FireDOC Search

displaying 21 - 30 results in total 222

  • Lie, T. T.; Lin, T. D.
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    Fire Performance of Reinforced Concrete Columns.
    National Research Council of Canada, Ottawa, Ontario; Portland Cement Assoc., Skokie, IL
    CIB W14/86/22 (C); ASTM STP 882; NRCC 25351, 1985,
    American Society for Testing and Materials. Fire Safety: Science and Engineering. ASTM STP 882. June 26-27, 1984, Denver, CO, Harmathy, T. Z., Editors, 176-205 p., ['1984', '1985']

  • Munoz-Candelario, R.; Alvares, N. J.
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    Definition of the Concentration Gradient Above Flammable Liquids.
    Puerto Rico Univ., Mayaguez; Lawrence Livermore National Lab., Livermore, CA
    ASTM STP 882,
    American Society for Testing and Materials. Fire Safety: Science and Engineering. ASTM STP 882. June 26-27, 1984, Denver, CO., Harmathy, T. Z., Editors, 377-385 p., 1984

  • Claus, R. W.; Neely, G. M.; Syed, S. A.; Gosman, A. D.
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    Reducing Numerical Diffusion for Incompressible Flow Calculations.
    NASA Lewis Research Center, Cleveland, OH; United Technologies, East Hartford, CT; Imperial College, London, England
    Combustion Institute/Western States Section. Spring Meeting, 1984. April 2-3, 1984, Boulder, CO, 1-34 p., 1984

  • Butcher, E. G.; Parnell, A. C.
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    Analysis of Fire Behavior. A Review.
    Fire Surveyor, Vol. 14, No. 3, 27-32, June 1984

  • Wear, J. D.; Jones, R. E.; McBride, B. J.; Beyerle, R. A.
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    Combustion Gas Properties. Part 3. Hydrogen Gas Fuel and Dry Air.
    National Aeronautics and Space Administration, Cleveland, OH; Sverdrup Technology, Inc., Tullahoma, TN
    NASA TP-2477, June 1985, 12 p.

  • Quintiere, J. G.; Baum, H. R.; Lawson, J. R.
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    Fire Growth in Combat Ships.
    National Bureau of Standards, Gaithersburg, MD
    David Taylor Naval Ship R and D Center, Washington, DC, NBSIR 85-3159, June 1985, 98 p.

  • Kiehne, T. M.; Matthews, R. D.; Wilson, D.
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    Computational Evaluation of a Four Step Overall Kinetic Mechanism for the Oxidation of Propane in Laminar Premixed Freely Propagating and Wall Quench Flame Environments.
    Texas Univ., Austin
    WSS/CI Paper 84-5, 1984, 56 p.
    Combustion Institute/Western States Section. Spring Meeting, 1984. April 2-3, 1984, Boulder, CO, 1984

  • Blevins, L. G.; Gore, J. P.
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    Computed Structure of Low Strain Rate Partially Premixed CH4/Air Counterflow Flames: Implications for NO Formation.
    National Institute of Standards and Technology, Gaithersburg, MD; Purdue Univ., West Lafayette, IN
    Combustion and Flame, Vol. 116, 546-566, 1999
    National Science Foundation, Washington, DC; Naval Research Lab., Washington, DC,

  • American Society of Mechanical Engineers
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    Combustion Fundamentals for Waste Incineration.
    American Society of Mechanical Engineers, New York
    Library of Congress Catalog Number 74-19743,
    Combustion Fundamentals for Waste Incineration. Sponsored by the ASME Research Committee on Industrial and Municipal Wastes, American Society of Mechanical Engineers, NY, 220 p., 1974

  • Raju, M. S.; Sirignano, W. A.
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    Spray Computations in a Centerbody Combustor.
    California Univ., Irvine
    American Society of Mechanical Engineers. ASME/JSME Thermal Engineering Conference. Volume 1. 1987., Am. Soc. of Mechanical Engineers, NY, Marto, P. J. and Tanasawa, I.,, Editors, 61-71 p., 1987