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A new technique to synthesize seismography with more flexibility: The legendre spectral element method with overlapped elements

机译:一种更灵活地合成地震学的新技术:具有重叠元素的Legendre谱元素方法

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摘要

The classic spectral element method (SEM) is important for seismographical simulation. However, waves subjected to irregular interfaces or surfaces are difficult to simulate accurately using SEM with quadrangular/hexahedral elements. In this paper we propose a new technique to solve this problem. The technique reconstructs some new elements near the surface/interface to substitute for any element crossing the interface, thus making the boundary of some new elements an accurate fit to the interface/surface. Numerical comparisons with the classic SEM show that the technique has improved flexibility when dealing with interface problems without losing accuracy and efficiency. The technique also enables us to vary the size and shape of an element smoothly as the velocity in a medium varies so that this removes the inaccuracy resulting from the high local variation of the grid in the classic SEM. Therefore, the technique widens the application of the classic SEM in seismographic simulation.
机译:经典的光谱元素法(SEM)对于地震模拟非常重要。但是,使用带有四边形/六面体元素的SEM很难精确地模拟经受不规则界面或表面的波。在本文中,我们提出了一种解决该问题的新技术。该技术在曲面/界面附近重建了一些新元素,以替代穿过界面的任何元素,从而使某些新元素的边界与界面/表面精确匹配。与经典SEM的数值比较表明,该技术在处理界面问题时具有更高的灵活性,而不会损失准确性和效率。该技术还使我们能够随着介质中速度的变化而平滑地改变元素的大小和形状,从而消除了传统SEM中网格的局部高度变化所导致的不准确性。因此,该技术拓宽了经典SEM在地震模拟中的应用范围。

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