FireDOC Search

displaying 631 - 640 results in total 989

  • Maricq, M. M.; Harris, S. J.; Szente, J. J.
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    Soot Size Distributions in Rich Premixed Ethylene Flames.
    Ford Motor Company, Dearborn, MI
    Combustion and Flame, Vol. 132, No. 3, 328-342, February 2003

  • Widmann, J. F.; Yang, J. C.; Manzello, S. L.; Mulholland, G. W.
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    Measurement of the Optical Extinction Coefficients of Post-Flame Soot in the Infrared.
    National Institute of Standards and Technology, Gaithersburg, MD
    Combustion and Flame, Vol. 134, No. 1/2, 119-129, July 2003
    Fire Suppression and Detection Research Application Symposium. Research and Practice: Bridging the Gap. Proceedings. Fire Protection Research Foundation. January 22-24, 2003, Orlando, FL, 449-468 p., 2003

  • Van-Hulle, P.
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    Caracterisation des aerosols emis par la combustion des hydrocarbures: application a la mesure de l'indice de refraction des suies.
    THESIS
    THESIS
    2002
    197 p.

  • Zhao, B.; Yang, Z.; Johnston, M. V.; Wang, H.; Wexler, A. S.; Balthasar, M.; Kraft, M.
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    Measurement and Numerical Simulation of Soot Particle Size Distribution Functions in a Laminar Premixed Ethylene-Oxygen-Argon Flame.
    University of Delaware, Newark; University of California, Davis; University of Cambridge, Cambridge CB2 3RA, UK
    Combustion and Flame, Vol. 133, No. 1/2, 173-188, April 2003

  • Balthasar, M.; Kraft, M.
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    Stochastic Approach to Calculate the Particle Size Distribution Function of Soot Particles in Laminar Premixed Flames.
    University of Cambridge, UK
    Combustion and Flame, Vol. 133, No. 3, 289-298, May 2003

  • Atakan, B.; Lamprecht, A.; Kohse-Hoinghaus, K.
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    Experimental Study of Fuel-Rich 1,3-Pentadiene and Acetylene/Propene Flames.
    Universitt Duisburg-Essen, Lotharstrasse 1, D-47057 Duisburg, Germany; Drgerwerk AG, Lbeck, Germany; Universitt Bielefeld, Bielefeld, Germany
    Combustion and Flame, Vol. 133, No. 4, 431-440, June 2003

  • Liu, F.; Guo, H.; Smallwood, G. J.; Gulder, O. L.
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    Numerical Modelling of Soot Formation and Oxidation in Laminar Coflow Non-Smoking and Smokeing Ethylene Diffusion Flames.
    National Research Council, Ontario, Canada; University of Toronto, Ontario, Canada
    Combustion Theory and Modelling, Vol. 7, No. 2, 301-315, June 2003

  • Richard, J.; Garo, J. P.; Souil, M. M.; Vantelon, J. P.; Knorre, V. G.
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    Chemical and Physical Effects of Water Vapor Additon on Diffusion Flames.
    University of Poitiers, Cedex, France; Moscow State Technical University MADI, Moscow, Russia
    Fire Safety Journal, Vol. 38, No. 6, 569-587, October 2003

  • Salgado, M. S.; Rossi, M. J.
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    Flame Soot Generated Under Controlled Combustion Conditions: Heterogeneous Reaction of NO2 on Hexane Soot.
    Swiss Federal Institute of Technology, Lausanne, Switzerland
    International Journal of Chemical Kinetics, Vol. 34, No. 11, 620-631, 2002

  • Roesler, J. F.; Martinot, S.; McEnally, C. S.; Pfefferle, L. D.; Delfau, J. L.; Vovelle, C.
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    Investigating the Role of Methane on the Growth of Aromatic Hydrocarbons and Soot in Fundamental Combustion Processes.
    IFP, Rueil-Malmaison Cedex, France; Yale Univ., New Haven, CT; CNRS-Laboratoire de Combustion et Systeme Reactifs, Cedex, France
    Combustion and Flame, Vol. 134, No. 3, 249-260, August 2003