1091 108.3511 Donalty, aba/f t"3 0.0000000 0.0000000 '145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 Node Results Mode 25 WT Node 24 Nu Node 27 WT Node 20 WM Node 29 WT Node 30 WH Node 31 trT Nede 12 Wu

................... ............ . . . . . . . . . . . . . ...........r ........u...

Tampetature, e7 ............ ............ ............ ............

129.2427 123.8257 113.2299 105.8393 111.3776 99.86434 120.3319 4 Donalty, Itut/f t"3 35.56000 97.40658 35.56000 145,0000 145.0000 145.0000 145.0000 35.56000 35.56000 hode Resulta Node 33 t'T Node 34 WM Node 35 IPT Node 36 WR Nede 37 err pode 34 WR Nede

................... 114.2216 Temperature er ............ ............

113.8949 125.4001 109.1783 114.1090

............ ............39 .trr-Mode- 40 Wu 108.0124 129.5926 109.0114 Donalty, 11ae/tt"3 14b.0000 145.0000 60.64000 60-64000 145.0000 145.0000 35.56000 35.54000 i

Node Sesults Mode 41 WT Nede 42 NH Node 43 WT Node 44 WR Node 45 WT Node 46 wu Mode 47 err Mode 40 WM q

}

................... '108.9744 Temperature, oF ............ 108.9977 109.2455 109.0149 114.1091 108.3368 120.9357 109.2274 Densaty, abs /f t"3 145.0000 145.0600 145.0000 145.0000 145.0000 145.0000 60.64000 60.64000 Mode Resulte Node 49 erT Mode 50 NH Node 51 WT None 52 NH Node 53 WT Nada 54 WM Node 55 WT Node 56 Wu j

Temperature, eF ............ 108.0012 112.4404 124.1919 109.0087 109.2588 Doneity, Iba/f t"3 109.0163 111.6441 105.6725 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 145.0000 145.0000 1 Node Resulta mode 57 Irf made 58 WR Node 59 WT Node 60 WE Wode 61 WT Node 62 WR Node 63 WT Node 64 WM j ................... ............ ............ ............ ............ ......,..... ............ ............ ............

Temperature, eF 104.9983 105.4225 111.5490 105.8393 107.7009 97.25070 125.6689 110.0855 l Donalty, lan/f t"3 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 145.0000 1 145.0000 Mode Resulte Mode 65 Irf Mode 64 WH Node 67 trf Mode 60 WM Node 69 WT Node 70 WR Node 71 087 Node 72 su 1

Temperature, or ............ 109.5720 125.4688 125.6688 104.0034 125.6648 108.0035 108.4092 110.1006 Density, 1bm/ft**3 145.0000 145.D000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Mode Resulta Mode 73 WT Node 74 WM Node 75 WT Node 76 NE Node 77 WT Wade 78 WM Node 79 WT Node 30 Wu

................... 108.3640 Temperature, e7

............ .t............

os .0052 10s.0382 110.0959 105.4200

' 109.5851 109.4003 100.0054 Density, 1bm/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 s

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I j EITTY4 03.7.441. 6.0 Project No.r' 09050 059 emer-tr.out 06/28/97 08:01:16 page 035 Mede Oesulte Mode at trr pode 02 NN Node 83 N - Mode 84 N Nede 25 N Nede 66 N Nede 31 N Nede og N

................... 104.020$

Temqnerature, eF ............ 109.5798

............ 489.6700 459.6700 459.6700 459.6700 459.6700 449.6100 Dess&ty. Ihm/f t"2 145.0000 145.0000 0.0000000 0.0000000 0.0000000 0.000M00 t

0.0000000 0.0000000 I

Mode Ossulte Nede 49 N Node 90 W Nede 91 N Nede 92 trr Nede 91 uu Nede 94 trr Nede- 95 uu Mode 96 art

................... 469.6700 Temperature, or 469.6700 489.6700 139.6006 341.2126 142.2104 159.1616 142.8122 Demetty. Itai/f t**3 0.0000000 0.0000000 0.0000000 145.0000 145.0000 145.0000 145.0000 145.0000 Nedo Oesulte lied e 91 Mu Made 98trr Nede 99 HIl Nede 100 Irr pode 101 uit Wrature, or 199. 416 111.5104 100.2112 140.4451 041.2124 Doesity lame /tt**3 14 8. 00v,' 145.0000 145.0000 145.0000 145.0000 l

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4 RITTV6 03.7.481. 6.0 Project No.: 090$0 059 meer-tr.out 06/25/97 08:01:16 Pete 036 j

Path Beaults Path 1 CR Path 2 NP Path 3 CR Path 4O Path 5 WP Path 6N Path Meat Rate. Stu/hr 2771.411 3492.382 61.53203 3034.340 3871.685

............ ............7 ............CR Path & WP 0.0000000 2485.745 3134.690 M . Stu/ftthreF 0.5914 NC 11.04 Ck 0.2323 NC 0.4728 NC 0.7944 ,

Ck 0.0000 N 0.5921 NC 11.04 Ck I

  • i Path Results Path 9 CR Path 10 3 Path 11 WP Path 12 CR Path 13 CR Path 14 WP Path 15 CR Path 16 CR

................... -203.3463 Neat Rate. Stu/hr 4704.939 6001.241 3487.233 I

21844.11 27526.76 464.9921 8085.418 NTC, Stu/ftthrer 0.3182 NC 0.4763 NC 0.7944 Ck 0.4422 NC 0.5976 NC 11.04 2 0.2323 NC 0.6087 NC Path Resulta Path 17 WP path it CR Path 19 CR Path 20 We Path 21 CB Path 22 CR Path 23 WP Path 24 CR Neat Rate, Stu/hr

............ 607.8517 10179.68

............ 1617.573 ............ ............

2075.211 119.1382 6646.251 8377.317 4065.337 NTC. Stu/ftthrer 11.04 0 0.3203 NC 0,4s49 NC 0.7944 Ck O.2539 NC 0.5924 Jec 11.04 Ck 9.620s NC I

1 Path Results Path 25 CR Path 26 WP Path 27 CR Path 20 CR Path 29 WP Path 30 CR Path 31 CR Path 32 WP J

West kate. Stu/hr 2452.889 2841.S10 273.7628 1839.683 1941.691 3.815439 1220.721 1847.794 NTC. Stu/ftthrer 0.5102 NC 1.057 Ck 0.2961 NC 0.8921 NC 11.04 Ck 0.1336 NC 0.4728 MC 0.1944 Ck Path Results Path 33 N Path 34 CR Path 35 WP Path *6 N Path 37 CR Path 30 WP Path 39 N Path 40 m Beat Rate htu/hr 0.0000000 8.313564 7.42105a 0.0000000 282.9379 243.8166 0.0000000 2671.249 UTC Stu/ftthroF 0.0000 N 0.1621 NC 41.04 Ck 0.0000 N 0.2944 NC 11.04 Ck 0.0000 N 0.5921 NC path Results Path 41 WP path 42 CR Path 43 O Path 44 WP Path 45 CR Path 46 CR Path 47 WP Path 44 CR Heat Rate. Stu/hr 3368.630 212.9471 1756.872 2047.426 272.2722 3905.869 5108.813 2.66247645 03 M . Stu/ftphrer 11.04 Ck 0.3161 NC 0.4726 NC 1.057 Ck 0.2976 NC 0.5446 NC 11.04 Ck 1.62828-02 NC Path haeults Path 49 CR Path $1 WP Path $1 N Path $2 CR Pech $3 WP Path $4 W Path Neat Rate. Stu/hr 1452.646 1862.874 0.0000000 205.3971 247.4794

............ ............55 ............

CR Path 56 WP 0.0000000 8127.334 10409.29 NTC. Stu/ftphreF 0.4380 NC 0.1944 Ck 0.0000 N 0.2965 NC 11.04 Ck 0.0000 N 0,5904 NC 11.04 Ck Path Beaults Path S7 CR Path 58 CR Path $9 WP Path 60 3 Path 61 CR Peth 62 WP Path 61 O Path 64 CR Neat mate. Stu/hr 221.4154 260.1946 232.0493 27.34344 7001.122 8966.339 215.3621 240.0249 NTC. Stu/ftthreF 0.2251 NC O.3455 NC 11.04 Ck 0.2134 NC 0.S$11 NC 11.04 Ck 0.2323 NC 0.3297 NC Path Results Path 65 WP Path 66 CR Path 67 CR Path 68 WP Path 69 CR Path 70 CR Path 71 WP Path 72 CR Nest Rate. Stu/hr 203.6084 76.93204 93260.66 83960.39 63.23760 35447.19 31912.29 18.44178 UTC btu /ftthrer 0.7944 Ch 0.2406 NC 0.9110 NC 11.04 Ck 1.3000s.03 IT 0.9119 NC 11.04 Ck 1.30005-03 IT Path Results Path 73 CR Path 74 WP Path 79 CR Path 76 CR Patt 77 WP Path 70 CR Path 79 O Path 60 WP Neat Rate. Stu/hr 16944.17 15254.47 3.382594 16194.62 14583.27 3.302373 226.4176 182.9783 M , Btu /fttbreF 0.9118 NC 11.04 3 2.7000$-03 IT 0.9118 NC 31.04 Ck 2.70003 03 IT 0.3642 NC 11.03 m Path Resulta Path 81 CR Path 52 CR Path 83 WP Path 84 CR Path SS CR Path 66 NP Path 87 CR Path 88 CR Heat Rate. Stu/hr 12.88030 148.6629 129.0705 0.34494135-02 4.318214 5.476291 8.580011 213.7288 HTC. stu/ftFhrer 2.7000s-03 IT 0.3648 MC 11.03 Ca 2.70005-03 IT 0.1508 NC 11.03 Ck 2.70003 03 IT 0.3666 NC Project No.: 09050 059 Cale.No.: BRW.97-0624.M, BYR97 277 Rev.No.: 0

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E!7TY6 03.7.481. 6.0 Pre 3ect No.: 09050-059 neer.tr.our. 06/25/97 06 ef'1:16 Pa9e 037 Path Results Path 89 WP Path 90 CR Path 91 CR Path 92 WP Path 93 CR Path 94 CD Path 95 WP Path 96 CR

................... 176.8753 Heat Rate, Stu/br ............ ............

9.096503 152.5236 133.0849 1.56366628-02-4.83106798 03 7.226638 6.603579 NTC. Dtu/f tthreP 11.03 Ck 2.70005-03 ET 0.3672 NC 11.03 Ck 3.75885,02 NC 2.70005 03 IT 11.03 OL 2.70005-03 ET Path Results Path 97 CR Path PS NP Pata 99 CR Path 100 CR Path 101 WP Path 102 CR Path 103 CR Path 104 WP heat tate. Stu/hr 1.163807 544.5743 628083.9

+3.333224

-1272.869 4002.146 575.0109 34.90304 NTC. Stu/f tPhreP 1.30005-02 IT 11.04 Ck 17.28 Rs 1.30003 03 IT 11.04 Ck 3.000 ET 0.3025 pc 11.04 Ck j Path Results Path 10$ C2 Path 106 CR Path 107 WP Path 100 CR Path 109 CR Path 110 WP Path 111 CR Path 112 O Heat Rate. Stu/hr 4165.005 8740.921 10586.47 726.1984 1940.028 897.9859 1149435. 1779.593 NTC. Stu/ftPhrer 3.000 ET 0.7034 NC 11.04 Ck 0.3794 NC 0.3725 NC 11.04 Ck 17.28 Ra 0.2773 km Path Results Path 113 S Path 114 CR Path til CR Path 116 CR Path 117 CR Path 118 CR Path 119 CR Path 120 CN Meat Rata. Stu/hr 1120.075 2737.172

............ ............ ............ ............ ............ ........,g..

