有水分和空隙时电缆电场分布的模拟

S. Lachini, A. Gholami, M. Mirzaie
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引用次数: 10

摘要

电力电缆作为电网的主要组成部分之一,在区域间电力传输中起着重要作用。由于绝缘子内部可能存在水树现象、空穴和湿度,局部电场增大,导致绝缘子击穿。本文的目的是用有限元法确定电缆绝缘系统中的湿度和空腔对电缆内部电场强度的影响。为此,利用Maxwell软件对某20KV配电电缆聚乙烯绝缘中存在的水滴和空腔内的电场分布进行了模拟计算。由于电缆内电场强度与空腔介电常数及其相对于电缆中心的位置等因素有关,因此考虑了这些参数,进行了有限元模拟,并对结果进行了分析。研究了水滴角局部场堵塞与导致绝缘子完全击穿的绝缘失效可能性的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The simulation of electric field distribution on cable under the presence of moisture and air voids
Power cables as one of main components of power networks, play an important role in electric power transmission between different zones. Because of probable incidence of water tree phenomena, air cavity and also humidity in electric insulators, increase in electric field happens locally and can lead to breakdown in insulator. The goal of This paper is determining humidity and air cavity effects in cable insulation system on electric field intensity inside cable by using Finite Element Method. Therefore electric field distribution inside water drops and also air cavities existing in polyethylene insulation of one 20KV distribution cable has been simulated and calculated by Maxwell software. Since electric field intensity in cable depends on various factors such as cavity's permittivity and its position respect to cable center, therefore by considering these parameters, FEM simulation has been done and the results were analyzed. Also relation between local field congestion in water drops corners and insulation failure possibility which can lead to insulator complete breakdown, is studied.
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