Cargando…

Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider

The Short Straight Section (SSS) of the Large Hadron Collider (LHC) may undergo relative displacements between cold-mass and cryostat for the following three reasons: - Fabrication tolerance of interconnection bellows - Global smoothing after pre-alignment - Ground motion in a sector of the LHC tunn...

Descripción completa

Detalles Bibliográficos
Autores principales: Dutta, S, Dwivedi, J, Kumar, A, Skoczen, B, Soni, H C
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/788501
_version_ 1780904457822797824
author Dutta, S
Dwivedi, J
Kumar, A
Skoczen, B
Soni, H C
author_facet Dutta, S
Dwivedi, J
Kumar, A
Skoczen, B
Soni, H C
author_sort Dutta, S
collection CERN
description The Short Straight Section (SSS) of the Large Hadron Collider (LHC) may undergo relative displacements between cold-mass and cryostat for the following three reasons: - Fabrication tolerance of interconnection bellows - Global smoothing after pre-alignment - Ground motion in a sector of the LHC tunnel The forces responsible for such displacements stem from finite stiffness of interconnect bellows & metal hoses of the internal piping of the jumper connection and from relatively flexible 'glass fibre reinforced epoxy' (GFRE) composite supports of the cold mass. In addition, the vacuum jacket of the jumper connection and the large sleeves attached to both ends of SSS produce elastic deformations of the cryostat vessel. A unified finite element model consisting of cryostat, large sleeves, vacuum jacket of jumper, interconnection bellows, internal piping of jumper, composite cold supports and alignment jacks has been prepared. The knowledge of the position of the cold mass with respect to its cryostat under various conditions of alignment done using external fiducials mounted on the cryostat is essential. The maximum relative displacement for satisfactory machine operation is 0.1 mm. An SSS with cryogenic jumper connection has been modelled with the aim of assessing this possible displacement.
id cern-788501
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-7885012023-05-31T13:19:58Zhttp://cds.cern.ch/record/788501engDutta, SDwivedi, JKumar, ASkoczen, BSoni, H CStructural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron ColliderAccelerators and Storage RingsThe Short Straight Section (SSS) of the Large Hadron Collider (LHC) may undergo relative displacements between cold-mass and cryostat for the following three reasons: - Fabrication tolerance of interconnection bellows - Global smoothing after pre-alignment - Ground motion in a sector of the LHC tunnel The forces responsible for such displacements stem from finite stiffness of interconnect bellows & metal hoses of the internal piping of the jumper connection and from relatively flexible 'glass fibre reinforced epoxy' (GFRE) composite supports of the cold mass. In addition, the vacuum jacket of the jumper connection and the large sleeves attached to both ends of SSS produce elastic deformations of the cryostat vessel. A unified finite element model consisting of cryostat, large sleeves, vacuum jacket of jumper, interconnection bellows, internal piping of jumper, composite cold supports and alignment jacks has been prepared. The knowledge of the position of the cold mass with respect to its cryostat under various conditions of alignment done using external fiducials mounted on the cryostat is essential. The maximum relative displacement for satisfactory machine operation is 0.1 mm. An SSS with cryogenic jumper connection has been modelled with the aim of assessing this possible displacement.LHC-Project-Report-726CERN-LHC-Project-Report-726oai:cds.cern.ch:7885012004
spellingShingle Accelerators and Storage Rings
Dutta, S
Dwivedi, J
Kumar, A
Skoczen, B
Soni, H C
Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title_full Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title_fullStr Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title_full_unstemmed Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title_short Structural Analysis of an Integrated Model of Short Straight Section, Service Module, Jumper Connection and Magnet Interconnects for the Large Hadron Collider
title_sort structural analysis of an integrated model of short straight section, service module, jumper connection and magnet interconnects for the large hadron collider
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/788501
work_keys_str_mv AT duttas structuralanalysisofanintegratedmodelofshortstraightsectionservicemodulejumperconnectionandmagnetinterconnectsforthelargehadroncollider
AT dwivedij structuralanalysisofanintegratedmodelofshortstraightsectionservicemodulejumperconnectionandmagnetinterconnectsforthelargehadroncollider
AT kumara structuralanalysisofanintegratedmodelofshortstraightsectionservicemodulejumperconnectionandmagnetinterconnectsforthelargehadroncollider
AT skoczenb structuralanalysisofanintegratedmodelofshortstraightsectionservicemodulejumperconnectionandmagnetinterconnectsforthelargehadroncollider
AT sonihc structuralanalysisofanintegratedmodelofshortstraightsectionservicemodulejumperconnectionandmagnetinterconnectsforthelargehadroncollider