FireDOC Search

displaying 121 - 130 results in total 228

  • Abdel-Rahman, A. K.; Ahmed, G. N.
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    Computational Heat and Mass Transport in Concrete Walls Exposed to Fire.
    Portland Cement Assoc., Skokie, IL
    Numerical Heat Transfer, No. A, 373-395, 1996

  • Blackshear, P. L., Jr.; Wood, B. D.; Alvares, N. J.; Matthews, J. W.; Barsic, N. J.
    view article (1.0)

    Fire Research: A Collection of Papers Representing Research Completed During the Year Ending October 15, 1969. Summary of Combustion Laboratory Technical Report No. 7. Final Report.
    University of Minnesota, Minneapolis
    Office of Civil Defense, Washington, DC,
    November 9, 1969
    University of Minnesota. Fire Research: A Collection of Papers Representing Research Completed During the Year Ending October 15, 1969. Summary of Combustion Laboratory Technical Report No. 7. Final Report. November 9, 1969, 160 p., 1969

  • Wood, B. D.; Blackshear, P. L., Jr.
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    Experimental Study of the Heat and Mass Transfer to the Surface of a Burning Array of Fuel Elements.
    University of Minnesota, Minneapolis
    Office of Civil Defense, Washington, DC,
    November 9, 1969
    University of Minnesota. Fire Research: A Collection of Papers Representing Research Completed During the Year Ending October 15, 1969. Summary of Combustion Laboratory Technical Report No. 7. Final Report. Part 1. November 9, 1969, 29-65 p., 1969

  • Barsic, N. J.; Blackshear, P. L., Jr.
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    Literature Review of Mass Transfer Coefficients for Very Large Objects as They are Influenced by Atmospheric Phenomena.
    University of Minnesota, Minneapolis
    Office of Civil Defense, Washington, DC,
    November 9, 1969
    University of Minnesota. Fire Research: A Collection of Papers Representing Research Completed During the Year Ending October 15, 1969. Summary of Combustion Laboratory Technical Report No. 7. Final Report. Part 4. November 9, 1969, 142-460 p., 1969

  • Tucker, J. R.
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    Preliminary Development of a Model to Predict the Thermal Response of Composites Exposed to a Radiant Flux.
    Worcester Polytechnic Inst., MA

    May 1995
    93 p.

  • Gorsnkov, V. I.; Vogman, L. P.; Degtyarev, A. G.
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    Approximate Solution of Powered Materials Spontaneous Combustion Problem for Reaction of v-Order. Part 2.
    Fire Science and Technology, Vol. 16, No. 1/2, 41-45, 1996

  • Friedman, R.
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    Aerothermodynamics and Modeling Techniques for Prediction of Plastic Burning Rates.
    Factory Mutual Research Corp., Norwood, MA
    Fundamentals of Flammability and Combustion of Materials. Polymer Conference Series. University of Utah. July 10-14, 1972, Salt Lake City, UT, 1-23 p., 1972

  • Steward, F. R.
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    Ignition Characteristics of Cellulosic Materials.
    University of New Brunswick, Fredericton, Canada
    Combustion Institute/Eastern States Section. August 30-31, 1971, Ontario, Canada, 1971

  • Alpert, R. L.
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    Calculation of Response Time of Ceiling-Mounted Fire Detectors.
    Factory Mutual Research Corp., Norwood, MA
    Fire Technology, Vol. 8, No. 3, 181-195, May 1972

  • Harada, K.; Terai, T.
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    Heat and Mass Transfer in the Walls Subjected to Fire.
    Building Research Inst., Tokyo, Japan; Kinki Univ., Japan
    NISTIR 6030
    Fire Science and Technology, Vol. 17, No. Special Issue, 70-77, 1997
    NISTIR 6030
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 13th Joint Panel Meeting. Volume 1. March 13-20, 1996, Gaithersburg, MD, Beall, K. A., Editors, 423-435 p., 1997