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首页> 外文期刊>International journal of geomechanics >Dynamic Response of Arbitrarily Shaped Foundation Embedded in Multilayered Partially Saturated Half-Space
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Dynamic Response of Arbitrarily Shaped Foundation Embedded in Multilayered Partially Saturated Half-Space

机译:埋入多层半饱和半空间中任意形状基础的动力响应

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摘要

A novel precise flexibility matrix algorithm is proposed to analyze the dynamic response of a rigid foundation embedded in a multilayered partially saturated half-space (MLPSH) that consists of several dry soil layers and saturated soil layers overlying on a saturated half-space. The wave equations of dry soil layers and saturated soil layers governed by Biot's theory are transformed into a dual vector form. The extended precise integration algorithm is applied to combine microlayers between two interfaces of any two typical layers. Subsequently, the global flexible matrix is assembled based on relative positions of source and receiver points. Finally, the dynamic impedance of the embedded foundation is achieved by using the flexible volume method. The accuracy and effectiveness of the proposed method are validated by comparing them with the results of extended studies. Extensive numerical results are presented to investigate the influence of the foundation shape on the dynamic impedance of the foundation embedded in an MLPSH.
机译:提出了一种新颖的精确柔性矩阵算法,用于分析嵌入多层半饱和半空间(MLPSH)中的刚性基础的动力响应,该多层半饱和半空间由几个干土层和一个饱和半空间上的饱和土层组成。由毕奥特理论控制的干土层和饱和土层的波动方程转化为对偶矢量形式。扩展的精确集成算法适用于组合任意两个典型层的两个接口之间的微层。随后,基于源点和接收器点的相对位置组装全局柔性矩阵。最后,采用柔性体积法获得了嵌入式基础的动态阻抗。通过与扩展研究的结果进行比较,验证了所提方法的准确性和有效性。给出了广泛的数值结果,以研究基础形状对MLPSH中嵌入的基础的动态阻抗的影响。

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