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Subnanosecond breakdown in highpressure gases

机译:高压气体的亚基二十秒细分

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摘要

Pulsed discharges in high-pressure gases are of considerable interest as sources of nonequilibrium plasma for various technological applications: pollution control, pumping of laser media, plasma-assisted combustion, etc. Recently, attention has been attracted to the use of subnanosecond voltage fronts, producing diffuse discharges with radii of several millimeters. Such plasma structures, similar to pulsed glow discharges, are of special interest for applications due to quasi-uniformity of plasma parameters in relatively large gas volumes. This review presents the results of experimental and computational study of subnanosecond diffuse discharge formation. A description of generators of short high-voltage pulses with subnanosecond fronts and of discharge setups is given. Diagnostic methods for the measurement of various discharge parameters with high temporal and spatial resolution are described. Obtained experimental data on plasma properties for a wide range of governing factors are discussed. A review of various theoretical approaches used for computational study of the dynamics and structure of fast ionization waves is given; the applicability of conventional fluid streamer models for simulation of subnanosecond ionization waves is discussed. Calculated spatial-temporal profiles of plasma parameters during streamer propagation are presented. The efficiency of subnanosecond discharges for the production of reactive species is evaluated. On the basis of the comparison of simulation results and experimental data the effects of various factors (voltage rise time, polarity, etc.) on discharge characteristics are revealed. The major physical phenomena governing the properties of subnanosecond breakdown are analyzed.
机译:高压气体中的脉冲放电具有相当兴趣的各种技术应用的等离子体来源:污染控制,激光介质的泵送,等离子体辅助燃烧等,最近,注意使用亚纳二秒电压前线,用几毫米的半径产生漫射排放。这种等离子体结构类似于脉冲发光放电,对于相对大的气体容积中的等离子体参数的准均匀性,对于应用是特殊的兴趣。本综述介绍了亚亚癸二碳弥散放电形成的实验和计算研究的结果。给出了带有亚纳秒脉冲和放电设置的短高压脉冲的发电机的描述。描述了具有高时间和空间分辨率的各种放电参数测量的诊断方法。讨论了关于各种控制因素的等离子体性能的实验数据。给出了用于计算快速电离波动力学和结构的计算研究的各种理论方法的审查。讨论了常规流体流媒体模型的应用,用于模拟亚亚诺二碳电离波。呈现了拖缆传播期间的等离子体参数的计算空间 - 时间轮廓。评估了用于生产反应性物质的亚烷烃排放的效率。在模拟结果的比较和实验数据的基础上,揭示了各种因素(电压上升时间,极性等)对放电特性的影响。分析了亚亚诺二碳崩溃的性质的主要物理现象。

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