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Original Articles

On Hydrodynamic Instability of Stretched Flames

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Pages 207-225 | Received 10 Apr 1996, Published online: 22 Sep 2010

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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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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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Articles from other publishers (7)

Andrei N. Lipatnikov, HsuChew Lee, Peng Dai, Minping Wan & Vladimir A. Sabelnikov. (2024) Transition from turbulence-dominated to instability-dominated combustion regime in lean hydrogen-air flames. Combustion and Flame 259, pages 113170.
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Hsu Chew Lee, B. Wu, Peng Dai, Minping Wan & Andrei N. Lipatnikov. (2023) Turbulent burning velocity and thermodiffusive instability of premixed flames. Physical Review E 108:3.
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Jerzy Chomiak & Andrei N. Lipatnikov. (2023) Simple criterion of importance of laminar flame instabilities in premixed turbulent combustion of mixtures characterized by low Lewis numbers. Physical Review E 107:1.
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Yuji Nomi, Hiroshi Gotoda, Shingo Fukuda & Christophe Almarcha. (2021) Complex network analysis of spatiotemporal dynamics of premixed flame in a Hele–Shaw cell: A transition from chaos to stochastic state. Chaos: An Interdisciplinary Journal of Nonlinear Science 31:12.
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O. Kupervasser & Z. Olami. (2013) Random noise and pole-dynamics in unstable front propagation. Combustion, Explosion, and Shock Waves 49:2, pages 141-152.
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A.N. Lipatnikov & J. Chomiak. (2005) Molecular transport effects on turbulent flame propagation and structure. Progress in Energy and Combustion Science 31:1, pages 1-73.
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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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