2015
DOI: 10.1109/tasc.2014.2364215
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The EuCARD-2 Future Magnets European Collaboration for Accelerator-Quality HTS Magnets

Abstract: Abstract-EuCARD-2 is a project supported by FP7-European Commission that includes, inter alia, a work-package (WP10) called "Future Magnets". This project is part of the long term development that CERN is launching to explore magnet technology at 16 T to 20 T dipole operating field, within the scope of a study on Future Circular Colliders. The EuCARD2 collaboration is closely liaising with similar programs for high field accelerator magnets in the USA and Japan. The main focus of EuCARD2 WP10 is the developmen… Show more

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Cited by 114 publications
(93 citation statements)
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“…[1][2][3][4] HTS are not subjected to stability issues as LTS, and can, in principle, be operated without any protection. 5 However, this is usually not the case for HTS magnets, whose protection against quenchinduced damages is motivated by their high cost.…”
mentioning
confidence: 99%
“…[1][2][3][4] HTS are not subjected to stability issues as LTS, and can, in principle, be operated without any protection. 5 However, this is usually not the case for HTS magnets, whose protection against quenchinduced damages is motivated by their high cost.…”
mentioning
confidence: 99%
“…BOSSE project is part of a strong technological development around REBCO HTS tapes. It has a synergy with other projects such as very high field superconducting magnets (NOUGAT project) [22] or high field HTS dipole magnets considered for the future of the Large Hadron Collider in CERN (projects EUCARD et EUCARD-2) [10,30].…”
Section: Discussionmentioning
confidence: 99%
“…Even if cables with currents of several kA have been manufactured and tested under field [9,10], cables with currents in the range of hundreds of kA or more are not existing today. Another solution consists in using the SMES as a buffer power supply in order to quickly recharge a capacitor bank.…”
Section: Intended Applicationmentioning
confidence: 99%
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“…Indeed, Low Temperature Superconductors (LTS) such as Nb-Ti or Nb3Sn do not allow for generating magnetic fields larger than 15 T. Both technologies -LTS and HFS -must be coupled into one hybrid magnet where only its core, subjected to the highest field, would consist of HFS, the outer windings being made of LTS. Therefore, in the framework of two European Commission funded projects, namely EuCARD-WP7 [2] and EuCARD2-WP10 [3][4], application of HFS to accelerator magnet inserts has been developed. Progress about the EuCARD-WP7 HFS racetrack insert can be found in [5].…”
Section: Index Terms-superconducting Dipole Magnet Hts Roebel Cablementioning
confidence: 99%