FireDOC Search

displaying 11 - 20 results in total 20

  • Jaluria, Y.; Chiu, W. K. S.; Lee, S. H. K.
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    Flow of Smoke and Hot Gases Across Horizontal Vents in Room Fires.
    Rutgers Univ., New Brunswick, NJ
    Combustion Science and Technology, Vol. 110-111, 197-208, 1995
    National Institute of Standards and Technology, Gaithersburg, MD,

  • Suzuki, H.; Megumi, H.; Kikkawa, A.; Hirasawa, M.; Kobayashi, M.; Morita, M.
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    Effectiveness of Water Mist Against Cable Culvert Fire Monitored by Optical Fiber Fires Detection Systems.
    Yamato Protec Corp., Ibaraki, Japan; Science University of Tokyo, Japan
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 14th Joint Panel Meeting. Proceedings. May 28-June 3, 1998, ['Tsukuba, Japan', 'Tokyo, Japan'], 189-198 p., 1998

  • Tewarson, A.; Abu-lsa, I. A.; Cummings, D. R.; LaDue, D. E.
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    Characterization of the Ignition Behavior of Polymers Commonly Used in the Automotive Industry.
    Factory Mutual Research Co., Johnston, RI; General Motors Global R&D Operations, Warren, MI
    Fire Safety Science. Proceedings. Sixth (6th) International Symposium. International Association for Fire Safety Science (IAFSS). July 5-9, 1999, Intl. Assoc. for Fire Safety Science, Boston, MA, Poitiers, France, Curtat, M., Editors, 991-1002 p., 2000

  • Shields, T. J.; Silcock, G. W. H.; Flood, M. F.
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    Performance of a Single Glazing Assembly Exposed to Enclosure Corner Fires of Increasing Severity.
    University of Ulster, Northern Ireland
    Fire and Materials, Vol. 25, No. 4, 123-152, July/August 2001

  • Kozlowski, R.; Mieleniak, B.; Przepiera, A.
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    Flame Retardant Composite Boards With Vermiculite.
    Institute of Natural Fibres, Poznan, Poland
    Recent Advances in Flame Retardancy of Polymeric Materials: Materials, Applications, Research and Industry Developments, Markets. Volume 12. Business Communications Co., Inc. (BCC). May 21-23, 2001, Business Communications Co., Inc., Norwalk, CT, Stamford, CT, Lewin, M., Editors, 248-259 p., 2001

  • Hara, T.; Kato, S.
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    Numerical Simulation of Fire Plume-Induced Ceiling Jets Using the Standard k -e Model.
    Taisei Corporation, Tokyo, 163-0606, Japan; University of Tokyo,4-6-1 Komaba, Meguro-ku, Tokyo, 153-8505, Japan
    Fire Technology, Vol. 42, No. 2, 131-160, April 2006

  • Xie, Q.; Zhang, H.; Wan, Y.; Zhang, Q.; Cheng, X.
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    Full-Scale Experimental Study on Crack and Fallout of Toughened Glass With Different Thicknesses.
    University of Science and Technology of China, Hefei 230027, People's Republic of China
    Fire and Materials, Vol. 32, No. 5, 293-306, August/September 2008

  • Amon, F. K.; Lock, A.; Bryner, N. P.; Yoon, H.; Gibson, C.; Rice, J.
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    Evaluation of Thermal Imaging Cameras.
    National Institute of Standards and Technology, Gaithersburg, MD
    Report of Test FR 4023; FR 4023, October 2008, 39 p.

  • Zarr, R. R.
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    Assessment of Uncertainties for the NIST 1016 mm Guarded-Hot-Plate Apparatus: Extended Analysis for Low-Density Fibrous-Glass Thermal Insulation.
    National Institute of Standards and Technology, Gaithersburg, MD
    NIST TN 1606; NIST Technical Note 1606, February 2009, 55 p.

  • Harvey, B.
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    Truth Behind Temperature Sensing. Part 2.
    Firehouse, Vol. 34, No. 5, 44-46, May 2009