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Seismic reliability‐based ductility demand for hardening and softening structures isolated by friction pendulum bearings

机译:基于地震可靠性的延性要求,用于通过摆锤轴承隔离的硬化和软化结构

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摘要

This study aims at proposing seismic reliability-based relationships between the behavior factors and the displacement demand for nonlinear hardening and softening structures isolated by friction pendulum system devices considering several structural properties. An equivalent 2dof model having both a hardening and softening postyield slope is used to describe the superstructure behavior, whereas a velocity-dependent model is adopted for the friction pendulum system response. The yielding characteristics of the superstructures, related to life safety limit state, are designed according to the seismic hazard of L'Aquila site (Italy) for increasing behavior factors, as provided from NTC08. Considering natural seismic records and several elastic and inelastic building properties, different postyield hardening and softening stiffness values, different seismic intensity levels, and modeling the friction coefficient as a random variable, incremental dynamic analyses are performed to evaluate the seismic fragility of these structural systems. By means of the convolution integral between the fragility curves and the seismic hazard curves corresponding to L'Aquila site (Italy), the reliability curves of the equivalent hardening and softening base-isolated structural systems, with a lifetime of 50 years, are defined. Specifically, seismic reliability-based linear and multilinear regression expressions between the displacement ductility demand and the behavior factors for the superstructure as well as seismic reliability-based design abacuses for the friction pendulum devices are proposed.
机译:这项研究的目的是在考虑几个结构特性的基础上,提出基于地震可靠性的摩擦摆系统装置隔离的非线性硬化和软化结构的行为因素与位移需求之间的关系。具有屈服后坡度变硬和变软的等效2dof模型用于描述上部结构行为,而摩擦摆系统响应则采用速度相关模型。根据NTC08提供的关于增加行为因素的L'Aquila场地(意大利)的地震危险,设计了与生命安全极限状态相关的上层建筑的屈服特性。考虑到自然地震记录以及几种弹性和非弹性建筑特性,不同的屈服后硬化和软化刚度值,不同的地震烈度水平以及将摩擦系数建模为随机变量,进行了增量动力分析,以评估这些结构系统的地震脆弱性。通过脆性曲线和对应于意大利拉奎拉(L'Aquila)地点的地震危险曲线之间的卷积积分,定义了等效硬化和软化的基础隔震结构系统(寿命为50年)的可靠性曲线。具体而言,提出了基于位移可靠性的挠性需求与上部结构的行为因素之间基于线性可靠度的线性和多线性回归表达式,以及基于摩擦可靠性的装置基于振动可靠性的设计依据。

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