DocumentCode :
1762481
Title :
Concept and Design of 500 Meter and 1000 Meter DC Superconducting Power Cables in Ishikari, Japan
Author :
Yamaguchi, Satarou ; Koshizuka, Hiromi ; Hayashi, Kazuhiko ; Sawamura, Toru
Author_Institution :
Chubu Univ., Kasugai, Japan
Volume :
25
Issue :
3
fYear :
2015
fDate :
42156
Firstpage :
1
Lastpage :
4
Abstract :
The design and construction of two DC superconducting power cables were started in the spring of 2013 as a national project in Japan. The cable lengths are 500 and 1000 m, respectively. The project is called the Ishikari Project. Four parties, Chiyoda Corp., Sumitomo Electric, Sakura Internet, and Chubu University joined to establish a partnership. The 500-m cable will connect an Internet data center (iDC) to a large scale array of photovoltaic cells to supply dc power. During the design and the construction in the field, test benches have also been constructed to investigate the performance of the individual components of the cable system. The design value of the heat leak of the cryogenic pipe is 1.3 W/m and the experimental result is 0.7 W/m to 1.3 W/m on the test bench. The design value of the heat leak from the current lead is 35 W/kA and the experimental value is 30.5 W/kA at the rated current. Control of the thermal contraction and expansion are important to maintain cable safety and two methods are considered. Construction was started in the field in mid-May, and the 500-m cable will be completed at the end of the fiscal year 2014.
Keywords :
DC power transmission; computer centres; power cables; superconducting cables; thermal expansion; DC superconducting power cables; Internet data center; Ishikari Project; cable safety; cryogenic pipe; current lead; heat leak; iDC; photovoltaic cells; size 1000 m; size 500 m; test benches; thermal contraction; thermal expansion; Cable TV; Cryogenics; Educational institutions; Heating; High-temperature superconductors; Power cables; Superconducting cables; DC power transmission; high temperature superconductor; internet data center; superconducting cable;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2015.2390045
Filename :
7059238
Link To Document :
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