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Heat load profile estimates on LHC beam screens by thermal transient analysis

The LHC beams are producing significant dynamic heat loads on the LHC cryogenic system. These heat loads are deposited on beam screens, where they must be properly extracted with dedicated cooling loops between 4.6 K and 20 K. Since 2015, unexpected beam-induced heat loads are observed in specific l...

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Detalles Bibliográficos
Autores principales: Bradu, B, Brodzinski, K, Delikaris, D, Garion, C, Tavian, L
Lenguaje:eng
Publicado: IOP 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1757-899X/502/1/012116
http://cds.cern.ch/record/2714437
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author Bradu, B
Brodzinski, K
Delikaris, D
Garion, C
Tavian, L
author_facet Bradu, B
Brodzinski, K
Delikaris, D
Garion, C
Tavian, L
author_sort Bradu, B
collection CERN
description The LHC beams are producing significant dynamic heat loads on the LHC cryogenic system. These heat loads are deposited on beam screens, where they must be properly extracted with dedicated cooling loops between 4.6 K and 20 K. Since 2015, unexpected beam-induced heat loads are observed in specific locations of the machine and their origin is still not completely understood. In order to improve our understanding on the heat load origin and on the spread between them on different areas of the accelerator, the thermal transients occurring after the beam dumps have been analyzed to reconstruct the heat load profiles of the beam screens. Following a description of this specific issue, the paper presents the methodology used for the measurements and estimates of the heat load profiles and its validation against some experimental data and dynamic simulations.
id oai-inspirehep.net-1731735
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
publisher IOP
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spelling oai-inspirehep.net-17317352022-08-10T12:24:43Zdoi:10.1088/1757-899X/502/1/012116http://cds.cern.ch/record/2714437engBradu, BBrodzinski, KDelikaris, DGarion, CTavian, LHeat load profile estimates on LHC beam screens by thermal transient analysisAccelerators and Storage RingsThe LHC beams are producing significant dynamic heat loads on the LHC cryogenic system. These heat loads are deposited on beam screens, where they must be properly extracted with dedicated cooling loops between 4.6 K and 20 K. Since 2015, unexpected beam-induced heat loads are observed in specific locations of the machine and their origin is still not completely understood. In order to improve our understanding on the heat load origin and on the spread between them on different areas of the accelerator, the thermal transients occurring after the beam dumps have been analyzed to reconstruct the heat load profiles of the beam screens. Following a description of this specific issue, the paper presents the methodology used for the measurements and estimates of the heat load profiles and its validation against some experimental data and dynamic simulations.IOPoai:inspirehep.net:17317352019
spellingShingle Accelerators and Storage Rings
Bradu, B
Brodzinski, K
Delikaris, D
Garion, C
Tavian, L
Heat load profile estimates on LHC beam screens by thermal transient analysis
title Heat load profile estimates on LHC beam screens by thermal transient analysis
title_full Heat load profile estimates on LHC beam screens by thermal transient analysis
title_fullStr Heat load profile estimates on LHC beam screens by thermal transient analysis
title_full_unstemmed Heat load profile estimates on LHC beam screens by thermal transient analysis
title_short Heat load profile estimates on LHC beam screens by thermal transient analysis
title_sort heat load profile estimates on lhc beam screens by thermal transient analysis
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1757-899X/502/1/012116
http://cds.cern.ch/record/2714437
work_keys_str_mv AT bradub heatloadprofileestimatesonlhcbeamscreensbythermaltransientanalysis
AT brodzinskik heatloadprofileestimatesonlhcbeamscreensbythermaltransientanalysis
AT delikarisd heatloadprofileestimatesonlhcbeamscreensbythermaltransientanalysis
AT garionc heatloadprofileestimatesonlhcbeamscreensbythermaltransientanalysis
AT tavianl heatloadprofileestimatesonlhcbeamscreensbythermaltransientanalysis