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Life-Cycle Seismic Fragility Assessment of Existing RC Bridges Subject to Chloride-Induced Corrosion in Marine Environment

机译:现有RC桥的生命周期地震脆弱性评估在海洋环境中氯化物诱导的腐蚀

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Bridges in a marine environment have been suffering from the chloride attack for a long period of time. Due to the fact that different sections of piers may be exposed to different conditionals, the chloride-induced corrosion not only affects the scale of the deterioration process but also significantly modifies over time the damage propagation mechanisms and the seismic damage distribution. In order to investigate the seismic damage of existing RC bridges subject to spatial chloride-induced corrosion in a marine environment, Duracrete model is applied to determine the corrosion initiation time of reinforcing steels under different exposure conditionals and the degradation models of reinforcing steels, confined concrete, and unconfined concrete are obtained based on the previous investigation. According to the seismic fragility assessment method, the damage assessment approach for the existing RC bridges subject to spatial chloride-induced corrosion in a marine environment is present. Moreover, a case study of a bridge under two kinds of water regions investigated the influence of spatial chloride-induced corrosion on the seismic damage of piers and other components. The results show that the spatial chloride-induced corrosion may result in the section at the low water level becoming more vulnerable than the adjacent sections and the alteration of seismic damage distribution of piers. The corrosion of pier will increase the seismic damage probability of itself, whereas it will result in a reduction of seismic damage probability of other components. Moreover, the alteration of seismic damage distribution of piers will amplify the effect. Due to the fact that the spatial chloride-induced corrosion of piers may alter the yield sequence of cross section, it then affects the seismic performance assessment of piers. A method to determine the evolution probability of yield sequence of corroded piers is proposed at last. From the result, the evolution probability of yield sequence of piers in longitudinal direction depends on the relationship between the height of piers and submerged zone. Moreover, the height of piers, submerged zone, and tidal zone have a common influence on the evolution of yield sequence of piers in transversal direction.
机译:海洋环境中的桥梁一直在遭受氯化物攻击。由于胶合的不同部分可能暴露于不同的条件,氯化物诱导的腐蚀不仅影响劣化过程的规模,而且显着地改变随着时间的推移损伤传播机制和地震损伤分布。为了探讨在海洋环境中遭受空间氯化物诱导的腐蚀而存在的现有RC桥的地震损伤,应用DuracRETE模型以确定在不同曝光条件下加强钢的腐蚀启动时间和加强钢的降解模型,密集的混凝土并且基于先前的调查获得了无限制的混凝土。根据地震脆弱性评估方法,存在对海洋环境中的空间氯化物诱导腐蚀的现有RC桥的损伤评估方法存在。此外,在两种水域下对桥梁的案例研究研究了空间氯化物诱导的腐蚀对墩和其他组成部分地震损伤的影响。结果表明,空间氯化物诱导的腐蚀可能导致低水位的截面比相邻部分更容易受到攻击和墩地震损伤分布的改变。码头的腐蚀将增加自身的地震损伤概率,而它将导致其他组分的地震损伤概率降低。此外,码头抗震损伤分布的改变将放大效果。由于空间氯化物诱导的桥墩腐蚀可能改变横截面的产量序列,然后影响码头的地震性能评估。最后提出了一种确定腐蚀墩产率序列的进化概率的方法。从结果中,纵向桥墩产量序列的演化概率取决于墩和浸没区的高度之间的关系。此外,墩,淹没区和潮汐区的高度对横向方向上墩产率序列的演变具有共同影响。

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