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Electromechanical impedance-based long-term SHM for jacket-type tidal current power plant structure

机译:基于机电阻抗的外套式潮流电厂结构长期SHM

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摘要

Jacket-type offshore structures are always exposed to severe environmental conditions such as salt, high speed of current, wave, and wind compared with other onshore structures. In spite of the importance of maintaining the structural integrity for an offshore structure, there are few cases to apply a structural health monitoring (SHM) system in practice. The impedance-based SHM is a kind of local SHM techniques and to date, numerous techniques and algorithms have been proposed for local SHM of real-scale structures. However, it still requires a significant challenge for practical applications to compensate unknown environmental effects and to extract only damage features from impedance signals. In this study, the impedance-based SHM was carried out on a 1/20-scaled model of an Uldolmok current power plant structure in Korea under changes in temperature and transverse loadings. Principal component analysis (PCA)-based approach was applied with a conventional damage index to eliminate environmental changes by removing principal components sensitive to them. Experimental results showed that the proposed approach is an effective tool for long-term SHM under significant environmental changes.
机译:与其他陆上结构相比,夹套式海上结构始终暴露于严酷的环境条件下,例如盐,高速海流,波浪和风。尽管维护海上结构的结构完整性非常重要,但在实践中很少有应用结构健康监测(SHM)系统的情况。基于阻抗的SHM是一种局部SHM技术,迄今为止,已经提出了许多用于实尺度结构的局部SHM的技术和算法。然而,在实际应用中,仍然需要挑战巨大,以补偿未知的环境影响并仅从阻抗信号中提取损坏特征。在这项研究中,基于阻抗的SHM是在温度和横向载荷变化的情况下,在韩国Uldolmok当前电厂结构的1/20比例模型上进行的。基于主成分分析(PCA)的方法与常规损坏指数一起使用,以通过去除对环境敏感的主成分来消除环境变化。实验结果表明,该方法是在重大环境变化下进行长期SHM的有效工具。

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