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题名Temperature-scaled collision process for the high-order lattice Boltzmann model
作者
发表日期2019-07-02
发表期刊Physical Review E
ISSN/eISSN2470-0045
卷号100期号:1
摘要

We postulate that the relaxations of the distribution function in the lattice Boltzmann model should be self-similar under temperature scaling. Based on this postulation, a multiple-relaxation-time collision model in the relative, temperature-scaled reference frame is devised with Hermite expansion. Resorting to the relation between the Hermite basis with the temperature-scaled relative velocity and the Hermite basis with the raw velocity, the relaxations in the temperature-scaled reference frame can be converted to those in the raw reference frame with some correction terms to eliminate the cross-talk effects among the relaxations of different orders. The highest-order nonequilibrium relative central moment is filtered due to the insufficient discrerization in the velocity space. The highest-order collision term can be recursively obtained from the lower-order collision terms. The improved performance is validated by the double shear layer flow, shock tube flow, and the Taylor-Green vortex flow.

DOI10.1103/PhysRevE.100.013301
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收录类别SCIE
语种英语English
WOS研究方向Physics
WOS类目Physics, Fluids & Plasmas ; Physics, Mathematical
WOS记录号WOS:000473539400006
Scopus入藏号2-s2.0-85070076049
引用统计
被引频次:26[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://repository.uic.edu.cn/handle/39GCC9TT/10636
专题个人在本单位外知识产出
作者单位
Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen, Guangdong,518055,China
推荐引用方式
GB/T 7714
Li, Xuhui,Shi, Yangyang,Shan, Xiaowen. Temperature-scaled collision process for the high-order lattice Boltzmann model[J]. Physical Review E, 2019, 100(1).
APA Li, Xuhui, Shi, Yangyang, & Shan, Xiaowen. (2019). Temperature-scaled collision process for the high-order lattice Boltzmann model. Physical Review E, 100(1).
MLA Li, Xuhui,et al."Temperature-scaled collision process for the high-order lattice Boltzmann model". Physical Review E 100.1(2019).
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