FireDOC Search

displaying 191 - 200 results in total 357

  • Galvez, R.
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    Smothering Smoke Sources.
    Schirmer Engineering Corp., Miami, FL
    Consulting-Specifying Engineer, Vol. 27, No. 1, 46-48, January 2000

  • Garzon, V. E.; McDonough, J. M.; Saito, K.
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    Time-Dependent Model of Forest fire Spread in turbulent Gusting Winds.
    University of Kentucky, Lexington
    ASTM STP 1336
    ASTM STP 1336
    Very Large-Scale Fires. Proceedings. American Society for Testing and Materials (ASTM) STP 1336. June 16, 1997, American Society for Testing and Materials, West, St. Louis, MO, Keltner, N. R.; Alvares, N. J.; Grayson, S. J., Editors, 73-83 p., 1998

  • Takemoto, A.; Yamashita, K.; Satoh, K.; Koseki, H.; Sagae, K.; Kaneda, S.; Iwata, Y.
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    Fire Suppression and Control by Aerial Fire Fighting Against Urban Fire. Part 1. Control of Fire Spread Between Houses to Windward.
    Report of National Research Institute of Fire and Disaster, No. 88, 64-78, September 1999

  • Satoh, K.; Yoshihara, H.; Sagae, K.; Yang, K. T.
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    Reduction of Fire Hazards Downwind of Wind-Driven Fires by Three Barriers. Part 1. A Preliminary Experimental and Numerical Simulation Study.
    AJTE99-6144
    AJTE99-6144
    ASME/JSME Joint Thermal Engineering Conference, 5th Proceedings. March 15-19, 1999, San Diego, CA, 128-135 p., 1999

  • Murakami, S.; Zeng, J.; Hayashi, T.
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    CFD Analysis of Wind Environment Around a Human Body.
    University of Tokyo, Japan
    Journal of Wind Engineering and Industrial Aerodynamics, Vol. 83, No. 1/3, 393-408, November 1999

  • Satoh, K.; Yoshihara, H.; Sagae, K.; Naba, H.; Araiba, K.; Yang, K. T.
    view article (1.0)

    Reduction of Fire Hazards Downwind of Wind-Driven Fires by Tree Barriers. Part 4. Numerical Simulation of Real-Scale Fires Located in Kobe City, Japan.
    National Research Institute of Fire and Disaster, Tokyo, Japan; University of Notre Dame, IN
    Report of National Research Institute of Fire and Disaster, No. 89, 52-59, March 2000
    Fundamentals of Heat Transfer in Flames Symposium. Proceedings. American Society of Mechanical Engineers (ASME) Heat Transfer Division. ASME International Mechanical Engineering Congress and Exposition. HTD-Vol. 364-4. 1999, ['2000', '1999']

  • Perry, G. L. W.
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    Current Approaches to Modeling the Spread of Wildland Fire: A Review.
    University of Melbourne, Australia
    Progress in Physical Geography, Vol. 22, No. 2, 222-245, June 1998

  • Weise, D. R.; Biging, G. S.
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    Qualitative Comparison of Fire Spread Models Incorporating Wind and Slope Effects.
    Pacific Southwest Forest and Range Experimental Station, Riverside, CA; California Univ., Berkeley
    Forest Science, Vol. 43, No. 2, 170-180, May 1997

  • Public Works Research Institute
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    Public Works Research Institute, Ibaraki-ken, Japan
    Design for Wind and Wind Hazard Mitigation, 2nd U.S./Japan Workshop. Proceedings. Technical Memorandum of PWRI No. 3680. May 24-26, 1999, Japan, 151 p.,

  • Rimen, J.
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    Use of Positive Pressure Ventilation in Firefighting Operations.
    Home Office Fire Experimental Unit, Moreton-in-Marsh, UK
    Research Report Number 81
    Fire Engineers Journal, Vol. 60, No. 206, 7-13, May 2000
    Research Report Number 81
    2000
    14 p.