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Fire Risk Management,
22-26,
February 2010
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Implementing Arc Hazard Protection. Part 1.
Dupont, Wilmington, DE
Pure Power,
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Spring 2010
Shimizu, T.; Abid, A. D.; Poskrebyshev, G.; Wang, H.; Nabity, J.; Engel, J.; Yu, J.; Wickham, D.; VanDevener, B.; Anderson, S. L.; Williams, S.
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Methane Ignition Catalyzed by In Situ Generated Palladium Nanoparticles.
Southern California, Los Angeles; TDA Research, Inc., 12345 W. 52nd Ave, Wheat Ridge, CO; Reaction Systems, LLC, 19039 E. Plaza Drive, Suite 290, Parker, CO; Utah Univ., Salt Lake City; Air Force Research Laboratory, WPAFB, OH
Combustion and Flame,
Vol. 157,
No. 3,
421-435,
March 2010
Schloffel, G.; Eichhorn, A.; Albers, H.; Mundt, C.; Seiler, F.; Zhang, F.
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Effect of a Shock Wave on the Ignition Behavior of Aluminum Particles in a ShockTube.
French-German Research Institute of Saint-Louis (ISL), 5 rue du Général Cassagnou, 68300 Saint-Louis, France; Universität der Bundeswehr München (University of German Federal Armed Forces Munich), Werner-Heisenberg-Weg 39, 85577 Neubiberg, Germany; Defence R&D Canada --Suffield, PO Box 4000 Stn. Main, Medicine Hat, AB, Canada T1A 8K6
Combustion and Flame,
Vol. 157,
No. 3,
446-454,
March 2010
Zhang, Y.; Boehman, A. L.
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Experimental Study of the Autoignition of C8H16O2 Ethyl and Methyl Esters in a Motored Engine.
Pennsylvania State Univ., University Park
Combustion and Flame,
Vol. 157,
No. 3,
546-555,
March 2010
Sen, B. A.; Hawkes, E. R.; Menon, S.
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Large Eddy Simulation of Extinction and Reignition With Artificial Neural Networks Based Chemical Kinetics.
Georgia Institute of Technology, Atlanta; New South Wales Univ., NSW 2052, Australia
Combustion and Flame,
Vol. 157,
No. 3,
566-578,
March 2010
Alpert, H. R.; O'Connor, R. J.
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Recent Advances in Cigarette Ignition Propensity Research and Development.
Harvard School of Public Health, Boston, MA; Roswell Park Cancer Institute, Buffalo, NY
Fire Technology,
Vol. 46,
No. 2,
275-289,
April 2010
Shaw, A.; Epling, W.; McKenna, C.; Weckman, B.
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Evaluation of the Ignition of Diesel Fuels on Hot Surfaces.
Waterloo Univ., ON, N2L 3G1, Canada
Fire Technology,
Vol. 46,
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407-423,
April 2010
Strelkova, M. I.; Safonov, A. A.; Sukhanov, L. P.; Umanski, S. Ya.; Kirillov, I. A.; Potapkin, B. V.; Pasman, H. J.; Tentner, A. M.
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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
Liu, W.; Kelley, A. P.; Law, C. K.
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Flame Propagation and Counterflow Nonpremixed Ignition of Mixtures of Methane and Ethylene.
Princeton Univ., NJ
Combustion and Flame,
Vol. 157,
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1027-1036,
May 2010