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displaying 141 - 150 results in total 270

  • Demiraydin, L.; Gass, J.; Poulikakos, D.
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    On the Behavior of a Coupled Transient Flamelet/PDF Transport Equation Model for Nonpremixed Turbulent Flames.
    Swiss Federal Institute of Technology, ETH-Zurich, Switzerland
    Combustion Science and Technology, Vol. 175, No. 9, 1729-1760, September 2003

  • Bradley, D.; Gaskell, P. H.; Sedaghat, A.; Gu, X. J.
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    Generation of PDFS for Flame Curvature and for Flame Stretch Rate in Premixed Turbulent Combustion.
    Leeds Univ., England; CLRC Daresbury Laboratory, Warrington, England
    Combustion and Flame, Vol. 135, No. 4, 503-523, December 2004

  • Lipatnikov, A. N.; Chomiak, J.
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    Application of the Markstein Number Concept to Curved Turbulent Flames.
    Chalmers University of Technology, Goteborg, Sweden
    Combustion Science and Technology, Vol. 176, No. 3, 331-358, March 2004

  • Ribert, G.; Champion, M.; Plion, P.
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    Modeling Turbulent Reactive Flows With Variable Equivalence Ratio: Application to the Calculation of a Reactive Shear Layer.
    Laboratoire de Combustion et de Détonique, UPR9028 CNRS, ENSMA, Futuroscope, France; Département Mécanique des Fluides et Transferts Thermiques, Electrité de France, Chatou, France
    Combustion Science and Technology, Vol. 176, No. 5/6, 907-923, May/June 2004

  • Mura, A.; Borghi, R.
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    Introducing a New Partial PDF Tpproach for Turbulent Combustion Modeling.
    Site Universitaire du Madrillet, Saint Etienne du Rouvray Cedex, France; Ecole Supérieure de Mécanique de Marseille, Marseille Cedex, France
    Combustion and Flame, Vol. 136, No. 3, 377-382, February 2004

  • Masri, A. R.; Kalt, P. A. M.; Barlow, R. S.
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    Compositional Structure of Swirl-Stabilised Turbulent Nonpremixed Flames.
    Sydney Univ., Australia; Sandia National Laboratories, Livermore, CA
    Combustion and Flame, Vol. 137, No. 1/2, 1-37, April 2004

  • Mitarai, S.; Kosaly, G.; Riley, J. J.
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    New Lagrangian Flamelet Model for Local Flame Extinction and Reignition.
    Washington Univ., Seattle
    Combustion and Flame, Vol. 137, No. 3, 306-319, May 2004

  • Selle, L.; Lartigue, G.; Poinsot, T.; Koch, R.; Schildmacher, K. U.; Krebs, W.; Prade, B.; Kaufmann, P.; Veynante, D.
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    Compressible Large Eddy Simulation of Turbulent Combustion in Complex Geometry on Unstructured Meshes.
    CERFACS, Toulouse Cedex, France; IMF Toulouse, Toulouse Cedex, France; Karlsruhe Univ., Germany; Siemens PG, Muelheim, Germany; Ecole Centrale de Paris and CNRS, Châtenay Malabry Cedex, France
    Combustion and Flame, Vol. 137, No. 4, 489-505, June 2004

  • Williams, F. A.; Furukawa, J.
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    Approximate Local Mathematical Descriptions of Turbulent Bunsen Flames in the Flamelet Regime.
    University of California, San Diego, La Jolla; Tokyo Metropolitan College of Technology, Tokyo, Japan
    Combustion and Flame, Vol. 138, No. 1/2, 108-113, July 2004

  • Chen, Y. C.; Bilger, R. W.
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    Experimental Investigation of Three-Dimensional Flame-Front Structure in Premixed Turbulent Combustion. Part 2. Lean Hydrogen/Air Bunsen Flames.
    Sydney Univ., Australia
    Combustion and Flame, Vol. 138, No. 1/2, 155-174, July 2004