FireDOC Search

displaying 1171 - 1180 results in total 1432

  • Murley, P.
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    Archaeological Fire Investigation.
    Tyne and Wear Fire and Rescue Service, UK
    Fire Safety, Technology and Management, Vol. 8, No. 3, 25-30, Autum 2003

  • Shekarchi, M.; Debicki, G.; Billard, Y.; Coudert, L.
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    Heat and Mass Transfer ofHigh Performance Concrete for Reactor Containment Under Severe Accident Conditions.
    Tehran Univ., Iran; URGC Structures, Cedex, France
    Fire Technology, Vol. 39, No. 1 (1st Quarter), 63-71, January 2003

  • Schleich, J. B.; Cajot, L. G.; Pierre, M.
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    Natural Fire Safety Concept: Valorisation Project.
    Valorisation Project
    Valorisation Project
    August 20, 2001
    97 p.

  • Andrae, R. W.; Bolstad, J. W.; foster, R. D.; Gregory, W. S.; Krause, F. R.; Martin, R. A.; Tang, P. K.
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    FIRAC Users Manaul: A Computer Code for Analysis of Fire-Induced Flow and Material Transport in Nuclear Facilities.
    Los Alamos National Laboratory, NM

    [date unknown]
    146 p.

  • Kirby, B. R.; Newman, G. M.; Butterworth, N.; Pagan, J.; English, C.
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    Development of a Performance Based Approach to Specifying Fire Resistance for Regulatory Purposes.
    Swinden Technology Centre, Rotherham, England; Steel Construction Institute, Berkshire, England; Buro Happold (FEDRA), Leeds, England; WFRC Airport House, Surrey, England; WSP Buchanan House, London, England
    Performance-Based Codes and Fire Safety Design Methods, 5th International Conference. Proceedings. October 6-8, 2004, Luxembourg, Almand, K.; Attlan, J. M.; D'Hoop, J. M.; Gordon, J.; Jonsson, R.; Kruppa, J., Editors, 183-194 p., 2004

  • Petchenko, A.; Bychkov, V.
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    Axisymmetric Versus Non-Axisymmetric Flames in Cylindrical Tubes.
    Umeå University, Sweden; Moscow Institute of Physics and Technology, Dolgoprudny, Russia
    Combustion and Flame, Vol. 136, No. 4, 429-439, March 2004

  • Baara, A. J.; Ellzey, J. L.
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    Heat Recirculation and Heat Transfer in Porous Burners.
    Texas Univ., Austin
    Combustion and Flame, Vol. 137, No. 1/2, 230-241, April 2004

  • Cremers, M. F. G.; Remie, M. J.; Schreel, K. R. A. M.; deGoey, L. P. H.
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    Heat Transfer Mechanisms of Laminar Flames of Hydrogen + Oxygen.
    Eindhoven University of Technology, The Netherlands
    Combustion and Flame, Vol. 139, No. 1/2, 39-51, October 2004

  • Cheung, S. C. P.; Yuen, R. K. K.; Yeoh, G. H.; Cheng, G. W. Y.
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    Contribution of Soot Particles on Global Radiative Heat Transfer in a Two-Compartment Fire.
    City University of Hong Kong, Kowloon Tong, Hong Kong; Australian Nuclear Science and Technology Organisation (ANSTO), Menai, NSW 2234, Australia
    Fire Safety Journal, Vol. 39, No. 5, 412-428, July 2004

  • Brohez, S.; Delvosalle, C.; Marlair, G.
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    Two-Thermocouples Prob3e for Radiation corrections of Measured Temperatures in Compartment Fires.
    Faculté Polytechnique de Mons, Mons, Belgium; Institut National de l'Environnement Industriel et des Risques, Verneuil-en-Halatte, France
    Fire Safety Journal, Vol. 39, No. 5, 399-411, July 2004