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Volumetric Plasma Discharge in a Coaxial Electrode Configuration Using Repetitively Pulsed Nanosecond Discharges

机译:使用重复脉冲纳秒放电的同轴电极配置中的体积等离子体放电

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Transient plasma discharges can be created in different electrode geometries and the use of a coaxial electrodes can assist in initiating ignition at multiple points at the same time to create volumetric ignition. The current study investigates discharge formation in a coaxial electrode in quiescent, atmoshpheric and non-reacting conditions. This is the first systematic study to understand the behavior of such a discharge as a function of different pulse parameters like pulse width (40-110 ns), repetition frequency (1-50 kHz) and input voltage (14-20 kV). Additionally, the polarity of the central electrode was changed between positive and negative. An intensified ccd camera was used to visualize the discharge formation. The exposure of the camera is set to capture 500 discharges in a single frame. The discharges were found to behave differently for positive and negative polarity discharges. The positive polarity discharge tends to form a strong arc and spins around the outer cylinder which is confirmed using a high speed camera. The negative polarity discharges form a uniform streamer discharge for most of the pulse parameters. The current study has provided an initial understanding of the dynamics of plasma discharges in a coaxial electrode.
机译:可以在不同的电极几何形状中产生瞬态等离子体放电,并且使用同轴电极可以帮助同时在多个点启动点火以产生体积点火。当前的研究调查了在静止,大气和非反应条件下同轴电极中放电的形成。这是第一个系统研究这种放电行为的方法,该行为取决于不同的脉冲参数,例如脉冲宽度(40-110 ns),重复频率(1-50 kHz)和输入电压(14-20 kV)。另外,中心电极的极性在正极和负极之间改变。使用增强型CCD相机来可视化放电形成。相机的曝光设置为在一帧中捕获500次放电。发现该放电对于正极和负极放电具有不同的行为。正极性放电易于形成强电弧,并在外圆柱体周围旋转,这可以通过高速相机确认。对于大多数脉冲参数,负极性放电会形成均匀的流光放电。当前的研究提供了对同轴电极中等离子体放电动力学的初步了解。

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