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Original Articles

Unsteady Behavior of Diffusion Flames and Premixed Flames for Counter Flow Geometry

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Pages 135-146 | Received 22 Jul 1974, Accepted 07 Oct 1974, Published online: 15 May 2007

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

Read on this site (12)

Eui Ju Lee & Hyun Dong Shin. (2004) Extinction of an evolving jet flame under a linearly-varying flow field. Combustion Theory and Modelling 8:1, pages 85-95.
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Heinz Pitsch & Sergei Fedotov. (2001) Investigation of scalar dissipation rate fluctuations in non-premixed turbulent combustion using a stochastic approach. Combustion Theory and Modelling 5:1, pages 41-57.
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Michele E Decroix & William L Roberts. (2000) Transient Flow Field Effects on Soot Volume Fraction in Diffusion Flames. Combustion Science and Technology 160:1, pages 165-189.
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Michele E. Decroix & William L. Roberts. (1999) Study of Transient Effects on the Extinction Limits of an Unsteady Counterflow Diffusion Flame. Combustion Science and Technology 146:1-6, pages 57-84.
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JIAN-BANG LIU & PAULD. RONNEY. (1999) Premixed Edge-Flames in Spatially-Varying Straining Flows. Combustion Science and Technology 144:1-6, pages 21-45.
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Z Huang, J K Bechtold & M Matalon. (1998) Weakly stretched premixed flames in oscillating flows. Combustion Theory and Modelling 2:2, pages 115-133.
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H. G. PEARLMAN & S. H. SOHRAB. (1995) FLAME PROPAGATION AND EXTINCTION IN SPATIALLY-PERIODIC LONGITUDINAL VELOCITY FIELDS. Combustion Science and Technology 107:1-3, pages 155-164.
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H. G. IM, J. K. BECHTOLD & C. K. LAW. (1995) Counterflow Diffusion Flames with Unsteady Strain Rates. Combustion Science and Technology 106:4-6, pages 345-361.
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H. G. PEARLMAN & S. H. SOHRAB. (1995) Extinction of Counterflow Premixed Flames Under Periodic Variation of the Rate of Stretch. Combustion Science and Technology 105:1-3, pages 19-31.
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DOMINIQUE THÉVENIN & SÉBASTIEN CANDEL. (1993) Effect of Variable Strain on the Dynamics of Diffusion Flame Ignition. Combustion Science and Technology 91:1-3, pages 73-94.
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N. DARABIHA. (1992) Transient Behaviour of Laminar Counterflow Hydrogen-Air Diffusion Flames with Complex Chemistry. Combustion Science and Technology 86:1-6, pages 163-181.
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TAKEO SAITOH & OSAMU NAGANO. (1980) Transient Combustion of a Fuel Droplet with Finite Rate of Chemical Reaction. Combustion Science and Technology 22:5-6, pages 227-234.
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Articles from other publishers (58)

