FireDOC Search

displaying 241 - 250 results in total 1450

  • Lattimer, B. Y.; Beyler, C. L.
    view article (5.0697465)

    Predicting Fire Growth Involving Interior Finish Materials Including the Effects of Lateral Flame Spread and Layer Heating. (Abstract/Presentation)
    Maryland Univ., College Park
    NIST SP 998, May 2003,
    Extended Abstracts and Presentations from the Workshop on Fire Growth and Spread on Objects, March 4-6, 2002, National Institute of Standards and Technology, Peacock, R. D.; Pitts, W. M., Editors, 2003

  • Tsai, K. C.; Drysdale, D.
    view article (5.0697465)

    Flame Height Correlation and Upward Flame Spread Modelling.
    Edinburgh Univ., Scotland
    Fire and Materials, Vol. 26, No. 6, 279-287, November/December 2002

  • Hall, J. R., Jr.
    view article (5.0697465)

    Manufactured Home Fires.
    National Fire Protection Association, Quincy, MA
    February 2005, 39 p.

  • Wu, K. K.; Chen, C. H.
    view article (5.0697465)

    Radiation Effects for Downward Flame Spread Over a Thermally Thin Fuel in a Partial-Gravity Environment.
    National Chiao-Tung University, HsinChu, Taiwan, Republic of China
    Combustion Science and Technology, Vol. 176, No. 11, 1909-1933, November 2004

  • Hutchen, N. B.
    view article (5.0697465)

    Fire Performance.
    National Research Council of Canada, Ottawa, Ontario
    National Concrete Products News, Vol. 10, No. 4, 1-3, 1962
    Technical Paper No. 189,

  • Weng, W. G.; Hasemi, Y.
    view article (5.0697465)

    Model for Ceiling Flame Spread.
    Waseda Univ., Japan; University of Science and Technology of China
    Fire Science and Technology (International Journal for Fire Science and Technology), Vol. 24, No. 1, 1-15, 2005

  • Kleinhenz, J.; Ferkul, P.; Pettegrew, R.; Sacksteder, K. R.; Tien, J. S.
    view article (5.0697465)

    One-Sided Flame Spread Phenomena of a Thermally Thin Composite Cotton/Fiberglass Fabric.
    Case Western Reserve Univ., Cleveland, OH; NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; National Center for Microgravity Research, Cleveland, OH
    Fire and Materials, Vol. 29, No. 1, 27-37, January/February 2005

  • Vogel, B. J.; Ellzey, J. L.
    view article (5.0697465)

    Subadiabatic and Superadiabatic Performance of a Two-Section Porous Burner.
    Texas Univ ., Austin
    Combustion Science and Technology, Vol. 177, No. 7, 1323-1338, July 2005

  • Rossi, R. M.; Bruggmann, G.; Stampfli, R.
    view article (5.0697465)

    Comparison of Flame Spread of Textiles and Burn Injury Prediction With a Manikin.
    EMPA Materials Science and Technology, St. Gallen, Switzerland
    Fire and Materials, Vol. 29, No. 6, 395-406, November/December 2005

  • Chow, W. K.; Leung, C. W.; Zou, G.; Dong, H.; Gao, Y.
    view article (5.0697465)

    Assessment of Fire Hazard in Timber Karaoke Music Boxes With Real-Scale Burning Tests.
    Hong Kong Polytechnic Univ.; Harbin Engineering Univ.
    Journal of Applied Fire Science, Vol. 12, No. 2, 107-124, 2003-2004