Issue Section:
Technical Briefs
1.
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, “An Approximate Generalized Design Method for Multicomponent/Partial Condensers
,” AIChE Symp.
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3.
Brouwers
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, “A Film Model for Heat and Mass Transfer With Fog Formation
,” Chemical Engineering Science
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.4.
Brouwers
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1996
, “Effect of Fog Formation on Turbulent Vapor Condensation With Noncondensable Gases
,” ASME JOURNAL OF HEAT TRANSFER
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.5.
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6.
Corradini
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1984
, “Turbulent Condensation on a Cold Wall in the Presence of a Noncondensable Gas
,” Nuclear Technology
, Vol. 64
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.7.
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8.
Ghiaasiaan
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Kamboj
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Abdel-Khalik
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, “Two-Fluid Modeling of Condensation in the Presence of Noncondensables in Two-Phase Channel Flows
,” Nuclear Science and Engineering
, Vol. 119
, pp. 1
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.9.
Hassan
Y. A.
Banerjee
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1996
, “Implementation of a Non-Condensable Model in RELAP5/MOD3
,” Nuclear Engineering and Design
, Vol. 162
, pp. 281
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.10.
Kageyama
T.
Peterson
P. F.
Schrock
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1993
, “Diffusion Layer Modeling for Condensation in Vertical Tubes with Noncondensable Gases
,” Nuclear Engineering and Design
, Vol. 141
, pp. 289
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.11.
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12.
Kim
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Corradini
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, “Modeling of Condensation Heat Transfer
,” Nuclear Engineering and Design
, Vol. 118
, pp. 193
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.13.
Kuhn, Z. S., Schrock, V. E., and Peterson, P. F., 1995, “An Investigation of Condensation From Steam-Gas Mixtures Flowing Downward Inside a Vertical Tube,” presented at the Seventh Int. Topical Meeting on Nuclear Reactor Thermal-Hydraulics (NURETH-7), Saratoga Springs, New York.
14.
Mun˜oz-Cobo
J. L.
Herranz
L.
Sancho
J.
Tkachenko
I.
Verdu´
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1996
, “Turbulent Vapor Condensation with Noncondensable Gases in Vertical Tubes
,” International Journal of Heat and Mass Transfer
, Vol. 39
, pp. 3249
–3260
.15.
Ogg, D. G., 1991, “Vertical Downflow Condensation Heat Transfer in Gas-Steam Mixtures,” M.S. thesis, University of California at Berkeley, Berkeley, CA.
16.
Panchal, C. B., and Bell, K. J., 1984, “Theoretical Analysis of Condensation in the Presence of Noncondensable Gases as Applied to Open-Cycle OTEC Condensers,” ASME Paper 84-WA/Sol-27.
17.
Peterson
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1996
, “Theoretical Basis for the Uchida Correlation for Condensation in Reactor Containments
,” Nuclear Engineering and Design
, Vol. 162
, pp. 301
–306
.18.
Peterson
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Schrock
V. E.
Kageyama
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1993
, “Diffusion Layer Theory for Turbulent Vapor Condensation with Noncondensable Gases
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 115
, pp. 998
–1003
.19.
Price
B. C.
Bell
K. J.
1974
, “Design of Binary Vapor Condensers Using the Colburn-Drew Equations
,” AIChE Sym.
, Vol. 70
, Ser. No. 138
, pp. 163
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.20.
Siddique, M., 1992, “The Effects of Noncondensable Gases on Steam Condensation Under Forced Convection Conditions,” Ph.D. thesis, Massachusetts Institute of Technology, Boston, MA.
21.
Siddique
M.
Golay
M. W.
Kazimi
M. S.
1994
, “Theoretical Modeling of Forced Convection Condensation in a Vertical Tube in the Presence of Noncondensable Gas
,” Nucl. Technology
, Vol. 106
, pp. 202
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.22.
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23.
Uchida, H., Oyama, A., and Togo, Y., 1965, “Evaluation of Post-Incident Cooling Systems of Light-Water Power Reactors,” Proceedings of the Third International Conference on the Peaceful Uses of Atomic Energy, Geneva, Vol. 13, pp. 93–104, United Nations, New York.
24.
Vierow, K. M., 1990, “Behavior of Steam-Air Systems Condensing in Cocurrent Vertical Downflow,” M.S. thesis, University of California at Berkeley, Berkeley, CA.
25.
Yao
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Ghiaasiaan
S. M.
1996
, “Numerical Modeling of Condensing Two-Phase Flows
,” Numerical Heat Transfer, Part B: Fundamentals
, Vol. 30
, pp. 137
–159
.26.
Yao
G. F.
Ghiaasiaan
S. M.
Eghbali
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1996
, “Semi-Implicit Modeling of Condensation in the Presence of Noncondensables in the RELAP5/MOD3 Computer Code
,” Nuclear Engineering and Design
, Vol. 166
, pp. 277
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.
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