FireDOC Search

displaying 171 - 180 results in total 393

  • Nelson, M. I.; Brindley, J.; McIntosh, A.
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    Mathematical Model of Ignition in the Cone Calorimeter.
    Leeds Univ., Yorkshire, UK
    Combustion Science and Technology, Vol. 104, No. 1-3, 33-54, 1995

  • Poulos, A. T.; Gulati, S.; Lavid, M.
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    Photochemical Conversion of Chlorofluorocarbons and Halons to Useful Compounds of Lower Ozone Depletion Potential.
    Energia Inc., Princeton, NJ
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1991. October 14-16, 1991, Ithaca, NY, 46/1-4 p., 1991

  • Yuen, R.; Yeoh, G. H.; Casey, R.; Chandrasekaran, V.; deVahlDavis, G.; Leonardi, E.
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    Three-Dimensional Numerical Prediction ofBurning of Wood in a Cone Calorimeter.
    University of New South Wales, Australia
    National Institute of Standards and Technology (NIST) and Society of Fire Protection Engineers (SFPE). International Conference on Fire Research and Engineering (ICFRE). Proceedings. September 10-15, 1995, SFPE, Boston, MA, Orlando, FL, Lund, D. P.; Angell, E. A., Editors, 223-228 p., 1995

  • Wang, J.
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    X-Ray Photoelectron Spectroscopy (Electron Spectroscopy for Chemical Analysis) Studies in flame Retardancy of Polymers.
    Beijing Institute of Technology, China
    ['Chapter 32', 'ACS Symposium Series 599']
    Chapter 32; ACS Symposium Series 599
    American Chemical Society. Fire and Polymers II: Materials and Tests for Hazard Prevention. National Meeting, 208th. ACS Symposium Series 599. August 21-26, 1994, American Chemical Society, Washington, DC, Washington, DC, Nelson, G. L., Editors, 518-535 p., 1995

  • Jiang, X.; Fan, W.
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    Numerical Prediction of Flame Spread Over Solid Combustibles in a Microgravity Environment.
    University of Science and Technology of China, Hefei, People's Republic of China
    Fire Safety Journal, Vol. 24, No. 3, 279-298, 1995

  • Jowett, P. A.; Metcalfe, E.; Witnall, R.; Anthony, G.
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    Use of a New Small Scale Fire Test Apparatus to Study Gas Phase Fire Retardancy.
    University of Greenwich, London, England; FMC Corporation Limited, Manchester, England
    Interscience Communications Ltd.; National Institute of Standards and Technology; Building Research Establishment; and Society of Fire Protection Engineers; Swedish National Testing and Research Institute. Interflam '96. International Interflam Conference, 7th Proceedings. March 26-28, 1996, Interscience Communications Ltd., London, England, Cambridge, England, Franks, C. A.; Grayson, S., Editors, 887-891 p., 1996

  • Novozhilov, V.; Fletcher, D. F.; Moghtaderi, B.; Kent, J. H.
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    Numerical Simulation of Enclosed Gas Fire Extinguishment by a Water Spray.
    University of Sydney, Australia
    Journal of Applied Fire Science, Vol. 5, No. 2, 135-146, 1995-1996

  • Thomas, P. H.
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    Growth of Fire: Ignition to Full Involvement.
    Fire Research Station, Borehamwood, England
    Combustion Fundamentals of Fire. Chapter 5, Academic Press, New York, NY, Cox, G., Editors, 273-328 p., 1995

  • Porter, R. W.; Bratzler, L. J.; Pearson, A. M.
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    Fractionation and Study of Compounds in Wood Smoke.
    Michigan State Univ., East Lansing
    Journal of Food Science, Vol. 30, 615-619, 1965

  • Gordon, A. S.; Knipe, R. H.
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    Pyrolysis of Organic Compounds in the Gas Phase.
    Naval Weapons Center, China Lake, CA
    NBS SP 357
    NBS SP 357
    National Bureau of Standards. Mechanisms of Pyrolysis, Oxidation, and Burning of Organic Materials. 4th Proceedings of the Materials Research Symposium. October 26-29, 1970, National Bureau of Standards, Gaithersburg, MD, Wall, L. A., Editors, 7-16 p., 1972