AC Loss and Thermal Stability of HTS Model Coils for a 600 kJ SMES. Park, M., Kwak, S., Kim, W., Lee, S., Lee, J., Han, J., Choi, K., Jung, H., Seong, K., & Hahn, S. IEEE Transactions on Applied Superconductivity, 17(2):2418-2421, 2007. abstract bibtex A 600 kJ superconducting magnetic energy storage system (SMES) project with high temperature superconductor (HTS) started as a national project in Korea. The HTS model coils were designed and fabricated for a preliminary test prior to the creation of a full scale prototype. Single reinforced BSCCO-2223 wires were used for the model coils and the operating temperature was decided to be 20 K. Even though an SMES is not an AC-powered device, time-varying currents during the charging and discharging periods lead to the generation of time-variation magnetic fields applied to the model coils and the generation of AC loss. In this paper, AC loss and the temperature distribution of model coils are analyzed and discussed.
@article{ Park:TAS07,
abstract = {A 600 kJ superconducting magnetic energy storage system (SMES) project with high temperature superconductor (HTS) started as a national project in Korea. The HTS model coils were designed and fabricated for a preliminary test prior to the creation of a full scale prototype. Single reinforced BSCCO-2223 wires were used for the model coils and the operating temperature was decided to be 20 K. Even though an SMES is not an AC-powered device, time-varying currents during the charging and discharging periods lead to the generation of time-variation magnetic fields applied to the model coils and the generation of AC loss. In this paper, AC loss and the temperature distribution of model coils are analyzed and discussed.},
author = {M.-J. Park and S.-Y. Kwak and W.-S. Kim and S.-W. Lee and J.-K. Lee and J.-H. Han and K.-D. Choi and H.-K. Jung and K.-C. Seong and S.-Y. Hahn},
date-added = {2012-02-28 11:22:40 +0100},
date-modified = {2012-09-14 09:45:30 +0200},
journal = {IEEE Transactions on Applied Superconductivity},
number = {2},
pages = {2418-2421},
title = {{AC Loss and Thermal Stability of HTS Model Coils for a 600 kJ SMES}},
volume = {17},
year = {2007},
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}
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The HTS model coils were designed and fabricated for a preliminary test prior to the creation of a full scale prototype. Single reinforced BSCCO-2223 wires were used for the model coils and the operating temperature was decided to be 20 K. Even though an SMES is not an AC-powered device, time-varying currents during the charging and discharging periods lead to the generation of time-variation magnetic fields applied to the model coils and the generation of AC loss. In this paper, AC loss and the temperature distribution of model coils are analyzed and discussed.},\n author = {M.-J. Park and S.-Y. Kwak and W.-S. Kim and S.-W. Lee and J.-K. Lee and J.-H. Han and K.-D. Choi and H.-K. Jung and K.-C. Seong and S.-Y. 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The HTS model coils were designed and fabricated for a preliminary test prior to the creation of a full scale prototype. Single reinforced BSCCO-2223 wires were used for the model coils and the operating temperature was decided to be 20 K. Even though an SMES is not an AC-powered device, time-varying currents during the charging and discharging periods lead to the generation of time-variation magnetic fields applied to the model coils and the generation of AC loss. In this paper, AC loss and the temperature distribution of model coils are analyzed and discussed."},"bibtype":"article","biburl":"https://dl.dropboxusercontent.com/u/20653817/pippo.bib","creationDate":"2014-09-16T07:05:20.924Z","downloads":0,"keywords":[],"search_terms":["loss","thermal","stability","hts","model","coils","600","smes","park","kwak","kim","lee","lee","han","choi","jung","seong","hahn"],"title":"AC Loss and Thermal Stability of HTS Model Coils for a 600 kJ SMES","year":2007,"dataSources":["iZdSEySLhFChHYo7T"]}