Holst, D. N.
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Computer Fire.
Bala Consulting Engineers Inc., Philadelphia, PA
Consulting-Specifying Engineer,
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November 2003
Bastuscheck, C.
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Pre-Prototype Hand-Held Fire Detectors. Final Report.
HRB-Singer Inc., State College, PA
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Thomas, P.
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SFPE Classic Paper Review: Fire Behavior in Rooms by Kunio Kawagoe.
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February 2004
Madrzykowski, D.; Bryner, N. P.; Grosshandler, W. L.; Stroup, D. W.
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Fire Spread Through a Room With Polyurethane Foam Covered Walls.
National Institute of Standards and Technology, Gaithersburg, MD
Volume 2,
Interflam 2004. (Interflam '04). International Interflam Conference, 10th Proceedings. Volume 2. July 5-7, 2004. Organised by Interscience Communications Ltd. in association with National Institute of Standards and Technology, Building Research Establishment; National Fire Protection Association; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute,
Interscience Communications Ltd., London, England,
Edinburgh, Scotland,
1127-1138 p.,
2004
Babrauskas, V.
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Charring Rate of Wood as a Tool for Fire Investigations.
Fire Science and Technology Inc., Issaquah, WA
Volume 2,
Interflam 2004. (Interflam '04). International Interflam Conference, 10th Proceedings. Volume 2. July 5-7, 2004. Organised by Interscience Communications Ltd. in association with National Institute of Standards and Technology, Building Research Establishment; National Fire Protection Association; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute,
Interscience Communications Ltd., London, England,
Edinburgh, Scotland,
1155-1170 p.,
2004
Huczek, J. P.; Janssens, M. L.
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Application of a Methodology to Predict Room-Scale Fire Performance From Bench-Scale Testing.
Southwest Research Institute, San Antonio, TX
Volume 2,
Interflam 2004. (Interflam '04). International Interflam Conference, 10th Proceedings. Volume 2. July 5-7, 2004. Organised by Interscience Communications Ltd. in association with National Institute of Standards and Technology, Building Research Establishment; National Fire Protection Association; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute,
Interscience Communications Ltd., London, England,
Edinburgh, Scotland,
929-936 p.,
2004
Zou, G. W.; Chow, W. K.
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Evaluation of the Field Model, Fire Dynamics Simulator for a Specific Experimental Scenario.
Harbin Engineering Univ., Harbin, Heilongjiang, China; Hong Kong Polytechnic Univ., China
Journal of Fire Protection Engineering,
Vol. 15,
No. 2,
77-92,
May 2005
Iqbal, N.; Salley, M. H.
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Fire Dynamics Tools (FDTs) Quantitative Fire Hazard Analysis Methods for the U.S. Nuclear Regulatory Commission Fire Protection Inspection Program. Final Report.
U.S. Nuclear Regulatory Commission, Washington, DC
NUREG-1805,
December 2004,
1016 p.
Fire Dynamics Tools (FDTs) Quantitative Fire Hazard Analysis Methods for the U.S. Nuclear Regulatory Commission Fire Protection Inspection Program. Final Report,
U.S. Nuclear Regulatory Commission, Washington, DC,
2004
Boustras, G.; Wen, J. X.; Fraser-Mitchell, J. N.
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Investigation of Fire Growth in Dwellings Based on Stochastic Analysis.
Imperial College, London, England; Kingston Univ., UK; Risk Assessment Centre, UK
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2003-2004
Tokunaga, T.; Amano, K.; Oiwa, D.; Uchiyama, S.; Mizuno, M.; Ohmiya, Y.; Wakamatsu, T.; Tsujimoto, M.
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Experimentsl Study on the Smoke Behavior and Ensuring the Safety of Staircases in a Station Building During a Fire: Air Current Control in an Underground Station by a Passive Safety System.
Tokyo University of Science, Japan; SANKI Engineering Co. Ltd., Japan
Fire Science and Technology,
Vol. 26,
No. 1,
9-42,
2007