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Effect of soil-structure interaction on seismic damage of mid-rise reinforced concrete structures retrofitted by FRP composites

机译:土壤 - 结构相互作用对中升钢筋混凝土结构抗震损伤的影响FRP复合材料改装

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摘要

The current study explores the soil-structure interaction (SSI) effect on the potential seismic damage of mid-rise non-seismically designed reinforced concrete frames retrofitted by Fibre Reinforced Polymer (FRP). An 8-storey reinforced concrete frame poorly-confined due to transverse reinforcement deficiency is selected and then retrofitted by FRP wraps to provide external confinement. The poorly-confined and FRP retrofitted frames with/without SSI are modelled using hysteretic nonlinear elements. Inelastic time history and damage analyses are performed for these frames subjected to different seismic intensities. The results show that the FRP confinement significantly reduces one or two damage levels for the poorly-confined frame. More importantly, the SSI effect is found to increase the potential seismic damage of the retrofitted frame, reducing the effectiveness of FRP retrofitting. This finding, which is contrary to the conventionally beneficial concept of SSI governing for decades in structural and earthquake engineering, is worth taking into account in designing and evaluating retrofitted structures.
机译:目前的研究探讨了土壤 - 结构相互作用(SSI)对中升非地震设计钢筋混凝土框架的潜在地震损伤的影响,由纤维增强聚合物(FRP)改装。选择8层楼的钢筋混凝土框架由于横向增强缺损而狭窄,然后通过FRP包装改装,以提供外部限制。使用滞后非线性元件建模带/不具有SSI的狭窄和FRP改装帧。对经历不同地震强度的这些框架进行无弹性时间历史和损伤分析。结果表明,FRP限制显着降低了狭窄的框架的一个或两个伤害水平。更重要的是,发现SSI效应增加了改装框架的潜在地震损伤,降低了FRP改装的有效性。这一发现与几十年来在结构和地震工程中违反了SSI的传统有益概念,值得考虑到设计和评估改造的结构。

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