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Original Articles

The Flow Field of a Curved Flame Propagating Freely Upwards

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Pages 337-346 | Received 08 Jul 1987, Accepted 14 Oct 1987, Published online: 16 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Zhengbiao Peng, Jafar Zanganeh, Rahul Ingle, Pravin Nakod, David F. Fletcher & Behdad Moghtaderi. (2021) CFD Investigation of Flame and Pressure Wave Propagation through Variable Concentration Methane-Air Mixtures in a Tube Closed at One End. Combustion Science and Technology 193:7, pages 1203-1230.
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Zhengbiao Peng, Jafar Zanganeh, Rahul Ingle, Pravin Nakod, David F. Fletcher & Behdad Moghtaderi. (2020) Effect of Tube Size on Flame and Pressure Wave Propagation in a Tube Closed at One End: A Numerical Study. Combustion Science and Technology 192:9, pages 1731-1753.
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Michael A Liberman, Mikhail F Ivanov, Oleg E Peil, Damir M Valiev & Lars-Erik Eriksson. (2003) Numerical studies of curved stationary flames in wide tubes. Combustion Theory and Modelling 7:4, pages 653-676.
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SERGEY SENCHENKO, VITALIY BYCHKOV & MICHAEL LIBERMAN. (2001) Stability Limits of Curved Stationary Flames in Cylindrical Tubes. Combustion Science and Technology 166:1, pages 109-130.
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V. V. BYCHKOVS, M. GOLBERG, M. A. LIBERMAN, A.I. KLEEV & LE. ERIKSSON. (1997) Numerical Simulation of Curved Flames in Cylindrical Tubes. Combustion Science and Technology 129:1-6, pages 217-242.
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Y. M. SHTEMLER & G. I. SIVASHINSKY. (1994) On Upward Propagating Flames. Combustion Science and Technology 102:1-6, pages 81-93.
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JAMESF. DRISCOLL, D. J. SUTKUS, WM. L. ROBERTS, M. E. POST & L. R GOSS. (1994) The Strain Exerted by a Vortex on a Flame—Determined from Velocity Field Images. Combustion Science and Technology 96:4-6, pages 213-229.
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Articles from other publishers (16)

Mariam Battikh, Elias Al Sarraf, Basile Radisson, Christophe Almarcha & Bruno Denet. (2023) Nonlinear dynamics of upward propagating flames. Physical Review E 107:6.
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Zhengbiao Peng, Jafar Zanganeh & Behdad Moghtaderi. (2021) CFD Modeling of Flame Jump across Air Gap between Evasé and Capture Duct for Ventilation Air Methane Abatement. Processes 9:12, pages 2278.
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Michael A. LibermanMichael A. Liberman. 2021. Combustion Physics. Combustion Physics 279 291 .
B. Radisson, B. Denet & C. Almarcha. (2020) Nonlinear dynamics of premixed flames: from deterministic stages to stochastic influence. Journal of Fluid Mechanics 903.
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Zhengbiao Peng, Jafar Zanganeh, Elham Doroodchi & Behdad Moghtaderi. (2019) Flame Propagation and Reflections of Pressure Waves through Fixed Beds of RTO Devices: A CFD Study. Industrial & Engineering Chemistry Research 58:51, pages 23389-23404.
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Christophe Almarcha, Bruno Denet & Joel Quinard. (2015) Premixed flames propagating freely in tubes. Combustion and Flame 162:4, pages 1225-1233.
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Alain Pocheau, Simona Bodea & Marc Georgelin. (2009) Self-organized dendritic sidebranching in directional solidification: Sidebranch coherence within uncorrelated bursts. Physical Review E 80:3.
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S. Kamin, H. Berestycki, L. Kagan & G. Sivashinsky. 2005. Elliptic and Parabolic Problems. Elliptic and Parabolic Problems 319 328 .
A Petchenko & V Bychkov. (2004) Axisymmetric versus non-axisymmetric flames in cylindrical tubes. Combustion and Flame 136:4, pages 429-439.
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Vitaliy Bychkov & Andrey Kleev. (1999) The nonlinear equation for curved flames applied to the problem of flames in cylindrical tubes. Physics of Fluids 11:7, pages 1890-1895.
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V. V. Bychkov, A. I. Kleev, M. A. Liberman & S. M. Golberg. (1997) Three-dimensional curved flames: Stationary flames in cylindrical tubes. Physical Review E 56:1, pages R36-R39.
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V. V. Bychkov, S. M. Golberg, M. A. Liberman & L. E. Eriksson. (1996) Propagation of curved stationary flames in tubes. Physical Review E 54:4, pages 3713-3724.
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Jery Chomiak & Gang hou. (1996) A numerical study of large amplitude baroclinic instabilities of flames. Symposium (International) on Combustion 26:1, pages 883-889.
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A.B. Mikishev & G.I. Sivashinsky. (1993) Quasi-equilibrium in upward propagating flames. Physics Letters A 175:6, pages 409-414.
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. (1993) The strain exerted by a vortex on a flame - Determined from velocityfield images. The strain exerted by a vortex on a flame - Determined from velocityfield images.
Alain Karma & Pierre Pelcé. (1990) Effective interface formalism: Application to global instability in viscous fingering. Physical Review A 41:8, pages 4507-4509.
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