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Unified edge-oriented stabilization of nonconforming FEM for incompressible flow problems: Numerical investigations

机译:不可压缩流动问题非一致性有限元的统一边缘定向稳定化:数值研究

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This paper deals with various aspects of edge-oriented stabilization techniques for non-conforming finite element methods for the numerical solution of incompressible flow problems. We discuss two separate classes of problems which require appropriate stabilization techniques: First, the lack of coercivity for nonconforming low order approximations for treating problems with the symmetric deformation tensor instead of the gradient formulation in the momentum equation ('Korn's inequality') which particularly leads to convergence problems of the iterative solvers for small Reynolds (Re) numbers. Second, numerical instabilities for high Re numbers or whenever convective operators are dominant such that the standard Galerkin formulation fails and leads to spurious oscillations. We show that the right choice of edge-oriented stabilization is able to provide simultaneously excellent results regarding robustness and accuracy for both seemingly different cases of problems, and we discuss the sensitivity of the involved parameters w.r.t. variations of the Re number on unstructured meshes. Moreover, we explain how efficient multigrid solvers can be constructed to circumvent the problems with the arising 'non-standard' FEM data structures, and we provide several examples for the numerical efficiency for realistic flow configurations with benchmarking character.
机译:本文探讨了非相容有限元方法不可压缩流动问题数值解的面向边缘稳定技术的各个方面。我们讨论了需要适当的稳定技术的两类问题:首先,缺乏用非对称低阶近似来矫正的矫顽力,无法用对称形变张量代替动量方程中的梯度公式(“康恩不等式”)来解决问题解决小雷诺数(Re)的迭代求解器的收敛问题。其次,对于高Re数或对流算符占主导地位的数值不稳定性,使得标准的Galerkin公式失效并导致虚假振荡。我们证明正确选择边缘导向的稳定性能够同时针对两种看似不同的问题提供鲁棒性和准确性方面的出色结果,并且我们讨论了所涉及参数w.r.t.的敏感性。非结构网格上Re数的变化。此外,我们解释了如何构建有效的多网格求解器来规避出现的“非标准” FEM数据结构的问题,并提供了一些具有基准特性的实际流量配置的数值效率示例。

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