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Surface Charge Accumulation on Epoxy Insulator with Complex Surface Profile under DC Voltage in SF6/N2 Mixture

机译:在SF6 / N2混合物中的DC电压下具有复杂表面轮廓的环氧绝缘体上的表面电荷累积

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Epoxy insulator has been widely employed in Gas Insulated transmission Line (GIL) and Gas Insulated Switchgear (GIS). Surface charge accumulation on the insulator has been considered as a key point that affects the flashover voltage. In this paper, the surface charge accumulation behavior on realsized insulator with a complex surface profile in 0.4 MPa SF6/N2 mixture has been studied. The insulator as well as the electrode system was installed inside a sealed test chamber and DC stress of -10, -20, -30 kV was applied between the electrodes so as to charge the insulator. The accumulation mechanism has been demonstrated based on numerical simulation. The results showed that the surface charge was mainly negative in SF6/N2 mixture. The charge speckles were mainly accumulated in the nonplanar region of insulator. The main reason for this phenomenon is the competition among bulk conduction, gas conduction and surface conduction.
机译:环氧树脂绝缘体已被广泛用于在气体绝缘传输线(GIL)和气体绝缘开关设备(GIS)。绝缘体上的表面电荷累积被认为是影响闪络电压的关键点。在本文中,在0.4MPa SF中具有复杂表面曲线的变异绝缘体上的表面电荷累积行为 6 / N. 2 已经研究过混合物。绝缘体以及所述电极系统被安装的密封的测试室和-10,-20 DC内部应力,-30千伏被施加在电极之间,以便将绝缘体充电。已经基于数值模拟证明了累积机制。结果表明,表面电荷主要是阴性的SF 6 / N. 2 混合物。电荷斑点主要累积在绝缘体的非平面区域。这种现象的主要原因是散装传导,气体传导和表面传导之间的竞争。

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