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displaying 721 - 730 results in total 989

  • Oh, K. C.; Lee, U. D.; Shin, H. D.; Lee, E. J.
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    Evolution of Incipient Soot Particles in an Inverse Diffusion Flame of Ethene. Brief Communication.
    Korea Advanced Institute of Science and Technology, Daejon, 305-701, Republic of Korea; Korea Institute of Construction Technology, Gyeonggi, Republic of Korea
    Combustion and Flame, Vol. 140, No. 3, 249-254, February 2005

  • Caponero, J.; Tenorio, J. A. S.; Levendis, Y. A.; Carlson, J. B.
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    Emissions of Batch Combustion of Waste Tire Chips: The Pyrolysis Effect.
    National Industrial Training Service-SENAI, Bahia, Brazil; São Paulo Univ., Brazil; Northeastern University, Boston, MA; U.S. Army Natick RD&E Center, Natick, MA
    Combustion Science and Technology, Vol. 177, No. 2, 347-381, February 2005

  • Lautenberger, C. W.; deRis, J. L.; Dembsey, N. A.; Barnett, J. R.; Baum, H. R.
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    Simplified Model for Soot Formation and Oxidation in CFD Simulation of Non-Premixed Hydrocarbon Flames.
    Worcester Polytechnic Inst., MA; FM Global Research, Norwood, MA; National Institute of Standards and Technology, Gaithersburg, MD
    Fire Safety Journal, Vol. 40, No. 2, 141-176, March 2005

  • Wang, L.; Haworth, D. C.; Turns, S. R.; Modest, M. F.
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    Interactions Among Soot, Thermal Radiation, and NOx Emissions in Oxygen-Enriched Turbulent Nonpremixed Flames: A Computational Fluid Dynamics Modeling Study.
    Pennsylvania State Univ., University Park, PA
    Combustion and Flame, Vol. 141, No. 1/2, 170-179, April 2005

  • Musculus, M. P. B.; Pickett, L. M.
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    Diagnostic Considerations for Optical Laser-Extinction Measurements of Soot in High-Pressure Transient Combustion Environments.
    Sandia National Laboratories, Livermore, CA
    Combustion and Flame, Vol. 141, No. 4, 371-391, 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

  • Cha, M. S.; Lee, S. M.; Kim, K. T.; Chung, S. H.
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    Soot Suppression by Nonthermal Plasma in Coflow Jet Diffusion Flames Using a Dielectric Barrier Discharge.
    Korea Institute of Machinery and Materials, Republic of Korea; Seoul National Univ., Republic of Korea
    Combustion and Flame, Vol. 141, No. 4, 438-447, 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

  • Hertzberg, T.
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    Dangers Relating to Fires in Carbon-Fiber Based Composite Material.
    SP Swedish National Testing and Research Institute, Boras, Sweden
    Fire and Materials, Vol. 29, No. 4, 231-248, July/August 2005

  • Yang, B.; Hu, B.; Koylu, U. O.
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    Mean Soot Volume Fractions in Turbulent Hydrocarbon Flames: A Comparison of Sampling and Laser Measurements.
    Missouri Univ., Rolla
    Combustion Science and Technology, Vol. 177, No. 8, 1603-1626, August 2005