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Study on the Self-Organized Pattern in an Atmospheric Pressure Dielectric Barrier Discharge Plasma Jet

机译:大气压介质阻挡放电等离子体射流中自组织图形的研究

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In this paper, a rich variety of self-organized patterns have been observed in a dielectric barrier discharge helium plasma jet generated at atmospheric pressure. It has been found that the evolvement of a discharge pattern in plasma jets is sensitive to diverse experimental parameters, including the applied voltage, the frequency of power, the scale of plasma jet generator, and the gas flow rate. By altering the applied voltage and/or the gas flow rate, the plasma jet is seen to evolve through three modes, which are diffuse-looking discharge, self-organized discharge with regular channels, and unstable discharge with random filaments. Among which, the self-organized discharge mode is characterized with several bright plasma channels stably formed in a straight line. The maximum number of channels is mainly determined by the scale of plasma jet generator. When the frequency is fixed, the minimum distance between two adjacent discharge channels in the self-organized mode is nearly the same, no matter what size tube is selected.
机译:在本文中,在大气压下产生的介质阻挡放电氦等离子体射流中观察到了各种各样的自组织图形。已经发现等离子流中放电模式的演变对各种实验参数敏感,包括施加电压,功率频率,等离子流发生器的规模和气体流速。通过改变施加的电压和/或气体流速,可以看到等离子流通过三种模式演化,即扩散型放电,具有规则通道的自组织放电和具有随机灯丝的不稳定放电。其中,自组织放电模式的特征在于,多个明亮的等离子体通道稳定地形成在一条直线上。最大通道数主要由等离子流发生器的规模决定。当频率固定时,无论选择哪种尺寸的管,在自组织模式下两个相邻放电通道之间的最小距离几乎相同。

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