FireDOC Search

displaying 1021 - 1030 results in total 1128

  • Vogman, L. P.; Degtyarev, A. G.
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    Fire Hazard of Vegetable Raw Materials. Part 1. Mathematical Model of Self-Heating of Vegetable Raw Materials in Bulk.
    Fire Science and Technology, Vol. 15, No. 1/2, 47-51, 1995

  • Chitty, R.; Cox, G.; Fardell, P. J.; Morris, W. A.
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    Mathematical Fire Modelling and Its Applications to Fire Safety Design.
    Fire Research Station, Borehamwood, England
    BR 223, 1992, 157 p.

  • Vogman, L. P.; Korolchenko, A. Y.; Degtyarev, A. G.; Plyushkevich, V.
    view article (5.1059127)

    Burning of Vegetable Raw Material and Fire Safety of Elevators.
    All-Russian Research Institute for Fire Protection, Moscow
    Fire Science and Technology, Vol. 16, No. 1/2, 29-34, 1996

  • DiBlasi, C.
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    On the Role of Surface-Tension-Driven Flows in the Uniform, Near-Flash Flame Spread Over Liquids. Short Communication.
    Universita di Napoli Piazzale V. Tecchio, Napoli, Italy
    Combustion Science and Technology, Vol. 110-111, 555-561, 1995

  • URS Corporation
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    Prediction Models for Fire Spread Following Nuclear Attacks. Final Report.
    URS Corp., Burlingame, CA
    Office of Civil Defense, Washington, DC, URS 641-6, January 1965, 216 p.

  • Takata, A.
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    Mathematical Modeling of Fire Defenses. Final Technical Report. March 1967-December 1968.
    IIT Research Inst., Chicago, IL
    Office of Civil Defense, Washington, DC, NRDL-TRC-69-4; OCD Work Unit 2526A; Final Technical Report, March 1969, 55 p.

  • Takata, A.
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    Mathematical Modeling of Fire Defenses. Part 2. Final Technical Report. May 1969-February 1970.
    IIT Research Inst., Chicago, IL
    Office of Civil Defense, Washington, DC, Project J6179; OCD Work Unit 2526A; Final Technical Report, March 1970, 72 p.

  • 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

  • Walavalkar, A.; Kulkarni, A. K.
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    Mathematical Model for In-Situ Burning of Water-in-Oil Emulsions.
    Pennsylvania State Univ., University Park
    NIST SP 995; Volume 2, March 2003,
    Environment Canada. Arctic and Marine Oilspill Program (AMOP) Technical Seminar, 20th. Volume 2. Proceedings. June 11-13, 1997, Environment Canada, Ottawa, Ontario, Alberta, Canada, 809-821 p., ['1997', '2003']

  • Morita, M.
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    Mathematical Modeling for Building Fire.
    Science University of Tokyo, Japan
    Fire Science and Technology, Vol. 17, No. Special Issue, 40-48, 1997
    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, 375-387 p., 1997