FireDOC Search

displaying 41 - 50 results in total 102

  • Xiang, L.; McDonough, J. M.; Saito, K.
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    Numerical Simulation of Flow and Temperature Field Induced by Coflow Laminar DiffusionFlames.
    Kentucky Univ., Lexington
    University of Science and Technology of China. Fire Science and Technology. Asian Conference, 1st (ACFST). October 9-13, 1992, International Academic Publishers, China, Hefei, China, Weicheng, F.; Zhuman, F., Editors, 294-299 p., 1992

  • Benedict, L.; Zukoski, E. E.
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    Buoyant Flows in Shafts.
    California Institute of Technology, Pasadena, CA
    National Institute of Standards and Technology, Gaithersburg, MD, NISTIR 5904, October 1996,
    National Institute of Standards and Technology. Annual Conference on Fire Research: Book of Abstracts. October 28-31, 1996, Gaithersburg, MD, 69-70 p., 1996

  • Miller, F. J.; Ross, H. D.
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    Liquid-Phase Velocity and Temperature Fields During Uniform Flame Spread Over 1-Propanol.
    Case Western Reserve Univ., Cleveland, OH; NASA Lewis Research Center, Cleveland, OH
    Transport Phenomena in Combustion. Proceedings of the 8th International Symposium on Transport Phenomena in Combustion (ISTP-VIII). Volume 1. July 16-20, 1995, Taylor and Francis, Washington, DC, San Francisco, CA, Chan, S. H., Editors, 736-744 p., 1995

  • Pettersson, O.
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    Fire Research and Building.
    Lund Institute of Technology, Sweden
    Bulletin 22, 1971, 24 p.
    Research Into Practice, The Challenge of Application. CIB 5th Congress. June 22-30, 1971, Versailles, France, 1971

  • Odeen, K.
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    Fire Resistance of Prestressed Concrete Double T Units.
    National Swedish Institute for Materials Testing, Stockholm, Sweden
    Fire Engineering Laboratory 1968:1; UDC 699:81:624.012.46, 1968, 75 p.

  • Hasemi, Y.; Yokobayashi, Y.; Wakamatsu, T.; Ptchelintsev, A. V.
    view article (7.7347794)

    Modeling of Heating Mechanism and Thermal Response of Structural Components Exposed to Localized Fires: A New Application of Diffusion Flame Modeling to Fire Safety Engineering.
    Building Research Inst., Tokyo, Japan; Science University of Tokyo, Japan; Kumagai-gumi Co., Japan; All-Russian Research Institute for Fire Protection, Russia
    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, 237-247 p., 1997

  • Noumowe, N. A.; Clastres, P.
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    Experimental and Numerical Contributions to Explanation of Concrete Spalling.
    INSA de Lyo, France
    Modeling of Deterioration in Composite Building Components Due to Heat and Mass Transfer Workshop. Proceedings. Building Research Institute (BRI) Proceedings No. 6. January 22-23, 1998, Tsukuba, Japan, 151-167 p., 1998

  • Satoh, K.; Yang, K. T.
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    Measurements of Fire Whirls From a Single Flame in a Vertical Square Channel With Symmetrical Corner Gaps.
    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, 45-51, 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']

  • Paulsen, O.
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    On the Heat Transfer in Fire Test Furnaces.
    Technical University of Denmark
    1979, 251 p.

  • Zhang, W.; Hamer, A.; Klassen, M.; Carpenter, D.; Roby, R.
    view article (7.7347794)

    Turbulence Statistics in a Fire Room Model by Large Eddy Simulation.
    Combustion Science and Engineering, Inc., Columbia, MD
    Fire Safety Journal, Vol. 37, No. 8, 721-752, November 2002