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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Kinetics and dynamics of nanosecond streamer discharge in atmospheric-pressure gas bubble suspended in distilled water under saturated vapor pressure conditions
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Kinetics and dynamics of nanosecond streamer discharge in atmospheric-pressure gas bubble suspended in distilled water under saturated vapor pressure conditions

机译:饱和蒸气压条件下悬浮于蒸馏水中的大气压气泡中纳秒流光放电的动力学和动力学

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摘要

We perform computational studies of nanosecond streamer discharges generated in helium bubbles immersed in distilled water under atmospheric pressure conditions. The model takes into account the presence of water vapor in the gas bubble for an accurate description of the discharge kinetics. We find that the dynamic characteristics of the streamer discharge are different at low and high positive trigger voltages with the axial streamer evolution dominant for low voltages and a surface hugging mode favored for high voltages. We also find a substantial difference in initiation, transition and evolution stages of discharge for positive and negative trigger voltages with the volumetric distribution of species in the streamer channel much more uniform for negative trigger voltages on account of the presence of multiple streamers. We observe that the presence of water vapor does not affect the breakdown voltage even for oversaturated conditions but significantly influences the composition of dominant species in the trail of the streamer as well as the flux of the dominant species on the bubble surface.
机译:我们对在大气压条件下浸入蒸馏水中的氦气气泡中产生的纳秒流光放电进行计算研究。该模型考虑了气泡中水蒸气的存在,以准确描述放电动力学。我们发现,在低和高的正触发电压下,拖缆放电的动态特性是不同的,轴向拖缆的演化主要用于低压,而表面抱紧模式则适合高压。我们还发现,对于正触发电压和负触发电压,放电的始发,过渡和演化阶段存在显着差异,由于存在多个拖缆,对于负触发电压,拖缆通道中物质的体积分布更加均匀。我们观察到,即使在过饱和条件下,水蒸气的存在也不会影响击穿电压,但会显着影响拖缆尾部优势种的组成以及气泡表面上优势种的通量。

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