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轴对称钝体流动的大涡模拟亚网格尺度模型评估及水动力行为研究

Assessment of LES Subgrid-scale Models and Investigation of Hydrodynamic Behaviour for an Axisymmetrical Bluff Body Flow.

作者信息

Lee Chin Yik, Cant Stewart

机构信息

Department of Engineering, University of Cambridge, Cambridge, UK.

出版信息

Flow Turbul Combust. 2017;98(1):155-176. doi: 10.1007/s10494-016-9751-4. Epub 2016 Jul 30.

Abstract

This work is concerned with the investigation of fluid-mechanical behaviour and the performance of different subgrid-scale models for LES in the numerical prediction of a confined axisymmetrical bluff-body flow. Four subgrid-scale turbulence models comprising the Smagorinsky model, Dynamic Smagorinsky model, WALE model and subgrid turbulent kinetic energy model, are validated and compared directly against the experimental data. Two different mesh counts are used for the LES studies, one with a higher mesh resolution in the shear layer than the other. It is found that increasing the mesh resolution improves the time-averaged fluctuating velocity profiles, but has less effect on the time-averaged filtered velocity profiles. A comparison against experiment shows that the recirculation zone length is well predicted using LES. The accuracy of the four different subgrid scale models is then assessed by comparing the LES results using the dense mesh with the experiment. Comparisons with the time-averaged axial and radial velocity profiles demonstrate that LES displays good agreement with the experimental data, with the essential flow features captured both qualitative and quantitatively. The subgrid velocity also matches well with the experimental results, but a slight underprediction of the inner shear layer is observed for all subgrid models. In general, it is found that the Smagorinsky and WALE models are more dissipative than the Dynamic Smagorinsky model and subgrid TKE model. Comparison of the spectra against the experiment shows that LES can capture dominant features of the turbulent flow with reasonable accuracy, and weak spectral peaks related to the Kevin-Helmholtz instability and helical vortex shedding are present.

摘要

这项工作关注在受限轴对称钝体流动的数值预测中,大涡模拟(LES)的流体力学行为研究以及不同亚格子尺度模型的性能。对包括斯马戈林斯基模型、动态斯马戈林斯基模型、WALE模型和亚格子湍动能模型在内的四种亚格子尺度湍流模型进行了验证,并直接与实验数据进行比较。LES研究使用了两种不同的网格数量,其中一种在剪切层中的网格分辨率高于另一种。研究发现,提高网格分辨率可改善时间平均脉动速度剖面,但对时间平均滤波速度剖面的影响较小。与实验的比较表明,使用LES能很好地预测回流区长度。然后通过比较使用密集网格的LES结果与实验结果,评估四种不同亚格子尺度模型的精度。与时间平均轴向和径向速度剖面的比较表明,LES与实验数据显示出良好的一致性,定性和定量地捕捉到了基本流动特征。亚格子速度也与实验结果匹配良好,但所有亚格子模型都观察到对内部剪切层的预测略有不足。总体而言,发现斯马戈林斯基模型和WALE模型比动态斯马戈林斯基模型和亚格子湍动能模型更耗散。与实验的频谱比较表明,LES能够以合理的精度捕捉湍流的主要特征,并且存在与开尔文 - 亥姆霍兹不稳定性和螺旋涡脱落相关的弱频谱峰值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97b8/6109950/038f0eb0fbd0/10494_2016_9751_Fig1_HTML.jpg

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