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Effects of surface conductivity on surface charging behavior of DC-GIL spacers

机译:表面电导率对DC-GIL垫片表面充电行为的影响

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摘要

In this study, a simulation model is established to study the effect of surface conductivity on the accumulation of surface charge. The simulation shows that hetero-charges increase on areas away from the high voltage electrode and the electric field distribution along the surface becomes more uniform with increased surface conductivity. The dominant surface charging mechanism changes from conduction through the bulk of the insulation to surface conduction with increased surface conductivity. When the surface conductivity ranges from 1*10(-15) to 5*10(-14) S for a convex spacer surface, an optimal surface charge suppression and electric field homogeneity can be realized.
机译:在该研究中,建立了一种模拟模型,以研究表面电导率对表面电荷累积的影响。该模拟表明,异电荷在远离高压电极的区域上增加,并且沿着表面的电场分布变得更加均匀,表面导电性增加。主导表面充电机构从传导通过大部分绝缘改变为具有增加的表面传导率的表面传导。当表面电导率范围为凸间隔表面的1×10(-15)至5×10(-14)S时,可以实现最佳的表面电荷抑制和电场均匀性。

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