Article ID Journal Published Year Pages File Type
1818135 Physica C: Superconductivity and its Applications 2013 5 Pages PDF
Abstract

In recent years, properties of high temperature superconducting (HTS) tapes, especially in-field performance and mechanical strength, have been continuously improved. The HTS tapes have been widely used for high field (>20 T) magnet researches and there are several technical challenges including field attenuation of an HTS magnet by screening currents induced within the HTS tapes. Several publications reported that the screening currents, induced by penetration of self magnetic fields into HTS tapes within an HTS magnet, weakened a field constant of the HTS magnet. The result may demonstrate that the screening current changes an overall current density distribution in HTS tapes and, as a consequence, the generated magnetic field. Therefore, it is necessary to investigate the screening current distribution in an HTS tape. This paper reports numerical simulation of the screening current distribution in an HTS tape of high field magnets using 2D finite element method with the E–J characteristic of the HTS tape taken into account. Self magnetic field distribution and its orientation to the HTS tape are also considered to compute critical currents and locally generated electric fields, two key components to figure out the distribution of screening currents.

► Screening current in HTS tape of high field coil was simulated with 2D FEM. ► Transport current attenuates due to resistance resulting from screening current. ► Transport current decreases below critical current of HTS coil. ► Screening current depends on shape of HTS coil. ► Reduction of transport current depends on screening current and coil inductance.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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