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Original Articles

The Eddy Structure Model of Turbulent Flamelet Propagation, the Expanding Spherical and Steady Planar Cases

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Pages 51-74 | Received 20 Jul 1993, Accepted 17 Jan 1994, Published online: 06 Apr 2007

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Read on this site (4)

I. Ahmed & N. Swaminathan. (2013) Simulation of Spherically Expanding Turbulent Premixed Flames. Combustion Science and Technology 185:10, pages 1509-1540.
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A. N. LIPATNIKOV & J. CHOMIAK. (2000) Transient and Geometrical Effects in Expanding Turbulent Flames. Combustion Science and Technology 154:1, pages 75-117.
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Wm. T. ASHURST & I. G. SHEPHERD. (1997) Flame Front Curvature Distributions in a Turbulent Premixed Flame Zone. Combustion Science and Technology 124:1-6, pages 115-144.
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WM. T. ASHURST. (1995) A Simple Illustration of Turbulent Flame Ball Growth. Combustion Science and Technology 104:1-3, pages 19-32.
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Articles from other publishers (14)

David S-K. Ting. 2016. Basics of Engineering Turbulence. Basics of Engineering Turbulence 203 226 .
Andrei Lipatnikov. 2012. Fundamentals of Premixed Turbulent Combustion. Fundamentals of Premixed Turbulent Combustion 324 445 .
. 2006. Explosion-Resistant Buildings. Explosion-Resistant Buildings 475 528 .
T. Brutscher, N. Zarzalis & H. Bockhorn. (2002) An experimentally based approach for the space-averaged laminar burning velocity used for modeling premixed turbulent combustion. Proceedings of the Combustion Institute 29:2, pages 1825-1832.
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A.N. Lipatnikov & J. Chomiak. (2002) Turbulent flame speed and thickness: phenomenology, evaluation, and application in multi-dimensional simulations. Progress in Energy and Combustion Science 28:1, pages 1-74.
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D. S.-K. Ting & M. D. Checkel. (2001) The Effect of Mean Turbulent Strain Rate on the Flame Speed of Premixed, Growing Flames. Journal of Engineering for Gas Turbines and Power 123:1, pages 175-181.
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A. Lipatnikov & J. Chomiak. 1999. Engineering Turbulence Modelling and Experiments 4. Engineering Turbulence Modelling and Experiments 4 841 850 .
Mark Ulitsky & Lance R. Collins. (1997) Relative importance of coherent structures vs background turbulence in the propagation of a premixed flame. Combustion and Flame 111:4, pages 257-275.
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Andrei N. Lipatnikov & Jerzy Chomiak. A Simple Model of Unsteady Turbulent Flame Propagation. A Simple Model of Unsteady Turbulent Flame Propagation.
Alexander G. Merzhanov, William A. Sirignano & Luigi De Luca. 1997. Advances in Combustion Science: In Honor of Ya. B. Zel'dovich. Advances in Combustion Science: In Honor of Ya. B. Zel'dovich 61 72 .
D S-K Ting & M. D. Checkel. (2005) Technical Note: The importance of turbulence intensity, eddy size and flame size in spark ignited, premixed flame growth. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 211:1, pages 83-86.
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Vladimir Karpov, Andrei Lipatnikov & Vladimir imont. (1996) A test of an engineering model of premixed turbulent combustion. Symposium (International) on Combustion 26:1, pages 249-257.
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D. S-K. Ting, M. D. Checkel, R. Haley & P. R. Smy. Early Flame Acceleration Measurements in a Turbulent Spark-Ignited Mixture. Early Flame Acceleration Measurements in a Turbulent Spark-Ignited Mixture.
Wm.T. Ashurst. (1994) Modeling turbulent flame propagation. Symposium (International) on Combustion 25:1, pages 1075-1089.
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