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Flutter Phenomenon in Flow Driven Energy Harvester–A Unified Theoretical Model for Stiff and Flexible Materials

机译:流动驱动的能量收集器中的颤振现象–刚性和柔性材料的统一理论模型

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摘要

Here, we report a stable and predictable aero-elastic motion in the flow-driven energy harvester, which is different from flapping and vortex-induced-vibration (VIV). A unified theoretical frame work that describes the flutter phenomenon observed in both “stiff” and “flexible” materials for flow driven energy harvester was presented in this work. We prove flutter in both types of materials is the results of the coupled effects of torsional and bending modes. Compared to “stiff” materials, which has a flow velocity-independent flutter frequency, flexible material presents a flutter frequency that almost linearly scales with the flow velocity. Specific to “flexible” materials, pre-stress modulates the frequency range in which flutter occurs. It is experimentally observed that a double-clamped “flexible” piezoelectric P(VDF-TrFE) thin belt, when driven into the flutter state, yields a 1,000 times increase in the output voltage compared to that of the non-fluttered state. At a fixed flow velocity, increase in pre-stress level of the P(VDF-TrFE) thin belt up-shifts the flutter frequency. In addition, this work allows the rational design of flexible piezoelectric devices, including flow-driven energy harvester, triboelectric energy harvester, and self-powered wireless flow speed sensor.
机译:在这里,我们报告了在气流驱动的能量收集器中稳定且可预测的空气弹性运动,这与扑动和涡激振动(VIV)不同。这项工作提出了一个统一的理论框架,描述了在“刚性”和“柔性”材料中观察到的流动驱动能量收集器的颤动现象。我们证明两种材料的颤动是扭转和弯曲模式耦合效应的结果。与具有与流速无关的颤动频率的“硬”材料相比,柔性材料呈现的颤动频率几乎与流速成线性比例。预应力特定于“柔性”材料,可调节发生颤动的频率范围。实验观察到,双夹钳式“柔性”压电P(VDF-TrFE)薄带在进入颤动状态时,其输出电压与非扰动状态相比增加了1,000倍。在固定流速下,P(VDF-TrFE)薄带的预应力水平增加,颤振频率就会上移。此外,这项工作还可以合理设计柔性压电设备,包括流量驱动的能量收集器,摩擦电能收集器和自供电的无线流速传感器。

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