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Optimal design algorithm for seismic retrofitting of RC columns with steel jacketing technique

机译:钢夹套技术RC色谱柱地震改装的最优设计算法

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Steel jacketing (SJ) of beams and columns is widely employed as retrofitting technique to provide additional deformation and strength capacity to existing reinforced concrete (RC) frame structures. The latter are many times designed without considering seismic loads, or present inadequate seismic detailing. The use of SJ is generally associated with non-negligible costs depending on the amount of structural work and non-structural manufacturing and materials. Moreover, this kind of intervention results in noticeable downtime for the building. This paper presents a new optimization framework which is aimed at obtaining minimization of retrofitting costs by optimizing the position and the amount of steel jacketing retrofitting. The proposed methodology is applied to the case study of a 3D RC frame realized in OpenSEES and handled within the framework of a genetic algorithm. The algorithm iterates geometric and mechanical parameters configurations, based on the outcomes of static pushover analysis, in order to match the optimal retrofitting solution, intended as the one minimizing the costs and, at the same time, maintaining a specified safety level. Results of the proposed framework will provide optimized location and amount of steel-jacketing reinforcement. It is finally shown that the use of engineering optimization methods can be effectively used to limit retrofitting costs without a substantial modification of structural safety.
机译:梁和柱的钢夹套(SJ)被广泛采用改装技术,为现有的钢筋混凝土(RC)框架结构提供额外的变形和强度能力。后者在不考虑地震载荷的情况下设计多次,或者存在不足的地震细节。根据结构工作和非结构制造和材料的量,使用SJ通常与不可忽略的成本相关。此外,这种干预导致建筑物的明显停机时间。本文提出了一种新的优化框架,其目的是通过优化钢护套改装的位置和数量来获得最小化改装成本。所提出的方法应用于在开放式中实现的3D RC帧的案例研究,并在遗传算法的框架内处理。该算法迭代几何和机械参数配置,基于静态推送分析的结果,以匹配最佳改装解决方案,旨在最小化成本,同时保持指定的安全水平。拟议框架的结果将提供优化的位置和钢夹套加固量。终于表明,可以有效地利用工程优化方法来限制改装成本而无需实质性修改结构安全性。

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