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Piezoelectric energy harvesting from hybrid vibrations

机译:从混合振动中收集压电能量

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The concept of harvesting energy from ambient and galloping vibrations of a bluff body with a triangular cross-section geometry is investigated. A piezoelectric transducer is attached to the transverse degree of freedom of the body in order to convert these vibrations to electrical energy. A coupled nonlinear distributed-parameter model is developed that takes into consideration the galloping force and moment nonlinearities and the base excitation effects. The aerodynamic loads are modeled using the quasi-steady approximation. Linear analysis is performed to determine the effects of the electrical load resistance and wind speed on the global damping and frequency of the harvester as well as on the onset of instability. Then, nonlinear analysis is performed to investigate the impact of the base acceleration, wind speed, and electrical load resistance on the performance of the harvester and the associated nonlinear phenomena that take place. The results show that, depending on the interaction between the base and galloping excitations, and the considered values of the wind speed, base acceleration, and electrical load resistance, different nonlinear phenomena arise while others disappear. Short- and open-circuit configurations for different wind speeds and base accelerations are assessed. The results show that the maximum levels of harvested power are accompanied by a minimum transverse displacement when varying the electrical load resistance.
机译:研究了从具有三角形横截面几何形状的钝体的环境振动和舞动振动中收集能量的概念。压电换能器连接到人体的横向自由度,以便将这些振动转换为电能。建立了耦合非线性分布参数模型,该模型考虑了奔腾力和力矩非线性以及基本激励效应。使用准稳态近似对空气动力载荷进行建模。进行线性分析以确定电气负载电阻和风速对收割机的整体阻尼和频率以及不稳定状态的影响。然后,执行非线性分析以研究基本加速度,风速和电气负载电阻对收割机性能以及发生的相关非线性现象的影响。结果表明,取决于基本激励和驰豫激励之间的相互作用以及风速,基本加速度和电气负载阻力的考虑值,会出现不同的非线性现象,而其他非线性现象会消失。评估了不同风速和基本加速度的短路和开路配置。结果表明,在改变电负载电阻时,最大的采集功率伴随着最小的横向位移。

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