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displaying 3081 - 3090 results in total 4589

  • Law, C. K.
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    Propagation, Structure and Limit Phenomena of Laminar Flames at Elevated Pressures.
    Princeton Univ., NJ
    Combustion Science and Technology, Vol. 178, No. 1-3, 335-360, January/March 2006

  • Rice, S. F.
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    Stability and Reactivity of N2O in Supercritical Water.
    Sandia National Laboratories, Livermore, CA
    Combustion Science and Technology, Vol. 178, No. 1-3, 399-415, January/March 2006

  • Osada, M.; Sato, T.; Watanabe, M.; Shirai, M.; Arai, K.
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    Catalytic Gasification of Wood Biomass in Subcritical and Supercritical Water.
    Tohoku Univ., Aramaki, Aoba, Sendai, Japan; Utsunomiya Univ., Japan; National Institute of Advanced Industrial Science and Technology, Sendai, Japan
    Combustion Science and Technology, Vol. 178, No. 1-3, 537-552, January/March 2006

  • Ferioli, F.; Buckley, S. G.
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    Measurements of Hydrocarbons Using Laser-Induced Breakdown Spectroscopy.
    Maryland Univ., College Park; University of California, San Diego, La Jolla
    Combustion and Flame, Vol. 144, No. 3, 435-447, February 2006

  • Wang, Y.; Trouve, A.
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    Direct Numerical Simulation of Nonpremixed Flame-Wall Interactions.
    Maryland Univ., College Park
    Combustion and Flame, Vol. 144, No. 3, 461-475, February 2006

  • Merci, B.; Roekaerts, D.; Naud, B.
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    Study of the Performance of Three Micromixing Models in Transported Scalar PDF Simulations of a Piloted Jet Diffusion Flame ("Delft Flame III").
    Ghent Univ., Belgium; Delft University of Technology, The Netherlands; CIEMAT, Madrid, Spain
    Combustion and Flame, Vol. 144, No. 3, 476-493, February 2006

  • Su, L. K.; Sun, O. L.; Mungal, M. G.
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    Experimental Investigation of Stabilization Mechanisms in Turbulent, Lifted Jet Diffusion Flames.
    Johns Hopkins Univ., Baltimore, MD; Standford Univ., CA
    Combustion and Flame, Vol. 144, No. 3, 494-512, February 2006

  • Lawes, M.; Lee, Y.; Marquez, N.
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    Comparison of Iso-octane Burning Rates Between Single-Phase and Two-Phase Combustion for Small Droplets.
    Leeds Univ., UK; Universidad del Zulia, Maracaibo 4011 Apto. 526, Venezuela
    Combustion and Flame, Vol. 144, No. 3, 513-525, February 2006

  • Strohle, J.; Myhrvold, T.
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    Reduction of a Detailed Reaction Mechanism for Hydrogen Combustion Under Gas Turbine Conditions.
    SINTEF Energy Research, Trondheim, Norway
    Combustion and Flame, Vol. 144, No. 3, 545-557, February 2006

  • Jay, S.; Lacas, F.; Candel, S.
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    Combined Surface Density Concepts for Dense Spray Combustion.
    Laboratoire EM2C, CNRS UPR 288, Ecole Centrale Paris, Châtenay-Malabry Cedex, France; Institut Universitaire de France, Châtenay-Malabry Cedex, France
    Combustion and Flame, Vol. 144, No. 3, 558-577, February 2006