FireDOC Search

displaying 31 - 40 results in total 67

  • 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

  • Gomez, A.; Chen, G.
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    Charge-Induced Secondary Atomization in Diffusion Flames of Electrostatic Sprays.
    Yale Univ., New Haven, CT
    Combustion Science and Technology, Vol. 95, No. 1-3, 47-59, 1994

  • Jian, C. Q.; Gore, J. P.
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    Study of Horizontal Buoyant Turbulent Jet Flames.
    Purdue Univ., West Lafayette, IN
    National Institute of Standards and Technology, Gaithersburg, MD,
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1991. October 14-16, 1991, Ithaca, NY, 78/1-4 p., 1991

  • Kerrison, L.; Galea, E. R.; Hoffmann, N.; Patel, M. K.
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    Comparison of a FLOW3D Based Fire Field Model With Experimental Room Fire Data.
    University of Greenwich, London, England
    Fire Safety Journal, Vol. 23, No. 4, 387-411, 1994

  • Tse, S. D.; Fernandez-Pello, A. C.
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    On the Flight Paths of Metal Particles and Embers Generated by Power Lines in High Winds: A Potential Source of Wildland Fires.
    California Univ., Berkeley
    Fire Safety Journal, Vol. 30, No. 4, 333-356, June 1998

  • Log, T.; Heskestad, G.
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    Temperatures of Restricted Turbulent Fire Plumes.
    Stord/Haugesund College, Haugesund, Norway; Factory Mutual Research Corp., Norwood, MA
    Fire Safety Journal, Vol. 31, No. 2, 101-115, September 1998

  • Otsuka, T.; Wolanski, P.
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    Particle Image Velocimetry (PIV) Analyze of the Flame Structure.
    National Institute of Industrial Safety Ministry of Labor, Tokyo, Japan; Warsaw University of Technology, Poland
    Hazards, Prevention, and Mitigation of Industrial Explosions, 3rd International Symposium. Proceedings. Jointly Organized by: National Institute for Resources and Environment (NIRE), National Institute of Materials and Chemical Research (NIMC), National Institute of Industrial Safety (NIIS), National Research Institute of Fire and Disaster (NRIFD), Research Institute for Safety Engineering (RISE), Association of Powder Process Industry and Engineering of Japan (APPIE), Warsaw University of Technology and Committee of Thermodynamic and Combustion of the Polish Academy of Science. October 23-27, 2000, Tsukuba, Japan, 138-143 p., 2000

  • Edwards, J. C.; Hwang, C. C.
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    CDF Modeling of Smoke Reversal.
    National Institute for Occupational Safety and Health, Pittsburg, PA
    Engineered Fire Protection Design...Applying Fire Science to Fire Protection Problems, International Conference. Proceedings. Co-organized by: Society of Fire Protection Engieners (SFPE) and National Institute of Standards and Technology (NIST). June 11-15, 2001, San Francisco, CA, 376-387 p., 2001

  • Huang, J.; Bruining, J.; Wolf, K. H. A. A.
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    Modeling of Gas Flow and Temperature Fields in Underground Coal Fires.
    Chinese Academy of Sciences, China; Delft University of Technology, The Netherlands
    Fire Safety Journal, Vol. 36, No. 5, 477-489, July 2001

  • Papadopoulos, G.; Bryant, R. A.; Pitts, W. M.
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    Flow Characterization of Flickering Methane/Air Diffusion Flames Using Particle Image Velocimetry.
    Dantec Dynamics, Mahwah, NJ; National Institute of Standards and Technology, Gaithersburg, MD
    Experiments in Fluids, Vol. 33, No. 3, 472-481, September 2002