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Nonstationary stochastic response of structural systems equipped with nonlinear viscous dampers under seismic excitation

机译:地震激励下装有非线性粘性阻尼器的结构系统的非平稳随机响应

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摘要

Nonlinear viscous dampers are supplemental devices widely used for enhancing the performance of structural systems exposed to seismic hazard. A rigorous evaluation of the effect of these damping devices on the seismic performance of a structural system should be based on a probabilistic approach and take into account the evolutionary characteristics of the earthquake input and of the corresponding system response. In this paper, an approximate analytical technique is proposed for studying the nonstationary stochastic response characteristics of hysteretic single degree of freedom systems equipped with viscous dampers subjected to a fully nonstationary random process representing the seismic input. In this regard, a stochastic averaging/linearization technique is utilized to cast the original nonlinear stochastic differential equation of motion into a simple first-order nonlinear ordinary differential equation for the nonstationary system response variance. In comparison with standard linearization schemes, the herein proposed technique has the significant advantage that it allows to handle realistic seismic excitations with time-varying frequency content. Further, it allows deriving a formula for determining the nonlinear system response evolutionary power spectrum. By this way, 'moving resonance' effects, related to both the evolutionary seismic excitation and the nonlinear system behavior, can be observed and quantified. Several applications involving various system and input properties are included. Furthermore, various response parameters of interest for the seismic performance assessment are considered as well. Comparisons with pertinent Monte Carlo simulations demonstrate the reliability of the proposed technique.
机译:非线性粘性阻尼器是补充设备,广泛用于增强遭受地震危险的结构系统的性能。对这些阻尼装置对结构系统抗震性能的影响的严格评估应基于概率方法,并考虑地震输入和相应系统响应的演化特征。在本文中,提出了一种近似分析技术来研究配备粘性阻尼器的滞后单自由度系统的非平稳随机响应特性,该系统经历了代表地震输入的完全非平稳随机过程。在这方面,利用随机平均/线性化技术将原始的非线性随机运动微分方程转换为用于非平稳系统响应方差的简单一阶非线性常微分方程。与标准线性化方案相比,本文提出的技术具有显着的优点,即它允许处理时变频率含量的现实地震激励。此外,它允许导出用于确定非线性系统响应演化功率谱的公式。通过这种方式,可以观察和量化与演化地震激励和非线性系统行为相关的“运动共振”效应。包括涉及各种系统和输入属性的几个应用程序。此外,还考虑了地震性能评估中感兴趣的各种响应参数。与相关蒙特卡罗模拟的比较证明了所提出技术的可靠性。

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