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Original Articles

n the Prediction of Thermal Diffusion Effects in Laminar ne-Dimensional Flames

Pages 83-88 | Received 11 Jan 1980, Accepted 28 Apr 1980, Published online: 27 Apr 2007

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Read on this site (6)

Huiqiang Zhang, Fan Yang & Xilin Wang. (2012) The Effects of Soret Diffusion on Extinction Limit in Premixed and Diffusion Counterflow n-Butane/Air Flames. Combustion Science and Technology 184:4, pages 517-532.
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Hongsheng Guo & GregoryJ. Smallwood. (2010) The effect of preferential diffusion on soot formation in a laminar ethylene/air diffusion flame. Combustion Theory and Modelling 15:1, pages 125-140.
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Hongsheng Guo, Fengshan Liu, Gregory J. Smallwood & Ömer L. Gülder. (2004) A Numerical Investigation of Thermal Diffusion Influence on Soot Formation in Ethylene/Air Diffusion Flames. International Journal of Computational Fluid Dynamics 18:2, pages 139-151.
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ALEXANDRE ERN & VINCENT GIOVANGIGLI. (1999) Impact of Detailed Multicomponent Transport on Planar and Counterflow Hydrogen/Air and Methane/Air Flames. Combustion Science and Technology 149:1-6, pages 157-181.
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Alexandre Ern§Vincent Giovangigli∥. (1998) Thermal diffusion effects in hydrogen-air and methane-air flames. Combustion Theory and Modelling 2:4, pages 349-372.
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PEDRO GARCÍA-YBARRA, COLETTE NICOLI & PAUL CLAVIN. (1984) Soret and Dilution Effects on Premixed Flames. Combustion Science and Technology 42:1-2, pages 87-109.
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Articles from other publishers (11)

Luigi Acampora & Francesco Saverio Marra. (2023) Effects of Soret diffusion on the exergy losses in hydrogen laminar premixed flames. International Journal of Hydrogen Energy 48:73, pages 28539-28548.
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Vincent Giovangigli. (2015) Multicomponent transport in laminar flames. Proceedings of the Combustion Institute 35:1, pages 625-637.
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Antonio L. Sánchez & Forman A. Williams. (2014) Recent advances in understanding of flammability characteristics of hydrogen. Progress in Energy and Combustion Science 41, pages 1-55.
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E. P. Zemskov, K. Kassner, M. J. B. Hauser & W. Horsthemke. (2013) Turing space in reaction-diffusion systems with density-dependent cross diffusion. Physical Review E 87:3.
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Olivier Laget, Stéphane Richard, David Serrano & Dominique Soleri. (2012) Combining experimental and numerical investigations to explore the potential of downsized engines operating with methane/hydrogen blends. International Journal of Hydrogen Energy 37:15, pages 11514-11530.
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Sabre Bougrine, Stéphane Richard, André Nicolle & Denis Veynante. (2011) Numerical study of laminar flame properties of diluted methane-hydrogen-air flames at high pressure and temperature using detailed chemistry. International Journal of Hydrogen Energy 36:18, pages 12035-12047.
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Joseph F. Grcar, John B. Bell & Marcus S. Day. (2009) The Soret effect in naturally propagating, premixed, lean, hydrogen–air flames. Proceedings of the Combustion Institute 32:1, pages 1173-1180.
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S.B. Dworkin, M.D. Smooke & V. Giovangigli. (2009) The impact of detailed multicomponent transport and thermal diffusion effects on soot formation in ethylene/air flames. Proceedings of the Combustion Institute 32:1, pages 1165-1172.
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Tianfeng Lu & Chung K. Law. (2007) Diffusion coefficient reduction through species bundling. Combustion and Flame 148:3, pages 117-126.
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Sridhar Palle, Christopher Nolan & Richard S. Miller. (2005) On molecular transport effects in real gas laminar diffusion flames at large pressure. Physics of Fluids 17:10.
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K. Harstad & J. Bellan. (1999) The Lewis number under supercritical conditions. International Journal of Heat and Mass Transfer 42:6, pages 961-970.
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