首页> 外文期刊>Journal of structural engineering >Optimization of Life-Cycle Maintenance of Deteriorating Bridges with Respect to Expected Annual System Failure Rate and Expected Cumulative Cost
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Optimization of Life-Cycle Maintenance of Deteriorating Bridges with Respect to Expected Annual System Failure Rate and Expected Cumulative Cost

机译:考虑预期的年度系统故障率和预期的累积成本,对劣化桥梁的生命周期维护进行优化

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摘要

Civil infrastructure systems are subjected to progressive deterioration resulting from multiple mechanical and environmental stressors. This deterioration process is developed under uncertainties related to load effects, structural resistance, and inspection outcomes, among others. In this context, life-cycle optimization techniques provide a rational approach to manage these systems considering uncertainties and several budgetary and safety constraints. This paper proposes a novel optimization procedure for life-cycle inspection and maintenance planning of aging structures. In this procedure, the structural system effects are accounted for by modeling the structure as a series, parallel, or a series-parallel system whose components are subjected to time-dependent deterioration phenomena. Different possible repair options are considered depending on the damage state and the outcomes of each inspection. For each component, essential or preventive maintenance aiming at reducing the system failure rate are performed when inspection results indicate that the prescribed threshold damage levels have been reached or violated. Otherwise, no repair is performed. Optimum inspection and maintenance plans are formulated by minimizing both the expected system failure rate and expected cumulative inspection and maintenance cost over the life-cycle of the structure. The proposed approach is applied to an existing bridge.
机译:由于多种机械和环境压力,民用基础设施系统会逐渐恶化。这种恶化过程是在与载荷效应,结构阻力和检查结果等相关的不确定性下发展的。在这种情况下,考虑到不确定性以及一些预算和安全约束,生命周期优化技术提供了一种合理的方法来管理这些系统。本文提出了一种新的优化程序,用于老化结构的生命周期检查和维护计划。在此过程中,通过将结构建模为串联,并联或串联-并联系统来解决结构系统的影响,该系统的组件会受到与时间有关的劣化现象的影响。根据损坏状态和每次检查的结果,考虑了不同的可能维修方案。对于每个组件,当检查结果表明已达到或违反了规定的阈值损坏级别时,将执行旨在降低系统故障率的必要或预防性维护。否则,将不进行维修。通过在结构的整个生命周期中将预期的系统故障率以及预期的累积检查和维护成本最小化,可以制定最佳的检查和维护计划。所提出的方法适用于现有桥梁。

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