FireDOC Search

displaying 91 - 100 results in total 581

  • Jeng, S. M.; Chen, L. D.; Faeth, G. M.
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    Predictions and Measurements of Turbulence Properties of Buoyant Diffusion Flames.
    Pennsylvania State Univ., University Park
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Technical Meeting, 1982. Co-Hosted by: AeroChem Research Laboratories, Inc. and Princeton University. December 14-16, 1982, Atlantic City, NJ, 3/1-4 p., 1983

  • Ndubizu, C. C.; Ramaker, D. E.; Tatem, P. A.; Williams, F. W.
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    Sensitivity of Various Physical Parameters Upon Fire Model Predictions.
    George Washington Univ., Washington, DC; Naval Research Lab., Washington, DC
    Combustion Institute/Eastern States Section. Chemical and Physical Processes in Combustion. Technical Meeting, 1982. Co-Hosted by: AeroChem Research Laboratories, Inc. and Princeton University. December 14-16, 1982, Atlantic City, NJ, 49/1-4 p., 1983

  • Tennankore, K. N.; Kumar, R. K.; Razzaghi, M.
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    Burning Rates of Hydrogen-Air Mixtures in Containment Buildings and the Consequent Pressure Transients.
    Atomic Energy of Canada Ltd., Pinawa, Canada
    AECL-9093
    AECL-9093
    1987
    30 p.

  • Doria, M. L.; Ku, T. C.
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    Some Predictive Results Obtained From the Numerical Model for the Computation of Unsteady Recirculating Flows.
    Notre Dame Univ., IN
    TR 37191-74-6
    TR 37191-74-6
    November 1974
    62 p.

  • Craig, R. R.
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    Turbulence in Free Diffusion Flames of Hydrogen-Nitrogen Mixtures Buring in Still Air. Final Report. August 1971-December 1972.
    Air Force Aero Propulsion Llab., Wright-Patterson AFB, OH
    AFAPL-TR-74-68
    AFAPL-TR-74-68
    June 1975
    160 p.

  • Bray, K. N. C.; Libby, P. A.
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    Turbulence Interaction Effects in Turbulent Premixed Flames. Project SQUID.
    California Univ., San Diego, La Jolla
    UCSD-8-PU
    Purdue Univ., West Lafayette, IN, UCSD-8-PU
    February 1976
    81 p.

  • Broadwell, J. E.; Tyson, T. J.; Kau, C. J.
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    Model of Turbulent Diffusion Flames and Nitric Oxide Generation.
    TRW Space and Technology Group, Redondo Beach, CA; Environmental Protection Agency, Irvine, CA
    EPA-600/7-90-003
    Environmental Protection Agency, Research Triangle Park, NC, EPA-600/7-90-003
    January 1990
    53 p.

  • Parker, S. F.; Sirignano, W. A.
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    Comparisons Among Various Theories for Turbulent, Reacting, and Planar Mixing Layers.
    Princeton Univ., NJ; Carnegie-Mellon Univ., Pittsburgh, PA
    Combustion in Reactive Systems. Volume 76 of Progress in Astronautics and Aeronautics, Bowen, J. R., Manson, N., Oppenheim, A. K. and Soloukhin, R. I., Editors, 211-245 p., 1981

  • Zhou, L.; Fernandez-Pello, A. C.
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    Concurrent Turbulent Flame Spread.
    California Univ., Berkeley
    NISTIR 4449
    National Bureau of Standards, Gaithersburg, MD; National Science Foundation, Washington, DC, NISTIR 4449
    U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 11th Joint Panel Meeting. October 19-24, 1989, Berkeley, CA, Jason, N. H.; Cramer, D. M., Editors, 122-129 p., 1990

  • Queiroz, M.; Yao, S. C.
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    Experimental Exploration of the Thermal Structure of an Array of Burning Droplet Streams.
    Brigham Young Univ., Provo, UT; Carnegie-Mellon Univ., Pittsburgh, PA
    Combustion and Flame, Vol. 82, No. 3&4, 346-360, December 1990