Modeling Electric Field and Potential Distribution of an Model of Insulator in Two Dimensions by the Finite Element Method

Nassima M ziou, Hani Benguesmia, Hilal Rahali
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引用次数: 5

Abstract

The electrical effects can be written by two magnitudes the field and the electrostatic potential, for the determination of the distribution of the field and the electric potential along the leakage distance of the polluted insulator, the comsol multiphysics software based on the finite element method will be used. The objective of this paper is the modeling electric field and potential distribution in Two Dimensions by the Finite Element Method on a model of insulator simulating the 1512L outdoor insulator used by the Algerian company of electricity and gas (SONELGAZ). This model is under different conductivity, applied voltage, position of clean layer and width of clean layer. The computer simulations are carried out by using the COMSOL multiphysics software. This paper describes how Comsol Multiphysics have been used for modeling of the insulator using electrostatic 2D simulations in the AC/DC module. Numerical results showed a good agreement.
用有限元法对绝缘子模型的电场和电势分布进行二维建模
电场效应可以用电场和静电势两个量级来表示,为了确定电场和电势沿污染绝缘子泄漏距离的分布,将使用基于有限元法的comsol多物理场软件。本文以阿尔及利亚电力天然气公司(SONELGAZ)使用的1512L室外绝缘子为模拟对象,利用有限元法对绝缘子模型进行了二维电场和电势分布的建模。该模型在不同电导率、外加电压、清洁层位置和清洁层宽度的条件下运行。利用COMSOL多物理场软件进行了计算机仿真。本文描述了Comsol Multiphysics如何在交流/直流模块中使用静电2D模拟来对绝缘体进行建模。数值结果表明两者吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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