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Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN

Cooling by natural convection is investigated on two air-cooled corrector magnets at CERN. The heat transfer coefficient (HTC) for each magnet is estimated analytically using established empirical correlations for certain geometries. The HTC is also estimated numerically with three-dimensional stead...

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Autor principal: Moreira, Mariana
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2238393
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author Moreira, Mariana
author_facet Moreira, Mariana
author_sort Moreira, Mariana
collection CERN
description Cooling by natural convection is investigated on two air-cooled corrector magnets at CERN. The heat transfer coefficient (HTC) for each magnet is estimated analytically using established empirical correlations for certain geometries. The HTC is also estimated numerically with three-dimensional steady-state finite element simulations. Air convection around the respective coils as well as heat conduction inside the coils are modelled. Different formulas for the HTC are tested in the post-processing of the simulation results. The HTC for each magnet is then determined experimentally by measuring surface temperatures on the coils through time at constant currents. A method to extract the HTC from these temperature curves is developed, in which the curves are fitted to a function that is derived from a thermodynamical analysis of the heating process. Some plausible ranges for the HTC for each magnet for different currents are obtained. The results of the different estimation methods are compared with the experimental results of the HTC.
id cern-2238393
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22383932019-09-30T06:29:59Zhttp://cds.cern.ch/record/2238393engMoreira, MarianaNatural air convection for cooling of particle accelerator electromagnets: case studies at CERNAccelerators and Storage RingsOther Fields of PhysicsCooling by natural convection is investigated on two air-cooled corrector magnets at CERN. The heat transfer coefficient (HTC) for each magnet is estimated analytically using established empirical correlations for certain geometries. The HTC is also estimated numerically with three-dimensional steady-state finite element simulations. Air convection around the respective coils as well as heat conduction inside the coils are modelled. Different formulas for the HTC are tested in the post-processing of the simulation results. The HTC for each magnet is then determined experimentally by measuring surface temperatures on the coils through time at constant currents. A method to extract the HTC from these temperature curves is developed, in which the curves are fitted to a function that is derived from a thermodynamical analysis of the heating process. Some plausible ranges for the HTC for each magnet for different currents are obtained. The results of the different estimation methods are compared with the experimental results of the HTC.CERN-THESIS-2015-378oai:cds.cern.ch:22383932016-12-07T17:41:23Z
spellingShingle Accelerators and Storage Rings
Other Fields of Physics
Moreira, Mariana
Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title_full Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title_fullStr Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title_full_unstemmed Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title_short Natural air convection for cooling of particle accelerator electromagnets: case studies at CERN
title_sort natural air convection for cooling of particle accelerator electromagnets: case studies at cern
topic Accelerators and Storage Rings
Other Fields of Physics
url http://cds.cern.ch/record/2238393
work_keys_str_mv AT moreiramariana naturalairconvectionforcoolingofparticleacceleratorelectromagnetscasestudiesatcern