2108.621 9732.044 3820.038 922.1156 2999.199 1319.720 NTC. Stu/ftPhreP 0.2664 Ra 0.2771 Ra 0.2674 ha 0.2662 Ra 0.2650 Re 0.2764 ha 0.2669 ha 0.2745 Ra j Path Results l Path 121 CR Peth 122 CR Path 123 CR Path 124 Ck Path 125 CR Path 126 CR Peth 127 CR Path 128 C2

................... 693.7794 Heat Rate. Stu/br

............ 720.6253 1203.643 986.6829 1901.201 887.5810

............ ............ l 3827.864 3292.568 NTC. Stu/ftPhreP 0.2668 Ra 0.2773 Ass 0.2468 Ra 0.2654 Ra 0.2598 Ra 0.2676 Ra 0.2593 l Ra 0 2$92 Rn -

Path Results Path 129 O Path 110 CR Path 131 CR Path 132 3 Path 133 CR Path 134 G Peta 135 CR Path 134 CR Neat Rate. Stu/hr 12848.99 3466.409 1260,127 640.1869 668.8918 249.0980 630.7610 717.9832 I M7C. Stu/ftPhreP 0.2641 Ra 0.2579 Ra 0.2642 Re 0.2641 Ra 0.2579 Ra 0.2782 ha 0.2579 Ra 0.2800 Rn Path Results Path 137 CR Path 138 CR Path 139 CR Path 140 CR e.................. ............ ............ ............ ............

Heat Rate. Stu/pr 644.7082 3294.868 793.3541 1234.726 NTC, Stu/ft?hreP 0.2866 ha 0.2681 ha 0.2s49 Ra 0.1662 km (W1AOP(11.2 1.23 0.000000000B.00 0.000000000s.00 -

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KITTY 6 03.7.481. 6.0 i Pro 3ect No.: 09050-059 emer.tr.out 06/25/97 08:01:24 Dage 035 Case 1 af ter step no. 148, taan (KA) la 2.00000 hrs. 16 re3ected 04 steps, next ties step is 6.3719218 02 hrs.

Node Resulte Mode 1 A2 Mode 2 A3 Node 3 A1 Node 4 A2 Mode 5 BI Node 1

6 BI Node 7 31 Mode 3 33 I

................... 145,7253 Temperature, eF ............ 139.5583 113.3850 100.4592 150.sobo 95.00000 Densaty, ibs/f t") 95.00000 104.0000 6.60000003-02 6.60000008 02 6.60000003-02 6.60000005-02 6.60000005 02 6.60000005-02 6.60000005 02 6.60000003-02 Mode Resulta Mode 9N Node 10 Al Node la A2 Node 12 31 Mode 13 BI Node 14 31 Mode 15 St Mode 16 N

................... 459.6700 Temperature. e? ............

113.4095 108.0379 104.0000 162.0000 200.0000 960.0000 459.6700 Donalty, ibs/f t") 0.0000000 6.60000005-02 6.60000005 02 6.40000003-02 6.60000005 02 6.6000000B-02 6.60000005-02 0.0000000 Mode Results pode 17 N Node 18 N Wode 19 WT Node 20 WM Ncde 21 WT Nede 22 WM Node 23 WT Node 24 WM

..............e....

Temperature, or ............ ............

459.6700 459.6700 114.2928 105.5393 135.0661 Desalty, Iba/ft**3 0.0000000 109.2912 117.1339 108.6006 0.u000000 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 Mode Results Node 25 WT Node 26 WM Node 21 WT Nede 28 WM Node 29 WT Nede 30 WN Node 31 WT Node 32 WK

................... 134.7929 Tesperature, eF

............ 128.2479 116.2928 105.8393 114.5114 99.86634 133.9234 97.40662 Density, Iba/ft"3 35.56000 35.56000 145.0000 145.0000 145.0000 145.0000 35.56000 35 56000 Node Resulte Nede 33 WT Node 34 WM Node 35 WT Node 26 WM Node 37 WT Nofe 34 NN Nede 39 WT Node 40 WM j

................... ............ ............ ............ ...... - ............ ............ ............ ............ 1 Temperature. er 117.3182 115.9105 131.1014 109.6961 111.1298 100.0993 135.0661 109.2912 Doestty. Abe/tt**3 145.0000 145.0000 60.64000 60.64000 I 145.0000 145.0000 35.56000 35.56000

)

Mode Results Nede 41 WT Node 42 WM Node 43 WT Node 44 WM Nede 45 WT Nodo e6 WR Nede 47 WT Node 44 WM

................... 108.9672 Temperature, eF ............ 108.9905 109.3874 109.0863 117.1131 108.5899 Density, ibs/f t"3 145,0000 125.3361 105.7264 145.0000 145.0000 145.0000 345.0000 145.0000 60.64000 60.64000 Mode Results pode 49 WT Node 50 WM Node 51 WT Node 52 WM Nede 53 WT Node 54 WW Node 55 WT Nede 56 MN

................... 114.4950 Temperature, or 108.0611 128.5345 109.2142 109.3978 109.0913 113.9341 105.6725 Density. Imm/ft**3 145.0000 145,0000 35.56000 35.56000 145.0000 145.0000 145.0000 145.0000 Mode Results Mode 57 WT Node 54 NN Node 59 WT Node 60 WM Nede 61 WT Node 62 WM Node Temperature, eF 107.1993 105.4225 113.8435 105.8393 104.3584

............ ............63............

WT Node 64 WM 97.25871 131.1290 111.2883 Density, Iba/ft**3 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 Mode Beaulte Mode 65 WT Node 66 WM Node 67 WT Node 68 WM Node 69 WT Node 70 WM Node 71 WT Node 72 NN Temperature, eF 131.1283 110.4943 131.1259 108.0470 131.1259 108.0471 108.8450 111.3150 Density, Iba/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Node Results Mode 73 WT Node 74 WM Node 75 WT Node 76 WM Node 77 WT Node 78 WM Node 79 WT Wode 80 NN Temperature, eF 108.5528 108.0526 100.3945 111.2465 100.7942 110.5197 104.5949 108.0547 Donalty, iba/f t"3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 i

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EITTV4 03.T.441. 6.0 Project No.s 09050 059 meer.t r.eut 06/25/97 04:01:24 Date 019 Nees Seoulte made el Irf Nase 82 WM Nede 83 N Nees 84 N Noes 85 N Nede 66 N Nede 87 N Nees as N

................... 108.2141 Tagoreture, et

............ 110.4669 459.6100 469.6100 459.6700 459.6700 469.6700 459.6700 4

4 Density. Ihm/ft*** 145.0000 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 Neen moeulte Nees 89 N Neen 90 N Noes 91 N Noes 92 WT Node 93 wn Weee 94 wt Noes 9s un None 96 wy Tegerature, or 459.6?00 - 459.6700 459.6700 140.5491 0?8.4565 141.0171 159.1616 144.3063 Donetty, 1Nm/ft**3 0.0000000 0.0000000' . 0.0000000 145.0000 145.0000 145.0000 145.0000 145.0000

, Nede Resulte Nede 97 MW Nede 94 trf Node 99 WK Nees 100 WT Nees 101 WM Temperature, eF 159.1616 114.9403 100.2152 141.fr249 878.4545 Deestty, 1Nm/ft**3 146.0000 146.0000 145.0000 145.0000 145.0000 4

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i EIT7T6 03.7,481. 4.0 Protect No.: 09050 099 emer.tr.eut 06/28/97 00:01:24 Pape 040 I

Path Results Path 1 CR Path 2 NP Path 3 CR Path 4m Path $ WP Path 6N Path I

7 CR Path 8 NP

................... 2797.174 Heat kate, Stu/hr ............ 3712.326 61.53203 2490.717 3871.342 0.0000000 j

2S13.831 3340,043 l NTC, Stu/ftthrer O.8989 BC 11.04 3 0.2323 NC 0.4502 Ck 0.0000 NC 11.04 NC 0.7944 , N 0.5938 m Path Results Peth 9 CR *eth 10 CR Path 11 NP Path 12 CR Path 13 CR Path 14 WP Path ES CR Path 16 CR

................... 205.S771 heat Rate. Stu/hr

............ 3851.S48 SS15.371 2910.822 22047.17 29260.35

............ ............ l 484.9921 8134.053 N7C, Stu/f tthref 0.3190 NC 0.4532 NC 0.7944 Ck 0.4231 NC 0.5989 NC 11.04 Ck 0.2323 BC 0.6096 i

NC  !

Path Results

................... fath teat Rate, Stu/hr

.....17.....

10764.45 NP Path 10 CR Path 19 CR Path 20 NP Path 21 CR Path 22 CR Path 23 WP Path 24 m 607.0517 1334.593 1911.352 119.1408 5700.427

............ ............ i 8452.106 .7472.092 MTC. Stu/ftthrer' 11 04 Ck 0.3203 NC 0.4623 NC 0.7944 Ck 0.2939 NC 0.5926 NC 11.04 m 0.6089 NC  ;

i Path hasults Peth 25 CR Path 25 WP Path 27 CR Path 28 CR Path 29 NP Path 30 CR Path I 31 CR Poth 32 NP '

Neat Rate, Stu/hr 2080.105 2784.712 259.8452 1597.162

.....2069.904 4.050811 1008.507 3446.133 I M . Stu/ftthref 0.4497 NC 1.057 Ck 0.2923 NC 0.8938 NC 11.04 Ck 0.1356 NC 0.4502 NC 0.7944 Ch Path Results Path 33 N Path 34 CR Path 35 NP Path 36 N path 37 CR Path 38 NP Path 39 N Path

................... 0.0000000 Meat kate, Stu/hr 6.406944 6.179098 0.0000000 305.9709

............ ............ ............40 C3L 274.4435 0.0000000 2701.136 NTC, Stu/ftthrer 0.0000 N 0.1519 NC 11.04 Ck 0.0000 N 0.3002 NC 11.04 Ch 0.0000 N 0.$938 NC Path heeults Path 41 WP Path 42 CR Path 43 CR Path 44 NP Pach el CR Path 46 m Path 47 NP Path 48 CR

................... 3509.402 Neat Date. Stu/hr 220.0803 1524.999 2051.297 252.8644 4108.944 NTC, Stu/ftthreF 5532.682 0.3842183 11.04 Ck 0.3187 NC 0.4563 NC 1.057 m 0.2921 NC 0.6446 NC 11.04 Ck 5.4910R-62 NC Path hesults Path 49 CR Path 50 WP Path $1 N Path $2 m Path $3 WP Path 54 N Path SS CR Path S6 NP Heat Eate, Btu /hr 1220.839 1758.148 0.0000000 300.1807 270.3966 0.0000000 8349.000 11230.70 M . Stu/ftthreF 0.4195 NC 0.7944 Ck 0.0000 5 0.3005 NC 11.04 Ck 9.0000 N 0.S$41 NC 11.04 Ck Path Beaults Path $7 m Path SS CR Path 59 NP Path 60 CR Path 61 CR Path 62 WP Path 63 CB Path 64 CR Neat Rate, Stu/hr 221.41S4 265.1600 245.0323 37.14344 7189.985 9669.844 213.3621 222.9310 m , Stu/ftfbreF 0.2281 BC 0.3471 NC 11.04 Ck 0.2134 NC 0.3540 NC 11.04 Ck 0.2323 NC 0.3237 NC Path heaults Peth 68 NP Path 66 CR Path 67 CR Path 60 NP Path 69 CR Path 70 CR Path 71 WP Path 72 CR heat Rate, Stu/hr 201.M S9 76.93218 64261.55 78694.87 64.96722 32027.14 29912.45 19.76056 M7C, Stu/ftthroF 0.7944 Ck 0.2486 NC 0.8491 NC 11.04 Ck 1.30005 03 IT 0.8093 NC 11.04 Ck 4.30005 03 IT Path Results path 73 CR Path 74 NP Path 75 CR Path 76 m rath 77 WP Path 78 m Path 79 CR Path to WP Heat Rate. Stu/hr 15310.00 14300.93 3.603160 14636.43 13471.59 3.460382 222.1485 154.9609 M , Stu/ftfhrwF 0.0592 NC 11.04 Ck 2.70008 03 IT 0.8892 NC 11.04 Ck 2.70003-03 IT 0.3625 NC 11.03 Ck Path Resulte Path 81 m Path 82 CR Path 83 NP Path $4 m Path 85 CR Path 46 NP Path 07 CR Peth 40 CR Neat Rate, Deu/hr 13.63603 156.035S 141.4960 9.64125413-02 1.798621 30.74821 -9.102491 200.5617 M, Stu/f tthreF 2.70005 03 IT 0.3692 NC 11.03 Ch 2.70003-03 IT 0.1213 NC 11.03 Ck 2.70003 03 ET 0.3644 NC i

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I path Results . path 09 WP path ' 90 CR path 91 CR path 92 up path 93 CR path - 94 c3 rath 95 WP path 96 CR Neet Rete, Stu/hr 167.6780 9.722114 154.5693 - 142.5194 8.49166248-02-4.28419238 02 24.79114 7,069212 NTC, Stu/ftthrer 11.03 Ck 2.70005 03 IT 0.3499 NC 11.03 m S.71975-p2 NC 2.7000B.03 27 11.03 Ck 2.70005 03 ET path heoulte 97 CR . path De up path 99 CR path 100 CR path 101 WP path 102 CR path 103 CR path 104 WP

...................' path............ ............ ............ ............ ............ ............ ............ ............

