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首页> 外文期刊>International journal of structural stability and dynamics >Dynamic Response of 3D Surface/Embedded Rigid Foundations of Arbitrary Shapes on Multi-Layered Soils in Time Domain
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Dynamic Response of 3D Surface/Embedded Rigid Foundations of Arbitrary Shapes on Multi-Layered Soils in Time Domain

机译:三维表面/嵌入式刚性基础的动态响应在时域中多层土壤上的任意形状

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摘要

Significant differences between the predicted and measured dynamic response of 3D rigid foundations on multi-layered soils in the time domain were identified due to the existence of uncertainties, which makes the issue a complicated one. In this study, a numerical method was developed to determine the dynamic responses of 3D rigid surfaces and embedded foundations of arbitrary shapes that are bonded to a multi-layered soil in the time domain. First, the dynamic stiffness matrices of the rigid foundations in the frequency domain are calculated via integral domain transformation. Secondly, a dynamic stiffness equation for rigid foundations in the time domain is established via the mixed variables formulation, which is based on the discrete dynamic stiffness matrices in the frequency domain. The proposed method can be applied to the treatment of systems with multiple degrees of freedom without losing the true information that concerns the coupling characteristics. Numerical examples are presented to demonstrate the accuracy of the proposed method for predicting the horizontal, vertical, rocking, and torsional vibrations. Further, a parametric study was carried out to provide insight into the dynamic behavior of the soil-foundation interaction (SFI) while considering soil nonhomogeneity. The results indicate that the elastic modulus of the soil has a significant impact on the dynamic responses of the rigid foundation. Finally, a numerical example of a rigid foundation resting on a six-layered, semi-infinite soil demonstrates that the proposed method can be used to deal with multi-layered media in the time domain in a relatively easy way.
机译:由于存在不确定性的存在,确定了在时域中的多层土壤上的3D刚性基础的预测和测量动态响应之间的显着差异,这使得问题成为一个复杂的问题。在该研究中,开发了一种数值方法,以确定3D刚性表面的动态响应,以及在时域中的多层土壤上结合的任意形状的嵌入式。首先,通过整体域变换计算频域中的刚性基础的动态刚度矩阵。其次,通过混合变量配方建立时域中的刚性基础的动态刚度方程,其基于频域的离散动态刚度矩阵。该提出的方法可以应用于具有多程度自由度的系统的处理,而无需丢失涉及耦合特性的真实信息。提出了数值示例以证明所提出的方法预测水平,垂直,摇摆和扭转振动的准确性。此外,进行了参数研究,以便在考虑土壤非均匀性的同时提供对土基相互作用(SFI)的动态行为的洞察力。结果表明,土壤的弹性模量对刚性基础的动态反应产生了重大影响。最后,搁置在六层半无限土壤上依赖于刚性基坑的数值例证,表明该方法可用于以相对简单的方式处理时域中的多层介质。

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