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Original Articles

Effects of Mean Flow on Premixed Flame Ignition

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Pages 19-39 | Received 18 May 1994, Accepted 20 Mar 1995, 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 (5)

C. Turquand d’Auzay, V. Papapostolou, S.F. Ahmed & N. Chakraborty. (2019) Effects of Turbulence Intensity and Biogas Composition on the Localized Forced Ignition of Turbulent Mixing Layers. Combustion Science and Technology 191:5-6, pages 868-897.
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I. Ahmed & N. Swaminathan. (2013) Simulation of Spherically Expanding Turbulent Premixed Flames. Combustion Science and Technology 185:10, pages 1509-1540.
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N. Chakraborty, H. Hesse & E. Mastorakos. (2010) Numerical Investigation of Edge Flame Propagation Behavior in an Igniting Turbulent Planar Jet. Combustion Science and Technology 182:11-12, pages 1747-1781.
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S. F. Ahmed & E. Mastorakos. (2010) Correlation of Spark Ignition with the Local Instantaneous Mixture Fraction in a Turbulent Nonpremixed Methane Jet. Combustion Science and Technology 182:9, pages 1360-1368.
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NILANJAN CHAKRABORTY*E. MASTORAKOS & R. S. CANT. (2007) EFFECTS OF TURBULENCE ON SPARK IGNITION IN INHOMOGENEOUS MIXTURES: A DIRECT NUMERICAL SIMULATION (DNS) STUDY. Combustion Science and Technology 179:1-2, pages 293-317.
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Articles from other publishers (34)

