FireDOC Search

displaying 141 - 150 results in total 367

  • Sheppard, D. T.
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    Laser Measurements of Fire Sprinkler Sprays. BFRL Fire Research Seminar. VHS Video.
    Underwriters Laboratories, Inc., Northbrook, IL
    Video
    Video
    March 20, 2001

  • Panesko, J. V.
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    Mobility of Plutonium Compounds in Simulated Fire Sprinkler Spray.
    Atlantic Richfield Hanford Co., Richland, WA
    ARH-2401
    ARH-2401
    October 1972
    19 p.

  • Baker, H. R.; Leach, P. B.; Singleterry, C. R.
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    Surface Chemical Methods of Displacing Water and/or Oils and Salvaging Flooded Equipment. Part 2. Filed Experience in Recovering Equipment Damaged by Fire Aboard USS Constellation and Equipment Subjected to Salt-Spray Acceptance Test.
    Naval Research Laboratory, Washington, DC
    NRL Report 5680
    NRL Report 5680
    September 19, 1961
    16 p.

  • Chigier, N. A.; McCreath, C. G.; Makepeace, R. W.
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    Dynamics of Droplets in Burning and Isothermal Kerosene Sprays.
    Sheffield Univ., England
    Combustion and Flame, Vol. 23, 11-16, 1974

  • Yule, A. J.; Moodie, K.
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    Method for Testing the Flammability of Sprays of Hydraulic Fluid.
    UMIST, UK; RLSD, Buxton, UK
    Fire Safety Journal, Vol. 18, No. 3, 273-302, 1992

  • U.S. Department of Agriculture
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    Specification for Nozzle Tips, Straight-Stream and Spray.
    Department of Agriculture, Washington, DC
    Specification 5100-244
    Specification 5100-244
    November 1973
    11 p.

  • Tio, K. K.; Sadhal, S. S.
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    Thermal Analysis of Droplet Spray Evaporation From a Heated Solid Surface.
    California Univ., San Diego, La Jolla; Southern California Univ., Los Angeles
    Journal of Heat Transfer, Vol. 114, No. 1, 220-226, February 1992

  • Pais, M. R.; Chow, L. C.; Mahefkey, E. T.
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    Surface Roughness and Its Effects on the Heat Transfer Mechanism in Spray Cooling.
    Kentucky Univ., Lexington; Aero Propulsion and Power Lab., Wright-Patterson AFB, OH
    Journal of Heat Transfer, Vol. 114, No. 1, 211-219, February 1992

  • Makino, A.
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    Ignition Criteria for a Fuel Droplet Expressed in Explicit Form.
    Shizuoka Univ., Hamamatsu, Japan
    Combustion Science and Technology, Vol. 80, No. 4-6, 305-317, 1991

  • Tartarini, P.; diMarzo, M.
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    Solid-Liquid Interfacial Conditions for Dropwise Evaporative Cooling.
    Maryland Univ., College Park
    Heat and Technology, Vol. 10, No. 3/4, 130-144, 1992
    National Institute of Standards and Technology, Gaithersburg, MD,
    ATTI. National Congress on Heat Transfer, 9th. Universita degli Studi di Pisa, Genova, Italy. March 13-14, 1991, Genova, Italy, 61-75 p., 1992