DocumentCode :
1060900
Title :
Theoretical Hints for Optimizing Force and Stability in Actual Maglev Devices
Author :
Del-Valle, Nuria ; Sanchez, Alvaro ; Navau, Carles ; Chen, Du-Xing
Author_Institution :
Dept. de Fis., Univ. Autonoma Barcelona, Barcelona, Spain
Volume :
19
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
2070
Lastpage :
2073
Abstract :
It is well known that the levitation force and stability of superconducting levitation devices are strongly dependent on the properties of its components, such as the geometry, dimensions, cooling process or critical-current density of the superconductor. In this work we study these dependences in levitating systems consisting of a superconductor and a permanent-magnet guideway with translational symmetry. Using a model based on the critical-state approximation and a magnetic-energy minimization procedure, we analyse for the field and zero-field cooling cases, the influence of some parameters of the system, such as the width and the critical-current density of the superconductor and the height of the permanent magnets, on the levitation force and stability. From the calculated results we provide hints of how, by modifying some features of the systems, one can optimize either the levitation force, or the stability, or a combination of both.
Keywords :
approximation theory; magnetic levitation; optimisation; permanent magnets; stability; superconducting devices; Maglev devices; critical-state approximation; levitating systems; levitation force; magnetic-energy minimization; optimizing force; permanent-magnet guideway; stability; superconducting levitation devices; translational symmetry; Critical current; critical state; high-temperature superconductor; levitation; maglev; permanent-magnet guideway;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2009.2018765
Filename :
5067201
Link To Document :
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