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Simulations of a surface glow discharge in a supersonic gas flow in the presence of external ionization

机译:外部电离下超音速气流中表面辉光放电的模拟

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Results of two-dimensional hydrodynamic simulations of a surface glow discharge operating at pressures of 0.2-0.5 Torr in a nitrogen flow propagating with a velocity of 1000 m/s in the presence of external ionization are presented. The effect of the external ionization rate on discharge operation is analyzed. The current-voltage characteristics of the discharge are calculated for different intensities of external ionization in both the presence and absence of secondary electron emission from the cathode. The discharge structure and plasma parameters in the vicinity of the loaded electrode are considered. It is shown that, when the discharge operates at the expense of secondary emission from the cathode, the discharge current and cathode sheath configuration are insensitive to external ionization. It is also demonstrated that, even at a high rate of external ionization, the discharge operates due to secondary emission from the cathode.
机译:给出了在外部电离存在下以1000 m / s的速度传播的氮气流中,在0.2-0.5 Torr的压力下运行的表面辉光放电的二维流体动力学模拟结果。分析了外部电离速率对放电操作的影响。在存在和不存在来自阴极的二次电子发射的情况下,针对外部电离的不同强度计算放电的电流-电压特性。考虑负载电极附近的放电结构和等离子体参数。结果表明,当放电以牺牲阴极的二次发射为代价时,放电电流和阴极鞘结构对外部电离不敏感。还证明了,即使在高外部电离率下,由于来自阴极的二次发射,放电也起作用。

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