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displaying 451 - 460 results in total 628

  • 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

  • Gourara, A.; Roger, F.; Wang, H. Y.; Most, J. M.
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    Assessment of Ignition Hazard in Turbulent Flammable Gas Mixers Combining a Lagrangian Approach and Large Eddy Simulation.
    Laboratoire de Combustion et de Détonique, UPR 9028 du CNRS, ENSMA, Futuroscope Cedex, France
    Combustion and Flame, Vol. 144, No. 3, 592-604, February 2006

  • Xiaomeng, Z.; Guangxuan, L.; Bo, C.
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    Improvement of Water Mist's Fire-Extinguishing Efficiency With MC Additive.
    University of Science and Technology of China, Hefei, Anhui 230026, PR China
    Fire Safety Journal, Vol. 41, No. 1, 39-45, February 2006

  • Nishiki, S.; Hasegawa, T.; Borghi, R.; Himeno, R.
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    Modeling of Turbulent Scalar Flux in Turbulent Premixed Flames Based on DNS Databases.
    Nagaoka University of Technology, Japan; Ecole Généraliste d'Ingénieurs de Marseille, France; Advanced Center for Computing and Communication, Wako, Japan
    Combustion Theory and Modelling, Vol. 10, No. 1, 39-55, February 2006

  • Dhamrat, R. S.; Ellzey, J. L.
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    Numerical and Experimental Study of the Conversion of Methane to Hydrogen in a Porous Media Reactor.
    University of Texas, Austin
    Combustion and Flame, Vol. 144, No. 4, 698-709, March 2006

  • Maricq, M. M.
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    Comparison of Soot Size and Charge Distributions From Ethane, Ethylene, Acetylene and Benzene/Ethylene Premixed Flames.
    Ford Motor Company, Dearborn, MI
    Combustion and Flame, Vol. 144, No. 4, 730-743, March 2006

  • Lee, U. D.; Shin, H. D.; Oh, K. C.; Lee, K. H.; Lee, E. J.
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    Extinction Limit Extension of Unsteady Counterflow Diffusion Flames Affected by Velocity Change.
    Korea Advanced Institute of Science and Technology, Daejon, 305-701, Republic of Korea; Korea Automotive Technology Institute, Chungnam, 330-912, Republic of Korea; Hyundai Motor Co., Gyunggi-Do, Republic of Korea; Korea Institute of Construction Technology, Gyeonggi, Republic of Korea
    Combustion and Flame, Vol. 144, No. 4, 792-808, March 2006

  • Biswas, K.; Gore, J. P.
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    Fire Dynamics Simulations of Buoyant Diffusion Flames Stabilized on a Slot Burner. Brief Communication.
    Purdue Univ., West Lafayette, IN
    Combustion and Flame, Vol. 144, No. 4, 850-853, March 2006

  • Hara, T.; Kato, S.
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    Numerical Simulation of Fire Plume-Induced Ceiling Jets Using the Standard k -e Model.
    Taisei Corporation, Tokyo, 163-0606, Japan; University of Tokyo,4-6-1 Komaba, Meguro-ku, Tokyo, 153-8505, Japan
    Fire Technology, Vol. 42, No. 2, 131-160, April 2006

  • Wason, A.; Carnell, W. F., Jr.; Renfro, M. W.
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    Velocity and Scalar Measurements in Neighboring Lifted Edge Flames.
    Connecticut Univ., Storrs, CT
    Combustion Science and Technology, Vol. 178, No. 5, 789-811, May 2006