Reet Rate, stu/hr 0.3941629 305.3927 446644.6 2.150351 004.9745 4002.145 116e.032 1277.975 NTC, Stu/ftthrop . 1.30005 03 IT 11.04 Ck 17.9s ha 1.30003-03 IT 11.04 Ck 3.000 ET 0.3619 sc 11.04 Ck 4

r path Results ' path 105 CR path 106 CR path 107 WP path 106 CR path 109 CR path 110 WP path 111 CR path 112 CR I heet Rate. htu/hr 6168.006 8719.479 11091.71 726.1993 1555.001 1922.903 421052.7 1944.034 i N7C, Stu/ftthrer 3.000 ET 0.7029 NC 11.04 C3t 0.3794 NC 0.4127 NC 11.04 Ck 17.94 as 0.2034 he path Results - path 113 CR path 114 CR path 115 CR poth als CR path 117 CR path 110 CX path. 119 CR path 120 CR Reet Rate. Stu/hr 1147.722 2407.334 1878.623 9999.362- 3894.173 818,6831 3066.448 1192.182 N7C, Stu/ftthrop 0.2711 Ra 0.2833 Ra 0.2723 Ra 0.2704 ha 0.2694 ha 0.2026 ha 0.2712 Ra 3.2007 Ra j path Results path 121 CR path 122 CR Seth 123 CR path 124 C2 path 125 CR pett 126 CR path 127 CR path 134 CR Meet bete. Stu/hr . 710.9007 634.9605 J33.342 903.4224 1969.490 193.0141 3957.516 3403.342 FfC, Ste/ftthrop 0.2711 ha 0.3034 Br 2711 Ra 0.2703 Ra 0.2632 Ra 0.2725 Ra 0.2627 mm 0.2626 Ra path Resulte poth 129 CR path 130 C4 path 131 (2 path 132 CR path 133 CR path 134 CR path 135 m path 136 CR Nest Rete, Stu/hr 13764.79 3954.095 1349.595 D00.7697 937.6006 49.1446S 681.7220 467.4532 5% Stu/f tthrop 0.2672 ha 0.2604 km 0.2672 ha 0.2672 Ra 0.2604 Ra 0.246 Ra 0.2604 Ra 0.2026 as path Resulta path 137 CR path 134 CR path 139 CR path 140(2 Neet hete, Stu/hr , 944.S$95 3343.376 1984.464 1263.567 NFC, Stu/f tthrop 0.2099 Ra 0.2694 Ra 0.2003 Ra 0.2706 ha CNWor t!) ,2 1.2) : 0,0000000005 00 0.000000000s.00 i

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IITTY6 03.7.441. 6.0 Project No.s 090$0 059 mee r-t r .out 06/25/97 08:01:29 Face 042 Ceee 1 after step no. 163. time (1A1 is 3,00000 hre. 16 re3ected 06 steps, next tame step to S.0286215-02 bro.

Mode Seoulte Nede 1 A! Wade 2 Al Mode 3 Al Mode 4 A! Node 5 BI made 6 BI Node 7 st Mode a 31

................... 110.9936 Temperature, er ............ ............

141.4724 113.7414 104.6717 150.0000 95.00000 95.00000 104.0000 Denesty, Itun/ft**3 4.40000005 02 6.60000005-02 6.60000003 02 6.60000003-02 6.60000008 02 6.60000003 02 6.60000003-02 6.60000003-02 Mode Resulte Nede 9N Node 10 AI Mode 11 AI Node 12 BI Node 13 31 Node 14 B2 Nade 15 33 Node is N

................... 459.6700 Temperature, sF

............ 113.4945 104.2301 104.0000 162.0000 200.0000 960.0000 459.6700 l Donetty, tha/tt**1 0.0000000 6.60000005-62 6.60000005-02 6.60000005 02 6.60000005 02 6.60000005-02 6.60000005 02 0.0000000 mode assulte Nede 17 N Nede 18 N Nede 19 WT Node 20 WN Node 21 WF Node 22 WM Nede 23 Wf Nede 24 un Temperature, sF 459.6700 459.6700 110.5797 108.0393 134.4675 110.1992 119.4064 109.0405 Dneesty, laum/ft**3 0.0000000 0.0000000 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 Node Assulte Nede 25 trf Mode 26 WR pode 27 Wf Node 20 NR Node 29 Wf Mode 30 MW Node 31 trf Nade 32 MM

.... .............. 138.2336 Temperature, eF ............ 131.0370 110.5797 105.0393 116.8455 99.86634 137.3811 97.40777 Density, lha/ft**3 36.56000 35.56000 145.0000 145.0000 145.0000 14S.0000 35.56000 35.56000 Nede Results Nede 33 WT Nede 34 WR Node 35 WT Node 36 um Mode 31 WT Nede 38 um Mode 39 WT Node 40 WM Te p reture, oF 119.8300 117.5335 134.6192 110.1125 119.3092 100:4254 1384675 110.1992 Domeity, lha/ft**3 145.0000 145.0000 60.64000 60.64000 145.0000 145.0000 35.56000 35.56000 Node Resulte Nede 41 Irf Node 42 WM Node 43 WT Node 44 WR Nede 49 WT Node 44 NH Nede 47 WT Node et NN

................... 100.9679 Temperature, eF 200.9831 109.5142 109.1835 119.4076 109.0361 128.1526 110.1089 beneity, imm/f t**3 145.0000 145.0000 145.0080 145.0000 145.0000 148.0000 60.64000 60.64000 mee 2esulte Mode 49 WT Node 50 Nu Node 51 WT Node $2 Mu Nede 53 trf Node 54 MH Node 54 un TW ,Lreture, er 116.4102 108.2974 131.2823 109.0900 109.5231

............ ............SS............

WT Nede 109.1902 116.4731 105.672$

Peneity, Itua/ft**3 145.0000 145.0000 35.56000 35.56000 145,0000 145.0000 145.0000 145.0000 Node Resulte Mode $7 Irf Nede S8 WM Node 59 WT Node 60 Nu Node 61 WT Nede 62 MR Node 63 WT Node 64 WK Temperature, eF 107.3597 105.4225 115.5848

.05.8393 108.8176 97.25881 134.7410 112.4722 Deneity, ihm/ft**3 145.0000 145.0000 145.0000 145.0000 35.56000 35.56600 145,0000 145.0000 Mode Resulte Nede 65 trf Mode 66 WK Node 67 WT Node 40 NE Wode 69 trf Node 70 NE Node 71 Irf Mode 72 WM Temperature, sF 134.??47 111.4592 134.7544 108.3100 134.7546 108.3101 109.4375 112.3460 Density, itue/f t**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Mode Resulte Mode 73 WT Node 74 WB Node 7$ WT Node 96 Node 77 NT Node 78 NM Node 79 NT Node 80 WM

................... ............ ............ ............ ..........'NM.. ............ ............ ............ ............

Temperature, eF 104.7493 105.1382 108.7669 113.220s 109.2747 111.3294 108.7540 105.1425 Danesty, ihm/f t**3 148.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 l

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E!1TY6 03.7.481. 6.0 Project No.s 09050-059 mess.tr.out 06/25/97 08:01429 9ece 043 Nede Resulte Nede 81 NT Nede 82 NN Node 83 N Nede 64 W Nede $$ N Nede $6 N Nede 87 N Nede 88 N Temperature, oF . ............ 111.1955 104.5737 459.6700 459.6700 459.4700

  • 459.6700 459.6700 459.6700 Deastty, itue/ft**3 145.0000 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 Nede neeulte )

Nede 89 N Nede to N Nede 91 N Nede 92 err Nase 93 NN Nede 94 arr Nede 95 NN Nede 96 NT 4 ...................

Temperature, of ............ 459.6700 459.6700

............ 459.6700 141.25??

  1. 94.2420 143.7781

............ ............ i Demetty, imm/ft**3 0.0000000 - 159.1617 145.3729 0.0000000 0.0000000 145.0000 145.0000 145.0000 145.0000 145,0000

Nede Beaulte Nede 97 NN Nede 90 NT Nede 99 NH Nede 100 NT Nede 101 NN 4

Temperature, or 159.1417 117.4182 100.2155 141.2636 894.3430 Demetty,1km/f t**3 145.0000 145.0000 145.0000 145.0000 M5.0000 t .

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f KIT 776 03.7.481. 6.0 Project No. 09050 059 eser-tr.out 06/25/77 08:01:29 Page 044 ,

Path Seeulte path 1 CB Path 2 NP Psth 3 CR Path 4O Path 5 WP Path 6N Patt  ? CR Path 8 NP Beat Rate. Stu/hr ............ ............

2795.052 3792.743 61.53216 2219.159 3329.817 0.0000000 25 U.883 3413.519 IrfC. Stu/f tthrer 0.5966 NC 11.04 Ch 0.2323 NC 0.4376 NC 0.7944 Ck 0.0000 N A 'fas NC 11,04 Ch PsM; insuAt e Path 9 CR Path 10 CR Path 11 NP 9ath 12 CR Path 13 CR Path 14 f P 3 .s 15 CR Pata 16 CR Neat kate, Stu/hr 196.8186 3426.631 5132.831 2622.410 22030.44 29894 'D '931 6513.280 NTC. Stu/ftthrer 0.3156 NC O.4402 NC O.7944 Ck 0.4120 NC O.5988 NC 11.04 *h

. .s NC 8'.a092 NC Path Resulte. Path 17 NP Path 19 CR Path 19 CR Path 20 NP Path 21 CR Path 22 C' ',p a* ma th 24 CR Neat Rate, Stu/hr 19969.P5 607.0517 1193.795 1764.666 119.2161 6631.458 no ON *?002.701 IrrC, Stu/f tphret 11.04 Ck 8.3203 NC 0.4497 NC O.7944 Ck 0.2539 NC 0.5911 W

}

.1./* Ck 0.5991 NC Path Beaults Path 25 CR Path 26 NP Path 27 CR Path 28 CR Path 29 NP Path 30 CR Pau 31 CR Nch

................... 1806.308 Neat Rats, Stu/hr

............ 2660.059 .... ....... ............

