3D simulations of streamer branching in air

被引:44
|
作者
Akyuz, M [1 ]
Larsson, A [1 ]
Cooray, V [1 ]
Strandberg, G [1 ]
机构
[1] Univ Uppsala, Angstrom Lab, Div Elect & Lightning Res, S-75121 Uppsala, Sweden
关键词
streamer discharge; numerical simulation; streamer propagation; streamer branching; insulator surface;
D O I
10.1016/S0304-3886(03)00066-4
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
3D simulations have been performed on the streamer branching process for a quasi-uniform electric field configuration. The propagation of the individual streamer branches is simulated by a series of electrostatic calculations and a physical and deterministic criterion is used for the streamer branching. The step length assigned to each branch is proportional to the electric field magnitude in the space around the tip, which in effect makes the step length a measure of the local speed on each filament. The simulations have been focused on positive streamer discharges propagating in air and in air along a dielectric surface. In the case when the streamer propagates in air, we have investigated the effect of the background field, the streamer radius and the branching angle. It was only possible to simulate a few branching steps due to high demand on required computer power and memory. Still, several interesting features were deduced from the simulations using the accomplished steps. It was observed that the multiplication process was intense in the early stage of the streamer development. In the later stage, when the streamer passed the high field region, the existing branches continued as separate almost straight filaments. In the case when the background field was increased, the branching was found to be substantially higher. Also, in this case the length of the individual filaments was significantly longer which indicates that the streamer speed was increased. Concerning the streamer radius, we found that an increasing streamer diameter will inhibit the branching process. The streamer propagated for some distance in the gap as a single filament and then started to multiply. Finally, when a dielectric surface was introduced parallel to the electrode gap, we could observe a distinguished preference direction taken by the individual branches. Some of them were attracted to the surface and had a more pronounced multiplication. This indicates that the field enhancement caused by the dielectric constant can be a considerable factor when a streamer propagates along an insulator surface. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:115 / 141
页数:27
相关论文
共 50 条
  • [1] Streamer Branching in Air: Physical Model and Simulations in Fully 3D Spatial Domain
    Singh, Shailendra
    Serdyuk, Yuriy V.
    Summer, Raimund
    2015 IEEE 11TH INTERNATIONAL CONFERENCE ON THE PROPERTIES AND APPLICATIONS OF DIELECTRIC MATERIALS, 2015, : 220 - 223
  • [2] Studying branching of a cathode-directed streamer in air by means of 3D modeling
    Beloglovskii A.A.
    Russian Electrical Engineering, 2016, 87 (8) : 476 - 480
  • [3] The effect of the stochasticity of photoionization on 3D streamer simulations
    Bagheri, B.
    Teunissen, J.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2019, 28 (04):
  • [4] Streamer in Air: Broadening and Branching
    El-Zein, A.
    Talaat, M.
    Samir, A.
    2017 NINETEENTH INTERNATIONAL MIDDLE-EAST POWER SYSTEMS CONFERENCE (MEPCON), 2017, : 121 - 126
  • [5] Adaptive multiscale methods for 3D streamer discharges in air
    Marskar R.
    Plasma Research Express, 2019, 1 (01):
  • [6] 3-D Parallel Simulations of Streamer Discharges in Air Considering Photoionization
    Zhuang, Chijie
    Lin, Bo
    Zeng, Rong
    Liu, Lei
    Li, Min
    IEEE TRANSACTIONS ON MAGNETICS, 2020, 56 (03)
  • [7] Calculating Radio Emissions of Positive Streamer Phenomena Using 3D Simulations
    Malla, Hemaditya
    Guo, Yihao
    Hare, Brian M.
    Cummer, Steven
    Malagon-Romero, Alejandro
    Ebert, Ute
    Nijdam, Sander
    Teunissen, Jannis
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2024, 129 (20)
  • [8] Quantitative modeling of streamer discharge branching in air
    Wang, Zhen
    Dijcks, Siebe
    Guo, Yihao
    van der Leegte, Martijn
    Sun, Anbang
    Ebert, Ute
    Nijdam, Sander
    Teunissen, Jannis
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2023, 32 (08):
  • [9] 3D fluid modeling of positive streamer discharges in air with stochastic photoionization
    Marskar, Robert
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2020, 29 (05):
  • [10] Spatially hybrid computations for streamer discharges: II. Fully 3D simulations
    Li, Chao
    Ebert, Ute
    Hundsdorfer, Willem
    JOURNAL OF COMPUTATIONAL PHYSICS, 2012, 231 (03) : 1020 - 1050