流过方圆柱阵列的大涡流模拟

IF 1.7 3区 工程技术 Q3 ENGINEERING, CIVIL Journal of Hydraulic Research Pub Date : 2023-03-04 DOI:10.1080/00221686.2022.2161957
Hongbao Huang, Jianmin Zhang, J. Meng
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引用次数: 1

摘要

摘要流经一系列方形圆柱体的流动有着广泛的应用。为了研究这些流动,我们对经过由多个较小的方形圆柱体形成的圆形阵列的流动进行了三维大涡模拟,其中由阵列直径定义的雷诺数为1994。我们使用方柱阵列的不同固体体积分数(SVF)进行了模拟()。分析了这些配置对流动特性的影响。当SVF较小时,由于方形圆柱体之间的距离较大,观察到周期性的阻力波动,并且旋涡脱落是在其他圆柱体的冲击下发生的。当SVF较大时,没有观察到阻力随时间的显著波动。方柱之间的最小距离用于测量涡流脱落程度,并反映方柱位置与阻力波动之间的关系。
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Large eddy simulation of flows past an array of square cylinders
ABSTRACT The flows past an array of square cylinders occur in wide range of applications. To study these flows, we conducted three-dimensional large-eddy simulations for flows past an array of the circular shape formed by multiple smaller square cylinders, where the Reynolds number defined by the array diameter was 1994. We conducted simulations with different solid volume fractions (SVFs) of the square cylinder array ( ). The effects of these configurations on flow characteristics were analyzed. Periodic drag fluctuation was observed when the SVF was small since the distance between the square cylinder was large, and the vortex shedding occurred with impact from other cylinders. No significant fluctuation in the drag was observed over time when the SVF was large. The minimum distance between the square cylinders was used to measure the degree of vortex shedding and reflect the relationship between the square cylinder position and the drag fluctuation.
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来源期刊
Journal of Hydraulic Research
Journal of Hydraulic Research 工程技术-工程:土木
CiteScore
4.90
自引率
4.30%
发文量
55
审稿时长
6.6 months
期刊介绍: The Journal of Hydraulic Research (JHR) is the flagship journal of the International Association for Hydro-Environment Engineering and Research (IAHR). It publishes research papers in theoretical, experimental and computational hydraulics and fluid mechanics, particularly relating to rivers, lakes, estuaries, coasts, constructed waterways, and some internal flows such as pipe flows. To reflect current tendencies in water research, outcomes of interdisciplinary hydro-environment studies with a strong fluid mechanical component are especially invited. Although the preference is given to the fundamental issues, the papers focusing on important unconventional or emerging applications of broad interest are also welcome.
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