Title :
Transient response of 50 KiloAmp Y-Ba-Cu-O rings and ring pairs to pulsed magnetic fields
Author :
Askew, Thomas R. ; Cha, Yung S.
Author_Institution :
Kalamazoo Coll., MI, USA
fDate :
3/1/2001 12:00:00 AM
Abstract :
Shielding current limits and magnetic diffusion characteristics have been measured at 77 K in large-grain YBCO rings with oriented microstructures. The samples are surrounded by a drive coil that can achieve magnetic fields in excess of 1 Tesla and induce currents in excess of 50 kA when driven by a current pulse of a few msec duration. Simultaneous magnetic measurements with a Rogowski coil and a Hall probe allow determination of the induced current in the sample and the field in the center of the sample. These measurements show that field penetration occurs in a complex way that includes delays and transient effects caused by magnetic diffusion and sample heating. Dramatic threshold effects are observed that are probably related to a creep-flow transition coupled with local heating effects. Geometric effects are investigated using a single drive coil and a pair of YBCO rings with various spacings. A test geometry equivalent to a simple penetration-type inductive fault current limiter is used; the experimental results are therefore of interest for design and characterization of these devices
Keywords :
barium compounds; fault current limiters; flux creep; high-temperature superconductors; magnetic shielding; superconducting devices; transient response; yttrium compounds; 50 kA; 77 K; HTSC; Hall probe; Rogowski coil; Y-Ba-Cu-O; Y-Ba-Cu-O rings; characterization; creep-flow transition; delays; design; drive coil; field penetration; geometric effects; induced current; local heating effects; magnetic diffusion; magnetic diffusion characteristics; oriented microstructures; pulsed magnetic fields; ring pairs; sample heating; shielding current limits; simple penetration-type inductive fault current limiter; test geometry; transient response; Coils; Current measurement; Hall effect devices; Heating; Magnetic field measurement; Magnetic shielding; Magnetic variables measurement; Microstructure; Transient response; Yttrium barium copper oxide;
Journal_Title :
Applied Superconductivity, IEEE Transactions on