首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Comparison of simulations and experiments on the axial distributions of the electron density in a point-to-plane streamer discharge at atmospheric pressure
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Comparison of simulations and experiments on the axial distributions of the electron density in a point-to-plane streamer discharge at atmospheric pressure

机译:在大气压下仿真对电子密度轴向分布的比较和实验在大气压下

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摘要

The axial distributions of the electron density in primary streamer discharge for atmospheric-pressure air are simulated and compared with experimental data obtained by Inada et al (2017 J. Phys. D: Appl. Phys. 50 174005) using a highly temporally and spatially resolved measurement method for Shack-Hartmann-type laser wavefront sensors. The simulation is performed for the same electrode configuration, applied voltage, and gas component as the previously reported experiments. The simulation results show that the dissociative recombination reaction of electrons with cluster ion has an important influence on the axial distributions of the electron density during the primary streamer phase. However, the simulation results also indicate that the effect of the dissociative recombination reaction with cluster ion is limited to the primary streamer phase and the two-body attachment reaction of the electrons with O-2 is dominant for the decrease in electron density occurring during the secondary streamer phase. These findings contribute to improving the accuracy of the chemical reaction model of atmospheric-pressure streamer discharge, facilitating the development of atmospheric-pressure plasma applications.
机译:使用高时间和空间上解决:在大气压力空气初级流光放电中的电子密度的轴向分布模拟,并与由Inada等人获得的实验数据进行比较(应用物理50 174005 2017 J.物理学d。) Shack-Hartmann型激光波前传感器的测量方法。作为先前报道的实验,对相同的电极配置,施加电压和气体组分进行模拟。仿真结果表明,电子与聚类离子的分离重组反应对初级飘带相期间对电子密度的轴向分布的重要影响。然而,仿真结果还表明,与簇离子的离防重组反应的影响限于主飘移相,电子与O-2的双体附着反应是主导的,用于在时出现的电子密度的降低二次媒体阶段。这些发现有助于提高大气压飘带放电的化学反应模型的准确性,促进大气压等离子体应用的发展。

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