FireDOC Search

displaying 261 - 270 results in total 1128

  • Stensaas, J. P.; Hovde, P. J.; Magnussen, B. F.
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    Physical Modelling of Enclosed Pool Fires: Development of Empirical Correlations.
    Norwegian Institute of Technology, Trondheim, Norway
    International Association for Fire Safety Science. Fire Safety Science. Proceedings. 2nd International Symposium. June 13-17, 1988, Hemisphere Publishing Corp., New York, Tokyo, Japan, Wakamatsu, T.; Hasemi, Y.; Sekizawa, A.; Seeger, P. G.; Pagni, P. J.; Grant, C. E., Editors, 251-261 p., 1989

  • Lev, Y.; Strachan, D. C.
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    Dry Testing of Water Spray Systems.
    Shell Research Ltd., Chester, England
    Journal of Fire Sciences, Vol. 7, No. 1, 3-21, January/February 1989

  • Bradley, D.; Lau, A. K. C.; Missaghi, M.
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    Response of Compensated Thermocouples to Fluctuating and Temperatures: Computer Simulation, Experimental Results and Mathematical Modelling.
    Leeds Univ., England
    Combustion Science and Technology, Vol. 64, No. 1-3, 119-134, 1989

  • Mitler, H. E.; Walton, G. N.
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    Modeling the Ignition of Soft Furnishings by a Cigarette. Volume 3.
    National Institute of Standards and Technology, Gaithersburg, MD
    NIST SP 852; Volume 3, August 1993, 169 p.

  • Miller, J. A.; Kee, R. J.
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    Chemical Non-Equilibrium Effects in Hydrogen-Air Laminar Jet Diffusion Flames.
    Sandia Labs., Livermore, CA
    Combustion Institute/Central States Section and National Aeronautics and Space Administration. Fluid Mechanics of Combustion Processes. Spring Meeting. March 28-30, 1977, Cleveland, OH, 1-34 p., 1977

  • Chapman, K. S.; Ramadhyani, S.; Viskanta, R.
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    Modeling and Analysis of Heat Transfer in a Direct-Fired Continuous Reheating Furnace.
    Purdue Univ., West Lafayette, IN
    HTD-Vol. 122,
    American Society of Mechanical Engineers (ASME). Heat Transfer in Combustion Systems. Winter Annual Meeting. HTD-Vol. 122. December 10-15, 1989, San Francisco, CA, Ashgriz, N.; Quintiere, J. G.; Semerjian, H. G.; Slezak, S. E., Editors, 35-43 p., 1989

  • Kulkarni, A. K.; Fischer, S. J.
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    Upward Flame Spread on Vertical Walls: An Approximate But Complete Model and Experiments.
    Pennsylvania State Univ., University Park; National Institute of Standards and Technology, Gaithersburg, MD
    National Institute of Standards and Technology, Gaithersburg, MD, HTD-Vol. 122,
    American Society of Mechanical Engineers (ASME). Heat Transfer in Combustion Systems. Winter Annual Meeting. HTD-Vol. 122. December 10-15, 1989, San Francisco, CA, Ashgriz, N.; Quintiere, J. G.; Semerjian, H. G.; Slezak, S. E., Editors, 53-61 p., 1989

  • Suhas, H. K.; Bose, T. K.
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    Mathematical Model to Predict Transient Burning Rate and Pressure Decay Rates for Extinction of Composite Propellants.
    Indian Institute of Technology, Madras, India
    Combustion and Flame, Vol. 28, No. 2, 145-153, 1977

  • Ozoe, H.; Yamamoto, K.; Churchill, S. W.; Sayama, H.
    view article (5.2976565)

    Three-Dimensional, Numerical Analysis of Laminar Natural Convection in a Confined Fluid Heated From Below.
    Okayama Univ., Japan; Pennsylvania Univ., Philadelphia
    Journal of Heat Transfer, Vol. 98, No. 2, Series C, 202-207, May 1976

  • Starrett, P. S.
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    Factors Influencing Flame Spread Rates in Solid Materials.
    Lockheed-California Co., Burbank
    Journal of Fire and Flammability, Vol. 8, 5-25, January 1977