FireDOC Search

displaying 1131 - 1140 results in total 1450

  • Sidebotham, G. W.; Olson, S. L.
    view article (4.9806647)

    Microgravity Opposed-Flow Flame Spread in Polyvinyl Chloride Tubes.
    Cooper Union for the Advancement of Science and Art, 51 Astor Place, New York, NY; NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH
    Combustion and Flame, Vol. 154, No. 4, 789-801, September 2008

  • Kleinhenz, J.; Feier, I. I.; Hsu, S. Y.; Tien, J. S.; Ferkul, P. V.; Sacksteder, K. R.
    view article (4.9806647)

    Pressure Modeling of Upward Flame Spread and Burning Rates Over Solids in Partial Gravity.
    Case Western Reserve Univ., Cleveland, OH; National Center for Space Exploration Research, Cleveland, OH; NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH
    Combustion and Flame, Vol. 154, No. 4, 637-643, September 2008

  • Xie, W.; DesJardin, P. E.
    view article (4.9806647)

    Embedded Upward Flame Spread Model Using 2D Direct Numerical Simulations.
    State University of New York, Buffalo, NY
    Combustion and Flame, Vol. 156, No. 2, 522-530, February 2009

  • Laymon, R. K.; Borgerson, J. L.; Gandhi, D.; Resing, J. V.
    view article (4.9806647)

    Use of Bench-Scale Test Methods to Predict the Fire Growth of Large-Scale Room Corner Tests for Building.
    Underwriters Laboratories, Inc., Northbrook, IL
    Fire and Materials 2009. 11th International Conference. Conference Papers. Proceedings. Organised by Interscience Communications Limited. January 26-28, 2009, Interscience Communications Limited, London, England, San Francisco, CA, 291-301 p., 2009

  • Malchi, J. Y.; Prosser, J.; Yetter, R. A.; Son, S. F.
    view article (4.9806647)

    Realizing Microgravity Flame Spread Characteristics at 1 g Over a Bed of Nano-Aluminum Powder.
    Pennsylvania State Univ., University Park; Purdue Univ., West Lafayette, IN
    Volume 32; Part 2,
    Combustion Institute, Symposium (International) on Combustion, 32nd. Proceedings. Volume 32. Part 2. August 3-8, 2008, Combustion Institute, Pittsburgh, PA, Montreal, Canada, Dagaut, P.; Sick, V., Editors, 2437-2444 p., 2009

  • Oyagi, H.; Shigeno, H.; Mikami, M.; Kojima, N.
    view article (4.9806647)

    Flame Spread Probability and Local Interactive Effects in Randomly Arranged Fuel-Droplet Arrays in Microgravity.
    Yamaguchi Univ., Ube 755-8611, Japan
    Combustion and Flame, Vol. 156, No. 4, 763-770, April 2009

  • Carrier, G. F.; Fendell, F. E.; Feldman, P. S.
    view article (4.938711)

    Analytical Evaluation of the ASTM E84-70 Tunnel Tests Applied to Plastics. Wind-Aided Flame Spread Along a Horizontal Fuel Slab. Part 1. Without Radiative Transfer. Phase 2. January 1, 1977-January 31, 1978.
    Harvard University, Cambridge, MA; TRW Defense and Space Systems Group, Redondo Beach, CA
    RP-75-1-43, 1978, 83 p.

  • Markstein, G. H.
    view article (4.938711)

    Radiative Energy Transfer From Turbulent Diffusion Flames. Technical Report.
    Factory Mutual Research Corp., Norwood, MA
    National Science Foundation, Washington, DC, Serial No. 22361-2, December 1975, 42 p.
    ASME-AIChE National Heat Transfer Conference, August 1975, San Francisco, CA, 1975

  • Steckler, K. D.
    view article (4.938711)

    Calculations of Wall Fire Spread in an Enclosure.
    National Bureau of Standards, Gaithersburg, MD
    Armstrong World Industries, Lancaster, PA; Department of Health and Human Services, Washington, DC, NBSIR 83-2765; LA-9911-C-Vol. 1; LA-9911-C-Vol. 2, November 1983, 74 p.
    CSNI Specialist Meeting on Interaction of Fire and Explosion with Ventilation Systems in Nuclear Facilities. Volume 1 and Volume 2. April 25-28, 1983, Los Alamos, NM, 495-514 p., 1983

  • Quintiere, J. G.
    view article (4.938711)

    Some Factors Influencing Fire Spread Over Room Linings and in the ASTM E-84 Tunnel Test.
    National Bureau of Standards, Gaithersburg, MD
    Fire and Materials, Vol. 9, No. 2, 65-74, June 1985
    CIB W14/85/18 (USA),