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Damage controlled optimum seismic design of reinforced concrete framed structures

机译:钢筋混凝土框架结构的损伤控制优化抗震设计

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In this paper, an innovative procedure is proposed for the seismic design of reinforced concrete frame structures. The main contribution of the proposed procedure is to minimize the construction cost, considering the uniform damage distribution over the height of structure due to earthquake excitations. As such, this procedure is structured in the framework of an optimization problem, and the initial construction cost is chosen as the objective function. The aim of uniform damage distribution is reached through a design constraint in the optimization problem. Since this aim requires defining allowable degree of damage, a damage pattern based on the concept of global collapse mechanism is presented. To show the efficiency of the proposed procedure, the uniform damage-based optimum seismic design is compared with two other seismic design procedures, which are the strength-based optimum seismic design and the damage-based optimum seismic design. By using the three different seismic design methods, three reinforced concrete frames including six-, nine-, and twelve-story with three bays are designed optimally under a same artificial earthquake. Then, to show the effects of the uniform damage distribution, all three optimized frames are used for seismic damage analysis under a suite of earthquake records. The results show that the uniform damage-based optimum seismic design method renders a design that will suffer less damage under severe earthquakes.
机译:本文针对钢筋混凝土框架结构的抗震设计提出了一种创新的程序。考虑到由于地震激发而在结构高度上造成的均匀破坏分布,拟议程序的主要贡献是将建筑成本降至最低。这样,该程序是在优化问题的框架内构造的,并且选择初始建造成本作为目标函数。通过优化问题中的设计约束,可以达到均匀分布损害的目的。由于此目的需要定义允许的损坏程度,因此提出了基于整体崩溃机制概念的损坏模式。为了显示所提出程序的效率,将基于统一损伤的最佳地震设计与其他两个地震设计程序进行了比较,这两个是基于强度的最佳地震设计和基于损伤的最佳地震设计。通过使用三种不同的地震设计方法,在相同的人工地震下,最优设计了三个钢筋混凝土框架,包括六层,九层和十二层以及三个隔间。然后,为了显示均匀破坏分布的影响,将所有三个优化框架用于一组地震记录下的地震破坏分析。结果表明,基于统一损伤的最佳地震设计方法使设计在大地震下遭受的损伤较小。

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