Physical phenomena of a cold plasma jet model at atmospheric pressure

被引:3
|
作者
Boudjadar, A. [1 ]
Bouanaka, F. [1 ]
Rebiai, S. [1 ]
机构
[1] Univ Freres Mentouri Constantine 1, Fac Sci Technol, Dept Elect, Lab Microsyst & Instrumentat LMI, Constantine, Algeria
关键词
atmospheric plasma jet; argon; plasma modeling; plasma channel; electric field; low temperature;
D O I
10.1088/1402-4896/aca2fb
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this work, a two dimensional (2D) axisymmetric fluid model for an atmospheric pressure plasma jet (APP jet) driven by a 8 kV voltage pulse with a repetition frequency of 50 kHz has been investigated. The aim is to identify the physical phenomena taking place in a cold plasma jet at atmospheric pressure assuming an argon pathway in the air. This model is a platform for future works where the simulated reactor will be used for different plasma jet applications. It is built through the coupling between plasma discharge and flow physics using COMSOL@ Multi-physics software. The simulation results showed that the high value of the electric field in the head of the plasma jet channel attracts free electrons and ensures its propagation to around 1cm of length with an electron density of 10(20) m(-3). We have also shown that electrons in the neutral zone of the plasma (channel) have a lower temperature compared to electrons in electrostatic sheaths (channel boundaries), although, their temperature remains remarkably higher than neutrals and ions ones. The total electric current calculated by the proposed model takes a maximum value of 7.71 mA. This value increases with increasing tube reactor diameter which changes the reactor equivalent capacity.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Cold arc-plasma jet under atmospheric pressure for surface modification
    Toshifuji, J
    Katsumata, T
    Takikawa, H
    Sakakibara, T
    Shimizu, I
    SURFACE & COATINGS TECHNOLOGY, 2003, 171 (1-3): : 302 - 306
  • [42] The spatial distribution of hydrogen and oxygen atoms in a cold atmospheric pressure plasma jet
    Klose, S-J
    Ellis, J.
    Riedel, F.
    Schroter, S.
    Niemi, K.
    Semenov, I. L.
    Weltmann, K-D
    Gans, T.
    O'Connell, D.
    van Helden, J. H.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2020, 29 (12):
  • [43] Argon-assisted Excitation of Atmospheric Pressure Microwave Cold Plasma Jet
    Xu J.
    Zhou Y.
    Zhao P.
    Peng Y.
    He Y.
    Gaodianya Jishu/High Voltage Engineering, 2023, 49 (09): : 3856 - 3863
  • [44] Etching Si wafer using atmospheric pressure RF cold plasma jet
    Zhao, Lingli
    Duan, Xiaojin
    Yin, Minghui
    Xu, Xiangyu
    Wang, Shouguo
    Pan Tao Ti Hsueh Pao/Chinese Journal of Semiconductors, 2007, 28 (10): : 1615 - 1619
  • [45] On cold atmospheric-pressure plasma jet induced DNA damage in cells
    Gaur, Nishtha
    Kurita, Hirofumi
    Oh, Jun-Seok
    Miyachika, Saki
    Ito, Masafumi
    Mizuno, Akira
    Cowin, Allison J.
    Allinson, Sarah
    Short, Robert D.
    Szili, Endre J.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2021, 54 (03)
  • [46] Simple cold Ar plasma jet generated with a floating electrode at atmospheric pressure
    Nie, Qiu-Yue
    Ren, Chun-Sheng
    Wang, De-Zhen
    Zhang, Jia-Liang
    APPLIED PHYSICS LETTERS, 2008, 93 (01)
  • [47] Influence of a liquid surface on the NOx production of a cold atmospheric pressure plasma jet
    Hansen, Luka
    Schmidt-Bleker, Ansgar
    Bansemer, Robert
    Kersten, Holger
    Weltmann, Klaus-Dieter
    Reuter, Stephan
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2018, 51 (47)
  • [48] Cold Atmospheric Pressure Nitrogen Plasma Jet for Enhancement Germination of Wheat Seeds
    Lotfy, Khaled
    Al-Harbi, Nadi Awad
    Abd El-Raheem, Hany
    PLASMA CHEMISTRY AND PLASMA PROCESSING, 2019, 39 (04) : 897 - 912
  • [49] Study of two positive current pulses atmospheric pressure cold plasma jet
    Almarashi, Jamal Qernas M.
    AIP ADVANCES, 2019, 9 (10)
  • [50] Risk assessment of a cold atmospheric physical argon plasma jet on the skin, liver, and biochemical factors in an animal model
    Najafzadehvarzi, Hossein
    Ghasemi, Maede
    Sohbatzadeh, Farshad
    Aminjarrahi, Motahare
    Darzi, Reza Ebrahimnezhad
    MEDICAL ENGINEERING & PHYSICS, 2022, 106