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Numerical simulation on the motion of cathode spots in high-current vacuum arc
Jia Shenli *,Song Xiaochuan #,Shi Zongqian,Wang Lijun
the State Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi'an 710049
*Correspondence author
#Submitted by
Subject:
Funding: none
Opened online:18 March 2013
Accepted by: none
Citation: Jia Shenli,Song Xiaochuan,Shi Zongqian.Numerical simulation on the motion of cathode spots in high-current vacuum arc[OL]. [18 March 2013] http://en.paper.edu.cn/en_releasepaper/content/4528056
 
 
In this paper, the motion of high-current vacuum arc cathode spots is simulated numerically. The transverse magnetic field is computed by commercial software ANSYS with the current distribution in contact plate taken into account. The initial expansion process of cathode spots in triggered vacuum arc under self-generated azimuthal magnetic field without external AMF is simulated at first as a reference. Then three kinds of external AMF distributions are applied, i.e. uniform AMF, bell-shaped AMF and saddle-shaped AMF distribution. Simulation results show that cathode spots expand faster without external applied AMF than that under AMF. Further more, the distribution of AMF has significant influence on the motion pattern and the distribution of cathode spots on cathode surface, e.g., the concentration of cathode spots in the centre region under bell-shaped AMF is more serious than that under saddle-shaped AMF. The results also show that a ring-shaped distribution of cathode spots is not a stable configuration.
Keywords:Vacuum arc; Cahtode spot; numerical simulation
 
 
 

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