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Original Articles

On Effects Due To Thermal Expansion and Lewis Number in Spherical Flame Propagation

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Pages 131-138 | Published online: 29 Mar 2007

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Read on this site (21)

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Travis Sikes, M. Sam Mannan & Eric L. Petersen. (2018) An experimental study: laminar flame speed sensitivity from spherical flames in stoichiometric CH4–air mixtures. Combustion Science and Technology 190:9, pages 1594-1613.
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Xiao Cai, Jinhua Wang, Haoran Zhao, Yongliang Xie & Zuohua Huang. (2018) Effects of Initiation Radius Selection and Lewis Number on Extraction of Laminar Burning Velocities from Spherically Expanding Flames. Combustion Science and Technology 190:2, pages 286-311.
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Xiaotian Li, Erjiang Hu, Xin Meng, Cheng Peng, Xin Lu & Zuohua Huang. (2017) Effect of Lewis Number on Nonlinear Extrapolation Methods from Expanding Spherical Flames. Combustion Science and Technology 189:9, pages 1510-1526.
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Huangwei Zhang, Peng Guo & Zheng Chen. (2013) Outwardly Propagating Spherical Flames with Thermally Sensitive Intermediate Kinetics and Radiative Loss. Combustion Science and Technology 185:2, pages 226-248.
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Zheng Chen, Xiaolong Gou & Yiguang Ju. (2010) Studies on the Outwardly and Inwardly Propagating Spherical Flames with Radiative Loss. Combustion Science and Technology 182:2, pages 124-142.
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A.N. LIPATNIKOV*J. CHOMIAK. (2004) APPLICATION OF THE MARKSTEIN NUMBER CONCEPT TO CURVED TURBULENT FLAMES. Combustion Science and Technology 176:3, pages 331-358.
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ANDREIN. LIPATNIKOV. (1996) Some Issues of Using Markstein Number for Modeling Premixed Turbulent Combustion. Combustion Science and Technology 119:1-6, pages 131-154.
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B. LEISENHEIMER & W. LEUCKEL. (1996) Self-Generated Acceleration of Confined Deflagrative Flame Fronts∗ . Combustion Science and Technology 118:1-3, pages 147-164.
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B. DENET & P. HALDENWANG. (1995) A Numerical Study of Premixed Flames Darrieus-Landau Instability. Combustion Science and Technology 104:1-3, pages 143-167.
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S. DENET & J.-L. BONINO. (1994) Laminar Premixed Flame Dynamics: A Comparison of Model and Complete Equations. Combustion Science and Technology 99:4-6, pages 235-252.
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P.L. García-Ybarra, A. López-Martín, J.C. Antoranz & J.L. Castillo. (1994) Unsteady potential flows computation by cellular automata: The premixed flame instability. Transport Theory and Statistical Physics 23:1-3, pages 173-193.
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BRUNO DENET. (1993) On Non-Linear Instabilities of Cellular Premixed Flames. Combustion Science and Technology 92:1-3, pages 123-144.
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G. CARRIER, F. FENDELL, K. CHEN & S. COOK. (1991) Evaluating a Simple Model for Laminar-Flame-Propagation Rates. II. Spherical Geometry. Combustion Science and Technology 79:4-6, pages 229-245.
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G. CARRIER, F. FENDELL, K. CHEN & M. VAZIRANI. (1991) Evaluating a Simple Model for Laminar-Flame-Propagation Rates. I. Planar Geometry. Combustion Science and Technology 79:4-6, pages 207-227.
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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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M. L. FRANKEL & G. I. SIVASHINSKY. (1984) On Quenching of Curved Flames. Combustion Science and Technology 40:5-6, pages 257-268.
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