Epstein, M.
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Maximum Air Flow Rate Into a Roof-Vented Enclosure Fire.
Fauske and Associates, Inc., Burr Ridge, IL
Journal of Heat Transfer,
Vol. 114,
535-538,
May 1992
Nelson, H. E.; Deal, S.
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CORRIDOR: A Routine for Estimating the Initial Wave Front Resulting From High Temperature Fire Exposure to a Corridor.
National Institute of Standards and Technology, Gaithersburg, MD
General Services Administration, Washington, DC,
NISTIR 4869,
July 1992,
39 p.
Braun, E.; Lowe, D. L.; Jones, W. W.; Tatem, P.; Bailey, J.; Carey, R.
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Comparison of Full Scale Fire Tests and a Computer Fire Model of Several Smoke Ejection Experiments.
National Institute of Standards and Technology, Gaithersburg, MD; Naval Research Laboratory, Washington, DC; David Taylor Naval Ship Research and Development Center, Annapolis, MD
Naval Research Laboratory, Washington, DC,
NISTIR 4961,
November 1992,
43 p.
Bishop, S. R.; Holborn, P. G.; Beard, A. N.; Drysdale, D. D.
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Nonlinear Dynamics of Flashover in Compartment Fires.
University College, London, England; Edinburgh Univ., Scotland
Fire Safety Journal,
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11-45,
1993
Williams, F. W.; Back, G. G.; Toomey, T. A.; Ouellette, R. J.; Scheffey, J. L.; Darwin, R. L.
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Post-Flashover Fires in Simulated Shipboard Compartments. Phase 3. Venting of Large Shipboard Fires.
Naval Research Laboratory, Washington, DC; Hughes Associates, Inc., Columbia, MD; Naval Sea Systems Command, Washington, DC
Naval Sea Systems Command, Washington, DC,
NRL MR 6180-93-7338,
June 9, 1993,
57 p.
Chan, W. R.; Zukoski, E. E.; Kubota, T.
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Experimental and Numerical Studies on Two-Dimensional Gravity Currents in a Horizontal Channel.
California Institute of Technology, Pasadena, CA
National Institute of Standards and Technology, Gaithersburg, MD,
NIST GCR 93-630,
July 1993,
261 p.
Cooper, L. Y.
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Combined Buoyancy- and Pressure-Driven Flow Through a Horizontal Vent: Theoretical Considerations.
National Institute of Standards and Technology, Gaithersburg, MD
NISTIR 5252,
September 1993,
17 p.
Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Technical Meeting, 1993. October 25-27, 1993, Princeton, NJ, 315-318 pp, 1993 AND Fire-and-Explosion Hazard of Substances and Venting of Deflagrations. 1st International Seminar Proceedings. July 17-21, 1995, Moscow, Russia, Molkov, V., Editor, 1-11 pp, 1995,
['1993', '1995']
Hadjisophocleous, G. V.; Cacambouras, M.
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Computer Modeling of Compartment Fires.
National Research Council of Canada, Ottawa, Ontario
Journal of Fire Protection Engineering,
Vol. 5,
No. 2,
39-52,
April/May/June 1993
Cooper, L. Y.
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Combined Buoyancy- and Pressure-Driven Flow Through a Shallow, Horizontal Circular Vent.
National Institute of Standards and Technology, Gaithersburg, MD
Journal of Heat Transfer,
Vol. 117,
659-667,
August 1995
American Society of Mechanical Engineers. Heat Transfer With Combined Modes. ASME International Mechanical Engineering Congress and Exposition. HTD-Vol. 229. November 6-11, 1994,
Chicago, IL,
Beasley, D. E.; Cole, K. D., Editors,
1-12 p.,
['1994', '1995']
Fleischmann, C. M.; Pagni, P. J.; Williamson, R. B.
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Salt Water Modeling of Fire Compartment Gravity Currents.
University of Cantebury, Christchurch, New Zealand; California Univ., Berkeley
National Institute of Standards and Technology, Gaithersburg, MD,
International Association for Fire Safety Science. Fire Safety Science. Proceedings. 4th International Symposium. July 13-17, 1994,
Intl. Assoc. for Fire Safety Science, Boston, MA,
Ottawa, Ontario, Canada,
Kashiwagi, T., Editors,
253-264 p.,
1994