FireDOC Search

displaying 1 - 10 results in total 10

  • Zhou, L.; Fernandez-Pello, A. C.; Cheng, R.
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    Flame Spread in an Opposed Turbulent Flow.
    California Univ., Berkeley; Lawrence Livermore Lab., CA
    Combustion and Flame, Vol. 81, No. 1, 40-495, July 1990
    National Institute of Standards and Technology, Gaithersburg, MD,

  • Zhou, L.; Fernandez-Pello, A. C.
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    Concurrent Turbulent Flame Spread.
    California Univ., Berkeley
    National Bureau of Standards, Gaithersburg, MD; National Science Foundation, Washington, DC, NISTIR 4449,
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 11th Joint Panel Meeting. October 19-24, 1989, Berkeley, CA, Jason, N. H.; Cramer, D. M., Editors, 122-129 p., 1990

  • Zhou, L.; Fernandez-Pello, A. C.
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    Turbulent Burning of a Flat Fuel Surface.
    California Univ., Berkeley
    National Institute of Standards and Technology, Gaithersburg, MD; National Science Foundation, Washington, DC,
    International Association for Fire Safety Science. Fire Safety Science. Proceedings. 3rd International Symposium. July 8-12, 1991, Elsevier Applied Science, New York, Edinburgh, Scotland, Cox, G.; Langford, B., Editors, 415-424 p., 1991

  • Zhou, L.
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    Solid Fuel Flame Spread and Mass Burning in Turbulent Flow.
    California Univ., Berkeley
    National Institute of Standards and Technology, Gaithersburg, MD, NIST GCR 92-602, March 1992, 232 p.

  • Zhou, L.; Fernandez-Pello, A. C.
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    Turbulent, Concurrent, Ceiling Flame Spread: The Effect of Buoyancy.
    California Univ., Berkeley
    Combustion and Flame, Vol. 92, No. 1-2, 45-59, 1993
    National Institute of Standards and Technology, Gaithersburg, MD,

  • Zhou, L.; Fernandez-Pello, A. C.
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    Solid Fuel Combustion in a Forced, Turbulent, Flat Plate Flow: The Effect of Buoyancy.
    California Univ., Berkeley
    National Institute of Standards and Technology, Gaithersburg, MD; National Science Foundation, Washington, DC,
    Combustion Institute, Symposium (International) on Combustion, 24th. July 5-10, 1992, Sydney, Australia, 1721-1728 p., 1992

  • Hedge, U.; Zhou, L.; Bahadori, M. Y.
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    Transition to Turbulence of Microgravity Gas Jet Diffusion Flames.
    NASA Lewis Research Center, Cleveland, OH; Analex Corp., Brook Park, OH; Science Applications International Corp., Torrance, CA
    Combustion Science and Technology, Vol. 102, No. 1-6, 95-113, 1994

  • Bahadori, M. Y.; Zhou, L.; Stocker, D. P.; Hegde, U.
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    Measurements of Flame Flicker Under Different Gravitational Levels.
    Science Applications International Corp., Torrance, CA; NASA Lewis Research Center, Cleveland, OH
    Chemical and Physical Processes in Combustion. Fall Technical Meeting, 1996. Proceedings. Combustion Institute/Eastern States Section. December 9-11, 1996, Hilton Head, SC, 451-454 p., 1996

  • Zhang, J.; Lei, Y.; Zhou, L.
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    Simulation of Coaxial Jet Interactions in a Swirl Combustor.
    Tsinghua Univ., Beijing, China
    Combustion Science and Technology, Vol. 176, No. 1, 23 - 43, January 2004

  • Rai, A.; Park, K.; Zhou, L.; Zachariah, M. R.
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    Understanding the Mechanism of Aluminium Nanoparticle Oxidation.
    Maryland Univ., College Park
    Combustion Theory and Modelling, Vol. 10, No. 5, 843-859, October 2006