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Enhance seismic performance of self-centering concentrically braced frames by using hybrid systems

机译:通过使用混合系统提高自定心同心支撑框架的地震性能

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摘要

This study presents a new strategy to enhance the seismic performance of self-centering concentrically braced frames (SCCBFs). A hybrid strategy, which combines a SCCBF with a moment-resisting frame or buckling-restrained-braced frame, is first investigated, which show evident reduction in peak deformation demands. This benefit further inspires the design of multi-story pure SCCBFs with the enhanced post-yield stiffness ratio and/or energy dissipation factor directly. Incremental dynamic analyses indicates that the advanced SCCBFs achieve seismic peak deformation control comparable to that of the hybrid systems. Meanwhile, the advanced SCCBFs are nearly damage-free and fully recoverable after significant earthquakes, and thus represents a more favorable strategy from the seismic resilience perspective.
机译:本研究提出了一种新的策略,以提高自我中心同心支撑框架(SCCBF)的地震性能。 首先研究了将SCCBF与力矩抵抗框架或屈曲束缚的支撑框架相结合的混合策略,其显示出峰值变形需求的显而易见降低。 这种益处进一步激发了多层纯SCCBF的设计,通过直接增强的后屈服刚度比和/或能量耗散因子。 增量动态分析表明,高级SCCBFS实现了与混合系统的地震峰变形控制相当。 同时,先进的SCCBF在显着地震后几乎无损害且完全可恢复,因此代表了从地震复原力的角度来看更有利的策略。

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