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Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge

This paper presents the analysis of some quench tests addressed to study the dynamic effects in the 1-m-long 120-mm-aperture Nb$_{3}$Sn quadrupole magnet, i.e., HQ02b, designed, fabricated, and tested by the LHC Accelerator Research Program. The magnet has a short sample gradient of 205 T/m at 1.9 K...

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Autores principales: Sorbi, Massimo, Ambrosio, Giorgio, Bajas, Hugo, Chlachidze, Guram, Marinozzi, Vittorio, Mariotto, Samuele, Sabbi, Gianluca
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2016.2524584
http://cds.cern.ch/record/2265294
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author Sorbi, Massimo
Ambrosio, Giorgio
Bajas, Hugo
Chlachidze, Guram
Marinozzi, Vittorio
Mariotto, Samuele
Sabbi, Gianluca
author_facet Sorbi, Massimo
Ambrosio, Giorgio
Bajas, Hugo
Chlachidze, Guram
Marinozzi, Vittorio
Mariotto, Samuele
Sabbi, Gianluca
author_sort Sorbi, Massimo
collection CERN
description This paper presents the analysis of some quench tests addressed to study the dynamic effects in the 1-m-long 120-mm-aperture Nb$_{3}$Sn quadrupole magnet, i.e., HQ02b, designed, fabricated, and tested by the LHC Accelerator Research Program. The magnet has a short sample gradient of 205 T/m at 1.9 K and a peak field of 14.2 T. The test campaign has been performed at CERN in April 2014. In the specific tests, which were dedicated to the measurements of the dynamic inductance of the magnet during the rapid current discharge for a quench, the protection heaters were activated only in some windings, in order to obtain the measure of the resistive and inductive voltages separately. The analysis of the results confirms a very low value of the dynamic inductance at the beginning of the discharge, which later approaches the nominal value. Indications of dynamic inductance variation were already found from the analysis of current decay during quenches in the previous magnets HQ02a and HQ02a2; however, with this dedicated test of HQ02b, a quantitative measurement and assessment has been possible. An analytical model using interfilament coupling current influence for the inductance lowering has been implemented in the quench calculation code QLASA, and the comparison with experimental data is given. The agreement of the model with the experimental results is very good and allows predicting more accurately the critical parameters in quench analysis (MIITs, hot spot temperature) for the MQXF Nb$_{3}$Sn quadrupoles, which will be installed in the High Luminosity LHC.
id oai-inspirehep.net-1479355
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14793552020-08-28T12:56:04Zdoi:10.1109/TASC.2016.2524584http://cds.cern.ch/record/2265294engSorbi, MassimoAmbrosio, GiorgioBajas, HugoChlachidze, GuramMarinozzi, VittorioMariotto, SamueleSabbi, GianlucaMeasurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid DischargeAccelerators and Storage RingsThis paper presents the analysis of some quench tests addressed to study the dynamic effects in the 1-m-long 120-mm-aperture Nb$_{3}$Sn quadrupole magnet, i.e., HQ02b, designed, fabricated, and tested by the LHC Accelerator Research Program. The magnet has a short sample gradient of 205 T/m at 1.9 K and a peak field of 14.2 T. The test campaign has been performed at CERN in April 2014. In the specific tests, which were dedicated to the measurements of the dynamic inductance of the magnet during the rapid current discharge for a quench, the protection heaters were activated only in some windings, in order to obtain the measure of the resistive and inductive voltages separately. The analysis of the results confirms a very low value of the dynamic inductance at the beginning of the discharge, which later approaches the nominal value. Indications of dynamic inductance variation were already found from the analysis of current decay during quenches in the previous magnets HQ02a and HQ02a2; however, with this dedicated test of HQ02b, a quantitative measurement and assessment has been possible. An analytical model using interfilament coupling current influence for the inductance lowering has been implemented in the quench calculation code QLASA, and the comparison with experimental data is given. The agreement of the model with the experimental results is very good and allows predicting more accurately the critical parameters in quench analysis (MIITs, hot spot temperature) for the MQXF Nb$_{3}$Sn quadrupoles, which will be installed in the High Luminosity LHC.FERMILAB-PUB-16-395-TDoai:inspirehep.net:14793552016
spellingShingle Accelerators and Storage Rings
Sorbi, Massimo
Ambrosio, Giorgio
Bajas, Hugo
Chlachidze, Guram
Marinozzi, Vittorio
Mariotto, Samuele
Sabbi, Gianluca
Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title_full Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title_fullStr Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title_full_unstemmed Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title_short Measurements and Analysis of Dynamic Effects in the LARP Model Quadrupole HQ02b During Rapid Discharge
title_sort measurements and analysis of dynamic effects in the larp model quadrupole hq02b during rapid discharge
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2016.2524584
http://cds.cern.ch/record/2265294
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AT bajashugo measurementsandanalysisofdynamiceffectsinthelarpmodelquadrupolehq02bduringrapiddischarge
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