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Damage Identification for Underground Structure Based on Frequency Response Function

机译:基于频率响应函数的地下结构损伤识别

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摘要

Damage identification that is based on modal analysis is widely used in traditional structural damage identification. However, modal analysis is difficult in high damping structures and modal concentrated structures. Unlike approaches based on modal analysis, damage identification based on the frequency response function allows for the avoidance of error and easy verification through other test points. An updating algorithm is devised is this study by utilizing the frequency response function together with the dynamic reduction with respect to the selected design parameters. Numerical results indicate that the method can be used to define multiple parameters with large variation and incomplete measurement data and is robust against measurement noise. With the purpose of avoiding the occurrence of resonance and gaining additional information, the trial and error method has been used to choose a proper frequency. Furthermore, an experimental scale model in a soil box is subjected to the excitation of moving load to validate the effectiveness of the damage identification approach. The improved damage identification method for underground structures, which is based on the analysis of the frequency response function, can be adopted as an efficient and functional damage identification tool.
机译:基于模态分析的损伤识别已广泛应用于传统的结构损伤识别中。然而,在高阻尼结构和模态集中结构中,模态分析是困难的。与基于模态分析的方法不同,基于频率响应函数的损伤识别可以避免错误,并易于通过其他测试点进行验证。通过利用频率响应函数以及针对所选设计参数的动态降低,设计了一种更新算法。数值结果表明,该方法可用于定义变化较大,测量数据不完整的多个参数,对测量噪声具有鲁棒性。为了避免发生谐振并获得更多信息,已使用试错法选择合适的频率。此外,在土箱中的实验规模模型受到移动载荷的激励,以验证损伤识别方法的有效性。通过对频率响应函数的分析,改进的地下结构损伤识别方法可以作为一种有效的功能损伤识别工具。

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