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Analysis of Fast Ionization Wave Discharge Propagation in a Rectangular Geometry

机译:矩形几何形状中快速电离波放电传播分析

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Fast Ionization Wave (FIW), nanosecond pulse discharge propagation in nitrogen and helium in a rectangular geometry channel / waveguide is studied experimentally using calibrated capacitive probe measurements. The repetitive nanosecond pulse discharge in the channel was generated using a custom designed pulsed plasma generator (peak voltage 10-40 kV, pulse duration 30-100 nsec, voltage rise time ~1 kV/nsec), generating a sequence of alternating polarity high-voltage pulses at a pulse repetition rate of 20 Hz. Both negative polarity and positive polarity ionization waves have been studied. Ionization wave speed, as well as time-resolved potential distributions and axial electric field distributions in the propagating discharge are inferred from the capacitive probe data. ICCD images show that at the present conditions the FIW discharge in helium is diffuse and volume-filling, while in nitrogen the discharge propagates along the walls of the channel. FIW discharge propagation has been analyzed numerically using quasi-one-dimensional and two-dimensional kinetic models in a hydrodynamic (drift-diffusion), local ionization approximation. The wave speed and the electric field distribution in the wave front predicted by the model are in good agreement with the experimental results. A self-similar analytic solution of the fast ionization wave propagation equations has also been obtained. The analytic model of the FIW discharge predicts key ionization wave parameters, such as wave speed, peak electric field in the front, potential difference across the wave, and electron density as functions of the waveform on the high voltage electrode, in good agreement with the numerical calculations and the experimental results.
机译:使用校准的电容探针测量,通过实验研究了快速电离波(FIW),在矩形几何沟道/波导中的氮气和氦中的氮和氦。使用定制设计的脉冲等离子体发生器产生通道中的重复纳秒脉冲放电(峰值电压10-40kV,脉冲持续时间30-100nsec,电压上升时间〜1kV / nsec),产生一系列交替极性高 - 脉冲重复率为20Hz的电压脉冲。已经研究了负极性和正极性电离波。离电离波速度以及传播放电中的时间分辨潜在分布和轴向电场分布被从电容探针数据推断出来。 ICCD图像表明,在当前条件下,氦的FIW放电是漫射和体积填充,而在氮气中,放电沿着通道的壁传播。在流体动力学(漂移扩散)中使用准一维和二维动力学模型进行了数值分析了FIW放电传播,局部电离近似。通过模型预测的波线前沿的波速和电场分布与实验结果很好。还已经获得了快速电离波传播方程的自相似的分析解。 FIW放电的分析模型预测了钥匙电离波参数,例如波速,峰值电场,横跨波浪上的电位差,电子密度作为高压电极上的波形的功能,与之吻合数值计算与实验结果。

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