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Passive-only damage detection by reciprocity of Green's functions reconstructed from diffuse acoustic fields with application to wind turbine blades

机译:通过从扩散声场重构的格林函数的互易性进行的仅被动损伤检测,并应用于风力涡轮机叶片

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摘要

The increasing demand for renewable and clean power generation has resulted in the increased size of rotor blades in wind turbine systems. The operational environments have introduced the need for structural health monitoring of the blades to help prevent unexpected failures. A new passive approach is here presented to detect damage in a wind turbine blade using the reciprocity of Green's function. This is achieved using the derivative of an ensemble average of cross-correlation functions to reconstruct the forward and backward time-domain Green's functions between any two detection points on the structure within a diffuse acoustic field. Damage is detected when the similarity between the forward and backward signals decreases due to the wave nonlinearities introduced by the discontinuity that break the field reciprocity condition. Proof-of-principle results are presented first for an aluminum plate and then for a 9-m-long composite wind turbine blade containing known, simulated damage.
机译:对可再生和清洁发电的需求的增加导致风力涡轮机系统中的转子叶片的尺寸增加。操作环境引入了对刀片的结构运行状况进行监控的需求,以帮助防止意外故障。本文介绍了一种新的被动方法,利用格林函数的互易性来检测风力涡轮机叶片中的损坏。这是通过使用互相关函数的整体平均值的导数来重建散射声场中结构上任意两个检测点之间的前向和后向时域格林函数来实现的。当前向和后向信号之间的相似性由于破坏场互易性条件的不连续性所引起的波非线性而降低时,就会检测到损坏。首先给出铝板的原理验证结果,然后给出包含已知模拟损伤的9米长复合风力涡轮机叶片的原理验证结果。

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