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首页> 外文期刊>Current Organic Synthesis >Mode transition and plasma characteristics of nanosecond pulse gas-liquid discharge: Effect of grounding configuration
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Mode transition and plasma characteristics of nanosecond pulse gas-liquid discharge: Effect of grounding configuration

机译:纳秒脉冲气液排放的模式转变和等离子体特性:接地配置的效果

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Transitions between the streamer and spark modes affect the stability of gas-liquid discharges, limiting their practical applications, while the nature of such transitions is poorly understood. Here we clarify the often neglected effect of a dielectric on the gas-liquid discharge stability, using direct and indirect grounding configurations. Discharge modes and plasma characteristics in these two configurations are investigated. The discharge appears in a transient spark mode in the direct grounding while in a streamer mode in the indirect case. It is shown that the dielectric significantly improves the discharge stability. The gas temperature and electron density in the transient spark are 380 K and 10(17)/cm(3) with a 30 kV pulse voltage, respectively, which are higher than those in the streamer mode.
机译:拖缆和火花模式之间的过渡影响气液排放的稳定性,限制了它们的实际应用,而这种转变的性质理解得很差。 在这里,我们利用直接和间接接地配置阐明了电介质对气液排放稳定性的常用效果。 研究了这两种配置中的放电模式和等离子体特性。 放电在间接情况下在拖缆模式下在直接接地中出现瞬态火花模式。 结果表明,电介质显着提高了放电稳定性。 瞬态火花中的气体温度和电子密度为380 k和10(17)/ cm(3),分别具有30kV脉冲电压,其高于拖缆模式中的脉冲电压。

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