FireDOC Search

displaying 701 - 710 results in total 1432

  • Comitis, S. C.; Glasser, D.; Young, B. D.
    view article (5.0232267)

    Experimental and Modeling Study of Fires in Ventilated Ducts. Part 2. PMMA and Stratification.
    University of the Witwatersrand, Johannesburg, South Africa
    Combustion and Flame, Vol. 104, No. 1/2, 138-156, January 1996

  • Ahmed, G. N.; Hurst, J. P.
    view article (5.0232267)

    Modeling the Thermal Behavior of Concrete Slabs Subjected to the ASTM E119 Standard Fire Condition.
    Portland Cement Assoc., Skokie, IL
    Journal of Fire Protection Engineering, Vol. 7, No. 4, 125-132, 1995

  • Rimanosky, E. M.; Janoff, D. D.; Altemir, D.; Pedley, M. D.
    view article (5.0232267)

    Effects of Configuration, Forced Convection, and Oxygen Concentration on the Flammability Behavior of Electronic Equipment.
    AlliedSignal Technical Services Corp. Team, Las Cruces, NM; Lockheed Engineering and Sciences Co., Houston, TX; NASA Johnson Space Center, Houston, TX
    ASTM STP 1267; ASTM PCN 04-012670-31,
    American Society for Testing and Materials. Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres: Seventh (7th) Volume. ASTM STP 1267. Proceedings. March 16-17, 1995, ASTM, Philadelphia, PA, Denver, CO, Janoff, D. D.; Royals, W. T.; Gunaji, M., Editors, 168-183 p., 1995

  • Cox, G.
    view article (5.0232267)

    Compartment Fire Modelling.
    Fire Research Station, Borehamwood, England
    Combustion Fundamentals of Fire. Chapter 6, Academic Press, New York, NY, Cox, G., Editors, 329-404 p., 1995

  • Labes, W. G.; Waterman, T. E.; Varley, R. B.
    view article (5.0232267)

    Development of Standard Fire Test Rating Systems for Shelter Components. Final Report. September 30, 1963-February 20, 1966.
    IIT Research Inst., Chicago, IL
    Office of Civil Defense, Washington, DC, IITRI N6061; Final Report; OCD Work Unit 1132-A, December 1966, 125 p.

  • Matthews, J. W.; Blackshear, P. L., Jr.
    view article (5.0232267)

    Influence of Inorganic Impurity, Specimen Size, and Heating Rate on the Thermal Decomposition of Macroscopic Cellulosic Fuel Cylinders.
    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 3. November 9, 1969, 96-139 p., 1969

  • Varma, A.; Steward, F. R.
    view article (5.0232267)

    Spontaneous Ignition of High Voidage Cellulosic Materials.
    University of New Brunswick, Fredericton, Canada
    Journal of Fire and Flammability, Vol. 1, 154-165, April 1970

  • Parker, W. J.
    view article (5.0232267)

    Flame Spread Model for Cellulosic Materials.
    National Bureau of Standards, Washington, DC
    Journal of Fire and Flammability, Vol. 3, 254-269, July 1972

  • Woodburn, P. J.; Britter, R. E.
    view article (5.0232267)

    CFD Simulations of a Tunnel Fire. Part 2.
    Cambridge Univ., UK
    Fire Safety Journal, Vol. 26, No. 1, 63-90, February 1996

  • Benedict, L.; Zukoski, E. E.
    view article (5.0232267)

    Buoyant Flows in Shafts.
    California Institute of Technology, Pasadena, CA
    National Institute of Standards and Technology, Gaithersburg, MD, NISTIR 5904, October 1996,
    National Institute of Standards and Technology. Annual Conference on Fire Research: Book of Abstracts. October 28-31, 1996, Gaithersburg, MD, 69-70 p., 1996