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Calculation of the Ionized Field Around the DC Voltage Divider

机译:直流分压器周围的电离场的计算

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The space charges produced by the corona discharge of the DC voltage divider's high-voltage electrode can move under the effect of the electric field force, and parts of them can attach to the surface of the insulation sheds. Because of the influence of the space charges and the charges on the insulator sheds' surface, the electric field around has a big difference with the situation in the electrostatic field. In the paper, a 2-D axisymmetric upwind finite element method (upwind FEM) is used to calculate the electric field distribution on the surface of the DC voltage divider's insulation sheds. The space charge density inside the insulation sheds is set to be 0, and the charge density on the surface of the sheds is calculated by the iterative process. The ionized field of a 3-D sphere electrode model is calculated, and the 2-D axisymmetric upwind FEM is verified by comparing the numerical results with the analytical results. In the end the ionized field of the 500 kV voltage divider is calculated. The simulation results show that the existence of space charges affect evidently on the electric field distribution characteristic, and hence improve the uniformity of the electric field intensity along the sheds surface.
机译:直流分压器高压电极的电晕放电所产生的空间电荷可以在电场力的作用下移动,并且它们的一部分可以附着在绝缘棚的表面上。由于空间电荷和绝缘子棚表面电荷的影响,周围的电场与静电场的情况有很大的不同。本文采用二维轴对称迎风有限元方法(迎风FEM)来计算直流分压器绝缘棚表面的电场分布。将绝缘棚内部的空间电荷密度设置为0,并通过迭代过程来计算棚表面上的电荷密度。计算了3-D球形电极模型的电离场,并通过将数值结果与分析结果进行比较来验证2-D轴对称迎风有限元。最后,计算出500 kV分压器的电离场。仿真结果表明,空间电荷的存在对电场分布特性有明显影响,从而提高了沿棚表面电场强度的均匀性。

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