Baek, S. W.; Park, J. H.; Choi, C. E.
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Investigation of Droplet Combustion With Nongray Gas Radiation Effects.
Korea Advanced Institute of Science and Technology, Taejon, Korea
Combustion Science and Technology,
Vol. 142,
No. 1-6,
55-79,
1999
Dai, Z.; Faeth, G. M.
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Hydrodynamic Suppression of Soot Formation in Laminar Coflowing Jet Diffusion Flames.
Michigan Univ., Ann Arbor
Combustion Institute, Symposium (International) on Combustion, 28th. Proceedings. Volume 2. July 20-August 4, 2000,
Combustion Institute, Pittsburgh, PA,
Edinburgh, Scotland,
Candel, S.; Driscoll, J. F.; Burgess, A. R.; Gore, J. P., Editors,
2085-2092 p.,
2000
Gruenberger, T. M.; Moghiman, M.; Bowen, P. J.; Syred, N.
view article (6.489563)
Dynamics of Soot Formation by Turbulent Combustion and Thermal Decomposition of Natural Gas.
University of Wales, Cardiff, UK
Combustion Science and Technology,
Vol. 174,
No. 5/6,
67-86,
May/June 2002
Wen, Z.; Yun, S.; Thomson, M. J.; Lightstone, M. F.
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Modeling Soot Formation in Turbulent Kerosene/Air Jet Diffusion Flames.
Toronto Univ., Canada; McMaster Univ., Ontario, Canada
Combustion and Flame,
Vol. 135,
No. 3,
323-340,
November 2003
Hou, L. Y.; Fu, W. B.
view article (6.489563)
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
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
Sunderland, P. B.; Urban, D. L.; Stocker, D. P.; Chao, B. H.; Axelbaum, R. L.
view article (6.489563)
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
Katta, V. R.; Blevins, L. G.; Roquemore, W. M.
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Dynamics of an Inverse Diffusion Flame and Its Role in Polycyclic-Aromatic-Hydrocarbon and Soot Formation.
Innovative Scientific Solutions, Inc., Dayton, OH; Sandia National Laboratories, Livermore, CA; Air Force Research Laboratory, Wright-Patterson Air Force Base, OH
Combustion and Flame,
Vol. 142,
No. 1/2,
33-51,
July 2005
Park, S. H.; Rogak, S. N.; Bushe, W. K.; Wen, J. Z.; Thomson, M. J.
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Aerosol Model to Predict Size and Structure of Soot Particles.
Gwangju Institute of Science and Technology, Korea; British Columbia Univ., Vancouver, Canada; Toronto Univ., Canada
Combustion Theory and Modelling,
Vol. 9,
No. 3,
499-513,
August 2005
Tsurikov, M. S.; Geigle, K. P.; Kruger, V.; Schneider-Kuhnle, Y.; Stricker, W.; Luckerath, R.; Hadef, R.; Aigner, M.
view article (6.489563)
Laser-Based Investigation of Soot Formation in Laminar Premixed Flames at Atmospheric and Elevated Pressures.
German Aerospace Center (DLR), Stuttgart, Germany
Combustion Science and Technology,
Vol. 177,
No. 10,
1835-1862,
October 2005