FireDOC Search

displaying 91 - 100 results in total 336

  • Kidd, C. T.
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    High Heat Flux Measurements and Experimental Calibrations/Characterizations.
    Calspan Corporation/AEDC Operations, Arnold Air Force Base, TN
    Measurement Technology for Aerospace Applications in High Temperature Environments. NASA Langley Measurement Technology Conference. Proceedings. NASA Conference Publication 3161. National Aeronautics and Space Administration, American Institute for Astronautics and Aeronautics, Instrument Society of America. April 22-23, 1992, Hampton, VA, Singh, J. J.; Antcliff, R. R., Editors, 31-50 p., 1992

  • European Organisation of Official Laboratories for Fire Testing (EGOLF)
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    Determination of the Response Time of Thermocouples to be Used for the Measurement of Air or Gas Phase Temperature in Fire Resistance and Reaction to Fire Testing.
    European Organisation of Official Laboratories for Fire Testing, Gent, Belgium
    EGOLF/SM/1; D/1995/6964/1, June 1995, 7 p.

  • Cannell, J.; Reall, J.; Bernzweigh, D.
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    High-Rise Fire Training: Operation "H.O.T.T."
    Columbus Fire Division, OH
    Fire Engineering, Vol. 154, No. 8, 47-48,52,54-56,58,60-62, August 2001

  • Delichatsios, M.; Liu, X.
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    Temperatures and Heat Fluxed in Corridors Owing to Room Fires.
    Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
    Volume 2,
    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 2. September 17-19, 2001, Interscience Communications Ltd., London, England, Edinburgh, Scotland, 1323-1330 p., 2001

  • Fire Findings
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    Water Heater Testing. Part 1. Varying Air Supply Didn't Create Instant Fire Hazards.
    Fire Findings, Vol. 10, No. 2, 12-13, Spring 2002

  • Jia, F.; Galea, E. R.
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    Using SMARTFIRE to Predict Pre-Flashover Room Fire Temperatures: An Analysis of the SMARTFIRE Simulations Undertaken by the University of Canterbury.
    University of Greenwich, London, England
    Paper No. 02/IM/91, April 2002, 16 p.

  • Tagawa, M.; Matsubara, F.; Ohta, Y.
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    Heat Transfer Characteristics of a Non-Premixed Turbulent Flame Formed in a Curved Rectangular Duct.
    Nagoya Institute of Technology, Japan
    Combustion and Flame, Vol. 129, No. 1/2, 151-163, April 2002

  • Hayhurst, A. N.; Parmar, M. S.
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    Measurement of the Mass Transfer Coefficient and Sherwood Number for Carbon Spheres Burning in a Bubbling Fluidized Bed.
    Cambridge University, Pembroke Street, Cambridge CB2 3RA, England
    Combustion and Flame, Vol. 130, No. 4, 361-375, September 2002

  • Santoni, P. A.; Marcelli, T.; Leoni, E.
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    Measurement of Fluctuating Temperatures in a Continuous Flame Spreading Across a Fuel Bed Using a Double Thermocouple Probe.
    Universite de Corse, B.P. 52, 20250 Corte, Corse, France
    Combustion and Flame, Vol. 131, No. 1/2, 47-58, October 2002

  • Bostrom, L.
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    Self-Compacting Concrete Exposed to Fire.
    SP Swedish National Testing and Research Institute, Boras, Sweden
    Designing Structures for Fire. Proceedings. Co-Sponsored by: Society of Fire Protection Engieners and Structural Engineering Institute. September 30-October 1, 2003, DEStech Publications, Inc., Baltimore, MD, 193-202 p., 2003