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Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles

The scope of the Large Hadron Collider Hi-Lumi Project at CERN includes the installation of several superconducting magnets wound with $Nb_3Sn$ Rutherford cables. The quench level of these magnets (i.e. the maximum energy that a cable can tolerate without quenching) is a key value required to set ma...

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Detalles Bibliográficos
Autores principales: Breschi, Marco, Felcini, Enrico, Bottura, Luca
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2016.2639541
http://cds.cern.ch/record/2275953
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author Breschi, Marco
Felcini, Enrico
Bottura, Luca
author_facet Breschi, Marco
Felcini, Enrico
Bottura, Luca
author_sort Breschi, Marco
collection CERN
description The scope of the Large Hadron Collider Hi-Lumi Project at CERN includes the installation of several superconducting magnets wound with $Nb_3Sn$ Rutherford cables. The quench level of these magnets (i.e. the maximum energy that a cable can tolerate without quenching) is a key value required to set magnet protection from beam losses, and is expected to be significantly different from the computed and measured levels of the LHC NbTi magnets. In this work, we applied a one-dimensional numerical model of multi-strand Rutherford cables to simulate the electro-thermal instabilities caused by the heat released by the particle beam losses. Two models have been applied, one based on the analysis of the single strand, and the other accounting for all the strands in the multi-strand cable. The results of these two models are compared to analyze the effects of heat and current redistribution during quench. A comparison between the quench energy values obtained for the $Nb_3Sn$ conductor in the working conditions of the LHC Hi-Lumi inner triplet low-β quadrupole (MQXF) and those of the NbTi Rutherford cable of the LHC main quadrupole magnet (MQ) is presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling oai-inspirehep.net-16103992019-09-30T06:29:59Zdoi:10.1109/TASC.2016.2639541http://cds.cern.ch/record/2275953engBreschi, MarcoFelcini, EnricoBottura, LucaQuench Level of the HL-LHC $Nb_3Sn$ IR QuadrupolesAccelerators and Storage RingsThe scope of the Large Hadron Collider Hi-Lumi Project at CERN includes the installation of several superconducting magnets wound with $Nb_3Sn$ Rutherford cables. The quench level of these magnets (i.e. the maximum energy that a cable can tolerate without quenching) is a key value required to set magnet protection from beam losses, and is expected to be significantly different from the computed and measured levels of the LHC NbTi magnets. In this work, we applied a one-dimensional numerical model of multi-strand Rutherford cables to simulate the electro-thermal instabilities caused by the heat released by the particle beam losses. Two models have been applied, one based on the analysis of the single strand, and the other accounting for all the strands in the multi-strand cable. The results of these two models are compared to analyze the effects of heat and current redistribution during quench. A comparison between the quench energy values obtained for the $Nb_3Sn$ conductor in the working conditions of the LHC Hi-Lumi inner triplet low-β quadrupole (MQXF) and those of the NbTi Rutherford cable of the LHC main quadrupole magnet (MQ) is presented.oai:inspirehep.net:16103992017
spellingShingle Accelerators and Storage Rings
Breschi, Marco
Felcini, Enrico
Bottura, Luca
Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title_full Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title_fullStr Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title_full_unstemmed Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title_short Quench Level of the HL-LHC $Nb_3Sn$ IR Quadrupoles
title_sort quench level of the hl-lhc $nb_3sn$ ir quadrupoles
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2016.2639541
http://cds.cern.ch/record/2275953
work_keys_str_mv AT breschimarco quenchlevelofthehllhcnb3snirquadrupoles
AT felcinienrico quenchlevelofthehllhcnb3snirquadrupoles
AT botturaluca quenchlevelofthehllhcnb3snirquadrupoles