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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Dynamic response of an embedded flexible foundation of general shape in a transversely isotropic and multilayered half-space
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Dynamic response of an embedded flexible foundation of general shape in a transversely isotropic and multilayered half-space

机译:横向各向同性和多层半空间嵌入式柔性柔性基础的动态响应

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摘要

A new semi-analytical method is developed for solving the dynamic response of an embedded flexible foundation of general shape in a transversely isotropic and multilayered half-space. It is based on the hybrid Green's functions (GFs) and finite-element method (FEM) via the modified subtraction method. The GFs in the multilayered half-space are derived by virtue of the dual variable and position (DVP) method whilst the FEM is utilized to discretize the domain of the embedded foundation. Making use of the modified subtraction method, the GFs and FEM formulations are combined to derive the dynamic impedance matrix of the embedded foundation. After verifying the accuracy and stability of the proposed algorithm, numerical studies are carried out to investigate the effect of the foundation modulus, half-space anisotropy, and layering on the dynamic impedance matrix of the embedded foundation. Results show that these factors could significantly affect the dynamic impedance matrix of the foundation, which could provide reference for practical engineering design.
机译:开发了一种新的半分析方法,用于求解横向各向同性和多层半空间中嵌入式柔性形状的动态响应。它通过修改的减法方法基于混合绿色的功能(GFS)和有限元方法(FEM)。多层半空间中的GFS通过双变量和位置(DVP)方法来导出,同时利用FEM来离散嵌入式基础的领域。利用修改的减法方法,组合GFS和FEM配方以导出嵌入式基础的动态阻抗矩阵。在验证所提出的算法的准确性和稳定性之后,进行数值研究,以研究基础模量,半空间各向异性和分层对嵌入式基础的动态阻抗矩阵的影响。结果表明,这些因素可能会显着影响基础的动态阻抗矩阵,这可以为实际工程设计提供参考。

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