FireDOC Search

displaying 41 - 50 results in total 52

  • Yang, K. T.; Lloyd, J. R.
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    Fire and Smoke Spread. Quarterly Progress Report.
    Notre Dame Univ., IN
    National Bureau of Standards, Gaithersburg, MD, Quarterly Progress Report, July 25, 1977, 7 p.

  • Guelzim, A.; Souil, J. M.; Vantelon, J. P.; Borner, J. P.
    view article (8.046585)

    Flame Radiation From Pool Fires Tilted by Wind.
    Universite de Poitiers, France; Electricite de France, Chatou
    Interscience Communications Ltd.; National Institute of Standards and Technology; Building Research Establishment; and Society of Fire Protection Engineers. Interflam 1993. (Interflam '93). Fire Safety. International Fire Conference, 6th. March 30-April 1, 1993, Interscience Communications Ltd., London, England, Oxford, England, Franks, C. A., Editors, 121-131 p., 1993

  • Blunsdon, C. A.; Beeri, Z.; Malalasekera, W. M. G.; Dent, J.C.
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    Modelling Buoyant Turbulent Diffusion Flames With the Coherent Flame-Sheel Model.
    University of Technology, Leicestershire, UK
    American Society of Mechanical Engineers. Fire, Combustion, and Hazardous Waste Processing. HTD-Vol. 296. November 6-11, 1994, American Society of Mechanical Engineers, NY, Chicago, IL, Acharya, S.; Annamalai, K.; Presser, C.; Skocypec, R. D., Editors, 79-88 p., 1994

  • Chen, J. Y.; Liu, Y.; Rogg, B.
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    CO-H₂-N₂/Air Diffusion Flames: Thermal Radiation the Transient Effects.
    Sandia National Labs., Livermore, CA; University of Cambridge, England
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 12, Springer-Verlag, Heidelberg, FRG, 196-223 p., 1993

  • Yeoh,G. H.; Chandrasekaran, V.
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    Three-Dimensional Numerical Study of Fire in a Large Compartment Incorporating Soot and Radiation.
    Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
    Transport Phenomena in Combustion. Proceedings of the 8th International Symposium on Transport Phenomena in Combustion (ISTP-VIII). Volume 1. July 16-20, 1995, Taylor and Francis, Washington, DC, San Francisco, CA, Chan, S. H., Editors, 802-813 p., 1995

  • Liu, F.; Wen, J. X.
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    Effect of Turbulence Modelling on the CFD Simulation of Buoyant Diffusion Flames.
    Kingston Univ., London, England
    Fire Safety Journal, Vol. 37, No. 1, 125-150, February 2002

  • Wang, H. Y.; Joulain, P.; Most, J.
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    On the Numerical Modeling of Buoyancy-Dominated Turbulent diffusion flames by Using Large-Eddy Simulation and k-e Turbulence Model.
    Université de Poitiers, Futuroscope Cedex, France
    Combustion Science and Technology, Vol. 176, No. 5/6, 1007-1034, May/June 2004

  • Consalvi, J. L.; Pizzo, Y.; Porterie, B.; Torero, J. L.
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    On the Flame Height Definition for Upward Flame Spread.
    Polytech'Marseille/DME, Marseille Cedex 13, France; Institut de Radioprotection et de Sûreté Nucléaire, Saint Paul lez Durance, France; BRE/Edinburgh Centre for Fire Research, Edinburgh EH9 3JL, UK
    Fire Safety Journal, Vol. 42, No. 5, 384-392, July 2007

  • Zhang, Q.; Guo, H.; Liu, F.; Smallwood, G. J.; Thomson, M. J.
    view article (8.046585)

    Implementation of an Advanced Fixed Sectional Aerosol Dynamics Model With Soot Aggregate Formation in a Laminar Methane/Air Coflow Diffusion Flame.
    Toronto Univ., Ontario; National Research Council of Canada, Ottawa, Ontario
    Combustion Theory and Modelling, Vol. 12, No. 4, 621-641, August 2008

  • Cumber, P. S.
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    Efficient Calculation of the Radiation Heat Flux Surrounding a Jet Fire.
    Heriot-Watt Univ., Edinburgh EH10 6UX, UK
    Fire Safety Journal, Vol. 44, No. 4, 580-589, May 2009