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Nanosecond surface dielectric barrier discharge in high pressure air at different polarities of applied pulses Transition to filamentary regime

机译:高压空气中不同脉冲极性下的纳秒表面介电势垒放电过渡到丝状状态

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Nanosecond pulsed discharge transformation with pressure is discussed. Experimental measurements present, at elevated pressures, transition from "quasi-uniform" streamer discharge to filamentary structure. Conditions of the appearance of the transition regime as a function of voltage and gas pressure are presented. It is shown that there is no increase of the deposited energy during the transition, and that the filamentary form of the discharge remains low-temperature and low-current discharge. Theoretical estimates and numerical modeling show that ionization-overheating instability on the boundary of the cathode layer can be suggested as a mechanism of filamentation.
机译:讨论了压力下的纳秒脉冲放电转换。实验测量表明,在升高的压力下,从“准均匀”的流光放电过渡到丝状结构。给出了过渡态出现的条件,该条件是电压和气压的函数。结果表明,在过渡过程中沉积的能量没有增加,并且放电的丝状形式保持了低温和低电流放电。理论估计和数值模型表明,可以提出阴极层边界上的电离过热不稳定性是细丝化的机制。

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