FireDOC Search

displaying 371 - 380 results in total 690

  • Rowe, J. L.
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    Impact of Thermal Imaging Camera Display Quality on Fire Fighter Task Performance.
    Maryland Univ., College Park
    National Institute of Standards and Technology, Gaithersburg, MD, NIST GCR 09-926, June 2009, 153 p.

  • El-Fitiany, S. F.; Youssef, M. A.
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    Assessing the Flexural and Axial Behavior of Reinforced Concrete Members at Elevated Temperatures Using Sectional Analysis.
    University of Western Ontario, London, ON, Canada N6A 5B9
    Fire Safety Journal, Vol. 44, No. 5, 691-703, July 2009

  • Pfadler, S.; Dinkelacker, F.; Beyrau, F.; Leipertz, A.
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    High Resolution Dual-Plane Stero-PIV for Validation of Subgrid Scale Models in Large-Eddy Simulations of Turbulent Premixed Flames.
    Lehrstuhl für Technische Thermodynamik (LTT), D-91058 Erlangen, Germany; Erlangen Graduate School in Advanced Optical Technologies (SAOT), D-91052 Erlangen, Germany; Leibniz Universität Hannover, Welfengarten 1a, D-30167 Hannover, Germany
    Combustion and Flame, Vol. 156, No. 8, 1552-1564, August 2009

  • Blanquart, G.; Pitsch, H.
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    Analyzing the Effects of Temperature on Soot Formation With a Joint Volume-Surface-Hydrogen Model.
    Stanford Univ., CA
    Combustion and Flame, Vol. 156, No. 8, 1614-1626, August 2009

  • Jiang, Z.; Han, G.; Wang, C.; Zhang, F.
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    Self-Organized Generation of Transverse Waves in Diverging Cylindrical Detonations.
    Chinese Academy of Sciences, Beijing 100190, China; Defence Research and Development Canada-Suffield, Medicine Hat, Canada AB T1A8K6
    Combustion and Flame, Vol. 156, No. 8, 1653-1661, August 2009

  • Moureau, V.; Fiorina, B.; Pitsch, H.
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    Level Set Formulation for Premixed Combustion LES Considering the Turbulent Flame Structure.
    Stanford Univ., CA; Laboratoire EM2C, CNRS UPR 288, Ecole Centrale Paris, F92295, Châtenay-Malabry, France
    Combustion and Flame, Vol. 156, No. 4, 801-812, April 2009

  • Liu, F.; Wu, B.; Wei, D.
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    Failure Modes of Reinforced Concrete Beams Strengthened With Carbon Fiber Sheet in Fire.
    South China University of Technology, Guangzhou 510640, China
    Fire Safety Journal, Vol. 44, No. 7, 941-950, October 2009

  • Lopes, N.; Real, P. V.; Simoes da Silva, L.; Franssen, J. M.
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    Numerical Modeling of Thin-Walled Stainless Steel Structural Elements in Case of Fire.
    University of Aveiro, 3810-193 Aveiro, Portugal; University of Coimbra, 3030 Coimbra, Portugal; University of Liege, Liege, Belgium
    Fire Technology, Vol. 46, No. 1, 91-108, January 2010

  • Delichatsios, M. A.; Lee, Y. P.; Tofilo, P.
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    New Correlation for Gas Temperature Inside a Burning Enclosure.
    University of Ulster, Northern Ireland; Nanya Institute of Technology, Chung-Shang E. RD., Chungli, Taoyuan, Taiwan; SAFE Consulting Ltd., London, England
    Fire Safety Journal, Vol. 44, No. 8, 1003-1009, November 2009

  • Strelkova, M. I.; Safonov, A. A.; Sukhanov, L. P.; Umanski, S. Ya.; Kirillov, I. A.; Potapkin, B. V.; Pasman, H. J.; Tentner, A. M.
    view article (5.781486)

    Low Temperature n-Butane Oxidation Skeletal Mechanism, Based on Mutilevel Approach.
    RRC Kurchatov Institute, Kurchatov Sq.1, 123182 Moscow, Russia; Kintech Lab., Kurchatov Sq.1, 123182 Moscow, Russia; Photochemistry Center, Novatorov Str. 7a, 119421 Moscow, Russia; N.N.Semenov Institute of Chemical Physics, Kosygin Str. 4, 119991 Moscow, Russia; Delft University of Technology, Postbus 5, 2600 AA Delft, Netherlands; Argonne National Laboratories, 9700 S. Cass Avenue, Argonne, IL
    Combustion and Flame, Vol. 157, No. 4, 641-652, April 2010