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Original Articles

Simulation of Spherically Expanding Turbulent Premixed Flames

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Pages 1509-1540 | Received 08 Jan 2013, Accepted 22 May 2013, Published online: 16 Sep 2013

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

Read on this site (9)

Naoyuki Saito, Yuki Minamoto, Basmil Yenerdag, Masayasu Shimura & Mamoru Tanahashi. (2018) Effects of Turbulence on Ignition of Methane–Air and n-Heptane–Air Fully Premixed Mixtures. Combustion Science and Technology 190:3, pages 452-470.
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I. Langella, N. Swaminathan, Y. Gao & N. Chakraborty. (2017) Large Eddy Simulation of Premixed Combustion: Sensitivity to Subgrid Scale Velocity Modeling. Combustion Science and Technology 189:1, pages 43-78.
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Zhi Chen, Shaohong Ruan & Nedunchezhian Swaminathan. (2016) Numerical study of transient evolution of lifted jet flames: partially premixed flame propagation and influence of physical dimensions. Combustion Theory and Modelling 20:4, pages 592-612.
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Ivan Langella & Nedunchezhian Swaminathan. (2016) Unstrained and strained flamelets for LES of premixed combustion. Combustion Theory and Modelling 20:3, pages 410-440.
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Jiawei Lai & Nilanjan Chakraborty. (2016) Statistical Behavior of Scalar Dissipation Rate in Head-On Quenching of Turbulent Premixed Flames: A Direct Numerical Simulation Analysis. Combustion Science and Technology 188:2, pages 250-276.
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Y. Gao, N. Chakraborty, T. D. Dunstan & N. Swaminathan. (2015) Assessment of Reynolds Averaged Navier–Stokes Modeling of Scalar Dissipation Rate Transport in Turbulent Oblique Premixed Flames. Combustion Science and Technology 187:10, pages 1584-1609.
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Ivan Langella, Nedunchezhian Swaminathan, Yuan Gao & Nilanjan Chakraborty. (2015) Assessment of dynamic closure for premixed combustion large eddy simulation. Combustion Theory and Modelling 19:5, pages 628-656.
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Articles from other publishers (20)

Yaofen Bo, Yanchao Li & Wei Gao. (2024) Exploring the effects of turbulent field on propagation behaviors in confined hydrogen-air explosion using OpenFOAM. International Journal of Hydrogen Energy 50, pages 912-927.
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Arun Ravi Varma, Umair Ahmed & Nilanjan Chakraborty. (2023) Effects of body force on the statistical behaviour and modelling of scalar variance in turbulent premixed flames. Proceedings of the Combustion Institute 39:2, pages 2319-2328.
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Simone Hochgreb. (2023) How fast can we burn, 2.0. Proceedings of the Combustion Institute 39:2, pages 2077-2105.
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Frederick W. Young, Hazem S. A. M. Awad, Khalil Abo-Amsha, Umair Ahmed & Nilanjan Chakraborty. (2022) A Comparison between Statistical Behaviours of Scalar Dissipation Rate between Homogeneous MILD Combustion and Premixed Turbulent Flames. Energies 15:23, pages 9188.
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J. Reveillon, E. Franquet, C. Langrée, G. Lecocq, B. Duret & F.X. Demoulin. (2022) CFD simulation of premixed flames propagating in an obstacles network. Fuel 329, pages 125266.
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Tejas Kulkarni & Fabrizio Bisetti. (2021) Analysis of the development of the flame brush in turbulent premixed spherical flames. Combustion and Flame 234, pages 111640.
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Tejas Kulkarni, Romain Buttay, M. Houssem Kasbaoui, Antonio Attili & Fabrizio Bisetti. (2020) Reynolds number scaling of burning rates in spherical turbulent premixed flames. Journal of Fluid Mechanics 906.
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Tejas Kulkarni & Fabrizio Bisetti. (2021) Evolution and scaling of the peak flame surface density in spherical turbulent premixed flames subjected to decaying isotropic turbulence. Proceedings of the Combustion Institute 38:2, pages 2817-2824.
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Gulcan Ozel Erol, Josef Hasslberger, Markus Klein & Nilanjan Chakraborty. (2019) Propagation of Spherically Expanding Turbulent Flames into Fuel Droplet-Mists. Flow, Turbulence and Combustion 103:4, pages 913-941.
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James C. Massey, Ivan Langella & Nedunchezhian Swaminathan. (2019) A scaling law for the recirculation zone length behind a bluff body in reacting flows. Journal of Fluid Mechanics 875, pages 699-724.
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Ahmad Alqallaf, Markus Klein & Nilanjan Chakraborty. (2019) Effects of Lewis Number on the Evolution of Curvature in Spherically Expanding Turbulent Premixed Flames. Fluids 4:1, pages 12.
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James C. Massey, Ivan Langella & Nedunchezhian Swaminathan. (2018) Large Eddy Simulation of a Bluff Body Stabilised Premixed Flame Using Flamelets. Flow, Turbulence and Combustion 101:4, pages 973-992.
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G. Ghiasi, N.A.K. Doan, N. Swaminathan, B. Yenerdag, Y. Minamoto & M. Tanahashi. (2018) Assessment of SGS closure for isochoric combustion of hydrogen-air mixture. International Journal of Hydrogen Energy 43:16, pages 8105-8115.
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Golnoush Ghiasi, Irufan Ahmed, Yuri M. Wright, Jann Koch & Nedunchezhian Swaminathan. Sensitivity of Flamelet Combustion Model to Flame Curvature for IC Engine Application. Sensitivity of Flamelet Combustion Model to Flame Curvature for IC Engine Application.
Z. Chen, V.M. Reddy, S. Ruan, N.A.K. Doan, W.L. Roberts & N. Swaminathan. (2017) Simulation of MILD combustion using Perfectly Stirred Reactor model. Proceedings of the Combustion Institute 36:3, pages 4279-4286.
Crossref
Irufan Ahmed, Golnoush Ghiasi, A. Gnana Sagaya Raj, Nedunchezhian Swaminathan, Jann Koch, Karel Steurs & Yuri M. Wright. Spark Ignition Engine Simulation Using a Flamelet Based Combustion Model. Spark Ignition Engine Simulation Using a Flamelet Based Combustion Model.
David Butz, Yuan Gao, Andreas M. Kempf & Nilanjan Chakraborty. (2015) Large Eddy Simulations of a turbulent premixed swirl flame using an algebraic scalar dissipation rate closure. Combustion and Flame 162:9, pages 3180-3196.
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Nilanjan Chakraborty. (2015) Modeling of Entropy Generation in Turbulent Premixed Flames for Reynolds Averaged Navier–Stokes Simulations: A Direct Numerical Simulation Analysis. Journal of Energy Resources Technology 137:3.
Crossref
Terence Ma, Yuan Gao, Andreas M. Kempf & Nilanjan Chakraborty. (2014) Validation and implementation of algebraic LES modelling of scalar dissipation rate for reaction rate closure in turbulent premixed combustion. Combustion and Flame 161:12, pages 3134-3153.
Crossref
I. Ahmed & N. Swaminathan. (2014) Simulation of turbulent explosion of hydrogen–air mixtures. International Journal of Hydrogen Energy 39:17, pages 9562-9572.
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