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Self-Powered Wind Sensor Based on Triboelectric Generator with Curved Flap Array for Multi-Directional Wind Speed Detection

机译:基于摩擦发电机的弧形襟翼阵列自供电风传感器用于多方向风速检测

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This paper reports a self-powered sensor for detecting wind speed and direction using triboelectric nanogenerator with a curved flap array. The sensor comprises a radial array of polyethylene terephthalate (PET)/Al flaps rolled up in different directions and polytetrafluoroethylene/Cu substrate. The curved flaps are simply fabricated through plastic deformation of PET/Al film. When the wind blows, the curved flap can be easily deformed, and thus the contact area between the flap and the substrate changes. The change in the contact area enables the flap to generate voltage via triboelectrification. Experimental results confirm that the voltage generated from the flap increases as the wind speed increases. We demonstrated that our sensor can detect both the wind speed and direction simultaneously based on the difference of the output voltage of the flaps. The proposed wind sensor has great potential in self-sustainable environmental monitoring applications.
机译:本文报道了一种具有摩擦皮瓣阵列的摩擦式纳米发电机,用于检测风速和风向的自供电传感器。该传感器包括一个径向排列的聚对苯二甲酸乙二酯(PET)/ Al瓣片,其沿不同方向卷起,并排列有聚四氟乙烯/ Cu基底。通过PET / Al膜的塑性变形可以简单地制造弯曲的折板。当风吹来时,弯曲的挡板容易变形,因此挡板和基板之间的接触面积改变。接触面积的变化使襟翼能够通过摩擦带电产生电压。实验结果证实,襟翼产生的电压随着风速的增加而增加。我们证明了我们的传感器可以根据襟翼输出电压的差异同时检测风速和风向。拟议中的风传感器在自我可持续的环境监测应用中具有巨大的潜力。

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