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Distribution and influence factors of electric field in high-voltage power capacitor

机译:高压功率电容器中电场的分布及其影响因素

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摘要

Power capacitor works in series or parallel acts as a role of reactive power compensation and filtration in high-voltage power transmission. Once one capacitor is damaged, the whole unit even the entire system would fail to work. The breakdown parts of power capacitor component are generally occurred in the area where the electric field intensity is concentrated, so the electric field distribution of component needs to be calculated accurately. In this study, according to the inner structure of power capacitor component, the numerical simulation of inner electric field is carried on, and the electric field distribution characteristics are obtained. The factors that affect the electric field, such as, the medium material, electrode thickness and medium thickness are researched. Specially, the electric field distribution at component edge is given, and the relationship between voltage and medium breakdown field intensity is discussed. The results provide a theoretical basis for the design and operation of power capacitor.
机译:功率电容器串联或并联工作,在高压输电中起到无功补偿和滤波的作用。一旦一个电容器损坏,整个装置甚至整个系统都将无法工作。功率电容器组件的击穿部分通常发生在电场强度集中的区域,因此需要准确计算组件的电场分布。本研究根据功率电容器组件的内部结构,对内部电场进行了数值模拟,得到了电场分布特性。研究了影响电场的因素,如介质材料,电极厚度和介质厚度。特别地,给出了元件边缘的电场分布,并讨论了电压与介质击穿场强之间的关系。研究结果为功率电容器的设计和运行提供了理论依据。

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