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Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia

The unprecedented energy intensities of modern hadron accelerators yield special problems with the materials that are placed close to or into the high intensity beams. It is very difficult to predict structural efficiency and robustness accurately: beam-induced damage occurs in a regime where practi...

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Detalles Bibliográficos
Autores principales: Scapin, M, Peroni, L, Dallocchio, A
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1297198
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author Scapin, M
Peroni, L
Dallocchio, A
author_facet Scapin, M
Peroni, L
Dallocchio, A
author_sort Scapin, M
collection CERN
description The unprecedented energy intensities of modern hadron accelerators yield special problems with the materials that are placed close to or into the high intensity beams. It is very difficult to predict structural efficiency and robustness accurately: beam-induced damage occurs in a regime where practical experience does not exist. This study is performed in order to estimate the damage on a copper component due to the impact with a 7 TeV proton beam generated by LHC. The case study represents an accidental case consequent to an abnormal release of the beam, in which 8 bunches irradiate the target directly. The energy delivered on the component is calculated using the FLUKA code and then used as input in the numerical simulations, that are carried out via the FEM code LS-DYNA. Different numerical models are realized trying to obtain the simplest model able to correctly describe the material response.
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spelling cern-12971982019-09-30T06:29:59Z http://cds.cern.ch/record/1297198 eng Scapin, M Peroni, L Dallocchio, A Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia Accelerators and Storage Rings 8: Collimators & materials for higher beam power beam The unprecedented energy intensities of modern hadron accelerators yield special problems with the materials that are placed close to or into the high intensity beams. It is very difficult to predict structural efficiency and robustness accurately: beam-induced damage occurs in a regime where practical experience does not exist. This study is performed in order to estimate the damage on a copper component due to the impact with a 7 TeV proton beam generated by LHC. The case study represents an accidental case consequent to an abnormal release of the beam, in which 8 bunches irradiate the target directly. The energy delivered on the component is calculated using the FLUKA code and then used as input in the numerical simulations, that are carried out via the FEM code LS-DYNA. Different numerical models are realized trying to obtain the simplest model able to correctly describe the material response. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1297198 2010
spellingShingle Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
Scapin, M
Peroni, L
Dallocchio, A
Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title_full Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title_fullStr Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title_full_unstemmed Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title_short Modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
title_sort modellazione di strutture soggette a shock termomeccanici indotti da fasci di particelle ad alta energia
topic Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
url http://cds.cern.ch/record/1297198
http://cds.cern.ch/record/1297198
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AT peronil modellazionedistrutturesoggetteashocktermomeccaniciindottidafascidiparticelleadaltaenergia
AT dallocchioa modellazionedistrutturesoggetteashocktermomeccaniciindottidafascidiparticelleadaltaenergia