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A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets

CERN has recently designed and constructed a new cryogenic facility for testing large and heavy superconducting magnets at liquid helium temperatures. The facility, erected in a large assembly hall with cranes capable of up to 100 t, provides a cooling capacity of 1.2 kW at 4.5 K equivalent, 15-kW L...

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Autores principales: Serio, Luigi, Schnizer, Pierre, Arnaud, Michel, Bertone, Caterina, Blanco, Enrique, Calcoen, Daniel, Charrondiere, Maryline, Cho, Eun Jung, Coelingh, Gert-Jan, Dahlerup-Petersen, Knud, Dhalla, Fahim, Denz, Reiner, Derking, J Hendrie, Golluccio, Giancarlo, Hay, David, Henriques, Andre, Inglese, Vitaliano, Kosmicki, Antoine, Mertens, Volker, Missiaen, Dominique, Mueller, Hans, Muttoni, Yvon, Moccia, Stefano, Necca, Rene, Perin, Antonio, Pschorn, Ina, Russenschuck, Stephan, Steckert, Jens, Szwangruber, Piotr, Thiesen, Hugues, Velonas, Vasilis, Wamers, Felix, Willering, Gerard, Xiang, Yu
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2016.2626270
http://cds.cern.ch/record/2636331
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author Serio, Luigi
Schnizer, Pierre
Arnaud, Michel
Bertone, Caterina
Blanco, Enrique
Calcoen, Daniel
Charrondiere, Maryline
Cho, Eun Jung
Coelingh, Gert-Jan
Dahlerup-Petersen, Knud
Dhalla, Fahim
Denz, Reiner
Derking, J Hendrie
Golluccio, Giancarlo
Hay, David
Henriques, Andre
Inglese, Vitaliano
Kosmicki, Antoine
Mertens, Volker
Missiaen, Dominique
Mueller, Hans
Muttoni, Yvon
Moccia, Stefano
Necca, Rene
Perin, Antonio
Pschorn, Ina
Russenschuck, Stephan
Steckert, Jens
Szwangruber, Piotr
Thiesen, Hugues
Velonas, Vasilis
Wamers, Felix
Willering, Gerard
Xiang, Yu
author_facet Serio, Luigi
Schnizer, Pierre
Arnaud, Michel
Bertone, Caterina
Blanco, Enrique
Calcoen, Daniel
Charrondiere, Maryline
Cho, Eun Jung
Coelingh, Gert-Jan
Dahlerup-Petersen, Knud
Dhalla, Fahim
Denz, Reiner
Derking, J Hendrie
Golluccio, Giancarlo
Hay, David
Henriques, Andre
Inglese, Vitaliano
Kosmicki, Antoine
Mertens, Volker
Missiaen, Dominique
Mueller, Hans
Muttoni, Yvon
Moccia, Stefano
Necca, Rene
Perin, Antonio
Pschorn, Ina
Russenschuck, Stephan
Steckert, Jens
Szwangruber, Piotr
Thiesen, Hugues
Velonas, Vasilis
Wamers, Felix
Willering, Gerard
Xiang, Yu
author_sort Serio, Luigi
collection CERN
description CERN has recently designed and constructed a new cryogenic facility for testing large and heavy superconducting magnets at liquid helium temperatures. The facility, erected in a large assembly hall with cranes capable of up to 100 t, provides a cooling capacity of 1.2 kW at 4.5 K equivalent, 15-kW LN$_2$ cooling and warming capabilities for up to three magnets in parallel. The facility provides the required technical infrastructure for continuous and reliable operation. Test capabilities comprise electrical, cryogenics, vacuum and mechanical verification, and validation at ambient and liquid helium temperatures. A comprehensive survey and magnetic measurement system, comprising a hall-probe mapper, a rotating-coil magnetometer, a stretched wire, a translating fluxmeter, and a laser tracker, allows the detailed measurement of the magnetic field strength and quality on a large volume. The magnetic axes of the quadrupoles can be established within $\pm 0.2$ mm at $1 \sigma$ accuracy. The facility has been equipped with power supplies, three converters of $\pm 500$ A/120 V, and six converters of $\pm 600$ A/40 V, as well as the required energy extraction, quench protection, data acquisition, and interlocks for the testing of superconducting magnets for the FAIR project, currently under construction at the GSI Research Center, in Darmstadt, Germany. The versatile design of the facility, its layout, and testing capabilities complements CERN's other test infrastructures for large superconducting magnets. We report on the design, construction, and commissioning of the facility as well as the expected capabilities and performances for future tests of large and heavy superconducting magnets.
