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Life-Cycle Performance of Concrete Bridges exposed to Corrosion and Seismic Hazard

机译:暴露于腐蚀和地震危险的混凝土桥梁的生命周期性能

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The seismic performance of concrete structures should be considered time-variant, since in aggressive environments the corrosion phenomena affect the characteristics of both reinforcing steel bars and concrete matrix during lifetime. Seismic design criteria should therefore account for the environmental hazard, especially if bridges are considered, because of the direct exposure of the structure to the atmosphere. This paper investigates the seismic performance of bridges by considering the interaction between the diffusion process and the corresponding mechanical damage in both deterministic and probabilistic terms. Lifetime moment-curvature analyses are carried out at cross-sectional level of the bridge piers under different scenarios of environmental aggressiveness, accounting for uncertainties involved in corrosion parameters, material properties and structural geometry. Static and dynamic analyses are then performed on a bridge structure to assess how the time-variant seismic performance depends on the environmental exposure. Results show that a bridge designed for the same seismic action could have a different lifetime performance depending on the level of corrosion. This confirms the important role of a life-cycle approach for seismic assessment and design procedures which should be revised to consider both seismic and environmental hazards.
机译:应将混凝土结构的抗震性能视为随时间变化的,因为在侵蚀性环境中,腐蚀现象会在使用寿命期间影响钢筋和混凝土基体的特性。因此,抗震设计标准应考虑到环境危害,尤其是在考虑使用桥梁的情况下,因为结构直接暴露在大气中。本文通过在确定性和概率性方面考虑扩散过程与相应的机械损伤之间的相互作用来研究桥梁的抗震性能。在环境侵略不同的情况下,在桥墩的横截面水平上进行了寿命弯矩曲率分析,考虑了腐蚀参数,材料特性和结构几何形状中的不确定性。然后对桥梁结构进行静态和动态分析,以评估时变地震性能如何取决于环境暴露。结果表明,根据腐蚀程度的不同,针对相同地震作用设计的桥梁可能会有不同的使用寿命。这证实了生命周期方法在地震评估和设计程序中的重要作用,应对其进行修订以考虑地震和环境危害。

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