FireDOC Search

displaying 181 - 190 results in total 2977

  • van Dijk, H. A. L.
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    Movement of Smoke in Buildings on Fire, Calculated by Means of a Dynamic Computer Model, Taking Into Account the Interaction Between Temperatures Throughout the Building and Smoke Spread, Detection and Control Systems.
    Institute of Applied Physics TNO-TH, Delft, The Netherlands
    CIB W14/80/74 (DK)
    CIB W14/80/74 (DK)
    1980
    16 p.

  • Williams, W. D.; Powell, H. M.; Price, L. L.
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    Laser-Raman Measurements in a Ducted Two-Stream, Subsonic, H2/Air Combustion Flow. Final Report. September 5, 1978-August 13, 1979.
    Air Force Systems Command, Arnold Air Force Station, TN
    AEDC-TR-79-74
    AEDC-TR-79-74
    December 1979
    61 p.

  • Sobolev, N. N.; Shchetinin, T. I.
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    Optical Method of Measuring the Temperatures in an Enclosed Commercial Flame.
    Miscellaneous 166
    Journal of Experimental and Theoretical Physics U.S.S.R., Vol. 20, No. 4, 356-370, April 1950
    Miscellaneous 166

  • Knight, D.
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    Full Scale Fire Tests on A151 Beams. Project 18. Fire Resistance of Steels--Engineering Aspects.
    Melbourne Research Labs., Clayton, Australia
    MRL 18/11
    MRL 18/11
    May 1972
    16 p.

  • Keski-Rahkonen, O.
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    Theoretical Estimation of Critical Fire Load Close to an Unprotected Steel Member.
    Technical Research Center of Finland, Espoo
    Fire and Materials, Vol. 12, No. 4, 153-158, December 1988

  • Zhubanov, T. B.; Gibov, K. M.
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    Oxygen Index and Minimum Limiting Rates of Polymer Combustion.
    Institute of Chemical Science of the Academy of Sciences of Kazahstan, Alma-Ata, USSR
    Fire and Materials, Vol. 12, No. 4, 169-172, December 1988

  • Kranbuehl, D.; Hoff, M.; Eichenger, D.; Hamilton, T.; Clark, R.
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    Frequency Dependent Electromagnetic Sensing: Life Monitoring of Materials During Use in Space.
    William and Mary College, Williamsburg, VA
    Polymer Materials Science Engienering, Vol. 59, 839-843, 1988

  • Schaffer, E. L.
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    Temperature-Time Dependency of Longitudinal Mechanical Behavior of Dry Douglas-Fir.
    Forest Products Lab., Madison, WI
    National Science Foundation. General Constitutive Relations for Wood and Wood-Based Materials. Report of a Workshop. July 1978., Syracuse Univ., NY, Washington, DC, 234-278 p., 1980

  • Gillen, M.
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    Short-Term Creep of Concrete at Elevated Temperatures.
    Portland Cement Assoc., Skokie, IL
    Fire and Materials, Vol. 5, No. 4, 142-148, December 1981

  • Saito, H.; Uesugi, H.; Miyamoto, K.
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    Load Bearing and Deformation Capacity of H Shaped Steel Members at Elevated Temperature.
    Chiba Univ., Japan
    CIB W14/88/45 (J)
    Fire Science and Technology, Vol. 7, No. 2, 43-52, 1987
    CIB W14/88/45 (J)