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displaying 691 - 700 results in total 1072

  • Filatyev, S. A.; Driscoll, J. F.; Carter, C.D.; Donbar, J. M.
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    Measured Properties of Turbulent Premixed Flames for Model Assessment, Including Burning Velocities, Stretch Rates, and Surface Densities.
    Michigan Univ., Ann Arbor; Air Force Research Laboratory AFRL/PRAS, Wright-Patterson AFB, OH
    Combustion and Flame, Vol. 141, No. 1/2, 1-21, April 2005

  • Kim, N. I.; Kataoka, T.; Maruyama, S.; Maruta, K.
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    Flammability Limits of Stationary Flames in Tubes at Low Pressure.
    Tohoku Univ., Sendai 980-8577, Japan
    Combustion and Flame, Vol. 141, No. 1/2, 78-88, April 2005

  • Libby, P. A.
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    Recent Research on Premixed Flames in Stagnating Turbulence.
    University of California, San Diego, La Jolla
    Combustion Science and Technology, Vol. 177, No. 5/6, 1073-1094, May/June 2005

  • You, D.; Huang, Y.; Yang, V.
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    Generalized Model of Acoustic Response of Turbulent Premixed Flame and Its Application to Gas-Turbine Combustion Instability Analysis.
    Pennsylvania State Univ., University Park
    Combustion Science and Technology, Vol. 177, No. 5/6, 1109-1150, May/June 2005

  • Mehta, P. G.; Soteriou, M. C.; Banaszuk, A.
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    Imapct of Exothermicity on Steady and Linearized Response of a Premixed Ducted Flame.
    United Technologies Research Center, East Hartford, CT
    Combustion and Flame, Vol. 141, No. 4, 392-405, June 2005

  • Maricq, M. M.
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    Dynamics of Electrically Charged Soot Particles in a Premixed Ethylene Flame.
    Ford Motor Co., Dearborn, MI
    Combustion and Flame, Vol. 141, No. 4, 406-416, June 2005

  • Marley, S. K.; Roberts, W. L.
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    Measurements of Laminar Burning Velocity and Markstein Number Using High-Speed Chemiluminescence Imaging. Brief Communication.
    North Carolina State Univ., Raleigh
    Combustion and Flame, Vol. 141, No. 4, 473-477, June 2005

  • Manzello, S. L.; Lee, E. J.; Mulholland, G. W.
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    Use of Laser-Induced Ionization to Detect Soot Inception in Premixed Flames.
    National Institute of Standards and Technology, Gaithersburg, MD; Korea Institute of Construction and Technology, II-San City, South Korea
    Applied Optics, Vol. 44, No. 24, 5105-5111, August 20, 2005

  • Ata, A.; Cowart, J. S.; Vranos, A.; Cetegen, B. M.
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    Effects of Direct Current Electric Field on the Blowoff Characteristics of Bluff-Body Stabilized Conical Premixed Flames.
    Connecticut Univ., Storrs
    Combustion Science and Technology, Vol. 177, No. 7, 1291-1304, July 2005

  • Denet, B.; Bychkov, V.
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    Low Vorticity and Small Gas Expansion in Premixed Flames.
    IRPHE, Technopole de Chateau, Marseille, France; Institute of Physics, Umeå University, Umeå, Sweden
    Combustion Science and Technology, Vol. 177, No. 8, 1543-1566, August 2005