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Formation and dynamics of plasma bullets in a non-thermal plasma jet: Influence of the high-voltage parameters on the plume characteristics

机译:非热等离子体射流中等离子体子弹的形成和动力学:高压参数对羽流特性的影响

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Non-thermal plasma jets in open air are composed of ionization waves commonly known as 'plasma bullets' propagating at high velocities. We present in this paper an experimental study of plasma bullets produced in a dielectric barrier discharge linear-field reactor fed with helium and driven by microsecond high-voltage pulses. Two discharges were produced between electrodes for every pulse (at the rising and falling edge), but only one bullet was generated. Fast intensified charge coupled device camera imaging showed that bullet velocity and diameter increase with applied voltage. Spatially resolved optical emission spectroscopy measurements provided evidence of the hollow structure of the jet and its contraction. It was shown that the pulse amplitude significantly enhances electron energy and production of active species. The plasma bullet appeared to behave like a surface discharge in the tube, and like a positive streamer in air. A kinetics mechanism based on electron impact, Penning effect and charge transfer reactions is proposed to explain the propagation of the ionization front and temporal behavior of the radiative species.
机译:露天的非热等离子体射流由电离波组成,这些电离波通常被称为“等离子体子弹”,以高速传播。我们在本文中对由氦气供入并由微秒高压脉冲驱动的介质阻挡放电线性场反应堆中产生的等离子体子弹进行实验研究。每个脉冲(在上升沿和下降沿)在电极之间产生两次放电,但仅产生一个子弹。快速增强的电荷耦合器件相机成像显示,子弹速度和直径随施加电压而增加。空间分辨光发射光谱测量提供了射流的中空结构及其收缩的证据。结果表明,脉冲幅度显着增强了电子能量和活性物质的产生。等离子体子弹的表现像是试管中的表面放电,并且像是空气中的正流。提出了一种基于电子碰撞,潘宁效应和电荷转移反应的动力学机理,以解释电离锋的传播和辐射物质的时间行为。

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