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Improvement of accuracy of the spectral element method for elastic wave computation using modified numerical integration operators

机译:利用改进的数值积分算子提高弹性波计算谱元法的精度

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摘要

We introduce new numerical integration operators which compose the mass and stiffness matrices of a modified spectral element method for simulation of elastic wave propagation. While these operators use the same quadrature nodes as does the original spectral element method, they are designed in order that their lower-order contributions to the numerical dispersion error cancel each other. As a result, the modified spectral element method yields two extra-orders of accuracy, and is comparable to the original method of one order higher. The theoretical results are confirmed by numerical dispersion analysis and examples of computation of waveforms using our operators. Replacing the ordinary operators by those proposed in this study could be a non-expensive solution to improve the accuracy. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们引入了新的数值积分算子,这些算子构成了改进的谱元方法的质量和刚度矩阵,用于模拟弹性波传播。尽管这些算子使用与原始频谱元素方法相同的正交节点,但设计它们的目的是使它们对数值色散误差的低阶贡献彼此抵消。结果,改进的光谱元素方法产生了两个额外的精度,并且可以与原始方法相提并论。理论结果通过数值色散分析和使用我们的算子的波形计算示例得到证实。用本研究中提出的方法代替普通运算符可能是提高准确性的非昂贵解决方案。 (C)2018 Elsevier B.V.保留所有权利。

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