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Mainshock-aftershock response analyses of FRP-jacketed columns in existing RC building frames

机译:现有RC建筑框架中FRP夹套柱的余震余震响应分析。

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摘要

Column jacketing techniques have been widely used to improve the seismic performance of existing reinforced concrete buildings and to mitigate additional damage induced by subsequent earthquakes to earthquake-damaged structures. To numerically assess damage mitigation of structures due to column jacketing under successive earthquakes, this study proposes a numerical modeling technique for shear-critical reinforced concrete columns retrofitted and repaired using fiber-reinforced polymer wraps and validates the simulated results with existing experimental data. A non-ductile reinforced concrete frame with the potential of column shear failure is then selected and modeled using the proposed modeling technique to evaluate the effect of FRP retrofit and repair upon mainshock and aftershock responses. In addition, two rehabilitation parameters such as story-related rehabilitation and number of FRP wraps are selected, and used to create rehabilitated frame models to maximize the effectiveness of FRP installations for the as-built frame under successive earthquakes. This effectiveness is examined in terms of the damage level of maximum and residual deformation.
机译:柱护套技术已被广泛用于改善现有钢筋混凝土建筑物的抗震性能,并减轻后续地震对地震破坏的建筑物造成的额外损害。为了从数值上评估连续地震造成的柱套引起的结构损伤的缓解,本研究提出了一种使用纤维增强的聚合物包裹物加固和修复的抗剪临界钢筋混凝土柱的数值建模技术,并利用现有的实验数据验证了模拟结果。然后选择非弹性钢筋混凝土框架,其具有潜在的柱剪切破坏能力,并使用提出的建模技术对其进行建模,以评估FRP改造和修复对主震和余震响应的影响。此外,还选择了两个修复参数,例如与故事有关的修复和FRP包裹的数量,并用于创建修复后的框架模型,以最大程度地提高FRP在连续地震中对已建成框架的安装效率。根据最大变形和残余变形的破坏程度来检验这种有效性。

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