FireDOC Search

displaying 201 - 210 results in total 471

  • Liao, C.; Saito, N.; Saso, Y.; Ogawa, Y.
    view article (6.132884)

    Flammability Limits of Combustible Gases and Vapors Measured by a Tubular Flame Method.
    Fire Research Institute, Tokyo, Japan
    Fire Safety Journal, Vol. 27, No. 1, 49-68, 1996

  • Reed, S. B.
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    Approach to the Prediction of Aerated-Burner Performance.
    Gas Council, London, England
    Combustion and Flame, Vol. 13, No. 6, 583-595, December 1969

  • Mital, R.; Gore, J. P.; Viskanta, R.
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    Study of the Structure of Submerged Reaction Zone in PorousCeramic Radiant Burners.
    Purdue Univ., West Lafayette, IN
    Combustion and Flame, Vol. 111, No. 3, 175-184, November 1997

  • Saito, N.; Ogawa, Y.; Saso, Y.; Sakei, R.
    view article (6.132884)

    Improvement on Reproducibility of Flame Extinguishing Concentration Measured by Cup Burner Method.
    Report of National Research Institute of Fire and Disaster, No. 81, 22-29, March 1996

  • Jones, J. C.
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    Air Requirements for a Burner at an Exploration Well.
    University of Aberdeen, Scotland
    Journal of Fire Sciences, Vol. 6, No. 6, 407-409, November/December 1998

  • Grigg, J.
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    Full-Scale Cup Burner for the Testing of Gaseous and Low Volatility Agents.
    Kidde International, Berkshire, UK
    Halon Options Technical Working Conference. Proceedings. HOTWC 2000. Sponsored by: University of New Mexico, Fire Suppression Systems Assoc., Fire and Safety Group, Great Lakes Chemical Corp., Halon Alternative Research Corp., Hughes Associates, Inc., Kidde Fenwal, Inc., Kidde International, Modular Protection, Inc., Next Generation Fire Suppression Technology Program, Sandia National Laboratories, Summit Environmental Corp., Inc. and 3M Specialty Materials. May 2-4, 2000, Albuquerque, NM, 93-103 p., 2000

  • Liew, S. K.; Moss, J. B.
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    Buoyant Fire Modelling.
    Cranfield Institute of Technology, Bedford, England
    TP-84-2, 1984, 64 p.

  • Vennett, B. A. V.; Mcenally, C. S.; Pfefferle, L. D.; Smooke, M. D.
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    Computational and Experimental Study of Axisymmetric Coflow Partially Premixed Ethylene/Air Flames.
    Yale Univ., New Haven, CT; United Technologies Research Center, Hartford, CT
    Combustion and Flame, Vol. 127, No. 1/2, 2004-2022, October 2001

  • Cheng, T. S.; Yuan, T.; Lu, C. C.; Chao, Y. C.
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    Application of Spontaneous Vibrational Raman Scattering for Temperature Measurements in High Pressure Laminar Flames.
    National Cheng Kung Univ., Taiwan, R.O.C.; Chung-Hua Univ., Taiwan, R.O.C.
    Combustion Science and Technology, Vol. 174, No. 5/6, 111-128, May/June 2002

  • Parmentier, S.; Braack, M.; Riedel, U.; Warnatz, J.
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    Modeling of Combustion in a Lamella Burner.
    Universitat Heidelberg, Germany
    Combustion Science and Technology, Vol. 175, No. 1, 185-206, January 2003