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Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet

A large bore “High-Temperature Superconductor Cable Test Facility Magnet” for testing advanced cables and inserts in high transverse field is in its design phase. This magnet will be the core component of a facility for developing conductors and accelerator magnets operating above 15 T, an enabling...

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Autores principales: Pong, Ian, Hafalia, Aurelio, Higley, Hugh, Lee, Elizabeth, Lin, Andy, Naus, Michael, Perez, Carlos, Prestemon, Soren, Sabbi, GianLuca, Hopkins, Simon, Ballarino, Amalia, Bottura, Luca
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1109/tasc.2021.3094410
http://cds.cern.ch/record/2816481
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author Pong, Ian
Hafalia, Aurelio
Higley, Hugh
Lee, Elizabeth
Lin, Andy
Naus, Michael
Perez, Carlos
Prestemon, Soren
Sabbi, GianLuca
Hopkins, Simon
Ballarino, Amalia
Bottura, Luca
author_facet Pong, Ian
Hafalia, Aurelio
Higley, Hugh
Lee, Elizabeth
Lin, Andy
Naus, Michael
Perez, Carlos
Prestemon, Soren
Sabbi, GianLuca
Hopkins, Simon
Ballarino, Amalia
Bottura, Luca
author_sort Pong, Ian
collection CERN
description A large bore “High-Temperature Superconductor Cable Test Facility Magnet” for testing advanced cables and inserts in high transverse field is in its design phase. This magnet will be the core component of a facility for developing conductors and accelerator magnets operating above 15 T, an enabling technology for next-generation fusion devices using magnetic confinement of plasma and for future energy frontier colliders. The procurement of Nb$_3$Sn conductor, fabrication of cables, winding of coils, and assembly of the dipole magnet will be done at Lawrence Berkeley National Laboratory (LBNL) and the test pit and cryostat will be constructed at Fermi National Accelerator Laboratory. This article will present the conductor element of the LBNL project, specifically cable design parameters (based on the Bruker OST RRP® Nb$_3$Sn superconducting wire) and the development phase cable fabrication experience. Challenges of the cable fabrication will be discussed. The wire and cable planned for this magnet are similar to those under study for the Future Circular Collider and other large facility magnets. The successful fabrication of the development cable has positive implications for these other projects.
id cern-2816481
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-28164812022-07-26T15:25:04Zdoi:10.1109/tasc.2021.3094410http://cds.cern.ch/record/2816481engPong, IanHafalia, AurelioHigley, HughLee, ElizabethLin, AndyNaus, MichaelPerez, CarlosPrestemon, SorenSabbi, GianLucaHopkins, SimonBallarino, AmaliaBottura, LucaCable Design and Development for the High-Temperature Superconductor Cable Test Facility MagnetAccelerators and Storage RingsDetectors and Experimental TechniquesA large bore “High-Temperature Superconductor Cable Test Facility Magnet” for testing advanced cables and inserts in high transverse field is in its design phase. This magnet will be the core component of a facility for developing conductors and accelerator magnets operating above 15 T, an enabling technology for next-generation fusion devices using magnetic confinement of plasma and for future energy frontier colliders. The procurement of Nb$_3$Sn conductor, fabrication of cables, winding of coils, and assembly of the dipole magnet will be done at Lawrence Berkeley National Laboratory (LBNL) and the test pit and cryostat will be constructed at Fermi National Accelerator Laboratory. This article will present the conductor element of the LBNL project, specifically cable design parameters (based on the Bruker OST RRP® Nb$_3$Sn superconducting wire) and the development phase cable fabrication experience. Challenges of the cable fabrication will be discussed. The wire and cable planned for this magnet are similar to those under study for the Future Circular Collider and other large facility magnets. The successful fabrication of the development cable has positive implications for these other projects.oai:cds.cern.ch:28164812021
spellingShingle Accelerators and Storage Rings
Detectors and Experimental Techniques
Pong, Ian
Hafalia, Aurelio
Higley, Hugh
Lee, Elizabeth
Lin, Andy
Naus, Michael
Perez, Carlos
Prestemon, Soren
Sabbi, GianLuca
Hopkins, Simon
Ballarino, Amalia
Bottura, Luca
Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title_full Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title_fullStr Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title_full_unstemmed Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title_short Cable Design and Development for the High-Temperature Superconductor Cable Test Facility Magnet
title_sort cable design and development for the high-temperature superconductor cable test facility magnet
topic Accelerators and Storage Rings
Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/tasc.2021.3094410
http://cds.cern.ch/record/2816481
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