Quench Behavior of a Conduction Cooled \hbox \hbox\hbox} Tape Pancake Coil

Extensive applications of YBa 2 Cu 3 O 7-x (YBCO) tapes require a comprehensive knowledge of their behavior in every possible operating condition. In this paper, the thermal stability behavior of a conduction-cooled pancake coil wound with commercial YBCO coated conductors is reported from both the...

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Published inIEEE transactions on applied superconductivity Vol. 23; no. 3; p. 4600704
Main Authors Celentano, G., Messina, G., Angrisani Armenio, A., Augieri, A., Fabbri, F., Galluzzi, V., Mancini, A., Rizzo, F., Rufoloni, A., Vannozzi, A., Gambardella, U., Saggese, A., Iannone, G., Sabatino, P.
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LanguageEnglish
Published IEEE 01.06.2013
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Abstract Extensive applications of YBa 2 Cu 3 O 7-x (YBCO) tapes require a comprehensive knowledge of their behavior in every possible operating condition. In this paper, the thermal stability behavior of a conduction-cooled pancake coil wound with commercial YBCO coated conductors is reported from both the experimental and numerical point of view. The coil stability against heat disturbances is studied in terms of minimum quench energy and normal zone propagation velocity (NZPV) for different values of the coil currents at different temperatures. The quench dynamics of the tape is compared between experiment and the numerical analysis, obtaining a reasonable agreement for voltage traces, NZPV, and temperatures. The model allows a wide range of case studies that can be used to suggest appropriate solutions for the design of detection and protection systems.
AbstractList Extensive applications of YBa 2 Cu 3 O 7-x (YBCO) tapes require a comprehensive knowledge of their behavior in every possible operating condition. In this paper, the thermal stability behavior of a conduction-cooled pancake coil wound with commercial YBCO coated conductors is reported from both the experimental and numerical point of view. The coil stability against heat disturbances is studied in terms of minimum quench energy and normal zone propagation velocity (NZPV) for different values of the coil currents at different temperatures. The quench dynamics of the tape is compared between experiment and the numerical analysis, obtaining a reasonable agreement for voltage traces, NZPV, and temperatures. The model allows a wide range of case studies that can be used to suggest appropriate solutions for the design of detection and protection systems.
Author Angrisani Armenio, A.
Mancini, A.
Augieri, A.
Messina, G.
Iannone, G.
Rizzo, F.
Galluzzi, V.
Fabbri, F.
Celentano, G.
Rufoloni, A.
Vannozzi, A.
Gambardella, U.
Saggese, A.
Sabatino, P.
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Cites_doi 10.1016/S0011-2275(03)00046-8
10.1063/1.3662963
10.1109/TASC.2005.849207
10.1109/TASC.2008.921260
10.1109/TASC.2009.2017916
10.1088/0953-2048/23/6/065021
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References ref8
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  article-title: 35.4 T field generated using a layer-wound superconducting coil made of <tex Notation="TeX">$( \hbox{RE})\hbox{Ba}_{2}\hbox{Cu}_{3}\hbox{O}_{7 - {\rm x}}$</tex> <tex Notation="TeX">$(\hbox{RE} = \hbox{rare earth})$</tex> coated conductor
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StartPage 4600704
SubjectTerms Coated conductors
Coils
Conductors
Copper
Heating
HTS coil
Numerical models
quench propagation
Temperature measurement
Thermal conductivity
YBCO
Title Quench Behavior of a Conduction Cooled \hbox \hbox\hbox} Tape Pancake Coil
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Volume 23
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