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Simulation Analysis and Improvement Design of Electric Field Distribution for Shielding Device in UHV Converter Station Indoor DC Yard

机译:UHV变换器站室内DC院子里屏蔽装置电场分布仿真分析及改进设计

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In recent years, ultrahigh-voltage direct current (UHVDC) project has become an important direction of power system development and application. In UHVDC converter station, corona discharge may occur if the maximum electric field of metal electrode surface reaches corona electric field. The reasonable design of shielding device for different equipment in the converter station can not only effectively ensure the safety and stability operation of the system but also reduce the operation and maintenance cost. The shape and structure of different equipment are having large difference for ±800kV UHVDC project indoor DC yard, and the zero potential wall and roof are presented and increase the surface electrical field. The filter capacitor of DC yard has a large number of components which needs high requirement for internal insulation coordination. In this paper, a 3-D finite element simulation model of filter capacitor in UHVDC project indoor DC yard was established by using COMSOL. The potential and electric field distribution of filter capacitor shielding devices were calculated and analyzed. Based on the permitted value requirement, the electrode shape was continuously optimized. The research results of this paper could provide references for development and optimization design of filter capacitor in UHVDC project.
机译:近年来,超高电压直流(UHVDC)项目已成为电力系统开发和应用的重要方向。在UHVDC转换器站中,如果金属电极表面的最大电场到达电晕电场,则可能发生电晕放电。转换器站不同设备的屏蔽装置的合理设计不仅可以有效地确保系统的安全性和稳定性,而且还降低了操作和维护成本。不同设备的形状和结构具有较大的差异±800kV UHVDC项目室内DC码,并提出零电位壁和屋顶并增加了表面电场。 DC码的滤波电容器有大量组件,需要高要求内部绝缘配位。本文采用COMSOL建立了UHVDC项目室内DC围场的滤波电容器3d有限元仿真模型。计算并分析了滤波电容器屏蔽装置的电位和电场分布。基于允许的值要求,连续优化电极形状。本文的研究结果可以为UHVDC项目中滤波电容器的开发和优化设计提供参考。

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