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Analytical investigation of the seismic performance of RC frames rehabilitated using different rehabilitation techniques

机译:使用不同修复技术修复的钢筋混凝土框架抗震性能的分析研究

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The objective of this study is to investigate analytically the effectiveness of different rehabilitation patterns in upgrading the seismic performance of existing non-ductile reinforced concrete (RC) frame structures. The study investigates the performance of two RC frames (with different heights representing low- and high-rise buildings) with or without masonry infill when rehabilitated and subjected to three types of ground motion records. The ground motion records represent earthquakes with low, medium and high frequency contents. Three models were considered for the RC frames; bare frame, masonry-infilled frame with soft infill, and masonry-infilled frame with stiff infill. Four rehabilitation patterns were studied, namely: (1) introducing a RC shear wall, (2) using steel bracing, (3) using diagonal FRP strips (FRP bracings) in the case of masonry-infilled frames, and (4) wrapping or partially wrapping the frame members (columns and beams) using FRP composites. Incremental Dynamic Analysis was conducted for the studied cases. The seismic performance enhancement of the studied frames is evaluated in terms of the maximum applied peak ground acceleration resisted by the frames, maximum inter-storey drift ratio, maximum storey shear-to-weight ratio and energy dissipation capacity.
机译:这项研究的目的是分析研究不同的修复方式在提高现有非延性钢筋混凝土框架结构的抗震性能方面的有效性。这项研究调查了两栋钢筋混凝土框架(具有不同高度分别代表低层和高层建筑)在修复后是否带有砖石填充物并经受三种地面运动记录的性能。地面运动记录代表具有低,中和高频内容的地震。 RC框架考虑了三种模型。裸框,带软填充物的砖石填充框架和带硬填充物的砖石填充框架。研究了四种修复方式,即:(1)引入RC剪力墙;(2)使用钢支撑;(3)对于砖石填充框架,使用对角FRP条(FRP支撑);以及(4)包裹或使用FRP复合材料部分包裹框架构件(柱和梁)。对所研究的案例进行了增量动态分析。根据框架抵抗的最大施加峰值地面加速度,最大层间漂移比,最大层间剪切重量比和能量耗散能力,评估了所研究框架的抗震性能。

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