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Life-Cycle Cost Assessment of Maintenance Strategies for RC Structures in Chloride Environments

机译:氯化物环境中钢筋混凝土结构维护策略的生命周期成本评估

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摘要

Corrosion of the reinforcing steel can cause cover cracking and eventual spalling of reinforced concrete (RC) surfaces, resulting in costly and disruptive repairs. The present paper will compare the effect of maintenance and repair strategies on the timing, extent, and cost of remediation actions over the service life of a RC structure in a chloride environment. The paper presents a probabilistic reliability analysis, which is used to predict the likelihood and extent of corrosion-induced cracking to RC structures. A spatial time-dependent reliability model has been developed where concrete properties, concrete cover, and the surface chloride concentrations are treated as random fields. This allows for the calculation of the probability that a given extent of damage will occur for any time period. Maintenance strategies and repair efficiencies are incorporated in a Monte-Carlo event-based simulation analysis, allowing a comparison in terms of cost and number of repairs over the service life of a RC structure. Thus, the expected timing and extent of repairs can be predicted for various design parameters, inspection intervals, repair thresholds, maintenance strategies, and efficiency of repairs. Results are presented for a RC bridge deck subject to a marine environment. The life-cycle cost (LCC) analysis considers repair and user delay costs. User delay costs can be up to ten times higher than the cost of repair itself. The statistical variability of predicted LCCs can be large, with coefficients of variation exceeding one.
机译:钢筋的腐蚀会导致覆盖层开裂,并最终导致钢筋混凝土(RC)表面剥落,从而导致昂贵的维修费用。本文将在氯化物环境下,在RC结构的使用寿命内,比较维修策略对修复时间,范围和成本的影响。本文提出了一种概率可靠性分析方法,该方法可用于预测腐蚀引起的钢筋混凝土结构开裂的可能性和程度。建立了一个时空相关的可靠性模型,其中将混凝土性能,混凝土覆盖层和表面氯化物浓度视为随机场。这允许计算在任何时间段内都会发生给定程度的损坏的概率。维修策略和维修效率被纳入基于蒙特卡洛事件的模拟分析中,从而可以在RC结构的使用寿命内比较成本和维修次数。因此,可以针对各种设计参数,检查间隔,维修阈值,维护策略和维修效率来预测预期的维修时间和范围。呈现了受海洋环境影响的RC桥面板的结果。生命周期成本(LCC)分析考虑了维修和用户延误成本。用户延迟成本可能比维修本身的成本高十倍。预测的LCC的统计变异性可能很大,变异系数超过1。

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