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CFRP composite retrofitting effect on the dynamic characteristics of arch dams

机译:CFRP复合材料改造对拱坝动力特性的影响

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The purpose of this study is to investigate the effect of retrofitting dynamic characteristics of a damaged laboratory arch dam model, subsequently repaired with high-strength structural mortar and strengthened with composite carbon fiber reinforced polymer. This study constructed in laboratory conditions is a prototype arch dam-reservoir-foundation model. Five test cases of ambient vibration on the arch dam model illustrate the changes in dynamic characteristics: natural frequency, mode shape, and damping ratio, before and after retrofitting. The ambient vibration tests collected data from the dam body during vibrations by natural excitations which provided small impacts and response signals from sensitivity accelerometers placed at crest points. Enhanced Frequency Domain Decomposition Method in the frequency domain extracts the experimental dynamic characteristics. At the end of the study, experimentally identified dynamic characteristics obtained from all test cases have been compared with each other. Apparently, after the retrofitting, the natural frequencies of the dam body increased considerably, demonstrating that the retrofitting, including repairing and strengthening is very effective on the flashback of initial dynamic characteristics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是研究改造受损的实验室拱坝模型的动力特性,随后用高强度结构砂浆修复并用复合碳纤维增强聚合物加固的效果。在实验室条件下进行的这项研究是拱坝-水库-基础模型的原型。拱坝模型上的五个环境振动测试案例说明了改造前后的动力特性变化:固有频率,振型和阻尼比。环境振动测试在自然激发的振动过程中从坝体中收集了数据,这些振动提供了很小的影响,并且受到了位于波峰点处的灵敏度加速度计的响应信号的影响。频域中的增强频域分解方法提取了实验动态特性。在研究结束时,将从所有测试用例获得的实验确定的动态特性进行了相互比较。显然,在改造后,坝体的固有频率显着增加,表明改造(包括维修和加固)对初始动态特性的反演非常有效。 (C)2015 Elsevier Ltd.保留所有权利。

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