254.2305 1557.749

.... ............ .... ....... ....... ..12 .7

....... *2.445300 2117.134

' 098.b6d 1348.37' NTC, Stu/ftphrer 0.4700 NC 1.057 Ck 0.2907 NC 0.5938 NC 11.04 Ck 0.1196 NC 0.4376

  • NC 0.7944 .,

Peth Readits Path 33 N Peth 34 CR Path 35 NP .4th 36 N Path 37 O Path 34 WP Path 39 N Path / CR

................... 0.0000000 Meet aata, Stu/hr 3.1h 610 3.358858 0.0000000 329.1702 297.2164 0.0000000 2700.9 R NTC, Stu/ftthrer 0.0000 N 0.12V2 NC 11.04 Ck 0.0000 N 0.3056 CF 0.0000 NC 11.04 N 0.5937 NC Path Resulte Path 41 NP Path 42 CR Path 43 O Path 44 WP Path 45 O Path . CR Path 47 WP Path 44 CR

................... 3664.479 heat Rats, Stu/hr

............ 314.6229 ............ 1397.665 1980.609 243.9991 I"'* 5712.638 1.578497 NTC, Stu/f tthref 11.b4 Ck O.3167 NC O.4465 NC 1.057 Ck O.2896 NC O . 3 't 11.04 Ck 7. #688-02 NC Path Raoulte Path 49 3 Path 50 WP Path 51 N Seth 54 O Path 53 WP Path 54 W Path 55 CR At. 56 NP heat Rate, Stu/hr 1099.402 1657.756 0.0000000 316.1708 286.5409 0.0000900 8424.944 11,74.79 IrfC. Stu/f tthrer 0.4087 NC 0.7944 Ck 0.0000 N 0.3044 NC 11.04 Ck 0.0000 N 0.5554 NC 11.04 Ck I

Path Results Path 51 O Path 58 CR Path 59 NP Path 60 CR Path 61 3 Path 62 NP Path 63 CR Path 64 CR Neat Rate, Stu/hr 221.4154 272.2440 254.7190 37.34344 7254.257 9964.006 215.3624 216.9004 NTC, Stu/f tthrer 0.2251 NC 0.3494 NC 11.04 Ck 0.2134 NC t'.5560 NC 11.04 Ck 0.2323 NC 0.3215 NC l Path Results path 65 NP Path 66 3 Path 67 O Path 68 NP Path 49 3 Path 70 3 Path 71 NP Path 72 CR

................... . 199.7983 Neat Rate. Stu/hr 76.93665 78371.52 74290.46 64.90710 29791.06 20245.5a 30.40596 NTC, Stu/ftthrer 0.7944 Ch 0.2446 NC 0.3733 NC 11.04 Ck 1.30003 03 IT 0.0733 NC 11.04 Ck 1.30003 03 IT path 73 CR Path Path Beaulte 74 WP Path 75 S Path 76 O Path 77 NP Path 18 CR Path 99 C9 Path 80 WP Na tatA Stu/hr 14244.70 13514.67 3.666320 13619.04 32920.02 3.474570 206.9284 124.8873 MTt B **ftfhrer 0.8734 NC 11.04 Ck 2.70003 03 XT 0.8734 NC 11.04 Ck 2.70008 03 IT 0.3561 NC 11.03 Ck Pat.t ' t Path 41 O Path 82 CR Path 83 NP Path d

64 CR Path 45 CR Path 86 NP Path ST CR Path te CR Boat B# 'su/hr 14.08700 164.3046 150.8600 0.1267427 2.31309095-02 46.39506 9.421794 196.0930 NTC, Stm .threr 2.70005 03 XT 0.3740 NC 11.03 Ck 2.70005 03 27 2.70005-03 IT 11.03 Ck 2.70005 03 XT 0.3593 NC i

Project No.: 09050 059 Calc. No.: BRW.97-0624-M. RYR97 277 l'.ev. No.: 0

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R17TY6 03.7.481. 6.0 Project No.s 09050 059 moor.tr.out 06/25/97 08:0 :29 Pete oss Path Results Path 89 WP Path 90 CR Path 91 CR Path 92 NP Path 93 O Path 94 CR Path 95 WP Path f

Neat Rate. Stu/hr 136.3711 30.09180 162.0364

............ ............ ............ ..... ...... ............ 96 O 149.3254 4

NTC. Stu/ftthrop 11.03 2.08159993 02 8.35006358 02 35.28132 7.351271 Ck 2.70008-03 IT 0.3727 NC 11.03 Ck 2.7000B;03 IT 3.70003 03 IT 11.0' l

}! *

("k 2.7000s-03 27 j Path Resulte Fath 37 CR Path Heat kate. Stu/hr 8.695904

............98............

NP Path 99 CR Path 100 CR Path 101 WP Path 102 O I 4' 2 103 CR Path 104 WP

............ ............ ............ ........ ............ {

171.3668 367409.1 1.407501 594.1844 4002.059 1;42.656 1 If:C, Stu/ftthrer 0.1324 NC 11.04 2024.601 1

Ck 18.29 Ra 1.30008 03 IT 11.04 Ck 3.000 27 P.*ae9 NC 11.04 Ck 1 PatA Results t

................... Path Beat Eate. Stu/hr 105 CR Path 106 CR Path 107 WP Path 108 O Path 109 CR Path 110 WP Path 111 O Path 112 C3t 6144.832

............ 11237.84 8643,646

............ 724.2644 ............ ............

1870.221 2495.881 472382.7 1458.360 NTC. Stu/ftthrer 3.000 ET 0.7015 NC 11.04 Ch 0.3794 NC 0.4320 NC 11.04 Ck 18.29 Ra 0.2875 Ra kath Results Path 113 CR Path 114 O Path til CR Path 116 O Path 117 O Path 118 CR Path 119 CR Path 120 m 1

Heat pata. Stu/hr ............ 2236.270 1160.738

............ 1713.951

............ ............ 10068.91 3629.241 741.03$1 2079.995 1123.713 NTC. Stu/ftthrop 0.2742 Ra 0.2873 Ra 0.2715 Ra 0.2737 Ra 0.2725 Ra 0.2867

Ra 0.2745 Ra 0.2848 Ra i Path Results 1 Peth 121 O Path 122 O Path 123 CR Path 124 CR Path 125 CR Path 126 O Path 127 O Path 128 CR

................... 719.3644 ............ $90.5457

............ 1247.392

............ 854.2645 ............ ............ ............ ............ ............

1 uset Rate. Stu/hr 2003.728 141.6991 1

57C. Stu/ftthrop 0.2742 4021.929 34$8.384 Ra 0.2875 Ra 0.2742 Ra 0.2736 Pa 0.2654 Ra 0.2757 Ra 0.2651 o Ra 0.2651 Ra Path Results  !

4 Path 129 O Path 130 O Path all CR Path 132 CR Path 133 CR Path 134 CR Path 135 CR Path 136 CR Heat Rate. Stu/hr ............ ............ ............

14249.02 4117.788 1406.057 940.1149 980.2051 18.56518 NTC, Stu/ftthrer 0.2696 714.3570 307.9844 Ra 0.2623 Ra 0.2495 Ra 0.2694 Ra 0.2622 Ra 0.2827 to 0.2622 Ra 0.2844 an Path Resulte path 137 O Path 138 CR Path 139 CR teth 140 CR heat Rate. Stu/hr 1189.895 3362.733 1259.199 1277.465 ETC Btu /ftthrop 0.2924 Ra 0.2729 Ra 0.2909 an 0.2737 Ra tWMiop l U .1 1. 2) 0.000000000S+00 0.0000000008 00 i 1  !

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1 Case 1 etter step om. 175, time (EA) le 4.00000 hre, 16 re}ected r36 steps. east time step to 0.101161 hre .

Nees Resulte Nede 1 Al Note 2 Al Noea 3 Al Mode 4 AI Mode 5 33 Noes 6 31 Noes  ? 31 Mode e at I

................... ............ ............ ............ ............ ............ ............ ............ ............ i Temperature. pF 152.0594 143.9978 114.1433 104.9230 - 150.0000 95.00000 95.00000 104.0000 honesty, Itm/ft**) 6.60000001-02 6.60000000 02 6.60000003 02 4.6000000B.02 6.60000003 02 6.40000005 02 6.60000003 02 6.6000000B-02 l i

Nede mesulte pode 9N . Nede 10 A3 Mode 11 A1 Nede 12 31 Nede 13 31 Nede 14 31 t'%e 15 SI Nees 16 N Tegerature, er 459.6700 114.0145 108.6250 104.0000 162.0000 200.0000 960.0000 459.6700 8 Domesty, ths/ft**3 0.0000000 6.60000005 02 6.6000000E-02 6.6000000B 02 6.60000005 02 6.60000003-02 6.60000005 02 0.0000000 -

l Nees teoulte Maes 17 N Nees- le N Node 19 trr Nede 20 uu Neen 21 WT Nees 22 uu Nees 23 trF Noes 24 Nu {

................... ............ ............ ............ ............ ............ ............ ............ ...... .... i

- Temperature, of 459.6700 459.6700 120.4850 105.0394 141.0621 111.6810 121.3219 109.6970 '

Donelty. 1km/ft**3 0.0000000 0.0000000 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 ,

1 Nees boeulte poes 25 trr made 26 NE Noes 27 WT Nees 26 WR Nees 29 NT Naes 30 Wu Nees 31 WT Note 32 Nu l Temperature, of 140.4525 133.1527 120.4854 105.8394 110.7076 99.86634 140.0074 97.41535 Deesity. lama /ft**3 35.54000 35.56000 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 Ween peoulte 37 wt Mode Nees 33 WT Nees 34 WM Nede 35 trr Nees 34 Nu Made 36 un moes 39 art Nede 40 un Temperature, eF 122.1063 119.0660 137.3111 110.5741 121.2773 109.0032 141.0621 111.6410 Deselty, Abs /ft**3 145.0000 145.0000 60.64000 60.64000 145.0000 145.0000 35.56000 35.56000 Nede Resulte Note 41 Err Nede 42 NM Noen el err Nude 44 WW Itsee 45 WT Bnee 44 NN Nees 47 WT Nede 40 up Temperature, er 108.9725 108.9782 109.6543 109.2923 121.3204 109.7016 130.3082 110.5104 Donetty, lha/ft**3 145,0000 145.0000 145.0000 145.0000 145.0000 145.0000 60.64000 60.64000 Nees heeulte Nede 49 Err Nees 50 NH Node 51 trr Mode 52 WE Nede 53 trf Node 54 tot Nees 55 err Noes 56 NN Tegerature, er 117.8500 108.7237 133.3699 110.9975 109.6530 109.2964 117.1292 105.6725 Demetty, ths/ft**3 145.0000 145.0000 35.56000 35.56000 145.0000 145.0000 145.0000 145.0000 Isoes assulte made 57 WT Isade 50 um Mode 59 trr Nede 60 IIK Node 61 trr Nees 62 un Isode 43 trr Nose 64 un Temperature, or 187.5065 105.4225 117.0430 105.0394 109.223* $7.25948 137.5917 113.5575 -

Doesity, ths/ft**3 145.0000 145.0000 145.0000 145.0000 35.56000 35.56000 145,0000 145.0000 Noes Resulte pode 65 Irr Nees 66 NE Nees 67 trr Nede 60 NE Nede 69 trr asede 70 uu Wode 71 Err Mode 73 55 Temperature, er 137.5709 112.6528 137.5060 108.9095 137.5060 106.9095 110.1157 113.3046 Dee81ty, ths/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Noes Resulte pode 73 trr Nede 74 NH Nude 75 WT Nede 76 WE Neee 77 trT Noes 70 NW Ienee 79 trr slees 80 WM Temperature, of. 100.9124 104.2441 109.3615 113.0913 109.8171 112.0864 106.906e 10s.2490 Density, Ihn/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 1

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Temperature, or 109.0250. 111.0406 459.6700 459.6700 459.6700 499.6700 459.4700 489.6700 l Density laun/ft**3 148.0000 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 1 I

p Mode Resulte Nede 49 W Nede 90 N Wade 91 W Nede 92 W Node 93 W Mode 94 W Node DS W Node 94 W i

' Temperature er 459.6700 459.6700 459.4760 141.9967 903.6075 164.3870 159.1622 144.4192 Density. 1km/ft**3 0.0000000 0.0000000 0.0000000 .145,0000' 145.0000 145.0000 145.0000 145.0000 i pode teoulte unde 97 W Made 98 trf Nude 99 W Node 100 yt stade 101 W i l

l Temperature, or 159.1624 119.4419 100.2190 144.46 % 903.6075 '

l. Domeity. Ihn/ft**3 145.0000 145.0000 145.0000 145.0s00 145.0000 t

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L RI?TY6 03.7.481. 6.0 Pro 3act No.i 09040 059 emer.tr.aut 06/25/97 04:01:33 page r 048 path Results Path & CR Path 2 WP fath 3 CR Path 4S Path 5 WP Path 6N Path 7 CR Path heat Rate. Stu/hr 2790.427 3837.698 61.53567 2049.453 2156.425

............ ............ ............ 8 WP 0.0000000 2807.840 3451.714 57C. Stu/ftPhrer 0.5966 NC 11.04 Ck 0.2323 NC 0.4290 NC 0.1944 Ck D.0000 N 0.5934 NC 11.04 Ck .

