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A novel green element method by mixing the idea of the finite difference method

机译:混合了有限差分法思想的新型绿色元素法

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This paper proposes a novel green element method (GEM) by mixing the idea of finite difference method (FDM). In the novel method, We come to the original formula when boundary integral equation is applied to an element, and use difference quotient of the central nodal value on two sides of the shared edge of adjoining elements to approximate the boundary integration integral(Gamma)G del p.nds. This treatment is similar to FDM, and the integral operator relevant to element size controls the estimated error. The novel GEM makes the numerical solution correspond to the actual physical meaning, and the coefficient matrix of the global matrix is a banded sparse matrix with larger bandwidth than previous GEMs. Meanwhile, the instability of the original GEM is illuminated. We have proven it by theoretical error analysis and five numerical examples that, the accuracy of the novel GEM is three-order higher than the original GEM, and the novel GEM has a good convergence and stability, which is the property that the original GEM does not have.
机译:通过混合有限差分法(FDM)的思想,提出了一种新颖的绿色元素法(GEM)。在这种新方法中,当将边界积分方程应用于元素时,我们采用原始公式,并使用相邻元素共享边的两侧上的中心节点值的商商来近似边界积分G(G)德尔山这种处理类似于FDM,与元素大小相关的积分运算符控制估计的误差。新颖的GEM使数值解与实际物理意义相对应,并且全局矩阵的系数矩阵是带状的稀疏矩阵,其带宽比以前的GEM大。同时,照亮了原始GEM的不稳定性。通过理论误差分析和五个数值算例证明,新型GEM的精度比原始GEM高三阶,并且新型GEM具有良好的收敛性和稳定性,这是原始GEM所具有的特性。没有。

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