Computation of electric field for FGM spacer using U-shape insulator in GIS

M. Naik, J. Amarnath, S. Kamakshiah, G. Srujana
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引用次数: 1

Abstract

The Gas Insulated Substation (GIS) have various advantages like compactness, immunity from environmental conditions, high operational reliability, low maintenance cost. In a number of GIS installations, the main design considerations involved in gas insulated equipment are at cone insulator, gas and metal interface. Hence there is a need for control of electric stress in order to reduce internal discharges, surface discharges to the enclosure surface. In conventional approach, in order to reduce such distortion of electric field, many techniques applied like, control of the spacer shape, additional shielding of electrodes for relaxation of electric field around spacer and low permittivity material of spacer, etc., from this point of view the new techniques of Functionally Gradient Material (FGM) spacer has been proposed in this paper. The applicability of FGM spacer for gas insulated power apparatus has been verified. In the FGM spacer, a spatial distribution of permittivity for the control of the electric field distribution in and around the spacer is used. The electric field calculations for several types of FGM spacers have been carried out using Finite Element Method (FEM). The electric field distribution along the radial distance of the spacer insulator has been obtained for various FGM materials and results are compared.
GIS中u型绝缘子FGM隔层的电场计算
气体绝缘变电站具有结构紧凑、不受环境影响、运行可靠性高、维护成本低等优点。在许多GIS装置中,气体绝缘设备的主要设计考虑因素是锥形绝缘体、气体和金属界面。因此,有必要控制电应力,以减少内部放电,表面放电到外壳表面。在传统方法中,为了减小这种电场畸变,采用了控制间隔片形状、在间隔片周围附加屏蔽电极以松弛电场、使用低介电常数材料等技术,本文从这一角度提出了功能梯度材料(FGM)间隔片的新技术。验证了FGM隔震片在气体绝缘电力设备上的适用性。在FGM隔离器中,介电常数的空间分布用于控制隔离器内部和周围的电场分布。本文采用有限元法对几种FGM隔片的电场进行了计算。得到了不同FGM材料沿间隔绝缘子径向距离的电场分布,并对结果进行了比较。
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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