.. f Path Results Path 9 CR Path 10 O Path 11 WP Path 12 m Path 13 CR Path 14 WP Path 15 CR Path 16 CR heat Rate. Stu/hr 178.3443 3360.250 es40.444 2426.969 21993.99 30244.52 485.0207 e089.179 NTC. Stu/ftPhreP 0.30s0 WC 0.4315 NC 0.7944 Ch 0.4041 NC 0.5986 NC 11.04 Ck 0.2323 NC 0.6080 NC e

i Path Bapults Path 17 WP Path 18 CR Path 19 CR Path 20 WP Path 21 G Path 22 CR Path 23 WP Path 24 CR meat Rate. Stu/hr 11081.36 607.8519 1105.914 1695.661 119.7160 6516.604 6642.161 -6566.546 -

NTC. Stu/ftthrer 11.04 Ck 0.3203 NC 0.4413 NC 0.7944 Ck 0.2642 NC 0.ss95 NC 11.04 Ck 0.5097 NC Path Results Path 25 CR Path 26 WP Path 27 CR Path to CR Path 29 WP Path 30 CR Path 31 CR Path 32 WP Neat Sata. Stu/hr 1760.806 2557.859 -248.5234 1556.282 2144.170 0.5498281 029.9831 1270.319 NTC. Stu/ftPhreP 0.4699 . NC 1.057 Ck 0.2891 NC 0.8937 NC 11.04 Ck S.26215 02 NC 0.4290 NC 0.7944 m j Path Raoults Path 33 N Path 34 CR Path 35 WP Path 36 N Path 37 CR Path 38 WP Path 39 N Path 40 CR '

Raat Rate. Stu/br 0.0000000 0.2090037 0.7018950 0.0000000 356.7774 322.1981 0.0009000 2698.150 l NTC. Stu/ftthrer 0.0000 W 7.0435B-02 NC 11.04 Ck 0.0000 N 0.3118 kc 11.04 Ck 0.0000 N 0.5934 NC 4

Path Seoults Path 41 NP Path 42 CR Path 43 G Path 44 WP Path el CR Path 46 CR Path 47 JP Path 44 CR I 2

Best Rate, Stu/hr 3709.650 198.7732 1310.413 1914.017 337.0135 4168.549 5013.106 2.630655 NTC. Stu/ftphrop 11.04 Ck 0.3108 NC 0.4394 NC 1.P57 Ck 0.2878 NC 0.5507 NC 11.04 Ck S.8S028 02 NC i

Pa**.ieTults Path 49 CR Path 50 WP Path 51 N Path 52 m Path $3 WP Path $4 N Path 55 CR Path 56 WP i

Meat Rate. Stu/hr 1919.652 1879.770 0.0000000 335.0966 304.4060 0.0000000 4455.098 11767.14 NTC. Stu/ftthreP 0.4012 NC 0.7944 Ck 0.0000 N 0.3090 NC 11.04 Ch 0.0000 N 0.5559 NC 11.04 Ot path Results Path $7 C3t Path 58 CR Path 59 WP Path 60 CR Path 41 CR Path 62 MP Path 63 CR Path 64 CR Neat Rata, Stu/br 221.4164 282.4227 265.7342 37.34344 1279.353 10120.32 215.3716 216.6370 NTC, Stu/ftphreP 0.2251 NC 0.3526 NC 11.04 Ck 0.2134 NC 0.5545 NC 11.04 Ck 0.2323 NC D.3214 NC Path Results Path 61 WP Path 66 CR Path 67 CR Path 68 WP Path 69 CR Pet.h 70 CR Path 11 WP Path 72 CR ,

................... ............ ... ....... ............ ............ ............ .....-...... ............ ............ 5

, Neat Rate. Stu/hr 200.4878 74.96712 73911.79 70632.14 69.76660 28105.37 26868.52 20.63157 I FfC. Stu/f tfbreP 0.7944 Ck 8.2486 NC O.6607 NC 11.04 Ck 1.30005 03 IT 0.8608 NC 11.04 Ck 1.30003-03 XT Path Raouhe Path 73 CR Path 14 WP Path 75 CR Path 76 CR Path  ?? WP Path TO CR Path 79 CR Path 80 WP l Beat Rate. Stu/hr 13453.26 12874.03 3.532784 12861.32 12309.49 3.296870 109.4375 99.59368 ,

NTC Stu/ftthreP 0.5611 NC 11.04 Ck 2.7000R 03 IT 0.8611 NC 11.04 Ch 2.70003 03 IT 0.3464 NC 11.03 Ck j Path Results Path 83 CR Path 32 CR path 83 WP Path 64 CR Path 85 CR Path $$ WP Path 87 CR Path 88 m Neat Rate. Stu/hr 14.41774 174.8250 161.0529 0.1613121 0.1065464 53.90110 9.663642 164.0639 NTC. Stu/ftphreP 2.70005 03 IT 0.3798 NC 11.03 m 2.70005 03 IT 2.70005 03 IT 11.03 Ck 2.7000B.03 IT D.3533 NC i

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RETIT6 03.7.481. 6.0 Pre 3ect No.: 09050-059 neer.tr.out 06/25/97 08:01:33 Pete 049 Path Results Path 09 WP Path 90 CR Path 91 CR Path 92 WP Path 93 CR Path 94 CR Path 95 WP Path 96 CR Heat Rate. Stu/hr 118.2469 10.34914 169.5830 1$6.7756 8.93244853 02 9.72009095 02 48.94706 N7C. Stu/ftthreF 11.03 *7.566342 m 2.7000E.03 IT 0.3169 NC 11.03 QE 2.70008,-03 IT 2.70005 03 ET 11.03 Ck 2.70003-03 IT Path Results Path 97 C3 Path 99 WP Path 99 CR Path 100 CR Path 101 WP Path 102 G Path 103 CR Path 104 WP Neat Rate, Btu /hr ............ 53.91305 67.42076 318686.3 0.6401827 444.2868.

4001.263 1896.688 2584.844 M7C. Stu/ttthrer 0.2201 NC 11.04 Ch 28.47 Rs 1.30005-03 27 11.04 Ck 3.000 ET 0.4040 pc 11.04 Ch Path Resulta Path SOS O Path 106 CR Path 107 WP Path 104 CR Path 109 CR Path 110 WP Path til CB Path 112 O Neat kate, Stu/hr 4153.173 0503.43e 11302.31 726.9022 2084.093 2802.270 583216.5 1388.149 NTC, Stu/ftthrop 3.000 ET 0.7002 NC 11.04 Ck 0.3795 NC 0.4439 NC 11.04 Ck 18.47 Ra 0.2907 Rn Path Assu1Le Path 113 G Path 114 C2 Path all CR Path 116 CR Path 117 CR Path 118 M Path 119 O Path 120 m

................... 1170.059 Neat Rats, Stu/hr ............ 2127.761 1669.927 10182.33 3456.096 726.8523 30F1.189 1979.155 WTC, Stu/f tthrc# 0.2769 km 0.290s an 0.2781 ha 0.2763 am 0.2751 Ra 0.2899 Ra 0.2774 an 0.2880 Rn Peth Results

................... Path Heat Rate, Stu/hr 121 CR Path 122 CR Path 323 CR Path 124 Ot Peth 125 CR Path 126 CR Path 127 CR Path 128 CR 725.6414 562.3575 1257.430 823.3441 2028.806 707.1601 4063.472 3493.834 MTC, Stu/ftthreF 0.3764 Ba 0.2901 an 0.2769 Ra 0.2761 ha 0.2676 ha 0.2782 km 0.2671 An 0.2671 Rn Path hosulta

................... Path Beat tate, Deu/hr 129 3 Path 130 CR Path 131 CR Path 132 G Path 133 CR Path 134 CR Path 135 CR Path 3 36 CR 14SO7.18 4192.400 1449.462 971.0066 1911.108 47.08281 738.8102 186.7015 NTC, Stu/ttthrer 0.2718 Ra 0.2642 an 0.2714 km 0.2713 Ra 0.2638 Ra 0.2643 ha 0.2636 Ra 0.2460 km Path Seeults Path 137 CR Path 130 CR Path 139 O Path 140 m Neat Rate, Stu/hr 1873.199 3377.641 1377.390 1248.049 NTC Stu/ftPhrop 0.2945 Ra 0.2756 Ra 0.2911 An 0.2763 ha (W1407 (2) ,2 1. 21 : 0.000000000Be00 0.0000000005 00 l

i Project No.: 09050 059 Calc. No.: BRW.97 0621.M.BYR97 277 Rev.No.: 0

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KITTY 6 03.7.461. 6.0 Project No.: 09060 069 meer.tr.out 04/25/97 00:01:40 Date 050 Case 1 af ter step no. 195. time nu is 6.00000 hre. 16 re)ected CM steps, next time step as 0.101161 hrs.

Wade Resulte Nede 1 A1 Node 2 AI Node 3 AI made 4 Al Nede S BI Node 6 31 Node 7 81 hade 4 31

................... 146.1147 Temperature, or ............ 145.6069 115.0938 109.8028 180.00b0 95.00000 95.00000 104.0000 Deneity, lha/ft**3 6.60000005 02 6.6000000s.02 6.60000003-02 6.60000005 02 6.60000005 02 6.60000005-02 6.40000003 02 6.60000005 02 Nede Results pode 9N Node 10 AI Mode la AI Node 12 B3 Nede 13 B1 Nede 14 SI Nede 18 $2 Nede 16 N

................... 469.6700 Temperature, eP

............ 114.7829

............ 109.8429 104.0000 162.0000 200.0000 960.0080 469.6700 Deeesty, ibs/ft**3 0.0000000 6.50000005 02 6.60000003-02 6.60000005-02 6.60000003 02 6.60000005 02 6.60000005 02 0.0000000 Nede kesulte Nede 17 N Nede 18 N Nade 19 WT Node 20 um Nede 21 Iff Mode 22 WM Node 23 trr Mode Temperature, or 459.6700 459.6700 123.6906 105.8428 148.2034 115.5860

............ ............34 un 134.S973 111,4479 Density, ihn/ft**3 0.0000000 0.0000000 145.0000 148.0000 35.56000 35.56000 145.0000 145.0000 Mode beaulte Nede 25 WT Nede 26 WE Wode 27 WT Nede 28 Wu Mede 29 WT Node 30 WM Nade 31 trf Nede Temperature, er 145.0166 136.8005 123.6906 105.6425 122.0466

............ ............ ............32 wm 99.86649 144.1483 97.49041 Demaity, lha/ft**3 35.66000 35.54000 145.0000 145.0000 145.0000 145.0000 39.56000 35.56000 Nede Resulta Mode 33 WT Nede 34 NK Nede 35 trT Nede 36 WE Nede 37 trf Nede 36 NW Nede 39 WT Nede 40 NR Temperature, er 126.2663 122.0295 141.5664 111.8092 124.4869

............ ............ ............ l 110.6725 145.2034 115.5664 Donetty, 13an/ft**3 145.0000 145.0000 60.64000 60.64000 145.0000 145.0000 35.56000 38.66000 Mode Resulte Mode 41trf Mode 42 WW Node 43 WT Node 44 Wu made 45 WT Wade 46 Nu Mode

................... ............ ............ ............ = = -

47 trf Nede 44 WM Temperature, eP 109.0034 100,9782 109.9724 109.6399 124.5959 111.4770 133.6977 Density, lha/ft**3 111.5244 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 60.64000 i

60.64000 '

Node Resulta Mode 49 WT Node 50 MN Node 51 WT Nede 52 WH Nado $3 WT pode S4 MW Nede SS WF Nede 56 Int Temunerature, er 120.2994 109.9821 136.6498 113.9497 109.9424 109.5371 119.5801 105.6725 Demetty, 12ma/ft**3 145.0000 145.0000 35.56000 35.54000 145.0000 145.0000 145.0000 145.0000 Mode Resulte Nude 57 WT Nede $$ WM Node 89 WT Node 60 WK Nude 61 trf Nede 63 MN Node 63 trF Nede 64 WE

