DocumentCode :
1061177
Title :
The Design of a Lightweight HTS Synchronous Generator Cooled by Subcooled Liquid Nitrogen
Author :
Bailey, Wendell O S ; Al-Mosawi, Maitham ; Yang, Yifeng ; Goddard, Kevin ; Beduz, Carlo
Author_Institution :
Sch. of Eng. Sci., Univ. of Southampton, Southampton, UK
Volume :
19
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
1674
Lastpage :
1677
Abstract :
A final design of a dasiacorelesspsila 100 kW HTS synchronous generator, to be built at the University of Southampton is under way. The new generator will use the same conventional 2-pole, 3 phase stator used by for the dasiairon coredpsila generator. The new HTS rotor has no central core and the rotor winding is built with 15 double pancake coils. Each coil has 38 turns of BiPb2223 superconducting tape, with nominal current of 180 A at 77 K. In this design, only two flux diverters are used at the top and bottom of the winding to help shape the magnetic field. The coils are located on the inner wall of the cryostat. The construction of the cryostat poses our greatest mechanical challenge. Although we have avoided problems with differential thermal contractions by making the cryostat entirely from stainless steel, the cryostat requires considerable reinforcements. Additional supports and stiffening ribs must be welded to the thin-walled structure. Distortion/rippling during welding must be eliminated to ensure the final welds to the ring flanges can be made. The pole-pieces, which help to improve the waveform characteristics of the machine, are located in the warm space between the cold flange of the cryostat and the inner wall of the vacuum vessel. Unfortunately, the overall magnetic performance has been affected by the parallel stacking of the coils. Some suggestions for altering the current stator have been presented which show that improvements to the voltage waveforms can be achieved.
Keywords :
bismuth compounds; cryostats; divertors; high-temperature superconductors; nanostructured materials; nitrogen; rotors; stainless steel; stators; superconducting coils; superconducting tapes; synchronous generators; undercooling; welding; windings; 2-pole-3-phase stator; BSSCO; FeCCrJk; HTS rotor; N; cooling; cryostat; current 180 A; current stator; differential thermal contractions; distortion; double pancake coils; flux diverters; iron cored generator; lightweight HTS synchronous generator; power 100 kW; ring flanges; rippling; rotor winding; stainless steel; subcooled liquid nitrogen; superconducting tape; temperature 77 K; thin-walled structure; vacuum vessel; voltage waveforms; welding; BSCCO coils; HTS generator; HTS machines; superconducting motor;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2009.2017841
Filename :
5067227
Link To Document :
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