师资

王建春
副教授
0755-88018151
wangjc@sustech.edu.cn

王建春副教授于2007年和2012年毕业于北京大学工学院,分别获得理论与应用力学专业的学士学位和流体力学专业的博士学位。2012年至2013年做为培源学者在北京大学应用物理与技术研究中心进行研究工作。2013年至2016年分别在普林斯顿大学和名古屋工业大学进行博士后研究工作。2016年9月至2018年1月在日博365娱乐场_Bte365彩票_日博手机官方网址力学与航空航天工程系任助理教授;2018年2月起,任副教授。
从事湍流理论与数值模拟、流动稳定性、计算流体力学等领域的研究。学术成果包括:

(1)发展了模态分解方法,研究了可压缩湍流场的多尺度性质,包括:声波模态和伪声模态的能谱、剪切过程和胀压过程的动能传输机理、小尺度结构、标度律和间歇性、激波和涡结构相互作用等。相关研究成果为发展先进的可压缩湍流模型提供了理论依据。

(2)发展了热力学方法,研究了泊肃叶流动的亚临界失稳问题,确定了层流发生非线性失稳的临界雷诺数,计算了系统的自由能、作用量和热力学关系式。该方法可以用于解决更多的亚临界失稳问题。
2017年入选中国科协第二批青年人才托举工程。

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研究方向
湍流理论与数值模拟
流动稳定性
计算流体力学

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教育背景
2003.9-2007.7,北京大学,工学院,学士
2007.9-2012.7,北京大学,工学院,博士

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工作经历
2012.7-2013.7,北京大学,应用物理与技术研究中心,培源学者
2013.8-2016.1,美国普林斯顿大学,博士后
2016.2-2016.8,日本名古屋工业大学,博士后
2016.9至今,日博365娱乐场_Bte365彩票_日博手机官方网址,力学与航空航天工程系,助理教授、副教授

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所获荣誉
2017年,中国科协第二批青年人才托举工程

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论文
(22). Luoqin Liu, Jianchun Wang, Yipeng Shi, Shiyi Chen and X. T. He*. 2018. A hybrid numerical simulation of supersonic isotropic turbulence, Communications in Computational Physics. Accepted.
(21). Song Chen, Jianchun Wang*, Hui Li, Minping Wan and Shiyi Chen. 2018. Spectra and Mach number scaling in compressible homogeneous shear turbulence, Physics of Fluids, 30, 065109.
(20). Chenyue Xie, Jianchun Wang*, Hui Li, Minping Wan and Shiyi Chen. 2018. A modified optimal LES model for highly compressible isotropic turbulence, Physics of Fluids, 30, 065108.
(19). Jianchun Wang*, Minping Wan*, Song Chen, Chenyue Xie and Shiyi Chen. 2018. Effect of shock waves on the statistics and scaling in compressible isotropic turbulence, Physical Review E, 97, 043108.
(18). Jianchun Wang*, Minping Wan*, Song Chen and Shiyi Chen. 2018. Kinetic energy transfer in compressible isotropic turbulence, Journal of Fluid Mechanics, 841, 581-613.
(17). J. Wang*, T. Gotoh, and T. Watanabe. 2017. Scaling and intermittency in compressible isotropic turbulence, Physical Review Fluids, 2, 053401.
(16). J. Wang*, T. Gotoh, and T. Watanabe. 2017. Shocklet statistics in compressible isotropic turbulence, Physical Review Fluids, 2, 023401.
(15). J. Wang*, T. Gotoh, and T. Watanabe. 2017. Spectra and statistics in compressible isotropic turbulence, Physical Review Fluids, 2, 013403.
(14). Y. Yang, J. Wang, Y. Shi*, Z. Xiao, X. He, and S. Chen. 2016. Intermittency caused by compressibility: a Lagrangian study. Journal of Fluid Mechanics, 786, R6.
(13). Weinan E* and J. Wang. 2016. A thermodynamic study of the two-dimensional pressure driven channel flow. Discrete and Continuous Dynamical Systems, 36, 4349-4366.
(12). J. Wang, Q. Li, and Weinan E*. 2015. Study of the instability of the Poiseuille flow using a thermodynamic formalism. Proceedings of the National Academy of Sciences of the United States of America, 112, 9518-9523.
(11). S. Chen*, Z. Xia, J. Wang, Y. Yang. 2015. Recent progress in compressible turbulence. Acta Mechanica Sinica, 31, 275-291.
(10). Y. Yang, J. Wang, Y. Shi*, Z. Xiao, X. He, and S. Chen. 2014. Interactions between inertial particles and shocklets in compressible turbulent flow. Physics of Fluids, 26, 091702.
(9). J. Wang, Y. Yang, Y. Shi, Z. Xiao, X. He, and S. Chen*. 2013. Statistics and structures of pressure and density in compressible isotropic turbulence. Journal of Turbulence, 14, 21-37.
(8). J. Wang, Y. Yang, Y. Shi*, Z. Xiao, X. He, and S. Chen*. 2013. Cascade of kinetic energy in three-dimensional compressible turbulence. Physical Review Letters, 110, 214505.
(7). Y. Yang, J. Wang, Y. Shi*, Z. Xiao, X. He, and S. Chen*. 2013. Acceleration of Passive Tracers in Compressible Turbulent Flow. Physical Review Letters, 110, 064503.
(6). J. Wang*, Y. Shi, L.-P. Wang, Z. Xiao, X. He, and S. Chen*. 2012. Effect of compressibility on the small scale structures in isotropic turbulence. Journal of Fluid Mechanics, 713, 588-631.
(5). J. Wang, Y. Shi, L.-P. Wang, Z. Xiao, X. He, and S. Chen*. 2012. Scaling and Statistics in Three-Dimensional Compressible Turbulence. Physical Review Letters, 108, 214505.
(4). S. Chen, Z. Xia, S. Pei, J. Wang, Y. Yang, Z. Xiao, and Y. Shi*. 2012. Reynolds stress-constrained large eddy simulation of wall-bounded turbulent flows. Journal of Fluid Mechanics, 703, 1-28.
(3). Q. Ni*, F. Hussain, J. Wang, and S. Chen*. 2012. Analysis of Reynolds number scaling for viscous vortex reconnection. Physics of Fluids, 24, 105102.
(2). J. Wang*, Y. Shi, L.-P. Wang, Z. Xiao, X. He, and S. Chen*. 2011. Effect of shocklets on the velocity gradients in highly compressible isotropic turbulence. Physics of Fluids, 23, 125103.
(1). J. Wang, L.-P. Wang*, Z. Xiao, Y. Shi, and S. Chen*. 2010. A hybrid numerical simulation of isotropic compressible turbulence. Journal of Computational Physics, 229, 5257-5279.

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