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Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System

The cryogenic system for the Large Hadron Collider (LHC) under construction at CERN will include four new vertical helium transfer lines connecting the new helium refrigerators to the underground areas. These four transfer lines will be installed between a refrigerator on the surface and an intercon...

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Detalles Bibliográficos
Autores principales: Gruehagen, Henning, Posselt, H, Weber, J, Ahlers, H
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/593689
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author Gruehagen, Henning
Posselt, H
Weber, J
Ahlers, H
author_facet Gruehagen, Henning
Posselt, H
Weber, J
Ahlers, H
author_sort Gruehagen, Henning
collection CERN
description The cryogenic system for the Large Hadron Collider (LHC) under construction at CERN will include four new vertical helium transfer lines connecting the new helium refrigerators to the underground areas. These four transfer lines will be installed between a refrigerator on the surface and an interconnection box located 80 m to 145 m underground. They consist of a vacuum jacket, a thermal screen and four internal helium pipes. Due to space and accessibility limitations, the lines have been specified without bellows or bends of any kind in the long vertical part; the thermal contractions must be compensated at the surface only. The displacement due to these contractions amounts to more than 35 cm in one case, and all four internal pipes, as well as the thermal screen, must be able to contract and expand independently. The lines will be built and installed by a consortium of Linde AG and Babcock Noell Nuclear GmbH. Their technical design choices are presented together with expected performance.
id cern-593689
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5936892023-05-31T13:24:17Zhttp://cds.cern.ch/record/593689engGruehagen, HenningPosselt, HWeber, JAhlers, HLong, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic SystemAccelerators and Storage RingsThe cryogenic system for the Large Hadron Collider (LHC) under construction at CERN will include four new vertical helium transfer lines connecting the new helium refrigerators to the underground areas. These four transfer lines will be installed between a refrigerator on the surface and an interconnection box located 80 m to 145 m underground. They consist of a vacuum jacket, a thermal screen and four internal helium pipes. Due to space and accessibility limitations, the lines have been specified without bellows or bends of any kind in the long vertical part; the thermal contractions must be compensated at the surface only. The displacement due to these contractions amounts to more than 35 cm in one case, and all four internal pipes, as well as the thermal screen, must be able to contract and expand independently. The lines will be built and installed by a consortium of Linde AG and Babcock Noell Nuclear GmbH. Their technical design choices are presented together with expected performance.LHC-Project-Report-615CERN-LHC-Project-Report-615oai:cds.cern.ch:5936892002-11-15
spellingShingle Accelerators and Storage Rings
Gruehagen, Henning
Posselt, H
Weber, J
Ahlers, H
Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title_full Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title_fullStr Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title_full_unstemmed Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title_short Long, Bellows-Free Vertical Helium Transfer Lines for the LHC Cryogenic System
title_sort long, bellows-free vertical helium transfer lines for the lhc cryogenic system
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/593689
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AT posselth longbellowsfreeverticalheliumtransferlinesforthelhccryogenicsystem
AT weberj longbellowsfreeverticalheliumtransferlinesforthelhccryogenicsystem
AT ahlersh longbellowsfreeverticalheliumtransferlinesforthelhccryogenicsystem