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Mathematical Analysis of Moisture and Heat Transfer in the Roof Cavities of Manufactured Housing.
National Institute of Standards and Technology, Gaithersburg, MD; Portland State Univ., OR
Challenges of the 21st Century. Roofing Technology, Fourth (4th) International Symposium. Proceedings. First (1st) Edition. U.S. National Institute of Standards and Technology, U.S. National Roofing Contractors Association, Canadian Roofing Contractors Association, National Research Council of Canada, International Waterproofing Association, CIB, RILEM. September 17-19, 1997,
Gaithersburg, MD,
390-400 p.,
1997
McIntosh, R. D.; Nolan, P. F.
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Nodal Model for Predicting the Behavior of Stored Chemicals in a Fire.
South Bank Univ., London, England
Industrial Fires III Workshop Proceedings. Major Industrial Hazards. EUR 17477 EN. European Commission. September 17-18, 1996,
Riso, Denmark,
219-244 p.,
1996
Marshakov, A.; McKay, C.; Vandsburger, U.; Roby, R. J.
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Heat Transfer Aspects of the Transport of High Concentrations of CO in Building Fires.
Virginia Polytechnic Institute and State Univ., Blacksburg; Hughes Associates, Inc., Baltimore, 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,
35-38 p.,
1997
Yi, S. C.
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Heat Transfer of a Smoldering Flammable Substrate. Part 1. Development of a Theoretical Model for the Heat Transfer of a Smoldering Substrate.
Hanyang Univ., Seoul, Korea
Journal of Fire Sciences,
Vol. 15,
462-480,
November/December 1997
Kedzierski, M. A.; Bruno, T. J.; O'Neill, M. B.
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New Insitu Technique for Measuring the Concentration of Lubricant on a Boiling Heat Transfer Surface.
National Institute of Standards and Technology, Gaithersburg, MD
Department of Energy, Washington, DC,
NISTIR 6110,
January 1998,
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Forney, G. P.; Moss, W. F.
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Method for Computing Heat Transfer Between Connected Compartments in a Zone Fire Model.
National Institute of Standards and Technology, Gaithersburg, MD; Clemson Univ., SC
NISTIR 6190,
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32 p.
Bailey, J. L.; Jones, W. W.; Tatem, P. A.; Forney, G. P.
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Development of an Algorithm to Predict Vertical Heat Transfer Through Ceiling/Floor Conduction.
Naval Research Laboratory, Washington, DC; National Institute of Standards and Technology, Gaithersburg, MD
Fire Technology,
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Ingason, H.; deRis, J.
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Flame Heat Transfer in Storage Geometries.
Swedish National Testing and Research Institute, Boras, Sweden; Factory Mutual Research Corp., Norwood, MA
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1998
Olsson, P. A.
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Bench Scale Testing of Light Timber Frame Walls.
University of Canterbury, Christchurch, New Zealand
Fire Engineering Research Report 98/6,
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226 p.
HInkley, P. L.; Wraight, H.
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Contribution of Flames Under Ceilings to Fire Spread in Compartments. Part 2. Combustible Ceiling Linings.
Fire Research Station, Borehamwood, England
FR Note 743,
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