Risk-based seismic design of diagonal self-centering shape-memory alloy wire-based bracing system in multi-column bent bridges

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초록

In this paper, a risk-based seismic design method for diagonal self-centering braces (SCB) with shape memory alloy (SMA) wires implemented in multi-column bents is proposed to enhance the performance of older concrete bridge classes. An existing SMA-SCB system that improves the performance of older reinforced concrete building frames was adopted to numerically examine further applications to nonductile bridges. To this end, risk-based seismic design of the SMA-SCB to minimize the probability of collapse and demolition of bridge classes was developed by adopting a sophisticated finite element model that reflects the recentering behavior of an actual SMA-SCB; probabilistic bridge models considering uncertainties associated with the material and geometrical properties of bridges; refined failure condition; and the total probability theorem. A comparison of the results of the traditional seismic fragility-based and proposed designs indicated that the amount of SMA-SCB required by the former is nearly half of that required by the proposed approach because the traditional approach overemphasizes the demand at larger ground motion intensities.

키워드

Risk -based seismic designShape-memory alloy wireDiagonal self-centering braceMulti-column bent bridgeBRACED FRAME BUILDINGSFRAGILITY ASSESSMENTSTEEL FRAMESPERFORMANCENITIPROTECTIONBEHAVIORDEVICESCURVESPIERS
제목
Risk-based seismic design of diagonal self-centering shape-memory alloy wire-based bracing system in multi-column bent bridges
저자
Lee, Chang SeokJeon, Jong-Su
DOI
10.1016/j.engstruct.2023.116295
발행일
2023-08
유형
Article
저널명
Engineering Structures
289
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1 ~ 15