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Fluid-structure interaction analysis on a flexible plate normal to a free stream at low Reynolds numbers

机译:低雷诺数下垂直于自由流的柔性板上的流固耦合分析

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This paper presents a computational analysis of the fluid-structure interaction, especially for flexible structures. A flexible plate is placed normal to a free stream and the flow around it is simulated to investigate the effects of flexibility on the flow. The lattice Boltzmann method with an immersed boundary technique using a direct forcing scheme is used to simulate the fluid, and a finite element method with Euler beam elements is used to model the flexible plate. The direct forcing scheme of the lattice Boltzmann method is improved for the immersed boundary scheme by introducing the participation ratio of fluid lattices among the interpolated lattices. We compare the results of our proposed scheme with the known results of conventional schemes. Our results show that the flexibility of the plate significantly influences the reduction of the force coefficients induced by the flow. From the unsteady flow around the flexible plate, we find that the St of the flexible plate up to Re < 80 increase regardless of the plate flexibility, but the St in the range of Re > 120 is dependent on the plate flexibility. In the range of Re > 120, the St of a very flexible plate increases with increasing Re, while the St of a rigid plate decrease with increasing Re.
机译:本文介绍了流体-结构相互作用的计算分析,特别是对于柔性结构。将柔性板垂直于自由流放置,并模拟其周围的流动以研究柔性对流动的影响。采用带边界法的格氏玻尔兹曼方法,采用直接强迫方案来模拟流体,并使用带有欧拉梁单元的有限元方法来模拟柔性板。通过引入内插晶格中流体晶格的参与率,对沉浸边界方案改进了晶格玻尔兹曼法的直接强迫方案。我们将我们提出的方案的结果与传统方案的已知结果进行比较。我们的结果表明,板的柔韧性显着影响了由流动引起的力系数的减小。从柔性板周围的不稳定流动中,我们发现,直到Re <80的柔性板的St都会增加,而与板的柔性无关,但是Re> 120范围内的St取决于板的柔性。在Re> 120的范围内,非常柔软的板的St随着Re的增加而增加,而刚性板的St随着Re的增加而减小。

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