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Measurement of Superconducting Busbars Models for the LHC Main Dipole

The LHC main dipoles will be connected in series by superconducting busbars, consisting of a superconducting cable brazed onto a stabilizing copper profile. In case of a quench detection, protection heaters will be activated to drive the magnet to theresistive state. In addition, the magnet will be...

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Detalles Bibliográficos
Autores principales: Le Coroller, A, Derégel, J, Henrichsen, K N, Hervieu, M, Juster, F P, Perinet-Marquet, J L, Vlogaert, J
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1109/77.828429
http://cds.cern.ch/record/411145
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author Le Coroller, A
Derégel, J
Henrichsen, K N
Hervieu, M
Juster, F P
Perinet-Marquet, J L
Vlogaert, J
author_facet Le Coroller, A
Derégel, J
Henrichsen, K N
Hervieu, M
Juster, F P
Perinet-Marquet, J L
Vlogaert, J
author_sort Le Coroller, A
collection CERN
description The LHC main dipoles will be connected in series by superconducting busbars, consisting of a superconducting cable brazed onto a stabilizing copper profile. In case of a quench detection, protection heaters will be activated to drive the magnet to theresistive state. In addition, the magnet will be protected by a bypass diode. In order to limit quench propagation, the excitation current is ramped down at an initial rate of 113 A/s and with a time constant equal to 104 s. When a busbar quenches, its temperature must stay below safe values. Comparative measurements of a hollow and a solid busbar were performed in 1.9 K superfluid helium, 4.2 K liquid helium and 4.2 K gaseous helium during the current ramp down. We describe the experimental set-up and report the results. The development of temperatures, the quench propagation velocities as well as the residual resistance ratio (RRR) were measured. The busbar stabilized by a solid copper profile was found to be the most appropriate choice.
id cern-411145
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4111452023-05-31T13:23:40Zdoi:10.1109/77.828429http://cds.cern.ch/record/411145engLe Coroller, ADerégel, JHenrichsen, K NHervieu, MJuster, F PPerinet-Marquet, J LVlogaert, JMeasurement of Superconducting Busbars Models for the LHC Main DipoleAccelerators and Storage RingsThe LHC main dipoles will be connected in series by superconducting busbars, consisting of a superconducting cable brazed onto a stabilizing copper profile. In case of a quench detection, protection heaters will be activated to drive the magnet to theresistive state. In addition, the magnet will be protected by a bypass diode. In order to limit quench propagation, the excitation current is ramped down at an initial rate of 113 A/s and with a time constant equal to 104 s. When a busbar quenches, its temperature must stay below safe values. Comparative measurements of a hollow and a solid busbar were performed in 1.9 K superfluid helium, 4.2 K liquid helium and 4.2 K gaseous helium during the current ramp down. We describe the experimental set-up and report the results. The development of temperatures, the quench propagation velocities as well as the residual resistance ratio (RRR) were measured. The busbar stabilized by a solid copper profile was found to be the most appropriate choice.LHC-Project-Report-344CERN-LHC-Project-Report-344oai:cds.cern.ch:4111451999-12-01
spellingShingle Accelerators and Storage Rings
Le Coroller, A
Derégel, J
Henrichsen, K N
Hervieu, M
Juster, F P
Perinet-Marquet, J L
Vlogaert, J
Measurement of Superconducting Busbars Models for the LHC Main Dipole
title Measurement of Superconducting Busbars Models for the LHC Main Dipole
title_full Measurement of Superconducting Busbars Models for the LHC Main Dipole
title_fullStr Measurement of Superconducting Busbars Models for the LHC Main Dipole
title_full_unstemmed Measurement of Superconducting Busbars Models for the LHC Main Dipole
title_short Measurement of Superconducting Busbars Models for the LHC Main Dipole
title_sort measurement of superconducting busbars models for the lhc main dipole
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/77.828429
http://cds.cern.ch/record/411145
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