DocumentCode :
5855
Title :
Rapid and Semi-analytical Design and Simulation of a Toroidal Magnet Made With YBCO and MgB2 Superconductors
Author :
Dimitrov, Ivo K. ; Xiao Zhang ; Solovyov, Vyacheslav F. ; Chubar, Oleg ; Qiang Li
Author_Institution :
Syst. Evaluation Div., Inst. for Defense Anal., Alexandria, VA, USA
Volume :
25
Issue :
5
fYear :
2015
fDate :
Oct. 2015
Firstpage :
1
Lastpage :
8
Abstract :
Recent advances in second-generation (YBCO) high-temperature superconducting wire could potentially enable the design of super high performance energy storage devices that combine the high energy density of chemical storage with the high power of superconducting magnetic storage. However, the high aspect ratio and the considerable filament size of these wires require the concomitant development of dedicated optimization methods that account for the critical current density in type-II superconductors. Here, we report on the novel application and results of a CPU-efficient semianalytical computer code based on the Radia 3-D magnetostatics software package. Our algorithm is used to simulate and optimize the energy density of a superconducting magnetic energy storage device model, based on design constraints, such as overall size and number of coils. The rapid performance of the code is pivoted on analytical calculations of the magnetic field based on an efficient implementation of the Biot-Savart law for a large variety of 3-D “base” geometries in the Radia package. The significantly reduced CPU time and simple data input in conjunction with the consideration of realistic input variables, such as material-specific, temperature, and magnetic-field-dependent critical current densities, have enabled the Radia-based algorithm to outperform finite-element approaches in CPU time at the same accuracy levels. Comparative simulations of MgB2 and YBCO-based devices are performed at 4.2 K, in order to ascertain the realistic efficiency of the design configurations.
Keywords :
barium compounds; critical current density (superconductivity); high-temperature superconductors; magnesium compounds; superconducting coils; superconducting magnets; type II superconductors; yttrium compounds; Biot-Savart law; CPU-efficient semianalytical computer code; MgB2; MgB2 superconductors; Radia 3-D magnetostatics software package; YBCO; YBCO superconductors; coil number; critical current density; energy density; magnetic field; magnetic-field-dependent critical current densities; overall size; semianalytical design; superconducting magnetic energy storage device model; superconductor wires; toroidal magnet; Coils; Finite element analysis; Magnetic analysis; Magnetostatics; Superconducting magnetic energy storage; Toroidal magnetic fields; Yttrium barium copper oxide; 2G YBCO tape; Energy storage; MgB2 wire; SMES; energy storage; second-generation (2G) YBCO tape; superconducting magnetic energy storage (SMES); superconductivity;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2015.2448455
Filename :
7151806
Link To Document :
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