DocumentCode
879483
Title
Design, performance, and cost characteristics of high temperature superconducting magnetic energy storage
Author
Schoenung, S.M. ; Meier, W.R. ; Fagaly, R.L. ; Heiberger, M. ; Stephens, R.B. ; Leuer, J.A. ; Guzman, R.A.
Author_Institution
W.J. Schafer Associates Inc., Pleasanton, CA, USA
Volume
8
Issue
1
fYear
1993
fDate
3/1/1993 12:00:00 AM
Firstpage
33
Lastpage
39
Abstract
A conceptual design for superconducting magnetic energy storage (SMES) using oxide superconductors with higher critical temperature than metallic superconductors has been analyzed for design features, refrigeration requirements, and estimated costs of major components. The study covered the energy storage range from 2 to 200 MWh at power levels from 4 to 400 MW. A SMES that uses high temperature superconductors (HTS) and operates at high magnetic field (e.g. 10 T), can be more compact than a comparable, conventional low-temperature device at lower field. The refrigeration power required for a higher temperature unit (20 to 77 K) will be less by 60% to 90%. The improvement in energy efficiency is significant for small units, but less important for large ones. The material cost for HTS units is dominated by the cost of superconductor, so that the total cost of an HTS system will be comparable to a low temperature system only if the superconductor price in $/ampere-meter is made comparable by increasing current density or decreasing wire cost
Keywords
high-temperature superconductors; superconducting magnet energy storage; 10 T; 2 to 200 MWh; 20 to 77 K; 4 to 400 MW; cost characteristics; current density; design; energy efficiency; high temperature superconducting magnetic energy storage; oxide superconductors; performance; refrigeration requirements; wire cost; Costs; Energy efficiency; Energy storage; High temperature superconductors; Magnetic analysis; Magnetic fields; Refrigeration; Samarium; Superconducting magnetic energy storage; Superconductivity;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/60.207403
Filename
207403
Link To Document