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首页> 外文期刊>Journal of Applied Physics >Initiation process and propagation mechanism of positive streamer discharge in water
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Initiation process and propagation mechanism of positive streamer discharge in water

机译:水中正流放电的引发过程和传播机理

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The aim of this study was to clarify the initiation process and the propagation mechanism of positive underwater streamers under the application of pulsed voltage with a duration of 10 μs, focusing on two different theories of electrical discharges in liquids: the bubble theory and the direct ionization theory. The initiation process, which is the time lag from the beginning of voltage application to streamer inception, was found to be related to the bubble theory. In this process, Joule heating resulted in the formation of a bubble cluster at the tip of a needle electrode. Streamer inception was observed from the tip of a protrusion on the surface of this bubble cluster, which acted as a virtual sharp electrode to enhance the local electric field to a level greater than 10 MV/cm. Streak imaging of secondary streamer propagation showed that luminescence preceded gas channel generation, suggesting a mechanism of direct ionization in water. Streak imaging of primary streamer propagation revealed intermittent propagation, synchronized with repetitive pulsed currents. Shadowgraph imaging of streamers synchronized with the light emission signal indicated the possibility of direct ionization in water for primary streamer propagation as well as for secondary streamer propagation.
机译:这项研究的目的是阐明在施加持续时间为10μs的脉冲电压的情况下,正向水下拖缆的引发过程和传播机理,重点研究了液体中的两种不同的放电理论:气泡理论和直接电离理论。理论。发现启动过程是从施加电压开始到流线开始的时间间隔,与气泡理论有关。在此过程中,焦耳加热导致在针状电极尖端形成气泡簇。从该气泡簇表面上的突起的尖端观察到流光开始,该气泡起着虚拟的尖锐电极的作用,以将局部电场增强到大于10 6 MV / cm的水平。二次流光传播的条纹成像表明,发光先于气体通道生成,提示了水中直接电离的机制。主拖缆传播的条纹成像显示间歇传播,与重复脉冲电流同步。与发光信号同步的拖缆的阴影图成像表明,对于主拖缆以及副拖缆,水中直接电离的可能性很大。

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