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首页> 外文期刊>International journal of electrical power and energy systems >The influence of surface charge accumulation on flashover voltage of GIS/ GIL basin insulator under various voltage stresses
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The influence of surface charge accumulation on flashover voltage of GIS/ GIL basin insulator under various voltage stresses

机译:在不同电压应力下表面电荷累积对GIS / GIL盆形绝缘子闪络电压的影响

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Under AC, DC and switching impulse voltages, the surface charges accumulated on the basin insulators of Gas Insulated Substation (GIS) or Gas Insulated Metal Enclosed Transmission Line (GIL) could distort local electric field and even reduce the surface flashover voltage. In order to quantitatively measure the influence of surface charge accumulation on flashover voltage of insulator in actual GIS/GIL apparatus, a high-precision 3D surface charge measurement platform and a reasonable model were established for flashover tests in reference to the insulation design and flashover properties of actual 220 kV GIS basin insulator. The surface charge accumulation dynamics and corresponding flashover voltages of the built models under different conditions were captured and analyzed. The results indicate that, as the density of accumulated surface charges increases under either AC, DC or switching impulse voltage application, the surface flashover voltage would decrease from 62.1 kV to 55.7 kV, namely a margin of 10.3% under AC voltage application. In the context of DC voltage, there appears a 22.8% flashover voltage drop, from 61.0 kV to 47.1 kV. While for the case of switching impulse voltage, the charge accumulation reduced the flashover voltage to 52.9 kV with a 13.6% decline from 61.2 kV. Based on the simulation and theoretical calculations, the 'enhanced electric field zone' was identified to justify the influencing mechanism of surface charges on flashover voltage. The research results could contribute to optimal insulation design and fault diagnosis of basin insulator in GIS/GIL.
机译:在交流,直流和开关脉冲电压下,气体绝缘变电站(GIS)或气体绝缘金属封闭传输线(GIL)的盆形绝缘子上累积的表面电荷可能会使局部电场失真,甚至会降低表面闪络电压。为了定量测量实际GIS / GIL装置中表面电荷积累对绝缘子闪络电压的影响,参考绝缘设计和闪络特性,建立了高精度3D表面电荷测量平台和合理的闪络试验模型。实际的220 kV GIS盆地绝缘子。捕获并分析了在不同条件下建立的模型的表面电荷累积动力学和相应的闪络电压。结果表明,随着在交流,直流或施加开关脉冲电压下积累的表面电荷密度的增加,表面闪络电压将从62.1 kV降低至55.7 kV,即在施加AC电压下的裕度为10.3%。在直流电压的情况下,会出现22.8%的击穿电压降,从61.0 kV降至47.1 kV。对于开关脉冲电压,电荷积累将闪络电压降低到52.9 kV,比61.2 kV降低了13.6%。根据仿真和理论计算,确定了“增强电场区”以证明表面电荷对闪络电压的影响机理。研究结果可为GIS / GIL中盆形绝缘子的最佳绝缘设计和故障诊断提供依据。

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