Experimental Investigation on Atmospheric Pressure Plasma Jet under Locally Divergent Magnet Field

被引:2
|
作者
Shi, Bo [1 ]
Wang, Manyu [1 ]
Li, Pengfei [1 ]
Han, Ruoyu [1 ]
Ouyang, Jiting [2 ]
机构
[1] Beijing Inst Technol, State Key Lab Mechatron Engn & Control, Beijing 100081, Peoples R China
[2] Beijing Inst Technol, Sch Phys, Beijing 100081, Peoples R China
基金
中国国家自然科学基金;
关键词
atmospheric pressure plasma jet; coplanar dielectric barrier discharge; low-temperature plasma; magnetic field; flow field; DIELECTRIC BARRIER DISCHARGE;
D O I
10.3390/en16062512
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Regulating the parameters of the atmospheric pressure plasma jet (APPJ) is meaningful for industrial applications. Since plasma is a typical functional fluid in the magnetic field, it is possible to control the discharge characteristics via the Lorentz force. In this study, the effects of a locally divergent magnetic field on the generation and propagation of APPJ were examined experimentally. The experiments used a coplanar dielectric barrier discharge (CDBD) device driven by a 30 kHz AC high-voltage source to generate a helium APPJ. A locally divergent magnetic field of 250 mT (maximum) was applied coupled with the electric field, and noticeable enhancement was observed. The results showed that the magnetic field changed the motion state of electrons and promoted collision ionization, leading to a 40% improvement in the APPJ length (0.6 cm) and a 23% increase in the intensity of line O (777.2 nm). In addition, the spatiotemporal evolution and flow field of APPJ were diagnosed by ICCD and schlieren technique. The combination of electric and magnetic fields may effectively optimize the APPJ in practical applications.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Effect of DC magnetic field on atmospheric pressure argon plasma jet
    Safari, R.
    Sohbatzadeh, F.
    INDIAN JOURNAL OF PHYSICS, 2015, 89 (05) : 495 - 502
  • [22] Analysis of the Substrate Temperature Field for Atmospheric Pressure Plasma Jet Processing
    Jin Huiliang
    Li Haibo
    Zheng Nan
    Chen Xianhua
    AOPC 2020: OPTICS ULTRA PRECISION MANUFACTURING AND TESTING, 2020, 11568
  • [23] Effect of DC magnetic field on atmospheric pressure argon plasma jet
    R. Safari
    F. Sohbatzadeh
    Indian Journal of Physics, 2015, 89 : 495 - 502
  • [24] Experimental Evaluation for Plasma Diagnoses of Gas-Jet Type Atmospheric Pressure Plasma
    Fukawatase, Ryosuke
    Ohyama, Ryu-ichiro
    CEIDP: 2009 ANNUAL REPORT CONFERENCE ON ELECTRICAL INSULATION AND DIELECTRIC PHENOMENA, 2009, : 148 - 151
  • [25] Diagnostics on an atmospheric pressure plasma jet
    Niemi, K.
    Reuter, St.
    Schaper, L.
    Knake, N.
    Schulz-von der Gathen, V.
    Gans, T.
    FIRST INTERNATIONAL WORKSHOP ON NONEQUILIBRIUM PROCESSES IN PLASMA PHYSICS AND STUDIES OF ENVIRONMENT, 2007, 71
  • [26] Experimental Investigation on the Plasma Decomposition of N-decane Under the Atmospheric Pressure Argon Environment
    Song F.
    Jin D.
    Wu J.
    Wu Y.
    Gaodianya Jishu/High Voltage Engineering, 2019, 45 (02): : 618 - 623
  • [27] Reactivity of fatty acid methyl esters under atmospheric pressure plasma jet exposure: An experimental and theoretical study
    Martini, Luca Matteo
    Maranzana, Andrea
    Tonachini, Glauco
    Bortolotti, Giulia
    Scapinello, Marco
    Scotoni, Mario
    Guella, Graziano
    Dilecce, Giorgio
    Tosi, Paolo
    PLASMA PROCESSES AND POLYMERS, 2017, 14 (10)
  • [28] Investigation on the Electron Density of a Micro-Plasma Jet Operated at Atmospheric Pressure
    Li Xue-chen
    Zhao Na
    Liu Wei-yuan
    Liu Zhi-qiang
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2010, 30 (07) : 1756 - 1758
  • [29] An Investigation of the Control of Electron Energy in the Atmospheric-Pressure Helium Plasma Jet
    Liu, Yadi
    Tan, Zhenyu
    Chen, Xinxian
    Li, Xiaotong
    Wang, Xiaolong
    Zhang, Huimin
    Pan, Jie
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2018, 46 (08) : 2865 - 2880
  • [30] Investigation on the streamer propagation in atmospheric pressure helium plasma jet by the capacitive probe
    朱文超
    黄邦斗
    朱悉铭
    陈文聪
    蒲以康
    Plasma Science and Technology, 2020, (05) : 3 - 6