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Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN

The High Energy and Intensity HIE-ISOLDE is a facility under construction at CERN whose target is ultimately, after the installation of six cryo-modules, to produce radioactive ion beams at 10MeV/u maximum energy in order to significantly expand the nuclear physics programme carried out by REX-ISOLD...

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Autores principales: Valdarno, L, Delruelle, N, Leclercq, Y, Parma, V, Vandoni, G, Williams, L
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1757-899X/101/1/012045
http://cds.cern.ch/record/2145935
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author Valdarno, L
Delruelle, N
Leclercq, Y
Parma, V
Vandoni, G
Williams, L
author_facet Valdarno, L
Delruelle, N
Leclercq, Y
Parma, V
Vandoni, G
Williams, L
author_sort Valdarno, L
collection CERN
description The High Energy and Intensity HIE-ISOLDE is a facility under construction at CERN whose target is ultimately, after the installation of six cryo-modules, to produce radioactive ion beams at 10MeV/u maximum energy in order to significantly expand the nuclear physics programme carried out by REX-ISOLDE. Since thermal control is essential to the performance of the whole cryo-module, a combination of a passive (materials, coatings, and surface finishes) and active (cryogenic loops, heaters) control has been designed to keep the cryostat operating within the allowable thermal budget. A numerical model based on Finite Element has been developed in order to generate a faithful global mapping of temperatures and heat fluxes inside the cryo-module. The numerical model, combined with the experimental results of the first test campaign, will serve as an optimization tool for the future cryo-modules in terms of improvement in the global and specific heat loads management.
id cern-2145935
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21459352022-08-10T13:08:01Zdoi:10.1088/1757-899X/101/1/012045http://cds.cern.ch/record/2145935engValdarno, LDelruelle, NLeclercq, YParma, VVandoni, GWilliams, LThermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERNEngineeringThe High Energy and Intensity HIE-ISOLDE is a facility under construction at CERN whose target is ultimately, after the installation of six cryo-modules, to produce radioactive ion beams at 10MeV/u maximum energy in order to significantly expand the nuclear physics programme carried out by REX-ISOLDE. Since thermal control is essential to the performance of the whole cryo-module, a combination of a passive (materials, coatings, and surface finishes) and active (cryogenic loops, heaters) control has been designed to keep the cryostat operating within the allowable thermal budget. A numerical model based on Finite Element has been developed in order to generate a faithful global mapping of temperatures and heat fluxes inside the cryo-module. The numerical model, combined with the experimental results of the first test campaign, will serve as an optimization tool for the future cryo-modules in terms of improvement in the global and specific heat loads management.oai:cds.cern.ch:21459352015
spellingShingle Engineering
Valdarno, L
Delruelle, N
Leclercq, Y
Parma, V
Vandoni, G
Williams, L
Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title_full Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title_fullStr Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title_full_unstemmed Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title_short Thermal Design and Performance results of the first High-Beta Cryo-module for HIE-ISOLDE at CERN
title_sort thermal design and performance results of the first high-beta cryo-module for hie-isolde at cern
topic Engineering
url https://dx.doi.org/10.1088/1757-899X/101/1/012045
http://cds.cern.ch/record/2145935
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