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author Sapinski, Mariusz
Auchmann, Bernhard
Bär, Tobias
Bartmann, Wolfgang
Bednarek, Mateusz
Bozyigit, Serkan
Bracco, Chiara
Bruce, Roderik
Cerutti, Francesco
Chetvertkova, Vera
Dahlerup-Petersen, Knud
Dehning, Bernd
Effinger, Ewald
Emery, Jonathan
Guerrero, Ana
Holzer, Eva Barbara
Höfle, Wolfgang
Lechner, Anton
Priebe, Agnieszka
Redaelli, Stefano
Salvachua, Belen
Schmidt, Ruediger
Shetty, Nikhil Vittal
Siemko, Andrzej
Skordis, Eleftherios
Solfaroli Camillocci, Matteo
Steckert, Jens
Uythoven, Jan
Valuch, Daniel
Verweij, Arjan
Wenninger, Jorg
Wollmann, Daniel
Zerlauth, Markus
del Busto, Eduardo
author_facet Sapinski, Mariusz
Auchmann, Bernhard
Bär, Tobias
Bartmann, Wolfgang
Bednarek, Mateusz
Bozyigit, Serkan
Bracco, Chiara
Bruce, Roderik
Cerutti, Francesco
Chetvertkova, Vera
Dahlerup-Petersen, Knud
Dehning, Bernd
Effinger, Ewald
Emery, Jonathan
Guerrero, Ana
Holzer, Eva Barbara
Höfle, Wolfgang
Lechner, Anton
Priebe, Agnieszka
Redaelli, Stefano
Salvachua, Belen
Schmidt, Ruediger
Shetty, Nikhil Vittal
Siemko, Andrzej
Skordis, Eleftherios
Solfaroli Camillocci, Matteo
Steckert, Jens
Uythoven, Jan
Valuch, Daniel
Verweij, Arjan
Wenninger, Jorg
Wollmann, Daniel
Zerlauth, Markus
del Busto, Eduardo
author_sort Sapinski, Mariusz
collection CERN
description At the end of the LHC Run1 a 48-hour quench-test campaign took place to investigate the quench levels of superconducting magnets for loss durations from nanoseconds to tens of seconds. The longitudinal losses produced extended from one meter to hundreds of meters and the number of lost protons varied from 10⁸ to 10¹³. The results of these and other, previously conducted quench experiments, allow the quench levels of several types of LHC magnets under various loss conditions to be assessed. The quench levels are expected to limit LHC performance in the case of steady-state losses in the interaction regions and also in the case of fast losses initiated by dust particles all around the ring. It is therefore required to accurately adjust beam loss abort thresholds in order to maximize the operation time. A detailed discussion of these quench test results and a proposal for additional tests after the LHC restart is presented.
id oai-inspirehep.net-1314083
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling oai-inspirehep.net-13140832022-08-17T13:30:38Zdoi:10.18429/JACoW-IPAC2014-MOOCB01http://cds.cern.ch/record/2003156engSapinski, MariuszAuchmann, BernhardBär, TobiasBartmann, WolfgangBednarek, MateuszBozyigit, SerkanBracco, ChiaraBruce, RoderikCerutti, FrancescoChetvertkova, VeraDahlerup-Petersen, KnudDehning, BerndEffinger, EwaldEmery, JonathanGuerrero, AnaHolzer, Eva BarbaraHöfle, WolfgangLechner, AntonPriebe, AgnieszkaRedaelli, StefanoSalvachua, BelenSchmidt, RuedigerShetty, Nikhil VittalSiemko, AndrzejSkordis, EleftheriosSolfaroli Camillocci, MatteoSteckert, JensUythoven, JanValuch, DanielVerweij, ArjanWenninger, JorgWollmann, DanielZerlauth, Markusdel Busto, EduardoBeam-induced Quench Tests of LHC MagnetsAccelerators and Storage RingsAt the end of the LHC Run1 a 48-hour quench-test campaign took place to investigate the quench levels of superconducting magnets for loss durations from nanoseconds to tens of seconds. The longitudinal losses produced extended from one meter to hundreds of meters and the number of lost protons varied from 10⁸ to 10¹³. The results of these and other, previously conducted quench experiments, allow the quench levels of several types of LHC magnets under various loss conditions to be assessed. The quench levels are expected to limit LHC performance in the case of steady-state losses in the interaction regions and also in the case of fast losses initiated by dust particles all around the ring. It is therefore required to accurately adjust beam loss abort thresholds in order to maximize the operation time. A detailed discussion of these quench test results and a proposal for additional tests after the LHC restart is presented.oai:inspirehep.net:13140832014
spellingShingle Accelerators and Storage Rings
Sapinski, Mariusz
Auchmann, Bernhard
Bär, Tobias
Bartmann, Wolfgang
Bednarek, Mateusz
Bozyigit, Serkan
Bracco, Chiara
Bruce, Roderik
Cerutti, Francesco
Chetvertkova, Vera
Dahlerup-Petersen, Knud
Dehning, Bernd
Effinger, Ewald
Emery, Jonathan
Guerrero, Ana
Holzer, Eva Barbara
Höfle, Wolfgang
Lechner, Anton
Priebe, Agnieszka
Redaelli, Stefano
Salvachua, Belen
Schmidt, Ruediger
Shetty, Nikhil Vittal
Siemko, Andrzej
Skordis, Eleftherios
Solfaroli Camillocci, Matteo
Steckert, Jens
Uythoven, Jan
Valuch, Daniel
Verweij, Arjan
Wenninger, Jorg
Wollmann, Daniel
Zerlauth, Markus
del Busto, Eduardo
Beam-induced Quench Tests of LHC Magnets
title Beam-induced Quench Tests of LHC Magnets
title_full Beam-induced Quench Tests of LHC Magnets
title_fullStr Beam-induced Quench Tests of LHC Magnets
title_full_unstemmed Beam-induced Quench Tests of LHC Magnets
title_short Beam-induced Quench Tests of LHC Magnets
title_sort beam-induced quench tests of lhc magnets
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2014-MOOCB01
http://cds.cern.ch/record/2003156
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