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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigation of the transition from streamer to uniform 'overvoltage' mode of atmospheric air nanosecond-pulsed dielectric barrier discharge
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Investigation of the transition from streamer to uniform 'overvoltage' mode of atmospheric air nanosecond-pulsed dielectric barrier discharge

机译:从飘带到大气空气纳秒脉冲介质屏障放电均匀“过电压”模式的转变研究

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摘要

A nanosecond-pulsed dielectric barrier discharge ignited in atmospheric air was studied by optical emission spectroscopy to investigate the time- and space-resolved development of the reduced electric field. The discharge operated in two distinct modes that correlate with the values of the applied electric field: non-uniform streamer regime and uniform breakdown regime. It is shown that the reduced electric field in the non-uniform mode corresponds to the propagation of cathode-directed streamers, while in uniform discharge both molecular nitrogen emission and the reduced electric field are uniformly distributed along the gap during the initial discharge development stage with corresponding lower reduced electric field values.
机译:通过光发射光谱研究了在大气空气中点燃的纳秒脉冲介电阻挡放电,以研究降低电场的时间和空间分辨的发展。 放电以两种不同的模式操作,与所施加的电场的值相关联:非均匀的飘带制度和均匀的分解制度。 结果表明,非均匀模式中的缩小电场对应于阴极定向飘的飘的飘的飘的飘的飘的飘的飘逸的传播,而在均匀的放电中,初始排放开发阶段期间的间隙均匀地分布分子氮发射和减速的电场 相应的较低的电场值。

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