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Multi-objective seismic retrofit method for using FRP jackets in shear-critical reinforced concrete frames

机译:在钢筋混凝土临界抗剪框架中使用FRP护套的多目标抗震改造方法

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摘要

Many research studies have been conducted on seismic retrofits of existing reinforced concrete (RC) frames with fiber-reinforced polymer (FRP) jackets. Although existing RC columns are vulnerable to shear failure because of insufficient transverse reinforcement and deficient seismic details, little research exists on the reinforcement locations and FRP reinforcement level required to prevent column shear failure. In this paper, the optimal seismic retrofit method that uses FRP jackets for shear-critical RC frames is presented. This optimal method uses non-dominated sorting genetic algorithm-Ⅱ (NSGA-Ⅱ) to optimize the two conflicting objective functions of the retrofit cost as well as the seismic performance, simultaneously. To minimize the retrofit cost and maximize the seismic performance of a structure, this optimal method minimizes the amount of FRP required and the coefficient of variation of inter-story drift ratios while satisfying the constraint conditions on the shear failure prevention, maximum inter-story drift ratio, and maximum compressive strain of concrete. Both the flexural reinforcement method and shear reinforcement method of FRP jackets are adopted to strengthen the flexural capacity and shear strength of columns, respectively. The two reinforcement methods are applied sequentially to minimize the total amount of FRP material required. The proposed method is applied to 3-story RC frame and the optimal retrofit schemes that suggest the reinforcement locations and the number of FRP reinforcement plies are obtained.
机译:已经对现有的带有纤维增强聚合物(FRP)护套的钢筋混凝土(RC)框架进行抗震改造进行了许多研究。尽管由于横向钢筋不足和地震细节不足,现有的RC柱很容易发生剪切破坏,但对于防止柱剪切破坏所需的加固位置和FRP加固水平的研究很少。本文提出了一种针对剪力至关重要的钢筋混凝土框架使用FRP护套的最佳抗震改造方法。该优化方法采用非支配排序遗传算法-Ⅱ(NSGA-Ⅱ)来同时优化改造成本和抗震性能这两个相互矛盾的目标函数。为了最小化改造成本并最大化结构的抗震性能,该最佳方法在满足防剪破坏,最大层间位移约束条件的同时,将所需的FRP量和层间位移比的变化系数最小化。比率和混凝土的最大压缩应变。 FRP夹套采用抗弯加固法和抗剪加固法分别加固柱的抗弯承载力和抗剪强度。依次应用两种加固方法,以最大程度地减少所需的FRP材料总量。将该方法应用于三层RC框架,并获得了建议的加固方案,该方案表明了加固位置和FRP加固层的数量。

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