Jinquen, Z.; Dexiang, W.; Minghui, W.
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Model for Estimating Optimum Benefit of Fire Extinguishing.
Northwestern College of Forestry, Shaanxi, China
University of Science and Technology of China. Fire Science and Technology. Asian Conference, 1st (ACFST). October 9-13, 1992,
International Academic Publishers, China,
Hefei, China,
Weicheng, F.; Zhuman, F., Editors,
117-120 p.,
1992
Xioaozhong, J.; Anming, W.; Banyu, C.
view article (3.8966706)
Estimation of the Gust Phenomenon and the Spotting Distance Produced by Forest Fires.
Forest Protection Inst., Harbin, China
University of Science and Technology of China. Fire Science and Technology. Asian Conference, 1st (ACFST). October 9-13, 1992,
International Academic Publishers, China,
Hefei, China,
Weicheng, F.; Zhuman, F., Editors,
136-139 p.,
1992
Pattee, H. A.; Peterson, R. B.
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Flame Temperature Measurement by Monitoring an Alkali Emission Doublet Exposed to a Selectively Filtered Background Source.
Oregon State Univ., Corvallis
Transactions of the ASME Journal of Heat Transfer,
Vol. 114,
No. 3,
630-635,
August 1992
Babrauskas, V.
view article (3.8966706)
Simple Cases of Heat Release Rates. Part B. Pools.
National Institute of Standards and Technology, Gaithersburg, MD
Chapter 7,
Heat Release in Fires,
Elsevier Applied Science, NY,
Babrauskas, V.; Grayson, S. J., Editors,
201-206 p.,
1992
Green, A. R.
view article (3.8966706)
Determining Flame Spread Properties From Cone Calorimeter Measurements. Part B. Wind-Aided Spread Over Horizontal Surfaces.
Londonderry Occupational Safety Center, Australia
Chapter 9,
Heat Release in Fires,
Elsevier Applied Science, NY,
Babrauskas, V.; Grayson, S. J., Editors,
283-291 p.,
1992
Parker, W. J.
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Wood Materials. Part A. Prediction of the Heat Release Rate From Basic Measurements.
National Institute of Standards and Technology, Gaithersburg, MD
Chapter 11,
Heat Release in Fires,
Elsevier Applied Science, NY,
Babrauskas, V.; Grayson, S. J., Editors,
333-356 p.,
1992
Dietenberger, M. A.
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Upholstered Furniture: Detailed Model.
Dayton Research Institute Univ., OH
Chapter 14,
Heat Release in Fires,
Elsevier Applied Science, NY,
Babrauskas, V.; Grayson, S. J., Editors,
479-518 p.,
1992
Evans, D. D.
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Suppression Research: Strategies.
National Institute of Standards and Technology, Gaithersburg, MD
Swedish Fire Research Board and National Institute of Standards and Technology. Fire Suppression Research, 1st International Conference. May 5-8, 1992,
['Stockholm, Sweden', 'Boras, Sweden'],
Sjolin, V.; Evans, D. D.; Jason, N. H., Editors,
21-35 p.,
1992
Pivovarov, M. A.; Zhang, H.; Ramaker, D. E.; Tatem, P. A.; Williams, F. W.
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Similarity Solutions in Bouoyance-Controlled Turbulent Diffusion Flame Modeling (Turbulent Buoyant Diffusion Flame Modeling).
George Washington Univ., Washington, DC; Naval Research Laboratory, Washington, DC
Combustion and Flame,
Vol. 92,
No. 3,
308-319,
February 1993
Guelzim, A.; Souil, J. M.; Vantelon, J. P.; Borner, J. P.
view article (3.8966706)
Flame Radiation From Pool Fires Tilted by Wind.
Universite de Poitiers, France; Electricite de France, Chatou
Interscience Communications Ltd.; National Institute of Standards and Technology; Building Research Establishment; and Society of Fire Protection Engineers. Interflam 1993. (Interflam '93). Fire Safety. International Fire Conference, 6th. March 30-April 1, 1993,
Interscience Communications Ltd., London, England,
Oxford, England,
Franks, C. A., Editors,
121-131 p.,
1993