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Numerical simulations of the effects of the level of nitrogen impurities in atmospheric helium Townsend discharge

机译:氮杂质水平在大气氦镇汤排放中的数值模拟

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The influence of nitrogen impurities on the atmospheric pressure helium discharge in Townsend mode is investigated based on a 1D fluid model. The level of nitrogen impurities was varied in the range 0.1-10 000 ppm, in which the discharge exhibits three notable discharge modes, namely multipulse Townsend discharge, single-pulse Townsend discharge, and multipulse glow discharge with the increase in the impurity level. It is found that the influence of nitrogen impurities on helium discharge in the Townsend mode is entirely different from that in the glow mode; the discharge characteristics are different under different nitrogen contents. Under 1 ppm nitrogen content, both the breakdown voltage and discharge current remain unchanged. As the N2 content increases, the breakdown voltage still remains unchanged but the discharge current decreases. As the N2 content exceeds 350 ppm, the discharge transits from the Townsend mode into the glow mode, and the breakdown voltage decreases dramatically while the current density increases.Published under license by AIP Publishing.
机译:基于1D流体模型,研究了氮杂质对镇亮模式大气压氦放电的影响。氮杂质的水平在0.1-10000ppm的范围内变化,其中放电显示出三种显着的放电模式,即多脉冲排放,单脉冲汤,排出,并且随着杂质水平的增加而放电。结果发现,氮杂质对镇亮模式中氦气放电的影响完全不同于发光模式;在不同的氮含量下放电特性是不同的。在1ppm氮含量下,击穿电压和放电电流都保持不变。随着N2内容的增加,击穿电压仍保持不变,但放电电流降低。由于N2含量超过350ppm,从Townsend模式到发光模式的放电转运,并且击穿电压急剧下降,而电流密度增加。通过AIP发布,在许可下发布。

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