FireDOC Search

displaying 391 - 400 results in total 838

  • Thomas, G. O.
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    Quenching of Laminar Methane-Air Flames by Water Mists.
    University of Wales, Aberystwyth, UK
    Combustion and Flame, Vol. 130, No. 1/2, 147-160, July 2002

  • Kim, H. J.; Kim, Y. M.
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    Detailed Structure and Stabilization Mechanism of Lifted Laminar Methane Flame.
    Hanyang Univ., Seoul, Korea
    Journal of Fire Sciences, Vol. 20, No. 1, 53-70, January 2002

  • Jarosinski, J.; Podfilipski, J.; Gorczakowski, A. J.; Veyssiere, B.
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    Experimental Study of Flame Propagation in Propane-Air Mixture Near Rich Flammability Limits in Microgravity.
    Technical University of Lodz, Poland; CNRS-Laboratoire de Combustion et Systeme Reactifs, Cedex, France
    Combustion Science and Technology, Vol. 147, No. 9, 21-48, September 2002

  • Bosschaart, K. J.; deGoey, L. P. H.
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    Detailed Analysis of the Heat Flux Method for Measuring Burning Velocities.
    Eindhoven University of Technology, The Netherlands
    Combustion and Flame, Vol. 132, No. 1/2, 170-180, January 2003

  • Kang, S. H.; Im, H. G.; Baek, S. W.
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    Computational Study of Saffman-Taylor Instability in Premixed Flames.
    Korea Advanced Institute of Science and Technology, Taejon 305-701, Korea; University of Michigan, Ann Arbor
    Combustion Theory and Modelling, Vol. 7, No. 2, 343-363, June 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

  • Vyas, A. B.; Majdalani, J.; Yang, V.
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    Estimation of the Laminar Premixed Flame Temperature and Velocity in Injection-Driven Combustion Chambers. Brief Communication.
    Pennsylvania State University, University Park; Marquette University, Milwaukee
    Combustion and Flame, Vol. 133, No. 3, 371-374, May 2003

  • Dwyer, H. A.; Hasegawa, T.
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    Some Flows Associated with Premixed Laminar Flame Propagation in a Rotating Tube Flow.
    California Univ., Davis; Nagoya Institute of Technology, Nagoya, Japan
    Combustion Institute, Symposium (International) on Combustion, 29th. Proceedings. Volume 29. Part 2. July 21-25, 2002, Combustion Institute, Pittsburgh, PA, Sapporo, Japan, Chen, J. H.; Colket, M. D., Editors, 1471-1477 p., 2002

  • Shih, H. Y.; Tien, J. S.
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    Three-Dimensional Model of Steady Flame Spread Over a thin Solid in Low-Speed Concurrent Flows.
    Industrial Technology Research Institute, Taiwan, Republic of China; Case Western Reserve Univ., Cleveland, OH
    Combustion Theory and Modelling, Vol. 7, No. 4, 677-704, December 2003

  • Guo, H.; Liu, F.; Smallwood, G. J.; Gulder, O. L.
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    Numerical Study of the Influence of Transport Properties of Inert Diluents on Soot Formation in a Coflow Laminar Ethylene/Air Diffusion Flame.
    National Research Council of Canada, Ottawa, Ontario; Toronto Univ., Ontario, Canada
    Combustion Institute, Symposium (International) on Combustion, 29th. Proceedings. Volume 29. Part 2. July 21-25, 2002, Combustion Institute, Pittsburgh, PA, Sapporo, Japan, Chen, J. H.; Colket, M. D., Editors, 2359-2365 p., 2002