电器与能效管理技术 ›› 2025, Vol. 0 ›› Issue (7): 39-43.doi: 10.16628/j.cnki.2095-8188.2025.07.006

• 电器设计与探讨 • 上一篇    下一篇

40.5 kV SF6灭弧室电场优化设计

郅娇娇1, 师进强1, 庞博2   

  1. 1.许继电气股份有限公司, 河南 许昌 461000
    2.许昌许继德理施尔电气有限公司, 河南 许昌 461000
  • 收稿日期:2025-05-11 出版日期:2025-07-30 发布日期:2025-08-27
  • 作者简介:郅娇娇(1988—),女,高级工程师,主要从事中高压开关设备产品开发工作。|师进强(1992—),男,工程师,主要从事电气设计工作。|庞 博(1992—),男,工程师,主要从事中压开关设计。

Electric Field Optimization Design of 40.5 kV SF6 Interrupter

ZHI Jiaojiao1, SHI Jinqiang1, PANG Bo2   

  1. 1. XJ Electric Co.,Ltd., Xuchang 461000, China
    2. XJ-Driescher Wegberg Electric Co.,Ltd., Xuchang 461000, China
  • Received:2025-05-11 Online:2025-07-30 Published:2025-08-27

摘要:

针对一款40.5 kV气体绝缘环网柜用SF6灭弧室断口绝缘存在的问题,进行优化设计。采用有限元软件对40.5 kV SF6 灭弧室内动静触头结构进行电场仿真,仿真结果表明,场强集中分布于动触头端部圆弧处和静弧触头外端部圆弧处,且动静触头间电场分布极不均衡。开展有无均压结构不同开距条件下和均压结构不同位置条件下灭弧室电场仿真,分析其对灭弧室电场分布的影响,完成灭弧室结构优化,优化后动触头端部采样边界处最大场强最大下降达30.45%。通过绝缘试验验证结构优化的合理性,试验结果表明,增加均压结构且布置在合适的位置,在开距不增加条件下,即可满足40.5 kV电压等级断口绝缘要求。

关键词: SF6灭弧室断口, 电场分布, 优化, 均压结构

Abstract:

An optimization design is carried out to address the insulation problem of SF6 interrupter for a 40.5 kV gas-insulated ring main unit. The finite element software is used to simulate the electric field of the moving and static contact structure in the 40.5 kV SF6 arc-extinguishing chamber. The simulation results show that the electric field intensity is concentrated at the arc of the end of the moving contact and the arc of the outer end of the static arc contact, and the electric field distribution between the moving and static contacts is extremely unbalanced.Electric field simulations of the arc-extinguishing chamber are conducted with and without a voltage-equalizing structure at different opening distances, and with the voltage-equalizing structure at different positions. The influence of these conditions on the electric field distribution of the arc-extinguishing chamber is analyzed, and the structural optimization of the arc-extinguishing chamber is completed. After optimization,the maximum electric field intensity at the sampling boundary of the moving contact end decreases by up to 30.45%. The rationality of the structural optimization is verified through insulation tests.The test results show that adding a voltage-equalizing structure and arranging it at an appropriate position can meet the interrupter insulation requirements of the 40.5 kV voltage level without increasing the opening distance.

Key words: SF6 interrupter, electric field distribution, optimization, voltage-equalizing structure

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