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Spectroscopic Diagnostics of Rotational Temperature in the Pulsed Atmospheric Air Plasma
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作者 DONG Pan LI Jie +3 位作者 LI Xi XIE Yutong LONG Jidong ZHANG Linwen 《高电压技术》 EI CAS CSCD 北大核心 2013年第10期2568-2572,共5页
Dielectric barrier discharge(DBD)attracts lots of attentions for its great application promises,and the rotational temperature is one of its mostly important parameters.In order to measure the rotational temperature o... Dielectric barrier discharge(DBD)attracts lots of attentions for its great application promises,and the rotational temperature is one of its mostly important parameters.In order to measure the rotational temperature of a pulsed DBD in atmospheric air,the temperature is studied by using optical emission spectroscopy(OES).The discharge is excited by a high voltage pulse with 124 ns rise time and 230 ns full width at half maximum(FWHM)at a repetition rate of a few hundred hertz.The rotational temperatures are studied using different voltages,different repetition rates of the pulse power supply,and different gaps between dielectrics:They are in the range from 390 K to 500 K during the whole discharge.When the gap between dielectrics increases,the rotational temperature initially decreases and then increases.The rotational temperature changes complexly when the pulse repetition rate changes.When the voltage increases,the rotational temperature always decreases,which is not expected.These results allow one to predict the rotational temperature at different supply power parameters and electrode configurations,which is useful for the DBD's industrial application. 展开更多
关键词 dielectric barrier discharge optical emission spectroscopy rotational temperature nanosecond pulse pulse parameters relativeintensity
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