大气压空气中重复纳秒脉冲介质阻挡放电
Nanosecond Repetitively Pulsed Dielectric Barrier Discharge in Air at Atmospheric Pressure
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摘要: 采用重复纳秒脉冲激发介质阻挡放电是一种产生大气压空气中低温等离子体的潜在应用前景的方法。 本文中的介质阻挡放电在两个充满盐水的圆柱型玻璃容器间由纳秒级重复脉冲功率发生器产生, 本文介绍了纳秒脉冲介质阻挡放电的电气参数、发光图片以及光谱诊断。结果发现介质阻挡放电产生的脉冲等离子体的放电电流大、发光较强, 并且对应的气体温度基本保持在室温条件, 且与施加脉冲的极性无关。采用曝光时间2ns的高速摄影结果显示了均匀放电, 没有丝状放电。Abstract: Dielectric barrier discharge (DBD) between two cylindrical glass containers with salt water generated by a nanosecond repetitively pulsed power generator is reported. The electrical parameters, luminous images and spectrum diagnosis are presented. It is shown that the DBD possesses a large discharge current and an intense optical emission from the nitrogen second positive system below 400 nm. The gas temperature remains very close to room temperature regardless of pulse polarity. Luminous photographs with a short exposure time down to 2 ns indicate that no filament is observed and the discharge is homogeneous.
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