A C0 Nonconforming Virtual Element Method for the Kirchhoff Plate Obstacle Problem

Axioms Pub Date : 2024-05-13 DOI:10.3390/axioms13050322
Bangmin Wu, Jiali Qiu
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Abstract

This paper investigates a novel C0 nonconforming virtual element method (VEM) for solving the Kirchhoff plate obstacle problem, which is described by a fourth-order variational inequality (VI) of the first kind. In our study, we distinguish our approach by introducing new internal degrees of freedom to the traditional lowest-order C0 nonconforming VEM, which originally lacked such degrees. This addition not only facilitates error estimation but also enhances its intuitiveness. Importantly, our novel C0 nonconforming VEM naturally satisfies the constraints of the obstacle problem. We then establish an a priori error estimate for our novel C0 nonconforming VEM, with the result indicating that the lowest order of our method achieves optimal convergence. Finally, we present a numerical example to validate the theoretical result.
针对基尔霍夫板障碍问题的 C0 不符合虚拟元素法
本文研究了一种新颖的 C0 非符合虚拟元素法(VEM),用于求解基尔霍夫板障碍问题,该问题由四阶第一类变分不等式(VI)描述。在我们的研究中,我们在传统的最低阶 C0 非符合虚拟元素法中引入了新的内部自由度,从而使我们的方法与众不同。这一添加不仅有助于误差估计,还增强了其直观性。重要的是,我们的新型 C0 非顺应 VEM 自然满足障碍问题的约束条件。然后,我们建立了新颖的 C0 非顺应 VEM 的先验误差估计,结果表明我们方法的最低阶数实现了最佳收敛。最后,我们给出了一个数值示例来验证理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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