DocumentCode :
1761695
Title :
Spatial and Temporal Behavior of Magnetic Field Distribution Due to Shielding Current in HTS Coil for Cyclotron Application
Author :
Ueda, Hiroshi ; Fukuda, Motohisa ; Hatanaka, Katsumori ; Tao Wang ; Ishiyama, Atsushi ; Noguchi, So
Author_Institution :
Res. Center for Nucl. Phys., Osaka Univ., Ibaraki, Japan
Volume :
23
Issue :
3
fYear :
2013
fDate :
41426
Firstpage :
4100805
Lastpage :
4100805
Abstract :
We intend to develop and obtain a compact, high-efficiency and high-performance cyclotron using the high-temperature superconducting (HTS) magnet technology. In cyclotron applications, a high-accuracy magnetic field distribution with an isochronous field and an azimuthally varying field is spatially and temporally required for an HTS coil. In coils wound with HTS tapes, large shielding currents are induced in the HTS tape by the radial component of the magnetic field. The magnetic field generated by the shielding current affects the magnetic field distribution in the cyclotron application in the following issues: (1) field reduction by the shielding current, (2) accuracy of the field distribution, (3) temporal stability of the time-dependent shielding currents, and (4) field repeatability after charge and discharge repetitions. These effects are very critical in cyclotron applications. We developed a novel numerical simulation based on the finite element method, boundary integral equation, and fast multipole method. We investigated the spatial and temporal behavior of the magnetic field attributed to the shielding current in the HTS coil for the HTS cyclotron application.
Keywords :
boundary integral equations; cyclotrons; electromagnetic shielding; finite element analysis; high-temperature superconductors; magnetic fields; superconducting coils; superconducting magnets; superconducting tapes; HTS coil; HTS cyclotron application; HTS tapes; boundary integral equation; fast multipole method; field reduction; finite element method; high-accuracy magnetic field distribution; high-performance cyclotron; high-temperature superconducting magnet technology; isochronous field; numerical simulation; spatial behavior; temporal behavior; temporal stability; time-dependent shielding currents; Accuracy; Coils; Cyclotrons; High temperature superconductors; Magnetic fields; Mathematical model; Windings; Cyclotron; high-accuracy magnetic field; shielding current; temporal stability;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2012.2234813
Filename :
6387299
Link To Document :
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