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Studies of Fires in Buildings Using Models. Part 2. Some Theoretical and Practical Considerations.
Fire Research Station, Borehamwood, England
Research,
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March 1960
Thomas, P. H.
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Size of Flames From Natural Fires.
Fire Research Station, Borehamwood, England
Combustion Institute, Symposium (International) on Combustion, 9th. August 27-September 1, 1962,
Adacemic Press, NY,
Ithaca, NY,
844-859 p.,
1963
Thomas, P. H.
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Comparison of Some Hot Spot theories.
Fire Research Station, Borehamwood, England
Combustion and Flame,
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369-372,
December 1965
Thomas, P. H.
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Approximate Theory of "Hot Spot" Criticality.
Fire Research Station, Borehamwood, England
Combustion and Flame,
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99-109,
1973
Morton, B. R.; Taylor, G.; Turner, J. S.
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Turbulent Gravitational Convection From Maintained and Instantaneous Sources.
Cambridge Univ., England
Royal Society of London Proceedings. Vol. 234, No. 1196, Series A, January 24, 1956,
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1956
Anderson, C. E., Jr.; O'Kelley, D. K.; Grand, A. F.
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Spread of Fire Effects Between Rooms: A Computational Model.
Southwest Research Inst., San Antonio,TX
Journal of Fire Sciences,
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November/December 1986
Borgeson, R. A.; Tien, J. S.
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Modelling the Fuel Temperature Effect on Flame Spread Limits in Opposed Flow.
Case Western Reserve Univ., Cleveland, OH
Combustion Science and Technology,
Vol. 32,
125-136,
1983
National Bureau of Standards, Gaithersburg, MD,
Robinson, J.; Walker, H.
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New Thoughts on Fire Resistance Needs in Steel Building Frame Construction.
Fire,
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Siegel, R.
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Transient Radiative Cooling of a Droplet-Filled Layer.
National Aeronautics and Space Admin., Cleveland, OH
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Takeda, H.
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Oscillatory Combustion and Inverse Temperature Profile Appeared in the Compartment Fires.
Tokyo Univ., Japan
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14 p.