Yung, D.
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Simplified Model for Postflashover Burning of Thermoplastic Materials.
National Research Council of Canada, Ottawa, Ontario
HTD-Vol. 122,
American Society of Mechanical Engineers (ASME). Heat Transfer in Combustion Systems. Winter Annual Meeting. HTD-Vol. 122. December 10-15, 1989,
San Francisco, CA,
Ashgriz, N.; Quintiere, J. G.; Semerjian, H. G.; Slezak, S. E., Editors,
45-51 p.,
1989
Buchholz, E. K.; Tapper, M. L.
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Time to Extinction of Liquid Hydrocarbon Fuel Droplets Burning in a Transient Diesel-Like Environment.
North Dakota State Univ., Fargo
WSS/CI 77-13,
Combustion Institute/Western States Section. Combustion of Cellulosic Fuels--Combustion Technology for Pollution Control. Spring Meeting, 1977. April 18-19, 1977,
Seattle, WA,
1-31 p.,
1977
Satoh, K.; Miyazaki, S.
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Numerical Study of Large Fires in Tunnels.
Fire Report Institute, Japan
Report of Fire Research Institute of Japan,
No. 68,
19-34,
September 1989
Ozoe, H.; Yamamoto, K.; Churchill, S. W.; Sayama, H.
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Three-Dimensional, Numerical Analysis of Laminar Natural Convection in a Confined Fluid Heated From Below.
Okayama Univ., Japan; Pennsylvania Univ., Philadelphia
Journal of Heat Transfer,
Vol. 98,
No. 2, Series C,
202-207,
May 1976
Sato, K.; Kuwahara, K.
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Numerical Simulation of Highrise Building Fires.
Japanese Association of Fire Science and Engineering. Fire Research Annual Conference. [Conference in JAPANESE]. May 17-18, 1990,
49-52 p.,
1990
Satoh, K.
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Numerical Study of Interaction Between Buoyant Flow by Fires and Air Conditioning Flow in a Room.
Japanese Association of Fire Science and Engineering. Fire Research Annual Conference. [Conference in JAPANESE]. May 17-18, 1990,
55-58 p.,
1990
Liburdy, J. A.; Faeth, G. M.
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Theory of a Steady Laminar Thermal Plume Along a Vertical Adibatic Wall.
Pennsylvania State Univ., University Park
Letters in Heat and Mass Transfer,
Vol. 2,
407-418,
1975
Davis, R. W.; Moore, E. F.; Santoro, R. J.; Ness, J. R.
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Isolation of Buoyancy Effects in Jet Diffusion Flame Experiments. Short Communication.
National Institute of Standards and Technology, Gaithersburg, MD; Pennsylvania State Univ., University Park
Combustion Science and Technology,
Vol. 73,
No. 4-6,
625-635,
1990
Nitta, K.
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Calculation Method of Fire-Induced Smoke Flow Through an Opening.
Kyoto Institute of Technology, Japan
HTD-Vol. 141,
American Institute of Aeronautics and Astronautics/American Society of Mechanical Engineers (AIAA/ASME). Heat and Mass Transfer in Fires. AIAA/ASME Thermophysics and Heat Transfer Conference. HTD-Vol. 141. June 18-20, 1990,
Am. Soc. of Mechanical Engineers, New York,
Seattle, WA,
Quintiere, J. G.; Cooper, L. Y., Editors,
77-84 p.,
1990
Motevalli, V.
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Numerical Prediction of Unconfined Ceiling Jet Transient Temperature Profiles Using Two-Dimensional Turbulent Continuity and Energy Equations With Empirical Velocity Profiles.
Worcester Polytechnic Institute, MA
HTD-Vol. 141,
American Institute of Aeronautics and Astronautics/American Society of Mechanical Engineers (AIAA/ASME). Heat and Mass Transfer in Fires. AIAA/ASME Thermophysics and Heat Transfer Conference. HTD-Vol. 141. June 18-20, 1990,
Am. Soc. of Mechanical Engineers, New York,
Seattle, WA,
Quintiere, J. G.; Cooper, L. Y., Editors,
85-92 p.,
1990