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首页> 外文期刊>Mathematical Methods in the Applied Sciences >Adaptive strategies to improve the application of the generalized finite differences method in 2D and 3D
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Adaptive strategies to improve the application of the generalized finite differences method in 2D and 3D

机译:适应性策略,以改善推广有限差分法在2D和3D中的应用

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摘要

The generalized finite differences method allows the use of irregular clouds of nodes. The optimal values of the key parameters of the method vary depending on how the nodes in the cloud are distributed, and this can be complicated especially in 3D. Therefore, we establish 2 criteria to allow the automation of the selection process of the key parameters. These criteria depend on 2 discrete functions, one of them penalizes distances and the other one penalizes imbalances. In addition, we show how to generate irregular clouds of nodes more efficient than finer regular clouds of nodes. We propose an improved and more versatile h-adaptivemethod that allows adding, moving, and removing nodes. To decide which nodes to act on, we use an indicator of the error a posteriori. This h-adaptive method gives results more accurate than those ones presented for the generalized finite differences method so far and, in addition, with fewer nodes. In addition, thismethod can be used in time-dependant problems to increase the temporal step or to avoid instabilities. As an example, we apply it in problems of seismic waves propagation.
机译:广义有限差异方法允许使用不规则的节点云。该方法的关键参数的最佳值因如何分布云中的节点而变化而变化,并且这可以特别是在3D中复杂化。因此,我们建立2个标准,以允许自动化关键参数的选择过程。这些标准取决于2个离散函数,其中一个是惩罚距离,另一个惩罚失衡。此外,我们展示了如何生成不规则的节点云,而不是更高的节点常规节点。我们提出了一种改进的和更通用的H-AdaptiveMethod,允许添加,移动和删除节点。要决定哪些节点采取行动,我们使用后验的错误指示。该H-Adaptive方法提供了比到目前为止所呈现的广义有限差异方法的结果更准确,另外,节点较少。此外,Thismethod可以用于时间相关的问题,以增加时间步骤或避免稳定性。作为一个例子,我们将其应用于地震波传播的问题。

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