Title :
Analysis of Eddy Current Losses and Magnetization Losses in Toroidal Magnets for a 2.5 MJ HTS SMES
Author :
Lee, Seyeon ; Park, Sang-Ho ; Kim, Woo-Seok ; Lee, Ji-Kwang ; Lee, Sangjin ; Park, Chan ; Bae, Joon-Han ; Kim, Seok-Ho ; Seong, Ki-Chul ; Choi, Kyeongdal ; Hahn, Songyop
Author_Institution :
Korea Polytech. Univ., Shiheung, South Korea
fDate :
6/1/2011 12:00:00 AM
Abstract :
A SMES magnet can be operating in three different modes: charging, storing, and discharging. The eddy current losses and magnetization losses are generated during charging and discharging in the SMES system. The eddy current losses per cycle are generated mainly during discharging period because the discharging period is generally shorter that for charging. Magnetization losses per cycle are generated mainly during the charging. In this paper, we investigated a decrease in eddy current losses according to the shapes of conduction cooling plates. The cooling plate having small eddy current losses was designed by dividing and slitting. Also, the magnetization losses in the toroidal coil constructed with many pancake coils were analyzed using 3-D finite element method during the initial charging period and some discharging periods in an operating scenario for the 2.5 MJ SMES.
Keywords :
eddy current losses; finite element analysis; magnetisation; superconducting magnet energy storage; HTS SMES; eddy current losses; finite element method; magnetization losses; superconducting magnetic energy storage; toroidal magnet; Coils; Eddy currents; High temperature superconductors; Magnetic losses; Magnetization; Superconducting magnetic energy storage; Toroidal magnetic fields; Eddy current loss; HTS magnet; SMES; magnetization loss; toroid;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2011.2104931