Matthew X. Yao, Jean-Pierre Hickey & Guillaume Blanquart. (2023) Thermoacoustic response of fully compressible counterflow diffusion flames to acoustic perturbations. Proceedings of the Combustion Institute 39:4, pages 4711-4719.
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Tim C. Lieuwen. 2021. Unsteady Combustor Physics. Unsteady Combustor Physics 321 378 .
S. Yu, X. Liu, X.S. Bai, A.M. Elbaz & W.L. Roberts. (2020) LES/PDF modeling of swirl-stabilized non-premixed methane/air flames with local extinction and re-ignition. Combustion and Flame 219, pages 102-119.
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Yu Wang & Suk Ho Chung. (2019) Soot formation in laminar counterflow flames. Progress in Energy and Combustion Science 74, pages 152-238.
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Yosuke SUENAGA, Hideki YANAOKA, Mamoru KIKUCHI & Shun SASAKI. (2018) Response characteristics of a stretched cylindrical diffusion flame to periodic oscillation of air flow velocity (Influences of velocity oscillation amplitude on flame response). Transactions of the JSME (in Japanese) 84:857, pages 17-00444-17-00444.
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Meysam Sahafzadeh, Larry W. Kostiuk & Seth B. Dworkin. (2017) Transient response of a laminar premixed flame to a radially diverging/converging flow. Combustion and Flame 179, pages 51-62.
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Yosuke SUENAGA, Hideki YANAOKA, Mamoru KIKUCHI & Shun SASAKI. (2017) Response of a stretched cylindrical diffusion flame to a sinusoidal velocity oscillation of air stream. Transactions of the JSME (in Japanese) 83:852, pages 17-00160-17-00160.
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Tim C. Lieuwen. 2012. Unsteady Combustor Physics. Unsteady Combustor Physics 247 292 .
Preetham, Sai K. Thumuluru, H. Santosh & Tim Lieuwen. (2010) Linear Response of Laminar Premixed Flames to Flow Oscillations: Unsteady Stretch Effects. Journal of Propulsion and Power 26:3, pages 524-532.
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Sarah Vaden, Rachel Debes, E. Lara Lash, Rachel Burk, C. Merritt Boyd, Lloyd Wilson & Gerald Pellett. (2009) Unsteady Extinction of Opposed Jet Ethylene / Methane HiFIRE Surrogate Fuel Mixtures vs. Air. Unsteady Extinction of Opposed Jet Ethylene / Methane HiFIRE Surrogate Fuel Mixtures vs. Air.
Shigeru Tachibana, Junpei Yamashita, Laurent Zimmer, Kazuo Suzuki & A. Koichi Hayashi. (2009) Dynamic behavior of a freely-propagating turbulent premixed flame under global stretch rate oscillations. Proceedings of the Combustion Institute 32:2, pages 1795-1802.
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D.A. Kessler & M. Short. (2009) Dynamics and quenching of non-premixed edge-flames in oscillatory counterflows. Combustion and Flame 156:1, pages 73-89.
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H.Y. Wang, J.K. Bechtold & C.K. Law. (2008) Forced oscillation in diffusion flames near diffusive–thermal resonance. International Journal of Heat and Mass Transfer 51:3-4, pages 630-639.
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Preetham Preetham, Sai Thumuluru & Tim Lieuwen. (2007) Linear Response of Premixed Flames to Flow Oscillations: Unsteady Stretch Effects. Linear Response of Premixed Flames to Flow Oscillations: Unsteady Stretch Effects.
Uen Do Lee, Hyun Dong Shin, Kwang Chul Oh, Ki Ho Lee & Eui Ju Lee. (2006) Extinction limit extension of unsteady counterflow diffusion flames affected by velocity change. Combustion and Flame 144:4, pages 792-808.
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Haifeng Wang & Yiliang Chen. (2005) Steady flamelet modelling of a turbulent non-premixed flame considering scalar dissipation rate fluctuations. Fluid Dynamics Research 37:3, pages 133-153.
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Gerald Pellett, Amy Kabaria, Babita Panigrahi, Katie Sammons, Janet Convery & Lloyd Wilson. (2005) Dynamic Weakening (Extinction) of Simple Hydrocarbon-Air Counterflow Diffusion Flames by Oscillatory Inflows. Dynamic Weakening (Extinction) of Simple Hydrocarbon-Air Counterflow Diffusion Flames by Oscillatory Inflows.
R. Seiser, J.H. Frank, S. Liu, J.H. Chen, R.J. Sigurdsson & K. Seshadri. (2005) Ignition of hydrogen in unsteady nonpremixed flows. Proceedings of the Combustion Institute 30:1, pages 423-430.
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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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Marcos Vera & Amable Liñán. (2004) On the interaction of vortices with mixing layers. Physics of Fluids 16:7, pages 2237-2254.
