By improving the trace finite element method, we developed another higher-order trace finite element method by integrating on the surface with exact geometry description. This method restricts the finite element space on the volume mesh to the surface accurately, and approximates Laplace-Beltrami operator on the surface by calculating the high-order numerical integration on the exact surface directly. We employ this method to calculate the Laplace-Beltrami equation and the Laplace-Beltrami eigenvalue problem. Numerical error analysis shows that this method has an optimal convergence order in both problems. Numerical experiments verify the correctness of the theoretical analysis. The algorithm is more accurate and easier to implement than the existing high-order trace finite element method.
翻译:通过改进微量元素法,我们开发了另一种较高级微量元素法,在表面与精确的几何描述相结合。这种方法将体积网格的有限元素空间限制在准确的表面,并通过直接计算精确表面的高序数字集成法,将接近Laplace-Beltrami在表面的有限元素空间限制在表面。我们使用这种方法计算Laplace-Beltrami方程和Laplace-Beltrami的精度值问题。数字错误分析表明,这两种问题都有最佳汇合顺序。数字实验核查理论分析的正确性。算法比现有的高序痕量元素法更准确、更容易执行。