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Diagnosis of Electron, Vibrational and Rotational Temperatures in an Ar/N2 Shock Plasma Jet Produced by a Low Pressure DC Cascade Arc Discharge

机译:低压直流串级电弧放电产生的Ar / N2冲击等离子体射流中电子,振动和旋转温度的诊断

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In this paper, a low pressure Ar/N2 shock plasma jet with clearly multicycle al- ternating zones produced by a DC cascade arc discharge has been investigated by an emission spectral method combined with Abel inversion analysis. Plasma emission intensity, electron, vi-brational and rotational temperatures of the shock plasma have been measured in the expansion and compression zones. The results indicate that the ranges of the measured electron temperature, vibrational temperature and rotational temperature are 1.1 eV to 1.6 eV, 0.2 eV to 0.7 eV and 0.19 eV to 0.22 eV, respectively, and it is found for the first time that the vibrational and rota-tional temperatures increase while the electron temperature decreases in the compression zones. The electron temperature departs from the vibrational and the rotational temperatures due to non-equilibrium plasma effects. Electrons and heavy particles could not completely exchange energy via collisions in the shock plasma jet under the low pressure of 620 Pa or so.
机译:在本文中,通过发射光谱法结合Abel反演研究了具有明显多周期交替区的低压Ar / N2冲击等离子体射流,该交替区由DC级联电弧放电产生。已经在膨胀和压缩区域中测量了冲击等离子体的等离子体发射强度,电子,振动和旋转温度。结果表明,测得的电子温度,振动温度和旋转温度的范围分别为1.1 eV至1.6 eV,0.2 eV至0.7 eV和0.19 eV至0.22 eV,这是首次发现旋转温度升高,而压缩区电子温度降低。由于非平衡等离子体效应,电子温度偏离了振动温度和旋转温度。在620 Pa左右的低压下,电子和重粒子无法通过冲击等离子体射流中的碰撞完全交换能量。

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