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Original Articles

Extinction of Strained Premixed Laminar Flames With Complex Chemistry

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Pages 23-49 | Received 14 Jul 1986, Accepted 03 Oct 1986, Published online: 06 Apr 2007

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

Read on this site (29)

Liang Ji, Xue-Song Bai & Kalyanasundaram Seshadri. (2023) Rate-Ratio Asymptotic Analysis of Strained Premixed Laminar Methane Flame Under Nonadiabatic Conditions. Combustion Science and Technology 195:15, pages 3810-3834.
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Tianqi Liu, Weiye Tian, Ruicheng Sun, Ruiheng Jia, Zhixin Cai & Ning Wang. (2023) Experimental and numerical study on coal dust ignition temperature characteristics and explosion propagation characteristics in confined space. Combustion Science and Technology 195:9, pages 2150-2164.
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Won Hyun Kim & Tae Seon Park. (2022) Effect of multihole baffle-induced lobe flow structures on a high efficiency micro-thermophotovoltaic system. Engineering Applications of Computational Fluid Mechanics 16:1, pages 2074-2099.
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C.C. Liu, S.S. Shy, Y.C. Dong & M.W. Peng. (2012) More on Global Quenching of Premixed CH4/Diluent/Air Flames by Intense Near-Isotropic Turbulence. Combustion Science and Technology 184:10-11, pages 1916-1933.
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J. Li, S.K. Chou, Z.W. Li & W.M. Yang. (2008) A comparative study of H2-air premixed flame in micro combustors with different physical and boundary conditions. Combustion Theory and Modelling 12:2, pages 325-347.
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Hongsheng Guo 1 , Fengshan Liu & Gregory J Smallwood. (2004) Soot and NO formation in counterflow ethylene/oxygen/nitrogen diffusion flames. Combustion Theory and Modelling 8:3, pages 475-489.
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Julien de Charentenay & Alexandre Ern. (2002) Multicomponent transport impact on turbulent premixed H2/O2 flames. Combustion Theory and Modelling 6:3, pages 439-462.
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Jingfu Wang & Takashi Niioka. (2001) The effect of radiation reabsorption on NO formation in CH4/air counterflow diffusion flames. Combustion Theory and Modelling 5:3, pages 385-398.
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S G Davis, J Quinard & G Searby. (2001) A numerical investigation of stretch effects in counterflow, premixed laminar flames. Combustion Theory and Modelling 5:3, pages 353-362.
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Hongsheng Guo, Yiguang Ju & Takashi Niioka. (2000) Effects of radiative heat loss on the extinction of counterflow premixed H2–air flames. Combustion Theory and Modelling 4:4, pages 459-475.
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S. JAMES & F.A. JABERI. (2000) The Near-Field Structure of a Planar Methane Jet Flame. Combustion Science and Technology 151:1, pages 1-30.
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S. CANDEL, D. THÉVENIN, N. DARABIHA & D. VEYNANTE. (1999) Progress in Numerical Combustion. Combustion Science and Technology 149:1-6, pages 297-337.
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ALEXANDRE ERN & VINCENT GIOVANGIGLI. (1999) Impact of Detailed Multicomponent Transport on Planar and Counterflow Hydrogen/Air and Methane/Air Flames. Combustion Science and Technology 149:1-6, pages 157-181.
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Alexandre Ern§Vincent Giovangigli∥. (1998) Thermal diffusion effects in hydrogen-air and methane-air flames. Combustion Theory and Modelling 2:4, pages 349-372.
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J.L. GAUDUCHEAU, B. DENET & G. SEARBY. (1998) A Numerical Study of Lean CH4/H2/Air Premixed Flames at High Pressure. Combustion Science and Technology 137:1-6, pages 81-99.
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H. Guo, Y. Jub, K. Maruta, T. Niioka & F. Liu. (1998) Numerical Investigation of CH4/CO2/Air and CH4/CO2/O2 Counterflow Premixed Flames with Radiation Reabsorption. Combustion Science and Technology 135:1-6, pages 49-64.
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FLORIAN FICHOT, FRANÇOIS LACAS, DENIS VEYNANTE & SÉBASTIEN CANDEL. (1993) One-Dimensional Propagation of a Premixed Turbulent Flame With a Balance Equation for the Flame Surface Density. Combustion Science and Technology 90:1-4, pages 35-60.
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LUIS FERNANDO FIGUEIRA DA SILVA, BRUNO DESHAIES, MICHEL CHAMPION & MICHEL RENE-CORAIL. (1993) Some Specific Aspects of Combustion in Supersonic H2-Air Laminar Mixing Layers. Combustion Science and Technology 89:5-6, pages 317-333.
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V. GIOVANGIGLI & M. D. SMOOKE. (1993) Application of Continuation Methods to Plane Premixed Laminar Flames. Combustion Science and Technology 87:1-6, pages 241-256.
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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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N. DARABIHA & S. CANDEL. (1992) The Influence of the Temperature on Extinction and Ignition Limits of Strained Hydrogen-Air Diffusion Flames. Combustion Science and Technology 86:1-6, pages 67-85.
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T. POINSOT, T. ECHEKKI & M. G. MUNGAL. (1992) A Study of the Laminar Flame Tip and Implications for Premixed Turbulent Combustion. Combustion Science and Technology 81:1-3, pages 45-73.
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E. DJAVDAN, N. DARABIHA, V. GIOVANGIGLI & S.M. CANDEL. (1991) Strained Propane-Air Flames With Detailed and Reduced Kinetic Schemes. Combustion Science and Technology 76:4-6, pages 287-309.
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Richard J. Blint. (1991) Stretch in Premixed Laminar Flames Under IC Engine Conditions. Combustion Science and Technology 75:1-3, pages 115-127.
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W. P. Jones & R. P. Lindstedt. (1988) The Calculation of the Structure of Laminar Counterflow Diffusion Flames Using a Global Reaction Mechanism. Combustion Science and Technology 61:1-3, pages 31-49.
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N. Darabiha, S. M. Candel, V. Giovangigli & M. D. Smooke. (1988) Extinction of Strained Premixed Propane-air Flames with Complex Chemistry. Combustion Science and Technology 60:4-6, pages 267-285.
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I. K. PURI, K. SESHADRI, M. D. SMOOKE & D. E. KEYES. (1987) A Comparison Between Numerical Calculations and Experimental Measurements of the Structure of a Counterflow Methane-Air Diffusion Flame. Combustion Science and Technology 56:1-3, pages 1-22.
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M. D. SMOOKE, R. E. MITCHELL & D. E. KEYES. (1986) Numerical Solution of Two-Dimensional Axisymmetric Laminar Diffusion Flames. Combustion Science and Technology 67:4-6, pages 85-122.
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