FireDOC Search

displaying 41 - 50 results in total 169

  • Schmitz, R. A.
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    Combustion and Flame Stability. Final Report.
    Illinois Univ., Urbana-Champaign
    Final Report, August 14, 1975, 13 p.

  • Motevalli, V.; Marks, C. H.
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    Transient and Steady State Study of Small-Scale, Fire-Induced Unconfined Ceiling Jets.
    Worcester Polytechnic Institute, MA; Maryland Univ., College Park
    HTD-Vol. 141,
    American Institute of Aeronautics and Astronautics/American Society of Mechanical Engineers (AIAA/ASME). Heat and Mass Transfer in Fires. AIAA/ASME Thermophysics and Heat Transfer Conference. HTD-Vol. 141. June 18-20, 1990, Am. Soc. of Mechanical Engineers, New York, Seattle, WA, Quintiere, J. G.; Cooper, L. Y., Editors, 49-61 p., 1990

  • Shkadinskii, K. G.
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    Transition to Steady-State Combustion and Critical Conditions of Heat-Pulse Gas Ignition.
    Combustion, Explosion and Shock Waves, Vol. 6, No. 4, 390-394, May 1973

  • vanDell, R. D.
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    Simple Flame Model for a Laminar Flow Laboratory Thermal Oxidizer.
    Dow Chemical Co.
    Combustion Science and Technology, Vol. 74, No. 1-6, 379-391, 1990

  • Finucane, K. E.; Egan, B. A.; Dawson, S. V.
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    Linearity and Frequency Response of Pneumotachographs.
    Harvard School of Public Health, Boston, MA
    Journal of Applied Physiology, Vol. 32, No. 1, 121-126, January 1972

  • Burgoyne, J. H.; Roberts, A. F.
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    Spread of Flame Across a Liquid Surface. Part 3. A Theoretical Model.
    Imperial College, London, England
    Proceeding of the Royal Society of London, Series A. Mathematical and Physical Sciences, Vol. 308, 69-79, 1968

  • Burgoyne, J. H.; Roberts, A. F.
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    Spread of Flame Across a Liquid Surface. Part 2. Steady-State Conditions.
    Imperial College, London, England
    Proceeding of the Royal Society of London, Series A. Mathematical and Physical Sciences, Vol. 308, 55-68, 1968

  • Burgoyne, J. H.; Roberts, A. F.
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    Spread of Flame Across a Liquid Surface. Part 1. The Induction Period.
    Imperial College, London, England
    Proceeding of the Royal Society of London, Series A. Mathematical and Physical Sciences, Vol. 308, 39-53, 1968

  • Genensky, S. M.
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    Problem in Self-Heating of a Spherical Body.
    Brown Univ., Providence, RI
    Journal of Research of the National Bureau of Standards, Vol. 59, No. 2, 79-81, August 1957
    Research Paper 2773,

  • Ramstad, R. W.
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    Steady-State Method for Studying the Kinetics of Thermal Degradation in Solid Materials: Application to Alpha-Cellulose.
    Naval Radiological Defense Lab., San Francisco, CA
    Defense Atomic Support Agency, Washington, DC, USNRDL-TR-884; NWER-8; Sub-Project 12.006, October 8, 1965, 40 p.