FireDOC Search

displaying 61 - 70 results in total 73

  • Crown, E. M.; Dale, J. D.
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    Built for the Hot Seat.
    University of Alberta, Canada
    Canadian Textile Journl, 16-19, March 1993

  • Wu, P. K. S.; Lee, C.; Kim, I.
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    Simple Method for Evaluation of Thermal Protective Clothing.
    Factory Mutual Research Co., Norwood, MA; Natick Soldier Center, MA
    Volume 1,
    Interscience Communications Ltd.; Building Research Establishment; National Fire Protection Association; National Institute of Standards and Technology; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute. Interflam 2001. (Interflam '01). International Interflam Conference, 9th Proceedings. Volume 1. September 17-19, 2001, Interscience Communications Ltd., London, England, Edinburgh, Scotland, 631-643 p., 2001

  • National Institute of Standards and Technology
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    Welcome to Fire.Gov. Compressed Air Foam Studied in New Zealand. Looking for an Alternative to AFFF. USFA Offers a Wildland Tutorial Self Study CD-ROM. Scientists Focus on Urban Wildland Fires. Sensors Simulate Human Skin for Testing Protective Clothing. FDNY Helps to Develop New Measurements. NFPRF Honors NIST Scientists for fire Fighter Safety Research.
    National Institute of Standards and Technology, Gaithersburg, MD
    FIRE.GOV, 1-4, Spring 2001

  • Wong, L. T.; Yuen, W. W.
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    Safety Consideration of Fire Shutters in Large Building Space.
    Hong Kong Polytechnic Univ., China; California Univ., Santa Barbara
    Journal of Applied Fire Science, Vol. 11, No. 2, 195-208, 2002-2003

  • Prasad, K. R.; Dac, H. M. H.; Kukuck, S. R.
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    Thermal Performance of Fire Fighters Protective Clothing. Part 2. Protective Clothing Performance Simulator: User's Manual.
    National Institute of Standards and Technology, Gaithersburg, MD
    NISTIR 6901, January 2003, 61 p.

  • Zhu, F. L.; Zhang, W. Y.
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    Evaluation of Thermal Performance of Flame-Resistant Fabrics Considering Thermal Wave Influence in Human Skin Model.
    Donghua University Shanghai 200051, PR China
    Journal of Fire Sciences, Vol. 24, No. 6, 465-485, November 2006

  • Stull, J. O.; Duffy, R. M.
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    Field Evaluation of Protective Clothing Effects on Fire Fighter Physiology: Predictive Capability of Total Heat Loss Test.
    International Personnel Protection Inc., Austin, TX; International Association of Fire Fighters, Washington, DC
    ASTM STP 1386,
    Performance of Protective Clothing: Issues and Priorities for the 21st Century. Proceedings. Seventh (7th) Volume. American Society for Testing and Materials (ASTM). ASTM STP 1386. June 28-30, 1999, ASTM, West Conshohocken, PA, Seattle, WA, Nelson, C. N.; Henry, N. W., Editors, 481-503 p., 2000

  • Myhre, L.; Barker, R.; Scruggs, B.; Shalev, I.; Prahsarn, C.; Miszko, T.
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    Effect of Measured Heat Loss Through Turnout Materials on Firefighter Comfort and Heat Stress. Part 2: Performance in a Warm Environment.
    Alamo Physiological Research Institute, San Antonio, TX; North Carolina State Univ., Raleigh
    ASTM STP 1386,
    Performance of Protective Clothing: Issues and Priorities for the 21st Century. Proceedings. Seventh (7th) Volume. American Society for Testing and Materials (ASTM). ASTM STP 1386. June 28-30, 1999, ASTM, West Conshohocken, PA, Seattle, WA, Nelson, C. N.; Henry, N. W., Editors, 535-545 p., 2000

  • Blackburn, M.
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    After the Fire.
    Johns Hopkins Magazine, Vol. 59, No. 4, 34-41, September 2007

  • Zhu, F.; Zhang, W.; Song, G.
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    Heat Transfer in a Cylinder Sheathed by Flame-Resistant Fabrics Exposed to Convective and Radiant Heat Flux.
    Zhongyuan University of Technology, Zhengzhou City 450007, China; Donghua Univ., Shanghai 200051, China; Alberta Univ., Edmonton, Alberta, Canada
    Fire Safety Journal, Vol. 43, No. 6, 401-409, August 2008