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法国Ecole Centrale de Lyon大学Mikhael Gorokhovski教授讲座通知7月14日(星期二)上午9:00-10:00热能所205会议室
2009-7-10

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报告人:Mikhael Gorokhovski教授

  间:714日(星期二)上午9:00-10:00

  点:热能所205会议室

  容:法国Ecole Centrale de Lyon大学介绍及LMFA

        实验室研究情况介绍

Prof. Mikhael Gorokhovski简介:

Mikhael Gorokhovski博士现为法国Ecole Centrale de Lyon大学LMFA实验室教授。1994-2006为法国Rouen大学教授,2000-2001为美国Stanford大学高级研究学者(Senior Research Fellow)。1989.10-1990.4在我所从事博士后工作,合作导师为岑可法院士。

Mikhael Gorokhovski博士主要从事湍流和燃烧领域的研究,主要研究方向:1)喷雾雾化;2)湍流,高Re数流动模拟(大涡模拟LES),湍流颗粒相互作用;4)雾化燃烧和煤燃烧。

Mikhael Gorokhovski博士教授课程主要包括:1)燃烧物理(Physics of Combustion);2)流体力学(Fluid Mechanics);3)统计力学(Statistical Mechanics);4)内燃机(Internal Combustion Engines);5)化石能源(Coal Energy Systems)。

欢迎感兴趣的老师和同学参加!

2009710

Mikhael Gorokhovski博士代表论文有:

[1].               Primary Atomizing Modeling M. Gorokhovski and M. Herrmann Annual Review of Fluid Mechanics, 40: 343-366, 2008

[2].               Statistical universalities in fragmentation under scaling symmetry with a constant frequency of fragmentation M. Gorokhovski and V. Saveliev J.Phys.D: Appl. Phys. 41,085405, 2008

[3].               Description of group-theoretical model of developed turbulence V. Saveliev and M. Gorokhovski Phys. Scr. T132, 014005, 2008

[4].               Enhancement of pulverized coal combustion by plasma technology M. Gorokhovski, F. Lockwood, V. Messerle, A. Ustimenko J. Combustion Science and Technology, 179: 2065-2090, 2007

[5].               Experimental study and global model of PAH formation from coal combustion and experimental study X. You, M. Gorokhovski, A. Chinnayya, C. Kefa Journal of the Energy Institute, Vol. 80, n°1, 12-21, 2007

[6].               Large-Eddy Simulation of High Reynolds Number Particle-Laden Channel Flow with Simplified Collisional Micro-Dynamics A. Chtab and M. Gorokhovski J. of Fluids Engineering, Vol. 129, n°1, 170-181, 2007

[7].               The extended IEM mixing model in framework of the composition PDF approach; applications to Diesel spray combustion V. Sabel’nikov, M. Gorokhovski, N. Baricault Combustion Theory and Modeling, Vol.10, n°1, 155-169, 2006

[8].               Large eddy simulation of droplet dispersion for inhomogeneous turbulent wall flow I. Vinkovic, C. Aguirre, S. Simoëns, M. Gorokhovski Int. J. Multiphase Flow, Vol. 32, pp. 344-364, 2006

[9].               Group-theoretical model of developed turbulence and renormalization of Navier-Stokes equations V. Saveliev and M. Gorokhovski Physical Review E 72, 016302, 2005

[10].            Plasma Technologies for Solid Fuels: Experiment and Theory M. Gorokhovski, F. Lockwood, V. Messerle, A. Ustimenko Journal of the Energy Institute, vol.78, n°4, 1-15, 2005

[11].            Stochastic scalar mixing models accounting for turbulent frequency multiscale fluctuations O. Soulard, V. Sabel’nikov and M. Gorokhovski Int. J. of Heat and Fluid Flow, Vol. 25/5 pp 875-883, 2004

[12].            Further Analyses of Kolmogorov’s Model of Breakup and its Application in Air Blast Atomization M. Gorokhovski and V. Saveliev J. Physics of Fluids, vol.15, n°1, January, 184-192, 2003

[13].            LES of Atomizing Spray With Stochastic Modeling of Secondary Break-up S. Apte, M. Gorokhovski, P. Moin J. of Multiphase Flow, 29, 1503-1522, 2003

[14].            <!--[if !supportLists]--> The Stochastic Sub-Grid-Scale Approach for Spray Atomization M. Gorokhovski J. Atomization and Sprays,n°11, 505-519, 2001

[15].            An application of the Probability Function Model to Diesel Combustion P. Durand, M. Gorokhovski, R. Borghi J. Combustion Science and Technology, 144, 47-78, 1999