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首页> 外文期刊>IEEE Transactions on Plasma Science >Statistical Analysis of Pulsed Microdischarges and Ozone Generation in Dielectric Barrier Discharges
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Statistical Analysis of Pulsed Microdischarges and Ozone Generation in Dielectric Barrier Discharges

机译:介质阻挡放电中脉冲微放电和臭氧产生的统计分析

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Pulsed microdischarges produced by dielectric barrier discharges (DBDs) in a submillimeter gap were investigated under 200 cycles of sinusoidal ac voltage at 5 kHz in this paper. The impulsive current in the external circuit was accurately measured by an oscilloscope with a bandwidth of 2.5 GHz and a maximum sampling rate of 40 GS/s to calculate the filamentary current in the discharge gap. The amplitude, pulse duration, and transferred charge of a single filamentary current and the microdischarge energy acquired over the 200 voltage cycles were statistically analyzed for different discharge gaps and gas pressures. The microdischarge parameters and ozone generation efficiencies for different conditions were compared. The ozone production efficiency was found to increase with increasing pressure from 1 to 2 bar absolute, and the gap length from 0.2 to 0.5 mm. The maximum ozone production efficiency achieved in the paper was 217 g/kWh, with a gap length of 0.5 mm, an absolute pressure of 2.0 bar, and an applied voltage of 5.5 kV at 5 kHz.
机译:本文研究了在5 kHz的200次正弦交流电压周期下,由亚毫米间隙中的介电势垒放电(DBD)产生的脉冲微放电。用带宽为2.5 GHz的示波器和最大采样率为40 GS / s的示波器精确测量外部电路中的脉冲电流,以计算放电间隙中的丝状电流。对于不同的放电间隙和气体压力,统计分析了单丝电流的幅度,脉冲持续时间和转移电荷,以及在200个电压周期内获得的微放电能量。比较了不同条件下的微放电参数和臭氧产生效率。发现臭氧生产效率随着压力从绝对压力1到2 bar的增加以及间隙长度从0.2 mm到0.5 mm的增加而增加。本文中实现的最大臭氧生产效率为217 g / kWh,间隙长度为0.5 mm,绝对压力为2.0 bar,在5 kHz时施加的电压为5.5 kV。

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