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Monte Carlo based simulation on surface charging phenomena of insulators prior to flashover in vacuum

机译:基于蒙特卡洛的真空闪蒸前绝缘子表面充电现象的模拟

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As we know, before flashover across an insulator surface under high electric field in vacuum, there are charging phenomena occurring on the insulator surface, which significantly affect the developing process of flashover. Based on the secondary electron emission avalanche (SEEA) model, and by using the Monte Carlo method, a two-dimensional analysis of surface charge density on cylindrical and conical insulators prior to flashover in vacuum has been performed under unipolar voltage. Typical insulating materials are employed, i.e., machinable ceramic, alumina ceramic, PTFE and PMMA. The influences of secondary electron yield, voltage amplitudes and coning angles on charge distribution are investigated. The results reveal that negative charges exist in a small surface region near the cathode, while the surface charges positive in a larger region away from the cathode. With increasing applied voltage, both the negative charge density and region decrease, and even vanish, whereas both the positive charge density and region increase, and the peaks of both regions move towards the cathode.
机译:众所周知,在真空中高电场下在绝缘子表面闪络之前,在绝缘子表面上会发生带电现象,这严重影响了闪络的发展过程。基于二次电子发射雪崩(SEEA)模型,并使用蒙特卡洛方法,已在单极电压下对圆柱和圆锥形绝缘子在真空闪络之前的表面电荷密度进行了二维分析。使用典型的绝缘材料,即,可机加工的陶瓷,氧化铝陶瓷,PTFE和PMMA。研究了二次电子产率,电压幅度和锥角对电荷分布的影响。结果表明,负电荷存在于靠近阴极的较小表面区域,而表面电荷则存在于远离阴极的较大区域。随着施加电压的增加,负电荷密度和区域都减小甚至消失,而正电荷密度和区域都增大,并且两个区域的峰值都向阴极移动。

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