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Temperature impact on the performance of galloping-based piezoaeroelastic energy harvesters

机译:温度对舞动的压电气动弹性能量采集器性能的影响

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The effects of ambient temperature on the level of harvesting energy from galloping oscillations of a bluff body are investigated. A nonlinear- distributed-parameter model is developed to determine variations in the onset speed of galloping and the level of the harvested power when the ambient temperature is varied. The considered harvester consists of a bimorph piezoelectric cantilever beam with a prismatic-structure tip mass. A modal analysis is performed to derive the exact mode shapes and natural frequencies of the beam-structure system and their dependence on temperature variations. The quasi-steady representation is used to model the aerodynamic loads. The linear analysis shows that the temperature and the electrical load resistance affect the onset speed of galloping significantly. The nonlinear analysis shows that temperature variation affects the level of the harvested power.
机译:研究了环境温度对虚张声势体的疾驰振动所产生的能量水平的影响。建立了非线性分布参数模型,以确定环境温度变化时,驰the开始速度和所采集功率水平的变化。所考虑的收割机由具有棱柱形尖端质量的双压电晶片压电悬臂梁组成。进行模态分析以得出梁结构系统的精确模态形状和固有频率及其对温度变化的依赖性。准稳态表示法用于对空气动力载荷进行建模。线性分析表明,温度和电气负载电阻对舞动的起始速度有显着影响。非线性分析表明,温度变化会影响所收集功率的水平。

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