常压正弦激励射流等离子体的光谱特性研究  被引量:3

Spectral Characteristics of Sinusoidal Excitation Plasma Jet Produced in Atmospheric Air

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作  者:张欣伟[1] 李安帮[1] 杨国清[1] 王德意[1] 刘冬玲[1] 

机构地区:[1]西安理工大学电力工程系,西安710048

出  处:《高压电器》2013年第11期25-30,共6页High Voltage Apparatus

基  金:国家自然科学基金项目(51279161)~~

摘  要:笔者研究了大气压下介质阻挡放电的产生及其发射光谱特性。放电施加正弦激励,频率和幅值分别是5~20kHz和0~20kV。通过高频数字示波器测量放电的电流电压。光谱特性通过发射光谱仪测量。光谱仪测量范围200~100nm.通过光谱分析以确定大气压下等离子射流的影响因素。结果表明:施加电压幅值是其首要影响因素,其次是频率;气体流速的影响因气体成分的不同而不同;纯Ar大气压等离子射流只能观察到活性例子Ar而没有Ar^2,Ar2^+或Ar^+的光谱。This paper reports the results concerning the production of atmospheric-pressure plasma jets and its optical spectrum characterization. The discharge was produced by applying a sinusoidal voltage of frequency 5-20 kHz and potential difference of 0-20 kV across the electrodes. The discharge was characterized by measuring current and voltage with a high frequency digital oscilloscope. The optical spectrum characterization was made by taking the spectrums of discharge by optical emission spectrometer. The optical spectra in the range of 200 nm to 1 100 nm have been analyzed in order to determine the influence factors of atmospheric-pressure plasma jets. The main influence factors of APPJs discharge is the amplitude of applied voltage, and the secondary factor is the frequency. The influence of gas flow rate on discharge is different by gas composition, moreover emission spectral of APPJs in pure argon can only observe spectral of Ar but Ar2, Ar2^+ or Ar^+.

关 键 词:等离子射流 光谱诊断 介质阻挡放电 

分 类 号:O536[理学—等离子体物理]

 

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