TY - JOUR
T1 - Simulation and Experimental Analysis of Arc Motion Characteristics in Air Circuit Breaker
AU - Niu, Chunping
AU - Ding, Juwen
AU - Wu, Yi
AU - Yang, Fei
AU - Dong, Delong
AU - Fan, Xingyu
AU - Rong, Mingzhe
PY - 2016/3
Y1 - 2016/3
N2 - In this paper, to simulate the arc motion in an air circuit breaker (ACB), a three-dimensional magneto-hydrodynamic (MHD) model is developed, considering the influence of thermal radiation, the change of physical parameters of arc plasma and the nonlinear characteristic of ferromagnetic material. The distributions of pressure, temperature, gas flow and current density of arc plasma in the arc region are calculated. The simulation results show some phenomena which discourage arc interruption, such as back commutation and arc burning at the back of the splitter plate. To verify the simulation model, the arc motion is studied experimentally. The influences of the material and position of the innermost barrier plate are analyzed mainly. It proved that the model developed in this paper can efficiently simulate the arc motion. The results indicate that the insulation barrier plate close to the top of the splitter plate is conducive to the arc splitting, which leads to the significant increase of the arc voltage, so it is better for arc interruption. The research can provide methods and references to the optimization of ACB design.
AB - In this paper, to simulate the arc motion in an air circuit breaker (ACB), a three-dimensional magneto-hydrodynamic (MHD) model is developed, considering the influence of thermal radiation, the change of physical parameters of arc plasma and the nonlinear characteristic of ferromagnetic material. The distributions of pressure, temperature, gas flow and current density of arc plasma in the arc region are calculated. The simulation results show some phenomena which discourage arc interruption, such as back commutation and arc burning at the back of the splitter plate. To verify the simulation model, the arc motion is studied experimentally. The influences of the material and position of the innermost barrier plate are analyzed mainly. It proved that the model developed in this paper can efficiently simulate the arc motion. The results indicate that the insulation barrier plate close to the top of the splitter plate is conducive to the arc splitting, which leads to the significant increase of the arc voltage, so it is better for arc interruption. The research can provide methods and references to the optimization of ACB design.
KW - air circuit breaker
KW - arc simulation
KW - breaking test
UR - https://www.scopus.com/pages/publications/84962097074
U2 - 10.1088/1009-0630/18/3/05
DO - 10.1088/1009-0630/18/3/05
M3 - 文章
AN - SCOPUS:84962097074
SN - 1009-0630
VL - 18
SP - 241
EP - 246
JO - Plasma Science and Technology
JF - Plasma Science and Technology
IS - 3
ER -