Yan Wang, Shumeng Xie, Hannes Böttler, Yiqing Wang, Xinyi Chen, Arne Scholtissek, Christian Hasse & Zheng Chen. (2024) Forced ignition of premixed cool and hot DME/air flames in a laminar counterflow. Combustion and Flame 259, pages 113169.
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Antoine Pestre, Thomas Lesaffre, Quentin Cazères, Eleonore Riber & Bénédicte Cuenot. (2023) Euler–Lagrange numerical simulation of a kerosene droplet mist ignition in air using analytically reduced chemistry. International Journal of Spray and Combustion Dynamics 15:4, pages 207-217.
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Shenqyang (Steven) Shy. (2023) Spark ignition transitions in premixed turbulent combustion. Progress in Energy and Combustion Science 98, pages 101099.
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Charles Turquand d’Auzay & Nilanjan Chakraborty. (2023) A direct numerical simulation analysis of localised forced ignition in turbulent slot jets of CH4/CO2 blends. International Journal of Spray and Combustion Dynamics 15:1, pages 33-50.
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Shumeng Xie, Xinyi Chen, Hannes Böttler, Arne Scholtissek, Christian Hasse & Zheng Chen. (2022) Forced Ignition of a Rich Hydrogen/Air Mixture in a Laminar Counterflow: A Computational Study. Flow, Turbulence and Combustion 110:2, pages 441-456.
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Siheng Yang, Xin Hui, Chi Zhang, Weijia Qian & Xiaohua Gan. (2022) Mechanistic Insights into Effects of Outer Stage Flare Angle on Ignition and Flame Propagation of Separated Dual-Swirl Spray Flames. Journal of Thermal Science 31:5, pages 1642-1662.
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Seunghyun Jo & Jay P. Gore. (2022) Laser ignition energy for turbulent premixed hydrogen air jets. Combustion and Flame 236, pages 111767.
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Seunghyun Jo & Jay P. Gore. (2021) Laser Induced Spark Ignition of Laminar Premixed Methane Air Jets. Laser Induced Spark Ignition of Laminar Premixed Methane Air Jets.
Paul Pouech, Florent Duchaine & Thierry Poinsot. (2021) Premixed flame ignition in high-speed flows over a backward facing step. Combustion and Flame 229, pages 111398.
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C. Turquand d’Auzay, V. Papapostolou & N. Chakraborty. (2020) Effects of Biogas Composition on the Edge Flame Propagation in Igniting Turbulent Mixing Layers. Flow, Turbulence and Combustion 106:4, pages 1437-1459.
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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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Bastien BoustQuentin MichalskiMarc Bellenoue. (2019) Geometry Effects on the Pressure, Velocity Field and Operation of an Airbreathing Constant-Volume Combustion Chamber. Geometry Effects on the Pressure, Velocity Field and Operation of an Airbreathing Constant-Volume Combustion Chamber.
Yifan Xia, Changhong Linghu, Yao Zheng, Chenran Ye, Chengbiao Ma, Haiwen Ge & Gaofeng Wang. (2019) Experimental Investigation of the Flame Front Propagation Characteristic During Light-round Ignition in an Annular Combustor. Flow, Turbulence and Combustion 103:1, pages 247-269.
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Charles Turquand d’Auzay, Vassilios Papapostolou, Samer F. Ahmed & Nilanjan Chakraborty. (2019) On the minimum ignition energy and its transition in the localised forced ignition of turbulent homogeneous mixtures. Combustion and Flame 201, pages 104-117.
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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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Cheng Chi, Abouelmagd Abdelsamie & Dominique Thévenin. (2018) Direct Numerical Simulations of Hotspot-induced Ignition in Homogeneous Hydrogen-air Pre-mixtures and Ignition Spot Tracking. Flow, Turbulence and Combustion 101:1, pages 103-121.
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Abouelmagd Abdelsamie, David O. Lignell & Dominique Thévenin. (2017) Comparison Between ODT and DNS for Ignition Occurrence in Turbulent Premixed Jet Combustion: Safety-Relevant Applications. Zeitschrift für Physikalische Chemie 231:10, pages 1709-1735.
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E. Mastorakos. (2017) Forced ignition of turbulent spray flames. Proceedings of the Combustion Institute 36:2, pages 2367-2383.
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Laure Labarrere, Thierry Poinsot, Antoine Dauptain, Florent Duchaine, Marc Bellenoue & Bastien Boust. (2016) Experimental and numerical study of cyclic variations in a Constant Volume Combustion chamber. Combustion and Flame 172, pages 49-61.
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Dipal Patel & Nilanjan Chakraborty. (2016) Effects of fuel Lewis number on localised forced ignition of turbulent homogeneous mixtures: A numerical investigation. International Journal of Spray and Combustion Dynamics 8:3, pages 183-196.
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Dipal Patel & Nilanjan Chakraborty. (2015) Effects of Energy Deposition Characteristics on Localised Forced Ignition of Homogeneous Mixtures. International Journal of Spray and Combustion Dynamics 7:2, pages 151-174.
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Gordon Fru, Dominique Thévenin & Detlev Markus. 2015. Direct and Large-Eddy Simulation IX. Direct and Large-Eddy Simulation IX 525 531 .
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 & Markus Klein. (2009) Effects of global flame curvature on surface density function transport in turbulent premixed flame kernels in the thin reaction zones regime. Proceedings of the Combustion Institute 32:1, pages 1435-1443.
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T. Marchione, S.F. Ahmed & E. Mastorakos. (2009) Ignition of turbulent swirling n-heptane spray flames using single and multiple sparks. Combustion and Flame 156:1, pages 166-180.
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M. Klein, N. Chakraborty & R. S. Cant. (2008) Effects of Turbulence on Self-sustained Combustion in Premixed Flame Kernels: A Direct Numerical Simulation (DNS) Study. Flow, Turbulence and Combustion 81:4, pages 583-607.
Crossref
Nilanjan Chakraborty & E. Mastorakos. (2007) Direct Numerical Simulations of Localised Forced Ignition in Turbulent Mixing Layers: The Effects of Mixture Fraction and Its Gradient. Flow, Turbulence and Combustion 80:2, pages 155-186.
Crossref
Nilanjan Chakraborty, Markus Klein & R.S. Cant. (2007) Stretch rate effects on displacement speed in turbulent premixed flame kernels in the thin reaction zones regime. Proceedings of the Combustion Institute 31:1, pages 1385-1392.
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M. Klein, N. Chakraborty, K. W. Jenkins & R. S. Cant. (2006) Effects of initial radius on the propagation of premixed flame kernels in a turbulent environment. Physics of Fluids 18:5.
Crossref
K.W. Jenkins, M. Klein, N. Chakraborty & R.S. Cant. (2006) Effects of strain rate and curvature on the propagation of a spherical flame kernel in the thin-reaction-zones regime. Combustion and Flame 145:1-2, pages 415-434.
Crossref
C. Angelberger, T. Poinsot & B. Delhay. Improving Near-Wall Combustion and Wall Heat Transfer Modeling in SI Engine Computations. Improving Near-Wall Combustion and Wall Heat Transfer Modeling in SI Engine Computations.
Benoît Delhaye & Bernard Cousyn. Computation of Flow and Combustion in Spark Ignition Engine and Comparison with Experiment. Computation of Flow and Combustion in Spark Ignition Engine and Comparison with Experiment.
Thierry Poinsot. (1996) Using direct numerical simulations to understand premixed turbulent combustion. Symposium (International) on Combustion 26:1, pages 219-232.
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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.
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