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displaying 121 - 130 results in total 130

  • Yilmaz, A.
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    Radiation Transport Measurements in Methanol Pool Fires With Fourier Transform Infrared Spectroscopy.
    Maryland Univ., College Park
    NIST GCR 09-922
    National Institute of Standards and Technology, Gaithersburg, MD, NIST GCR 09-922
    January 2009
    138 p.

  • Dalrymple, D.
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    Rescue and Alternative Vehicle Power.
    RWJUH Emergency Services, New Brunswick, NJ
    Fire Engineering, Vol. 162, No. 4, 151-152,154-156,158,160, April 2009

  • Blanchat, T.; O'Hern, T.; Kearney, S.; Ricks, A.; Jernigan, D.
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    Validation Experiments to Determine Radiation Partitioning of Heat Flux to an Object in a Fully Turbulent Fire.
    Sandia National Laboratories, Albuquerque, NM
    ['Volume 32', 'Part 2']
    Volume 32; Part 2
    Combustion Institute, Symposium (International) on Combustion, 32nd. Proceedings. Volume 32. Part 2. August 3-8, 2008, Combustion Institute, Pittsburgh, PA, Montreal, Canada, Dagaut, P.; Sick, V., Editors, 2511-2518 p., 2009

  • Raghavan, V.; Rangwala, A. S.; Torero, J. L.
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    Laminar Flame Propagation on a Horizontal Fuel Surface: Verification of Classical Emmons Solution.
    Indian Institute of Technology Madras, Chennai, India; Worcester Polytechnic Inst., MA; Edinburgh Univ., Scotland
    Combustion Theory and Modelling, Vol. 13, No. 1, 121-141, February 2009

  • Raghavan, V.; Babu, V.; Sundararajan, T.
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    Investigation of Interaction Between Methanol Fed Tandem Porous Spheres Burning in a Mixed Convective Environment.
    Indian Institute of Technology Madras, Chennai, India
    Combustion Theory and Modelling, Vol. 13, No. 3, 461-485, June 2009

  • Luo, C.; Dlugogorski, B. Z.; Kennedy, E. M.
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    Influence of CF3I and CBrF3 on Methanol-Air and Methane-Air Premixed Flames.
    Newcastle Univ., Callaghan, NSW, 2308, Australia
    Fire Technology, Vol. 44, No. 3, 221-237, September 2008

  • Zhang, J.; Dembele, S.; Wen, J. X.
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    Investigation of Turbulence Models for CFD Simulations of Gas and Liquid Pool Fires.
    Ulster Univ., Newtownabbey, BT37 0QB, Northern Ireland; Kingston Univ., London, SW15 3DW, England
    Journal of Fire Sciences, Vol. 27, No. 2, 157-182, March 2009

  • Janbozorgi, M.; Ugarte, S.; Metghalchi, H.; Keck, J. C.
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    Combustion Modeling of Mono-Carbon Fuels Using the Rate-Controlled Constrained-Equilibrium Method.
    Northeastern Univ., Boston, MA; Massachusetts Institute of Technology, Cambridge
    Combustion and Flame, Vol. 156, No. 10, 1871-1885, October 2009

  • Nayagam, V.
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    Quasi-Steady Flame Standoff Ratios During Methanol Droplet Combustion in Microgravity. Brief Communications.
    NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH
    Combustion and Flame, Vol. 157, No. 1, 204-205, January 2010

  • Davis, S.; Kelly, S.; Somandepalli, V.
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    Hot Surface Ignition of Performance Fuels.
    GexCon US Inc., Bethesda, MD; Exponent Failure Analysis Associates, Natick, MA
    Fire Technology, Vol. 46, No. 2, 363-374, April 2010