大功率超级电容器的电场研究

Jinyan Song, Li Zhang, Ji-Yan Zou
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引用次数: 3

摘要

超级电容器作为一种新型储能元件,在电动汽车、电磁发射系统供电方面具有很大的应用潜力。本文讨论了两种超级电容器的电荷和电场分布模型:双层多孔电极和由电解电容器阳极、电化学电容器阴极和38% H2SO4电解质溶液组成的混合型超级电容器。利用ANSYS分析了厚度、孔隙分布、介电常数等因素对超级电容器电场的影响,揭示了超级电容器的电荷分布。在讨论和分析的基础上,结果表明,改变电极结构和材料等物理参数以及电参数可以优化超级电容器的结构和性能,提高能量密度和功率密度,增加瞬时放电电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Study of Electric Field of High-Power Supercapacitors
The supercapacitor has large potential on electric cars, the power supply of electromagnetism launch system as a new type storage energy element. In this work, it is intended to discuss the charge and electric field distributing models of two kinds of supercapacitors: the double layer of porous electrode and the hybrid supercapacitor that is composed of anodes of electrolytic capacitors, cathodes of electrochemical capacitors, and 38 wt% H2SO4 electrolyte solution. It explores the factors of thickness, pore distributing, and permittivity influenced on the electric field of supercapacitors by ANSYS and reveals the distributing charge of supercapacitors. On the basis of the discussion and analysis, the result shows that changing physical parameters, such as electrode structure and material, and the electric parameters can optimize the structures and performance of supercapacitors to improve the energy density and the power density, and increase the instantaneous discharge current.
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