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Harvesting vibrational energy with liquid-bridged electrodes: thermodynamics in mechanically and electrically driven RC-circuits

机译:利用液态桥接电极收集振动能量:机械和电驱动的RC电路中的热力学

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摘要

We theoretically study a vibrating pair of parallel electrodes bridged by a (deformed) liquid droplet, which is a recently developed microfluidic device to harvest vibrational energy. The device can operate with various liquids, including liquid metals, electrolytes, as well as ionic liquids. We numerically solve the Young–Laplace equation for all droplet shapes during a vibration period, from which the time-dependent capacitance follows that serves as input for an equivalent circuit model. We first investigate two existing energy harvesters (with a constant and a vanishing bias potential), for which we explain an open issue related to their optimal electrode separations, which is as small as possible or as large as possible in the two cases, respectively. Then we propose a new engine with a time-dependent bias voltage, with which the harvested work and the power can be increased by orders of magnitude at low vibration frequencies and by factors 2–5 at high frequencies, where frequencies are to be compared to the inverse RC-time of the circuit.
机译:理论上,从理论上研究由(变形的)液滴桥接的振动对并联电极,这是最近开发的微流体装置以收获振动能量。该装置可以用各种液体操作,包括液体金属,电解质以及离子液体。在振动周期期间,在数值上解决所有液滴形状的杨拉普拉斯方程,从中遵循的时间依赖于当量电路模型的输入。我们首先研究了两个现有的能量收割机(具有恒定和消失的偏置电位),我们解释了与其最佳电极分离相关的开放问题,它们分别在两种情况下尽可能小或尽可能大。然后,我们提出了一种具有时间依赖性偏置电压的新发动机,其中收获的工作和功率可以在低振动频率下和高频下的2-5个子中的级别增加,其中要将频率进行比较电路的逆rc-time。

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