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NASA Lewis Research Center, Cleveland, OH
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Tokyo Univ., Japan
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Hichens, R. K.; Dlugogorski, B. Z.; Kennedy, E. M.
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Advantages and Drawbacks of Tubular Flow Burner for Testing Flammability Limits.
University of Newcastle, Callaghan, Australia
Halon Options Technical Working Conference. Proceedings. HOTWC 1999. April 27-29, 1999,
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Chen, Q.; Srebric, J.
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Application of CFD Tools for Indoor and Outdoor Environment Design.
Massachusetts Institute of Technology, Cambridge
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Fires in Tunnels: Three-Dimensional Numerical Simulation and Comparison With the Experiment.
All Russian Scientific Research Institute for Fire Protection, Moscow Region
Asia-Oceania Symposium on Fire Science and Technology, 4th Proceedings. Co-Organized by Asia-Oceania Association for Fire Science and Technology (AOAFST) and Japan Association for Fire Science and Engineering (JAFSE). May 24-26, 2000,
Tokyo, Japan,
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Gupta, A. K.
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Modelling the Response of Sprinklers in Compartment Fires.
Central Building Research Institute, Roorkee, India
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Sugawa, O.
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Simple Estimation Model on Ceiling Temperature and Velocity of Fire Induced Flow Under Ceiling.
Science University of Tokyo, Japan
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2001
Wang, J. H.; Chao, C. Y. H.; Kong, W.
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Forced Forward Smoldering Propagation in Horizontally Oriented Flexible Polyurethane Foam.
Hong Kong University of Science and Technology, Kowloon
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Chew, M. Y. L.; Wong, N. H.; Ho, J. C. L.
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Smoke Control in Confined Space.
National University of Singapore
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Response of Burner-Stabilized Flat flames to Acoustic Perturbations.
Eindhoven University of Technology, The Netherlands; TNO/TPD, The Netherlands
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