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Electric field evaluation of ±400kV converter quadrivalve corona shields in high altitude area

机译:高海拔地区±400kV变流器四极电晕屏蔽的电场评估

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The converter quadrivalve is one of the key devices in a ±400kV converter station valve hall at an altitude of 3820m in western China. The complex structure of quadrivalve may lead to serious electric field distortion when without well-designed shields. Besides, in view of high altitude, corona discharge is easier to occur, which threatens the secure operation of HVDC system. In this paper, the structure of ±400kV converter quadrivalve is introduced. A 3-D electric field calculation model of three quadrivalves with corona shields was built with the finite element method (FEM) analysis software ANSYS. Considering the influences of hybrid AC-DC operating voltages, the FEM transient electric field analysis with discrete loading voltage waveform is adopted. The distributions of potential and electric field on quadrivalve corona shields were calculated in a period under normal operating condition. A series of DC corona tests on typical electrodes were carried out at different altitudes in order to obtain the altitude correction formula for DC corona inception electric-field (E-field) strength. The correction formula is determined through the statistical analysis of test results, which provides a reference for the electric field evaluation. Based on the FEM calculation results, the maximum surface E-field strength on the quadrivalve corona shields in the ±400kV valve hall is lower than the critical value. Hence it can be concluded that the design of the corona shields satisfies the external insulation and electromagnetic environment requirements in high altitude area under normal operating condition.
机译:变频器四通阀是中国西部海拔3820m的±400kV换流站阀场中的关键设备之一。如果没有精心设计的屏蔽,四边形的复杂结构可能会导致严重的电场失真。此外,鉴于高海拔,更容易发生电晕放电,从而威胁到高压直流输电系统的安全运行。介绍了±400kV变流器四边形的结构。利用有限元方法(FEM)分析软件ANSYS建立了三个带电晕屏蔽四边形的3-D电场计算模型。考虑到交流-直流混合工作电压的影响,采用了具有离散负载电压波形的有限元瞬态电场分析。在正常工作条件下的一段时间内,计算了四边形电晕防护罩上的电势和电场分布。为了在不同高度上对典型电极进行一系列直流电晕测试,以获得直流电晕起始电场(E场)强度的高度校正公式。通过对测试结果的统计分析确定校正公式,为电场评估提供参考。根据有限元计算结果,在±400kV阀门大厅的四级电晕防护罩上的最大表面电场强度低于临界值。因此可以得出结论,电晕屏蔽的设计满足了正常工作条件下高海拔地区的外部绝缘和电磁环境要求。

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