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A pressure-robust virtual element method for the Stokes problem

机译:一种用于斯托克斯问题的压力鲁棒虚拟元素方法

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摘要

In this paper, we introduce a pressure-robust virtual element method for the Stokes problem on convex polygonal meshes. The method is based on the lowest order virtual element, in which the degrees of freedom for the velocity are simply given by the evaluations of velocity at the mesh vertices and the average values of normal velocity across the mesh edges, and the pressure is approximated by piecewise constants. In the standard virtual element scheme, an average of nodal values of test function is used in the approximation of right hand side to obtain the computability and achieve optimal approximation. However, such standard scheme involves a pressure contribution in the velocity error. To achieve the pressure-independent velocity approximation, we define an H(div)-conforming velocity reconstruction operator for the velocity test function and propose the modified scheme by employing it in the approximation of right-hand-side source term assembling. Compared with the standard scheme, the stiffness matrix keeps unchanged and only the approximation of the right hand side changes. The error estimates for the velocity and pressure have been proved, which imply that the velocity error is independent of pressure. Numerical experiments are shown to validate the theoretical conclusions. (C) 2021 Elsevier B.V. All rights reserved.
机译:在本文中,我们介绍了一种凸面多边形网格上的斯托克斯问题的压力稳定的虚拟元素方法。该方法基于最低订单虚拟元素,其中速度的自由度仅通过网眼顶点的速度评估和网格边缘的正常速度的平均值给出,并且压力近似分段常数。在标准虚拟元素方案中,在右手侧的近似下使用测试函数的节点值,以获得可计算性并实现最佳近似。然而,这种标准方案涉及速度误差的压力贡献。为了实现压力无关的速度近似,我们定义了用于速度测试功能的H(div) - 旋转速度重建操作员,并通过在右手侧源期术语组装的近似值中提出修改的方案。与标准方案相比,刚度矩阵保持不变,并且仅右侧变化的近似。已经证明了速度和压力的误差估计,这意味着速度误差与压力无关。显示数值实验证明了理论结论。 (c)2021 elestvier b.v.保留所有权利。

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