FireDOC Search

displaying 91 - 100 results in total 122

  • Dehn, J. T.
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    Chemical Kinetics Computer Code for Modeling Ignition.
    Ballistic Research Laboratories, Aberdeen Proving Ground, MD
    Memorandum Report 2092
    Memorandum Report 2092
    January 1971
    57 p.

  • Philpot, C. W.
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    Temperatures in a Large Natural-Fuel Fire.
    Pacific Southwest Forest and Range Experimental Station, Berkeley, CA
    Research Note PSW 90
    Research Note PSW 90
    1965
    14 p.

  • Brogan, E.
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    Performance of Fire Fighting Powders.
    Faverdale Technology Centre, Durham, UK
    AGARD-CP-587
    AGARD-CP-587
    Aircraft Fire Safety. Propulsion and Energetics Panel (PEP) Symposium. AGARD Conference Proceedings 587. AGARD-CR-587. Advisory Group for Aerospace Research and Development (AGARD). October 14-17, 1996, Dresden, Germany, 17/1-8 p., 1996

  • Marker, T. R.; Sarkos, C. P.
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    Full-Scale Test Evaluation of Aircraft Fuel Fire Burnthrough Resistance Improvements.
    Federal Aviation Administration, Atlantic City International Airport, NJ
    SAMPE Journal, Vol. 33, No. 4, 32-39, 1997

  • Edwards, J. C.; Friel, G. F.
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    Comparative In-Mine Evaluation of Carbon Monoxide and Smoke Detectors. Report of Investigations.
    Pittsburgh Research Center, PA
    RI 9622
    RI 9622
    January 1996
    11 p.

  • Gritzo, L.
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    Hemispherical Heat Flux Gauge (HFG) for Large, Hydrocarbon Fuel Fires. Appendix D. Overheads From Summary Presentations by Gauge Manufacturers and Designers.
    Sandia National Labs., Albuquerque, NM
    NIST/NSF Workshop on Heat Flux Transducers Calibration. Final Report. Proceedings. January 23-24, 1995, Gaithersburg, MD, D/1-2 p., 1995

  • Marker, T. R.
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    Full-Scale Test Evaluation of Aircraft Fuel Fire Burnthorugh Resistance Improvements. Final Report.
    Federal Aviation Administration, Atlantic City International Airport, NJ
    DOT/FAA/AR-98/52
    Federal Aviation Administration, Washington, DC, DOT/FAA/AR-98/52
    January 1999
    42 p.

  • Pietrzak, L. M.
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    Improvements to the Water Vaporization and Surface Cooling Calculations in the Fire Demand Model.
    Toyon Research Corp., Goleta, CA
    ['196C0100', 'Project 6-196']
    Technical Research Center of Finland Fire Technology Laboratory, Espoo; Swedish Fire Research Board, Stockholm, Sweden, 196C0100; Project 6-196
    December 1993
    75 p.

  • Goodson, M.; Sneed, D.; Keller, M.
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    Electrically Induced Fuel Gas Fires.
    Ward and Whitemore Universal Fire Consultants, TX
    Fire and Arson Investigator, Vol. 49, No. 4, 10-12, July 1999

  • Koroluk, K.
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    New Twist To an Old Idea: Scientists Develop Fire Extinguishing System to Tackle Liquid Fuel Fires in Industrial Settings.
    IRC-VISI-258
    Daily Commercial News, Vol. 72, No. 146, 5-6, Friday, July 30, 1999
    IRC-VISI-258