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Probabilistic seismic assessment of as-built and retrofitted old and newly designed skewed multi-frame bridges

机译:在建和改建的新旧斜交多框架桥梁的概率地震评估

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This paper presents a probabilistic seismic assessment of older and newly-designed skewed multi-frame reinforced concrete box-girder bridges in California. The overall system and individual components fragility curves were developed for both older and new bridges with different skewness angles across four different damage states. Moreover, the effectiveness of two retrofit strategies: restrainer cables and shear keys at both in-span hinges and abutments was explored for mitigating the seismic fragility of multi-frame bridges and contributing to the nation's effort in maintaining the deteriorating infrastructure. The results indicate that the bridge system and different component fragilities are affected by the design details chronological changes, deck skewness, and the choice of the retrofit components. Deck unseating at the in-span hinge is shown to be the most sensitive component to the retrofit measures and design chronological changes. The retrofit measures are also shown to reduce the vulnerability of older bridges and have a negligible effect on newly designed bridges. On the other hand, the bearing pads damage of both old and new bridges is the most susceptible component to the deck skewness. For completeness, the results of this study are compared to fragility medians suggested by HAZUS-MH, and a significant underestimation of vulnerability for both old and new skewed multi-frame bridge is shown.
机译:本文介绍了加利福尼亚州旧的和新设计的斜交多框架钢筋混凝土箱梁桥的概率地震评估。针对在四个不同损坏状态下具有不同偏斜角的旧桥和新桥,开发了整个系统和各个组件的脆性曲线。此外,探索了两种改造策略的有效性:跨距铰链和桥台上的约束电缆和剪力键,以减轻多框架桥梁的地震脆弱性,并为国家维护不断恶化的基础设施做出贡献。结果表明,桥梁系统和不同的构件易损性受设计细节的时间变化,甲板偏斜度和改造构件的选择的影响。跨度铰链处的卡座显示出是对改造措施和设计时间变化最敏感的组成部分。改造措施还显示出可以减少旧桥的脆弱性,并且对新设计的桥的影响可忽略不计。另一方面,旧桥和新桥的轴瓦损坏是最容易引起甲板偏斜的因素。为了完整起见,将本研究的结果与HAZUS-MH建议的脆弱性中位数进行了比较,结果表明,新旧斜交多框架桥的脆弱性均被低估了。

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