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Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC
The High Luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN foresees the installation of Nb3Sn-based quadrupole magnets at selected interaction points of the accelerator. The precise knowledge of each magnet's thermal characteristics and heat extraction performance in response to...
Autores principales: | , , , , , , |
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Lenguaje: | eng |
Publicado: |
2023
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1109/TASC.2023.3240126 http://cds.cern.ch/record/2857721 |
_version_ | 1780977579945099264 |
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author | de Sousa, Patricia Borges Puthran, Kirtana Sabaté-Gilarte, Marta Cerutti, Francesco Izquierdo Bermudez, Susana Todesco, Ezio van Weelderen, Rob |
author_facet | de Sousa, Patricia Borges Puthran, Kirtana Sabaté-Gilarte, Marta Cerutti, Francesco Izquierdo Bermudez, Susana Todesco, Ezio van Weelderen, Rob |
author_sort | de Sousa, Patricia Borges |
collection | CERN |
description | The High Luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN foresees the installation of Nb3Sn-based quadrupole magnets at selected interaction points of the accelerator. The precise knowledge of each magnet's thermal characteristics and heat extraction performance in response to power depositions during both nominal and ultimate conditions is essential in determining safe operating margins. A 2D numerical framework has been developed to systematically assess the temperature distribution in the combined magnet structure-superfluid He system of each magnet and enveloping cold mass using open-source software. Here a full cross-section of a magnet cold mass is modelled, under the power density distribution expected at the most exposed longitudinal position during accelerator operation at an instantaneous luminosity of 5.0 × 1034cm−2s−1, corresponding to the nominal conditions for HL-LHC. Temperature maps and margins are presented for the inner triplet magnets (MQXF) for both horizontal and vertical beam crossing conditions, along with the validation of the design of cold mass cooling channels for heat extraction. |
id | cern-2857721 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2023 |
record_format | invenio |
spelling | cern-28577212023-05-05T15:21:46Zdoi:10.1109/TASC.2023.3240126http://cds.cern.ch/record/2857721engde Sousa, Patricia BorgesPuthran, KirtanaSabaté-Gilarte, MartaCerutti, FrancescoIzquierdo Bermudez, SusanaTodesco, Eziovan Weelderen, RobNumerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHCAccelerators and Storage RingsThe High Luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN foresees the installation of Nb3Sn-based quadrupole magnets at selected interaction points of the accelerator. The precise knowledge of each magnet's thermal characteristics and heat extraction performance in response to power depositions during both nominal and ultimate conditions is essential in determining safe operating margins. A 2D numerical framework has been developed to systematically assess the temperature distribution in the combined magnet structure-superfluid He system of each magnet and enveloping cold mass using open-source software. Here a full cross-section of a magnet cold mass is modelled, under the power density distribution expected at the most exposed longitudinal position during accelerator operation at an instantaneous luminosity of 5.0 × 1034cm−2s−1, corresponding to the nominal conditions for HL-LHC. Temperature maps and margins are presented for the inner triplet magnets (MQXF) for both horizontal and vertical beam crossing conditions, along with the validation of the design of cold mass cooling channels for heat extraction.oai:cds.cern.ch:28577212023 |
spellingShingle | Accelerators and Storage Rings de Sousa, Patricia Borges Puthran, Kirtana Sabaté-Gilarte, Marta Cerutti, Francesco Izquierdo Bermudez, Susana Todesco, Ezio van Weelderen, Rob Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title | Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title_full | Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title_fullStr | Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title_full_unstemmed | Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title_short | Numerical Assessment of the Inhomogeneous Temperature Field and the Quality of Heat Extraction of Nb3Sn Impregnated Magnets for the High Luminosity Upgrade of the LHC |
title_sort | numerical assessment of the inhomogeneous temperature field and the quality of heat extraction of nb3sn impregnated magnets for the high luminosity upgrade of the lhc |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.1109/TASC.2023.3240126 http://cds.cern.ch/record/2857721 |
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