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Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables

This thesis is a study of how heat is transported in non-steady-state conditions from a superconducting Rutherford cable to a bath of superfluid helium (He II). The same type of superconducting cable is used in the dipole magnets of the Large Hadron Collider (LHC). The dipole magnets of the LHC are i...

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Autor principal: Galinhas, Bruno Emanuel Martins
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:http://cds.cern.ch/record/2640643
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author Galinhas, Bruno Emanuel Martins
author_facet Galinhas, Bruno Emanuel Martins
author_sort Galinhas, Bruno Emanuel Martins
collection CERN
description This thesis is a study of how heat is transported in non-steady-state conditions from a superconducting Rutherford cable to a bath of superfluid helium (He II). The same type of superconducting cable is used in the dipole magnets of the Large Hadron Collider (LHC). The dipole magnets of the LHC are immersed in a bath of He II at 1.9 K. At this temperature helium has an extremely high thermal conductivity. During operation, heat needs to be efficiently extracted from the dipole magnets to keep their superconducting state. The thermal stability of the magnets is crucial for the operation of the LHC, therefore it is necessary to understand how heat is transported from the superconducting cables to the He II bath. In He II the heat transfer can be described by the Landau regime or by the Gorter-Mellink regime, depending on the heat flux. In this thesis both measurements and numerical simulation have been performed to study the heat transfer in the two regimes. A temperature increase of 8 ± 2 mK of the superconducting cables was successfully measured experimentally. A new numerical model that covers the two heat transfer regimes has been developed. The numerical model has been validated by comparison with existing experimental data. A comparison is made between the measurements and the numerical results obtained with the developed model.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
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spelling oai-inspirehep.net-16955412019-09-30T06:29:59Zhttp://cds.cern.ch/record/2640643engGalinhas, Bruno Emanuel MartinsStudy of Helium II Heat Transport Phenomena in Superconducting Rutherford Type CablesAccelerators and Storage RingsThis thesis is a study of how heat is transported in non-steady-state conditions from a superconducting Rutherford cable to a bath of superfluid helium (He II). The same type of superconducting cable is used in the dipole magnets of the Large Hadron Collider (LHC). The dipole magnets of the LHC are immersed in a bath of He II at 1.9 K. At this temperature helium has an extremely high thermal conductivity. During operation, heat needs to be efficiently extracted from the dipole magnets to keep their superconducting state. The thermal stability of the magnets is crucial for the operation of the LHC, therefore it is necessary to understand how heat is transported from the superconducting cables to the He II bath. In He II the heat transfer can be described by the Landau regime or by the Gorter-Mellink regime, depending on the heat flux. In this thesis both measurements and numerical simulation have been performed to study the heat transfer in the two regimes. A temperature increase of 8 ± 2 mK of the superconducting cables was successfully measured experimentally. A new numerical model that covers the two heat transfer regimes has been developed. The numerical model has been validated by comparison with existing experimental data. A comparison is made between the measurements and the numerical results obtained with the developed model.CERN-THESIS-2015-468oai:inspirehep.net:16955412018-09-28T04:22:23Z
spellingShingle Accelerators and Storage Rings
Galinhas, Bruno Emanuel Martins
Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title_full Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title_fullStr Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title_full_unstemmed Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title_short Study of Helium II Heat Transport Phenomena in Superconducting Rutherford Type Cables
title_sort study of helium ii heat transport phenomena in superconducting rutherford type cables
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2640643
work_keys_str_mv AT galinhasbrunoemanuelmartins studyofheliumiiheattransportphenomenainsuperconductingrutherfordtypecables