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Time-dependent probabilistic capacity degradation assessment of prestressed concrete piles in marine environment

机译:海洋环境中预应力混凝土成堆的时间依赖性概率能力降解评估

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摘要

As coastal infrastructure systems are continuously exposed to deterioration, it is increasingly crucial to analyse their current and future serviceability performance. This paper investigates effects of chloride corrosion on the lateral force capacity and ductility of a wharf-supporting prestressed concrete marine pile and provides new insights into the state of marine structures. A probabilistically generated finite element modelling approach is developed for piles, which includes discrete concrete pile cross-sectional models connected to steel tendon non-linear elements via a series of non-linear springs that simulate bonding behaviour. Moreover, a prestressed material model is established that incorporates alternate failure modes including stress corrosion cracking and brittle failure to capture chloride-induced pitting corrosion in piles. It is shown that various failure modes cause an overall decrease in the maximum force capacity as piles age. Specifically, the alternate failure modes result in 31 and 56% reductions in the maximum capacity of the pile and associated top pile displacement, respectively, as the age of the pile increases from 25years to 75years. The presented methodology and results can greatly assist in decision-making for repair or replacement of wharves and aid in the design of new wharves considering their future performance.
机译:随着沿海基础设施系统持续暴露在恶化,分析其当前和未来的维修性能越来越重要。本文研究了氯化物腐蚀对码头支撑预应力混凝土海洋桩的横向力和延展性的影响,并为海洋结构状态提供了新的见解。概率地产生的有限元建模方法是为桩而开发的,包括通过模拟粘接行为的一系列非线性弹簧连接到钢筋非线性元件的离散混凝土桩横截面模型。此外,建立了预应力的材料模型,该模型包含包括应力腐蚀裂纹和脆性失效的交替破坏模式,以捕获堆积的氯化物诱导的蚀腐蚀。结果表明,各种故障模式导致最大力容量的总体降低为桩年龄。具体地,替代故障模式分别产生31和56%的桩和相关顶部桩位移的最大容量,因为桩的年龄从25年增加到75年。呈现的方法和结果可以极大地帮助修理或更换码头的决策,并辅助考虑到他们未来的表现的新码头。

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