FireDOC Search

displaying 511 - 520 results in total 725

  • Wieser, D.; Jauch, P.; Willi, U.
    view article (5.66074)

    Influence of High Altitude on Fire Detector Test Fires.
    Cerberus AG, Mannedorf, Switzerland
    Fire Safety Journal, Vol. 29, No. 2/3, 195-204, September/October 1997

  • Matalon, M.
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    Spherical Diffusion Flames: Structure and Dynamics.
    Northwestern Univ., Evanston, IL
    National Aeronautics and Space Administration, Lewis Research Center, Cleveland, OH, NASA Conference Publication 10194,
    Microgravity Combustion Workshop, Fourth (4th) International. Proceedings. National Aeronautics and Space Administration, Lewis Research Center. NASA Conference Publication 10194. May 19-21, 1997, Cleveland, OH, 75-80 p., 1997

  • Nelson, H. E.
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    Elements of Fire Hazard Analysis for Fire Safety Design.
    Hughes Associates, Inc., Baltimore, MD
    Pacific Rim Conference and Second (2nd) International Conference on Performance-Based Codes and Fire Safety Design Methods. Proceedings. International Code Council and the Society of Fire Protection Engineers (SFPE). May 3-9, 1998, International Code Council, Birmingham, AL, Maui, HI, 347-356 p., 1998

  • Smith, E. E.
    view article (5.66074)

    Heat Release Rate of Building Materials.
    Ohio State Univ., Columbus
    LC Catalog No. 70-185537,
    American Society for Testing and Materials (ASTM). Ignition, Heat Release, and Noncombustibility of Materials. Proceedings. ASTM STP 502. October 6, 1971, Washington, DC, Robertson, A. F., Editors, 119-134 p., 1972

  • Hackert, C. L.; Ellzey, J. L.; Ezekoye, O. A.
    view article (5.66074)

    Combustion and Heat Transfer in Model Two-Dimensional Porous Burners.
    University of Texas, Austin
    Combustion and Flame, Vol. 116, 177-191, 1999

  • Buist, I.
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    Window of Opportunity for In Situ Burning.
    S.L Ross Environmental Research Ltd., Ottawa, Canada
    NIST SP 935; NIST SP 995; Volume 2, February 1999; March 2003,
    In Situ Burning of Oil Spills. Proceedings. National Institute of Standards and Technology and Minerals Management Service. November 2-4, 1998, New Orleans, LA, Walton, W. D.; Jason, N. H., Editors, 21-30 p., ['1999', '2003']

  • Novozhilov, V.; Moghtaderi, B.; Kent, J. H.; Fletcher, D. F.
    view article (5.66074)

    Solid Fire Extinguishment by a Water Spray.
    Orbital Engine Co., Balcatta, Australia; University of Newcastle, Australia; University of Sydney, Australia
    Fire Safety Journal, Vol. 32, No. 2, 119-135, March 1999

  • Frandsen, W. H.
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    Smoldering Duff: Limits, Heat Evolved, and Burn Rate.
    Montana Univ., Missoula
    Thesis, 1989, 156 p.

  • Spearpoint, M. J.
    view article (5.66074)

    Predicting the Ignition and Burning Rate of Wood in the Cone Calorimeter Using an Integral Model.
    Maryland Univ., College Park
    National Institute of Standards and Technology, Gaithersburg, MD, NIST GCR 99-775, May 1999, 425 p.

  • Hamins, A.; Yang, J. C.; Kashiwagi, T.
    view article (5.66074)

    Global Model for Predicting the Burning Rates of Liquid Pool Fires.
    National Institute of Standards and Technology, Gaithersburg, MD
    NISTIR 6381, September 1999, 39 p.