FireDOC Search

displaying 571 - 580 results in total 1413

  • Bonczyk, P. A.
    view article (5.0591397)

    In-Situ Optical Measurement of Additive Effects on Particulates in a Sooting Diffusion Flame.
    United Technologies Research Center, East Hartford, CT
    Combustion and Flame, Vol. 51, No. 2, 219-229, June 1983

  • Williams, F. A.; Peters, J. W.
    view article (5.0591397)

    Studies of Dry-Powder Extinguishment of Diffusion Flames for Condensed Fuels. Final Technical Report.
    Princeton Univ., NJ
    National Bureau of Standards, Gaithersburg, MD, Final Technical Report, June 15, 1982, 121 p.

  • Markstein, G. H.
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    Soot Formation, Radiant Emission and Absorption in Laminar Ethylene and Propylene Diffusion Flames. Technical Report.
    Factory Mutual Research Corp., Norwood, MA
    National Science Foundation, Washington, DC, FMRC J.I. OFON7.BU; RC83-BT-6, June 1983, 46 p.

  • Rasbash, D. J.; Drysdale, D. D.
    view article (5.0591397)

    Fundamentals of Smoke Production.
    Edinburgh Univ., Scotland
    Fire Safety Journal, Vol. 5, No. 1, 77-86, 1982
    QMC/FRS Joint Conference. Smoke and Toxic Gases From Burning Plastics. January 6-7, 1982., London, England, 1982

  • Heskestad, G.
    view article (5.0591397)

    Luminous Heights of Turbulent Diffusion Flames.
    Factory Mutual Research Corp., Norwood, MA
    Fire Safety Journal, Vol. 5, No. 2, 103-108, 1983

  • Kokkala, M.
    view article (5.0591397)

    Heat Transfer to and Ignition of Ceiling by an Impinging Diffusion Flame.
    Technical Research Centre of Finland, Espoo
    VTT Research Report 586, February 1989, 76 p.

  • Tokunaga, T.; Sakai, T.; Kawagoe, K.; Tanaka, T.; Hasemi, Y.
    view article (5.0591397)

    Mass Flow Rate Formula for the Upward Current Above Diffusion Flames.
    Fire Research Institute, Tokyo, Japan
    Fire Science and Technology, Vol. 2, No. 2, 117-125, December 1982

  • Khristich, V. A.; Lyubchik, G. N.
    view article (5.0591397)

    Certain Principles of Development of Diffusion Gas Flame Burning in the Turbulent Wake Behind a Stabilizer.
    Kiev Order of Lenin Polytechnical Inst., USSR
    Heat Physics and Heat Engineering (Russian), 202-206, 1964
    FTD-MT-65-73,

  • Chen, C. H.
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    Diffusion Flame Extinction in Slow Convective Flow Under Microgravity Environment.
    National Aeronautics and Space Admin., Cleveland, OH
    NASA TM-88799; E-3137, 1986, 16 p.
    American Society of Mechanical Engineers. Microgravity Fluid Mechanics Symposium. December 10-11, 1986., Anaheim, CA, 1986

  • Seshadri, K.; Williams, F. A.
    view article (5.0591397)

    Structure and Extinction of Counterflow Diffusion Flames Above Condensed Fuels: Comparison Between Poly(methyl Methacrylate) and Its Liquid Monomer, Both Burning in Nitrogen-Air Mixtures.
    California Univ., San Diego, La Jolla
    Journal of Polymer Science: Polymer Chemistry Edition, Vol. 16, 1755-1778, 1978