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displaying 811 - 820 results in total 838

  • Coppola, G.; Coriton, B.; Gomez, A.
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    Highly Turbulent Counterflow Flames: A Laboratory Scale Benchmark for Practical Systems.
    Yale Univ., New Haven, CT
    Combustion and Flame, Vol. 156, No. 9, 1834-1843, September 2009

  • Kelley, A. P.; Law, C. K.
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    Nonlinear Effects in the Extraction of Laminar Flame Speeds From Expanding Spherical Flames.
    Princeton Univ., NJ
    Combustion and Flame, Vol. 156, No. 9, 1844-1851, September 2009

  • Barve, V. V.; Ezekoye, O. A.; Clemens, N. T.
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    Soot Reduction in Strongly Forced Lifted CH4-Air Laminar Flames.
    Siemens Energy Inc., Orlando, FL; University of Texas, Austin
    Combustion Theory and Modelling, Vol. 13, No. 4, 671-703, August 2009

  • Goldin, G. M.; Ren, Z.; Zahirovic, S.
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    Cell Agglomeration Algorithm for Accelerating Detailed Chemistry in CFD.
    Ansys Inc., Lebanon, NH; Bioenergy 2020+ GmbH, 8010 Graz, Austria
    Combustion Theory and Modelling, Vol. 13, No. 4, 721-739, August 2009

  • Fernandez-Galisteo, D.; Sanchez, A. L.; Linan, A.; Williams, F. A.
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    Hydrogen-Air Burning Rate Near the Lean Flammability Limit.
    Universidad Carlos III de Madrid, Madrid, Spain; Universidad Politécnica de Madrid, Madrid, Spain; University of California, San Diego, La Jolla
    Combustion Theory and Modelling, Vol. 13, No. 4, 741-761, August 2009

  • Walters, K. M.; Bowman, C. T.
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    Vitiated Ethane Oxidation in a High-Pressure Flow Reactor.
    Stanford Univ., CA
    Combustion and Flame, Vol. 156, No. 10, 1886-1897, October 2009

  • Konnov, A. A.
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    Implementation of the NCN Pathway of Prompt-NO Formation in the Detailed Reaction Mechanism.
    Technische Universiteit Eindhoven, P.O. Box 513, 5600 MB Eindhoven, The Netherlands
    Combustion and Flame, Vol. 156, No. 11, 2093-2105, November 2009

  • Karimi, N.; Brear, M. J.; Jin, S. H.; Monty, J. P.
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    Linear and Non-Linear Forced Response of a Conical, Ducted, Laminar Premixed Flame.
    Melbourne Univ., Parkville, 3010 Vic., Australia
    Combustion and Flame, Vol. 156, No. 11, 2201-2212, November 2009

  • Kong, W.; Liu, F.
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    Numerical Study of the Effects of Gravity on Soot Formation in Laminar Coflow Methane/Air Diffusion Flames Under Different Air Stream Velocities.
    Chinese Academy of Sciences, Beijing, China; National Research Council of Canada, Ottawa, Ontario
    Combustion Theory and Modelling, Vol. 13, No. 6, 993-1023, December 2009

  • Ryu, S. K.; Kim, Y. K.; Kim, M. K.; Won, S. H.; Chung, S. H.
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    Observation of Multi-Scale Oscillation of Laminar Lifted Flames With Low-Frequency AC Electric Fields.
    Seoul National University, Seoul 151-742, Republic of Korea; King Abdullah University of Science and Technology, Thuwal, Saudi Arabia
    Combustion and Flame, Vol. 157, No. 1, 25-32, January 2010