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Original Articles

The effect of velocity field forcing techniques on the Karman–Howarth equation

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Pages 429-448 | Received 18 Nov 2013, Accepted 01 Apr 2014, Published online: 13 May 2014

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R. Friedrich & A.V. Johansson. (2015) Foreword to special issue: Eighth International Symposium on Turbulence and Shear Flow Phenomena (TSFP-8). Journal of Turbulence 16:3, pages 203-207.
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Andrei N. Lipatnikov, HsuChew Lee, Peng Dai, Minping Wan & Vladimir A. Sabelnikov. (2024) Transition from turbulence-dominated to instability-dominated combustion regime in lean hydrogen-air flames. Combustion and Flame 259, pages 113170.
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Hsu Chew Lee, B. Wu, Peng Dai, Minping Wan & Andrei N. Lipatnikov. (2023) Turbulent burning velocity and thermodiffusive instability of premixed flames. Physical Review E 108:3.
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H.C. Lee, P. Dai, M. Wan & A.N. Lipatnikov. (2023) Displacement speed, flame surface density and burning rate in highly turbulent premixed flames characterized by low Lewis numbers. Journal of Fluid Mechanics 961.
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Hsu-Chew Lee, Xiaoyu Liu, Peng Dai, Zheng Chen, Abouelmagd Abdelsamie & Minping Wan. (2022) Effects of Lewis and Karlovitz numbers on transport equations for turbulent kinetic energy and enstrophyLewis数和Karlovitz数对湍流动能和拟能输运方程的影响. Acta Mechanica Sinica 38:7.
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HsuChew Lee, Peng Dai, Minping Wan & Andrei N. Lipatnikov. (2022) A DNS study of extreme and leading points in lean hydrogen-air turbulent flames – Part I: Local thermochemical structure and reaction rates. Combustion and Flame 235, pages 111716.
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HsuChew Lee, Peng Dai, Minping Wan & Andrei N. Lipatnikov. (2022) A DNS study of extreme and leading points in lean hydrogen-air turbulent flames - part II: Local velocity field and flame topology. Combustion and Flame 235, pages 111712.
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H.C. Lee, P. Dai, M. Wan & A.N. Lipatnikov. (2021) Influence of molecular transport on burning rate and conditioned species concentrations in highly turbulent premixed flames. Journal of Fluid Mechanics 928.
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Markus Klein, Nilanjan Chakraborty & Sebastian Ketterl. (2017) A Comparison of Strategies for Direct Numerical Simulation of Turbulence Chemistry Interaction in Generic Planar Turbulent Premixed Flames. Flow, Turbulence and Combustion 99:3-4, pages 955-971.
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Simon Lapointe & Guillaume Blanquart. (2017) A priori filtered chemical source term modeling for LES of high Karlovitz number premixed flames. Combustion and Flame 176, pages 500-510.
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Bruno Savard, Simon Lapointe & Andrzej Teodorczyk. (2017) Numerical investigation of the effect of pressure on heat release rate in iso-octane premixed turbulent flames under conditions relevant to SI engines. Proceedings of the Combustion Institute 36:3, pages 3543-3549.
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Simon Lapointe & Guillaume Blanquart. (2016) Fuel and chemistry effects in high Karlovitz premixed turbulent flames. Combustion and Flame 167, pages 294-307.
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Brock Bobbitt, Simon Lapointe & Guillaume Blanquart. (2016) Vorticity transformation in high Karlovitz number premixed flames. Physics of Fluids 28:1.
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Simon Lapointe, Bruno Savard & Guillaume Blanquart. (2015) Differential diffusion effects, distributed burning, and local extinctions in high Karlovitz premixed flames. Combustion and Flame 162:9, pages 3341-3355.
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B. Savard, Y. Xuan, B. Bobbitt & G. Blanquart. (2015) A computationally-efficient, semi-implicit, iterative method for the time-integration of reacting flows with stiff chemistry. Journal of Computational Physics 295, pages 740-769.
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Phares L. Carroll & Guillaume Blanquart. (2015) A new framework for simulating forced homogeneous buoyant turbulent flows. Theoretical and Computational Fluid Dynamics 29:3, pages 225-244.
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Bruno Savard & Guillaume Blanquart. (2015) Broken reaction zone and differential diffusion effects in high Karlovitz n-C7H16 premixed turbulent flames. Combustion and Flame 162:5, pages 2020-2033.
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Bruno Savard, Brock Bobbitt & Guillaume Blanquart. (2015) Structure of a high Karlovitz n-C7H16 premixed turbulent flame. Proceedings of the Combustion Institute 35:2, pages 1377-1384.
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