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Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance

Premature training quenches are usually caused by the transient energy released within the magnet coil as it is energised. Two distinct varieties of disturbances exist. They are thought to be electrical and mechanical in origin. The first type of disturbance comes from non-uniform current distributi...

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Detalles Bibliográficos
Autores principales: Khomenko, B A, Pugnat, P, Rijllart, A, Sanfilippo, S, Siemko, A
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/483493
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author Khomenko, B A
Pugnat, P
Rijllart, A
Sanfilippo, S
Siemko, A
author_facet Khomenko, B A
Pugnat, P
Rijllart, A
Sanfilippo, S
Siemko, A
author_sort Khomenko, B A
collection CERN
description Premature training quenches are usually caused by the transient energy released within the magnet coil as it is energised. Two distinct varieties of disturbances exist. They are thought to be electrical and mechanical in origin. The first type of disturbance comes from non-uniform current distribution in superconducting cables whereas the second one usually originates from conductor motions or micro-fractures of insulating materials under the action of Lorentz forces. All of these mechanical events produce in general a rapid variation of the voltages in the so-called quench antennas and across the magnet coil, called spikes. A statistical method to treat the spatial localisation and the time occurrence of spikes will be presented. It allows identification of the mechanical weak points in the magnet without need to increase the current to provoke a quench. The prediction of the quench level from detailed analysis of the spike statistics can be expected.
id cern-483493
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4834932023-05-31T13:20:37Zhttp://cds.cern.ch/record/483493engKhomenko, B APugnat, PRijllart, ASanfilippo, SSiemko, AStatistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench PerformanceAccelerators and Storage RingsPremature training quenches are usually caused by the transient energy released within the magnet coil as it is energised. Two distinct varieties of disturbances exist. They are thought to be electrical and mechanical in origin. The first type of disturbance comes from non-uniform current distribution in superconducting cables whereas the second one usually originates from conductor motions or micro-fractures of insulating materials under the action of Lorentz forces. All of these mechanical events produce in general a rapid variation of the voltages in the so-called quench antennas and across the magnet coil, called spikes. A statistical method to treat the spatial localisation and the time occurrence of spikes will be presented. It allows identification of the mechanical weak points in the magnet without need to increase the current to provoke a quench. The prediction of the quench level from detailed analysis of the spike statistics can be expected.LHC-Project-Report-455CERN-LHC-Project-Report-455oai:cds.cern.ch:4834932000-12-22
spellingShingle Accelerators and Storage Rings
Khomenko, B A
Pugnat, P
Rijllart, A
Sanfilippo, S
Siemko, A
Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title_full Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title_fullStr Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title_full_unstemmed Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title_short Statistical Diagnosis Method of Conductor Motions in Superconducting Magnets to Predict their Quench Performance
title_sort statistical diagnosis method of conductor motions in superconducting magnets to predict their quench performance
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/483493
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AT pugnatp statisticaldiagnosismethodofconductormotionsinsuperconductingmagnetstopredicttheirquenchperformance
AT rijllarta statisticaldiagnosismethodofconductormotionsinsuperconductingmagnetstopredicttheirquenchperformance
AT sanfilippos statisticaldiagnosismethodofconductormotionsinsuperconductingmagnetstopredicttheirquenchperformance
AT siemkoa statisticaldiagnosismethodofconductormotionsinsuperconductingmagnetstopredicttheirquenchperformance