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  • Kaplan, C. R.; Back, S. W.; Ellzey, J. L.; Oran, E. S.
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    Dynamics of an Unsteady Ethylene Jet Diffusion Flame.
    Naval Research Laboratory, Washington, DC
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1991. October 14-16, 1991, Ithaca, NY, 5/1-4 p., 1991

  • Dobbins, R. A.; Subramaniasivam, H.
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    Evolution of Soot in the Buoyancy-Dominated Hydrocarbon Diffusion Flames.
    Brown Univ., Providence, RI
    National Institute of Standards and Technology, Gaithersburg, MD,
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1991. October 14-16, 1991, Ithaca, NY, 76/1-4 p., 1991

  • Sun, C. J.; Wang, H.; Sung, C. J.; Law, C. K.
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    On the Structure of Non-Sooting Counterflow Acetylene and Ethylene Diffusion Flames.
    Princeton Univ., NJ
    Office of Naval Research, Washington, DC,
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1995. October 16-18, 1995, Worcester, MA, 75-78 p., 1995

  • Benish, T. G.; Howard, J. B.; Lafleur, A. L.
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    Soot Surface Growth by Acetylene and PAH in a Premixed Ethylene Flame.
    Massachusetts Institute of Technology, Cambridge
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Proceedings. Fall Technical Meeting, 1995. October 16-18, 1995, Worcester, MA, 427-430 p., 1995

  • Zhang, J.; Megaridis, C. M.
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    Soot Suppression by Ferrocene in Laminar Ethylene/Air Nonpremixed Flames.
    University of Illinois, Chicago
    Combustion and Flame, Vol. 105, No. 4, 528-540, June 1996
    National Science Foundation, Washington, DC,

  • Crittenden, B. D.; Long, R.
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    Formation of Polycyclic Aromatics in Rich Premixed Acetylene and Ethylene Flames.
    University of Birmingham, England
    Combustion and Flame, Vol. 20, No. 3, 359-368, 1973

  • Du, D. X.; Wang, H.; Law, C. K.
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    Soot Formation in Counterflow Ethylene Diffusion Flames From 1 to 2.5 Atmospheres.
    Princeton Univ., NJ
    Combustion and Flame, Vol. 113, No. 1/2, 264-270, 1998

  • Wang, W.; Rogg, B.
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    Premixed Ethylene/Air and Ethane/Air Flames: Reduced Mechanisms Based on Innter Iteration.
    University of Cambridge, England
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 6, Springer-Verlag, Heidelberg, FRG, 76-101 p., 1993

  • Gottgens, J.; Mauss, F.
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    Flamelet Libraries: Description of the Data Format and Catalogue of Existing Libraries.
    Institut fur Technische Mechanik, Aachen, West Germany
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Appendix A, Springer-Verlag, Heidelberg, FRG, 331-344 p., 1993

  • Shaddix, C. R.; Smyth, K. C.
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    Laser-Induced Incandescence Measurements of Soot Production in Steady and Flickering Methane, Propane, and Ethylene Diffusion Flames.
    National Institute of Standards and Technology, Gaithersburg, MD
    Combustion and Flame, Vol. 107, No. 4, 418-452, 1996
    Gas Research Inst., Chicago, IL,