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Seismic fragility analysis of deteriorating RC bridge substructures subject to marine chloride-induced corrosion

机译:海水氯化物腐蚀导致钢筋混凝土桥梁下部结构劣化的地震脆性分析

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摘要

This paper presents an improved reinforced concrete steel bar deterioration model that incorporates pitting corrosion and considers the change in after-cracking corrosion rate to assess the time-dependent seismic fragility of RC bridge substructures in marine environments. The proposed deterioration model is applicable for both existing and new RC bridge substructures and could be employed for life-cycle analysis of RC bridge substructures in marine environments. In this paper, the model is implemented to conduct a probabilistic seismic fragility analysis of a three-span continuous box girder bridge accounting for uncertainties in establishing bridge geometry, material properties, ground motion and corrosion parameters. Differences in the results obtained when reinforcing steel is subjected to general and pitting corrosion are investigated. The results show that the effect of chloride-induced corrosion cannot be neglected when performing the seismic fragility analysis of RC bridge substructures in marine environments. Additionally, the calculated time-dependent fragility curves indicate that there is a nonlinear accelerated growth of RC column vulnerability along the service life of highway bridges, especially after twenty-five years of exposure to chlorides.
机译:本文提出了一种改进的钢筋混凝土钢筋劣化模型,该模型结合了点蚀,并考虑了开裂后腐蚀速率的变化,以评估海洋环境中钢筋混凝土桥梁子结构随时间的地震脆性。提出的劣化模型适用于现有的和新的钢筋混凝土桥梁子结构,并可用于海洋环境中钢筋混凝土桥梁子结构的生命周期分析。本文采用该模型对三跨连续箱梁桥进行概率地震易损性分析,考虑了建立桥梁几何形状,材料特性,地震动和腐蚀参数时的不确定性。研究了对钢筋进行一般腐蚀和点蚀腐蚀后得到的结果的差异。结果表明,在海洋环境中进行RC桥梁子结构的地震脆性分析时,不能忽略氯化物引起的腐蚀的影响。此外,计算得出的随时间变化的脆性曲线表明,在公路桥梁的使用寿命中,尤其是在暴露于氯化物25年之后,RC柱脆弱性呈非线性加速增长。

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