Cargando…

Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets

The magnets for the next steps in accelerator physics, such as the High Luminosity upgrade of the LHC (HL- LHC) and the Future Circular Collider (FCC), require the development of new technologies for manufacturing and monitoring. To meet the HL-LHC new requirements, a large upgrade of the CERN SM18...

Descripción completa

Detalles Bibliográficos
Autores principales: Chiuchiolo, A, Bajas, H, Bajko, M, Castaldo, B, Consales, M, Cusano, A, Giordano, M, Giloux, C, Perez, J C, Sansone, L, Viret, P
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1757-899X/278/1/012082
http://cds.cern.ch/record/2621057
_version_ 1780958566976323584
author Chiuchiolo, A
Bajas, H
Bajko, M
Castaldo, B
Consales, M
Cusano, A
Giordano, M
Giloux, C
Perez, J C
Sansone, L
Viret, P
author_facet Chiuchiolo, A
Bajas, H
Bajko, M
Castaldo, B
Consales, M
Cusano, A
Giordano, M
Giloux, C
Perez, J C
Sansone, L
Viret, P
author_sort Chiuchiolo, A
collection CERN
description The magnets for the next steps in accelerator physics, such as the High Luminosity upgrade of the LHC (HL- LHC) and the Future Circular Collider (FCC), require the development of new technologies for manufacturing and monitoring. To meet the HL-LHC new requirements, a large upgrade of the CERN SM18 cryogenic test facilities is ongoing with the implementation of new cryostats and cryogenic instrumentation. The paper deals with the advances in the development and the calibration of fiber optic sensors in the range 300 - 4 K using a dedicated closed-cycle refrigerator system composed of a pulse tube and a cryogen-free cryostat. The calibrated fiber optic sensors (FOS) have been installed in three vertical cryostats used for testing superconducting magnets down to 1.9 K or 4.2 K and in the variable temperature test bench (100 - 4.2 K). Some examples of FOS measurements of cryostat temperature evolution are presented as well as measurements of strain performed on a subscale of High Temperature Superconducting magnet during its powering tests.
id oai-inspirehep.net-1675367
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16753672019-10-15T15:19:13Zdoi:10.1088/1757-899X/278/1/012082http://cds.cern.ch/record/2621057engChiuchiolo, ABajas, HBajko, MCastaldo, BConsales, MCusano, AGiordano, MGiloux, CPerez, J CSansone, LViret, PCryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnetsAccelerators and Storage RingsThe magnets for the next steps in accelerator physics, such as the High Luminosity upgrade of the LHC (HL- LHC) and the Future Circular Collider (FCC), require the development of new technologies for manufacturing and monitoring. To meet the HL-LHC new requirements, a large upgrade of the CERN SM18 cryogenic test facilities is ongoing with the implementation of new cryostats and cryogenic instrumentation. The paper deals with the advances in the development and the calibration of fiber optic sensors in the range 300 - 4 K using a dedicated closed-cycle refrigerator system composed of a pulse tube and a cryogen-free cryostat. The calibrated fiber optic sensors (FOS) have been installed in three vertical cryostats used for testing superconducting magnets down to 1.9 K or 4.2 K and in the variable temperature test bench (100 - 4.2 K). Some examples of FOS measurements of cryostat temperature evolution are presented as well as measurements of strain performed on a subscale of High Temperature Superconducting magnet during its powering tests.oai:inspirehep.net:16753672017
spellingShingle Accelerators and Storage Rings
Chiuchiolo, A
Bajas, H
Bajko, M
Castaldo, B
Consales, M
Cusano, A
Giordano, M
Giloux, C
Perez, J C
Sansone, L
Viret, P
Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title_full Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title_fullStr Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title_full_unstemmed Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title_short Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
title_sort cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1757-899X/278/1/012082
http://cds.cern.ch/record/2621057
work_keys_str_mv AT chiuchioloa cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT bajash cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT bajkom cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT castaldob cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT consalesm cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT cusanoa cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT giordanom cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT gilouxc cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT perezjc cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT sansonel cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets
AT viretp cryogenictestfacilityinstrumentationwithfiberopticandfiberopticsensorsfortestingsuperconductingacceleratormagnets