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基于旗帜飘动的压电能量采集器性能评估

Performance Evaluation of a Piezoelectric Energy Harvester Based on Flag-Flutter.

作者信息

Elahi Hassan, Eugeni Marco, Fune Federico, Lampani Luca, Mastroddi Franco, Paolo Romano Giovanni, Gaudenzi Paolo

机构信息

Department of Mechanical and Aerospace Engineering (DIMA), Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, Italy.

出版信息

Micromachines (Basel). 2020 Oct 14;11(10):933. doi: 10.3390/mi11100933.

Abstract

In the last few decades, piezoelectric (PZT) materials have played a vital role in the aerospace industry because of their energy harvesting capability. PZT energy harvesters (PEH) absorb the energy from an operational environment and can transform it into useful energy to drive nano/micro-electronic components. In this research work, a PEH based on the flag-flutter mechanism is presented. This mechanism is based on fluid-structure interaction (FSI). The flag is subjected to the axial airflow in the subsonic wind tunnel. The performance evaluation of the harvester and aeroelastic analysis is investigated numerically and experimentally. A novel solution is presented to extract energy from Limit Cycle Oscillations (LCOs) phenomenon by means of PZT transduction. The PZT patch absorbs the flow-induced structural vibrations and transforms it into electrical energy. Furthermore, the optimal resistance and length of the flag is predicted to maximize the energy harvesting. Different configurations of flag i.e., with Aluminium (Al) patch and PZT patch for flutter mode vibration mode are studied numerically and experimentally. The bifurcation diagram is constructed for the experimental campaign for the flutter instability of a cantilevered flag in subsonic wind-tunnel. Moreover, the flutter boundary conditions are analysed for reduced critical velocity and frequency. The designed PZT energy harvester via flag-flutter mechanism is suitable for energy harvesting in aerospace engineering applications to drive wireless sensors. The maximum output power that can be generated from the designed harvester is 6.72 mW and the optimal resistance is predicted to be 0.33 MΩ.

摘要

在过去几十年中,压电(PZT)材料因其能量收集能力在航空航天工业中发挥了至关重要的作用。PZT能量收集器(PEH)从运行环境中吸收能量,并可将其转化为有用能量以驱动纳米/微电子元件。在这项研究工作中,提出了一种基于旗形摆动机制的PEH。该机制基于流固耦合(FSI)。旗形物在亚音速风洞中受到轴向气流作用。对该收集器的性能评估和气动弹性分析进行了数值和实验研究。提出了一种新颖的解决方案,通过PZT转换从极限环振荡(LCOs)现象中提取能量。PZT贴片吸收流动引起的结构振动并将其转化为电能。此外,预测了旗形物的最佳电阻和长度以实现最大能量收集。对不同配置的旗形物,即带有铝(Al)贴片和用于颤振模式振动模式的PZT贴片进行了数值和实验研究。为亚音速风洞中悬臂旗形物的颤振不稳定性实验构建了分岔图。此外,分析了颤振边界条件以降低临界速度和频率。通过旗形摆动机制设计的PZT能量收集器适用于航空航天工程应用中的能量收集以驱动无线传感器。所设计的收集器可产生的最大输出功率为6.72 mW,预测的最佳电阻为0.33 MΩ。

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