FireDOC Search

displaying 41 - 50 results in total 70

  • Williams-Leir, G.
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    Multiple Regression Analysis of Fire Deaths From Burns.
    National Research Council of Canada, Ottawa, Ontario
    BRE Note No. 58, March 1967, 11 p.

  • Wu, N.; Baker, M.; Kolb, G.; Torero, J. L.
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    Ignition, Flame Spread and Mass Burning Characteristics of Liquid Fuels on a Water Bed.
    Maryland Univ., College Park
    National Institute of Standards and Technology, Gaithersburg, MD,
    Environment Canada. Arctic and Marine Oilspill Program (AMOP) Technical Seminar, 20th. Volume 2. Proceedings. June 11-13, 1997, Environment Canada, Ottawa, Ontario, Alberta, Canada, 769-793 p., 1997

  • Steinberg, T. A.; Veidt, M.
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    Ultrasonic Measurement of the Regression Rate of the Meling Interface in Burning Metal Rods.
    University of Queensland, Australia
    ASTM STP 1319; ASTM PCN 04-013190-31,
    American Society for Testing and Materials. Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres: Eighth (8th) Volume. ASTM STP 1319. Proceedings. 1997, ASTM, Philadelphia, PA, Janoff, D. D.; Royals, W. T.; Chou, T. C.; Steinberg, T. A., Editors, 122-134 p., 1997

  • Lundin, J.
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    Model Uncertainty in Fire Safety Engineering.
    Lund Univ., Sweden
    Report 1020; LUTVDG/TVBB-1020-SE, 1999, 170 p.

  • Olson, S. L.; Tien, J. S.
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    Near-Surface Vapour Bubble Layers in Buoyant Low Stretch Burning of Polymethylmethacrylate.
    NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; Case Western Reserve Univ., Cleveland, OH
    Fire and Materials, Vol. 23, No. 5, 227-237, September/October 1999

  • Olson, S. L.; Tien, J. S.
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    Buoyant Low-Stretch Diffusion Flames Beneath Cylindrical PMMA Samples.
    NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; Case Western Reserve Univ., Cleveland, OH
    Combustion and Flame, Vol. 121, No. 3, 439-452, May 2000

  • Saito, T.; Shimoda, M.; Tsuyuki, T.; Iwama, A.
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    CO2 Laser-Induced Pulsating Regression Behavior of GAP at Sub-Stmospheric Pressures.
    Institute of Space and Astronautical Science, Kanagawa, Japan; Nissan Motor Co. Ltd., Kanagawa, Japan; Nippon Koki Co. Ltd., Fukushima, Japan
    Combustion and Flame, Vol. 124, No. 4, 611-623, March 2001

  • Kuznetsov, I. R.; Stewart, D. S.
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    Modeling the Thermal Expansion Boundary Layer During the Combustion of Energetic Materials.
    University of Illinois, Urbana
    Combustion and Flame, Vol. 126, No. 4, 1747-1763, September 2001

  • Dimitrakopoulos, A. P.; Papaioannou, K. K.
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    Flammability Assessment of Mediterranean Forest Fuels.
    Aristotle Univ., Thessaloniki, Greece
    Fire Technology, Vol. 37, No. 2, 143-152, ['2nd Quarter 2001', 'April 2001']

  • Koseki, H.; Iwata, Y.
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    Effects of Pan Size on Radiation Characteristics of Large Scale Crude Oil Fires.
    National Research Institute of Fire and Disaster, Tokyo, Japan
    Volume 1,
    Interscience Communications Ltd.; Building Research Establishment; National Fire Protection Association; National Institute of Standards and Technology; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute. Interflam 2001. (Interflam '01). International Interflam Conference, 9th Proceedings. Volume 1. September 17-19, 2001, Interscience Communications Ltd., London, England, Edinburgh, Scotland, 647-658 p., 2001