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Original Articles

Strained Premixed Laminar Flames with Nonunity Lewis Numbers

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Pages 257-293 | Received 27 May 1983, Published online: 02 May 2007

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

Read on this site (37)

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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Marcos Vera & Amable Liñán. (2023) Large Activation Energy Analysis of Nonadiabatic Strained Premixed Laminar Flames with Nonunity Lewis Numbers. Combustion Science and Technology 195:15, pages 3707-3752.
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Su Ryong Lee & Jong Soo Kim. (2023) The Asymptotic Structure of Strained Chain-Branching Premixed Flames. Combustion Science and Technology 195:15, pages 3638-3662.
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Alex M. Garcia, Sophie Le Bras & Wolfgang Polifke. (2023) Effect of hydrogen addition on the consumption speed of lean premixed laminar methane flames exposed to combined strain and heat loss. Combustion Theory and Modelling 27:4, pages 584-604.
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Su Ryong Lee & Jong Soo Kim. (2022) The Asymptotic Structure of Strained Chain-Branching Premixed Flames with Nonunity Lewis Numbers and Their Extinction. Combustion Science and Technology 0:0, pages 1-30.
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Jiawei Lai & Nilanjan Chakraborty. (2016) Modeling of Progress Variable Variance Transport in Head-On Quenching of Turbulent Premixed Flames: A Direct Numerical Simulation Analysis. Combustion Science and Technology 188:11-12, pages 1925-1950.
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Yuan Gao & Nilanjan Chakraborty. (2016) Modeling of Lewis number dependence of scalar dissipation rate transport for Large Eddy Simulations of turbulent premixed combustion. Numerical Heat Transfer, Part A: Applications 69:11, pages 1201-1222.
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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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N. Chakraborty & N. Swaminathan. (2010) Effects of Lewis Number on Scalar Dissipation Transport and Its Modeling in Turbulent Premixed Combustion. Combustion Science and Technology 182:9, pages 1201-1240.
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Nilanjan Chakraborty & R. S. Cant. (2009) Physical Insight and Modelling for Lewis Number Effects on Turbulent Heat and Mass Transport in Turbulent Premixed Flames. Numerical Heat Transfer, Part A: Applications 55:8, pages 762-779.
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Won-Wook Kim & Suresh Menon. (2000) Numerical Modeling of Turbulent Premixed Flames in the Thin-Reaction-Zones Regime. Combustion Science and Technology 160:1, pages 119-150.
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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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P. A. LIBBY. (1998) Premixed Laminar Flames in Impinging Flows. Combustion Science and Technology 131:1-6, pages 345-379.
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C. C. LIU, T. H. LIN & J. H. TIEN. (1993) Extinction Theory of Stretched Premixed Flames by Inert Sprays. Combustion Science and Technology 91:4-6, pages 309-327.
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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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C. K. Law, B. H. Chao & A. Umemura. (1993) On Closure in Activation Energy Asymptotics of Premixed Flames. Combustion Science and Technology 88:1-2, pages 59-88.
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J. S. KIM, PAULA. LIBBY & FORMANA. WILLIAMS. (1993) On the Displacement Effects of Laminar Flames. Combustion Science and Technology 87:1-6, pages 1-25.
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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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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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H.G. PEARLMAN & S.H. SOHRAB. (1991) SHORT COMMUNICATION The Role of Droplet Rotation in Turbulent Spray Combustion Modeling. Combustion Science and Technology 76:4-6, pages 321-334.
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CHRISTOPHERJ. RUTLAND & JOELH. FERZIGER. (1990) Unsteady Strained Premixed Laminar Flames. Combustion Science and Technology 73:1-3, pages 305-326.
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PAULA. LIBBY & FORM ANA. WILLIAMS. (1990) On the Speed of Strained Laminar Flames in Premixed Systems. Combustion Science and Technology 72:1-3, pages 131-136.
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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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DAVl D W. Mikolaltls. (1988) On the Abrupt Extinction of Premixed Flames with Lewis Numbers Less Than One. Combustion Science and Technology 61:1-3, pages 21-29.
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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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K. N. C. Bray, Michel Champion & Paul A. Libby. (1987) The Turbulent Premixed Boundary Layer with Variable Enthalpy. Combustion Science and Technology 55:4-6, pages 139-161.
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PAULA. LIBBY & FORMANA. WILLIAMS. (1987) Premixed Laminar Flames with General Rates of Strain. Combustion Science and Technology 54:1-6, pages 237-273.
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WM. T. ASHURST, N. PETERS & M. D. SMOOKE. (1987) Numerical Simulation of Turbulent Flame Structure with Non-unity Lewis Number. Combustion Science and Technology 53:4-6, pages 339-375.
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David W. Mikolaitis. (1987) Strained Laminar Premixed Flames. Combustion Science and Technology 53:2-3, pages 203-216.
