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displaying 251 - 260 results in total 368

  • Arana, C. P.; Pontoni, M.; Sen, S.; Puri, I. K.
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    Field Measurements of Soot Volume Fractions in Laminar Partially Premixed Coflow Ethylene/Air Flames.
    University of Illinois, Chicago; Virginia Polytechnic and State Univ., Blacksburg
    Combustion and Flame, Vol. 138, No. 4, 362-372, September 2004

  • Hirasawa, T.; Sung, C. J.; Yang, Z.; Joshi, A.; Wang, H.
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    Effect of Ferrocene Addition on Sooting Limits in Laminar Premixed Ehtylene-Oxygen-Argon Flames.
    Case Western Reserve University, Cleveland, OH; Delaware Univ., Newark
    Combustion and Flame, Vol. 139, No. 4, 288-299, December 2004

  • Violi, A.
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    Modeling of Soot Particle Inception in Aromatic and Aliphatic Premixed Flames.
    Utah Univ., Salt Lake City
    Combustion and Flame, Vol. 139, No. 4, 279-287, December 2004

  • Merchan-Merchan, W.; Saveliev, A. V.; Kennedy, L. A.
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    Carbon Nanostructures in Opposed-Flow Methane Oxy-Flames.
    Illinois Univ., Chicago
    Combustion Science and Technology, Vol. 175, No. 12, 2217-2236, December 2003

  • Naydenova, I.; Nullmeier, M.; Warnatz, J.; Vlasov, P. A.
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    Detailed Kinetic Modeling of Soot Formation During Shock-Tube Pyrolysis of C6H6: Direct Comparison With the Results of Time-Resolved Laser-Induced Incandescence (LII) and CW-Laser Extinction Measurements.
    Heidelberg Univ., Germany; Russian Academy of Sciences, Moscow, Russia
    Combustion Science and Technology, Vol. 176, No. 11, 1667-1703, November 2004

  • Sunderland, P. B.; Urban, D. L.; Stocker, D. P.; Chao, B. H.; Axelbaum, R. L.
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    Sooting Limits of Microgravity Spherical Diffusion Flames in Oxygen-Enriched Air and Diluted fuel.
    National Center for Microgravity Research, Cleveland, OH; NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; Hawaii at Manoa Univ., Honolulu; Washington Univ., St. Louis, MO
    Combustion Science and Technology, Vol. 176, No. 12, 2143-2164, December 2004

  • Hou, L. Y.; Fu, W. B.
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    Study on the Mechanism of Saving Fuel Consumption for Emulsified Fuel With Wall Catalytic Reforming Reaction.
    Tsinghua Univ., Beijing, People's Republic of China
    Combustion Science and Technology, Vol. 177, No. 4, 671-689, April 2005

  • Balthasar, M.; Frenklach, M.
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    Detailed Kinetic Modeling of Soot Aggregate Formation in Laminar Premixed Flames.
    CFD and Combustion, VOLVO Technology, Göteborg, Sweden; California Univ., Berkeley
    Combustion and Flame, Vol. 140, No. 1/2, 130-145, January 2005

  • McCrain, L. L.; Roberts, W. L.
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    Measurements of the Soot Volume Field in Laminar Diffusion Flames at Elevated Pressures.
    North Carolina State Univ., Raleigh
    Combustion and Flame, Vol. 140, No. 1/2, 60-69, January 2005

  • Naidja, A.; Krishna, C. R.; Butcher, T.; Mahajan, D.
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    Cool Flame Partial Oxidation and Its Role in Combustion and Reforming of Fuels for Fuel Cell Systems.
    Brookhaven National Laboratory, Upton, NY
    Progress in Energy and Combustion Science, Vol. 29, No. 2, 155-191, 2003