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Seismic fragility estimates for corroding reinforced concrete bridges

机译:腐蚀钢筋混凝土桥梁的地震易损性估算

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Seismic fragility of reinforced concrete (RC) bridges is defined as the conditional probability that the seismic demand exceeds the corresponding capacity, specified for a certain performance level, for given seismic intensity measures. However, the structural properties of RC bridges change over time due to the onset of corrosion in the reinforcing steel. Therefore, seismic fragility of RC bridges changes during a bridge lifetime. This paper proposes a method to estimate the seismic fragility of corroding RC bridges. Structural capacities are defined using probabilistic models for deformation and shear capacities of RC columns. Probabilistic models are also used to estimate the corresponding demands for given seismic intensity measures. The capacity and demand models are then combined with probabilistic models for chloride-induced corrosion and time-dependent corrosion rate to model the dependency on time of the seismic fragility of RC bridges. In particular, the loss of reinforcing steel is modelled as a function of the thickness of the cover concrete for each reinforcing bar in the RC columns. The stiffness degradation in the cover concrete over time due to corrosion-induced cracking is also considered in the fragility estimates. Seismic fragility estimates are then formulated at the column, bent, and bridge levels. The fragility formulations properly incorporate the uncertainties in the capacity and demand models, and the inexactness (or model error) in modelling the material deterioration. The proposed method accounts for the variation of structural capacity and seismic demand over time due to the effects of corrosion in the reinforcing steel. As an application, seismic fragility estimates are developed for a corroding RC bridge with 11 two-column bents over a 100-year period.
机译:钢筋混凝土(RC)桥梁的地震易损性定义为,对于给定的地震烈度测度,地震需求超过为特定性能水平指定的相应承载能力的条件概率。但是,由于钢筋开始腐蚀,RC桥梁的结构特性会随时间而变化。因此,RC桥梁的抗震性在桥梁寿命期间会发生变化。本文提出了一种评估钢筋混凝土腐蚀桥梁的地震脆性的方法。使用RC模型的变形和剪切能力的概率模型定义结构能力。概率模型还用于估计给定地震烈度测度的相应需求。然后,将容量和需求模型与氯化物引起的腐蚀和随时间变化的腐蚀速率的概率模型相结合,以对RC桥梁的地震脆性对时间的依赖性进行建模。特别是,钢筋的损失是根据RC柱中每个钢筋的覆盖混凝土厚度而建模的。在脆性估算中还考虑了由于腐蚀引起的开裂而导致的随时间变化的覆盖混凝土的刚度降低。然后在柱,弯和桥的水平上制定地震易损性估计值。脆弱性公式适当地将容量和需求模型中的不确定性以及材料退化建模中的不精确性(或模型错误)纳入考虑范围。所提出的方法考虑了由于钢筋腐蚀引起的结构能力和地震需求随时间的变化。作为一种应用,在100年的时间里,为具有11个两列弯头的锈蚀RC桥梁开发了地震易损性估算。

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