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I. K. Puri & K. Seshadri. (1987) The Extinction of Counterflow Premixed Flames Burning Diluted Methane-Air, and Diluted Propane-Air Mixtures. Combustion Science and Technology 53:1, pages 55-65.
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V. Giovangigli & M. D. Smooke. (1987) Extinction of Strained Premixed Laminar Flames With Complex Chemistry. Combustion Science and Technology 53:1, pages 23-49.
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DAVIDW. MIKOLAITIS. (1986) Premixed Flame Structure for Large Activation Energy and Large Heat Release—A Simple Model. Combustion Science and Technology 48:1-2, pages 89-98.
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VINCENT GIOVANGIGLI & SÉBASTIEN CANDEL. (1986) Extinction Limits of Premixed Catalyzed Flames in Stagnation Point Flows. Combustion Science and Technology 48:1-2, pages 1-30.
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K. N. C. BRAY, MICHEL CHAMPION, NIKHIL DAVE & PAULA. LIBBY. (1986) On the Thermochemistry of Premixed Turbulent Combustion in Variable Enthalpy Systems. Combustion Science and Technology 46:1-2, pages 31 - 43.
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PEDRO GARCÍA-YBARRA, COLETTE NICOLI & PAUL CLAVIN. (1984) Soret and Dilution Effects on Premixed Flames. Combustion Science and Technology 42:1-2, pages 87-109.
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Paul A. Libby & Forman A. Williams. (1984) Strained Premixed Laminar Flames with Two Reaction Zones. Combustion Science and Technology 37:5-6, pages 221-252.
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Su Ryong Lee & Jong Soo Kim. The Asymptotic Structure of Strained Chain-Branching Premixed Flames Under Nonadiabatic Conditions. Combustion Science and Technology 0:0, pages 1-27.
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Nilanjan Chakraborty, Henrik Hesse & Epaminondas Mastorakos. (2009) Effects of Fuel Lewis Number on Localised Forced Ignition of Turbulent Mixing Layers. Flow, Turbulence and Combustion 84:1, pages 125-166.
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Nilanjan Chakraborty & R. S. Cant. (2009) Effects of Lewis number on scalar transport in turbulent premixed flames. Physics of Fluids 21:3.
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N. Chakraborty, M. Klein & N. Swaminathan. (2009) Effects of Lewis number on the reactive scalar gradient alignment with local strain rate in turbulent premixed flames. Proceedings of the Combustion Institute 32:1, pages 1409-1417.
Crossref
G. Ciccarelli & S. Dorofeev. (2008) Flame acceleration and transition to detonation in ducts. Progress in Energy and Combustion Science 34:4, pages 499-550.
Crossref
Nilanjan Chakraborty & Markus Klein. (2008) Influence of Lewis number on the surface density function transport in the thin reaction zone regime for turbulent premixed flames. Physics of Fluids 20:6.
Crossref
Sergey Dorofeev. (2007) Thermal quenching and re-ignition of mixed pockets of reactants and products in gas explosions. Proceedings of the Combustion Institute 31:2, pages 2371-2379.
Crossref
Nilanjan Chakraborty & R.S. Cant. (2006) Influence of Lewis number on strain rate effects in turbulent premixed flame propagation. International Journal of Heat and Mass Transfer 49:13-14, pages 2158-2172.
Crossref
Graham Dixon-Lewis. (2005) Laminar premixed flame extinction limits. II Combined effects of stretch and radiative loss in the single flame unburnt-to-burnt and the twin-flame unburnt-to-unburnt opposed flow configurations. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 462:2066, pages 349-370.
Crossref
Christophe Proust. (2006) Flame propagation and combustion in some dust-air mixtures. Journal of Loss Prevention in the Process Industries 19:1, pages 89-100.
Crossref
Nilanjan Chakraborty & R. S. Cant. (2005) Influence of Lewis number on curvature effects in turbulent premixed flame propagation in the thin reaction zones regime. Physics of Fluids 17:10.
Crossref
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.
Crossref
S.I. Yang & S.S. Shy. (2002) Global quenching of premixed CH4/air flames: Effects of turbulent straining, equivalence ratio, and radiative heat loss. Proceedings of the Combustion Institute 29:2, pages 1841-1847.
Crossref
. 2002. Fundamentals and Technology of Combustion. Fundamentals and Technology of Combustion 779 834 .
A.L Sánchez, A Lépinette, M Bollig, A Liñán & B Lázaro. (2000) The reduced kinetic description of lean premixed combustion. Combustion and Flame 123:4, pages 436-464.
Crossref
F.A Williams. (2000) Progress in knowledge of flamelet structure and extinction. Progress in Energy and Combustion Science 26:4-6, pages 657-682.
