FireDOC Search

displaying 111 - 120 results in total 128

  • Carleton, F. B.; Tamir, A.; Weinberg, F. J.
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    Heat Recuperation Applied to a Gas Ring Burner. Short Communication.
    Imperial College, London, England
    Combustion Science and Technology, Vol. 83, No. 1-3, 327-332, 1992

  • Lozinski, D.; Buckmaster, J.; Ronney, P.
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    Absolute Flammability Limits and Flame Balls.
    University of Illinois, Urbana; Princeton Univ., NJ
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Technical Meeting, 1993. October 25-27, 1993, Princeton, NJ, 421-424 p., 1993

  • Tseng, C. J.; Howell, J. R.
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    Experimental Stability Limits and CO/NOₓ Emissions of Heptane Combustion Within Porous Ceramic Burners.
    University of Texas, Austin
    HTD-Vol. 304,
    American Society of Mechanical Engineers (ASME). National Heat Transfer Conference, 1995. Proceedings, 30th. Combustion and Fire Research. Heat Transfer in High Heat-Flux Systems. Volume 2. HTD-Vol. 304. August 6-8, 1995, Portland, OR, Peterson, R. B.; Ezekoye, O.A.; Simon, T., Editors, 11-17 p., 1995

  • Sriramulu, V.; Gupta, M. C.; Heitland, H.
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    Some Perculiarities of Flames Stabilized in Pulsating Streams.
    IIT, Madras, India; Volkswagen Werke, Wolfsburg, West Germany
    Combustion and Flame, Vol. 20, No. 1, 1-4, 1973

  • Vance, R.; Miklavcic, M.; Wichman, I. S.
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    On the Stability of One-Dimensional Diffusion Flames Established Between Plane, Parallel, Porous Walls.
    Michigan State University, East Lansing, MI
    Combustion Theory and Modelling, Vol. 5, No. 2, 147-161, June 2001

  • Karlin, V.; Makhviladze, G.
    view article (7.2844453)

    Computational Analysis of the Steady States of the Sivashinsky Model of Hydrodynamic Flame Instability.
    University of Central Lancashire, Preston, UK
    Combustion Theory and Modelling, Vol. 7, No. 1, 87-108, March 2003

  • Al-Abedeli, Y. M.; Masri, A. R.
    view article (7.2844453)

    Stability Characteristics and Flowfields of Turbulent Non-Premixed Swirling Flames.
    University of Sydney,Australia
    Combustion Theory and Modelling, Vol. 7, No. 4, 731-766, December 2003

  • Stone, C.; Menon, S.
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    Swirl Control of Combustion Instabilities in a Gas Turbine Combustor.
    Georgia Institute of Technology, Atlanta
    Combustion Institute, Symposium (International) on Combustion, 29th. Proceedings. Volume 29. Part 1. July 21-25, 2002, Combustion Institute, Pittsburgh, PA, Sapporo, Japan, Chen, J. H.; Colket, M. D., Editors, 155-160 p., 2002

  • Simon, P. L.; Kalliadasis, S.; Merkin, J. H.; Scott, S. K.
    view article (7.2844453)

    Evans Function Analysis of the Stability of Non-Adiabatic Flames.
    University of Leeds, UK
    Combustion Theory and Modelling, Vol. 7, No. 3, 545-561, September 2003

  • Echekki, T.; Chen, J. Y.; Hedge, U.
    view article (7.2844453)

    Numerical Investigation of Buoyancy Effects on Triple Flame Stability.
    North Carolina State Univ., Raleigh; California Univ., Berkeley; National Center for Microgravity Research, Cleveland, OH
    Combustion Science and Technology, Vol. 176, No. 3, 381-407, March 2004