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首页> 外文期刊>Plasma Sources Science & Technology >Velocity of initial propagation of positive nanosecond discharge in liquid water: dependence on high voltage amplitude and water conductivity
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Velocity of initial propagation of positive nanosecond discharge in liquid water: dependence on high voltage amplitude and water conductivity

机译:液态水中正纳秒放电的初始传播的速度:依赖高压振幅和水电系数

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This study deals with the effect of water conductivity and high voltage pulse amplitude on the initial velocity of nanosecond discharge in liquid water. As variable parameters, we used water solutions with three different conductivities (2 μS cm?1, 100 μS cm?1, 500 μS cm?1), and positive high voltage pulses with four different amplitudes (80 kV, 91 kV, 100 kV, 113 kV). The discharge reactor consists of metallic electrodes in a point–to–plane geometry, both immersed in liquid water. The discharge was generated by a commercial nanosecond pulse power generator with positive HV pulses of ~6 ns pulse duration (FWHM) and ~2.5 ns rise time. ICCD timeresolved imaging microscopy with high temporal resolution (~ns) was utilized as a suitable diagnostic tool for the discharge dynamic propagation. It can be concluded that the discharge visual characteristics and behaviour are not significantly influenced by water conductivity and the length of the filaments increases with the increasing voltage amplitude and reaches the maximum value of ~1.8 mm for 90 kV. The initial propagation velocity also depends on the voltage amplitude and increases with the voltage. The effect of water conductivity on the propagation velocity is negligible. As far as we know, this paper is the first to bring insight into the topic of the effect of water conductivity on the nanosecond discharge propagation in liquid water.
机译:该研究涉及导电性和高压脉​​冲幅度对液态水中纳秒放电初始速度的影响。作为可变参数,我们使用具有三种不同电导率的水溶液(2μscm≤1,100μscm≤1,500μscm≤1),以及具有四种不同幅度的正高压脉冲(80kV,91 kV,100 kV 113 kV)。放电反应器由在浸入液态水中的点对平面几何形状中的金属电极组成。通过商业纳秒脉冲发电机产生放电,其具有〜6 ns脉冲持续时间(fwhm)和〜2.5ns上升时间的正HV脉冲。具有高时间分辨率(〜ns)的ICCD Timeresolved成像显微镜被用作放电动态传播的合适诊断工具。可以得出结论,放电视觉特征和行为不会受到导电性的显着影响,并且长丝的长度随着电压幅度的增加而增加,达到90 kV的最大值〜1.8mm。初始传播速度还取决于电压幅度并随电压增加。导电性对传播速度的影响可忽略不计。据我们所知,本文是第一个能够深入了解导电性对液态水中纳秒放电繁殖效果的主题。

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