FireDOC Search

displaying 131 - 140 results in total 153

  • Handa, T.
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    Characterization of Factors in Estimating Fire Hazard by Furnace Test Based on Patterns in the Simulation of Fire for the Classification of Organic Interior Building Materials. Part 2. Checks on Factors Concerning the Surface Flame-Spread Rate and Smoke-Evolution of Organic Building Materials by Small Inclined-Type Test Furnace.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 25-32, 1971

  • Bhatnagar, S. K.; Varshney, B. S.; Mohanty, B.; Agarwal, C. P.
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    Steady Flame Spread Rate Measurement at Discrete Levels of External Radiation Heat Flux.
    Central Building Research Institute, Roorkee, India; Roorkee Univ., India
    Combustion Institute, Symposium (International) on Combustion, 23rd. July 22-27, 1990, Combustion Institute, Pittsburgh, PA, Orleans, France, 1693-1699 p., 1991

  • Burgoyne, J. H.; Roberts, A. F.
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    Spread of Flame Across a Liquid Surface. Part 1. The Induction Period.
    Imperial College, London, England
    Proceeding of the Royal Society of London, Series A. Mathematical and Physical Sciences, Vol. 308, 39-53, 1968

  • Thomas, P. H.
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    Effects of Fuel Geometry in Fires.
    Fire Research Station, Borehamwood, England
    CP 29/74, February 1974, 8 p.

  • Behrens, J. F.
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    Life Safety and High Rise Buildings.
    City of Huntington Beach, CA
    Building Standards, No. 1, 23-27, July/August 1974

  • Karpov, A. I.
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    On the Prediction of Flame Spread Rate Over the Combustible Materials.
    Khabarovsk Polytechnical Inst., Russia
    University of Science and Technology of China. Fire Science and Technology. Asian Conference, 1st (ACFST). October 9-13, 1992, International Academic Publishers, China, Hefei, China, Weicheng, F.; Zhuman, F., Editors, 319-324 p., 1992

  • Tewarson, A.
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    Heat Release and Surface Flame Spread.
    Factory Mutual Research Corp., Norwood, MA
    Business Communications Co., Inc. (BCC). Recent Advances in Flame Retardancy of Polymeric Materials: Materials, Applications, Industry Developments, Markets. Volume 4. May 18-20, 1993, Business Communications Co., Inc., Norwalk, CT, Stamford, CT, Lewin, M., Editors, 247-253 p., 1993

  • West, J.; Chao, R.; Bhattacharjee, S.; Tang, L.; Altenkirch, R. A.
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    Evaluation of the Quasi-Steady Hypothesis for Opposed Flow Flame Spread Over Thick Fuels: A Comparison of Unsteady and Steady-State Modeling.
    San Diego State Univ., CA; Mississippi State Univ., Mississippi State
    National Aeronautics and Space Administration, Washington, DC,
    Combustion Institute/Central and Western States (USA) and Combustion Institute/Mexican National Section and American Flame Research Committee. Combustion Fundamentals and Applications. Joint Technical Meeting. Proceedings. April 23-26, 1995, San Antonio, TX, Gore, J. P., Editors, 590-595 p., 1995

  • Delichatsios, M. A.; Delichatsios, M.; Chen, Y.; Hasemi, Y.
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    Similarity Solutions and Applications to Turbulent Upward Flame Spread on Noncharring Materials.
    Factory Mutual Research Corp., Norwood, MA; Building Research Inst., Tsukuba-shi, Japan
    Combustion and Flame, Vol. 102, No. 3, 357-370, August 1995

  • Bryant, D.
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    Investigation Into the Effects of Gravity Level on Rate of Heat Release and Time to Ignition.
    ESTEC, Noordwijk NL, The Netherlands
    Fire and Materials, Vol. 19, No. 3, 119-126, 1995