Hybrid LBM-FVM solver for two-phase flow simulation
2024-06-01
发表期刊JOURNAL OF COMPUTATIONAL PHYSICS (IF:3.8[JCR-2023],4.5[5-Year])
ISSN0021-9991
EISSN1090-2716
卷号506
发表状态已发表
DOI10.1016/j.jcp.2024.112920
摘要

In this paper, we introduce a hybrid LBM-FVM solver for two-phase fluid flow simulations in which interface dynamics is modeled by a conservative phase-field equation. Integrating fluid equations over time is achieved through a velocity-based lattice Boltzmann solver which is improved by a central-moment multiple-relaxation-time collision model to reach higher accuracy. For interface evolution, we propose a finite-volume-based numerical treatment for the integration of the phase-field equation: we show that the second-order isotropic centered stencils for diffusive and separation fluxes combined with the WENO-5 stencils for advective fluxes achieve similar and sometimes even higher accuracy than the state-of-the-art double-distribution-function LBM methods as well as the DUGKS-based method, while requiring less computations and a smaller amount of memory. Benchmark tests (such as the 2D diagonal translation of a circular interface), along with quantitative evaluations on more complex tests (such as the rising bubble and Rayleigh-Taylor instability simulations) allowing comparisons with prior numerical methods and/or experimental data, are presented to validate the advantage of our hybrid solver. Moreover, 3D simulations (including a dam break simulation) are also compared to the time-lapse photography of physical experiments in order to allow for more qualitative evaluations. © 2024 Elsevier Inc.

关键词Benchmarking Boltzmann equation Distribution functions Finite volume method Interface states Numerical methods Phase interfaces Special effects Two phase flow Finite-volume method Fluid equations Fluid flow simulation High-accuracy Interface dynamic Lattice Boltzmann method Phase field equation Two phases flow Two-phase flow simulation Two-phase fluid flow
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收录类别EI ; SCI
语种英语
资助项目National Natural Science Foundation of China[62072310]
WOS研究方向Computer Science ; Physics
WOS类目Computer Science, Interdisciplinary Applications ; Physics, Mathematical
WOS记录号WOS:001220262700001
出版者Academic Press Inc.
EI入藏号20241315812129
EI主题词Flow simulation
EI分类号631.1 Fluid Flow, General ; 723.5 Computer Applications ; 801.4 Physical Chemistry ; 921.6 Numerical Methods ; 922 Statistical Methods ; 922.1 Probability Theory ; 931 Classical Physics ; Quantum Theory ; Relativity ; 932 High Energy Physics ; Nuclear Physics ; Plasma Physics
原始文献类型Journal article (JA)
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/359867
专题信息科学与技术学院
信息科学与技术学院_PI研究组_刘晓培组
信息科学与技术学院_硕士生
作者单位
1.SIST, Shanghaitech University, China;
2.Inria, IP Paris, France;
3.Inria/Ecole Polytechnique, IP Paris, France
第一作者单位信息科学与技术学院
第一作者的第一单位信息科学与技术学院
推荐引用方式
GB/T 7714
Ma, Yihui,Xiao, Xiaoyu,Li, Wei,et al. Hybrid LBM-FVM solver for two-phase flow simulation[J]. JOURNAL OF COMPUTATIONAL PHYSICS,2024,506.
APA Ma, Yihui,Xiao, Xiaoyu,Li, Wei,Desbrun, Mathieu,&Liu, Xiaopei.(2024).Hybrid LBM-FVM solver for two-phase flow simulation.JOURNAL OF COMPUTATIONAL PHYSICS,506.
MLA Ma, Yihui,et al."Hybrid LBM-FVM solver for two-phase flow simulation".JOURNAL OF COMPUTATIONAL PHYSICS 506(2024).
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