FireDOC Search

displaying 831 - 840 results in total 1432

  • Vines, R. G.
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    Heat Transfer Through Bark, and the Resistance of Trees to Fire.
    Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
    Australian Journal of Botany, Vol. 16, 499-514, 1968

  • Lee, J.; Domanski, P. A.
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    Impact of Air and Refrigerant Maldistributions On the Performance of Finned-Tube Evaporators With R-22 and R-407C.
    National Institute of Standards and Technology, Gaithersburg, MD
    ['DOE/CE/23810-81', 'Final Report']
    Air Conditioning and Refrigeration Technology Inst., Inc., Arlington, VA, DOE/CE/23810-81; Final Report
    July 1997
    38 p.

  • Sincaglia, P. E.; Barnett, J. R.
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    Development of a Glass Window Fracture Model for Zone-Type Computer Fire Codes.
    Firesafety Solutions, Inc., Chagrin Falls, OH; Worcester Polytechnic Inst., MA
    Journal of Fire Protection Engineering, Vol. 8, No. 3, 101-118, 1997

  • Fu, Z.; Kashef, Z.; Benichou, N.; Hadjisophocleous, G. V.
    view article (1.0)

    FIERAsystem Theory Documentation: Smoke Movement Model.
    National Research Council of Canada, Ottawa, Ontario
    ['Internal Report No. 835', 'IRC-IR-835']
    Internal Report No. 835; IRC-IR-835
    March 2002
    69 p.

  • Harada, K.; Terai, T.
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    Heat and Mass Transfer in the Walls Subjected to Fire.
    Building Research Inst., Tokyo, Japan; Kinki Univ., Japan
    NISTIR 6030
    Fire Science and Technology, Vol. 17, No. Special Issue, 70-77, 1997
    NISTIR 6030
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 13th Joint Panel Meeting. Volume 1. March 13-20, 1996, Gaithersburg, MD, Beall, K. A., Editors, 423-435 p., 1997

  • Zhenghua, Y.; holmstedt, G.
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    Numerical Prediction of Heat Flux From Flame in Room Fire.
    Lund Univ., Sweden
    LUTVDG/TVBB-3090-SE
    LUTVDG/TVBB-3090-SE
    1997
    17 p.

  • Hasemi, Y.
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    Concurrent Flame Spread in Fires: State of the Art of Modeling and Future Problems for Engineering Application.
    Building Research Inst., Tokyo, Japan
    NISTIR 6030
    NISTIR 6030
    June 1997
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 13th Joint Panel Meeting. Volume 1. March 13-20, 1996, Gaithersburg, MD, Beall, K. A., Editors, 165-186 p., 1997

  • Hasemi, Y.; Yokobayashi, Y.; Wakamatsu, T.; Ptchelintsev, A. V.
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    Modeling of Heating Mechanism and Thermal Response of Structural Components Exposed to Localized Fires: A New Application of Diffusion Flame Modeling to Fire Safety Engineering.
    Building Research Inst., Tokyo, Japan; Science University of Tokyo, Japan; Kumagai-gumi Co., Japan; All-Russian Research Institute for Fire Protection, Russia
    NISTIR 6030
    NISTIR 6030
    June 1997
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 13th Joint Panel Meeting. Volume 1. March 13-20, 1996, Gaithersburg, MD, Beall, K. A., Editors, 237-247 p., 1997

  • Quintiere, J. G.
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    Principles of Fire Behavior, Delmar Publishers, Albany, NY, 267 p., 1997

  • Weber, R.
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    Scaling Characteristics of Aerodynamics, Heat Transfer, and Pollutant Emissions in Industrial Flames.
    International Flame Research Founcation, The Netherlands
    Combustion Institute, Symposium (International) on Combustion, 26th. Proceedings. Volume 2. July 28-August 2, 1996, Combustion Institute, Pittsburgh, PA, Napoli, Italy, 3343-3354 p., 1996