不同电势放电条件下实验室氩/氧低温大气等离子体射流的等离子体参数诊断

Roonak Abdul Salam Alkareem, Baida M. Ahmed, Osama Abdul Azeez Dakhil, Ali Albeer
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引用次数: 0

摘要

本文为冷大气等离子体的表征及其发展提供了一个明确的方法。等离子体射流系统在恒定流速和14 ~ 18 kV电势放电条件下产生的Ar/O2等离子体射流的发射光谱表明,电压的变化导致Ar/O2发射强度的显著差异。利用光学发射光谱(OES)技术估计了等离子体的电子温度(Te)、电子密度(ne)、等离子体频率(fp)、德拜长度(λD)和德拜球粒子数(ND)等特性。获得的数据有待进一步分析和讨论。电势放电增大,电子温度由1.34 eV升高到1.54 eV。随着电势放电的增加,德拜球长度减小,而电子密度、等离子体频率和德拜球内粒子数增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasma Parameters Diagnosis of Laboratory Ar/O2 Cold Atmospheric Plasma Jet using Different Potential Discharges
This paper offers a clear methodology for the characterization of cold atmospheric plasmas and their development. The optical emission spectra of an Ar/O2 plasma jet produced in a plasma jet system at constant flow rates and for various potential discharges between 14 kV and 18 kV revealed that variations in voltage caused a significant difference in the intensity of the Ar/O2 emission. The plasma characteristics of electron temperature (Te), electron density (ne), plasma frequency (fp), Debye length (λD), and the number of particles in the Debye sphere (ND), were estimated using the technique of optical emission spectroscopy (OES). The obtained data are subject to further analysis and discussion. It was determined that potential discharges increased, and an electron temperature increased from 1.34 eV to 1.54 eV. With rising potential discharges, the Debye length decreases while the electron density, plasma frequency, and number of particles in the Debye sphere increase.
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