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首页> 外文期刊>IEE Proceedings. Part A >Finite-element computation of capacitance networks in multiple-electrode systems: application to ZnO surge arresters
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Finite-element computation of capacitance networks in multiple-electrode systems: application to ZnO surge arresters

机译:多电极系统中电容网络的有限元计算:在ZnO电涌放电器中的应用

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摘要

In the low-conduction regime, the capacitive current in ZnO surge arresters is dominant, about 40 times greater than the resistive current. Therefore, the voltage distribution along surge arrester columns is mainly determined by the location and shape of the arrester terminals and the floating electrodes formed by the arrester flanges and the metallised surfaces of the ZnO elements. Terminal current and voltage measurements are not usually sufficient to quantify the effect of location and shape of the various electrodes, A method to determine the capacitance network that exists in systems with multiple-electrode configurations is described. The method is based essentially on the numerical electric field computation using commercially available finite-element software. The modelling of a distribution polymeric zinc oxide surge arrester in the low-conduction regime is used for illustration. The arrester is modelled in terms of capacitances based on its geometric and dielectric properties using the finite-element method. A full equivalent capacitance network, which takes into account the ZnO material properties and the stray capacitances to the floating electrodes, is derived. A simplified method requiring only a single finite-element computation to obtain a reduced capacitance network is also described.
机译:在低导通状态下,ZnO电涌放电器中的电容性电流占主导地位,约为电阻性电流的40倍。因此,沿避雷器柱的电压分布主要由避雷器端子的位置和形状以及由避雷器凸缘和ZnO元件的金属化表面形成的浮动电极决定。终端电流和电压测量通常不足以量化各种电极的位置和形状的影响。描述了一种确定存在于多电极配置系统中的电容网络的方法。该方法基本上基于使用可商购的有限元软件进行的数值电场计算。在低导电状态下分布聚合物氧化锌电涌放电器的建模用于说明。使用有限元方法,根据避雷器的几何和介电特性,根据电容对避雷器进行建模。得出了一个完全等效的电容网络,该网络考虑了ZnO的材料特性和到浮动电极的杂散电容。还描述了一种仅需进行单个有限元计算即可获得简化电容网络的简化方法。

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