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Evaluation of seismic response of inelastic structures considering soil‑structure interaction

机译:考虑土壤结构相互作用的非弹性结构地震响应的评价

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摘要

Structural deformations and soil displacements arising out of ground shaking are intertwined. This interplay is termed as seismic soil-structure interaction (SSI). Over last few decades, the conventionally perceived beneficial nature of SSI has been challenged with evidences of damaged sites from various earthquakes. This paper evaluates effects of SSI on seismic response of hardening single degree of freedom systems located in diverse geologies. The assessment is performed using substructure approach in terms of inelastic force reduction factor such that structure attains certain ductility levels. It is observed that soil-structure systems can afford a lesser reduction in design seismic forces compared to fixed-base structures. Components of total displacement arising out of structural deformation, footing translation and footing rotation are also evaluated. With increase in SSI effects, contribution of structural deformation is found to decline sharply. Footing rotation is observed to be very significant in structure-soil systems with larger SSI effects. The soil-structure system is modelled using a discrete physical model which enables inelastic response to be obtained in time domain while considering frequency dependence of impedance functions.
机译:地面摇动产生的结构变形和土壤位移被交织在一起。这种相互作用被称为地震土结构相互作用(SSI)。在过去的几十年里,SSI的常规察觉中的有益性是挑战各种地震的受损地点的证据。本文评估了SSI对位于不同地质的硬化单一自由度系统的地震反应的影响。在非弹性力减少因子方面使用次结构方法进行评估,使得结构达到某些延展性水平。观察到,与固定基础结构相比,土壤结构系统能够减少设计地震力的较小。还评估了结构变形,基于转换和基于旋转的总位移的组分。随着SSI效应的增加,发现结构变形的贡献急剧下降。观察到旋转在结构 - 土壤系统中具有较大的SSI效应。使用离散物理模型进行建模土壤结构系统,该模型能够在考虑阻抗函数的频率依赖性的同时在时域中获得不弹性响应。

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