FireDOC Search

displaying 31 - 40 results in total 628

  • Heskestad, G.
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    Escape Potentials From Apartments Protected by Fire Detectors in High-Rise Buildings. Final Technical Report.
    Factory Mutual Research Corp., Norwood, MA
    Department of Housing and Urban Development, Washington, DC, Final Technical Report; FMRC Serial No. 21017; RC74-T-15, June 1974, 128 p.

  • Sibulkin, M.; Ketelhut, W.; Feldman, S.
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    Effect of Orientation and External Flow Velocity on Flame Spreading Over Thermally Thin Paper Strips. Short Communication.
    Brown Univ., Providence, RI
    Combustion Science and Technology, Vol. 9, 75-77, 1974
    National Science Foundation, Washington, DC,
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Fall Technical Meeting, 1990. December 3-5, 1990, Orlando, FL, 1974

  • 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

  • Motevalli, V.; Marks, C. H.
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    Characterizing the Unconfined Ceiling Jet Under Steady-State Conditions: A Reassessment.
    Worcester Polytechnic Inst., MA; Maryland Univ., College Park
    International Association for Fire Safety Science. Fire Safety Science. Proceedings. 3rd International Symposium. July 8-12, 1991, Elsevier Applied Science, New York, Edinburgh, Scotland, Cox, G.; Langford, B., Editors, 301-312 p., 1991

  • Fanney, A. H.; Dougherty, B. P.
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    Measurement of Buoyancy-Induced Flow Using a Self-Heated Thermistor Flowmeter.
    National Bureau of Standards, Gaithersburg, MD; Virginia Polytechnic Institute and State Univ., Blacksburg
    Journal of Solar Energy Engineering, Vol. 109, 34-39, February 1987

  • Chow, W. K.; Shek, L. C.
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    Physical Properties of a Sprinkler Water Spray.
    Hong Kong Polytechnic, Hong Kong
    Fire and Materials, Vol. 17, No. 6, 279-292, November/December 1993

  • Abib, A. H.; Jaluria, Y.
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    Generation of Stable Thermal Stratification by Turbulent Flows in a Partially Open Enclosure.
    Rutgers University, New Brunswick, NJ
    National Institute of Standards and Technology, Gaithersburg, MD,
    American Society of Mechanical Engineers (ASME). Fundamentals of Natural Convection. HTD-Vol. 264. 1993, Am. Soc. of Mechanical Engineers, New York, NY, 127-140 p., 1993

  • Norris, A. T.; Pope, S. E.
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    Modeling of Extinction in Turbulent Diffusion Flames by the Velocity-Dissipation-Composition PDF Method.
    NASA Lewis Research Center, Brookpark, OH; Cornell Univ., Ithaca, NY
    Combustion and Flame, Vol. 100, No. 1/2, 211-220, 1995
    National Science Foundation, Washington, DC; Air Force Office of Scientific Research, Washington, DC,

  • Koslowski, C. C.; Motevalli, V.
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    Effect of Beams and Ceiling Obstructions on Steady State Ceiling Jet Flow.
    Worcester Polytechnic Inst., MA
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1991. October 14-16, 1991, Ithaca, NY, 84/1-4 p., 1991

  • Ahmed, T. A.; Cetegen, B. M.
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    Prediction of Induced Radial Velocity Due to Vortical Structures in Pool Fires.
    University of Connecticut, Stoors
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1995. October 16-18, 1995, Worcester, MA, 191-194 p., 1995