Published June 2004 | Version v1
Journal article

Characteristic Of Induction Magnetic Field On The Laboratory Scale Superconducting Fault Current Limiter Circuit

  • 1. Center for Research and Development of Materials Science and Technology, National Atomic Energy Agency, Serpong (Indonesia)

Description

Model construction of the laboratory scale superconducting fault current limiter circuit (SFCL) has been performed. The SFCL is fault current limiter and used as electric network security. It mainly consists of a copper coil, a superconducting ring and an iron core that are concentrically arranged. The SFCL circuit is essentially a transformer where the secondary windings are being replaced by the ring of YBa2Cu3O7-x superconductor (HTS). The ring has critical transition temperature Tc = 92 K and critical current Ic = 3.61 A. Characterization of the SFCL circuit is simulated by ANSYS version 5.4 software. The SFCL circuit consists of load and transformer impedances. The results show that the inductions of magnet field flux in the iron core of primer windings and ring disappear to one other before fault state. It means that impedance of the transformer is zero. After the condition a superconductivity behavior of the ring is disappear so that the impedance of the transformer becomes very high. From this experiment, we concluded that the SFCL circuit could work normally if the resultant of induction magnetic in the iron core (transformer) is zero

Additional details

Additional titles

Original title (Indonesian)
Karakteristik Fluks Medan Magnet Induksi Pada Rangkaian Superconducting Fault Current Limiter Skala Laboratorium

Publishing Information

Journal Title
Indonesian Journal of Materials Science
Journal Volume
5
Journal Issue
3
Journal Page Range
p. 53-60
ISSN
1411-1098

INIS

Optional Information

Notes
15 refs.; 2 tabs.; 13 figs.