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Computation of fluid-solid and fluid-fluid interfaces with the CIP method based on adaptive Soroban grids-An overview

机译:基于自适应Soroban网格的CIP方法计算流固界面和流固界面

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We provide an overview of how fluid-solid and fluid-fluid interfaces can be computed successfully with the constrained interpolation profile/cubic interpolated pseudo-particle (CIP) method (J. Comput. Phys. 1985; 61:261-268; Comput. Phys. Commun. 1991; 66:219-232; Comput. Phys. Commun. 1991; 66: 233-242; J. Comput. Phys. 2001; 169:556-593) based on adaptive Soroban grids (J. Comput. Phys. 2004; 194:57-77). In this approach, the CIP combined unified procedure (CCUP) technique (J. Phys. Soc. Jpn 1991; 60:2105-2108), which is based on the CIP method, is combined with the adaptive Soroban grid technique. One of the superior features of the approach is that even though the grid system is unstructured, it still has a simple data structure that renders remarkable computational efficiency. Another superior feature is that despite the unstructured and collocated nature of the grid, high-order accuracy and computational robustness are maintained. In addition, because the Soroban grid technique does not have any elements or cells connecting the grid points, the approach does not involve mesh distortion limitations. While the details of the approach and several numerical examples were reported in (Comput. Mech. 2006; published online), our objective in this paper is to provide an easy-to-follow description of the key aspects of the approach.
机译:我们概述了如何使用约束插值轮廓/三次插值伪粒子(CIP)方法成功计算流体-固体和流体-流体界面(J. Comput。Phys.1985; 61:261-268; Comput。基于自适应Soroban网格(J. Comput。1991; 66:219-232; Comput。Phys。Commun。1991; 66:233-242; J. Comput。Phys。2001; 169:556-593)。 Phys.2004; 194:57-77)。在这种方法中,将基于CIP方法的CIP联合统一过程(CCUP)技术(J. Phys。Soc。Jpn 1991; 60:2105-2108)与自适应Soroban网格技术相结合。该方法的优点之一是,即使网格系统是非结构化的,它仍然具有简单的数据结构,从而显着提高了计算效率。另一个优点是,尽管网格具有非结构化和并置的性质,但仍保持了高阶精度和计算鲁棒性。另外,由于Soroban网格技术没有连接网格点的任何元素或单元,因此该方法不涉及网格变形限制。尽管该方法的详细信息和几​​个数值示例已在(Comput。Mech。2006;在线发布)中进行了报道,但本文的目的是为该方法的关键方面提供易于理解的描述。

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