FireDOC Search

displaying 101 - 110 results in total 357

  • U.S./Japan Government Cooperative Program on Natural Resources (UJNR)
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    In-Situ Testing Methods for Evaluation of Soil Liquefaction Susceptibility. Workshop. U.S./Japan Panel on Wind and Seismic Effects; U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Proceedings. August 19-20, 1985, San Francisco, CA, 167 p., 1985

  • Schatz, H.
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    Brandschutz bei recyclingfahigen Stoffen. Teil 3. Brand- und Loschversuche mit unterschiedlichen Brandstoffen mit und ohne Windeinfluss and die Bestimmung von Schadstoffen. [Fire Protection for Recyclable Materials. Part 3. Fire and Extinction Experiments With Various Burning Materials With and Without Air Current Effects and the Determination of Hazardous Materials.]
    University of Karlsruhe, Germany
    Research Report 111, March 1998, 59 p.

  • Rehm, R. G.; McGrattan, K. B.; Baum, H. R.; Simiu, E.
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    An Efficient Large Eddy Simulation Algorithm for Computational Wind Engineering: Application to Surface Pressure Computations on a Single Building.
    National Institute of Standards and Technology, Gaithersburg, MD
    NISTIR 6371, August 1999, 33 p.

  • Garzon, V. E.; McDonough, J. M.; Saito, K.
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    Time-Dependent Model of Forest fire Spread in turbulent Gusting Winds.
    University of Kentucky, Lexington
    ASTM STP 1336,
    Very Large-Scale Fires. Proceedings. American Society for Testing and Materials (ASTM) STP 1336. June 16, 1997, American Society for Testing and Materials, West, St. Louis, MO, Keltner, N. R.; Alvares, N. J.; Grayson, S. J., Editors, 73-83 p., 1998

  • Galvez, R.
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    Smothering Smoke Sources.
    Schirmer Engineering Corp., Miami, FL
    Consulting-Specifying Engineer, Vol. 27, No. 1, 46-48, January 2000

  • Satoh, K.; Yoshihara, H.; Sagae, K.; Yang, K. T.
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    Reduction of Fire Hazards Downwind of Wind-Driven Fires by Three Barriers. Part 1. A Preliminary Experimental and Numerical Simulation Study.
    AJTE99-6144,
    ASME/JSME Joint Thermal Engineering Conference, 5th Proceedings. March 15-19, 1999, San Diego, CA, 128-135 p., 1999

  • Rimen, J.
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    Use of Positive Pressure Ventilation in Firefighting Operations.
    Home Office Fire Experimental Unit, Moreton-in-Marsh, UK
    Fire Engineers Journal, Vol. 60, No. 206, 7-13, May 2000
    Research Report Number 81, 2000, 14 p.

  • Weise, D. R.; Biging, G. S.
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    Qualitative Comparison of Fire Spread Models Incorporating Wind and Slope Effects.
    Pacific Southwest Forest and Range Experimental Station, Riverside, CA; California Univ., Berkeley
    Forest Science, Vol. 43, No. 2, 170-180, May 1997

  • Taylor, S. M.
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    Case Study of the Monterey Bay Sea Breeze on August 25, 1997.
    Naval Postgraduate School, Monterey, CA
    Thesis, September 1998, 132 p.

  • Brannigan, F. L.
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    Ambient Air Supply to High-Rise Fires: Update.
    Fire Engineering, Vol. 153, No. 7, 92-95, July 2000