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Case Study on Applications of Structural Fuses in Bridge Bents

机译:桥梁保险丝中结构保险丝的应用案例研究

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摘要

In seismic design, bridges are typically designed to undergo inelastic deformations during a severe earthquake. In those instances, most of the seismic energy is dissipated through hysteretic behavior of the critical load-resisting components, which results in permanent system deformations and damage and could make repairs expensive or, in some cases, impossible. Thus, concentrating earthquake damage in structural fuses inserted in bridge bents is desirable; the performance objective is for the main gravity load-bearing members (the columns, in this case) to be intact after an earthquake, limiting repairs to fuses that can be removed and replaced easily. This paper presents results from case studies that considered the use of buckling-restrained braces (BRBs) as hysteretic energy-dissipation devices inserted in bridge bents to dissipate earthquake energy and improve structural performance by minimizing inelastic demands on the columns. A typical California bridge was used for this purpose. For structural fuse application only in the transverse direction (along the bent), results indicate that BRBs are implementable. Alternative bent configurations were also considered to provide the benefit of structural fuses for seismic excitations in the bridge's longitudinal and transverse directions. Findings are presented along with observations from a comparison of seismic responses between bridges with and those without structural fuses in their bents.
机译:在地震设计中,桥梁通常被设计为在严重地震期间经历非弹性变形。在那些情况下,大部分地震能量通过关键的抗负载组件的滞后行为而耗散,这导致永久性系统变形和损坏,并可能使维修费用昂贵,或者在某些情况下是不可能的。因此,希望将地震破坏集中在插入桥弯的结构保险丝中。其性能目标是在地震后保持主要的重力承重构件(在这种情况下为立柱)完好无损,从而限制了对易于拆卸和更换的保险丝的维修。本文提供了一些案例研究的结果,这些案例考虑了将屈曲约束支撑(BRB)用作滞后消能装置,该装置插入桥弯以消散地震能量并通过最小化对柱的非弹性要求来改善结构性能。为此使用了典型的加利福尼亚桥。对于仅在横向方向(沿弯曲方向)应用的结构性保险丝,结果表明BRB是可行的。还考虑了替代的弯曲配置,以提供结构性熔断器的好处,以便在桥梁的纵向和横向进行地震激励。通过比较有和没有弯折结构的桥梁之间的地震反应,将发现的结果与观察结果一起提供。

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