'souperature, or 107.7947 105.4225 119.4957 105.8414 110.0277 97.26645 141.9161 11*.*383 Density, ihm/ft**3 145.0000 145.0000 145.0000 145.0000 35.56000 35.54000 145.0000 145.0000 Mode Resulte pode 65 WT Node 66 au Mode 67 trf Mode 60 WR Node 69 WT Nede 70 Int mode 71 WT Node 72 sul Te p reture, er 141.0400 115.4913 141.6038 110.9895 141.6038 110.9993 111.5934 115.1490 Density, ita/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 145.0000 Mode Resulte Mode 73 trr Mode 14 NH Node 75 trF Node 76 NN Node 77 trr Nade 70 um Nede 79 trf Nede 80 un Temperature. er 109.2675 108.4909 110.7133 114.1654 110.9926 113.8420 109.2304 100.4914 Denelty, Iba/ft**3 145.0000 145.0000 j 145.0000 145.0000 145.0000 145.0000 145.0000 145,0000 i i

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F E2TrY6 03.7.481. 6.0 Project No.s 09050 059 eser.tr.eut 06/25/97 08:01:40 9ege 051 Nede Resulte Nede $1 WT Node 32 WN Node 83 N Nede 84 N Node $$ N Node 66 N Node 07 N Node es N

...................'110.0407 Temperature, eF ............ 113.1372 459.6700 489.6700 459.6700

-459.6700 f

459.6700 459.4700 Donetty, 1Ne/tt**3 145.0000 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 Nede noeulte Mode et N Nede to N Node 91 N Nede 92 NT Nede - 93 NN Node 94 NT Node 95 NH Node 94 WY

................... ............ 469.6700 Tamparature, er . 459.6700 459.6700 144.5970 914.3919 145.4648 Doesity. 1Ne/ft**3 0.0000000 159.1491 144.1223 0.0000000 0.0000000 145.0000 145.0000 145.0000 145.0000 ':

145.0000 Node kesulte Nede 97 WN Nede 96 WT Nede 99 NH Nede 100 NT Node 101 NH l

................... ............ ............ ............ ............ ............ i Temperature, of 159.1723 122.8791 106.2442 147.1991 914.3923 Doesity, lan/f t**3 - 145.0000 145.0000 145.0000 145.0000 145.0000 ,

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R177Y6 03.7.481. 6.0 Pre 3ect No. 09050 059 meer tr.out 06/25/97 04:01:40 P.ge 052 1

Path Samutte Peth 1 CR Path 2 WP Path 3 CR Path 4 CR Path 5 WP Path 6N Path 7 CR Peth 6 wp

................... ............ ............ ............ ...........e Beat hate. Stu/hr ............ ............ ............ ............

2796.211 3907.347 61.67397 1847.512 2920.671 0.0000000 2505.712 3501.237 U!C. Stu/ftfhrer 0.5989 NC 11.04 Ck 9.2325 NC 0.4181 WC 0.7944 , Ck 0.0000 N 0.5933 NC 11.04 Ck Path neaults Peth 9 CR Path to CR Path 11 WP Path 12 CR Path 13 CR Path 14 WP Path 15 CR Path 16 CR

................... 124.3474 Neat Rate. Stu/br ............ 2046.530

............ 4507.305 2187.533 22039.58 30797.49 446.1108 0084.015 NTC. Stu/f tfbrer 0.2821 NC 0.4304 NC 0.7944 Ck 0.3938 NC 0.5989 NC 11.04 Ck 0.2325 NC 0.6097 NC Path Results Path 17 WP Path la CR Path 19 CR Path 20 WP Path 21 CR Path 22 3 Path 23 WP Path 24 CR Nest Rate. Stu/hr 11253.85 ............

607.8766 1005.725 1546.697 124.6093 6364.631 8631.403 NTC, Stu/ftfhrer 11.04 Ck 0.3203 5743.371 NC 0.4310 WC 0.7944 Ck 0.2540 NC 0.5428 NC 11.04 Ck O.5704 NC i Path Desults Path 25 CR Path 26 WP Path 27 CR Path 28 CR Path 29 WP Path l

30 CR Path 31 CR Path 32 WP l Neat Rate. Stu/hr ............ 2418.173 1611.002

............ 222.6703 1559.281 2140.995 13.09045 144.1283 1185.931 N7C. Stu/ftthier 0.4597 NC 1.057 Ck 0.2813 NC 0.5940 NC 11.04 Ch 0.1814 NC 0.4181 NC 0.7944 Ck Path Raoulte path 33 N Path 34 CR Path 35 WP Path 36 N Path 37 CR Pete 30 WP Path 39 5 Path 40 CR

...................0.0000000 Neat Rate. Stu/hr ............ 11.70396

............ 9.403141

............0.0000000 425.3602 383.7463 0.0000000 1

NTC. Stu/f tphrer 0.0000 2692.865 l N 0.1765 NC 11.04 Ck 0.0000 N 0.3257 NC 11.04 Ck O.0000 N 0.5933 NC ]

Path Results Path 41 WP Path 42 CR Path 43 CR Path 44 WP Path 45 CR Path 46 CR Path 47 WP Path 48 CR

................... 3762.652 Mest Rate. Stu/hr ............ 151.2463

............ 1204.208 1816.506 214.8499 4203.589 5945.052

............ l RTC Stu/ftphrer 11.04 4.151934 l Ck 0.2904 NC 0.4303 NC 1.057 Ck 0.2004 NC 0.5514 NC 11.04 Ck 9.91128-02 NC Path Results Path 49 CR Path 50 WP Path 51 N Path 52 CR Path $3 WP Path 54 W Path SS CR path 54 WP Heat Rate. Stu/hr 923.3958 1472.370 0.0000000 385.3434 348.7942 0.0000000 4523.531 12040.04 N7T. Stu/ftthrer 0.3914 NC 0.7944 Ck S.0000 N 0.3197 NC 11.04 Ck 0.0000 5 0.5570 NC 11.04 Ot Path kesults Path 57 3 Path 58 CR Path 59 WP Path 60 m Path 61 CR Path 62 WP Path 63 CR Path 64 3

................... 221.4160 Heat Rate. Stu/hr ............ 310.2135

............ 293.1664 37.34345 1337.023 10361.25 215.7283 225.2622 N7C. Stu/ftthrer 0.2251 NC 0.3609 NC 11.04 Ck O.2134 NC 0.5576 NC 11.04 Ck 0.2324 NC 0.3244 NC i

Path Beaults path 65 WP Path 66 G Path 67 CR Path 48 WP Path 49 3 Path 70 CR Path l

71 WP Path 72 CR

................... 208.5182 Heat Rate, Dea /hr ............ 77.28318

............ 67179.35

............ 64742.94

............ 69.54206 25578.51

............ ....... ... l RTC. Stu/ftphrer 24669.71 30.33896 0.7944 Ck 0.2489 NC 0.4405 NC 11.04 Ck 1.30003-03 IT 0.4409 NC 11.04 Ck 1.30008-03 IT path Raoults Path 73 CR Path 74 WW Path 75 m Path 76 3 Path 17 WP Path 78 CR Path 79 CB Path to WP

................... 12292.90 Heat Rate. Stu/hr ............ 11884.05 2.770376 11752.01 11361.15 2.447991 157.1766 59.94409 NTC. Stu/f tthrer 0.6420 NC 11.04 Ck 2.70005 03 IT 0.8420 NC 14.04 Ck 2.70005 03 IT 0.3326 NC 11.03 0 Path Results Path 81 3 Path 02 G Path 83 WP Path 84 CR Path SS CR Path 86 WP Path 87 CR Path 44 CR

................... 34.93199 heat Rate, Stu/hr ............ 201.7786

............ 185.9373

............0.3116904

............0.2237044 61.00593 NTC, Stu/ftthrer 10.04784 160.4963 2.70005 03 ET 0.3936 WC 11.03 Ck 2.70005-03 IT 3.70008 03 IT 11.03 Ck 2.7000s.03 IT 0.3415 NC Project No.: 09050-059 Calc.No.: BRW.97 0624-M, BYR97 277 Rev.No.: 0

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l 2 R!ff76 03.7.401. 6.0 Pre 3ect No.e 09050 059 eser tr.out 06/25/97 08:01:40 Page 053 i

Path Results Path 89 WP Path 90 CR Path 91 CI Path 92 WP Path 93 O Path 94 CR Path pl WP Path 96 CR j ...................

Neat Rate. Stu/hr .............ko.73502 89.61038 109.2643 175.0546 0.3211130 NTC. Stu/ftphreP 11.03 5.29195158-02 46.32526 7.Sa9904 O 2.7000E-03 IT 0.3873 NC 11.03 Ck 2.70003-03 IT 2.70003-03 IT 11.03

O 2.70005-03 IT j Path pseults Path 97 CR Path 98 NP Path 99 O Path 100 O Path 101 WP Path 102 CR Pat % 103 O Path 104 WP Beat Rate. Stu/hr ............ 411.498 60,11810 ............

260711.8 Y.652319 301.9162 3991 $01 NTC. Stu/ftphreP 2443.091 3801.405 0.2204 NC 11.04 Ck 18.68 to 0.1193 NC 11.04 Ck 3.000 ET 0.4332 J NC 11.04 Ch l Path Results 1

Path 105 CR Path 106 O Path 107 WP Path 108 CR Path 109 CR Path 110 WP Path til CR Path 112 CR

................... 6141.844 Meet Rate. Stu/hr ............ ............

8527.509 11405.47 735.2921 20s4.249 2250.483 477115.7 1300.071 N1T. Stu/ftfbreP 3.000 ET 0.6991 NC 11.04 Ot 0.3404 NC 0.4428 NC 11.04 Ck 18.64 ha 0.2960 Rn Path Results Path 113 CR Path 114 CR Path til CR Path 116 CR Path 117 CR Path 118 CR Path 119 CR Path 120 CR j

................... 1188.602 heat Rate. Stu/hr

............ 2003.161 1567.656 10334.23 3715.982 686.9316 NTC. Btu /ftphrer 3037.518 1028.649 4

0.2514 Ra 0.2959 Ra 0.2822 ha 0.2600 kn 0.2797 Ra 0.2952 Ra 0.2426 Ra 0.2934 Ra i

Path Resulta Path 121 CR Path 122 O Path 123 CR Path 124 O Path 12$ CR Path 126 CR path 127 CR Path 128 CB heat Rate. Stu/ar 730.6022 $29.6842 1277.354 764.3528 2064.921 664.1260 4141.014 3540.069 N7C. Stu/ftphrer 0.2814 Ra 0.2960 En 0.2814 Ra 0.2003 Ra 0.2711 Ra 0.2824 Ra 0.2706 kn 0.2705 Ra fath Results Path 129 CR Peth 130 O Path 131 CR Path 132 O Path 133 CR Path 134 CR Path 13$ CR Path 136 CR

................... 14705.38 Meat Rate. Stu/br ............ 4192.707 1820.725 1022.344 1099.783 08.90273 778.1199 19.15164 N1C, Stu/ftthrer 0.2764 Ra 0.2600 Ra 0.2750 Ra 0.2747 kn 0.2665 Ra 0.2480 Ra 0.2663 Ra 0.2006 Ra

, Path Resulta Path 137 CR Path 130 CR Path 139 O Path 140 O 1

Heat page. Stu/hr 1682.727 3418.365 1308.410 1311.125 NTC, Stu/ftfhrer 0.2983 Ra 0.2603 Ra 0.2979 Ra 0.2800 Rn IN140P(!) .2 1,2) s 0.000000000B+00 0.000000000B+00 a

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o Pre}ect No.: 09050 059 eser.tr.out 06/25/97 06:01:46 Page 054 K! TTY 6 03.7.481.*4.0 Case 3 after etap me. 212, time (1Al le 8.00000 hrs, 16 rejected or steps, nest ties step 1s 0.127462 hre.

