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Electrical capacitance with meshed electrodes for piezo- and pyro-electric energy harvesting applications

机译:具有啮合电极的电容,用于压电和热电能量收集应用

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When utilizing a meshed electrode design for piezo-and pyro-electric harvesting, there are changes in the electrical capacitance with mesh density and surface electrode coverage. For square meshed electrodes, geometrical limits are identified and the applicability of the parallel plate assumption is verified. The reduction of electrode coverage and element capacitance is examined with respect to the aspect ratio feature size relative to the dielectric thickness. Finite element analysis reveals the presence of electric fields that are four times stronger with the meshed electrode design compared to fully covered electrodes. The electrical energy stored in the harvester with meshed electrodes, and its availability for discharge, is only 4 % smaller than with a fully covered design.
机译:当利用用于压电和热收收集的网状电极设计时,具有网眼密度和表面电极覆盖的电容变化。对于方形网状电极,鉴定了几何限制并验证了平行板假设的适用性。相对于介电厚度,对纵横比特征尺寸检查电极覆盖和元件电容的减小。有限元分析显示,与完全覆盖电极相比,啮合电极设计具有四倍的电场的存在。存储在Harvester中的电能与啮合电极,其用于放电的可用性仅比用完全覆盖的设计小4%。

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