displaying 671 - 680 results in total 764
Seshadri, K.; Humer, S.; Seiser, R.
view article (1.0)Activation-Energy Asymptotic Theory of Autoignition of Condensed Hydrocarbon Fuels in Non-Premixed Flows With Comparison to Experiment.University of California, San Diego, La JollaCombustion Theory and Modelling, Vol. 12, No. 5, 831-855, October 2008Tewarson, A.; Su, P.; Yee, G. G.
view article (1.0)Smoke Corrosivity of Combustion Products.FM Global, Norwood, MAHazards of Combustion Products: Toxicity, Opacity, Corrosivity and Heat Release. Proceedings. November 10-11, 2008, Interscience Communications, London, England, London, England, Babruaskas, V.; Gann, R. G.; Grayson, S., Editors, 225-254 p., 2008Liu, S.; Soteriou, M. C.; Colket, M. B.; Senecal, J. A.
view article (1.0)Determination of Cup-Burner Extinguishing Concentration Using the Perfectly Stirred Reactor Model.United Technologies Research Center, East Hartford, CT; United Technologies Fire and Security, Ashland, MAFire Safety Journal, Vol. 43, No. 8, 589-597, November 2008Machrafi, H.; Cavadias, S.
view article (1.0)Three-Stage Autoignition of Gasoline in an HCCI Engine: An Experimental and Chemical Kinetic Modeling Investigation.UPMC Université Paris 06, LGPPTS, Ecole Nationale Supérieure de Chimie de Paris, France; UPMC Université Paris 06, Institut Jean Le Rond D'Alembert, FranceCombustion and Flame, Vol. 155, No. 4, 557-570, December 2008Toporov, D.; Bocian, P.; Heil, P.; Kellermann, A.; Stadler, H.; Tschunko, S.; Forster, M.; Kneer, R.
view article (1.0)Detailed Investigtion of a Pulverized Fuel Swirl Flame in CO2/O2 Atmosphere.RWTH Aachen University, Eilfschornsteinstraße 18, D-52056 Aachen, GermanyCombustion and Flame, Vol. 155, No. 4, 605-618, December 2008Al-Qurashi, K.; Boehman, A. L.
view article (1.0)Impact of Exhaust Gas Recirculation (EGR) on the Oxidative Reactivity of Diesel Engine Soot.Pennsylvania State Univ., University ParkCombustion and Flame, Vol. 155, No. 4, 675-695, December 2008Andrae, J. C. G.; Brinck, T.; Kalghatgi, G. T.
view article (1.0)HCCI Experiments With Toluene Reference Fuels Modeled by a Semidetailed Chemical Kinetic Model.Royal Institute of Technology (KTH), SE-100 44 Stockholm, Sweden; Shell Global Solutions (UK), P.O. Box 1, Chester CH1 3SH, UKCombustion and Flame, Vol. 155, No. 4, 696-712, December 2008Ra, Y.; Reitz, R. D.
view article (1.0)Reduced Chemical Kinetic Model for IC Engine Combustion Simulations With Primary Reference Fuels.Wisconsin-Madison Univ., Madison,Combustion and Flame, Vol. 155, No. 4, 713-738, December 2008Mehl, M.; Vanhove, G.; Pitz, W. J.; Ranzi, E.
view article (1.0)Oxidation and Combustion of the n-Hexene Isomers: A Wide Range Kinetic Modeling Study.Lawrence Livermore National Laboratory, Livermore, CA; Physico-Chimie des Processus de Combustion et de l'Atmosphère (PC2A), UST Lille 1, Villeneuve d'Ascq Cedex, France; Politecnico di Milano, Milano, ItalyCombustion and Flame, Vol. 155, No. 4, 756-772, December 2008Kim, A.; Crampton, G.
view article (1.0)Fire Protection of Power Transformers With Compressed-Air-Foam (CAF) System.National Research Council of Canada, Ottawa, OntarioNRCC-49485NRCC-49485Asia-Oceania Symposium on Fire Science and Technology (AOSFST) Symposium, 7th. Proceedings. September 19-22, 2007, Hong Kong, 1-8 p., 2007