FireDOC Search

displaying 3151 - 3160 results in total 4589

  • Brackmann, C.; Bood, J.; Alden, M.; Pengloan, G.; Andersson, O.
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    Quantitative Measurements of Species and Temperature in a DME-Air Counterflow Diffusion Flame Using Laser Diagnostic Methods.
    Lund Institute of Technology, Sweden; PSA, Paris, France; Volvo Car Cooperation, Gothenburg, Sweden
    Combustion Science and Technology, Vol. 178, No. 6, 1165-1184, June 2006

  • Backreedy, R. I.; Fletcher, L. M.; Ma, L.; Pourkashanian, M.; Williams, A.
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    Modeling Pulverised Coal Combustion Using a Detailed Coal Combustion Model.
    Leeds Univ., UK
    Combustion Science and Technology, Vol. 178, No. 4, 763-787, April 2006

  • Gardner, L.; Ng, K. T.
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    Temperature Development in Structural Stainless Steel Sections Exposed to Fire.
    Imperial College, London, England
    Fire Safety Journal, Vol. 41, No. 3, 185-203, April 2006

  • Lautenberger, C.; Rein, G.; Fernandez-Pello, C.
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    Application of a Genetic Algorithm to Estimate Material Properties for Fire Modeling From Bench-Scale Fire Test Data.
    California Univ., Berkeley
    Fire Safety Journal, Vol. 41, No. 3, 204-214, April 2006

  • Cumber, P. S.; Spearpoint, M.
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    Computational Flame Length Methodology for Propane Jet Fires.
    Heriot-Watt Univ., Edinburgh, UK; University of Canterbury, Christchurch, New Zealand
    Fire Safety Journal, Vol. 41, No. 3, 215-228, April 2006

  • Tseng, C. C.; Viskanta, R.
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    Enhancement of Water Droplet Evaporation by Radiation Absorption.
    Purdue Univ., West Lafayette, IN
    Fire Safety Journal, Vol. 41, No. 3, 236-247, April 2006

  • Lennon, P. F.; Silcock, G. W. H.
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    Preliminary Investigation into the Partitioning of the Convective and Radiative Incident Heat Flux in Real Fires.
    Ulster Univ.; Letterkenny Institute of Technology
    Fire Technology, Vol. 42, No. 2, 109-129, April 2006

  • Hara, T.; Kato, S.
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    Numerical Simulation of Fire Plume-Induced Ceiling Jets Using the Standard k -e Model.
    Taisei Corporation, Tokyo, 163-0606, Japan; University of Tokyo,4-6-1 Komaba, Meguro-ku, Tokyo, 153-8505, Japan
    Fire Technology, Vol. 42, No. 2, 131-160, April 2006

  • Bae, J. H.; Avedisian, C. T.
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    High-Pressure Combustion of Submillimeter-Sized Nonane Droplets in a Low Convection Environment.
    Cornell Univ., Ithaca, NY
    Combustion and Flame, Vol. 145, No. 3, 607-620, May 2006

  • Patterson, R. I. A.; Singh, J.; Balthasar, M.; Kraft, M.; Wagner, W.
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    Extending Stochastic Soot Simulation to Higher Pressures. Brief Communication.
    Cambridge Univ., England; Weierstrass Institute for Applied Analysis and Stochastics, Mohrenstr. 39, 10117 Berlin, Germany
    Combustion and Flame, Vol. 145, No. 3, 638-642, May 2006