Mode Results Node & Ai pode 2 AI Node 3 A2 Node 4 A! Node 5 33 Node 6 33 hade  ? 33 Node e 33 Temperature, eF alt.28M 147.9902 116.1785 110.8572 150.e000 95.00000 95.00000 104.0000 Dens 1ty, ibs/f t**3 6.60000003 02 6.6000000s.02 6.60000003 02 6.60000003 02 6.60000003 02 6.60000003-02 6.60000003 02 6.60000005-02 Node Beaulte Nede 9N Node 10 Al Mode 31 AI Node 12 B3 Node 13 BI Node 14 31 Nede 15 $1 Node 16 N Temperature, eF -459.6700 115.6433 113.3520 104.0000 162.0000 200.0000 960.0000 459.6700 Donenty, ihm/ft**3 0.0000000 6.60000003-02 6.60000005 02 6.60000005-02 6.60000005-02 6.60000005-02 6.60000003 02 0.0000000 Mode Assulte Node 17 N pode 10 N Node 19 WT Node 30 WM Node 21 WT Node 22 WM Nede 23 WT Nede 24 WM Temperature, or 459.6700 469.6700 126.4967 105.0622 146.8594 139.9231 127.5558 113.5033 Denstry, 3 tun /tt**3 0.0000000 0.0000000 845.0000 145.0000 35.86000 35.56000 345.0000 145.0000  ;

made 8esults Mode 25 WT Node 26 WR Node 27 WT Node 28 WM Nade 29 WT Node 30 WN Node 31 WT pode 32 NH Temperature, eF 140.6659 139.3793 126.4967 108.8622 124.0940 99.86445 147.7162 97.69264 Donalty, ths/ft**3 38.56000 38.56000 145,0000 145.0000 145.0000 148.0000 35.56000 35.56000 Wode Raoulte Name 33 WT Node 34 NE Node 39 WT Node 36 WM Nade 37 WT Node 30 WM Node 39 WT Node 40 WN

................... ............ ............ e........... ........... ............ ............ ............ ............

Temperature, er 130.0705 124.4603 145.2005 113.4033 127.3790 112.4854 140.8594 119.9231 -

Denssty, imm/ft**3 149.0000 145.0000 60.64000 60.64000 145.0000 145.0000 35.56000 35.56000 I Node Beaulte Node 41 WT Node 42 WM Node 43 WT Nede 44 NH Wade 45 WT Wode 46 WM Node 47 WT Node og Wu t

Temperature, eF 1J9.0939 109.0045 110.3498 109.8347 127.5570 113.5630 136.5290 112.7992 Donalty, 1tus/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 345.0000 60.64000 60.64000 l Nade Results Nede 49 WT Nede 50 NH Node $1 WT Node $2 WM Node 53 WT Node S4 WM Node SS (T Node $6 NN Temperature, eF 122.4867 111.5483 139.4923 117.2608 110.2761 109.8106 121.7051 105.6726 Dens 1ty, Ibm /ft**3 145.0000 145.0000 35.66000 35.56000 146.0000 145.0000 145.0000 145.0000 Mode Assults Node 57 WT pode 58 WR Node 59 WT Nade 60 WM Node 61 WT Node 62 NH Node 43 WT Node 64 NN 105.8562 110.8803 97.28636 l

Temperature, eF 10 8 . 0 9 f.' 105.422$ 121.6239 145.3113 121.0986 ,

Donalty, alun/ft**3 145.0000 148.0000 145.0000 145.0000 35.56000 35.56000 145.0000 145,0000 I Node 8esults Mode 65 WT Wade 66 NE Node 67 WT Node 68 WM Node 69 WT Node 70 WM Nede 11 WT Node 72 WM Temperature, er 145.1546 119.2280 144.6703 113.7844 144.6703 113.7839 113.1537 116.9901 p Density. Imm/tt**3 145.0000 149.0000 345.0000 345.0000 145.0000 145.0000 145.0000 345.0000 ,

Mode Resulta Mode 73 WT Node 74 yH Node 75 WT Node 76 WM Node 77 WT Ntde 70 NN Node 79 WT Nede 80 WM 6 Temperature, eF 109.6781 108.7799 113.2033 116.4646 112.2241 114.9830 109.5933 108.1653 Deoasty, ibs/tt**3 145.0000 145.0000 145.0000 148.0000 145.0000 145."3000 145.0000 148.0000 i

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1 EITT76 03,7.441,.6.0 Project No.s 09060 069 emer.tr.out 06/25/97 09:01:44 page Oll pode Leadte pode 31 Irr Wees 82 WM Nees 83 5 Nede S4 N Nees 95 N pode 66 5 Wees 07 5 Made es N

.......... 111.1901' Tengsen ature, of ............ ............

114.4133 499.6700 4 499.6700 469.6700

-459.6700 459.6700 Doesity. She/tt**3 145.0000 459.6700 145.0000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 0.0000000 Modo pseults bede 49 N Nede 90 N Nade 93 N Nede 93 NT Nede 93 WR Node 94 WT Nees 95 WR None 96 WT Temperature. SF ............

469.6700

. . 459.6700

. . . . . . . 459.6700 150.1183 930.7136 146.5162 159.1903 160.1345 Dunesty, imm/ft**3 0.0000000 0.0000000 0.0000000 145.0000 145.0000 145.0000 145.0000 146.0000 Nede pseulte Neen 97 WW Nees 98 WT pode 99 NE Nees 100 NT Nede sta WW tuuNoreture, or 159.3035 135.8457 100.4097 154.0226 930.7164 Demetty. las/ft**3 145.0000 145.0000 145.0000 145.0000 145.0000 l

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t! TTY 4 03.7.481. 6.0 Pro 3ect No.: 09050-059 emer.tr.out 06/25/97 08:01:46 Page 056 Path Results Path 1 CR Path 2 WP Path 3 CR Path 4 CR Path 5 NP Path 6N Path 7O Path 9 WP

................... 2238.244 Heat kata, Stu/hr ............ 4000,640 62.85472

!?39.290 2794.711 0.0000000 NTC. Dtu/ftthreP 0.6011 NC 11.04 2520.294 3660.404 Ck 8.2333 NC 0.4119 NC 0.7944 Ck 0.0000 N 0.1946 NC 11.04 Ck Path Resulta Peth 9O Path to CR Path 11 WP Path 12 CR Path 13 O Path 14 N9 Path 15 CR Path 16 m

................... 70.03??9 Heat Rate. Stu/hr ............ ............

2604.52? ............

4310.330 3030.967 11110.66 31532.83 trfC, btu /ftthreP 0.3442 NC 0.4144 493.0528 8190.603 NC 0.79e4 Ck 0.3867 NC 0.6011 NC 11.04 Ck 0.2333 NC 0.6106 NC Path Resulte path 17 WP Path 10 CR Path 19 CR Path 20 NP Path 21 CR Path 22 CR Path 23 WP Path 34 S

................... 13495.10 heat Rate. Stu/hr ............ 608.2020 961.7004 1538.794 138.34?9 6053.410 NTC Dtu/f tthrer 11.04 Ch 0.3203 84??.195 4983.519 NC 0.4262 NC 0.7944 Ck O.2438 NC 0.57e6 NC 11.04 Ck 0.5606 NC Path Raou1Le Path 25 CR Path 26 WP Path 27 CR l'ath 28 CR Path 29 NP Path 30 G Path 31 CR Path 32 WP

................... 1842.844 Heat Rate. Stu/hr ............ 2350.929 1??.9744 15'?.648 1113.231 35.1SM2 frFC. Stu/f tthrer 0.4548 704.3049 1131.646 NC 1.051 Ck 0.2661 NC 0.595? NC 11.04 Ck O.3319 NC 0.4119 NC 0.1944 Ck Path Results Path 33 N Path 34 CR Path 36 NP Path 36 N Path 37 CR Path 36 WP Path 39 N Path 40 CR heat Rate, Stu/hr 0.0000000 33.53116 28,73112 0.0000000 505.256? 486.2410 0.0000000 2716.434 ar!C. Stu/f tthrer 0.0000 N 0.2291 NC 11.04 Ck O.0000 N 0.3399 NC 11.04 Ch 0.0000 N 0.5946 NC Path Resulte path 41 WP Path 42 CR Path 43 CR Path 44 WP Path 45 CR Path 44 G Path 47 WP Path 48 CR

................... 3825.647 kaat Rate. Stu/br ............ ............

98.28210 ............

1144.412 1758.560 179.2964 4341.162 6051.?98 NTC Stu/f tthrer 11.04 Ck 0.2609 NC 0.4249

6. Slates NC 1.051 Ck 0.2683 NC 0.5533 NC 11.04 Ck D.1110 NC Path Results Path 49 CR Path 50 WP Path $1 N Path $2 CR Path 53 WP Path S4 N Path SS CR Path 56 WP

................... 463.664?

Heat Rate. Stu/hr ............ 1400.021

............ 0.0000000 442.0957 400.3823 0.0000000 E'W. Stu/ftthreP 0.3050 8636.6?S 1230?.47 NC 0.7944 Ck O.0000 N 0.3308 NC 31.04 Ck 0.0000 E 0.5500 NC 11.04 Ck Path Results Path $1 CR Path 55 O Path 59 WP Path 60 CR Path 51 CR Path 52 NP Path 63 CR Path 64 m

................... 221.4332 heat Race. Dtu/hr ............ ............

343.?190 325.8291 37.343??

7433.282 80509.67 NTC. Stu/f tthrer 0.2252 217.9991 239.1036 NC 0.3702 NC 11,04 Ck 0.2134 NC 0.5594 NC 11.04 Ch 0.2330 WC 0.3294 NC Path Resulte path 65 WP Path 66 CR Path 67 CR Path 68 NP Path Heat Rate, Stu/hr 221.2692 ft.as?22

............ ............ ..,......... 69............

CR Path TO G Path 71 WP Path T2 m 62007.64 59998.86 66.31069 23650,13 22916.45 N?C. Stu/ftphreP 0.1944 Ch 0.2496 19.55540 NC 0.8240 NC 11.04 Ck 3.30005 03 IT 0.8248 NC 11.04 Ck 1.30005 03 ET Path Results Path 73 CR Path 14 WP Path 15 CR Path 76 CR Path ?? WP Path 78 CR Path 99 M Path 60 WP

................... 11441.87 Heat Rate. Stu."hr ............ ............

11119.95 1.616024 10938.43 10630.29 1.199006 NTC. Stu/ftthreP 139.4452 28.32756 0.8272 NC 11.04 Ck 3.70003 03 IT 0.0272 NC 11.04 Ck 2.70005 03 IT 0.3170 NC 11.03 m Path Results Path 81 CR Path 42 m Path 43 WP Path 84 CR Path 35 CR Path 46 WP Path 4? CR Path St CR

................... 15,41709 meat Rate, Stu/hr ............ 233.4103

............ 215.1929

............ 0.4938005

............ 0.3270536 64.92126

  • 10.405?4 139.7330 NTC. Stu/f tthrer 2.70005-03 KT 0.4000 NC 11.03 Ck 2.7000s.03 XT 3.?c00s.03 IT 13.03 Ot 2.70003-03 IT 0.3300 WC Project No.: 09050-059 Calc. No.: BRW.97 0624.M, BYR97 277 Rev.No.: 0

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Path Beaults Path 99 WP Path 90 CR Path 91 CR Path 92 WP Path 93 CR Path 94 O Path 95 WP Path 94 CR heat Rate. Dtu/hs ............ 11.05082 66.30510 212.1507 194.2666 0.6146151 1.757900 47.88129 0.156802 NTC. Stu/ftphrer 11.03 3 2.70005 03 27 0.399$ NC 11.03 Ck 2.70003 03 27 0.1206 NC 11.03 Ck 2.7000B-03 IT l, rath Results Path 97 CR Path 95 WP Path 99 O Path 100 CR Path 101 WP Path 102 CR Path 103 CR Path 104 WP

................... 1.005649 heat kato, Stu/hr ............ 1393.361

............ 226006.6 173.2350 130.9613 3961.738 3025.932 4407.166 '

M7C, Stu/ftPhrer 1.30005 03 XT 11.04 Ck 18.81 Ra 0.2501 NC 11.04 Ck 3.000 ET 0.4568 NC 11.04 Ck ,

