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Numerical simulation of flows around two circular cylinders by mesh-free least square-based finite difference methods

机译:基于无网格最小二乘的有限差分法数值模拟两个圆柱体周围的流动

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In this paper, the mesh-free least square-based finite difference (MLSFD) method is applied to numerically study the flow field around two circular cylinders arranged in side-by-side and tandem configurations. For each configuration, various geometrical arrangements are considered, in order to reveal the different flow regimes characterized by the gap between the two cylinders. In this work, the flow simulations are carried out in the low Reynolds number range, that is, Re=100 and 200. Instantaneous vorticity contours and streamlines around the two cylinders are used as the visualization aids. Some flow parameters such as Strouhal number, drag and lift coefficients calculated from the solution are provided and quantitatively compared with those provided by other researchers.
机译:本文采用无网格最小二乘有限差分法(MLSFD)数值研究两个并排和串联配置的圆柱体周围的流场。对于每种配置,考虑各种几何布置,以揭示以两个气缸之间的间隙为特征的不同流动方式。在这项工作中,在低雷诺数范围内(即Re = 100和200)进行流动模拟。两个圆柱体周围的瞬时涡度轮廓和流线用作可视化辅助工具。提供了一些流量参数,例如从溶液中计算出的斯特劳哈尔数,阻力和升力系数,并与其他研究人员提供的参数进行了定量比较。

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