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An overlapping domain technique coupling spectral and finite elements for fluid-structure interaction

机译:重叠域技术耦合光谱和有限元进行流固耦合

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In this study the coupled overlapping domain (COD) technique, previously developed within our group, is extended to make it suitable for fluid-structure interaction (FSI) computations with flexible elastic solids. A standard FSI benchmark from literature is implemented to verify the computations of the COD technique. However, in this study the incompressible neo-Hookean material model is applied instead of the compressible St. Venant-Kirchhoff model. The results of the COD technique are compared to the solutions obtained with a full finite element method. The performed computations demonstrate the COD technique accurately computes the solids displacements and the forces on the elastic solid. The results of the COD technique also show a good resemblance with the results obtained by other researchers, even with the use of a different material model. Additionally, the COD technique is applied to compute a rotating elastic beam in a square box filled with fluid. The computations show that the COD technique is capable of computing large deformations and translations, which makes this technique suitable for a wide range of applications without the need for computationally expensive remeshing. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,先前在我们小组内开发的耦合重叠域(COD)技术得到了扩展,使其适用于具有柔性弹性固体的流体-结构相互作用(FSI)计算。实施了来自文献的标准FSI基准,以验证COD技术的计算。但是,在这项研究中,采用不可压缩的新霍克材料模型代替了可压缩的St. Venant-Kirchhoff模型。将COD技术的结果与通过完全有限元法获得的解进行比较。进行的计算表明,COD技术可以准确地计算固体位移和弹性固体上的力。即使使用不同的材料模型,COD技术的结果也与其他研究人员获得的结果非常相似。另外,COD技术应用于在充满流体的方盒中计算旋转的弹性梁。计算表明,COD技术能够计算大的变形和平移,这使该技术适用于广泛的应用,而无需计算昂贵的重新网格化。 (C)2015 Elsevier Ltd.保留所有权利。

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