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Analytical model of droplet based electrostatic energy harvester performance

机译:基于液滴静电能量收割机性能的分析模型

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摘要

An analytical model for electrostatic energy harvesters that use translating conductive droplets as proof masses is presented. These devices generate power from the variable capacitance that results from droplet motion across an interdigitated electrode array. Model predictions are compared with numerical and experimental results. Comparison with numerical simulation supports the validity of the model and suggests that capacitance scales with contact diameter, not droplet diameter. Comparison with experimental results shows that the model captures the shape of the evolution of transient output energy and voltage from the device. These comparisons suggest that the contact diameter of mercury droplets tested experimentally was similar to the diameter of the droplet. Evaluation of the Bond number in these cases supports this result. Model predictions based on a contact diameter equal to the observed droplet diameter correctly predict the width and spacing of output voltage peaks as the droplet translates through the device. However, underprediction of the magnitude of voltage peaks resulted in an underprediction of the accumulated energy output (36 %). This discrepancy suggests that the contact area may not remain constant as the droplet moves through the device. A deeper understanding of the evolution of the contact area is required to optimize device parameters to maximize energy output.
机译:展示了使用将导电液滴的静电能量收割机视为防尘肿块的分析模型。这些器件从变频电极阵列上的液滴运动产生的可变电容产生功率。将模型预测与数值和实验结果进行比较。与数值模拟的比较支持模型的有效性,并表明电容尺度具有接触直径,而不是液滴直径。与实验结果的比较表明,该模型捕获瞬态输出能量和电压的演变的形状。这些比较表明,经过实验测试的汞液滴的联系直径类似于液滴的直径。在这些情况下评估债券号支持这一结果。基于等于观察到的液滴直径的模型预测正确地预测输出电压峰值的宽度和间隔,因为液滴通过设备转换。然而,电压峰值的弱度导致累积能量输出的漏电(36%)。当液滴移动通过装置时,这种差异表明接触区域可能不会保持恒定。需要更深入地了解接触面积的进化以优化设备参数以最大化能量输出。

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