FireDOC Search

displaying 181 - 190 results in total 324

  • Bentz, D. P.; Gaal, P. S.; Gaal, D. S.
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    Further Progress in the Development of a Slug Calorimeter for Evaluating the Apparent Thermal Conductivity of Fire Resistive Materials.
    National Institute of Standards and Technology, Gaithersburg, MD; Anter Corp., Pittsburgh, PA
    International Thermal Conductivity 29th Conference/International Thermal Expansion 17th Symposium. Proceedings. Chapter 8: Experimental Materials. June 24-27, 2007, DEStech Publications, Inc., Birmingham, AL, Koenig, J. R.; Ban, H., Editors, 403-411 p., 2007

  • Xiao, B.
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    Comparison of Numerical and Experimental Results of Fire Induced Doorway Flows.
    Tyco Fire Suppression and Building Products, Marinette, WI
    Suppression and Detection Research Application: A Technical Working Conference. SUPDET 2009. Proceedings. Fire Protection Research Foundation. Feburary 24-27, 2009, Orlando, FL, 74-85 p., 2009

  • Malow, M.; Krause, U.
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    Smoldering Combustion of Solid Bulk Materials at Different Volume Fractions of Oxygen in the Surrounding Gas.
    Federal Institute of Material Research and Testing (BAM), Berlin, Germany
    Fire Safety Science. Proceedings. Ninth (9th) International Symposium. International Association for Fire Safety Science (IAFSS). September 21-26, 2008, Intl. Assoc. for Fire Safety Science, Boston, MA, Karlsruhe, Germany, Karlsson, B., Editors, 303-314 p., 2008

  • Koido, K.; Hirosaka, K.; Kubo, T.; Fukayama, M.; Ouryouji, K.; Hasegawa, T.
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    Numerical Study on Premixed Hydrothermal Combustion in Tube Reactor.
    Nagoya Univ., Nagoya, Japan; Nagoya University Furo-cho, Nagoya, Japan
    Combustion Theory and Modelling, Vol. 13, No. 2, 295-318, April 2009

  • Nguyen, T. D.; Meftah, F.; Chammas, R.; Mebarki, A.
    view article (6.5112553)

    Behavior of Masonry Walls Subjected to Fire: Modeling and Parametrical Studies in the Case of Hollow Burnt-Clay Bricks.
    Université Paris-Est, 77454 Marne-la-Vallée, France; Centre Technique des Matériaux Naturels de Construction (CTMNC), 17 rue Letellier, 75015 Paris, France
    Fire Safety Journal, Vol. 44, No. 4, 629-641, May 2009

  • Manzello, S. L.; Grosshandler, W. L.; Mizukami, T.
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    Furnace Testing of Full-Scale Gypsum Steel Stud Non-Load Bearing Wall Assemblies: Results of Multi-Laboratory Testing in Canada, Japan, and USA.
    National Institute of Standards and Technology, Gaithersburg, MD; Center for Better Living (CBL), Tsukuba, Ibaraki, Japan
    Fire Technology, Vol. 46, No. 1, 183-200, January 2010

  • Parker, W. J.
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    Development of a Model for the Heat Release Rate of Wood: A Status Report.
    National Bureau of Standards, Gaithersburg, MD
    Federal Emergency Management Agency, Washington, DC, NBSIR 85-3163, May 1985, 108 p.

  • Nadeau, H. B.; Waszeciak, P. H.; Sayigh, A. A. P.
    view article (6.4451118)

    Method for Determination of the Cellular Gas Content of Rigid Urethane Foams and Its Relationship to Thermoconductivity.
    Upjohn Co., Kalamazoo, MI
    National Academy of Sciences. Cellular Plastics. Publication 1462. April 13-15, 1966., Natick, MA, 109-122 p., 1966

  • Briggs, P. J.
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    Fire Behavior of Rigid Foam Insulation Boards.
    I.C.I. Organics Div., England
    Fire and Cellular Polymers. Proceedings. QMC Wolfson Fire and Materials Centre and Fire Research Station. October 11-12, 1984, Elsevier Applied Science, New York, London, England, Buist, J. M., Grayson, S. J. and Woolley, W. D., Editors, 7/1-25 p., 1984

  • Miller, M. S.; Kotlar, A. J.
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    Thermal Transport Properties in the Primary Gas-Phase Combustion Zone of Double-Base Propellant: A Sensitivity Study.
    Army Ballistic Research Lab., Aberdeen Proving Ground, MD
    BRL-MR-3545, September 1986, 42 p.