Piezoelectric wind energy harvesting device with resonant cavity and tuning fork reeds

Yong-bin Zhang, C. Pan, Xue-kui Meng, Liandong Yu
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Abstract

Energy source and environment protection are universal concerned topics in our society. There are a series of problems caused by using traditional batteries for wireless and portable electronic products. In this paper, a novel resonant cavity with piezoelectric tuning fork reeds is proposed to scavenge wind energy as a power supplier for remote wireless sensor network nodes. Performance of the proposed piezoelectric wind energy harvesting device is studied numerically and experimentally. Structural design and working principle of the device are introduced. Working mode and frequency of the structure are analyzed with FEA simulation. Output abilities of the prototype device are tested under different working conditions. The device shows a violent resonant vibration in anti-phase mode when the wind speed is over 9 m/s. With a matching load of 83 kΩ, an output power of 6.3 mW was achieved under the wind speed of 12 m/s.
带有谐振腔和音叉簧片的压电式风能收集装置
能源与环境保护是当今社会普遍关注的话题。在无线和便携式电子产品中使用传统电池会产生一系列问题。本文提出了一种新型的压电音叉簧谐振腔,用于收集风能作为远程无线传感器网络节点的电源。对该压电式风能收集装置的性能进行了数值和实验研究。介绍了该装置的结构设计和工作原理。对结构的工作模式和频率进行了有限元仿真分析。在不同工况下对样机的输出能力进行了测试。当风速大于9 m/s时,装置在反相模式下出现强烈的共振振动。匹配负载为83 kΩ时,风速为12 m/s,输出功率为6.3 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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