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Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils

The first ITER's European Toroidal Field Coil (TFC) is going to be assembled in 2019. The TFC is composed mainly by the superconducting Winding Pack (WP - manufactured in Europe), and the Coil Cases (TFCC - manufactured in Japan), which provide structural integrity to the magnet and offer inter...

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Autores principales: Jimenez, Marc, Bellesia, Boris, Amoros, Jordi, Aprili, Piergiorgio, Bonito-Oliva, Alessandro, Boter, Eva, Casas, Paz, Cornelis, Marc, Kostopoulos, Charalampos, Libens, Ken, Harrison, Robert, Hernandez, Angela, Lo Bue, Alessandro, Pallas, Guim, Pellicer, Narcis, Pozuelo, Eduardo, Viladiu, Eduard, Gautheron, Emma, Pompa, Edoardo, Poncet, Lionel, Tarrago, Santiago, Ferrater, Marc
Lenguaje:eng
Publicado: 2020
Acceso en línea:https://dx.doi.org/10.1109/TASC.2020.2971472
http://cds.cern.ch/record/2743938
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author Jimenez, Marc
Bellesia, Boris
Amoros, Jordi
Aprili, Piergiorgio
Bonito-Oliva, Alessandro
Boter, Eva
Casas, Paz
Cornelis, Marc
Kostopoulos, Charalampos
Libens, Ken
Harrison, Robert
Hernandez, Angela
Lo Bue, Alessandro
Pallas, Guim
Pellicer, Narcis
Pozuelo, Eduardo
Viladiu, Eduard
Gautheron, Emma
Pompa, Edoardo
Poncet, Lionel
Tarrago, Santiago
Ferrater, Marc
author_facet Jimenez, Marc
Bellesia, Boris
Amoros, Jordi
Aprili, Piergiorgio
Bonito-Oliva, Alessandro
Boter, Eva
Casas, Paz
Cornelis, Marc
Kostopoulos, Charalampos
Libens, Ken
Harrison, Robert
Hernandez, Angela
Lo Bue, Alessandro
Pallas, Guim
Pellicer, Narcis
Pozuelo, Eduardo
Viladiu, Eduard
Gautheron, Emma
Pompa, Edoardo
Poncet, Lionel
Tarrago, Santiago
Ferrater, Marc
author_sort Jimenez, Marc
collection CERN
description The first ITER's European Toroidal Field Coil (TFC) is going to be assembled in 2019. The TFC is composed mainly by the superconducting Winding Pack (WP - manufactured in Europe), and the Coil Cases (TFCC - manufactured in Japan), which provide structural integrity to the magnet and offer interface connections with the rest of the machine. Dimensional measurements and other manufacturing data are taken during the WP manufacture and are used to reconstruct the Current Centre Line (CCL), which is defined as the barycentre of the as-built conductors inside the WP. The CCL is useful to characterize the magnetic field generated by the magnet, and its monitoring and control can minimize the Error Field during ITER operation. Fusion For Energy (F4E) developed a method to calculate the CCL using manufacturing data. Since the CCL represents how different the WP is manufactured from its nominal conductor layout, this deviation can be corrected where there is need of a more controlled magnetic field shape, namely in the straight inboard area of the D-shaped tokamak. That is why each WP position inside its respective TFCCs is optimized, compensating the deviations detected and maintaining an allowable gap between components for the subsequent welding and resin filling operation. This paper presents the strategy followed by F4E to calculate the CCL and optimize the WP position inside the TFCC, by means of extensive CAD and CAE modelling activity. It explains also the data management process developed and followed to ensure configuration control of all the data inputs and outputs, coming from different sources and formats, and details the successful insertion operation on the first ever ITER TFC coil manufactured in Europe, and how in the future the updated CCL coil position will be used to define the final TFC machining, after the welding and gap filling operations.
id oai-inspirehep.net-1825899
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18258992021-02-19T15:24:27Zdoi:10.1109/TASC.2020.2971472http://cds.cern.ch/record/2743938engJimenez, MarcBellesia, BorisAmoros, JordiAprili, PiergiorgioBonito-Oliva, AlessandroBoter, EvaCasas, PazCornelis, MarcKostopoulos, CharalamposLibens, KenHarrison, RobertHernandez, AngelaLo Bue, AlessandroPallas, GuimPellicer, NarcisPozuelo, EduardoViladiu, EduardGautheron, EmmaPompa, EdoardoPoncet, LionelTarrago, SantiagoFerrater, MarcCurrent Center Line Integration in the Manufacturing Process of the ITER Toroidal Field CoilsThe first ITER's European Toroidal Field Coil (TFC) is going to be assembled in 2019. The TFC is composed mainly by the superconducting Winding Pack (WP - manufactured in Europe), and the Coil Cases (TFCC - manufactured in Japan), which provide structural integrity to the magnet and offer interface connections with the rest of the machine. Dimensional measurements and other manufacturing data are taken during the WP manufacture and are used to reconstruct the Current Centre Line (CCL), which is defined as the barycentre of the as-built conductors inside the WP. The CCL is useful to characterize the magnetic field generated by the magnet, and its monitoring and control can minimize the Error Field during ITER operation. Fusion For Energy (F4E) developed a method to calculate the CCL using manufacturing data. Since the CCL represents how different the WP is manufactured from its nominal conductor layout, this deviation can be corrected where there is need of a more controlled magnetic field shape, namely in the straight inboard area of the D-shaped tokamak. That is why each WP position inside its respective TFCCs is optimized, compensating the deviations detected and maintaining an allowable gap between components for the subsequent welding and resin filling operation. This paper presents the strategy followed by F4E to calculate the CCL and optimize the WP position inside the TFCC, by means of extensive CAD and CAE modelling activity. It explains also the data management process developed and followed to ensure configuration control of all the data inputs and outputs, coming from different sources and formats, and details the successful insertion operation on the first ever ITER TFC coil manufactured in Europe, and how in the future the updated CCL coil position will be used to define the final TFC machining, after the welding and gap filling operations.oai:inspirehep.net:18258992020
spellingShingle Jimenez, Marc
Bellesia, Boris
Amoros, Jordi
Aprili, Piergiorgio
Bonito-Oliva, Alessandro
Boter, Eva
Casas, Paz
Cornelis, Marc
Kostopoulos, Charalampos
Libens, Ken
Harrison, Robert
Hernandez, Angela
Lo Bue, Alessandro
Pallas, Guim
Pellicer, Narcis
Pozuelo, Eduardo
Viladiu, Eduard
Gautheron, Emma
Pompa, Edoardo
Poncet, Lionel
Tarrago, Santiago
Ferrater, Marc
Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title_full Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title_fullStr Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title_full_unstemmed Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title_short Current Center Line Integration in the Manufacturing Process of the ITER Toroidal Field Coils
title_sort current center line integration in the manufacturing process of the iter toroidal field coils
url https://dx.doi.org/10.1109/TASC.2020.2971472
http://cds.cern.ch/record/2743938
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