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Impact of multiple component deterioration and exposure conditions on seismic vulnerability of concrete bridges

机译:多组分劣化和暴露条件对混凝土桥梁抗震性的影响

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Recent studies have highlighted the importance of accounting for aging and deterioration of bridges when estimating their seismic vulnerability. Effects of structural degradation of multiple bridge components, variations in bridge geometry, and comparison of different environmental exposure conditions have traditionally been ignored in the development of seismic fragility curves for aging concrete highway bridges. This study focuses on the degradation of multiple bridge components of a geometrically varying bridge class, as opposed to a single bridge sample, to arrive at time-dependent seismic bridge fragility curves. The effects of different exposure conditions are also explored to assess the impact of severity of the environment on bridge seismic vulnerability. The proposed methodology is demonstrated on a representative class of aging multi-span reinforced concrete girder bridges typical of the Central and Southeastern United States. The results reveal the importance of considering multiple deterioration mechanisms, including the significance of degrading elastomeric bearings along with the corroding reinforced concrete columns, in fragility modeling of aging bridge classes. Additionally, assessment of the relative severity of exposure to marine atmospheric, marine sea-splash and deicing salts, and shows 5%, 9% and 44% reduction, respectively, in the median value bridge fragility for the complete damage state relative to the as-built pristine structure.
机译:最近的研究强调了在评估桥梁的地震易损性时考虑桥梁的老化和退化的重要性。在老化混凝土公路桥梁的地震脆性曲线的开发中,传统上忽略了多个桥梁构件的结构退化,桥梁几何形状的变化以及不同环境暴露条件的比较的影响。这项研究的重点是与单一桥梁样本相反,几何变化的桥梁类别的多个桥梁构件的退化,以得出随时间变化的地震桥梁脆性曲线。还探讨了不同暴露条件的影响,以评估环境严重程度对桥梁地震脆弱性的影响。在美国中部和东南部典型的老化多跨钢筋混凝土箱梁桥的代表性类别上论证了所提出的方法。结果表明,在老化桥梁类别的易损性建模中,考虑多种劣化机制的重要性,包括降解弹性轴承以及腐蚀的钢筋混凝土柱的重要性。此外,评估了暴露于海洋大气,海洋飞溅水和除冰盐的相对严重性,并显示了完全破坏状态下桥梁脆弱性的中值相对于s分别降低了5%,9%和44%。建的原始结构。

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