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Modeling the dependence of the negative corona current density on applied voltage rise time

机译:建模负电晕电流密度对施加电压升高时间的依赖性

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In this paper, a numerical simulation is used to investigate the influence of applied voltage rise time on negative corona current characteristics in SF6 at atmospheric pressure. There were 23 particle species and 67 kinds of reactions considered in plasma chemical reactions. The influence of different rise times of the applied voltage is investigated. The spatial distributions of the radial electric field and total density of electrons and positive and negative ions, at and after the inception time of the corona current pulse, are used to explain the role of the rise time of the applied voltage on the mechanism of corona current pulse formation. It is found that the corona inception time, inception voltage, peak value of current pulse, number of sub-current pulses, and the time between the sub-pulses are strongly affected by the movement of negative ion clouds produced by the attachment. The quantitative analysis of the negative ions shows that the light ions preceded the heavy ions in their motion far away from the cathode and that this motion is governed by the rise time of the applied voltage.
机译:本文使用了数值模拟来研究施加电压上升时间对大气压下SF6中负电晕电流特性的影响。在血浆化学反应中有23种颗粒物种和67种反应。研究了施加电压的不同上升时间的影响。径向电场的空间分布和电子和正离子的总密度,在电晕电流脉冲的成立时间,以及在电晕电流脉冲的成立时间和之后,用于解释施加电压上升时间对电晕机构的作用电流脉冲形成。结果发现,电晕初始时间,初始电压,电流脉冲的峰值,子电流脉冲的数量,以及子脉冲之间的时间受附件产生的负离子云的移动受到强烈影响。负离子的定量分析表明,光离子在远离阴极的运动中的重离离子之前,该运动由施加电压的上升时间控制。

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