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Remote cooling systems with mesh-based heat exchangers for cryogenic applications

In the refrigeration technologies available for the 2 W - 5 W cooling power range at 4.5 K, innovative designs for intermediate cooling options are proposed between the large-scale cryogenic plants and small-scale commercially available cryocoolers. This paper presents a number of remote cooling sol...

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Autores principales: Onufrena, A, Naydenov, B, Koettig, T, Bremer, J, Tirolien, T, ter Brake, H J M
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1757-899X/1240/1/012049
http://cds.cern.ch/record/2839956
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author Onufrena, A
Naydenov, B
Koettig, T
Bremer, J
Tirolien, T
ter Brake, H J M
author_facet Onufrena, A
Naydenov, B
Koettig, T
Bremer, J
Tirolien, T
ter Brake, H J M
author_sort Onufrena, A
collection CERN
description In the refrigeration technologies available for the 2 W - 5 W cooling power range at 4.5 K, innovative designs for intermediate cooling options are proposed between the large-scale cryogenic plants and small-scale commercially available cryocoolers. This paper presents a number of remote cooling solutions, which use high-effectiveness mesh-based counterflow heat exchangers (CFHEX) to support the aforementioned refrigeration domain. Additionally, the cooling power is aimed to be provided in a remote, distributed and non-disturbing manner (i.e. reduced mechanical vibrations and magnetic disturbances) for high-technology cryogenic applications that require very low background noise levels. The proposed remote cooling options are analysed in terms of their cooling power performance. Designs and sizing of individual system components, i.e. CFHEXs and cooling interface options, for superconducting radio frequency (SRF) cavity cooling application are also proposed. CFHEX compactness and influence of their individual effectiveness values on the performance of the remote cooling systems are assessed, and capillary cooling interface performance is analysed.
id cern-2839956
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28399562022-11-09T23:37:07Zdoi:10.1088/1757-899X/1240/1/012049http://cds.cern.ch/record/2839956engOnufrena, ANaydenov, BKoettig, TBremer, JTirolien, Tter Brake, H J MRemote cooling systems with mesh-based heat exchangers for cryogenic applicationsAccelerators and Storage RingsIn the refrigeration technologies available for the 2 W - 5 W cooling power range at 4.5 K, innovative designs for intermediate cooling options are proposed between the large-scale cryogenic plants and small-scale commercially available cryocoolers. This paper presents a number of remote cooling solutions, which use high-effectiveness mesh-based counterflow heat exchangers (CFHEX) to support the aforementioned refrigeration domain. Additionally, the cooling power is aimed to be provided in a remote, distributed and non-disturbing manner (i.e. reduced mechanical vibrations and magnetic disturbances) for high-technology cryogenic applications that require very low background noise levels. The proposed remote cooling options are analysed in terms of their cooling power performance. Designs and sizing of individual system components, i.e. CFHEXs and cooling interface options, for superconducting radio frequency (SRF) cavity cooling application are also proposed. CFHEX compactness and influence of their individual effectiveness values on the performance of the remote cooling systems are assessed, and capillary cooling interface performance is analysed.oai:cds.cern.ch:28399562022
spellingShingle Accelerators and Storage Rings
Onufrena, A
Naydenov, B
Koettig, T
Bremer, J
Tirolien, T
ter Brake, H J M
Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title_full Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title_fullStr Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title_full_unstemmed Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title_short Remote cooling systems with mesh-based heat exchangers for cryogenic applications
title_sort remote cooling systems with mesh-based heat exchangers for cryogenic applications
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1757-899X/1240/1/012049
http://cds.cern.ch/record/2839956
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AT naydenovb remotecoolingsystemswithmeshbasedheatexchangersforcryogenicapplications
AT koettigt remotecoolingsystemswithmeshbasedheatexchangersforcryogenicapplications
AT bremerj remotecoolingsystemswithmeshbasedheatexchangersforcryogenicapplications
AT tirolient remotecoolingsystemswithmeshbasedheatexchangersforcryogenicapplications
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