학술논문

Three-dimensional Electromagnetic Thermal Fluid Simulation of Cathode Jet Contributing to Motion of Cathode Spots in Vacuum Arc
Document Type
Conference
Source
2023 30th International Symposium on Discharges and Electrical Insulation in Vacuum (ISDEIV) Discharges and Electrical Insulation in Vacuum (ISDEIV), 2023 30th International Symposium on. :207-210 Jun, 2023
Subject
Aerospace
Engineered Materials, Dielectrics and Plasmas
Engineering Profession
Fields, Waves and Electromagnetics
General Topics for Engineers
Power, Energy and Industry Applications
Insulation
Fluids
Metals
Ions
Plasmas
Magnetic fields
Electromagnetics
vacuum arc
cathode spot
retrograde motion
TF electron emission
three-dimensional electromagnetic thermal fluid simulation
Language
ISSN
2471-786X
Abstract
Vacuum arcs have been applied to circuit breakers, metal processing and other applications. However, its physical phenomena have not been elucidated today, especially the physics of the cathode spots. The mechanism of the motion of the cathode spot under external magnetic field has not been clarified quantitatively. The ions generated from the cathode spots are accelerated by the pressure gradient to generate a cathode jet with high speed. This behavior of the ions is considered to be responsible for the motion of the cathode spots, especially the retrograde motion. In this research, the three-dimensional electromagnetic thermal fluid simulation was developed to clarify the physics and conditions of cathode spot motion under external magnetic field. As a result, it found that the moving direction of cathode spots plasma was determined by electromagnetic force formed by the cathode jet containing ions from cathode spots and external transverse magnetic field.