Title :
Characteristics of Levitation Force Using Magnetic Shielding Effect of YBCO Bulks
Author :
Takao, Tomoaki ; Suzuki, Soichiro ; Hashimoto, Masahiro ; Takeda, Junichiro ; Kobayashi, Toshihiro ; Kamijo, Hiroki
Author_Institution :
Sophia Univ., Tokyo
fDate :
6/1/2007 12:00:00 AM
Abstract :
A magnetic levitation system using a magnetic shielding effect of a HTS bulk is numerically studied. The system is constructed by permanent magnets, zero-fleld-cooled superconducting bulks and ferromagnetic rails. And lift-force stability is obtained from magnetic field that is generated by the permanent magnet and is shaped by the superconducting bulks. In our previous studies, we showed the characteristics of the lift force and stability on a basic configuration which had a small permanent magnet made of ferrite, the YBCO bulk superconductors and a short ferromagnetic bar. In this study, extending the basic configuration, we propose some new configurations which have better characteristics of the lift force than the basic configuration by numerical analysis using the 3D Integral Element Method. The first configuration is that a ferromagnetic plate is inserted between the superconductors and the permanent magnet. The second configuration is that more than two basic configurations are placed parallel. The third configuration is a combination of the first and second configurations. The paper presents the details of the basic and three configurations, the numerical analysis for the evaluation of the levitation characteristic and those results.
Keywords :
ferrites; ferromagnetic materials; high-temperature superconductors; integral equations; magnetic levitation; magnetic shielding; permanent magnets; yttrium compounds; HTS bulk; YBCO bulk superconductors; ferrite; ferromagnetic bar; ferromagnetic rails; integral element method; levitation force; lift-force stability; magnetic field that; magnetic levitation system; magnetic shielding effect; permanent magnets; zero-fleld-cooled superconducting bulks; High temperature superconductors; Magnetic levitation; Magnetic shielding; Numerical analysis; Permanent magnets; Rails; Stability; Superconducting magnets; Superconductivity; Yttrium barium copper oxide; Lift force stability; YBCO bulk; magnetic levitation; magnetic shielding effect;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2007.899881