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Characterization of Ductility and Inelastic Displacement Demand in Base-Isolated Structures Considering Cyclic Degradation

机译:考虑循环退化的基础隔震结构的延性和非弹性位移需求特征

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摘要

New designed or retrofitted structures with the use of isolation system may exhibit nonlinear deformations during strong ground motions. Inelastic displacement ratio of base-isolated structures is studied in this paper by employing two degree of freedom model taking into account inelastic behavior of isolators and superstructure. Parametric study is conducted to evaluate influence of isolator and superstructure properties on inelastic displacement ratio according to two sets of near-fault and far-fault ground motions. Accuracy of proposed equations in the literature to evaluate inelastic displacement ratio are studied, as well. Furthermore, cyclic degradation effects are investigated by considering stiffness and strength degradation and pinching in hysteresis model of superstructure. Eventually, inelastic responses of isolated structures with two types of isolators (lead rubber bearing and friction pendulum bearing) are compared.
机译:使用隔离系统的新设计或翻新结构在强地面运动过程中可能会表现出非线性变形。通过考虑隔震体和上部结构的非弹性行为,采用两个自由度模型研究了基础隔震结构的非弹性位移比。根据两组近断层和远断层地震动,进行了参数研究,以评估隔震和上部结构特性对非弹性位移比的影响。还研究了文献中提出的方程式评估非弹性位移比的准确性。此外,通过考虑上部结构的滞后模型中的刚度和强度退化以及收缩,研究了循环退化效应。最终,比较了两种隔离器(铅橡胶轴承和摩擦摆轴承)的隔震结构的非弹性响应。

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