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首页> 外文期刊>Journal of intelligent material systems and structures >Response of impedance measured by polyvinylidene fluoride film sensors to damage propagation for wind turbine blade
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Response of impedance measured by polyvinylidene fluoride film sensors to damage propagation for wind turbine blade

机译:聚偏二氟乙烯薄膜传感器测得的阻抗对风力涡轮机叶片损伤传播的响应

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摘要

To establish an effective operation and maintenance system for the wind turbine system, techniques for early detecting the damage, which may occur during its operation, may be required. In this study, responses of impedance, which can be a technique to early detect the damage, to the damage extension in the wind turbine blade were investigated through the full-scale structural test of the 100 kW wind blade. The impedance was measured with polyvinylidene fluoride film sensors with dimension of 25 × 20 mm~2 patched on the blade skin. The damages were initiated along the trailing and leading edges and extended with increasing static load level. Impedance signatures varied with increasing the damage size were analyzed in the frequency ranging from 1 to 300 MHz. It was found that the patterns of the impedance signatures are remarkably dependent upon the static load level and sensor location. The change in the signatures was quantitatively quantified by the damage metric. The scalar metric values were closely correlated to the damage extension size and the sensor locations to the extended damage.
机译:为了为风力涡轮机系统建立有效的运行和维护系统,可能需要用于早期检测损坏的技术,该损坏可能在其运行期间发生。在这项研究中,通过对100 kW风力涡轮机叶片进行全面的结构测试,研究了阻抗的响应(可以作为一种早期检测损坏的技术)对风力涡轮机叶片中损伤扩展的响应。阻抗是用尺寸为25×20 mm〜2的聚偏二氟乙烯薄膜传感器贴在叶片皮肤上测量的。损坏是沿着后缘和前缘引发的,并随着静载荷水平的提高而扩大。在1到300 MHz的频率范围内分析了随损伤大小增加而变化的阻抗特征。已经发现,阻抗信号的模式明显取决于静态负载水平和传感器位置。签名的变化通过损害度量进行量化。标量度量值与损伤扩展大小密切相关,而传感器位置与扩展损伤密切相关。

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