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The internal substructure method for seismic wave input in 3D dynamic soil- structure interaction analysis

机译:3D动力土-结构相互作用分析中地震波输入的内部子结构方法

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An internal substructure method for seismic wave input in 3D soil-structure systems is proposed in this paper. In this method, we convert seismic waves into equivalent input seismic loads through a dynamic analysis of the internal substructure intercepted from the original soil-structure model. Compared to the wave method and the boundary substructure method for seismic wave input, this newly proposed method has a smaller substructure size and requires less data management. Moreover, it avoids the participation of the artificial boundaries in the process of inputting seismic waves and thus overcomes the limitations of traditional methods on artificial boundaries. We provide a detailed description of the steps required to implement the proposed method. Wave propagation in homogeneous and layered half-space sites and the scattered wave problem of a hemispherical cavity under incident plane waves are adopted as numerical examples to validate this new method.
机译:提出了一种在3D土-结构系统中输入地震波的内部子结构方法。在这种方法中,我们通过动态分析从原始土壤结构模型截取的内部子结构,将地震波转换为等效的输入地震荷载。与地震波输入的波动法和边界子结构法相比,这种新提出的方法具有较小的子结构尺寸,并且需要较少的数据管理。此外,它避免了人工边界在地震波输入过程中的参与,从而克服了传统方法在人工边界上的局限性。我们提供了实现建议方法所需步骤的详细说明。数值算例验证了该方法在均匀和分层的半空间位置的波传播以及入射平面波作用下半球腔的散射波问题。

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