Lipatnikov, A. N.
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Can We Characterize Turbulence in Premixed Flames?
Chalmers University of Technology, Gothenburg, 412 96, Sweden
Combustion and Flame,
Vol. 156,
No. 6,
1242-1247,
June 2009
Li, J.; Chou, S. K.; Li, Z. W.; Yang, W. M.
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Characterization of Wall Temperature and Radiation Power Through Cylindrical Dump Micro-Combustors.
National University of Singapore, Singapore 117576; National University of Singapore, Singapore 117603
Combustion and Flame,
Vol. 156,
No. 8,
1587-1593,
August 2009
Chakraborty, N.; Cant, R. S.
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Effects of Lewis Number on Turbulent Scalar Transport and Its Modeling in Turbulent Premixed Flames.
Liverpool Univ., L69 3GH, England; Cambridge University Engineering Department, UK
Combustion and Flame,
Vol. 156,
No. 7,
1427-1444,
July 2009
Kang, T.; Kyritsis, D. C.
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Theoretical Investigation of Flame Propagation Through Compositionally Stratified Methane-Air Mixtures.
University of Illinois, Urbana-Champaign
Combustion Theory and Modelling,
Vol. 13,
No. 4,
705-719,
August 2009
Gubba, S. R.; Ibrahim, S. S.; Malalasekera, W.; Masri, A. R.
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Assessment of Large Eddy Simulations of Premixed Flames Propagating Past Repeated Obstacles.
Loughborough Univ., UK; Syndey Univ., NSW Australia
Combustion Theory and Modelling,
Vol. 13,
No. 3,
513-540,
June 2009
Starik, A. M.; Kozlov, V. E.; Titova, N. S.
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On the Influence of Singlet Oxygen Molecules on the Speed of Flame Propagation in Methane-Air Mixture.
P. I. Baranov Central Institute of Aviation Motors, Moscow, Russia
Combustion and Flame,
Vol. 157,
No. 2,
313-327,
February 2010
Aleiferis, P. G.; Serras-Pereira, J.; vanRomunde, Z.; Caine, J.; Wirth, M.
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Mechanisms of Spray Formation and Combustion From a Multi-Hole Injector With E85 and Gasoline.
Department of Mechanical Engineering, University College London, UK; Ford Motor Company, Dunton Engineering Centre, UK; Ford Werke GmbH, Merkenich, Cologne, Germany
Combustion and Flame,
Vol. 157,
No. 4,
735-756,
April 2010
Oldenhof, E.; Tummers, M. J.; vanVeen, E. H.; Roekaerts, D. J. E. M.
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Ignition Kernel Formation and Lift-Off Behavior of Jet-In-Hot-Coflow Flames.
Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands
Combustion and Flame,
Vol. 157,
No. 6,
1167-1178,
June 2010