FireDOC Search

displaying 451 - 460 results in total 587

  • Jenkins, K. W.; Klein, M.; Chakraborty, N.; Cant, R. S.
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    Effects of Strain Rate and Curvature on the Propagation of a Spherical Flame Kernel in the Thin-Reaction-Zones Regime.
    Cranfield Univ., Bedford MK43 0AL, UK; Technische Universität Darmstadt, D-64287 Darmstadt, Germany; Cambridge Univ., England
    Combustion and Flame, Vol. 145, No. 1/2, 415-434, April 2006

  • Landman, M. J.; Derksen, M. A. F.; Kok, J. B. W.
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    Effect of Combustion Air Dilution by Water Vapor or Nitrogen on NOx Emission in a Premixed Turbulent Natural Gas Flame: An Experimental Study.
    Twente Univ., Enschede, The Netherlands
    Combustion Science and Technology, Vol. 178, No. 4, 623-634, April 2006

  • Lindstedt, R. P.; Vaos, E. M.
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    Transported PDF Modeling of High-Reynolds-Number Premixed Turbulent Flames.
    Imperial College of Science, Technology and Medicine, London, England
    Combustion and Flame, Vol. 145, No. 3, 495-511, May 2006

  • Quintiere, J. G.
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    Theoretical Basis for Flammability Properties.
    Maryland Univ., College Park
    Fire and Materials, Vol. 30, No. 3, 175-214, May/June 2006

  • Wang, H. Y.; Joulain, P.
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    On the Numerical Modeling of Buoyancy-Dominated Turbulent Fires by Using Large Eddy Simulation.
    Université de Poitiers, Futuroscope Cedex, France
    Fire Safety Science. Proceedings. Eighth (8th) International Symposium. International Association for Fire Safety Science (IAFSS). September 18-23, 2005, Intl. Assoc. for Fire Safety Science, Boston, MA, Beijing, China, Gottuk, D. T.; Lattimer, B. Y., Editors, 975-986 p., 2005

  • Theron, M.; Bellenoue, M.
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    Experimental Investigation of the Effects of Heat Release on Mixing Processes and Flow Structure in a High-Speed Subsonic Turbulent H2 Jet.
    Laboratoire de Combustion et de Détonique, CNRS UPR 9028, Poitiers, France
    Combustion and Flame, Vol. 145, No. 4, 688-702, June 2006

  • Kim, J.; Chung, S. H.; Ahn, K. Y.; Kim, J. S.
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    Simulation of a Diffusion Flame in Turbulent Mixing Layer by the Flame Hole Dynamics Model With Level-Set Method.
    Seoul National Univ., Korea; Korea Institute of Machinery and Materials, Taejon, 305-343, Korea; Korea Institute of Science and Technology, Seoul, 130-650, Cheongryang, Korea
    Combustion Theory and Modelling, Vol. 10, No. 2, 219-240, April 2006

  • Baigioli, F.
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    Stabilization Mechanism of Turbulent Premixed Flames in Strongly Swirled Flows.
    ALSTOM (Switzerland), Baden
    Combustion Theory and Modelling, Vol. 10, No. 3, 389-412, June 2006

  • Fairweather, M.; Woolley, R. M.; Yunardi
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    Analysis of Kinetic Mechanism Performance in Conditional Moment Closure Modeling of Turbulent, Non-Premixed Methane Flames.
    Leeds Univ., UK
    Combustion Theory and Modelling, Vol. 10, No. 3, 413-418, June 2006

  • Savarianandam, V. R.; Lawn, C. J.
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    Burning Velocity of Premixed Turbulent Flames in the Weakly Wrinkled Regime.
    London Univ., England
    Combustion and Flame, Vol. 146, No. 1/2, 1-18, July 2006