DocumentCode :
2970485
Title :
3D time-dependent model and simulation of high-current vacuum arc in commercial axial magnetic fields vacuum interrupters
Author :
Lijun Wang ; Zhonghao Qian ; Shenli Jia ; Zongqian Shi
Author_Institution :
State Key Lab. of Electr. Insulation & Power Equip., Xi´an Jiaotong Univ., Xi´an, China
fYear :
2012
fDate :
2-7 Sept. 2012
Firstpage :
388
Lastpage :
391
Abstract :
Based on quasi-steady three-dimensional (3D) model, time-dependent axial magnetic field vacuum arcs (AMFVAs) characteristics in commercial vacuum interrupters for half-wave interruption of power-frequency (50 Hz) current are simulated. 3D spatial distributions of many important plasma parameters and electric characteristics in AMFVAs can be obtained, such as ion number density, ion temperature, electron temperature, plasma pressure, current densities along different directions (x, y and z), electric fields strength along different directions, and so on. Simulation results show that there exist significant spiral-shaped rotational phenomena in the AMFVAs. In current time-dependent simulation, the influence of AMF lagged from arc current is considered in the arc model. Simulation results show that the rotational velocity of vacuum arc plasma at later 1/4 wave is much larger than that at forward 1/4 wave, especially for 8 ms, 9 ms and near to current-zero moments. This kind of plasma rotational phenomena also can be observed by high-speed arc photographs.
Keywords :
electric fields; magnetic fields; vacuum arcs; vacuum interrupters; 3D spatial distributions; 3D time-dependent model; arc current; arc model; commercial axial magnetic fields vacuum interrupters; current densities; current-zero moments; electric fields; electron temperature; frequency 50 Hz; half-wave interruption; high-current vacuum arc; high-speed arc photographs; ion number density; ion temperature; plasma pressure; plasma rotational phenomena; quasi-steady three-dimensional model; rotational velocity; spiral-shaped rotational phenomena; time 8 ms; time 9 ms; time-dependent axial magnetic field vacuum arcs; vacuum arc plasma; Anodes; Interrupters; Magnetic fields; Mathematical model; Plasmas; Solid modeling; Vacuum arcs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Discharges and Electrical Insulation in Vacuum (ISDEIV), 2012 25th International Symposium on
Conference_Location :
Tomsk
ISSN :
1093-2941
Print_ISBN :
978-1-4673-1263-9
Electronic_ISBN :
1093-2941
Type :
conf
DOI :
10.1109/DEIV.2012.6412535
Filename :
6412535
Link To Document :
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