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Electric Field and Sheilding Effect Analysis of 1100kV DC SF6 Gas Insulated Wall Bushing

机译:1100 kV DC SF6气体绝缘壁衬套的电场和屏蔽效果分析

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UHVDC wall bushing is a key equipment which connects valve hall and DC yard, and it loads total voltage and current. In this paper, concerning the charge relaxation process and weakly ionized gas conductivity model (based on natural ionization, ion migration and diffusion motion), the electric field simulation model of wall bushing was established, the shielding effect regulated by single/double layer shield structure (SLSS /DLSS) were studied. The result indicated that: The DLSS, compared to SLSS, can significantly reduce the field strength on both sides of the insulator and surface of the internal electrode. The electric field distribution on the air side of the insulator under DC voltage is not affected by the different configuration (SLSS or DLSS) of the inner shield electrode, but the DLSS can still reduce the surface of the inner electrode of the casing relative to the SLSS. This work is aim to report the regulating effect on field distribution by DLSS under different voltages in details, which can provide a basic reference for insulating structure design of 1100KV UHVDC SF6gas-insulated wall bushing.
机译:UHVDC墙套是连接阀门霍尔和DC码的关键设备,并加载总电压和电流。在本文中,关于电荷弛豫过程和弱电离的气体导电性模型(基于自然电离,离子迁移和扩散运动),建立了壁套管的电场仿真模型,通过单/双层屏蔽结构调节屏蔽效果(SLSS / DLSS)是研究过的。结果表明:与SLS相比,DLS可以显着降低绝缘体的两侧和内部电极的表面的场强。在DC电压下绝缘体的空气侧的电场分布不受内屏蔽电极的不同配置(SLS或DLS)的影响,但是DLSS仍然可以减小壳体内部电极的表面相对于壳体SLSS。本工作旨在详细介绍不同电压下DLSS对DLS的实地分布的调节效果,可以为1100kV UHVDC SF的绝缘结构设计提供基本参考 6 气体绝缘壁套。

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