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Modification Research of the Internal Substructure Method for Seismic Wave Input in Deep Underground Structure-Soil Systems

机译:深层地下结构 - 土壤系统地震波输入内部结构方法的改进研究

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A new internal substructure method for seismic wave input in soil-structure systems was recently proposed. This method simplifies the calculation of equivalent input seismic loads and avoids the participation of artificial boundaries in the process of seismic wave input. However, in previous research and applications, the internal substructures are usually intercepted down from the free surface, which forms large substructures and increases the computational effort for data management on the substructure nodes, especially for deep underground structures. In this study, the internal substructure method is modified by intercepting the internal substructures entirely beneath the free surface and adjacently around the underground structures. Then, the equivalent input seismic loads are obtained through the dynamic analysis of the internal substructures and applied to the corresponding positions of the total soil-structure models. Thus, the earthquake energy can be more efficiently input into the region near the underground structures without losing computational accuracy. We provide the detailed implementation procedures of this modified method and validate its applicability and accuracy through the scattered problems of underground cavities in homogeneous and layered half-space sites.
机译:最近提出了一种新的地震波输入的新内部结构方法。该方法简化了等效输入地震载荷的计算,并避免了人工边界在地震波输入过程中的参与。然而,在以前的研究和应用中,内部子结构通常从自由表面拦截,从而形成大的子结构并增加子结构节点上的数据管理的计算工作,特别是对于深层地下结构。在该研究中,通过在自由表面下方拦截内部结构并且围绕地下结构相邻地进行改变内部结构方法。然后,通过内部结构的动态分析获得等效输入地震载荷,并施加到总土结构模型的相应位置。因此,可以更有效地输入地下结构附近的区域而不失去计算精度。我们提供了这种改进方法的详细实施程序,并通过均匀和分层半空间位点中的地下腔的分散问题来验证其适用性和准确性。

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