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Accurate fluid-structure interaction computations using elements without mid-side nodes

机译:使用没有中间节点的单元进行精确的流固耦合计算

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摘要

The paper proposes a new analysis method for fluid-structure problems, which has nodal consistency at the fluid-structure interface and its calculation efficiency and accuracy are high. The incompressible viscous fluid analysis method using the P1-P1 element based on SUPG/PSPG developed by Tezduyar et al. is used for fluid analysis, while the high-accuracy analysis method based on EFMM developed by the authors is adopted for structure analysis. As the common feature of these methods, it is possible to analyze a fluid or a structure rather accurately by using the first-order triangular or tetrahedral elements. In addition, variables are exchanged exactly at the common nodes on the fluid-structure boundary without deteriorating accuracy and calculation efficiency due to the interpolation of variables between nodes. The present method is applied to a fluid-structure interaction problem by simulating the deformation of a red blood cell.
机译:提出了一种新的流固耦合问题分析方法,该方法在流固界面处具有节点一致性,计算效率和准确性较高。 Tezduyar等人基于SUPG / PSPG开发的使用P1-P1元素的不可压缩粘性流体分析方法。结构分析采用流体力学分析,而作者采用基于EFMM的高精度分析方法。作为这些方法的共同特征,可以通过使用一阶三角形或四面体元素相当准确地分析流体或结构。另外,变量在流体结构边界上的公共节点处精确交换,而不会由于节点之间变量的插值而降低准确性和计算效率。通过模拟红细胞的变形,将本方法应用于流体-结构相互作用问题。

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