FireDOC Search

displaying 521 - 530 results in total 864

  • Hass, R.
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    Computer Models and Simplified Methods for Calculation of Structural Elements Under Fire Attack.
    Technische Universitat Braunschweig, West Germany
    New Technology to Reduce Fire Losses and Costs. October 2-3, 1986, Elsevier Applied Science Publishers, NY, Luxembourg, Grayson, S. J.; Smith, D. A., Editors, 178-185 p., 1986

  • Birk, A. M.; Oosthuizen, P. H.
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    Thermodynamic Model of a Rail Tank Car Engulfed in Fire.
    Queen's Univ., Kingston, Canada
    HTD-Vol. 25,
    American Society of Mechanical Engineers. Fire Dynamics and Heat Transfer. 21st National Heat Transfer Conference. July 24-28, 1983., American Society of Mechanical Engineers, New York, Seattle, WA, Quintiere, J. G., Alpert, R. L. and Altenkirch, R. A., Editors, 65-74 p., 1983

  • Rockett, J. A.; Morita, M.; Cooper, L. Y.
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    Comparisons of NBS/Harvard VI Simulations and Full-Scale, Multi-Room Fire Test Data.
    National Institute of Standards and Technology, Gaithersburg, MD
    NBSIR 87-3567, July 1987, 66 p.
    International Association of Fire Safety Science. Fire Safety Science. Proceeding. 2nd International Symposium. June 13-17, 1988, Hemisphere Publishing Corp., New York, Tokyo, Japan, Wakamatsu, T.; Hasemi, Y.; Sekizawa, A.; Seger, P. G.; Pagni, P. J.; Grant, C. E., Editors, 481-490 p., 1989

  • Hagglund, B.
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    Hazardous Conditions in Single Enclosures Subjected to Fire--A Parameter Study.
    National Defence Research Inst., Stockholm, Sweden
    FOA Report C20524-D6, December 1983, 25 p.

  • Calhoun, P. R.
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    Computer Model to Stimulate Fire Testing of Non-Combustible Materials.
    Manville R&D Center, Littleton, CO
    Journal of Fire Sciences, Vol. 1, No. 3, 221-229, May/June 1983

  • van Dijk, H. A. L.
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    Movement of Smoke in Buildings on Fire, Calculated by Means of a Dynamic Computer Model, Taking Into Account the Interaction Between Temperatures Throughout the Building and Smoke Spread, Detection and Control Systems.
    Institute of Applied Physics TNO-TH, Delft, The Netherlands
    CIB W14/80/74 (DK), 1980, 16 p.

  • Cooper, L. Y.
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    Estimating the Environment and the Response of Sprinkler Links in Compartment Fires With Draft Curtains and Fusible Link-Actuated Ceiling Vents. Part 1. Theory.
    National Bureau of Standards, Gaithersburg, MD
    AAMA Research Foundation, Des Plaines, IL, NBSIR 88-3734, April 1988, 37 p.

  • Baum, M. M.
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    On Predicting Spontaneous Combustion.
    Central Electricity Generating Board, London, England
    Combustion and Flame, Vol. 41, No. 2, 187-200, May 1981

  • Cooper, L. Y.
    view article (5.5317235)

    Estimating the Environment and the Response of Sprinkler Links in Compartment Fires With Draft Curtains and Fusible Link-Actuated Ceiling Vents: An Overview.
    National Bureau of Standards, Gaithersburg, MD
    US-Japan Conference on Utilization of Natural Resources. 10th Joint Meeting of the UJNR Panel on Fire Research and Safety. June 9-10, 1988, Tsukuba, Japan, 5 pp AND Combustion Institute/Eastern States Section. Chemical and Physical Process in Combustion. 1988 Technical Meeting. December 5-7, 1988, Clearwater Beach, FL, 61/1-4 pp, AND U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 10th Joint Panel Meeting. June 9-10, 1988, Tsukuba, Japan, 87-91 pp, 1988

  • Jeanes, D. C.
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    Developing Design Concepts for Structural Fire Endurance Using Computer Models.
    American Iron and Steel Inst., Washington, DC
    Design of Structures Against Fire, Elsevier Applied Science Publishers, New York, Anchor, R. D.; Malhotra, H. L.; Purkiss, J. A., Editors, 127-153 p., 1986