FireDOC Search

displaying 361 - 370 results in total 419

  • Stoliarov, S. I.; Nyden, M. R.; Lyon, R. E.
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    Reactive Molecular Dynamics Model of Thermal Decomposition in Polymers.
    Galaxy Scientific Corp., Egg Harbor Township, NJ; National Institute of Standards and Technology, Gaithersburg, MD; Federal Aviation Administration, Atlantic City International Airport, NJ
    International SAMPE Symposium and Exhibition, 48th. Proceedings. Advancing Materials in the Global Economy - Applications, Emerging Markets and Evolving Technologies. May 11-15, 2003, Long Beach, CA, Cohen, L. J.; Ong, C. L.; Arendt, C., Editors, 1452-1458 p., 2003

  • Domanski, P. A.; Yashar, D. A.
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    Application of an Evolution Program for Refirgerant Circuitry Optimization.
    National Institute of Standards and Technology, Gaithersburg, MD
    Challenges to Sustainability. ACRECONF 2007. Proceedings. December 7-8, 2007, New Delhi, India, 1-16 p., 2007

  • Lin, P.; Lo, S. M.; Yuen, K. K.; Huang, H. C.; Liang, J.
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    Granular Dynamic Method for Modeling the Egress Pattern at an Exit.
    City University of Hong Kong Tat Chee Avenue, Kowloon, Hong Kong
    Fire Safety Journal, Vol. 42, No. 5, 377-383, July 2007

  • Kim, G.; Kang, S.; Kim, Y.; Bilger, R. W.; Cleary, M. J.
    view article (1.0)

    Conditional Moment Closure and Transient Flamelet Modeling for Detailed Structure and NOx Formation Characteristics of Turbulent Nonpremixed Jet and Recirculating Flames.
    Hanyang Univ., Seoul, Korea; Sydney Univ., NSW Australia
    Combustion Theory and Modelling, Vol. 11, 527-552, August 2007

  • Massa, L.; Jackson, T. L.; Buckmaster, J.
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    Optimization of Global Kinetics Parameters for Heterogeneous Propellant Combustion Using a Genetic Algorithm.
    University of Illinois, Urbana-Champaign; Buckmaster Research, Urbana, IL
    Combustion Theory and Modelling, Vol. 11, 553-568, August 2007

  • Belcadi, A.; Assou, M.; Affad, E.; Chatri, E.
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    Construction of a Reduced Mechanism for Modeling Premixed Combustion of Methane-Air.
    University Moulay Ismail, Meknes, Morocco; University Hassan II, Morocco
    Combustion Theory and Modelling, Vol. 11, No. 4, 603-613, August 2007

  • Wade, C.; Spearpoint, M.; Tsai, K.; Bittern, A.
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    Assessing the Sprinkler Activation Predictive Capability of the BRANZFIRE Fire Model.
    BRANZ, Private Bag 50908, Porirua, New Zealand; University of Canterbury, Christchurch, New Zealand; WSP Group plc, Glasgow, Scotland
    Fire Technology, Vol. 43, No. 3, 175-193, September 2007

  • Odedra, A.; Malalasekera, W.
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    Eulerian Particle Flamelet Modeling of a Bluff-Body CH4/H3 Flame.
    Loughborough Univ., UK
    Combustion and Flame, Vol. 151, No. 3, 512-531, November 2007

  • Kee, R. J.; Colclasure, A. M.; Zhu, H.; Zhang, Y.
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    Modeling Tangential Injection Into Ideal Tubular Flames.
    Colorado School of Mines, Golden, CO; Tokyo Denki Univ., Tokyo, Japan
    Combustion and Flame, Vol. 152, No. 1/2, 114-124, January 2008

  • Podrzaj. P.; Hashimoto, H.
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    Intelligent Space as a Framework for Fire Detection and Evacuation.
    Ljubljana Univ., 1000 Ljubljana, Slovenia; Tokyo Univ., 4-6-1 Komaba, Meguro-ku, Tokyo, Japan
    Fire Technology, Vol. 44, No. 1/1st Quarter, 65-76, March 2008