FireDOC Search

displaying 141 - 150 results in total 293

  • Mizobuchi, Y.; Tachibana, S.; Shinio, J.; Ogawa, S.; Takeno, T.
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    Numerical Analysis of the Structure of a Turbulent Hydrogen Jet Lifted Flame.
    National Aerospace Laboratory of Japan, Tokyo; Meijo Univ., Nagoya, Japan
    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, 2009-2015 p., 2002

  • Tanahashi, M.; Nada, Y.; Ito, Y.; Miyauchi, T.
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    Local Flame Structure in the Well-Stirred Reactor Regime.
    Tokyo Institute of Technology, Japan
    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, 2041-2049 p., 2002

  • Yang, W.; Delplanque, J. P.; Kee, R. J.
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    Effects of Stoichiometry and Pressure on the Structure and Extinction of Premixed Methane, Hydrogen, and Propane Flames in the Presence of Water Mist.
    Colorado School of Mines, Golden
    Fire Suppression Technologies Workshop. February 24-27, 2003, Mobile, AL, 1-3 p., 2003

  • Blouch, J. D.; Chen, J. Y.; Law, C. K.
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    Joint Scalar PDF Study of Nonpremixed Hydrogen Ignition.
    Princeton Univ., NJ; California Univ., Berkeley
    Combustion and Flame, Vol. 135, No. 3, 209-225, November 2003

  • Christiansen, E. W.; Tse, S. D.; Law, C. K.
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    Computational Study of Oscillatory Extinction of Spherical Diffusion Flames.
    Princeton Univ., NJ; Rutgers Univ., Piscataway, NJ
    Combustion and Flame, Vol. 134, No. 4, 327-337, September 2003

  • Konnov, A. A.
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    On the Relative Importance of Different Routes Forming NO in Hydrogen Flames. Brief Communication.
    Vrije Universiteit Brussel, Brussels, Belgium
    Combustion and Flame, Vol. 134, No. 4, 421-424, September 2003

  • Han, B.; Sung, C. J.; Nishioka, M.
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    Effects of Vitiated Air on Hydrogen Ignition in a High-Speed Laminar Mixing Layer.
    Case Western Reserve Univ., Cleveland, OH; Tsukuba Univ., Japan
    Combustion Science and Technology, Vol. 176, No. 3, 305-330, March 2004

  • Hawkes, E. R.; Chen, J. H.
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    Direct Numerical Simulation of Hydrogen-Enriched Lean Premixed Methane-Air Flames.
    Sandia National Laboratories, Livermore, CA
    Combustion and Flame, Vol. 138, No. 3, 242-258, August 2004

  • Grisch, F.; Attal-Tretout, B.; Bresson, A.; Bouchardy, P.; Katta, V. R.; Roquemore, W. M.
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    Investigation of a Dynamic Diffusion Flame of H2 in Air With Laser Diagnostics and Numerical Modeling.
    Office National d'Etudes et de Recherches Aérospatiales, Palaiseau Cedex, France; Innovative Scientific Solutions, Inc., Dayton, OH; Air Force Research Laboratory, Wright-Patterson Air Force Base, OH
    Combustion and Flame, Vol. 139, No. 1/2, 28-38, October 2004

  • Cremers, M. F. G.; Remie, M. J.; Schreel, K. R. A. M.; deGoey, L. P. H.
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    Heat Transfer Mechanisms of Laminar Flames of Hydrogen + Oxygen.
    Eindhoven University of Technology, The Netherlands
    Combustion and Flame, Vol. 139, No. 1/2, 39-51, October 2004