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Enhancing Wind Energy Harvesting Using Passive Turbulence Control Devices

机译:使用被动湍流控制装置提高风能收集

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摘要

Aiming to predict the performance of galloping piezoelectric energy harvesters, a theoretical model is established and verified by experiments. The relative error between the model and experimental results is 5.3%. In addition, the present model is used to study the AC output characteristics of the piezoelectric energy harvesting system under passive turbulence control (PTC), and the influence of load resistance on the critical wind speed, displacement, and output power under both strong and weak coupling are analyzed from the perspective of electromechanical coupling strength, respectively. The results show that the critical wind speed initially increases and then decreases with increasing load resistance. For weak and critical coupling cases, the output power firstly increases and then decreases with the increase of the load resistance, and reaches the maximum value at the optimal load. For the weak, critical, and strong coupling cases, the critical optimal load is 1.1 MΩ, 1.1 MΩ, and 3.0 MΩ, respectively. Overall, the response mechanism of the presented harvester is revealed.
机译:旨在预测疾驰压电能量收割机的性能,通过实验建立和验证理论模型。模型与实验结果之间的相对误差为5.3%。此外,本模型用于研究无源湍流控制(PTC)下压电能量收集系统的交流输出特性,以及负载电阻对临界风速,位移和输出功率的影响强,弱从机电耦合强度的角度分析耦合。结果表明,临界风速最初增加,然后随着负载性的增加而降低。对于弱和关键的耦合例,输出功率首先增加,然后随着负载电阻的增加而降低,并在最佳负载下达到最大值。对于弱,临界和强耦合例,临界最佳负载分别为1.1MΩ,1.1MΩ和3.0mΩ。总的来说,揭示了所提出的收割机的响应机制。

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