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Asymmetric arc-shaped vortex-induced electromagnetic generator for harvesting energy from low-velocity flowing water

机译:非对称弧形涡流感应电磁发生器,用于从低速流动水中收集能量

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摘要

In this study, a novel small-scale electromagnetic energy harvester is designed and optimised, which aims at addressing the limitations of existing approaches in output power scavenged from low-velocity flowing water. Instead of conventional cantilever beams, an asymmetric arc-shaped elastic beam is implemented to disrupt flow, leading to its oscillation in the induced unsteady flow field. An electromagnetic transducer is utilised to convert kinetic energy into electrical energy. Furthermore, the effects of the structure asymmetry and curvature on the electrical outputs are investigated to optimise the scavenging energy capability. A prototype with the volume of 152.4 cm3 is fabricated and tested. A maximum open-circuit voltage of 1440 mV is obtained at 0.409 m/s, and the harvester generates an output power of 0.503 mW when it is connected to an external load of 110 Ω. The small-scale harvester shows great potential for applying in wireless sensor networks.
机译:在这项研究中,设计并优化了一种新型的小型电磁能量收集器,其目的是解决现有方法在从低速流动水中清除输出功率方面的局限性。代替传统的悬臂梁,实现了非对称弧形弹性梁来扰乱流动,从而导致其在诱导的非恒定流场中振荡。利用电磁换能器将动能转换成电能。此外,研究了结构不对称和曲率对电输出的影响,以优化扫气能力。制作并测试了体积为152.4 cm 3 的原型。在0.409 m / s时可获得1440 mV的最大开路电压,并且当收割机连接至110Ω的外部负载时,其产生的输出功率为0.503 mW。小型收割机在无线传感器网络中显示出巨大的潜力。

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