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Eric J. Welle, William L. Roberts, Campbell D. Carter & Jeffrey M. Donbar. (2003) The response of a propane-air counter-flow diffusion flame subjected to a transient flow field. Combustion and Flame 135:3, pages 285-297.
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T. Lieuwen. (2003) Modeling Premixed Combustion-Acoustic Wave Interactions: A Review. Journal of Propulsion and Power 19:5, pages 765-781.
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Gerald Pellett, Beth Reid, Clare McNamara, Rachel Johnson, Amy Kabaria, Babita Panigrahi & Lloyd Wilson. (2003) Acoustic Weakening of Methane-, Ethylene-, and Hydrogen-Air Counterflow Diffusion Flames, and Implications for Scramjet Flameholding. Acoustic Weakening of Methane-, Ethylene-, and Hydrogen-Air Counterflow Diffusion Flames, and Implications for Scramjet Flameholding.
N Swaminathan. (2002) Flamelet regime in non-premixed combustion. Combustion and Flame 129:1-2, pages 217-219.
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Sébastien Candel. (2002) Combustion dynamics and control: Progress and challenges. Proceedings of the Combustion Institute 29:1, pages 1-28.
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C.H Sohn. (2002) Unsteady analysis of acoustic pressure response in N2 diluted H2 and air diffusion flames. Combustion and Flame 128:1-2, pages 111-120.
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P.J. Coelho & N. Peters. (2001) Unsteady modelling of a piloted methane/air jet flame based on the Eulerian particle flamelet model. Combustion and Flame 124:3, pages 444-465.
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A. Cavaliere & R. Ragucci. (2001) Gaseous diffusion flames: simple structures and their interaction. Progress in Energy and Combustion Science 27:5, pages 547-585.
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Fokion N. Egolfopoulos. (2000) Structure and extinction of unsteady, counterflowing, strained, non-premixed flames. International Journal of Energy Research 24:11, pages 989-1010.
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Katerina Sardi, A.M.K.P. Taylor & J.H. Whitelaw. (2000) Extinction of turbulent counterflow flames under periodic strain. Combustion and Flame 120:3, pages 265-284.
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Vito S. Santoro, Dimitrios C. Kyritsis, Amable Liñán & Alessandro Gomez. (2000) Vortex-induced extinction behavior in methanol gaseous flames: A comparison with quasi-steady extinction. Proceedings of the Combustion Institute 28:2, pages 2109-2116.
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Eui Ju Lee, Kwang Chul Oh & Hyun Dong Shin. (2000) Experiments on the transient effect of evolving jet diffusion flames. Proceedings of the Combustion Institute 28:2, pages 2079-2084.
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Romain Lauvergne & Fokion N. Egolfopoulos. (2000) Unsteady response of C3H3/Air laminar premixed flames submitted to mixture composition oscillations. Proceedings of the Combustion Institute 28:2, pages 1841-1850.
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Heinz Pitsch & Helfried Steiner. (2000) Scalar mixing and dissipation rate in large-eddy simulations of non-premixed turbulent combustion. Proceedings of the Combustion Institute 28:1, pages 41-49.
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H. Pitsch, M. Chen & N. Peters. (1998) Unsteady flamelet modeling of turbulent hydrogen-air diffusion flames. Symposium (International) on Combustion 27:1, pages 1057-1064.
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T.M. Brown, R.W. Pitz & C.J. Sung. (1998) Oscillatory stretch effects on the structure and extinction of counterflow diffusion flames. Symposium (International) on Combustion 27:1, pages 703-710.
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Constantin Petrov & Ahmed Ghoniem. (1997) A uniform strain model of elemental flames in turbulent combustion simulations. Combustion and Flame 111:1-2, pages 47-64.
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Jeong Park & Hyun Dong Shin. (1997) Experimental investigation of the developing process of an unsteady diffusion flame. Combustion and Flame 110:1-2, pages 67-77.
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T. Brown, R. Pitz, C. Sung, T. Brown, R. Pitz & C. Sung. (1997) Investigation of oscillatory stretch effects on the structure and extinction of counterflow diffusion flames. Investigation of oscillatory stretch effects on the structure and extinction of counterflow diffusion flames.
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J. Kistler, C. Sung, T. Kreutz, C. Law & M. Nishioka. (1996) On the extinction of counterflow diffusion flames in an oscillating flow field. On the extinction of counterflow diffusion flames in an oscillating flow field.
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