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SPL RF Coupler Cooling Efficiency

Energy saving is an important challenge in accelerator design. In this framework, reduction of heat loads in a cryomodule is of fundamental importance due to the small thermodynamic efficiency of cooling at low temperatures. In particular, care must be taken during the design of its critical compone...

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Autores principales: Bonomi, R, Capatina, C, Montesinos, E, Parma, V, Vande Craen, A
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1977346
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author Bonomi, R
Capatina, C
Montesinos, E
Parma, V
Vande Craen, A
author_facet Bonomi, R
Capatina, C
Montesinos, E
Parma, V
Vande Craen, A
author_sort Bonomi, R
collection CERN
description Energy saving is an important challenge in accelerator design. In this framework, reduction of heat loads in a cryomodule is of fundamental importance due to the small thermodynamic efficiency of cooling at low temperatures. In particular, care must be taken during the design of its critical components (e.g. RF couplers, coldwarm transitions). In this framework, the main RF coupler of the Superconducting Proton Linac (SPL) cryomodule at CERN will not only be used for RF powering but also as the main mechanical support of the superconducting cavities. These two functions have to be accomplished while ensuring the lowest heat in-leak to the helium bath at 2 K. In the SPL design, the RF coupler outer conductor is composed of two walls and cooled by forced convection with helium gas at 4.5 K. Analytical, semi-analytical and numerical analyses are presented in order to defend the choice of gas cooling. Temperature profiles and thermal performance have been evaluated for different operating conditions; a sensitivity analysis of RF currents node position along the wall has also been performed. Finally, comparison with respect to other heat extraction methods is presented.
id cern-1977346
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-19773462022-08-17T13:29:20Zhttp://cds.cern.ch/record/1977346engBonomi, RCapatina, CMontesinos, EParma, VVande Craen, ASPL RF Coupler Cooling EfficiencyAccelerators and Storage RingsEnergy saving is an important challenge in accelerator design. In this framework, reduction of heat loads in a cryomodule is of fundamental importance due to the small thermodynamic efficiency of cooling at low temperatures. In particular, care must be taken during the design of its critical components (e.g. RF couplers, coldwarm transitions). In this framework, the main RF coupler of the Superconducting Proton Linac (SPL) cryomodule at CERN will not only be used for RF powering but also as the main mechanical support of the superconducting cavities. These two functions have to be accomplished while ensuring the lowest heat in-leak to the helium bath at 2 K. In the SPL design, the RF coupler outer conductor is composed of two walls and cooled by forced convection with helium gas at 4.5 K. Analytical, semi-analytical and numerical analyses are presented in order to defend the choice of gas cooling. Temperature profiles and thermal performance have been evaluated for different operating conditions; a sensitivity analysis of RF currents node position along the wall has also been performed. Finally, comparison with respect to other heat extraction methods is presented.CERN-ACC-2014-0340oai:cds.cern.ch:19773462014-12-16
spellingShingle Accelerators and Storage Rings
Bonomi, R
Capatina, C
Montesinos, E
Parma, V
Vande Craen, A
SPL RF Coupler Cooling Efficiency
title SPL RF Coupler Cooling Efficiency
title_full SPL RF Coupler Cooling Efficiency
title_fullStr SPL RF Coupler Cooling Efficiency
title_full_unstemmed SPL RF Coupler Cooling Efficiency
title_short SPL RF Coupler Cooling Efficiency
title_sort spl rf coupler cooling efficiency
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1977346
work_keys_str_mv AT bonomir splrfcouplercoolingefficiency
AT capatinac splrfcouplercoolingefficiency
AT montesinose splrfcouplercoolingefficiency
AT parmav splrfcouplercoolingefficiency
AT vandecraena splrfcouplercoolingefficiency