基于COMSOL仿真的高压交联聚乙烯电缆绝缘气泡电场和温度分析

Yu Zhang
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引用次数: 1

摘要

:与普通PVC电缆相比,交联聚乙烯绝缘电缆因其负载能力高、过载能力强、使用寿命长而得到广泛应用。然而,在电缆生产过程中,交联聚乙烯层中可能会出现小气泡,气泡缺陷会对电缆的电场分布和温度分布造成畸变。本文利用COMSOL软件模拟了110kV交联聚乙烯电缆中不同尺寸和位置气泡的电场和温度分布特性。仿真结果表明,当气泡在XLPE层中出现时,气泡与XLPE界面附近的电场强度急剧下降,且与无气泡的情况相比,电场强度更大。同时,气泡越靠近XLPE层外,最大场强越小。同时,XLPE层内气泡温度呈线性上升趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electric field and temperature analysis of high-voltage XLPE cable insulation bubbles based on COMSOL simulation
: Compared with ordinary PVC cables, crosslinked polyethylene insulated cables have been used widely because of their high load capacity, strong overload capacity and long service life.However, in cable production process, small bubbles may appear in XLPE layer, and the bubble defects can cause distortion to the electric field distribution and temperature distribution of the cable.This article simulates electric field and temperature distribution characteristics of bubbles in different sizes and locations in 110kV XLPE cables by COMSOL.The simulation results show that when the bubble appears in the XLPE layer, the electric field intensity near the interface between the bubble and XLPE decreases sharply, and in comparison with the condition that there is no bubble, the electric field intensity is greater.Meanwhile, the closer bubble get to the outside of the XLPE layer, the smaller the maximum field intensity will be.Also,the internal temperature of the bubble in the XLPE layer shows a linear ting trend.
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