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Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets

The HL-LHC upgrade, aiming at increasing the LHC levelled luminosity by factor of five, relies on new superconducting magnets requiring a new beam vacuum system. Along with the challenges related to magnet design, the beam optic configuration exposes this new equipment to stringent conditions for va...

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Detalles Bibliográficos
Autores principales: Harray, Jérôme, Garion, Cedric, Petit, Valentine
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2022-THPOTK035
http://cds.cern.ch/record/2845886
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author Harray, Jérôme
Garion, Cedric
Petit, Valentine
author_facet Harray, Jérôme
Garion, Cedric
Petit, Valentine
author_sort Harray, Jérôme
collection CERN
description The HL-LHC upgrade, aiming at increasing the LHC levelled luminosity by factor of five, relies on new superconducting magnets requiring a new beam vacuum system. Along with the challenges related to magnet design, the beam optic configuration exposes this new equipment to stringent conditions for vacuum and cryogenic performance. Both cold-warm transitions and magnet interconnections appear to be delicate components that are crucial for the thermal heat transfer between diverse subsystems. The proposed study aims at assessing the heat loads to the cryogenic system and the temperature fields in the vacuum system. A nonlinear static thermal analysis is first performed. A thermo-mechanical approach is developed to capture additional thermal resistance arising from contact between components and their behaviour during cool-down. The system is then studied under dynamic operations when beams are circulating and colliding. A thorough analysis of beam-induced heat loads under ultimate conditions highlights the different relevant contributions. Finally, the transient response of the systems is computed to assess thermal time constants.
id cern-2845886
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28458862023-06-07T12:18:00Zdoi:10.18429/JACoW-IPAC2022-THPOTK035http://cds.cern.ch/record/2845886engHarray, JérômeGarion, CedricPetit, ValentineThermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section MagnetsAccelerators and Storage RingsThe HL-LHC upgrade, aiming at increasing the LHC levelled luminosity by factor of five, relies on new superconducting magnets requiring a new beam vacuum system. Along with the challenges related to magnet design, the beam optic configuration exposes this new equipment to stringent conditions for vacuum and cryogenic performance. Both cold-warm transitions and magnet interconnections appear to be delicate components that are crucial for the thermal heat transfer between diverse subsystems. The proposed study aims at assessing the heat loads to the cryogenic system and the temperature fields in the vacuum system. A nonlinear static thermal analysis is first performed. A thermo-mechanical approach is developed to capture additional thermal resistance arising from contact between components and their behaviour during cool-down. The system is then studied under dynamic operations when beams are circulating and colliding. A thorough analysis of beam-induced heat loads under ultimate conditions highlights the different relevant contributions. Finally, the transient response of the systems is computed to assess thermal time constants.oai:cds.cern.ch:28458862022
spellingShingle Accelerators and Storage Rings
Harray, Jérôme
Garion, Cedric
Petit, Valentine
Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title_full Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title_fullStr Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title_full_unstemmed Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title_short Thermo-Mechanical Modeling and Thermal Performance Analysis of Beam Vacuum Line Interconnections and Cold Warm Transitions in HL-LHC Long Straight Section Magnets
title_sort thermo-mechanical modeling and thermal performance analysis of beam vacuum line interconnections and cold warm transitions in hl-lhc long straight section magnets
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2022-THPOTK035
http://cds.cern.ch/record/2845886
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AT garioncedric thermomechanicalmodelingandthermalperformanceanalysisofbeamvacuumlineinterconnectionsandcoldwarmtransitionsinhllhclongstraightsectionmagnets
AT petitvalentine thermomechanicalmodelingandthermalperformanceanalysisofbeamvacuumlineinterconnectionsandcoldwarmtransitionsinhllhclongstraightsectionmagnets