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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Direct comparison of pulsed spark discharges in air and water by synchronized electrical and optical diagnostics
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Direct comparison of pulsed spark discharges in air and water by synchronized electrical and optical diagnostics

机译:通过同步电气和光学诊断直接比较空气和水中的脉冲火花放电

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摘要

In this study, a direct comparison was made between pulsed spark discharges in air and water in sub-mm gaps. The discharges were ignited at atmospheric pressure in the same discharge arrangement for air and water, using a solid-state microsecond pulse source with approximate to 1 s voltage rise time (U-max up to 37 kV). Fast voltage and current measurements were synchronized with iCCD imaging with high spatial resolution on symmetrical half-sphere tungsten electrodes (electrode gaps of up to 0.7 mm for air and 0.3 mm for water). The breakdown voltage and electrical field strength, maximal current, transferred charge, consumed electrical energy and discharge emission structure (e.g. discharge channel diameters) was obtained for all cases. Using the synchronization of the electrical data and the iCCD imaging, current and energy densities were estimated for the sparks in air and water. It was found that the breakdown voltage, the discharge current, the transferred charge, and the consumed electrical energy increase with the gap distance, and that this dependency is much stronger for discharges in water (compared to air). Due to the use of the same discharge arrangement and the same applied voltage, the difference in the discharge characteristics was directly quantified.
机译:在该研究中,在亚mm间隙中的空气和水中的脉冲火花放电之间进行直接比较。使用具有近似为1 S电压上升时间的固态微秒脉冲源(U-Max高达37kV)的固态微秒脉冲源在相同的排出装置中以相同的排出装置点燃排出排出。快速电压和电流测量与ICCD成像同步,对称半球钨电极高空间分辨率(用于空气的电极间隙,空气高达0.7mm,水)。为所有病例获得击穿电压和电场强度,最大电流,转移电荷,消耗的电能和排出发射结构(例如放电通道直径)。使用电气数据的同步和ICCD成像,估计空气和水中火花的电流和能量密度。发现击穿电压,放电电流,转移电荷和消耗的电能随空间距离而增加,并且这种依赖性对于排出水中的依赖性要强大(与空气相比)。由于使用相同的放电装置和相同的施加电压,直接量化放电特性的差异。

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