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Toward synergistic performance of integrated solar-wind hybrid energy harvesting structures

机译:朝着集成太阳风混合能量收集结构的协同性能

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This paper considers aerodynamic interactions among an array of tensioned ribbon energy harvesters capable of harvesting both wind and solar energy. Each harvester consists of a thin-film solar cell ribbon supported in tension by a pair of piezoelectric bimorph beams in an inverted-U configuration. These ribbons experience aeroelastic flutter when subjected to crossflow, and the energy from these vibrations can be harvested through the piezoelectric beams. The effect of wind speed on the interaction between two fluttering inverted U-shaped aeroelastic energy harvesters configured in a tandem array was investigated, as previous work suggests that synergistic wake interactions can occur between multiple fluttering energy harvesters. An experimental apparatus was constructed and two thin-film solar ribbons were placed in tandem at a fixed separation distance. Each ribbon was given an applied pre-tension, and wind tunnel testing was performed for a range of wind speeds between 7.5 m/s and 12.5 m/s for each ribbon when fluttering in isolation and when fluttering in tandem. Tandem array efficiency was calculated from the experimental data, and it was determined that there is a wind speed at which peak tandem array efficiency (significantly greater than unity) occurs. It was found that this peak corresponds to the wind speed at which constructive interference due to frequency lock between the two fluttering ribbons begins. Results also show tandem efficiency benefits in both the downstream and upstream harvester, as opposed to previous results that show benefits primarily in the downstream harvester. It is hypothesized that these upstream benefits are due to possible base excitations in the apparatus that have been transmitted by the downstream harvester.
机译:本文考虑能够既收获风能和太阳能的张紧带的能量采集的阵列之间的空气动力学相互作用。每个收割机包括由在倒U构成的一对压电双晶片束在张力支撑的薄膜太阳能电池带的。当经受交叉流这些色带体验气动弹性扑动,并从这些振动的能量可通过该压电梁收获。风速对的相互作用二者的效果飘飘倒在串联阵列中配置的U形气动弹性能量采集进行了研究,如先前的工作表明,协同唤醒相互作用可以多种颤动能量采集之间发生。的实验装置构造和两个薄膜太阳能色带置于串联在一个固定的间隔距离。每个带状给出所施加的预张力,和7.5米/秒和12.5微米之间的范围的风速进行风洞试验在隔离飘扬并串联飞舞时当/ s的每个带状。发生串联阵列效率由实验数据计算的,并且它被判断为存在于哪个峰串联阵列效率(大于单位显著更高)风速。结果发现,此峰对应于风速在其干涉由于两个丝带飘飘开始之间的频率锁定。结果在下游和上游都收割机还显示串联效率的好处,而不是,显示主要在下游收割机好处以前的结果。据推测,这些上游好处是由于在已经由下游收割机发送的设备可能的碱基激励。

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