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Simulation of subnanosecond streamers in atmospheric-pressure air: Effects of polarity of applied voltage pulse

机译:大气压空气中亚纳秒流光的模拟:施加电压脉冲的极性的影响

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摘要

Results of simulation of subnanosecond streamer propagation in corona gap configuration, obtained in the framework of 2D fluid model, are presented. Effects related with the polarity of a voltage pulse applied to the stressed electrode are discussed. It is argued that these effects (dependence of the discharge current and propagation velocity on the polarity of applied voltage) observed in experiments can be attributed to the difference in initial (preceding the streamer formation) distributions of charged species inside the gap. This difference can be caused by preionization (at negative polarity) of the gas inside the discharge gap by runaway electrons. Calculated streamers have large widths (up to 1 cm) and move with velocities in the range of 10(9)-10(10) cm s(-1), similar to experimental data. Published by AIP Publishing.
机译:提出了在2D流体模型的框架内获得的在电晕间隙构造中亚纳秒流光传播的模拟结果。讨论了与施加到应力电极的电压脉冲的极性有关的影响。有人认为,在实验中观察到的这些效应(放电电流和传播速度对施加电压极性的依赖性)可以归因于间隙内带电物质的初始(在流光形成之前)分布的差异。这种差异可能是由电子失控引起的放电间隙内部气体的预电离(负极性)引起的。计算出的拖缆具有较大的宽度(最大1厘米),并且以10(9)-10(10)cm s(-1)范围内的速度移动,类似于实验数据。由AIP Publishing发布。

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