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On the damage detection of a laboratory scale model of a tripod supporting structure by vibration-based methods

机译:基于振动的方法检测三脚架支撑结构实验室规模模型的损伤

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The paper presents a comparison of two vibration-based methods for the damage detection of a laboratory scale model of a tripod. Tripods are a part of the supporting structures for offshore wind turbines. The tripod model structure allows the investigation of the propagation of a circumferential representative crack in one of the cylindrical upper braces of the tripod itself. The first damage detection method addresses the use of acceleration signals in a genuine experimental modal analysis (i.e. input-output modal analysis) while the second one is based on operational modal analysis (i.e. output only modal analysis). The progressive damage is monitored by the calculation of the modal parameters and following their deviations. Both methods were performed on the undamaged and damaged structure for different support conditions and excitations (shaker, hammer, in water basin under wave excitation). The results suggest that both the methods can be considered useful tools for damage detection in dry and in-water conditions for offshore support structures. The presented technique proves to be effective for detecting and assessing the presence of representative cracks.
机译:本文介绍了两种基于振动的方法对三脚架实验室规模模型的损伤检测的比较。三脚架是用于海上风力涡轮机的支撑结构的一部分。三脚架模型结构允许研究在三脚架本身的圆柱形上支架之一中周向代表性裂纹的扩展。第一种损坏检测方法解决了在真实的实验模态分析(即输入-输出模态分析)中使用加速度信号的问题,而第二种方法则基于操作模态分析(即仅输出模态分析)。通过模态参数的计算并跟随其偏差来监控渐进式损坏。两种方法都是在未损坏和损坏的结构上针对不同的支撑条件和激励(振动器,锤子,在波浪激励下的水盆中)执行的。结果表明,这两种方法都可以视为在干燥​​和水下条件下对海上支撑结构进行损伤检测的有用工具。所提出的技术被证明对于检测和评估代表性裂纹的存在是有效的。

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