CERN Accelerating science

Published Articles
Title Design of a Canted-Cosine-Theta Superconducting Dipole Magnet for Future Colliders
Related titleDesign of a Canted-Cosine-Theta Superconducting Dipole Magnet for Future Colliders
Author(s) Caspi, Shlomo (LBL, Berkeley) ; Arbelaez, Diego (LBL, Berkeley) ; Brouwer, Lucas (LBL, Berkeley) ; Gourlay, Steve (LBL, Berkeley) ; Prestemon, Soren (LBL, Berkeley) ; Auchmann, Bernhard (CERN)
Publication 2017
Number of pages 5
In: IEEE Trans. Appl. Supercond. 27 (2017) 4001505
In: Applied Superconductivity Conference, Denver, CO, USA, 4 - 9 Sep 2016, pp.4001505
DOI 10.1109/TASC.2016.2638458
Subject category Accelerators and Storage Rings
Abstract A four-layer canted-cosine-theta 16-T dipole has been designed as a possible candidate for future hadron colliders. The design maintains part of the future-circular-collider magnet requirements, i.e., a 50 mm clear bore and 16 T operating at 1.9 K. The magnet intercepts Lorentz forces with an internal structure of ribs and spars, minimizes conductor, and reduces the number of layers and magnet size by using wide cables. The role of iron and its impact on field and magnet size is discussed. A three-dimensional magnetic analysis was carried out for 1-in-1 and 2-in-1 designs including a structural analysis for the 1-in-1 case. Thoughts on future improvements during winding are also discussed.

Corresponding record in: Inspire


 Registre creat el 2017-07-27, darrera modificació el 2018-05-28