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A spectral boundary element algorithm for interfacial dynamics in two-dimensional Stokes flow based on Hermitian interfacial smoothing

机译:基于厄米界面平滑的二维斯托克斯流界面动力学谱边界元算法

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摘要

A two-dimensional spectral boundary element algorithm for interfacial dynamics in Stokes flow is presented. The main attraction of this approach is that it exploits all the benefits of the spectral methods with the versatility of the finite element method. In addition, it is not affected by the disadvantage of the spectral methods used in volume discretization to create denser systems. To achieve continuity of the interfacial geometry and its derivatives at the edges of the spectral elements during the droplet deformation, a suitable interfacial smoothing is developed based on Hermitian-like interpolations. An adaptive mesh reconstructing procedure based on relevant lengths of the spectral elements is also described.
机译:提出了斯托克斯流中界面动力学的二维谱边界元算法。这种方法的主要吸引力在于,它利用频谱方法的所有优点以及有限元方法的多功能性。另外,它不受用于体积离散化以创建更密集系统的光谱方法的缺点的影响。为了在液滴变形过程中在光谱元素的边缘实现界面几何及其导数的连续性,基于类Hermitian插值开发了合适​​的界面平滑。还描述了基于频谱元素的相关长度的自适应网格重建过程。

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