Crossref
Vincent GiovangigliVincent Giovangigli. 1999. Multicomponent Flow Modeling. Multicomponent Flow Modeling 37 58 .
G. Patnaik & K. Kailasanath. (1998) A computational study of local quenching in flame-vortex interactions with radiative losses. Symposium (International) on Combustion 27:1, pages 711-717.
Crossref
. (1997) Laminar premixed flame extinction limits. I. Combined effects of stretch and upstream heat loss in the twin-flame unburnt-to-unburnt opposed flow configuration. Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 452:1951, pages 1857-1884.
Crossref
G. Dixon-Lewis. (1996) Computation of laminar premixed flame extinction limits in the unburnt-to-unburnt opposed flow configuration with upstream heat loss. Mathematical and Computer Modelling 24:8, pages 105-113.
Crossref
K Bray. (1996) Extinction of premixed flames in turbulent counterflowing streams with unequal enthalpies. Combustion and Flame 107:1-2, pages 53-64.
Crossref
K.N.C. Bray, Michel Champion & Paul A. Libby. (1996) Premixed combustion in laminar Couette flow. Combustion and Flame 104:3, pages 241-259.
Crossref
Thierry Poinsot, Sébastien Candel & Arnaud Trouvé. (1995) Applications of direct numerical simulation to premixed turbulent combustion. Progress in Energy and Combustion Science 21:6, pages 531-576.
Crossref
J.S. Kim & F.A. Williams. (1994) Contribution of strained diffusion flames to acoustic pressure response. Combustion and Flame 98:3, pages 279-299.
Crossref
Graham Dixon-Lewis. (1994) Aspects of laminar premixed flame extinction limits. Symposium (International) on Combustion 25:1, pages 1325-1332.
Crossref
C.J. Rutland & A. Trouvé. (1993) Direct simulations of premixed turbulent flames with nonunity Lewis numbers. Combustion and Flame 94:1-2, pages 41-57.
Crossref
Longting He & Paul Clavin. (1993) Premixed hydrogenoxygen flames. Part I: Flame structure near the flammability limits. Combustion and Flame 93:4, pages 391-407.
Crossref
F. Aguerre, N. Darabiha, J. C. Rolon & S. Candel. (1993) Experimental and numerical study of transient laminar counterflow diffusion flames. Combustion, Explosion, and Shock Waves 29:3, pages 311-315.
Crossref
T. Dagusé, A. Soufiani, N. Darabiha & J. C. Rolon. (1993) Structure of diffusion and premixed laminar counterflow flames including molecular radiative transfer. Combustion, Explosion, and Shock Waves 29:3, pages 306-311.
Crossref
. 1993. Dynamics of Gaseous Combustion. Dynamics of Gaseous Combustion 114 127 .
Satoru Ishizuka. (1993) Characteristics of tubular flames. Progress in Energy and Combustion Science 19:3, pages 187-226.
Crossref
J. S. Kim, Paul A. Libby & Forman A. Williams. (1992) Influences of swirl on the structure and extinction of strained premixed flames. Part II: Strong rates of rotation. Physics of Fluids A: Fluid Dynamics 4:2, pages 391-408.
Crossref
M.D. Smooke & V. Giovangigli. (1992) A comparison between experimental measurements and numerical calculations of the structure of premixed rotating counterflow methane-air flames. Symposium (International) on Combustion 24:1, pages 161-168.
Crossref
F.A. Williams. (1992) The role of theory in combustion science. Symposium (International) on Combustion 24:1, pages 1-17.
Crossref
C. Meneveau & T. Poinsot. (1991) Stretching and quenching of flamelets in premixed turbulent combustion. Combustion and Flame 86:4, pages 311-332.
Crossref
. (1997) Some applications of Kolmogorov’s turbulence research in the field of combustion. Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences 434:1890, pages 217-240.
Crossref
T. Poinsot, D. Veynante & S. Candel. (2006) Quenching processes and premixed turbulent combustion diagrams. Journal of Fluid Mechanics Digital Archive 228, pages 561.
Crossref
K.N.C. Bray, Michel Champion & Paul A. Libby. (1991) Premixed flames in stagnating turbulence: Part I. The general formulation for counterflowing streams and gradient models for turbulent transport. Combustion and Flame 84:3-4, pages 391-410.
Crossref
M.D. Smooke, J. Crump, K. Seshadri & V. Giovangigli. (1991) Comparison between experimental measurements and numerical calculations of the structure of counterflow, diluted, methane-air, premixed flames. Symposium (International) on Combustion 23:1, pages 463-470.
Crossref
Graham Dixon-Lewis. (1991) Structure of laminar flames. Symposium (International) on Combustion 23:1, pages 305-324.
Crossref
G. Continillo & W.A. Sirignano. (1990) Counterflow spray combustion modeling. Combustion and Flame 81:3-4, pages 325-340.
