Numerical study of transient processes in a corona dc microdischarge

A. Saifutdinova, B. Timerkaev, A. Saifutdinov
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Abstract

An extended fluid model is formulated that describes a corona microdischarge at atmospheric pressure in argon, taking into account the heating of the cathode-tip. Numerical calculations have been carried out, demonstrating two main modes of the negative corona: repetitively pulsed and glow discharge mode. For both modes, all the main parameters of the corona discharge plasma were obtained. It is shown that the appearance of Trichel pulses is in many respects similar to the transition from the Townsend to the glow discharge mode and is similar to self-oscillations manifested in a classical discharge with flat electrodes.
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电晕直流微放电瞬态过程的数值研究
建立了一个扩展的流体模型,描述了大气压下氩气中的电晕微放电,并考虑了阴极尖端的加热。数值计算证明了负电晕的两种主要模式:重复脉冲模式和辉光放电模式。在两种模式下,均得到了电晕放电等离子体的所有主要参数。结果表明,Trichel脉冲的外观在许多方面类似于从Townsend到辉光放电模式的转变,并且类似于经典的平面电极放电中表现出的自振荡。
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