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大气压下高压亚微秒脉冲激励产生的介质阻挡放电的实验分析(英文)

Experimental Investigation of Dielectric Barrier Discharge Using High Voltage Sub-microsecond Pulse Power in Atmospheric Air

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【作者】 李杰谢宇彤董攀马兵王利鸣章林文

【Author】 LI Jie;XIE Yutong;DONG Pan;MA Bing;WANG Liming;ZHANG Linwen;Key Laboratory of Pulsed Power,Institute of Physics,China Academy of Engineering Physics;

【机构】 Key Laboratory of Pulsed Power,Institute of Physics,China Academy of Engineering Physics

【摘要】 An experimental device is used to study the characteristics of dielectric barrier discharge(DBD)plasma excited by high voltage sub-microsecond pulse power in atmospheric air.Glass,polytetrafluoroethene(PTFE)and plexiglass are used as dielectric barrier materials.Comparatively homogeneous discharge is obtained within 130 mm diameter area in atmospheric air using the three dielectric materials with gap distances of 4.5 mm,6.5 mm and 6.5 mm,respectively.There is no filamentary discharge observed by naked eyes or by camera with the exposure time of 0.25 s.Gas gap voltage,discharge current,discharge power density,etc.are calculated by using Liu’s equivalent circuit model for pulsed DBD.These parameters are used to study the DBD characteristics.Typically,current varies from tens of amperes to hundreds of amperes in atmospheric air DBD excited by sub-microsecond pulses.The peak power can reach to MW order of magnitude.The average power surface density of 1.0 W/cm2and the average electron density of 1011cm 3can also be obtained in the discharge.Rotational and vibrational temperatures,approximately 400 K and 2 650 K,respectively,are obtained by using the emission spectrum of the discharge.This is the basic work performed for a better understanding of the characteristics of atmospheric air DBD plasma excited by high voltage sub-microsecond pulsed power source.

【Abstract】 An experimental device is used to study the characteristics of dielectric barrier discharge(DBD) plasma excited by high voltage sub-microsecond pulse power in atmospheric air.Glass,polytetrafluoroethene(PTFE) and plexiglass are used as dielectric barrier materials.Comparatively homogeneous discharge is obtained within 130 mm diameter area in atmospheric air using the three dielectric materials with gap distances of 4.5 mm,6.5 mm and 6.5 mm,respectively.There is no filamentary discharge observed by naked eyes or by camera with the exposure time of 0.25 s.Gas gap voltage,discharge current,discharge power density,etc.are calculated by using Liu’s equivalent circuit model for pulsed DBD.These parameters are used to study the DBD characteristics.Typically,current varies from tens of amperes to hundreds of amperes in atmospheric air DBD excited by sub-microsecond pulses.The peak power can reach to MW order of magnitude.The average power surface density of 1.0 W/cm2and the average electron density of 1011cm 3can also be obtained in the discharge.Rotational and vibrational temperatures,approximately 400 K and 2 650 K,respectively,are obtained by using the emission spectrum of the discharge.This is the basic work performed for a better understanding of the characteristics of atmospheric air DBD plasma excited by high voltage sub-microsecond pulsed power source.

【基金】 Project supported by National Natural Science Foundation of China(11035004);Double Hundred Talent Foundation of CAEP(2009R0102);Key Laboratory of Pulsed Power of CAEP Science and Technology Development Foundation(2008B0402037)
  • 【文献出处】 高电压技术 ,High Voltage Engineering , 编辑部邮箱 ,2013年09期
  • 【分类号】O461
  • 【被引频次】5
  • 【下载频次】59
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