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Analysis and treatment of metal burr discharge defects in a 330kV gas insulated switchgear |
LI Hongfei, GAO Zongbao, ZHANG Jing, MA Yaguang |
China Energy Science and Technology Research Institute Co., Ltd, Chengdu 610000 |
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Abstract The article introduces a case of analyzing and processing abnormal ultrasonic signals in the busbar air chamber of a 330kV gas insulated switchgear (GIS). By locating the amplitude and changing the operating status of the equipment, it is determined that the defect comes from the busbar chamber on the main transformer side. By analyzing the scatter plot and phase amplitude plot of the partial discharge ultrasonic signal, it is believed that the discharge of metal foreign objects at the bottom of the gas chamber is the main cause of the abnormal ultrasonic signal. After inspection of the manhole, it is found that there is a silver white metal sharp substance at the measuring point on the bottom of the tank body, which is generated during the production. This GIS busbar air chamber discharge is a typical case of metal tip discharge treatment, providing reference for the treatment of similar abnormal defects in the future.
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Received: 18 November 2024
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Cite this article: |
LI Hongfei,GAO Zongbao,ZHANG Jing等. Analysis and treatment of metal burr discharge defects in a 330kV gas insulated switchgear[J]. Electrical Engineering, 2025, 26(3): 65-69.
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URL: |
https://dqjs.cesmedia.cn/EN/Y2025/V26/I3/65
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[1] 石磊, 于彤, 方烈, 等. SF6放电分解机理及其在故障分析领域的研究进展[J].高压电器, 2021, 57(8): 1-9. [2] 丁登伟, 唐诚, 高文胜, 等. GIS中典型局部放电的频谱特征及传播特性[J].高电压技术, 2014, 40(10): 3243-3251. [3] 郭伟, 汪隆臻, 张宿新, 等. 基于声-电-气联合检测的GIS 缺陷分析与处理[J].高压电器, 2018, 54(1): 243-248. [4] 陈长杰, 唐炬, 任晓龙, 等. 电极材料对SF6气体局部放电分解特性的影响[C]//重庆市电机工程学会2010年学术会议论文集, 重庆, 2010. [5] 林岑, 邱炜, 周波, 等. 一起110kV GIS设备自由金属颗粒放电缺陷及解体分析案例[J].高压电器, 2024, 60(4): 214-220. [6] 张铭洋, 高有华, 李茜, 等. 1000kV GIS中燃弧电阻模型对快速瞬态过电压的影响[J].电气技术, 2023, 24(12): 7-13. [7] 刘君华, 郭灿新, 姚明, 等. 局部放电电磁波在GIS中传播路径的分析[J].高电压技术, 2009, 35(5): 1044-1048. [8] 吴迪, 陈仁刚, 崔勇, 等. 一起500kV GIS异响缺陷的检测分析与处理[J].电气技术, 2014, 15(11): 43-46. [9] 顾寅, 缪金, 肖焓艳, 等. 基于FLUENT的示踪氦气在GIS绝缘空气中扩散规律及泄漏检测研究[J].电气技术, 2023, 24(6): 42-46. [10] 刘弘景, 李伟, 任志刚, 等. GIS不同绝缘缺陷的局放检测有效性对比研究[J].绝缘材料, 2018, 51(9): 53-60. [11] 王艳新, 闫静, 王建华, 等. 基于多级二阶注意力孪生网络的小样本GIS局部放电诊断方法[J].电工技术学报, 2023, 38(8): 2255-2264. [12] 胡智莹, 耿秋钰, 魏来, 等. 直流GIS/GIL中驱赶电极与微粒陷阱的协同抑制作用及优化设计方法[J].电工技术学报, 2023, 38(12): 3338-3349. [13] 李泽, 王辉, 钱勇, 等. 基于加速鲁棒特征的含噪局部放电模式识别[J].电工技术学报, 2022, 37(3): 775-785. [14] 郭超, 周波, 谭学敏, 等. GIS隔离开关内悬浮放电缺陷带电检测与解体分析[J].高压电器, 2021, 57(5): 168-174. [15] 方舟, 张伟, 刘辉, 等. 基于图像形态学特征的 GIS局部放电模式识别算法与监测系统[J].电气技术, 2024, 25(10): 48-54. |
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