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Original Articles

Flame Propagation Along a Vortex: the Baroclinic Push

Pages 175-185 | Received 24 Apr 1995, Published online: 19 Apr 2007

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

Read on this site (4)

J.J. Choi, Z. Rusak & A.K. Kapila. (2007) Numerical simulation of premixed chemical reactions with swirl. Combustion Theory and Modelling 11:6, pages 863-887.
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MARTIN KRÖNER, THOMAS SATTELMAYER, JASSIN FRITZ, FRANK KIESEWETTER & CHRISTOPH HIRSCH. (2007) FLAME PROPAGATION IN SWIRLING FLOWS—EFFECT OF LOCAL EXTINCTION ON THE COMBUSTION INDUCED VORTEX BREAKDOWN. Combustion Science and Technology 179:7, pages 1385-1416.
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A. Petchenko, V. Bychkov, L.E. Eriksson & A. Oparin. (2006) Flame propagation along the vortex axis. Combustion Theory and Modelling 10:4, pages 581-601.
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Tatsuya Hasegawa, Ryosuke Nakamichi & Shinnosuke Nishiki. (2002) Mechanism of flame evolution along a fine vortex. Combustion Theory and Modelling 6:3, pages 413-424.
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Articles from other publishers (42)

Amir A. Beige & Amir Mardani. (2023) An investigation on flame structure and NOx formation in a gas turbine model combustor using large eddy simulation. Physics of Fluids 35:7.
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Xiao Zhang, Joseph D. Chung & Elaine S. Oran. (2022) Triple flames in swirling flows. Combustion and Flame 245, pages 112364.
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Tim C. Lieuwen. 2021. Unsteady Combustor Physics. Unsteady Combustor Physics 261 295 .
Dominik Ebi, Rakesh Ranjan & Noel T. Clemens. (2018) Coupling between premixed flame propagation and swirl flow during boundary layer flashback. Experiments in Fluids 59:7.
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Matthias Utschick, Daniel Eiringhaus, Christian Köhler & Thomas Sattelmayer. (2017) Predicting Flashback Limits of a Gas Turbine Model Combustor Based on Velocity and Fuel Concentration for H2–Air Mixtures. Journal of Engineering for Gas Turbines and Power 139:4.
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Corentin J. Lapeyre, Marek Mazur, Philippe Scouflaire, Franck Richecoeur, Sébastien Ducruix & Thierry Poinsot. (2016) Acoustically Induced Flashback in a Staged Swirl-Stabilized Combustor. Flow, Turbulence and Combustion 98:1, pages 265-282.
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Dominik Ebi & Noel T. Clemens. (2016) Experimental investigation of upstream flame propagation during boundary layer flashback of swirl flames. Combustion and Flame 168, pages 39-52.
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R. Jahanbakhshi, N. S. Vaghefi & C. K. Madnia. (2015) Baroclinic vorticity generation near the turbulent/ non-turbulent interface in a compressible shear layer. Physics of Fluids 27:10.
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. 2015. Flashback Mechanisms in Lean Premixed Gas Turbine Combustion. Flashback Mechanisms in Lean Premixed Gas Turbine Combustion 113 119 .
Alessandro Schönborn, Parisa Sayad & Jens Klingmann. (2014) Influence of precessing vortex core on flame flashback in swirling hydrogen flames. International Journal of Hydrogen Energy 39:35, pages 20233-20241.
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N. Syred, A. Giles, J. Lewis, M. Abdulsada, A. Valera Medina, R. Marsh, P.J. Bowen & A.J. Griffiths. (2014) Effect of inlet and outlet configurations on blow-off and flashback with premixed combustion for methane and a high hydrogen content fuel in a generic swirl burner. Applied Energy 116, pages 288-296.
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Dominik Ebi & Noel T. Clemens. (2013) Experimental investigation of flashback in premixed CH4/H2-air swirl flames. Experimental investigation of flashback in premixed CH4/H2-air swirl flames.
Satoru Ishizuka, Toshiyuki Yamashita & Daisuke Shimokuri. (2013) Further investigation on the enhancement of flame speed in vortex ring combustion. Proceedings of the Combustion Institute 34:1, pages 745-753.
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Tim C. Lieuwen. 2012. Unsteady Combustor Physics. Unsteady Combustor Physics 199 224 .
Benjamin Böhm, Christof Heeger, Robert L. Gordon & Andreas Dreizler. (2010) New Perspectives on Turbulent Combustion: Multi-Parameter High-Speed Planar Laser Diagnostics. Flow, Turbulence and Combustion 86:3-4, pages 313-341.
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Daisuke Shimokuri, Yuuya Honda & Satoru Ishizuka. (2011) Flame propagation in a vortex flow within small-diameter tubes. Proceedings of the Combustion Institute 33:2, pages 3251-3258.
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G. Blesinger, R. Koch & H.-J. Bauer. (2010) Influence of flow field scaling on flashback of swirl flames. Experimental Thermal and Fluid Science 34:3, pages 290-298.
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Hannes Kröger, Egon Hassel, Nikolai Kornev & Detlef Wendig. (2010) LES of Premixed Flame Propagation in a Free Straight Vortex. Flow, Turbulence and Combustion 84:3, pages 513-541.
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Yojiro ISHINO, Yu SAIKI, Masayoshi KATAOKA, Kosaku INABA & Norio OHIWA. (2010) Micro-Gravity Experiment on a Baroclinic Torque Generated by 2D Vortex-Pair Penetration into a Binary-Density Stratified Planar Boundary(Thermal Engineering). Transactions of the Japan Society of Mechanical Engineers Series B TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series B 76:762, pages 319-325.
