Title :
Design and Experimental Results of a 3 Phase 30 m HTS Power Cable
Author :
Cho, Jeonwook ; Sim, Ki-Deok ; Bae, Joon-Han ; Kim, Hae-Jong ; Kim, Jae-Ho ; Seong, Ki-Chul ; Jang, Hyun-Man ; Lee, Chang-Young ; Koh, Deuk-Yong
Author_Institution :
Korea Electrotechnol. Res. Inst., Changwon
fDate :
6/1/2006 12:00:00 AM
Abstract :
HTS power cables appear to be the replacement and retrofitting of underground cable in urban areas and HTS power cable offers a number of technical and economic merits compared to normal conductor cable system. A 3 phase 22.9 kV, 50 MVA class HTS power cable system have been developed by Korea Electrotechnology Research Institute (KERI), LS Cable Ltd. and Korea Institute of Machinery and Materials (KIMM) that is one of 21st century frontier project in Korea. The 30 m long cable with 3 cores in 1 cryostat has been manufactured and installed to conduct long-term reliability test. The HTS power cable consists of two layers of phase conductor and two layers of shield used Ag/Bi-2223 tapes and polypropylene laminated paper is used in LN2 as electrical insulation. A HTS power cable has been tested with DC and rated current and voltage in pressurized liquid nitrogen. The evaluation results clarify good performance of HTS cable and these results prove that the HTS power cable has the basic electrical properties for 22.9 kV HTS power cable. This paper describes the results of developmental the 30 m, 3 phase, 22.9 kV, 50 MVA HTS power cable in Korea
Keywords :
cryostats; high-temperature superconductors; nitrogen; paper; power cable insulation; power cable testing; reliability; superconducting cables; superconducting tapes; 22.9 kV; 50 MVA; Ag/Bi-2223 tapes; Korea Electrotechnology Research Institute; Korea Institute of Machinery and Materials; LS Cable Ltd.; cable testing; cryostat; electrical insulation; long-term reliability test; phase conductor; polypropylene laminated paper; pressurized liquid nitrogen; three-phase high-temperature superconducting power cable; underground cable; Cable shielding; Conducting materials; High temperature superconductors; Power cables; Power generation economics; Power system economics; Superconducting cables; Testing; Underground power cables; Urban areas; AC loss; high-Tc superconducting (HTS) power cable; multi-layer; three phase;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2005.864321