吴兴伟

Engineer  

Gender:Female

Alma Mater:大连理工大学

Degree:Doctoral Degree

School/Department:物理学院

Discipline:Plasma physics

Business Address:综合教学一号楼305室


Paper Publications

Diagnosis of Electron, Vibrational and Rotational Temperatures in an Ar/N-2 Shock Plasma Jet Produced by a Low Pressure DC Cascade Arc Discharge

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Indexed by:期刊论文

Date of Publication:2013-09-01

Journal:PLASMA SCIENCE & TECHNOLOGY

Included Journals:SCIE、EI、Scopus

Volume:15

Issue:9

Page Number:875-880

ISSN No.:1009-0630

Key Words:DC arc torch; plasma jet; shock wave; electron temperature; vibrational temperature; rotational temperature; emission spectral diagnosis

Abstract:In this paper, a low pressure Ar/N-2 shock plasma jet with clearly multicycle alternating 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, vibrational 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 rotational 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.

Pre One:High-Sensitivity In-Situ Diagnosis of NO2 Production and Removal in DBD Using Cavity Ring-Down Spectroscopy

Next One:高灵敏度光腔衰荡光谱原位诊断介质阻挡放电中NO2的产生与脱除机理

Profile

主要从事激光光谱学诊断低温等离子体痕量物种方面的科学研究工作。侧重于将光腔衰荡光谱技术(CRDS)应用于等离子体痕量物种检测,测量其在不同条件下的绝对数密度。
现就职于基础物理实验教学中心,主要参与大学物理实验教学、物理实验竞赛指导等工作。