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A simple and accurate discontinuous Galerkin scheme for modeling scalar-wave propagation in media with curved interfaces

机译:一个简单而准确的不连续Galerkin方案,用于建模具有弯曲界面的标量波传播

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摘要

Conventional high-order discontinuous Galerkin (DG) schemes suffer from interface errors caused by the misalignment between straight-sided elements and curved material interfaces. We have developed a novel DG scheme to reduce those errors. Our new scheme uses the correct normal vectors to the curved interfaces, whereas the conventional scheme uses the normal vectors to the element edge. We modify the numerical fluxes to account for the curved interface. Our numerical modeling examples demonstrate that our new discontinuous Galerkin scheme gives errors with much smaller magnitudes compared with the conventional scheme, although both schemes have second-order convergence. Moreover, our method significantly suppresses the spurious diffractions seen in the results obtained using the conventional scheme. The computational cost of our scheme is similar to that of the conventional scheme. The new DG scheme we developed is, thus, particularly useful for large-scale scalar-wave modeling involving complex subsurface structures.
机译:常规的高阶不连续Galerkin(DG)方案会遭受由于直边元素与弯曲材料界面之间未对齐而导致的界面错误的困扰。我们开发了一种新颖的DG方案来减少这些错误。我们的新方案使用正确的法向矢量到弯曲的界面,而常规方案使用法向矢量到元素边缘。我们修改了数值通量以说明弯曲的界面。我们的数值建模示例表明,尽管两种方案都具有二阶收敛性,但与常规方案相比,我们的新的不连续Galerkin方案所产生的误差幅度要小得多。而且,我们的方法显着抑制了使用传统方案获得的结果中看到的杂散衍射。我们的方案的计算成本与常规方案的相似。因此,我们开发的新DG方案对于涉及复杂地下结构的大规模标量波建模特别有用。

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