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Seismic reliability of base-isolated structures with friction pendulum bearings

机译:带有摆锤轴承的基础隔震结构的抗震可靠性

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摘要

The friction pendulum system (FPS) is becoming a widely used technique for seismic protection and retrofit of buildings, bridges and industrial structures due to its remarkable features such as the stability of physical properties and durability respect to the elastomeric bearings. Experimental data also showed that the coefficient of friction depends on several effects (i.e., sliding velocity, apparent pressure, air temperature, cycling effect) so that it can be assumed as a random variable. The aim of the study consists in evaluating the seismic reliability of a base-isolated structure with FP isolators considering both isolator properties (i.e., coefficient of friction) and earthquake main characteristics as random variables. Assuming appropriate density probability functions for each random variable and adopting the Latin Hypercube Sampling (LHS) method for random sampling, the input data set has been defined. Several 3D non-linear dynamic analyses have been performed considering both the vertical and horizontal components of each seismic excitation in order to evaluate the system response. In particular, monovariate and multivariate (joint) probability density and cumulative distribution functions have been computed and, considering the limit state thresholds and domains (performance objectives) defined respectively on mono/bi-directional displacements, assumed as earthquake damage parameter (EDP) according to performance-based seismic design, the exceeding probabilities (structural performances) have been evaluated. Estimating the reliability of the superstructure, substructure and isolation level led to define and propose reliability-based abacus and equations useful to design the FP system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:摩擦摆系统(FPS)由于其卓越的功能(例如,物理性能的稳定性和相对于弹性轴承的耐久性)而成为建筑物,桥梁和工业结构的地震防护和改造的一种广泛使用的技术。实验数据还表明,摩擦系数取决于多种影响(即,滑动速度,表观压力,空气温度,循环作用),因此可以将其假定为随机变量。该研究的目的在于通过考虑隔离器特性(即摩擦系数)和地震主要特征作为随机变量来评估具有FP隔离器的基础隔离结构的地震可靠性。假设每个随机变量具有适当的密度概率函数,并采用拉丁超立方体抽样(LHS)方法进行随机抽样,则已定义了输入数据集。考虑到每个地震激励的垂直和水平分量,已经执行了一些3D非线性动力学分析,以便评估系统响应。特别是,已经计算了单变量和多变量(联合)概率密度以及累积分布函数,并考虑了分别在单向/双向位移上定义的极限状态阈值和域(性能目标),并假定为地震破坏参数(EDP)。对于基于性能的抗震设计,已经评估了超概率(结构性能)。估计上部结构,下部结构和隔离级别的可靠性导致定义并提出了基于可靠性的算盘和方程式,可用于设计FP系统。 (C)2015 Elsevier Ltd.保留所有权利。

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