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Life-cycle cost analysis of bridge structures considering maintenance cost and seismic risk

机译:考虑维护成本和地震风险的桥梁结构的生命周期成本分析

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Recently, Life-Cycle Cost (LCC) analysis has been paid attention as a possible and promising concept to achieve a rational maintenance program. In this study, an attempt is made to introduce the seismic risk into LCC analysis of bridge structures. Paying attention to some problems regarding the formulation of total expected cost minimization; it is intended to discuss the effects of seismic risk on LCC. In order to define a corrosion phenomenon of reinforcing bars due to chloride attack in terms of deterioration factors of reinforced concrete piers, the seismic risk is evaluated by reliability index in service time. In the calculation of LCC, maintenance cost and seismic risk are treated separately, because they have different accuracies in calculations. Namely, both of them are dealt with as objective functions in the LCC minimization. Thus, multi-objective optimization formulation is introduced, where Multi-Objective Genetic Algorithm (MOGA) is used to obtain several Pareto-solutions. Furthermore, LCC is calculated by introducing the user cost due to the occurrence of earthquake. Several numerical examples are presented to demonstrate the effectiveness of the proposed method.
机译:最近,生命周期成本(LCC)分析已被关注作为实现合理维护计划的可能和有希望的概念。在这项研究中,尝试将地震风险引入桥梁结构的LCC分析。关注关于总预期成本最小化的制定的一些问题;它旨在讨论地震风险对LCC的影响。为了在钢筋混凝土墩的恶化因素方面定义由于氯化物攻击而导致的加强杆的腐蚀现象,通过服务时间的可靠性指数评估地震风险。在LCC的计算中,维护成本和地震风险分别处理,因为它们在计算中具有不同的准确性。即,两者都在LCC最小化中作为客观函数处理。因此,引入了多目标优化制剂,其中使用多目标遗传算法(MOGA)来获得几种覆盖溶液。此外,通过引入由于地震发生而引入用户成本来计算LCC。提出了几个数值例证以证明所提出的方法的有效性。

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