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Multi-objective design model for retrofit of reinforced concrete frames with infilled walls using FRP bracings

机译:使用FRP支撑加固填充墙的钢筋混凝土框架的多目标设计模型

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摘要

Since existing structures can be retrofitted without removing or damaging the existing structural members, a seismic retrofit with FRP bracings has high applicability and cost efficiency. This study proposes an FRP-bracing-based optimal seismic retrofit method for reinforced concrete (RC) frames with infill walls. This method minimizes the number of FRP bracings for the retrofit and maximizes the dissipated energy while satisfying constraints related to interstory drift and structural collapse. The proposed method is applied to 5- and 10-story reinforced concrete frames, and optimal retrofit schemes that suggest the locations and number of FRP bracings are obtained. To support the decision-making of the building owner and engineer, the representative retrofit plans are selected and analyzed. It is shown that a reinforced structure with the optimal solution shows improved results in terms of both strength and deformation capacity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于可以在不移除或损坏现有结构构件的情况下对现有结构进行改造,因此具有FRP支撑的地震改造具有较高的适用性和成本效益。这项研究提出了一种基于FRP支撑的具有填充墙的钢筋混凝土(RC)框架的最佳抗震改造方法。此方法可最大程度地减少用于改装的FRP支撑的数量,并最大程度地提高耗散的能量,同时满足与层间偏移和结构塌陷有关的约束。将该方法应用于5层和10层钢筋混凝土框架,并获得了建议的FRP支撑位置和数量的最佳改造方案。为了支持建筑物所有者和工程师的决策,选择并分析了代表性的改造计划。结果表明,具有最佳解决方案的加固结构在强度和变形能力方面均显示出改进的结果。 (C)2017 Elsevier Ltd.保留所有权利。

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