FireDOC Search

displaying 61 - 70 results in total 117

  • Tihay, V.; Simeoni, A.; Santoni, P. A.; Garo, J. P.; Vantelon, J. P.
    view article (7.5011644)

    Global Model for the Combustion of Gas Mixtures Released From Forest Fuels.
    Corsica Univ., Corte, France; Poitiers Univ., 86961 Futuroscope Chasseneuil Cedex, France
    Volume 32; Part 2,
    Combustion Institute, Symposium (International) on Combustion, 32nd. Proceedings. Volume 32. Part 2. August 3-8, 2008, Combustion Institute, Pittsburgh, PA, Montreal, Canada, Dagaut, P.; Sick, V., Editors, 2575-2582 p., 2009

  • Gong, J.; Li, Y.
    view article (7.5011644)

    Solution Multiplicity of Smoke Flows in a Simple Building.
    Hong Kong Univ., China
    Fire Safety Science. Proceedings. Ninth (9th) International Symposium. International Association for Fire Safety Science (IAFSS). September 21-26, 2008, Intl. Assoc. for Fire Safety Science, Boston, MA, Karlsruhe, Germany, Karlsson, B., Editors, 895-906 p., 2008

  • Joo, H. I.; Gulder, O. L.
    view article (7.5011644)

    Observation of Liquid Phase Material in Methane-Air Laminar Diffusion Flame Soot Experiments Above 60 Atmospheres. Brief Communication.
    Toronto Univ., Ontario, Canada M3H 5T6
    Combustion and Flame, Vol. 157, No. 2, 408-409, February 2010

  • Wasan, S. R.; Rauwoens, P.; Vierendeels, J.; Merci, B.
    view article (7.5011644)

    Enthalpy-Based Pyrolysis Model for Charring and Non-Charring Materials in Case of Fire.
    Ghent University-UGent, Sint-Pietersnieuwstraat-41, B-9000 Ghent, Belgium
    Combustion and Flame, Vol. 157, No. 4, 715-734, April 2010

  • Mulholland, G. W.; Ohlemiller, T. J.
    view article (7.428664)

    Aerosol Characterization of a Smoldering Source.
    National Bureau of Standards, Gaithersburg, MD
    Aerosol Science and Technology, Vol. 1, 59-71, 1982

  • Tokunaga, T.; Sakai, T.; Kawagoe, K.; Tanaka, T.; Hasemi, Y.
    view article (7.428664)

    Mass Flow Rate Formula for the Upward Current Above Diffusion Flames.
    Fire Research Institute, Tokyo, Japan
    Fire Science and Technology, Vol. 2, No. 2, 117-125, December 1982

  • Sundstrom, B.; Wickstrom, U.
    view article (7.428664)

    Fire: Full Scale Tests. Calibration of Test Room. Part 1.
    National Testing Inst., Boras, Sweden
    CIB W14/81/21 (S); SP-RAPP 1981:48; NORD-TEST PROJECT 143:78,2, 1981, 48 p.

  • Fredlund, B.
    view article (7.428664)

    Model for Heat and Mass Transfer in Timber Structures During Fire: A Theoretical, Numerical and Experimental Study.
    Lund Institute of Science and Technology, Sweden
    CIB W14/88/42 (S); LUTVDG/TVBB-1003, May 1988, 254 p.

  • Nielsen, H. J.
    view article (7.428664)

    Mass Fire Convection Model.
    IIT Research Institute, Chicago, IL
    DASA 1949; DASIAC Special Report 59; NWER Subtask RHA 5008,
    DASA Information and Analysis Center. Tripartite Technical Cooperation Program Panel N-3 (Thermal Radiation) Mass Fire Research Symposium. February 1967, Washington, DC, 39-52 p., 1967

  • Hutchinson, P.; Khalil, E. E.; Whitelaw, J. H.
    view article (7.428664)

    Measurement and Calculation of Furnace-Flow Properties.
    Imperial College of Science and Technology, London, England
    Paper 77-50,
    American Institute of Aeronautics and Astronautics (AIAA). Aerospace Sciences Meeting, 15th. January 24-26, 1977, Los Angeles, CA, 1-10 p., 1977