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An application of the ES-FEM in solid domain for dynamic analysis of 2D fluid-solid interaction problems

机译:ES-FEM在固体域中二维流体-固体相互作用问题动态分析中的应用

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摘要

An edge-based smoothed finite element method (ES-FEM-T3) using triangular elements was recently proposed to improve the accuracy and convergence rate of the existing standard finite element method (FEM) for the solid mechanics analyses. In this paper, the ES-FEM-T3 is further extended to the dynamic analysis of 2D fluid-solid interaction problems based on the pressure-displacement formulation. In the present coupled method, both solid and fluid domain is discretized by triangular elements. In the fluid domain, the standard FEM is used, while in the solid domain, we use the ES-FEM-T3 in which the gradient smoothing technique based on the smoothing domains associated with the edges of triangles is used to smooth the gradient of displacement. This gradient smoothing technique can provide proper softening effect, and thus improve significantly the solution of coupled system. Some numerical examples have been presented to illustrate the effectiveness of the proposed coupled method compared with some existing methods for 2D fluid-solid interaction problems.
机译:最近提出了一种使用三角形元素的基于边缘的平滑有限元方法(ES-FEM-T3),以提高现有的用于实体力学分析的标准有限元方法(FEM)的准确性和收敛速度。本文将ES-FEM-T3进一步扩展到基于压力-位移公式的二维流固耦合问题的动力学分析。在本发明的耦合方法中,固体和流体域都由三角形元素离散化。在流体域中,使用标准FEM,而在实体域中,我们使用ES-FEM-T3,其中基于与三角形边缘相关联的平滑域的梯度平滑技术用于平滑位移的梯度。这种梯度平滑技术可以提供适当的软化效果,从而显着改善耦合系统的解。提出了一些数值示例,以说明与二维流体-固体相互作用问题的现有方法相比,所提出的耦合方法的有效性。

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