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displaying 321 - 330 results in total 368

  • Vidmar, P.; Petelin, S.
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    Methodology of Using CFD-Based Risk Assessment in Road Tunnels.
    Thermal Science: International Scientific Journal, Vol. 11, No. 17, 223-250, 2007

  • Reimann, J.; Kuhlmann, S. A.; Will, S.
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    Improvement in Soot Concentration Measurements by Laser-Induced Incandescence (LII) Through a Particle Size Correction. Brief Communication.
    Universität Bremen, Badgasteiner Straße 1, D-28359 Bremen, Germany
    Combustion and Flame, Vol. 153, No. 4, 650-654, June 2008

  • Pepiot-Desjardins, P.; Pitsch, H.; Malhotra, R.; Kirby, S. R.; Boehman, A. L.
    view article (1.0)

    Structural Group Analysis for Soot Reduction Tendency of Oxygenated Fuels.
    Stanford University, CA; SRI International, Menlo Park, CA; Pennsylvania State Univ., University Park
    Combustion and Flame, Vol. 154, No. 1/2, 191-205, July 2008

  • 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

  • Kobayashi, Y.; Furuhata, T.; Amagai, K.; Arai, M.
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    Soot Precursor Measurements in Benzene and Hexane Diffusion Flames.
    Gunma Univ., Japan
    Combustion and Flame, Vol. 154, No. 3, 346-355, 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

  • Linteris, G. T.; Rumminger, M. D.; Babushok, V. I.
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    Catalytic Inhibition of Laminar Flames by Transition Metal Compounds.
    National Institute of Standards and Technology, Gaithersburg, MD; Cleaire Advanced Emission Controls, LLC, San Leandro, CA
    Progress in Energy and Combustion Science, Vol. 34, No. 3, 288-329, June 2008
    Department of Defense, Washington, DC,

  • Celnik, M.; Raj, A.; West, R.; Patterson, R.; Kraft, M.
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    Aromatic Site Description of Soot Particles.
    Cambridge Univ., CB2 3RA, UK
    Combustion and Flame, Vol. 155, No. 1/2, 161-180, October 2008

  • Ergut, A.; Therrien, R. J.; Levendis, Y. A.; Richter, H.; Howard, J. B.; Carlson, J. B.
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    Effect of Temperature on the Soot Onset Chemistry in One-Dimensional, Atmospheric-Pressure, Premixed Ethylbenzene Flames.
    Northeastern Univ., Boston, MA; Massachusetts Institute of Technology, Cambridge; U.S. Army SBCCOM--Natick Soldier Center, Natick, MA
    Combustion and Flame, Vol. 155, No. 1/2, 232-246, October 2008

  • Desgroux, P.; Mercier, X.; Lefort, B.; Lemaire, R.; Therssen, E.; Pauwels, J. F.
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    Soot Volume Fraction Measurement in Low-Pressure Methane Flames by Combining Laser-Induced Incandescence and Cavity Ring-Down Spectroscopy: Effect of Pressure on Soot Formation.
    Université des Sciences et Technologies de Lille, 59655 Villeneuve d'Ascq Cedex, France
    Combustion and Flame, Vol. 155, No. 1/2, 289-301, October 2008