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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Performance-Based Multiobjective Optimal Seismic Retrofit Method for a Steel Moment-Resisting Frame Considering the Life-Cycle Cost
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Performance-Based Multiobjective Optimal Seismic Retrofit Method for a Steel Moment-Resisting Frame Considering the Life-Cycle Cost

机译:考虑生命周期成本的抗弯钢框架基于性能的多目标最优抗震改造方法

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摘要

This study proposes a performance-based multiobjective optimization seismic retrofit method for steel moment-resisting frames. The brittle joints of pre-Northridge steel moment-resisting frames are retrofitted to achieve ductility; the method involves determining the position and number of connections to be retrofitted. The optimal solution is determined by applying the nondominated sorting genetic algorithm-II (NSGA-II), which acts as a multiobjective seismic retrofit optimization technique. As objective functions, the initial cost for the connection retrofit and lifetime seismic damage cost were selected, and a seismic performance level below the 5% interstory drift ratio was employed as a constraint condition. The proposed method was applied to the SAC benchmark three- and nine-story buildings, and several Pareto solutions were obtained. The optimized retrofit solutions indicated that the lifetime seismic damage cost decreased as the initial retrofit cost increased. Although every Pareto solution existed within a seismic performance boundary set by a constraint function, the seismic performance tended to increase with the initial retrofit cost. Analysis and economic assessment of the relations among the initial retrofit cost, lifetime seismic damage cost, total cost, and seismic performance of the derived Pareto solution allow building owners to make seismic retrofit decisions more rationally.
机译:本研究提出了一种基于性能的抗弯框架抗震多目标优化方法。对Northridge钢制抗弯前框架的脆性接头进行了改造,以实现延展性;该方法涉及确定要改造的连接的位置和数量。最佳解决方案是通过应用非支配排序遗传算法II(NSGA-II)来确定的,该算法是一种多目标抗震改造优化技术。作为目标函数,选择了用于连接改造的初始成本和使用寿命内的地震破坏成本,并采用低于5%层间漂移率的地震性能水平作为约束条件。将该方法应用于SAC基准三层和九层建筑物,并获得了几种Pareto解决方案。优化的改造方案表明,随着初始改造成本的增加,使用寿命内的地震破坏成本也随之降低。尽管每个帕累托解都存在于由约束函数设定的抗震性能边界内,但抗震性能往往会随着初始改造成本而提高。对派生的Pareto解决方案的初始改造成本,使用寿命内地震破坏成本,总成本和抗震性能之间关系的分析和经济评估,使建筑物所有者可以更合理地做出地震改造决策。

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