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displaying 1 - 10 results in total 40

  • Myhrvold, T.; Ertesvag, I.; Gran, I. R.; Cabra, R.; Chen, J. Y.
    view article (9.077323)

    Numerical Investigation of a Lifted H2/N2 Turbulent Jet Flame in a Vitiated Coflow.
    SINTEF, Trondheim, Norway; Norwegian University of Science and Technology, Trondheim, Norway; California Univ., Berkeley
    Combustion Science and Technology, Vol. 178, No. 6, 1001-1030, June 2006

  • Kempf, A.; Flemming, F.; Janicka, J.
    view article (9.077323)

    Investigation of Lenghtscales, Scalar Dissipation and Flame Orientation in a Piloted Diffusion Flame by LES.
    Technische Universitä t Darmstadt, Germany
    Combustion Institute, Symposium (International) on Combustion, 30th. Proceedings. Volume 30. Part 1. July 25-30, 2004, Combustion Institute, Pittsburgh, PA, Chicago, IL, Chen, J. H.; Colket, M. D.; Barlow, R. S.; Yetter, R. A., Editors, 557-565 p., 2005

  • Billet, G.; Giovangigi, V.; deGassowski, G.
    view article (9.077323)

    Impact of Volume Viscosity on a Shock-Hydrogen-Bubble Interaction.
    ONERA 29, av. de la Division Leclerc, 92322 Chatillon Cedex, France; CNRS, Ecole Polytechnique, 91128 Palaiseau Cedex, France; BULL, 20, rue Dieumegard, 93406 Saint-Ouen Cedex, France
    Combustion Theory and Modelling, Vol. 12, No. 2, 221-248, April 2008

  • Lee, C. W.; Mastorakos, E.
    view article (9.077323)

    Transported Scalar PDF Calculations of Autoignition of a Hydrogen Jet in a Heated Turbulent Co-Flow.
    Cambridge Univ., Trumpington Street, UK
    Combustion Theory and Modelling, Vol. 12, No. 6, 1153-1178, November 2008

  • Kim, M. S.; Didion, D. A.
    view article (8.611842)

    Simulation of Leak/Recharge Process of Refrigerant Mixtures.
    Seoul National Univ., Korea; National Institute of Standards and Technology, Gaithersburg, MD
    HVAC&R Research, Vol. 1, No. 3, 242-254, July 1995

  • Saeed, K.; Stone, C. R.
    view article (8.611842)

    Measurements of the Laminar Burning Velocity for Mixtures of Methanol and Air From a Constant-Volume Vessel Using a Multizone Model.
    Aligarh M University, Aligarh 202002, India; Oxford University, Parks Road, Oxford OX1 3PJ, UK
    Combustion and Flame, Vol. 139, No. 1/2, 152-166, October 2004

  • Fuss, S. P.; Dye, D. J.; Williams, B. A.; Fleming, J. W.
    view article (8.611842)

    Inhibition of Premixed Methane-Air Flames by Water Mist.
    Naval Research Laboratory, Washington, DC
    Chemical and Physical Processes of Combustion, Fall Technical Meeting. Proceedings. Combustion Institute/Eastern States Section. October 13-15, 1999 Raleigh, NC, 105-108 p., 1999

  • Jones, W. P.; Rigopoulos, S.
    view article (8.611842)

    Reduced Chemistry for Hydrogen and Methanol Premixed Flames Via RCCE.
    Imperial College, London, England
    Combustion Theory and Modelling, Vol. 11, No. 5, 755-780, October 2007

  • Mitsos, A.; Oxberry, G. M.; Barton, P. I.; Green, W. H.
    view article (8.611842)

    Optimal Automatic Reaction and Species Elimination in Kinetic Mechanisms.
    RES Group/Numerica Technology, Cambridge, MA; Massachusetts Institute of Technology, Cambridge
    Combustion and Flame, Vol. 155, No. 1/2, 118-132, October 2008

  • Lee, K. W.; Choi, D. H.
    view article (8.611842)

    Prediction of NO in Turbulent Diffusion Flames Using Eulerian Particle Flamelet Model.
    Korea Advanced Institute of Science and Technology, Daejeon, Korea
    Combustion Theory and Modelling, Vol. 12, No. 5, 905-927, October 2008