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Cryogenics system: strategy to achieve nominal performance and reliable operation

During the LHC operation in 2010 and 2011, the cryogenic system has achieved an availability level fulfilling the overall requirement. To reach this level, the cryogenic system has profited like many other beam-dependent systems from the reduced beam parameters. Therefore, impacts of some failures o...

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Autores principales: Bremer, J, Brodzinski, K, Casas, J, Claudet, S, Delikaris, D, Delruelle, N, Ferlin, G, Fluder, C, Perin, A, Perinic, G, Pezzetti, M, Pirotte, O, Tavian, L, Wagner, U
Lenguaje:eng
Publicado: CERN 2012
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2012-006.236
http://cds.cern.ch/record/1492980
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author Bremer, J
Brodzinski, K
Casas, J
Claudet, S
Delikaris, D
Delruelle, N
Ferlin, G
Fluder, C
Perin, A
Perinic, G
Pezzetti, M
Pirotte, O
Tavian, L
Wagner, U
author_facet Bremer, J
Brodzinski, K
Casas, J
Claudet, S
Delikaris, D
Delruelle, N
Ferlin, G
Fluder, C
Perin, A
Perinic, G
Pezzetti, M
Pirotte, O
Tavian, L
Wagner, U
author_sort Bremer, J
collection CERN
description During the LHC operation in 2010 and 2011, the cryogenic system has achieved an availability level fulfilling the overall requirement. To reach this level, the cryogenic system has profited like many other beam-dependent systems from the reduced beam parameters. Therefore, impacts of some failures occurred during the LHC operation were mitigated by using the overcapacity margin, the existing built-in redundancy in between adjacent sector cryogenic plants and the "cannibalization" of spares on two idle cryogenic plants. These two first years of operation were also crucial to identify the weaknesses of the present cryogenic maintenance plan and new issues like SEUs. After the LS1, nominal beam parameters are expected and the mitigated measures will be less effective or not applicable at all. Consequently, a consolidation plan to improve the MTBF and the MTTR of the LHC cryogenic system is under definition. Concerning shutdown periods, the present cryogenic sectorization imposes some restrictions in the type of interventions (e.g. cryo-magnet removal) which can be done without affecting the operating conditions of the adjacent sector. This creates additional constrains and possible extra down-time in the schedule of the shutdowns including the hardware commissioning. This presentation focuses on the consolidation plan foreseen during the LS1 to improve the performance of the LHC cryogenic system in terms of availability and sectorization.
id cern-1492980
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
publisher CERN
record_format invenio
spelling cern-14929802022-08-10T20:41:28Zdoi:10.5170/CERN-2012-006.236http://cds.cern.ch/record/1492980engBremer, JBrodzinski, KCasas, JClaudet, SDelikaris, DDelruelle, NFerlin, GFluder, CPerin, APerinic, GPezzetti, MPirotte, OTavian, LWagner, UCryogenics system: strategy to achieve nominal performance and reliable operationAccelerators and Storage RingsDuring the LHC operation in 2010 and 2011, the cryogenic system has achieved an availability level fulfilling the overall requirement. To reach this level, the cryogenic system has profited like many other beam-dependent systems from the reduced beam parameters. Therefore, impacts of some failures occurred during the LHC operation were mitigated by using the overcapacity margin, the existing built-in redundancy in between adjacent sector cryogenic plants and the "cannibalization" of spares on two idle cryogenic plants. These two first years of operation were also crucial to identify the weaknesses of the present cryogenic maintenance plan and new issues like SEUs. After the LS1, nominal beam parameters are expected and the mitigated measures will be less effective or not applicable at all. Consequently, a consolidation plan to improve the MTBF and the MTTR of the LHC cryogenic system is under definition. Concerning shutdown periods, the present cryogenic sectorization imposes some restrictions in the type of interventions (e.g. cryo-magnet removal) which can be done without affecting the operating conditions of the adjacent sector. This creates additional constrains and possible extra down-time in the schedule of the shutdowns including the hardware commissioning. This presentation focuses on the consolidation plan foreseen during the LS1 to improve the performance of the LHC cryogenic system in terms of availability and sectorization.CERNoai:cds.cern.ch:14929802012
spellingShingle Accelerators and Storage Rings
Bremer, J
Brodzinski, K
Casas, J
Claudet, S
Delikaris, D
Delruelle, N
Ferlin, G
Fluder, C
Perin, A
Perinic, G
Pezzetti, M
Pirotte, O
Tavian, L
Wagner, U
Cryogenics system: strategy to achieve nominal performance and reliable operation
title Cryogenics system: strategy to achieve nominal performance and reliable operation
title_full Cryogenics system: strategy to achieve nominal performance and reliable operation
title_fullStr Cryogenics system: strategy to achieve nominal performance and reliable operation
title_full_unstemmed Cryogenics system: strategy to achieve nominal performance and reliable operation
title_short Cryogenics system: strategy to achieve nominal performance and reliable operation
title_sort cryogenics system: strategy to achieve nominal performance and reliable operation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.5170/CERN-2012-006.236
http://cds.cern.ch/record/1492980
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