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Marco Konle & Thomas Sattelmayer. (2009) Interaction of heat release and vortex breakdown during flame flashback driven by combustion induced vortex breakdown. Experiments in Fluids 47:4-5, pages 627-635.
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Yojiro ISHINO, Yu SAIKI, Kosaku INABA, Masayoshi KATAOKA & Norio OHIWA. (2009) Vorticity Generation Mechanism by Baroclinic Torque and Buoyancy Effect in a Boundary Region of Dual-Density Flow Field(Thermal Engineering). Transactions of the Japan Society of Mechanical Engineers Series B TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series B 75:760, pages 2495-2503.
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Hannes Kröger, Nikolai Kornev, Detlef Wendig & Egon Hassel. (2008) Premixed flame propagation in a free straight vortexAusbreitung von vorgemischten Flammen in einem freien, geraden Wirbel. Forschung im Ingenieurwesen 72:2, pages 85-92.
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Gilles EggenspielerPeter Strakey & Todd Sidwell. (2008) Experimental and Numerical Study of Flashback in the SimVal Combustion Chamber. Experimental and Numerical Study of Flashback in the SimVal Combustion Chamber.
Takashi Owaki & Akira Umemura. (2007) Premixed swirl combustion modes emerging for a burner tube with converging entrance. Proceedings of the Combustion Institute 31:1, pages 1067-1074.
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Pascale Domingo & Luc Vervisch. (2007) DNS of partially premixed flame propagating in a turbulent rotating flow. Proceedings of the Combustion Institute 31:1, pages 1657-1664.
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Luc Vervisch & Pascale Domingo. (2006) Two recent developments in numerical simulation of premixed and partially premixed turbulent flames. Comptes Rendus Mécanique 334:8-9, pages 523-530.
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Yojiro Ishino, Shigeki Yamaguchi & Norio Ohiwa. (2005) An experimental study on vortex–flame interaction of a spark-ignited flame with coherent structure in a plane premixed shear flow. Energy 30:2-4, pages 323-336.
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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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Ohiwa Norio & Yojiro Ishino. 2005. Engineering Turbulence Modelling and Experiments 6. Engineering Turbulence Modelling and Experiments 6 915 925 .
M. Kro¨ner, J. Fritz & T. Sattelmayer. (2003) Flashback Limits for Combustion Induced Vortex Breakdown in a Swirl Burner. Journal of Engineering for Gas Turbines and Power 125:3, pages 693-700.
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Shoichi Takamori & Akira Umemura. (2002) Behaviors of a flame ignited by a hot spot in a combustible vortex (vortex-bursting initiation revisited). Proceedings of the Combustion Institute 29:2, pages 1729-1736.
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Satoru Ishizuka, Mio Ikeda & Kazuhiro Kameda. (2002) Vortex ring combustion in an atmosphere of the same mixture as the combustible. Proceedings of the Combustion Institute 29:2, pages 1705-1712.
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Satoru Ishizuka. (2002) Flame propagation along a vortex axis. Progress in Energy and Combustion Science 28:6, pages 477-542.
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Akira Umemura & Koichi Tomita. (2001) Rapid flame propagation in a vortex tube in perspective of vortex breakdown phenomena. Combustion and Flame 125:1-2, pages 820-838.
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Tatsuya Hasegawa, Shinnosuke Nishiki & Ryosuke Nakamichi. 2001. Computational Fluid Dynamics 2000. Computational Fluid Dynamics 2000 195 200 .
F. A. Jaberi, D. Livescu & C. K. Madnia. (2000) Characteristics of chemically reacting compressible homogeneous turbulence. Physics of Fluids 12:5, pages 1189-1209.
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Satoru Ishizuka, Kiminori Koumura & Ryo Hasegawa. (2000) Enhancement of flame speed in vortex rings of rich hydrogen/air mixtures in air. Proceedings of the Combustion Institute 28:2, pages 1949-1956.
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Akira Umemura & Shyoichi Takamori. (2000) Wave nature in vortex-bursting initiation. Proceedings of the Combustion Institute 28:2, pages 1941-1948.
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Satoru Ishizuka, Takashi Hamasaki, Kiminori Koumura & Ryo Hasegawa. (1998) Measurements of flame speeds in combustible vortex rings: Validity of the back-pressure drive flame propagation mechanism. Symposium (International) on Combustion 27:1, pages 727-734.
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Katsuo Asato, Hidetada Wada, Takayuki Hiruma & Yoshitaka Takeuchi. (1997) Characteristics of flame propagation in a vortex core: Validity of a model for flame propagation. Combustion and Flame 110:4, pages 418-428.
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S. Noda, Y. Kamitakahara, S. Kamiya, Y. Onuma, S. Noda, Y. Kamitakahara, S. Kamiya & Y. Onuma. (1997) Near-field structure of acoustic excited jet diffusion flames. Near-field structure of acoustic excited jet diffusion flames.
Hideaki Kobayashi, Takashi Tamura, Kaoru Maruta, Takashi Niioka & Forman A. Williams. (1996) Burning velocity of turbulent premixed flames in a high-pressure environment. Symposium (International) on Combustion 26:1, pages 389-396.
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