Crossref
Paul A. Libby, Forman A. Williams & Gregory I. Sivashinsky. (1990) Influences of swirl on the structure and extinction of strained premixed flames. Part I: Moderate rates of rotation. Physics of Fluids A: Fluid Dynamics 2:7, pages 1213-1223.
Crossref
Paul A. Libby, Norbert Peters & Forman A. Williams. (1989) Cylindrical premixed laminar flames. Combustion and Flame 75:3-4, pages 265-280.
Crossref
C.K. Law. (1989) Dynamics of stretched flames. Symposium (International) on Combustion 22:1, pages 1381-1402.
Crossref
N. Peters & F.A. Williams. (1989) Premixed combustion in a vortex. Symposium (International) on Combustion 22:1, pages 495-503.
Crossref
N. Darabiha, V. Giovangigli, A. Trouvé, S. M. Candel & E. Esposito. 1989. Turbulent Reactive Flows. Turbulent Reactive Flows 591 637 .
F. A. Williams. 1989. Turbulent Reactive Flows. Turbulent Reactive Flows 195 212 .
B. Rogg. (1988) Response and flamelet structure of stretched premixed methaneair flames. Combustion and Flame 73:1, pages 45-65.
Crossref
. 1988. Dynamics of Reactive Systems Part I: Flames; Part II: Heterogeneous Combustion and Applications. Dynamics of Reactive Systems Part I: Flames; Part II: Heterogeneous Combustion and Applications 195 214 .
N. Peters. (1988) Laminar flamelet concepts in turbulent combustion. Symposium (International) on Combustion 21:1, pages 1231-1250.
Crossref
Paul A. Libby. 1988. Frontiers of Fluid Mechanics. Frontiers of Fluid Mechanics 911 916 .
David W. Mikolaitis. 1988. Mathematical Modeling in Combustion Science. Mathematical Modeling in Combustion Science 67 77 .
Guy Joulin & Michel Champion. (1987) Stretch effects and solid propellant burning. Combustion and Flame 69:3, pages 263-271.
Crossref
Xie Ding-guo. (1987) Burning of single carbon particle approached by activation energy asymptotics. Applied Mathematics and Mechanics 8:8, pages 745-757.
Crossref
V. Giovangigli & M. D. Smooke. 1987. Complex Chemical Reaction Systems. Complex Chemical Reaction Systems 281 291 .
F. A. WILLIAMS. (1986) Asymptotic methods in turbulent combustion. AIAA Journal 24:6, pages 867-875.
Crossref
Goro Masuya. (1986) Influence of laminar flame speed on turbulent premixed combustion. Combustion and Flame 64:3, pages 353-367.
Crossref
N. Darabiha, S.M. Candel & F.E. Marble. (1986) The effect of strain rate on a premixed laminar flame. Combustion and Flame 64:2, pages 203-217.
Crossref
P.A. Libby, S. Sivasegaram & J.H. Whitelaw. (1986) Premixed combustion. Progress in Energy and Combustion Science 12:4, pages 393-405.
Crossref
David W. Mikolaitis. (1986) Stretched spherical cap flames. Combustion and Flame 63:1-2, pages 95-111.
Crossref
John Abraham, Forman A. Williams & Frediano V. Bracco. A Discussion of Turbulent Flame Structure in Premixed Charges. A Discussion of Turbulent Flame Structure in Premixed Charges.
A. David Gosman. Multidimensional Modelling of Cold Flows and Turbulence in Reciprocating Engines. Multidimensional Modelling of Cold Flows and Turbulence in Reciprocating Engines.
. 1985. Dynamics of Flames and Reactive Systems. Dynamics of Flames and Reactive Systems 37 60 .
. 1985. Dynamics of Flames and Reactive Systems. Dynamics of Flames and Reactive Systems 1 33 .
Paul A. Libby. (1985) Theory of normal premixed turbulent flames revisited. Progress in Energy and Combustion Science 11:1, pages 83-96.
Crossref
Paul Clavin. (1985) Dynamic behavior of premixed flame fronts in laminar and turbulent flows. Progress in Energy and Combustion Science 11:1, pages 1-59.
Crossref
Vincent Giovangigli & Sèbastien Candel. 1985. Numerical Simulation of Combustion Phenomena. Numerical Simulation of Combustion Phenomena 267 281 .
N. Darabiha, S. Candel & F. E. Marble. 1985. Numerical Simulation of Combustion Phenomena. Numerical Simulation of Combustion Phenomena 218 233 .
F. WILLIAMS. (1984) Asymptotic methods in turbulent combustion. Asymptotic methods in turbulent combustion.
Paul Clavin & Amable Liñán. 1985. Nonequilibrium Cooperative Phenomena in Physics and Related Fields. Nonequilibrium Cooperative Phenomena in Physics and Related Fields 291 338 .

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