FireDOC Search

displaying 11 - 20 results in total 118

  • Keating, J. Z.
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    Use of Hydrated Alumina as a Flame and Smoke Suppressing Filler for Flexible Urethane Foams.
    Solem Industries, Inc., Norcross, GA
    Society of the Plastics Industry, Inc. Meeting of the Minds: Marketing Polyurethane Technology. 27th Annual Technical/Marketing Conference. October 20-22, 1982., Bal Harbour, FL, 120-123 p., 1982

  • Beier, R. A.; Pagni, P. J.
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    Soot Volume Fraction Profiles in Forced Combusting Boundary Layers.
    California Univ., Berkeley
    Journal of Heat Transfer, Vol. 105, 159-165, February 1983
    Department of Energy, Washington, DC; National Bureau of Standards, Gaithersburg, MD, LBL-14010; ASME 81-HT-1, January 1982, 31 p.
    American Society of Mechanical Engineers (ASME). ASME/AIChE Joint National Heat Transfer Conference, 20th. August 2-5, 1981, Milwaukee, WI, ['1982', '1983']

  • Zablodil, R. J.; Chapler, R. S.
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    Effect of Sprinkler Heat Particle Sizes and Distribution on Fire Extinguishment.
    Naval Civil Engineering Lab., Port Hueneme, CA
    TN N-366, August 17, 1959, 22 p.

  • Annamalai, K.; Gannon, R. E.; Stickler, D. B.
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    Slag Rejection in Cyclone Combustor.
    Avco Everett Research Lab., Inc., MA
    Department of Energy, Washington, DC, WSS/CI 82-16,
    Combustion Institute/Western States Section. Spring Meeting. April 5-6, 1982., Salt Lake City, UT, 1-30 p., 1982

  • Umhauer, H.
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    Particle Size Distribution Analysis by Scattered Light Measurements Using an Optically Defined Measuring Volume.
    Karlsruhe Univ., Federal Republic of Germany
    Journal of Aerosol Sciences, Vol. 14, No. 6, 765-770, 1983

  • Ewing, C. T.; Faith, F. R.; Hughes, J. T.; Carhart, H. W.
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    Flame Extinguishment Properties of Dry Chemicals: Extinction Concentrations for Small Diffusion Pan Fires.
    Hughes Associates, Inc., Kensington, MD; Naval Research Lab., Washington, DC
    Fire Technology, Vol. 25, No. 2, 134-149, May 1989

  • Holmberg, R. W.
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    Determination of Particle Size in Tobacco Smoke Inhalation Exposure Devices Using Methylcyanoacrylate Fixation and Scanning Microscopy.
    Oak Ridge National Lab., TN

  • Dunn-Rankin, D.
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    Kinetic Model for Simulating the Evolution of Particle Size Distributions During Char Combustion.
    Sandia National Labs., Livermore, CA
    Combustion Science and Technology, Vol. 58, No. 4-6, 297-314, 1988

  • Charalampopoulos, T. T.; Chang, H.
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    In Situ Optical Properties of Soot Particles in the Wavelength Range From 340 nm to 600 nm.
    Louisiana State Univ., Baton Rouge
    Combustion Science and Technology, Vol. 59, No. 4-6, 401-421, 1988

  • Knollenberg, R. G.
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    Optical Array: An Alternative to Scattering or Extinction for Airborne Particle Size Determination.
    National Center for Atmospheric Research, Boulder, CO
    Journal of Applied Meteorology, Vol. 9, 86-103, 1970