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Characteristics of non-thermal AC arcs in multi-arc generator 被引量:2

Characteristics of non-thermal AC arcs in multi-arc generator
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摘要 To obtain large-volume non-thermal arc plasma(NTAP), a multiple NTAP generator with three pairs of electrodes has been developed. The arc plasma characteristics, including dynamic process, spatial distribution, and rotation velocity in the discharge zone, were investigated by high speed photograph and image processing methods. The results showed that the dynamic behaviors and spatial distribution of the arc plasma were strongly related to the electrode configuration.A swirl flow of multi-arc plasma was formed by adjusting the electrode configuration, and a steady luminance area was clearly observed in the center of the discharge zone. Moreover, the size of the luminance area increased by decreasing the gas flow rate. The electrical connection in series could be formed between/among these arc columns with their respective driving power supplies in the multi-arc dynamic evolution process. An approximately periodical process of acceleration and deceleration of the arc rotation velocity was observed in the multi-arc generator with swirl flow configuration. In general, the mean velocity of arc rotation was higher in the multi-arc generator with swirl flow configuration when a pair of electrodes driven by a power supply were opposite to each other rather than adjacent. To obtain large-volume non-thermal arc plasma(NTAP), a multiple NTAP generator with three pairs of electrodes has been developed. The arc plasma characteristics, including dynamic process, spatial distribution, and rotation velocity in the discharge zone, were investigated by high speed photograph and image processing methods. The results showed that the dynamic behaviors and spatial distribution of the arc plasma were strongly related to the electrode configuration.A swirl flow of multi-arc plasma was formed by adjusting the electrode configuration, and a steady luminance area was clearly observed in the center of the discharge zone. Moreover, the size of the luminance area increased by decreasing the gas flow rate. The electrical connection in series could be formed between/among these arc columns with their respective driving power supplies in the multi-arc dynamic evolution process. An approximately periodical process of acceleration and deceleration of the arc rotation velocity was observed in the multi-arc generator with swirl flow configuration. In general, the mean velocity of arc rotation was higher in the multi-arc generator with swirl flow configuration when a pair of electrodes driven by a power supply were opposite to each other rather than adjacent.
作者 Qifu Lin Yanjun Zhao Wenxue Duan Guohua Ni Xinyue Jin Siyuan Sui Hongbing Xie Yuedong Meng 林启富;赵彦君;段文学;倪国华;靳兴月;隋思源;谢洪兵;孟月东(Institute of Plasma Physics,Chinese Academy of Sciences,Hefei 230031,China;University of Science and Technology of China,Hefei 230026,China;AnHui Province Key Laboratory of Medical Physics and Technology,Hefei 230031,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第12期255-267,共13页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11875295 and 11535003) Provincial Science and Technology Major Project of Anhui Province,China(Grant No.17030801035) Key Program of 13th Five-year Plan,CASHIPS,China(Grant No.KP-2017-25)
关键词 CHARACTERISTICS multiple arc plasma multi-arc generator non-thermal arc characteristics multiple arc plasma multi-arc generator non-thermal arc
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