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题名

An improved discrete unified gas kinetic scheme for simulating compressible natural convection flows

作者
通讯作者Wang,Lian Ping
发表日期
2021-06-01
DOI
发表期刊
EISSN
2590-0552
卷号11
摘要

Discrete unified gas-kinetic scheme (DUGKS) has been developed recently as a general method for simulating flows at all Knudsen numbers. In this study, we extend DUGKS to simulate fully compressible thermal flows. We introduce a source term to the Boltzmann equation with the Bhatnagar-Gross-Krook (BGK) collision model [1] to adjust heat flux and thus the Prandtl number. The fully compressible Navier-Stokes equations can be recovered by the current model. As a mesoscopic CFD approach, it requires an accurate mesoscopic implementation of the boundary conditions. Using the Chapman-Enskog approximation, we derive the “bounce-back” expressions for both temperature and velocity distribution functions, which reveal the need to consider coupling terms between the velocity and thermal fields. To validate our scheme, we first reproduce the Boussinesq flow results by simulating natural convection in a square cavity with a small temperature difference (ϵ=0.01) and a low Mach number. Then we perform simulations of steady natural convection (Ra=1.0×10) in a square cavity with differentially heated side walls and a large temperature difference (ϵ=0.6), where the Boussinesq approximation becomes invalid. Temperature, velocity profiles, and Nusselt number distribution are obtained and compared with the benchmark results from the literature. Finally, the unsteady compressible natural convection with Ra=5.0×10,ϵ=0.6 is studied and the turbulent fluctuation statistics are computed and analyzed.

关键词
相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
通讯
EI入藏号
20211310134967
EI主题词
Boltzmann equation ; Computational fluid dynamics ; Distribution functions ; Heat flux ; Kinetic theory of gases ; Mach number ; Navier Stokes equations ; Prandtl number ; Superconducting materials ; Velocity distribution
EI分类号
Heat Transfer:641.2 ; Superconducting Materials:708.3 ; Computer Applications:723.5 ; Calculus:921.2 ; Statistical Methods:922 ; Mechanical Variables Measurements:943.2
引用统计
被引频次[WOS]:0
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/222622
专题工学院_力学与航空航天工程系
作者单位
1.Department of Mechanical Engineering,126 Spencer Laboratory,University of Delaware,Newark,19716-3140,United States
2.Guangdong Provincial Key Laboratory of Turbulence Research and Applications,Center for Complex Flows and Soft Matter Research,Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen,518055,China
3.Guangdong-Hong Kong-Macao Joint Laboratory for Data-Driven Fluid Mechanics and Engineering Applications,Southern University of Science and Technology,Shenzhen,518055,China
4.State Key Laboratory of Coal Combustion,Huazhong University of Science and Technology,Wuhan,China
5.Shanghai Institute of Applied Mathematics and Mechanics,Shanghai University,Shanghai,China
通讯作者单位力学与航空航天工程系;  南方科技大学
推荐引用方式
GB/T 7714
Wen,Xin,Wang,Lian Ping,Guo,Zhaoli,et al. An improved discrete unified gas kinetic scheme for simulating compressible natural convection flows[J]. Journal of Computational Physics: X,2021,11.
APA
Wen,Xin,Wang,Lian Ping,Guo,Zhaoli,&Shen,Jie.(2021).An improved discrete unified gas kinetic scheme for simulating compressible natural convection flows.Journal of Computational Physics: X,11.
MLA
Wen,Xin,et al."An improved discrete unified gas kinetic scheme for simulating compressible natural convection flows".Journal of Computational Physics: X 11(2021).
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