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Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters

The efficiency of the magnet protection by quench heaters was studied using a novel method which derives the temperature profile in a superconducting magnet during a quench from measured voltage signals. In several Large Hadron Collider single aperture dipole models, temperature profiles and tempera...

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Detalles Bibliográficos
Autores principales: Maroussov, V, Sanfilippo, S, Siemko, A
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/411161
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author Maroussov, V
Sanfilippo, S
Siemko, A
author_facet Maroussov, V
Sanfilippo, S
Siemko, A
author_sort Maroussov, V
collection CERN
description The efficiency of the magnet protection by quench heaters was studied using a novel method which derives the temperature profile in a superconducting magnet during a quench from measured voltage signals. In several Large Hadron Collider single aperture dipole models, temperature profiles and temperature gradients in the magnet coil have been evaluated in the case of protection by different sets of quench heaters and different powering and protection parameters. The influence of the insulation thickness between the quench heaters and the coil has also been considered. The results show clear correlation between the positions of quench heaters, magnet protection parameters and temperature profiles. This study allowed a better understanding of the quench process mechanisms and the efficiency assessment of the different protection schemes.
id cern-411161
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4111612023-05-31T13:23:43Zhttp://cds.cern.ch/record/411161engMaroussov, VSanfilippo, SSiemko, ATemperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench HeatersAccelerators and Storage RingsThe efficiency of the magnet protection by quench heaters was studied using a novel method which derives the temperature profile in a superconducting magnet during a quench from measured voltage signals. In several Large Hadron Collider single aperture dipole models, temperature profiles and temperature gradients in the magnet coil have been evaluated in the case of protection by different sets of quench heaters and different powering and protection parameters. The influence of the insulation thickness between the quench heaters and the coil has also been considered. The results show clear correlation between the positions of quench heaters, magnet protection parameters and temperature profiles. This study allowed a better understanding of the quench process mechanisms and the efficiency assessment of the different protection schemes.LHC-Project-Report-360CERN-LHC-Project-Report-360oai:cds.cern.ch:4111611999-12-01
spellingShingle Accelerators and Storage Rings
Maroussov, V
Sanfilippo, S
Siemko, A
Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title_full Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title_fullStr Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title_full_unstemmed Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title_short Temperature Profiles During Quenches in LHC Superconducting Dipole Magnets Protected by Quench Heaters
title_sort temperature profiles during quenches in lhc superconducting dipole magnets protected by quench heaters
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/411161
work_keys_str_mv AT maroussovv temperatureprofilesduringquenchesinlhcsuperconductingdipolemagnetsprotectedbyquenchheaters
AT sanfilippos temperatureprofilesduringquenchesinlhcsuperconductingdipolemagnetsprotectedbyquenchheaters
AT siemkoa temperatureprofilesduringquenchesinlhcsuperconductingdipolemagnetsprotectedbyquenchheaters