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Seismic analysis of coupled soil-pile-structure systems leading to the definition of a pseudo-natural SSI frequency

机译:耦合土-桩-结构系统的地震分析,导致拟自然SSI频率的定义

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The elastodynamic response of coupled soil-pile-structure systems to seismic loading is studied using rigorous three-dimentional (3D) finite element models. The system under investigation comprises of a single pile supporting a single degree of freedom (SDOF) structure founded on a homogeneous viscoelastic soil layer over rigid rock. Parametric analyses are carried out in the frequency domain, focusing on the dynamic characteristics of the structure, as affected by typical foundation properties such as pile slenderness and soil-pile relative stiffness. Numerical results demonstrate the strong influence on effective natural SSI period of the foundation properties and the crucial importance of cross swaying-rocking stiffness of the pile. Furthermore, the notion of a pseudo-natural SSI frequency is introduced, as the frequency where pile-head motion is minimized with respect to free field surface motion. Dynamic pile bending is examined and the relative contributions of kinematic and inertial interaction, as affected by the frequency content of input motion, are elucidated.
机译:使用严格的三维(3D)有限元模型研究了土-桩-结构耦合系统对地震荷载的弹性动力响应。所研究的系统包括一个支撑单自由度(SDOF)结构的单桩,该单桩建立在刚性岩石上均匀的粘弹性土层上。在频域中进行参数分析,关注结构的动力特性,受典型基础特性(如桩的细长性和土桩的相对刚度)的影响。数值结果表明,基础特性对有效的自然SSI周期有很大的影响,并且桩的横向摆动摇摆刚度至关重要。此外,引入了伪自然SSI频率的概念,作为相对于自由场表面运动最小化桩头运动的频率。检查了动态桩的弯曲,并阐明了运动和惯性相互作用的相对影响,该相互作用受输入运动的频率含量影响。

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