Path Seeults Path 105 Ck Path 106 CR Path 107 WP Path 108 CR Path 109 CR Path 110 WP Path 111 CR Path 112 CR

................... 6073.968 heat Aate, Stu/hr

............ 8897.633

............ 11597.18 762.4542 1121.905 102.0747 413712.0 1273.115 Frc, Stu/ftphrer 3.000 2T 0.7005 NC 11.04 Ck 0.3840 NC 0.3806 NC 11.04 Ck 18.41 ha 0.3010 km i 6

Path Assults path 113 O Path '114 O Path 115 CR Path 116 CR Path 117 CR Path 114 CR Path 119 CR Path 120 CR

................... 1215.083 Neat hate. Stu/hr

............ 1949.132 1502.041 10607.97 360s.247 677.2313

............ ............ f 2

3023.444 1012.203 1 M7C, Stu/ftPhrer 0.3858 km 0.3009 Ra 0.2660 an 0.2sto an 0.3839 as 0.2002 to 0.2878 an 0.2983 an l

Path haeults path 121 CR Path 132 CR Path 123 CR P.th 124 CR Peth 125 CR Path 126 CR Psth 127 CR Path its CR l

Heat kate, Stu/hr 756.4924 $14.7231 1305.714 764.7940 2105.174 641.7316 4330,249 3636.389 N7C, Stu/ftPhrer 0.3856 km 0.3010 An 0.2858 Ra 0.2840 Ra 0.2742 Ra 0.2060 Re 0.2737 ta 0.2736 en Path Results path 129 CR Path 130 CR Path 131 CR Path 132 CR Path 133 CR Path 134 O Path 135 CR Path 136 CR

................... 14781.36 Neat Race, Deu/hr ............ 4091.931

............ 1990.152 1971.491 1101.660 227.3870 NTC, Stu/ftphrer 812.0234 201.640s 0.2813 Ra 0.2720 An 0 2785 Ra 0.2781 Ra 0.2692 km 0.2939 km 0.3664 j

An 0.2911 ma '

Path Results Path 137 CR Path 138 CR Path 139 CR Path 140 CR Heat Aate, Stu/hr 2000.208 3492.612 890.4785 1348.057 M7C. Stu/ttPhrer 0.3019 Ra 0.2546 Ra 0.3048 kn 0.2850 Re l

I IW1DDP(!),3 1.2ps 0.0000000008 00 0.0000000005 00 CASS ENDED NORMA 1.LY W17W 1A.QE.IMAX N57T 212 3RJC7D )

16 !?UL $ .7 BEAR 80 944X 8.440901608 12 EA 0.0000000 XAC 1.320542115 02 2C 8.0000000 IACD 0.12746238 i

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  • Solution Vector * (EAlJ) .Je1.NB) . NB e 635 (01) energy,10compreestble. Hen) BKXI a moles, 000 water mass, (DC) energy, compressible. IMP) path uses flow NB Type Vector Blas Delta 2 B Nede/Peth 1 UI 0.22199418 06 0.200848ss.06 0.13905818 06 0.69235238 12 1 2 UI 0.89444668 05 0.82429308 05 0.23260515-07 0.24228458-12 2
  • 3 UI 0.14640678 05 0.14237738 05 0.42582548 06 0.2990s248 12 3 4 UI 0.15209535 04 0.1492880B+04 . 10441933 09 .70212395 13 4 5 UT 0.1398s023 05 0.13615698 05 0.42600735 08 0,31287965 12 10 6 U3 0.31365518 04 0.30663028 04 0.25743148-09 0.11657148-12 11 7 U2 0.79654555 05 0.76003208 05 . 60681495-08 .79640705 13 19 0 U1 0.76754048 05 0.76003208 05 0.14S51928 10 0.19346485 15 20 9 UI 0.73032668*05 0.67308405 05 . 11568778-07 . 17213245-12 21 10 UI 0.69559073 05 0.6720e40S*05 0.00000000 00 0.00000008 00 22 11 U1 0.74163695 05 0.70725305 05 0.54424165-00 0.76951588 13 23 12 U2 0.72304928 05 0.70725208 05 0.16501878-07 0.23332365 12 34 13 U2 0.10996488 06 0.10122758*06 . 14801078-07 .18573108-12 2$

14 U2 0.1042061B+06 0.10122795 06 . 11402218-07 . 1323900B-12 26 15 U1 0.42704465 06 0.5990530s 06 . 47730208 07 . 79476225 13 27 16 U2 0.60497118 06 0.5990530B+06 0.0000000s+00 0.00000005 00 to 17 UI 0.21457115 06 0.2056420B.06 . 16560068 07 . 80450448 13 29 18 UI 0.30567248 06 0.2056420B*06 . 29103838 10 .14138928-18 30 19 U2 0.35097838 05 0.32359403 05 . 4449266B-04 . 13873065-12 31 20 UI 0.32207225 05 0.3235940B+05 0.145$193B 10 0.44969398 15 32 21 U2 0.20010178 06 0.19000805*06 *.13940738-G7 *.73349203-13 33 23 UI 0.1963311B+04 0.19000s0s.06 a.6&409005-00 . 32319218 13 34 23 U2 0.70166235 05 0.64960305 05

  • 83987515-00 . 43106623 13 36 24 U1 0.66416818*05 0.649603a8 05 . 11350495 08 . 17472978-13 36 25 U1 0.45923348 05 0.4360740B.05 . 99660628-09 . 22754293 13 37 26 UI 0.4477394B+0S 0.43801405 05 0.90221478-09 0.20595128 13 38 27 U3 0.29573725 05 0.27215268 05 . 4605717B-08 . 17217248 12 39 28 U2 0.28167458 05 0.27215268 05 0.00000005 00 0.00000005 00 40 29 UI 0.44492988 06 0.43401408 05 0.44965423 05 0.10264348 12 41 30 UI 0.44409985 06 0.43807408 05 0.00000005 00 0.00000008*00 42 31 U2 0.1369971B+06 0.1345690B+06 . 2997695B-08 =.22272955-13 43 33 UT 0.1368733B+D6 0.134Se90B+06 0.00000003 00 0.0000000B+00 44 33 UI 0.79690465 05 0.76003205 05 0.56644228 08 0.7716019B-13 46 34 UI 0.77799188*05 0.7600320B.05 0.14260ssB-07 0.18763528-12 46 35 UI 0.67437598 05 0.43343025*05 .13242245-08 . 20905613 13 47 36 UI 0.64753458 05 0.4334302B.05 .11714295-06 . 1849342B-13 48 37 UI 0.16515365 06 0.15086705*06 . 31723123-06 . 19968203-13 49 30 UI 0.16205048 06 0.15866788 06 . 26193458-09 . 16407575-14 50 39 UI 0.46073678 05 9.43409925 05 *.59590098-08 . 13601968 12 51 40 UI 0.45134455 05 0.4340992B+05 .18117138-08 . 41353953-13 52 41 U2 0.13375648 06 0.13142228 06 . 27064568-00 . 20595128-13 $3 42 UI 0.13364718 06 0.13142225 04 0.00000005 00 0.0000000B.00 54 43 U2 0.32219235 06 0.31034648 06 . 64024438-Os . 20631288-13 59 44 UI 0.31330728 06 0.31034648 06 0.00000005 00 0.00000005 00 56 el UI 0.65819545 05 0.64919408*05 . 14551928-08 . 22418365-13 57 46 U1 0.63509765 05 0.64919408 05 . 72759558 11 . 11207608-15 50 of UI 0.27612625 06 0.26601125 06 .5471520B-08 . 20544768 13 59 40 UI 0.36863438*04 0.2660112B+06 0.54207668-10 0.21881665 15 60 49 UI 0.23163015 05 0.22734708 05 . 02218328 09 . 36164258-13 61 50 U1 0.23611138 05 0.2373470B+05 0 0000000S*00 0.0000000B+00 62 51 UI 0.7445481B+06 0.7262524B.06 . 19324945 07 .26609113 13 63 .

52 UI 0.tl318725 06 0.72625385 06 . 19557778 06 *.26929713 12 64 Project No.: 09050-059 Cale. No.: BRW-97-0624-M, BYR97-277 Rev.No.: 0

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l 55 UI 0.14339778 06 0.13195005 06 a.28230728-08 .21395018 13 67 i l 56 U2 0.13512028 06 0.1319500B.06 . 29103538 10

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  • 59 U2 0.72921105 05 0.71288638 05 . 13949848-08 . 19596178 13 11 ,

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41 U3 0.47245348 05 0.46449628 05 .1185981B-00 *.25531648-13 73 f 62 UI 0.47170738 05 0.4646962B+05 .727595ss-11 .1565745E 15 14 I 63 U2 0.48533398 05 0.47525158 05 0.00000005 00 0.00000005 00 75 l 64 UI 0.48895068 05 0.47525755 05 .12150858 08 . 25566878 13 76 f l 65 UI 0.66871155 05 0.65479938 05 . 12951208-64 =.19770898 13 77 j 66 UI 0.67193248*05 0.65479935+05 46476518-09 *.75559823 14 18 '

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81 UT 0.1564' d*06 0.15200648.>6 0.28813195 06 0.16954995-13 102 L 02 UI 0.15780408 04 0.15200648 06 a.2619345B-09 .17231815 14 103 i 83 UI 0.15724098 06 0.15200645 06 0.58207665-10 0.38292903-15 104 .

64 U2 0.15673475 06 0.15200648 06 0.00000005 00 0.00000003 00 105 85 U2 0.15620255 04 0.15200645 06 0.00000008 00 0.00000005 00 106 86 UI 0.15588138+06 0.15200645 04 0.00000005 00 0.00000008 00 107 l 47 UI 0.15552008 06 0.15200645 06 . 29103838-10 . 19146455-15 108 88 UT 0.15521918 06 0.15200645 06 0.29103838 10 0.19146458-15 109 [

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94 U2 0.1540917B*06 0.15200648 06 . 29103838-10 .19146458 15 til f 95 UI 0.15399188 06 0.15200648*06 0.00000005 00 0.00000008 00 116 96 Ut 0.15390885 06 0.1520064s.06 . 29103835 10 .19146455 15 111 97 UI 0.15383958 06 0.15200645 06 0.0000000$*00 0.0000000B+00 110 i 98 UI 0.15378275 04 0.15200645 04 .29103838 10 *.19146455 15 119 99 UI 0.15373548 06 0.15200648 04 0.29103838-10 0.19146455 15 120 100 UI 0.15369615 06 0.15200648 04 0.00000005 00 0.0000000s.00 121 101 UI 0.15364338 06 0.15200648 06 0.00000005 00 0.00000008+00 122 102 1'! 0.15363565 06 0.15200648 06 0.00000005 00 0.0000000B+00 123 103 Ut 0.1536120s.06 0.15200645 06 0.00000003 00 0.00000008 00 124 .

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153 UI 0.12135575 07 0.11981068*07 0.0000000B.00 0.00000005 00 174 154 UI 0.12121075*07 0.11981048*07 a.23383065-09 .19433228-18 175 all UI 0.12117348 07 0.11981068 07 0.23283065 09 0.19433228-15 176 156 UI 0.12114248 07 0.11981061*07 . 23283065-09 . 19433223 15 377 j 157 UI 0.12111455 07 0.11941063 07 0.23283065-09 0.19433328 15 170 <

150 UI 0.1210947B*07 0.11981068*07 0.00000005 00 0.00000005 00 179 159 UI 0.12101425 07 0.11981048 07 0.23283068-99 0.19433223 15 180 160 UI 0.12106028 01 0.11981068+07 0.00000008 00 0.00000003 00 att 161 UI O.12104428 07 0.11981048 07 . 23283065-09 . 19433225 19 182 162 UI 0.1210338B+07 0.11981068 07 . 2338306B-09 19433225 15 153 163 UI p.12102268 07 0.11981065 07 0.0000000Be00 0.00000003 00 164 164 UI 0.12101245 07 0.11981068 07 . 23283065-09 .19433225 15 185 Project No.: 09050-059 Calc. No.: BRW-97-0624-M, BYR97-277 l

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