FireDOC Search

displaying 141 - 150 results in total 274

  • International Code Council
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    International Mechanical Code 2009.
    International Code Council, Falls Church, VA
    International Mechanical Code, 2009. Published in cooperation with Building Officials and Code Administrators International, Inc., International Conference of Building Officials and Southern Building Code Congress International, Inc., International Code Council, Falls Church, VA, 2009

  • Silicock, G. W. H.; Shields, T. J.
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    Experimental Thermal Analysis of Domestic Flues Serving Closed Solid Fuel Appliances.
    University of Ulster, Northern Ireland
    International Journal on Architectural Science, Vol. 2, No. 3, 83-92, 2001

  • Lin, T. H.
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    Effects of Ambient Oxygen on Ignition Over a Vertical Thin Solid Fuel.
    University of Technology, Taiwan, Republic of China
    Combustion Science and Technology, Vol. 175, No. 1, 83-102, January 2003

  • Novozhilov, V.
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    Fundamentals and Application of Fire Suppression Modeling.
    Nanyang Technological Univ., Singapore
    Science, Technology and Standards for Fire Suppression Systems. National Research Institute of Fire and Disaster (NRIFD) Symposium, 2nd Proceedings. July 17-19, 2002, Tokyo, Japan, 195-214 p., 2002

  • Amon, F. K.; McKinnon, J. T.; Abbud-Madrid, A.
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    Studies of the Effect of Water Mist on Solid Fuel Flames Under Various Burning Conditions.
    Colorado School of Mines, Golden
    NIST SP 984-1; NIST Special Publication 984-1,
    Halon Options Technical Working Conference, 13th Proceedings. HOTWC 2003. Sponsored by: 3M Specialty Materials, Chemical Development Studies, Inc., DuPont Flororproducts, Great Lakes Chemical Corp., Halon Alternative Research Corp., Hughes Associates, Inc., Kidde-Fenwal, Inc., Modular Protection Corp., Next Generation Fire Suppression Technology Program, Sandia National Labs. May 13-15, 2003, Albuquerque, NM, 1-8 p., 2003

  • Feier, I. I.; Shih, H. Y.; Sacksteder, K. R.; Tien, J. S.
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    Upward Flame Spread Over Thin Solids in Partial Gravity.
    Case Western Reserve Univ., Cleveland, OH; Industrial Technology Research Institute, Taiwan, ROC; NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH
    Combustion Institute, Symposium (International) on Combustion, 29th. Proceedings. Volume 29. Part 2. July 21-25, 2002, Combustion Institute, Pittsburgh, PA, Sapporo, Japan, Chen, J. H.; Colket, M. D., Editors, 2569-2577 p., 2002

  • Andrae, R. W.; Bolstad, J. W.; foster, R. D.; Gregory, W. S.; Krause, F. R.; Martin, R. A.; Tang, P. K.
    view article (6.6425905)

    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.

  • Zhou, X.; Mahalingam, S.; Weise, D.
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    Modeling of Marginal Burning State of Fire Spread in Live Chaparral Shrub Fuel Bed.
    California Univ., Riverside; USDA Forest Service, Riverside, CA
    Combustion and Flame, Vol. 143, No. 3, 183-198, November 2005

  • Moghtaderi, B.
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    State-of-the-Art in Pyrolysis Modeling of Lignocellulosic Solid Fuels.
    Newcastle Univ., Callaghan, NSW 2308, Australia
    Fire and Materials, Vol. 30, No. 1, 1-34, January/February 2006

  • Senneca, O.; Salatino, P.
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    Overlapping of Heterogeneous and Purely Thermally Activated Solid-State Processes in the Combustion of a Bituminous Coal.
    Istituto di Ricerche sulla Combustione, C.N.R., Napoli, Italy; Universitá degli Studi di Napoli Federico II, Napoli, Italy
    Combustion and Flame, Vol. 144, No. 3, 578-591, February 2006