1000kv特高压输电线路双摆动保护器电晕放电检测及电场分析

Ming Liu, Duo Lv, Shanshan Quan, Liang Xie, Peng Liu, Zongren Peng
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引用次数: 0

摘要

双摆动保护器是特高压输电线路的关键配件,起着防止束导线在风中乱窜的作用。由于双摆动保护器的结构,其表面容易发生电晕放电,造成噪声污染和功率损耗。本文采用紫外成像技术对双摆动保护器的电晕放电进行了检测。通过对紫外图像的分析,得到了双摆动保护器电晕放电的位置。为了研究双摆式保护器结构对双摆式保护器电场分布和电晕放电抑制的影响,利用COMSOL Multiphysics软件建立了1000 kV特高压线路双摆式保护器的三维有限元模型。对加载相电压峰值的模型进行了计算和分析。结果表明,缩短有效摆长和增大摆半径可以有效降低双摆保护器的最大表面场强度,抑制电晕放电。此外,为了优化双摆动保护器的最大表面电场强度,抑制电晕放电,提出了一种新设计的双摆动保护器。本文的工作可为1000kv特高压输电线路线路配件的设计和制造提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corona Discharge Detection and Electric Field Analysis of Double-swinging Protectors in 1000 kV UHV Transmission lines
The double-swinging protectors are the key fittings of UHV transmission lines, which play a role to prevent bundle conductors from galloping in the wind. Corona discharge is prone to occur on its surface because of the structure of double-swinging protectors, which causes noise pollution and power loss. In this paper, ultraviolet imaging technology was used to detect corona discharge of the double-swinging protectors. And the position of corona discharge of the double-swinging protectors was obtained by analyzing ultraviolet images. In order to study the effects of the structure of the double-swinging protector on the electric field distribution and corona discharge suppression of the double-swinging protectors, a 3-D finite element model of the 1000 kV UHV transmission lines with double-swinging protectors was established by COMSOL Multiphysics. The model loaded with peak value of phase voltage was calculated and analyzed. The results show that shortening the effective pendulum length and increasing the pendulum radius can effectively reduce the maximum surface field strength of the double-swinging protectors and suppress corona discharge. In addition, a newly designed double-swinging protectors was proposed to optimize the maximum surface electric field strength of the double-swinging protectors and restrain corona discharge. The work in this paper could provide references for the design and manufacturing of line fittings in 1000 kV UHV transmission lines.
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