Elongation and branching of stem channels produced by positive streamers in long air gaps

被引:0
|
作者
Xiangen Zhao
Marley Becerra
Yongchao Yang
Junjia He
机构
[1] Huazhong University of Science and Technology,State Key Laboratory of Advanced Electromagnetic Engineering and Technology
[2] KTH Royal Institute of Technology,School of Electrical Engineering and Computer Science
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The elongation and branching of long positive spark discharges in the laboratory and in lightning have been attributed to the formation of thermalized channels inside a diffuse, glow-like streamer section at the leader head. It is experimentally shown here that the structured morphology of streamers produce low-density stem channels that elongate and branch well before a new leader channel section is formed. These non-thermalized stems are also shown to develop ahead of a developing leader channel. These findings are based on high-speed photography and Schlieren imaging used to visualize both the morphology of streamer filaments and stem channels. Numerical analysis is also performed to estimate the axial temperature and density of the stem channels. A stem-driven mechanism for the propagation and branching of positive long air gap discharges is proposed and discussed based on the presence of not-yet thermalized, low density channels formed by streamer ensembles at the leader head.
引用
收藏
相关论文
共 34 条
  • [1] Elongation and branching of stem channels produced by positive streamers in long air gaps
    Zhao, Xiangen
    Becerra, Marley
    Yang, Yongchao
    He, Junjia
    [J]. SCIENTIFIC REPORTS, 2021, 11 (01)
  • [2] Branching of positive discharge streamers in air at varying pressures
    Briels, TMP
    van Veldhuizen, EM
    Ebert, U
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2005, 33 (02) : 264 - 265
  • [3] On the stem diameter under positive impulses in long air gaps
    Xiao, Pei
    He, Junjia
    Zhao, Xiangen
    Yang, Yongchao
    Shah, Wahab Ali
    [J]. PHYSICS OF PLASMAS, 2019, 26 (06)
  • [4] Simulation of Positive Streamers in Atmospheric Air by a Macroscopic Model with a new Branching Criterion
    Chen, She
    Wang, Feng
    Sun, Qiuqin
    Zeng, Rong
    [J]. IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2018, 25 (06) : 2112 - 2121
  • [5] 3D PIC-MCC simulations of positive streamers in air gaps
    Jiang, M.
    Li, Y.
    Wang, H.
    Liu, C.
    [J]. PHYSICS OF PLASMAS, 2017, 24 (10)
  • [6] GROWTH OF A POSITIVE LEADER IN LONG NONUNIFORM AIR GAPS
    MENEMENLIS, C
    SHIRMOHAMMADI, D
    [J]. JOURNAL OF APPLIED PHYSICS, 1978, 49 (07) : 3804 - 3806
  • [7] Electric Field in a Positive Streamer in Long Air Gaps
    E. M. Bazelyan
    N. L. Aleksandrov
    [J]. Plasma Physics Reports, 2022, 48 : 789 - 797
  • [8] Electric Field in a Positive Streamer in Long Air Gaps
    Bazelyan, E. M.
    Aleksandrov, N. L.
    [J]. PLASMA PHYSICS REPORTS, 2022, 48 (07) : 789 - 797
  • [9] The diameters of long positive streamers in atmospheric air under lightning impulse voltage
    Chen, She
    Zeng, Rong
    Zhuang, Chijie
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2013, 46 (37)
  • [10] BREAKDOWN PROCESS OF LONG AIR GAPS WITH POSITIVE SWITCHING IMPULSES
    SUZUKI, T
    MIYAKE, K
    [J]. IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1975, PA94 (03): : 1021 - 1033