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[大气压空气中等离子体羽流的振动温度]

[Vibrational temperature of plasma plume in atmospheric pressure air].

作者信息

Li Xue-Chen, Chang Yuan-Yuan, Jia Peng-Ying, Zhao Huan-Huan, Bao Wen-Ting

机构信息

Key Laboratory of Photo-Electronics Information Materials of Hebei Province, College of Physics Science and Technology, Hebei University, Baoding 071002, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Jul;33(7):1754-7.

Abstract

A tri-electrode discharge device was designed in a dielectric barrier discharge configurations to generate a fairly large volume plasma plume in atmospheric pressure air. The discharge characteristics of the plasma plume were investigated by an optical method. The discharge emission from the plasma plume was collected by a photomultiplier tube. It was found that the number of discharge pulse per cycle of the applied voltage increased with increasing the peak value of the applied voltage. The emission spectra of the plasma plume were collected by a spectrometer. The vibrational temperature was calculated by fitting the experimental data to the theoretical one. Results showed that the vibrational temperature of the plasma plume decreases with increasing the U(p). Spatially resolved measurement of the vibrational temperature was also conducted on the plasma plume with the same method. Results showed that the vibrational temperature increases firstly and then decreases with increasing distance from the nozzle. The vibrational temperature reachs its maximum when the distance is 5.4 mm from the nozzle. These experimental phenomena were analyzed qualitatively based on the discharge theory. These results have important significance for the industrial applications of the plasma plume in atmospheric pressure air.

摘要

设计了一种三电极放电装置,采用介质阻挡放电结构,以在大气压空气中产生相当大体积的等离子体羽流。通过光学方法研究了等离子体羽流的放电特性。等离子体羽流的放电发射由光电倍增管收集。发现施加电压每周期的放电脉冲数随施加电压峰值的增加而增加。等离子体羽流的发射光谱由光谱仪收集。通过将实验数据与理论数据拟合来计算振动温度。结果表明,等离子体羽流的振动温度随U(p)的增加而降低。还用相同方法对等离子体羽流进行了振动温度的空间分辨测量。结果表明,振动温度随着距喷嘴距离的增加先升高后降低。当距喷嘴距离为5.4毫米时,振动温度达到最大值。基于放电理论对这些实验现象进行了定性分析。这些结果对大气压空气中等离子体羽流的工业应用具有重要意义。

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