FireDOC Search

displaying 61 - 70 results in total 77

  • Wighus, R.; Brandt, A. W.
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    Watmist: A One-Zone Model for Water Mist Fire Suppression.
    Norwegian Fire Research Laborabory
    Halon Options Technical Working Conference. Proceedings. HOTWC 2001. Sponsored by: University of New Mexico, Fire Suppression Systems Assoc., Fire and Safety Group, GlobeTech, Inc., Halon Alternative Research Corp., Hughes Associates, Inc., Kidde plc., Modular Protection, Corp., Next Generation Fire Suppression Technology Program, Sandia National Laboratories, Summit Environmental Corp., Inc. and 3M Specialty Materials. April 24-26, 2001, Albuquerque, NM, Daniels, B. L.; Cole, D. G., Editors, 111-121 p., 2001

  • Clancy, P.
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    Advances in Modelling Heat Transfer Through Wood Framed Walls in Fire.
    Victoria University of Technology, Melbourne, Australia
    Fire and Materials, Vol. 25, No. 6, 241-254, November/December 2001

  • Janssens, M. L.; Kimble, J.; Murphy, D.
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    Computer Tools to Determine Material Properties for Fire Growth Modeling From Cone Calorimeter Data.
    Southwest Research Institute, San Antonio, TX; University of North Carolina, Charlotte
    National Institute of Standards and Technology, Gaithersburg, MD,
    Fire and Materials 2003. 8th International Conference. Conference Papers. Proceedings. Organised by Interscience Communications Limited. January 27-28, 2003, San Francisco, CA, 377-387 p., 2003

  • Nakakuki, A.
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    Heat Transfer in Pool Fires at a Certain Small Lip Height.
    Heat & Flow Research Institute, 17-18 Kohokudai 2-chome, Abiko-Shi, Chiba-Ken 270-1132, Japan
    Combustion and Flame, Vol. 131, No. 3, 259-272, November 2002

  • Jones, J. C.
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    Radiation Approximations for Estimating the Cover Temperature of Outdoor Storage Vessels.
    Unviersity of Aberdeen, Scotland
    International Journal on Engineering Performance-Based Fire Codes, Vol. 4, No. 4, 110-111, Winter 2002

  • Jones, J. C.
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    Means of Direct Determination of the Biot Number in Oven Heating Tests. Part 2. Implications of the Results for Temperature Measurement.
    University of Aberdeen, Scotland
    Journal of Fire Sciences, Vol. 21, No. 4, 299-304, July 2003

  • Kagiya, K.; Hasemi, Y.; Nam, D.; Hokugo, A.; Masuda, H.; Harada, T.; Miyatake, A.; Hiramatsu, Y.
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    Investigation of a Large Wooden Gymnasium Fire: Its Documentation, Estimation of the Fire Scenario by Experiments and Evaluation of the Structural Properties of Surviving Timber Elements.
    National Institute for Land and Infrastructure Management, Ibaraki, 305-0802, Japan; Waseda University, Japan; Kobe University, Japan; Building Research Institute, Ibaraki, Japan; Forestry and Forest Products Research Institute, Japan
    Fire Safety Science. Proceedings. Seventh (7th) International Symposium. International Association for Fire Safety Science (IAFSS). June 16-21, 2003, Intl. Assoc. for Fire Safety Science, Boston, MA, Worcester, MA, Evans, D. D., Editors, 1147-1158 p., 2003

  • Stensaas, J. P.
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    Physical Modelling of Enclosed Pool Fires.
    Trondheim Univ., Norway
    THESIS, 1987, 176 p.

  • Ma, T.; Olenick, S. M.; Klassen, M. S.; Roby, R. J.; Torero, J. L.
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    Burning Rate of Liquid Fuel on Carpet (Porous Media).
    Combustion Science and Engineering, Inc., Columbia, MD; Edinburgh Univ., Scotland
    Fire Technology, Vol. 40, No. 3, 227-246, July 2004

  • Jones, J. C.
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    Simplified Method of Correction for Kinetic Energy Effects on Thermocouple Readings in a Gas Stream.
    Aberdeen Univ., Scotland
    International Journal on Engineering Performance-Based Fire Codes, Vol. 6, No. 1, 5-6, 2004