CERN Accelerating science

Published Articles
Title Modeling of beam loss induced quenches in the LHC main dipole magnets
Author(s) Breschi, Marco (U. Bologna (main)) ; Felcini, Enrico (CERN) ; Breccia, Francesca (U. Bologna (main)) ; Granieri, P P (CERN) ; Bergonzoni, Eleonora (U. Bologna (main)) ; Bevilacqua, Alessandro (U. Bologna (main)) ; Galassi, Pietro (U. Bologna (main)) ; Winkler, Tiemo (Twente U., Enschede) ; Bottura, Luca (CERN)
Publication 2019
Number of pages 7
In: IEEE Trans. Appl. Supercond. 29 (2019) 4004407
DOI 10.1109/TASC.2019.2906636
Subject category Accelerators and Storage Rings
Abstract The full energy exploitation of the Large Hadron Collider (LHC), a planned increase of the beam energy beyond the present 6.5 TeV, will result in more demanding working conditions for the superconducting dipoles and quadrupoles operating in the machine. It is hence crucial to analyze, understand, and predict the quench levels of these magnets for the required values of current and generated magnetic fields. A one-dimensional multi-strand electro-thermal model has been developed to analyze the effect of beam-losses heat deposition. Critical elements of the model are the ability to capture heat and current distribution among strands, and heat transfer to the superfluid helium bath. The computational model has been benchmarked against experimental values of LHC quench limits measured at 6.5 TeV for the Main Bending dipole magnets.
Copyright/License Publication: © 2019-2025 IEEE

Corresponding record in: Inspire


 Rekord stworzony 2019-09-07, ostatnia modyfikacja 2019-09-07