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displaying 491 - 500 results in total 553

  • Zhang, Q.; Guo, H.; Liu, F.; Smallwood, G. J.; Thomson, M. J.
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    Implementation of an Advanced Fixed Sectional Aerosol Dynamics Model With Soot Aggregate Formation in a Laminar Methane/Air Coflow Diffusion Flame.
    Toronto Univ., Ontario; National Research Council of Canada, Ottawa, Ontario
    Combustion Theory and Modelling, Vol. 12, No. 4, 621-641, August 2008

  • Yoon, S. S.; Anh, D. H.; Chung, S. H.
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    Synergistic Effect of Mixing Dimethyl Ether With Methane, Ethane, Propane and Ethylene Fuels on Polycyclic Aromatic Hydrocarbon and Soot Formation.ethane
    Hyundai-Kia Motors, Gyeonggi-do 445-706, Republic of Korea; Korea Electric Power Research Institute, Daejeon 305-380, Republic of Korea; Seoul National Univ., Seoul 151-742, Republic of Korea
    Combustion and Flame, Vol. 154, No. 3, 368-377, August 2008

  • Kosarev, I. N.; Aleksandrov, N. L.; Kindysheva, S. V.; Starikovskaia, S. M.; Starikovskii, A. Y.
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    Kinetics of Ignition of Saturated Hydrocarbons by Nonequilibrium Plasma: CH4-Containing Mixtures.
    Moscow Institute of Physics and Technology, Institutskii Lane 9, Dolgoprudny 141700, Russia
    Combustion and Flame, Vol. 154, No. 3, 569-586, August 2008

  • deFerrieres, S.; ElBakali, A.; Lefort, B.; Montero, M.; Pauwels, J. F.
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    Experimental and Numerical Investigation of Low-Pressure Laminar Premixed Synthetic Natural Gas/O2/N2 and Natural Gas/H2/O2/N2 Flames.
    Université des Sciences et Technologies de Lille, 59655 Villeneuve d'Ascq Cedex, France; Gaz de France, Direction de la Recherche, BP 33, 93211 Saint Denis La Plaine Cedex, France
    Combustion and Flame, Vol. 154, No. 3, 601-623, August 2008

  • Sutton, J. A.; Fleming, J. W.
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    Towards Accurate Kinetic Modeling of Prompt NO Formation in Hydrocarbon Flames via the NCN Pathway. Brief Communication.
    Ohio State University, Columbus, OH; Naval Research Laboratory, Washington, DC
    Combustion and Flame, Vol. 154, No. 3, 630-636, August 2008

  • Ennetta, R.; Hamdi, M.; Said, R.
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    Comparison of Different Chemical Kinetic Mechanisms of Methane Combustion in an Internal Combustion Engine Configuration.
    Preparatory Institute of Engineers Studies of Monastir (IPEIM) Avenue of Ibn El Jazzar, 5019 Monastir, Tunisia; National School of Engineers of Monastir (ENIM) Avenue of Ibn El Jazzar, 5019 Monastir, Tunisia
    Thermal Science: International Scientific Journal, Vol. 12, No. 1, 43-51, 2008

  • Yaldizli, M.; Mehravaran, K.; Mohammad, H.; Jaberi, F. A.
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    Structure of Partially Premixed Methane Flames in High-Intensity Turbulent Flows.
    Michigan State Univ., East Lansing
    Combustion and Flame, Vol. 154, No. 4, 692-714, September 2008

  • Lu, T.; Law, C. K.
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    Criterion Based on Computational Singular Perturbation for the Identification of Quasi Steady State Species: A Reduced Mechanism for Methane Oxidation With NO Chemistry.
    Princeton Univ., NJ
    Combustion and Flame, Vol. 154, No. 4, 761-774, September 2008

  • Takahashi, F.; Linteris, G. T.; Katta, V. R.
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    Extinguishment of Methane Diffusion Flames by Carbon Dioxide in Coflow Air and Oxygen-Enriched Microgravity Environments.
    NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; National Institute of Standards and Technology, Gaithersburg, MD; Innovative Scientific Solutions Inc., Dayton, OH
    Combustion and Flame, Vol. 155, No. 1/2, 37-53, October 2008
    National Aeronautics and Space Administration, Washington, DC,

  • Gordon, R. L.; Masri, A. R.; Mastorakos, E.
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    Simultaneous Rayleigh Temperature, OH- and CH2O-LIF Imaging of Methane Jets in a Vitiated Coflow.
    Sydney Univ., NSW 2006, Australia; Cambridge Univ., UK
    Combustion and Flame, Vol. 155, No. 1/2, 181-195, October 2008