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Qualification of Fin-Type Heat Exchangers for the ITER Current Leads

The ITER current leads will transfer large currents of up to 68 kA into the biggest superconducting magnets ever built. Following the development of prototypes and targeted trials of specific manufacturing processes through mock-ups, the ASIPP (Chinese Institute of Plasma Physics) is preparing for t...

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Autores principales: Ballarino, A, Bauer, P, Bordini, B, Devred, A, Ding, K, Niu, E, Sitko, M, Taylor, T, Yang, Y, Zhou, T
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1757-899X/101/1/012119
http://cds.cern.ch/record/2145991
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author Ballarino, A
Bauer, P
Bordini, B
Devred, A
Ding, K
Niu, E
Sitko, M
Taylor, T
Yang, Y
Zhou, T
author_facet Ballarino, A
Bauer, P
Bordini, B
Devred, A
Ding, K
Niu, E
Sitko, M
Taylor, T
Yang, Y
Zhou, T
author_sort Ballarino, A
collection CERN
description The ITER current leads will transfer large currents of up to 68 kA into the biggest superconducting magnets ever built. Following the development of prototypes and targeted trials of specific manufacturing processes through mock-ups, the ASIPP (Chinese Institute of Plasma Physics) is preparing for the series fabrication. A key component of the ITER HTS current leads are the resistive heat exchangers. Special R&D was conducted for these components at CERN and ASIPP in support of their designs. In particular several mock-ups were built and tested in room temperature gas to measure the dynamic pressure drop and compare to 3D CFD models.
id cern-2145991
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-21459912022-08-10T13:08:04Zdoi:10.1088/1757-899X/101/1/012119http://cds.cern.ch/record/2145991engBallarino, ABauer, PBordini, BDevred, ADing, KNiu, ESitko, MTaylor, TYang, YZhou, TQualification of Fin-Type Heat Exchangers for the ITER Current LeadsEngineeringThe ITER current leads will transfer large currents of up to 68 kA into the biggest superconducting magnets ever built. Following the development of prototypes and targeted trials of specific manufacturing processes through mock-ups, the ASIPP (Chinese Institute of Plasma Physics) is preparing for the series fabrication. A key component of the ITER HTS current leads are the resistive heat exchangers. Special R&D was conducted for these components at CERN and ASIPP in support of their designs. In particular several mock-ups were built and tested in room temperature gas to measure the dynamic pressure drop and compare to 3D CFD models.oai:cds.cern.ch:21459912015
spellingShingle Engineering
Ballarino, A
Bauer, P
Bordini, B
Devred, A
Ding, K
Niu, E
Sitko, M
Taylor, T
Yang, Y
Zhou, T
Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title_full Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title_fullStr Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title_full_unstemmed Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title_short Qualification of Fin-Type Heat Exchangers for the ITER Current Leads
title_sort qualification of fin-type heat exchangers for the iter current leads
topic Engineering
url https://dx.doi.org/10.1088/1757-899X/101/1/012119
http://cds.cern.ch/record/2145991
work_keys_str_mv AT ballarinoa qualificationoffintypeheatexchangersfortheitercurrentleads
AT bauerp qualificationoffintypeheatexchangersfortheitercurrentleads
AT bordinib qualificationoffintypeheatexchangersfortheitercurrentleads
AT devreda qualificationoffintypeheatexchangersfortheitercurrentleads
AT dingk qualificationoffintypeheatexchangersfortheitercurrentleads
AT niue qualificationoffintypeheatexchangersfortheitercurrentleads
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