首页> 外文期刊>IEEE Transactions on Plasma Science >Investigation on the Behavior of Electrons in the Bullet as Well as Its Dependence on Applied Voltage and H2O Concentration in the Atmospheric-Pressure Ar/H2O Plasma Jets
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Investigation on the Behavior of Electrons in the Bullet as Well as Its Dependence on Applied Voltage and H2O Concentration in the Atmospheric-Pressure Ar/H2O Plasma Jets

机译:对子弹中电子的行为的研究以及依赖于大气压AR / H2O等离子体喷射中施加电压和H2O浓度的依赖性

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This article presents a systematic investigation on the behavior of electrons in the bullet in the Ar/H2O plasma jet in increasing the applied voltage and water vapor concentration based on a needle-plate discharge configuration and a 1- D particle-in-cell Monte Carlo method. The scattering angle of the electron in the bullet is described using the angle between the electron scattering direction and the bullet propagation direction. The following results are obtained. The evolution characteristic of the angle spectrum of electrons in the bullet in increasing the applied voltage is the same as that in increasing water vapor concentration, namely, the electrons scattered toward the target get increasingly less. When increasing the applied voltage, the OH density, the electron density, and the average electron energy Eave increase. However, the increase in water vapor concentration leads to an evidently increasing OH density and a decrease in both the electron density and Eave. In the range of electron scattering angles below 90 degrees in the bullet, the percentage of electrons with energy above 3.27 eV (the threshold of inducing dissociative electron attachment to water molecule) increases with increasing applied voltage but presents a slight decrease in increasing water vapor concentration. The majority of electrons to most probably interact with the target are of energies higher than 3.27 eV. Finally, a notable effect of H2O admixture is that it gives rise to the decrease in not only Eave but also the electron density in the bullet, especially the latter decreases evidently.
机译:本文提出了对AR / H2O等离子体射流的子弹中电子在基于针板放电配置的施加电压和水蒸气浓度和1-D粒子内蒙特卡罗的系统的系统研究方法。使用电子散射方向与子弹传播方向之间的角度来描述子弹中电子在子弹中的散射角度。获得以下结果。在增加施加电压时,子弹中电子的角度谱的变速特性与增加水蒸气浓度的相同,即朝向目标散射的电子越来越小。当增加施加的电压时,OH密度,电子密度和平均电子能量eave增加。然而,水蒸气浓度的增加导致显然增加的OH密度和电子密度和檐的减少。在子弹在90度以下的电子散射角范围内,具有高于3.27eV的电子的百分比(诱导离缀电子连接到水分子的阈值)随着施加电压的增加而增加,但增加了水蒸气浓度的略微降低。大多数电子到最多可能与目标相互作用的能量高于3.27eV。最后,H2O混合物的显着效果是它不会产生不仅屋檐的减少,而且引起了子弹中的电子密度,特别是后者显然降低。

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