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Effects of Gas Flow Rate on the Discharge Characteristics of a DC Excited Plasma Jet

机译:气体流量对直流激发等离子体射流放电特性的影响

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摘要

A direct current (DC) source excited plasma jet consisting of a hollow needle anode and a plate cathode has been developed to form a diffuse discharge plume in ambient air with flowing argon as the working gas. Using optical and electrical methods, the discharge characteristics are investigated for the diffuse plasma plume. Results indicate that the discharge has a pulse characteristic, under the excitation of a DC voltage. The discharge pulse corresponds to the propagation process of a plasma bullet travelling from the anode to the cathode. It is found that, with an increment of the gas flow rate, both the discharge plume length and the current peak value of the pulsed discharge decrease in the laminar flow mode, reach their minima at about 1.5 L/min, and then slightly increase in the turbulent mode. However, the frequency of the pulsed discharge increases in the laminar mode with increasing the argon flow rate until the argon flow rate equals to about 1.5 L/min, and then slightly decreases in the turbulent mode.
机译:已经开发了由空心针状阳极和板状阴极组成的直流(DC)源激发等离子体射流,以在流动的氩气为工作气体的环境空气中形成扩散放电羽流。使用光电方法,研究了扩散等离子体羽流的放电特性。结果表明,在直流电压的激励下,放电具有脉冲特性。放电脉冲对应于等离子体子弹从阳极行进到阴极的传播过程。发现随着气体流速的增加,在层流模式下,排放羽流长度和脉冲放电的电流峰值均减小,在约1.5 L / min时达到最小值,然后在湍流模式。然而,脉冲放电的频率在层流模式下随着氩气流量的增加而增加,直到氩气流量等于大约1.5 L / min,然后在湍流模式下略有下降。

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