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Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors

During ramping up- and down of the current in large-scale magnets the ramp losses are an important factor affecting the thermal and electro-magnetic stability of the system. The calculation of the losses is not straightforward due to the large dimensions of the conductor (~600 mm/sup 2/) implying th...

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Detalles Bibliográficos
Autores principales: Boxman, E W, Nijhuis, A, ten Kate, H H J
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/596700
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author Boxman, E W
Nijhuis, A
ten Kate, H H J
author_facet Boxman, E W
Nijhuis, A
ten Kate, H H J
author_sort Boxman, E W
collection CERN
description During ramping up- and down of the current in large-scale magnets the ramp losses are an important factor affecting the thermal and electro-magnetic stability of the system. The calculation of the losses is not straightforward due to the large dimensions of the conductor (~600 mm/sup 2/) implying that diffusion effects have to be taken into account. The AC-losses of the Al stabilized NbTi cable conductors used in the ATLAS magnet system were measured in 0.5 m long samples, using an inductive method with pick-up coils as well as the calorimetric method. External varying magnetic fields up to 2 tesla amplitude were applied parallel and perpendicular to the conductor wide surface. The results are compared to theory. It is found that hysteresis loss, eddy current loss in the Aluminum cladding and cable-to-cladding coupling loss contribute most to the AC loss. (5 refs).
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
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spelling cern-5967002019-09-30T06:29:59Zhttp://cds.cern.ch/record/596700engBoxman, E WNijhuis, Aten Kate, H H JAlternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductorsDetectors and Experimental TechniquesDuring ramping up- and down of the current in large-scale magnets the ramp losses are an important factor affecting the thermal and electro-magnetic stability of the system. The calculation of the losses is not straightforward due to the large dimensions of the conductor (~600 mm/sup 2/) implying that diffusion effects have to be taken into account. The AC-losses of the Al stabilized NbTi cable conductors used in the ATLAS magnet system were measured in 0.5 m long samples, using an inductive method with pick-up coils as well as the calorimetric method. External varying magnetic fields up to 2 tesla amplitude were applied parallel and perpendicular to the conductor wide surface. The results are compared to theory. It is found that hysteresis loss, eddy current loss in the Aluminum cladding and cable-to-cladding coupling loss contribute most to the AC loss. (5 refs).oai:cds.cern.ch:5967002002
spellingShingle Detectors and Experimental Techniques
Boxman, E W
Nijhuis, A
ten Kate, H H J
Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title_full Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title_fullStr Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title_full_unstemmed Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title_short Alternating magnetic field losses in ATLAS type aluminium stabilized NbTi superconductors
title_sort alternating magnetic field losses in atlas type aluminium stabilized nbti superconductors
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/596700
work_keys_str_mv AT boxmanew alternatingmagneticfieldlossesinatlastypealuminiumstabilizednbtisuperconductors
AT nijhuisa alternatingmagneticfieldlossesinatlastypealuminiumstabilizednbtisuperconductors
AT tenkatehhj alternatingmagneticfieldlossesinatlastypealuminiumstabilizednbtisuperconductors