Influence of Turbulent Inlet Boundary Condition on Large Eddy Simulation Over a Flat Plate Boundary Layer

IF 1.1 4区 工程技术 Q4 MECHANICS
Yi Wang, G. Vita, Bruño Fraga, Chenghao Lyu, Jianchun Wang, H. Hemida
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引用次数: 2

Abstract

There are different methods for setting the inlet boundary condition (IBC) in large eddy simulation (LES). However, different methods applied in the same simulation result in different results. In this study, the influence of setting the IBC in the LES with the Lund method, the divergence-free synthetic eddies method (DFSEM), and the digital filter method (DFM) on the simulation of the boundary layer over a flat plate was investigated. For the DFM and the DFSEM, the input parameters such as the turbulent length scales with constant values were tested. The results indicated that simulations based on the DFSEM and the DFM with turbulent length scales equal to the boundary layer thickness by a factor of 0.6 were in good agreement with the direct numerical simulation (DNS) results It can be observed that the simulation results of the DFSEM agree better with the DNS data than the other two methods.
湍流进口边界条件对平板边界层大涡模拟的影响
在大涡模拟中,入口边界条件的设置方法多种多样。但是,在相同的仿真中,采用不同的方法得到的结果是不同的。本文研究了用Lund法、无散度合成涡流法(DFSEM)和数字滤波法(DFM)在LES中设置IBC对平板边界层模拟的影响。对DFM和DFSEM的输入参数进行了恒值湍流长度尺度等测试。结果表明,湍流长度尺度为边界层厚度的0.6倍时,DFSEM和DFM的模拟结果与直接数值模拟(DNS)结果吻合较好,其中DFSEM的模拟结果与直接数值模拟(DNS)结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.70
自引率
7.70%
发文量
25
审稿时长
3 months
期刊介绍: The International Journal of Computational Fluid Dynamics publishes innovative CFD research, both fundamental and applied, with applications in a wide variety of fields. The Journal emphasizes accurate predictive tools for 3D flow analysis and design, and those promoting a deeper understanding of the physics of 3D fluid motion. Relevant and innovative practical and industrial 3D applications, as well as those of an interdisciplinary nature, are encouraged.
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