id oai-inspirehep.net-1689436
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-16894362019-09-30T06:29:59Zdoi:10.1109/TASC.2016.2626270http://cds.cern.ch/record/2636331engSerio, LuigiSchnizer, PierreArnaud, MichelBertone, CaterinaBlanco, EnriqueCalcoen, DanielCharrondiere, MarylineCho, Eun JungCoelingh, Gert-JanDahlerup-Petersen, KnudDhalla, FahimDenz, ReinerDerking, J HendrieGolluccio, GiancarloHay, DavidHenriques, AndreInglese, VitalianoKosmicki, AntoineMertens, VolkerMissiaen, DominiqueMueller, HansMuttoni, YvonMoccia, StefanoNecca, RenePerin, AntonioPschorn, InaRussenschuck, StephanSteckert, JensSzwangruber, PiotrThiesen, HuguesVelonas, VasilisWamers, FelixWillering, GerardXiang, YuA New Cryogenic Test Facility for Large and Heavy Superconducting MagnetsDetectors and Experimental TechniquesCERN has recently designed and constructed a new cryogenic facility for testing large and heavy superconducting magnets at liquid helium temperatures. The facility, erected in a large assembly hall with cranes capable of up to 100 t, provides a cooling capacity of 1.2 kW at 4.5 K equivalent, 15-kW LN$_2$ cooling and warming capabilities for up to three magnets in parallel. The facility provides the required technical infrastructure for continuous and reliable operation. Test capabilities comprise electrical, cryogenics, vacuum and mechanical verification, and validation at ambient and liquid helium temperatures. A comprehensive survey and magnetic measurement system, comprising a hall-probe mapper, a rotating-coil magnetometer, a stretched wire, a translating fluxmeter, and a laser tracker, allows the detailed measurement of the magnetic field strength and quality on a large volume. The magnetic axes of the quadrupoles can be established within $\pm 0.2$ mm at $1 \sigma$ accuracy. The facility has been equipped with power supplies, three converters of $\pm 500$ A/120 V, and six converters of $\pm 600$ A/40 V, as well as the required energy extraction, quench protection, data acquisition, and interlocks for the testing of superconducting magnets for the FAIR project, currently under construction at the GSI Research Center, in Darmstadt, Germany. The versatile design of the facility, its layout, and testing capabilities complements CERN's other test infrastructures for large superconducting magnets. We report on the design, construction, and commissioning of the facility as well as the expected capabilities and performances for future tests of large and heavy superconducting magnets.oai:inspirehep.net:16894362016
spellingShingle Detectors and Experimental Techniques
Serio, Luigi
Schnizer, Pierre
Arnaud, Michel
Bertone, Caterina
Blanco, Enrique
Calcoen, Daniel
Charrondiere, Maryline
Cho, Eun Jung
Coelingh, Gert-Jan
Dahlerup-Petersen, Knud
Dhalla, Fahim
Denz, Reiner
Derking, J Hendrie
Golluccio, Giancarlo
Hay, David
Henriques, Andre
Inglese, Vitaliano
Kosmicki, Antoine
Mertens, Volker
Missiaen, Dominique
Mueller, Hans
Muttoni, Yvon
Moccia, Stefano
Necca, Rene
Perin, Antonio
Pschorn, Ina
Russenschuck, Stephan
Steckert, Jens
Szwangruber, Piotr
Thiesen, Hugues
Velonas, Vasilis
Wamers, Felix
Willering, Gerard
Xiang, Yu
A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title_full A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title_fullStr A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title_full_unstemmed A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title_short A New Cryogenic Test Facility for Large and Heavy Superconducting Magnets
title_sort new cryogenic test facility for large and heavy superconducting magnets
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/TASC.2016.2626270
http://cds.cern.ch/record/2636331
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