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首页> 外文期刊>Bulletin of earthquake engineering >Optimization of infill panel for seismic response of multi-story RC frame buildings utilizing multi criteria optimization technique
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Optimization of infill panel for seismic response of multi-story RC frame buildings utilizing multi criteria optimization technique

机译:多层RC框架建筑物利用多标准优化技术的地震响应填充面板优化

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For seismic excitations with different intensities, the performance-based seismic design concept is essential for designers to accurately control the level of damage and keep overall seismic response of buildings within acceptable limits. In order to investigate the feasible solution-set for many real large-scale buildings such as tall buildings and large-span bridges subjected to dynamic loads, an experimental test of such a large-scale physical model is necessary but it is too expensive to conduct such a test for only one prototype. Recently, optimization of the performance-based seismic design for the large-scale structures such as multi-story RC frames is considered by engineers to obtain the optimal and rapid solution. This paper presents a technique for multi criteria analysis, which involves an inelastic analysis and dynamic response of the infill RC frames in the optimization process. The optimal geometric and mechanical properties of infill panel were investigated to improve the seismic performance of a 12-story RC infill frame. As a typical construction process in Egypt, the 12-story RC frame is introduced as a real-life large-scale case study. The parameter space investigation method was adopted along with use of IDARC-2D software for inelastic damage analysis and the visual basic programing language to establish the feasible and Pareto solution-set for the studied frames. The successful integration of inelastic damage analysis and the parameter space investigation method shows great potential to utilize the multi-criteria optimization method for large-scale structures to obtain the Pareto optimal-set in the future. The study concludes that the optimization of geometric and mechanical properties of infill panel is essential and significantly improves the seismic response and damage index of the infill RC frames.
机译:对于不同强度的地震激励,基于性能的抗震设计概念对于设计师准确控制损伤水平并将建筑物的整体地震响应保持在可接受的范围内至关重要。为了研究许多实际大型建筑(如高层建筑和大跨度桥梁)在动荷载作用下的可行解决方案,有必要对此类大型物理模型进行实验测试,但仅对一个原型进行此类测试成本太高。近年来,工程师们考虑对多层钢筋混凝土框架等大型结构进行基于性能的抗震设计优化,以获得最优、快速的解决方案。本文提出了一种多准则分析技术,包括优化过程中填充钢筋混凝土框架的弹塑性分析和动力响应。为了提高12层钢筋混凝土填充框架的抗震性能,研究了填充板的最佳几何和力学性能。作为埃及的一个典型施工过程,12层钢筋混凝土框架作为一个真实的大规模案例研究被引入。采用参数空间调查法,使用IDARC-2D非弹性损伤分析软件和visual basic编程语言,为所研究的框架建立可行的帕累托解集。非弹性损伤分析和参数空间研究方法的成功结合显示了在未来利用大型结构的多准则优化方法获得帕累托最优集的巨大潜力。研究结果表明,优化填充板的几何和力学性能至关重要,并显著提高了填充钢筋混凝土框架的地震反应和损伤指数。

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