Davis, W. D.; Notarianni, K. A.
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Algorithm for Calculating the Plume Center Line Temperature and Ceiling Jet Temperature in the Presence of a Hot Upper Layer.
National Institute of Standards and Technology, Gaithersburg, MD
Fire Research and Engineering, Second (2nd) International Conference. (ICFRE2). Proceedings. ABSTRACTS ONLY. National Institute of Standards and Technology and Society of Fire Protection Engineers. August 10-15, 1997,
Gaithersburg, MD,
Slaughter, K. C., Editors,
113-113 p.,
1997
Davis, W. D.; Notarianni, K. A.; Tapper, P. Z.
view article (7.508707)
Algorithm for Estimating the Plume Centerline Temperature and Ceiling Jet Temperature in the Presence of a Hot Upper Layer.
National Institute of Standards and Technology, Gaithersburg, MD; Goddard Space Flight Center, Greenbelt, MD
NISTIR 6178,
June 1998,
27 p.
Sheppard, D. T.; Lueptow, R.
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Comparison of Industrial Fire Simulator to Experimental Results. ABSTRACT ONLY.
Underwriters Laboratories, Inc., Northbrook, IL; Northwestern Univ., Evanston, IL
International Conference on Fire Research and Engineering (ICFRE3), Third (3rd). Proceedings. Program and Abstracts. Society of Fire Protection Engineers (SFPE), National Institute of Standards and Technology (NIST) and International Association of Fire Safety Science (IAFSS). October 4-8, 1999,
Society of Fire Protection Engineers, Boston, MA,
Chicago, IL,
1-1 p.,
1999
Ierardi, J. A.; Barnett, J. R.
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Characterizing Entry Resistance of Smoke Detectors: Flow Distributions Within an Ionization Smoke Detector.
Worcester Polytechnic Inst., MA
Research and Practice: Bridging the Gap. Fire Suppression and Detection Research Application Symposium. Proceedings. Fire Protection Research Foundation. February 23-25, 2000,
Orlando, FL,
397-405 p.,
2000
Sugawa, O.; Hosozawa, T.; Nakamura, N.; Itoh, A.; Matsubara, Y.
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Flow Behavior Under Sloped Ceiling.
Science University of Tokyo, Japan; Takenada Co., Ltd., Japan; Fire and Disaster Management Agency, Japan
NISTIR 6588,
November 2000,
U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 15th Joint Panel Meeting. Volume 2. Proceedings. March 1-7, 2000,
San Antonio, TX,
Bryner, S. L., Editors,
341-347 p.,
2000
Alpert, R. L.
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Turbulent Ceiling-Jet Induced by Large-Scale Fires.
Factory Mutual Research Corp., Norwood, MA
Combustion Science and Technology,
Vol. 11,
197-213,
1975
Delichatsios, M. A.; Liu, X.; Brescianini, C.
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Propagation of Axisymmetric Ceiling Jet Front Produced by Power Law Time Growning Fires.
University of Ulster, Northern Ireland; Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
Fire Safety Journal,
Vol. 38,
No. 6,
535-551,
October 2003
Watanabe, J.; Shimomura, S.; Aoyama, Y.; Tanaka, T.
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Formula for Prediction of Ceiling Jet Temperature in Two Layer Environment.
Matsushita Electric Works Ltd., Osaka, Japan; Kyoto Univ., Japan
Fire Safety Science. Proceedings. Seventh (7th) International Symposium. International Association for Fire Safety Science (IAFSS). June 16-21, 2003,
Intl. Assoc. for Fire Safety Science, Boston, MA,
Worcester, MA,
Evans, D. D., Editors,
431-442 p.,
2003
Manganaro, M.
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Fires in Clean Rooms: The Effects of Downward Air Flow on Ceiling Jet Flow.
Fire Protection Engineering,
No. 22,
28,32-34,36-39,
Spring 2004
Hostikka, S.; Korhonen, T.; Keski-Rahkonen, O.
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Two-Model Monte Carlo Simulation of Fire Scenarios.
VTT-Technical Research Center of Finland, Espoo
Fire Safety Science. Proceedings. Eighth (8th) International Symposium. International Association for Fire Safety Science (IAFSS). September 18-23, 2005,
Intl. Assoc. for Fire Safety Science, Boston, MA,
Beijing, China,
Gottuk, D. T.; Lattimer, B. Y., Editors,
1241-1252 p.,
2005