Study on Space Charge Characteristics of XLPE at Different Temperature Gradients

G. Wang, Yiyi Zhang, Jiefeng Liu, Shiyou Wu, Senshen Pang, Xinyang Mao
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引用次数: 1

Abstract

As the main insulation material of DC cable, the insulation performance of crosslinked polyethylene(XLPE) directly affects the safety of cable operation, and the existence of space charge will lead to the distortion of field strength. Due to the temperature difference between the inner and outer layers of XLPE cables during operation, few studies have reported the effect of temperature gradient on the space charge distribution. Therefore, this paper establishes a two-dimensional model of the DC XLPE cable by means of numerical simulation, couples the temperature-electrostatic-charge multi-physical fields, simulating the space charge distribution based on the bipolar carrier transport (BCT) model, and considering the influence of temperature gradient on the results. In this paper, the charge distribution at the temperature gradient of 0 K and 15 K in the inner and outer layers of XLPE is studied. The results show that under different temperature gradients, the significant changes of charge mobility and charge rate injected from the electrodes result in a great difference in the charge distribution characteristics. The charge migration velocity on the side with higher temperature is faster than the charge injection depth on the side with lower temperature. The higher the temperature gradient, the greater the distortion rate of the field strength, so the more likely the insulation failure of the cable will occur.
不同温度梯度下交联聚乙烯空间电荷特性的研究
交联聚乙烯(XLPE)作为直流电缆的主要绝缘材料,其绝缘性能直接影响到电缆的运行安全,空间电荷的存在会导致场强的畸变。由于交联聚乙烯电缆在运行过程中内层与外层存在温差,因此温度梯度对空间电荷分布的影响研究较少。因此,本文采用数值模拟的方法建立直流XLPE电缆的二维模型,耦合温度-静电-电荷多物理场,基于双极载流子输运(BCT)模型模拟空间电荷分布,并考虑温度梯度对结果的影响。本文研究了XLPE内外层在0 K和15 K温度梯度下的电荷分布。结果表明,在不同的温度梯度下,电极注入的电荷迁移率和电荷速率的显著变化导致了电荷分布特性的巨大差异。温度较高一侧的电荷迁移速度比温度较低一侧的电荷注入深度快。温度梯度越高,场强的畸变率越大,因此越容易发生电缆的绝缘失效。
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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