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A New CAD Tool for Energy Optimization of Diagonal Motion Mode of Attached Electrode Triboelectric Nanogenerators

机译:附接电极摩擦纳米电极对角线运动模式的能量优化新的CAD工具

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Triboelectrification effect was known since the ancient Greek time. A triboelectric nanogenerator (TENG) was invented and is used to convert the mechanical energy to the electrical energy. The TENG is a promising candidate for the new transducers generation recommended for energy harvesting. It is used to harvest the mechanical energy with a great number of advantages. In this research, a new diagonal motion mode is proposed and is studied intensively in attached electrode mode using COMSOL finite element analysis. Diagonal motion mode offers a new degree of freedom which is the angle of motion allowing for further energy optimization. A new CAD tool is built based on semi-analytical equations derived from both COMSOL simulation results and theoretical framework. The tool optimizes the energy based on both the angle and the distance of motion in a few seconds which is very time efficient compared to the time consuming COMSOL simulations. The tool results show great consistency with the data obtained from time consuming COMSOL results.
机译:自古希腊时间以来,摩擦测效果是已知的。发明了一种摩擦纳米料料(滕),用于将机械能转化为电能。 Teng是推荐用于能量收集的新传感器一代的有希望的候选者。它用于利用大量优点收获机械能。在该研究中,提出了一种新的对角线运动模式,并使用COMSOL有限元分析在附接电极模式中集中研究。对角线运动模式提供了一种新的自由度,这是允许进一步的能量优化的运动角度。基于来自COMSOL仿真结果和理论框架的半分析方程,构建了一种新的CAD工具。该工具根据耗时的耗时的COMSOL模拟相比,基于两秒钟的角度和运动距离来优化能量和运动距离。刀具结果与从耗时的COMSOL结果中获得的数据显示出很大的一致性。

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