Surface charge deposition inside a capillary glass tube by an atmospheric pressure discharge in air

被引:16
|
作者
Jansky, J. [1 ]
Bourdon, A. [1 ]
机构
[1] Ecole Cent Paris, EM2C Lab, UPR 288, CNRS, F-92295 Chatenay Malabry, France
来源
关键词
DIELECTRIC BARRIER;
D O I
10.1051/epjap/2011100504
中图分类号
O59 [应用物理学];
学科分类号
摘要
This paper presents simulations of the dynamics of surface charging by an air plasma discharge at atmospheric pressure initiated by a needle anode inside a capillary glass tube. During the discharge propagation in the tube, the highest positive surface charge density is observed close to the point electrode. We have shown that during the discharge propagation, the positive surface charge is increasing behind the discharge front, while the electric field at the surface is decreasing. Then, we have studied the influence of the tube radius, its permittivity and the applied pulsed voltage on surface charges. We have shown that the surface charge density during the discharge propagation is inversely proportional to the tube radius and surface charge densities of 30-50 nC/cm(2) for a tube with R-tube - 100 mu m and an applied voltage of 12 kV have been obtained. We have also noted that a higher permittivity results in a higher surface charge density and a faster surface charge deposition. Then we have shown that the surface charge deposited is proportional to the applied voltage. Finally, at the end of the voltage pulse, our simulations indicate that the positive surface charge deposited during the discharge propagation in the tube decreases to very low values in few nanoseconds.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Improving Hydrophobicity of Glass Surface Using Dielectric Barrier Discharge Treatment in Atmospheric Air
    方志
    邱毓昌
    王辉
    EKUFFEL
    Plasma Science and Technology, 2007, 9 (05) : 582 - 586
  • [32] Improving Hydrophobicity of Glass Surface Using Dielectric Barrier Discharge Treatment in Atmospheric Air
    方志
    邱毓昌
    王辉
    E.KUFFEL
    Plasma Science and Technology, 2007, (05) : 582 - 586
  • [33] Improving Hydrophobicity of glass surface using dielectric barrier discharge treatment in atmospheric air
    Fang Zhi
    Qiu Yuchang
    Wang Hui
    Kuffel, E.
    PLASMA SCIENCE & TECHNOLOGY, 2007, 9 (05) : 582 - 586
  • [34] Possibility of atmospheric pressure glow discharge in air
    Wang, Xin-Xin
    Lu, Ming-Ze
    Pu, Yi-Kang
    Wuli Xuebao/Acta Physica Sinica, 2002, 51 (12): : 2784 - 2785
  • [35] Possibility of atmospheric pressure glow discharge in air
    Wang, XX
    Lu, MZ
    Pu, YK
    ACTA PHYSICA SINICA, 2002, 51 (12) : 2778 - 2785
  • [36] Study of an atmospheric-pressure discharge in air
    Castillo, F.
    Valdes, D.
    Flores, O.
    Campillo, B.
    Martinez, H.
    2017 16TH LATIN AMERICAN WORKSHOP ON PLASMA PHYSICS (LAWPP 2017), 2017, : 37 - 42
  • [37] The mechanism of spark discharge in air at atmospheric pressure
    Loeb, LB
    SCIENCE, 1929, 69 : 509 - 512
  • [38] Surface Modification of Polyethylene Film by Atmospheric Pressure Glow Discharge Liquid Deposition Polymerization
    Jiang, Xiaomei
    Rui, Yannian
    Chen, Guoqiang
    FUNCTIONAL MANUFACTURING TECHNOLOGIES AND CEEUSRO II, 2011, 464 : 725 - +
  • [39] HYDROPHOBIC COATING OF GLASS SURFACE USING ATMOSPHERIC PRESSURE DIELECTRIC BARRIER DISCHARGE PLASMA
    Trinh, Quang Hung
    Hossain, Md. Mokter
    Mok, Young Sun
    2017 IEEE INTERNATIONAL CONFERENCE ON PLASMA SCIENCE (ICOPS), 2017,
  • [40] Double tube configuration of atmospheric pressure plasma jet for deposition of organic coatings in open air
    Anagri, A.
    Baitukha, A.
    Pulpytel, J.
    Mori, S.
    Arefi-Khonsari, F.
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2024, 210 : 445 - 451