FireDOC Search

displaying 1021 - 1030 results in total 1811

  • Lay, S.; Oldham, J.
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    Shop Talk.
    Fire Engineers Journal, Vol. 67, No. 287 / Fire Prevention, No. 423, 26-28, December 2007

  • Hoover, J. B.
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    Application of the CFAST Zone Model to Ships: Fire Specification Parameters.
    Naval Research Laboratory, Washington, DC
    Journal of Fire Protection Engineering, Vol. 18, No. 3, 199-222, August 2008

  • Steinhaus, T.; Welch, S.; Carvel, R. O.; Torero, J. L.
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    Large-Scale Pool Fires.
    Thermal Science: International Scientific Journal, Vol. 11, No. 17, 101-118, 2007

  • Taylor, A.
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    CFD: Convincing the Regulator.
    London Fire Brigade Fire Engineering Group, England
    Fire Risk Management, 20-23, June 2008

  • Guillaume, E.; Chivas, C.
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    Fire Models Used In Toxicity Testing.
    LNE, France
    Hazards of Combustion Products: Toxicity, Opacity, Corrosivity and Heat Release. Proceedings. November 10-11, 2008, Interscience Communications, London, England, London, England, Babruaskas, V.; Gann, R. G.; Grayson, S., Editors, 43-58 p., 2008

  • Himoto, K.; Tanaka, T.
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    Development and Validation of a Physics-Based Urban Fire Spread Model.
    Kyoto Univ., Gokasho, Uji, Kyoto 611 0011, Japan
    Fire Safety Journal, Vol. 43, No. 7, 477-494, October 2008

  • Wilson, A. A. G.; Ferguson, I. S.
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    Predicting the Probability of House Survival During Bushfires.
    Melbourne Univ., Parkville, Australia
    Journal of Environmental Economics and Management, 259-270, 1986

  • Walton, W. D.; Carpenter, D. J.; Wood, C. P.
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    Zone Computer Fire Models for Enclosures.
    National Institute of Standards and Technology, Gaithersburg, MD; Combustion Science and Engineering, Inc., Columbia, MD; Fire Link LLC, Tewksbury, MA
    NFPA HFPE08,
    SFPE Handbook of Fire Protection Engineering. 4th Edition. Section 3. Chapter 7, DiNenno, P. J.; Drysdale, D.; Beyler, C. L.; Walton, W. D.; Custer, R. L. P.; Hall, J. R., Jr.; Watts, J. M., Jr., Editors, 3/222-238 p., 2008

  • Yu, K. X. J.
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    Investigation of Recessed and Concealed Sprinklers Activation in Wind Tunnel Plunge Test and in BRANZFIRE Computer Model.
    University of Canterbury, Christchurch, New Zealand
    Fire Engineering Research Report 07/9, March 2007, 282 p.

  • Martin, C. W.; Clayton, J.
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    Utilization of Fire Testing to Effectively Formulate or Test Hypotheses Relating to Fire Origin and Progression.
    Apex Analytical, League City, TX; Clayton & Associates Consultants, Dickinson, TX
    Fire and Materials 2009. 11th International Conference. Conference Papers. Proceedings. Organised by Interscience Communications Limited. January 26-28, 2009, Interscience Communications Limited, London, England, San Francisco, CA, 815-825 p., 2009