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个人信息Personal Information
教授 博士生导师
招生学科专业:
电气工程 -- 【招收博士、硕士研究生】 -- 自动化学院
能源动力 -- 【招收博士、硕士研究生】 -- 自动化学院
性别:男
毕业院校:华中科技大学
学历:华中科技大学
学位:工学博士学位
所在单位:自动化学院
办公地点:南京市江宁区将军大道29号,南京航空航天大学自动化学院3号楼
联系方式:邮箱:wushuqun@nuaa.edu.cn;电话:13305143147
电子邮箱:
Influence of high-voltage pulse parameters on the propagation of a plasma synthetic jet
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所属单位:自动化学院
发表刊物:Plasma Sci. Technol.
摘要:In this work, a typical pin-to-pin plasma synthetic jet in static air is excited by a pulsed DC power supply. The influences of the pulse rising time, the amplitude and the repetition frequency of the pulse voltage on the jet flow have been investigated. First, using a high-speed Schlieren imaging technique, the induced shock waves and the fast jet flow generated by the plasma synthetic jet are characterized. With a deposited energy of 44 mJ per pulse, the velocity of the shock wave and the maximum velocity of the jet flow reach 320 m s-1 and 100 m s-1, respectively. Second, when the applied voltage increases from 12.8 kV to 16 kV, the maximum jet velocity increases from 66 m s-1 to 93 m s-1. On the other hand, as the pulse rising time varies from 50 ns to 500 ns, or the pulse repetition frequency increases from 5 Hz to 40 Hz, the jet velocity induced by the plasma synthetic jet is weakly dependent. In addition, a comparative study of the plasma synthetic jets using three commercial pulsed power supplies (XJ-15, NPG-18, and PG-30) is implemented. It reveals that the maximum jet velocity of 120 m s-1 is obtained in the case of PG-30, with the longest pulse rising time and the lowest breakdown voltage, while the maximum velocity of 33 m s-1 is detected in the case of NPG-18, even though it has the shortest pulse rising time and the highest breakdown voltage. © 2019 Hefei Institutes of Physical Science, Chinese Academy of Sciences and IOP Publishing.
ISSN号:1009-0630
是否译文:否
发表时间:2019-04-23
合写作者:Liu, Xueyuan,Huang, Guowang,F70206388,Bian, Weijie,张潮海
通讯作者:吴淑群
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