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首页> 外文期刊>Plasma Sources Science & Technology >The evolution of atmospheric-pressure low-temperature plasma jets: Jet current measurements
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The evolution of atmospheric-pressure low-temperature plasma jets: Jet current measurements

机译:大气压低温等离子体射流的演变:射流电流测量

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摘要

In this study, we report insights into the dynamics of atmospheric-pressure low-temperature plasma jets (APLTPJs). The plasma jet current was measured by a Pearson current monitor for different operating conditions. These jet current measurements confirmed a proposed photo-ionization model based on streamer theory. Our results are supported by intensified charged-couple device camera observations. It was found that a secondary discharge ignition, arising from the positive high-voltage electrode, causes the inhibition of plasma bullet propagation. Our observations also showed the existence of an ionization channel between the APLTPJ reactor and the plasma bullet. In addition, the maximum electron density along the plasma jet was estimated using Ohm's law, and an empirical relationship was derived between the plasma bullet velocity and the plasma bullet area.
机译:在这项研究中,我们报告了对常压低温等离子体射流(APLTPJs)动力学的见解。通过Pearson电流监控器针对不同的操作条件测量等离子流的电流。这些喷射电流的测量结果证实了基于流光理论的光电离模型。我们的研究结果得到了电荷耦合器件相机增强观测的支持。已经发现,由正高压电极引起的二次放电点火会导致等离子体子弹的传播受到抑制。我们的观察结果还表明,在APLTPJ反应器和等离子体子弹之间存在电离通道。另外,使用欧姆定律估计沿等离子体射流的最大电子密度,并得出等离子体弹速度与等离子体弹面积之间的经验关系。

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