FireDOC Search

displaying 11 - 19 results in total 19

  • Torrance, K. E.
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    Subsurface Flows Preceding Flame Spread Over a Liquid Fuel.
    Cornell Univ., Ithaca, New York
    Combustion Science and Technology, Vol. 3, 133-143, 1971

  • Gulder, O. L.
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    Soot Formation in Laminar Diffusion Flames at Elevated Temperatures.
    National Research Council of Canada, Ottawa, Ontario
    Combustion and Flame, Vol. 88, No. 1, 74-82, January 1992

  • McMahon, J. R.; Kuwata, M.; Essenhigh, R. H.
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    Phenomenological Analysis of Unenclosed Laminar Jet Flames.
    Pennsylvania State Univ., University Park
    WSS/CI 71-12,
    Combustion Institute/Western States Section. Spring Meeting. April 26-27, 1971, Denver, CO, 1-17 p., 1971

  • view article (8.745374)

    Investigation of Cable and Cable System Fire Test Parameters. Task A: IEEE 383 Flame Test.
    Underwriters Labs., Inc., Northbrook, IL
    Nuclear Regulatory Research Commission, Washington, DC, NUREG/CR-4112, Vol.1; US 75-1, January 1985, 98 p.

  • Adiga, K. C.; Ramaker, D. E.; Tatem, P. A.; Williams, F. W.
    view article (8.745374)

    Field Modeling Approach for Fires Over Large Liquid Pools: Boundary Layer Combustion Analysis.
    George Washington Univ., Washington, DC; Naval Research Laboratory, Washington, DC
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Fall Technical Meeting, 1985. November 4-6, 1985, Philadelphia, PA, 45/1-45/4 p., 1985

  • Alvares, N. J.; Foote, K.
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    Contrast Between Natural and Experimentally Controlled Fires in Forced Ventilated Enclosures.
    Lawrence Livermore National Lab., CA
    LA-9911-C-Vol. 1; LA-9911-C-Vol. 2; CSNI No. 83; UCRL-88588, October 1983,
    CSNI Specialist Meeting on Interaction of Fire and Explosion With Ventilation Systems in Nuclear Facilities. Volume 1 and Volume 2. April 25-28, 1983, Los Alamos, NM, 335-376 p., 1983

  • Lin, K. C.; Faeth, G. M.; Sunderland, P. B.; Urban, D. L.; Yuan, Z. G.
    view article (8.745374)

    Shapes of Nonbuoyant Round Luminous Hydrocarbon/Air Laminar Jet Diffusion Flames.
    University of Michigan, Ann Arbor; NASA Lewis Research Center, Cleveland, OH
    Combustion and Flame, Vol. 116, No. 3, 415-431, February 1999
    National Aeronautics and Space Administration, Lewis Research Center, Cleveland, OH,

  • Prasad, K. R.; Li, C.; Kailasanath, K.; Ndubizu, C.; Anath, R.; Tatem, P. A.
    view article (8.745374)

    Numerical Modeling of Fire Suppression Using Water Mist. Part 1. Gaseous Methane-Air Diffusion Flames. NRL Memorandum Report.
    Naval Research Laboratory, Washington, DC
    Office of Naval Research, Arlington, VA, NRL/MR/6410-98-8102, January 19, 1998, 53 p.

  • Dworkin, S. B.; Connelly, B. C.; Schaffer, A. M.; Bennett, B. A. V.; Long, M. B.; Smooke, M. D.; Puccio, M. P.; McAndrews, B.; Miller, J. H.
    view article (8.745374)

    Computational and Experimental Study of a Forced, Time-Dependent, Methane-Air Coflow Diffusion Flame.
    Yale Univ., New Haven, CT; George Washington Univ., Washington, DC
    Volume 31; Part 1,
    Combustion Institute, Symposium (International) on Combustion, 31st. Proceedings. Volume 31. Part 1. August 5-11, 2006, Combustion Institute, Pittsburgh, PA, Heidelberg, Germany, Barlow, R. S.; Sick, V.; Glarborg, P.; Yetter, R. A., Editors, 971-978 p., 2007