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The Influence of Electric Field Distribution on Insulator Surface Flashover

机译:电场分布对绝缘子表面闪络的影响

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Insulator surface flashover is one of the main causations for the gas insulated metal enclosed switchgear (GIS) devices failure. The local electric field enhancement is the intrinsic reason for the surface discharge. To clarify the relationship between insulator surface flashover and its surface electric field distribution, we manufactured insulator samples with various shapes and embedded electrodes, then studied their flashover voltage under the standard lightning impulse in a vessel filled with 0.2 MPa pure SF6 gas. In addition, we simulated the surface electric field distribution of samples by the finite element method, and analyzed the relationships between the maximum and average value of surface electric field strength. As a result, conclusions come as follows. As the size of the embedded electrodes increases, the flashover voltage of wave and concave insulators decreases, while that of the convex shape increases. The total surface electric field is of the greatest impact on the flashover voltage. The tangential component of the surface electric field contributes more than the normal component in the flashover voltage, but the latter could affect the flashover arc direction. In all case, the surface flashover initiation condition in this paper is about 75 kV/(mm·MPa) which is lower than the critical condition of 88.5 kV/(mm·MPa) in the SF6 gas gap.
机译:绝缘体表面闪过透过是气体绝缘金属封闭式开关设备(GIS)器件故障的主要原因之一。局部电场增强是表面放电的内在原因。为了澄清绝缘体表面闪络和其表面电场分布之间的关系,我们制造了具有各种形状和嵌入式电极的绝缘体样本,然后在填充0.2MPa纯SF的船舶中的标准闪电冲击下研究了它们的闪络电压 6 气体。此外,我们通过有限元方法模拟样品的表面电场分布,并分析了表面电场强度的最大和平均值之间的关系。结果,结论如下。随着嵌入电极的尺寸增加,波和凹形绝缘体的闪络电压降低,而凸起形状的闪速电压增加。总表面电场对闪络电压的影响最大。表面电场的切向分量在闪络电压中有多于正常分量,但后者可能会影响闪络电弧方向。在所有情况下,本文中的表面闪光透射率为约75kV /(mm·mpa),低于SF中的88.5kV /(mm·MPa)的临界条件 6 气隙。

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