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Experimental study on nanosecond pulsed pin-to-plate discharge in supersonic air flow

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摘要 Development of magnetohydrodynamic acceleration technology is expected to improve wind tunnel simulation capability and testing capability.The underlying premise is to produce uniform and stable plasma in supersonic air flow,and gas discharge is an effective way to achieve this.A nanosecond pulsed discharge experimental system under supersonic conditions was established,and a pin-to-plate nanosecond pulsed discharge experiment in Mach 2 air flow was performed to verify that the proposed method produced uniform and stable plasma under supersonic conditions.The results show that the discharge under supersonic conditions was stable overall,but uniformity was not as good as that under static conditions.Increasing the number of pins improved discharge uniformity,but reduced discharge intensity and hence plasma density.Under multi-pin conditions at 1000Hz,the discharge was almost completely corona discharge,with the main current component being the displacement current,which was smaller than that under static conditions.
作者 李益文 庄重 庞磊 段朋振 丁志文 张百灵 Yiwen LI;zhong ZHUANG;Lei PANG;Pengzhen DUAN;Zhiwen DING;Bailing ZHANG
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第6期122-131,共10页 等离子体科学和技术(英文版)
基金 National Natural Science Foundation of China (Nos. 11372352, 51776222) the China Postdoctoral Science Foundation (Nos. 2017T100772, 2016M590972).
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