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A PERFORMANCE-RELIABILITY-BASED CRITERION FOR THE OPTIMUM DESIGN OF BRIDGE ISOLATORS

机译:基于性能-可靠性的桥梁隔离器优化设计准则

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This paper concerns a performance-reliability based criterion for the optimum design of bridge isolators. The meaning of "optimum design" concerns a structure designed in order to satisfy several performance requirements regarding the safety and the serviceability. In order to carry out this procedure a stochastic approach is developed and a Gaussian, zero-mean, filtered, nonstationary stochastic process, is adopted in order to model the earthquake motion. The hysteretic Bouc-Wen model is employed in order to reproduce the nonlinear constitutive behaviour of isolators, whereas a linear law is assumed in order to represent the piers. Covariance response is attained by means of the approximate stochastic linearization method and the system reliability, required in order to make explicit the safety and the serviceability performance objectives, is evaluated with the hypothesis of independent crossings. Finally, the optimum design, performed in two different phases, is carried out in a parametric form.
机译:本文涉及基于性能可靠性的桥梁隔离器优化设计标准。 “最佳设计”的含义涉及为满足有关安全性和可维修性的几个性能要求而设计的结构。为了执行此过程,开发了一种随机方法,并采用高斯,零均值,滤波,非平稳随机过程对地震运动进行建模。采用迟滞Bouc-Wen模型来重现隔震器的非线性本构行为,而采用线性定律来表示墩。通过近似随机线性化方法获得协方差响应,并通过独立交叉的假设对为明确安全性和可服务性性能目标而需要的系统可靠性进行评估。最后,以参数形式执行在两个不同阶段执行的最佳设计。

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