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Optimal seismic design of moment-resisting steel frames with hysteretic passive devices

机译:带磁滞被动装置的抗弯钢框架的优化抗震设计

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摘要

The effectiveness of hysteretic passive devices to protect and mitigate the response of a structure under-seismic loading is well established by both analytical and experimental research. Nevertheless, a systematic and well-established methodology for the topological distribution and size of these devices in order to achieve a desired structural response performance does not exist. In this paper, a computational framework is proposed for the optimal distribution and design of yielding metallic buckling restrained braces (BRB) and/or friction dampers within steel moment-resisting frames (MRF) for a given seismic environment. A Genetic Algorithm (GA) is used to solve the resulting discrete optimization problem. Specific examples involving two three-story, four-bay steel MRFs and a six-story, three-bay steel MRF retrofitted with yielding and/or friction braces are considered. The seismic environment consists of four synthetic ground motions representative of the west coast of the United States with 5% probability of exceedance in 50 years. Non-linear time-history analyses are employed to evaluate the potential designs. As a result of the evolutionary process, the optimal placement, strength and size of the dampers are obtained throughout the height of the steel MRF. Furthermore, the developed computational approach for seismic design based upon GAs provides an attractive procedure for design of MRFs with hysteretic passive dampers.
机译:分析和实验研究都很好地证明了磁滞无源器件保护和减轻结构在地震作用下的响应的有效性。然而,不存在用于这些装置的拓扑分布和尺寸的系统的和公认的方法,以实现期望的结构响应性能。在本文中,提出了一种计算框架,用于在给定地震环境下抗弯框架(MRF)内屈服金属屈曲约束支撑(BRB)和/或摩擦阻尼器的最佳分布和设计。遗传算法(GA)用于解决由此产生的离散优化问题。考虑了涉及两个三层,四格钢制MRF和一个六层,三格钢制MRF的具体示例,这些MRF加装了屈服和/或摩擦支撑。地震环境由代表美国西海岸的四个合成地震动组成,在50年内发生概率超过5%。非线性时程分析用于评估潜在设计。进化过程的结果是,在钢制MRF的整个高度上都获得了最佳的阻尼器位置,强度和尺寸。此外,基于GA的抗震设计计算方法的发展为采用滞后无源阻尼器的MRF设计提供了有吸引力的程序。

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