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Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE

The ISOLDE facility at CERN is one of the first facilities in the world dedicated to the production of the radioactive ion beams (RIB) and during all its working time underwent several upgrades. The goal of the latest proposed upgrade, ‘The High Intensity and Energy ISOLDE’ (HIE-ISOLDE), is to provi...

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Autores principales: Romanets, Y, Bernardes, A P, Dorsival, A, Goncalves, I F, Kadi, Y, Maria, S di, Vaz, P, Vlachoudis, V, Vollaire, J
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1093/rpd/ncu031
http://cds.cern.ch/record/2025801
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author Romanets, Y
Bernardes, A P
Dorsival, A
Goncalves, I F
Kadi, Y
Maria, S di
Vaz, P
Vlachoudis, V
Vollaire, J
author_facet Romanets, Y
Bernardes, A P
Dorsival, A
Goncalves, I F
Kadi, Y
Maria, S di
Vaz, P
Vlachoudis, V
Vollaire, J
author_sort Romanets, Y
collection CERN
description The ISOLDE facility at CERN is one of the first facilities in the world dedicated to the production of the radioactive ion beams (RIB) and during all its working time underwent several upgrades. The goal of the latest proposed upgrade, ‘The High Intensity and Energy ISOLDE’ (HIE-ISOLDE), is to provide a higher performance facility in order to approximate it to the level of the next generation ISOL facilities, like EURISOL. The HIE-ISOLDE aims to improve significantly the quality of the produced RIB and for this reason the increasing of the primary beam power is one of the main objectives of the project. An increase in the nominal beam current (from 2 to 6 μA proton beam intensity) and energy (from 1.4 GeV to 2 GeV) of the primary proton beam will be possible due to the upgrade of CERN’s accelerator infrastructure. The current upgrade means reassessment of the radiation protection and the radiation safety of the facility. However, an evaluation of the existing shielding configuration and access restrictions to the experimental and supply areas must be carried out. Monte Carlo calculations were performed in order to evaluate the radiation protection of the facility as well as radiation shielding assessment and design. The FLUKA—Monte Carlo code was used in this study to calculate the ambient dose rate distribution and particle fluxes in the most important areas, such as the experimental hall of the facility. The results indicate a significant increase in the ambient dose equivalent rate in some areas of the experimental hall when an upgrade configuration of the primary proton beam is considered. Special attention is required for the shielding of the target area once it is the main and very intensive radiation source, especially under the upgrade conditions. In this study, the access points to the beam extraction and beam maintenance areas, such as the mass separator rooms and the high voltage room, are identified as the most sensitive for the experimental hall from the radiation protection point of view.
id oai-inspirehep.net-1320668
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling oai-inspirehep.net-13206682019-09-30T06:29:59Zdoi:10.1093/rpd/ncu031http://cds.cern.ch/record/2025801engRomanets, YBernardes, A PDorsival, AGoncalves, I FKadi, YMaria, S diVaz, PVlachoudis, VVollaire, JEvaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDEDetectors and Experimental TechniquesAccelerators and Storage RingsThe ISOLDE facility at CERN is one of the first facilities in the world dedicated to the production of the radioactive ion beams (RIB) and during all its working time underwent several upgrades. The goal of the latest proposed upgrade, ‘The High Intensity and Energy ISOLDE’ (HIE-ISOLDE), is to provide a higher performance facility in order to approximate it to the level of the next generation ISOL facilities, like EURISOL. The HIE-ISOLDE aims to improve significantly the quality of the produced RIB and for this reason the increasing of the primary beam power is one of the main objectives of the project. An increase in the nominal beam current (from 2 to 6 μA proton beam intensity) and energy (from 1.4 GeV to 2 GeV) of the primary proton beam will be possible due to the upgrade of CERN’s accelerator infrastructure. The current upgrade means reassessment of the radiation protection and the radiation safety of the facility. However, an evaluation of the existing shielding configuration and access restrictions to the experimental and supply areas must be carried out. Monte Carlo calculations were performed in order to evaluate the radiation protection of the facility as well as radiation shielding assessment and design. The FLUKA—Monte Carlo code was used in this study to calculate the ambient dose rate distribution and particle fluxes in the most important areas, such as the experimental hall of the facility. The results indicate a significant increase in the ambient dose equivalent rate in some areas of the experimental hall when an upgrade configuration of the primary proton beam is considered. Special attention is required for the shielding of the target area once it is the main and very intensive radiation source, especially under the upgrade conditions. In this study, the access points to the beam extraction and beam maintenance areas, such as the mass separator rooms and the high voltage room, are identified as the most sensitive for the experimental hall from the radiation protection point of view.oai:inspirehep.net:13206682014
spellingShingle Detectors and Experimental Techniques
Accelerators and Storage Rings
Romanets, Y
Bernardes, A P
Dorsival, A
Goncalves, I F
Kadi, Y
Maria, S di
Vaz, P
Vlachoudis, V
Vollaire, J
Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title_full Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title_fullStr Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title_full_unstemmed Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title_short Evaluation of the radiation field and shielding assessment of the experimental area of HIE-ISOLDE
title_sort evaluation of the radiation field and shielding assessment of the experimental area of hie-isolde
topic Detectors and Experimental Techniques
Accelerators and Storage Rings
url https://dx.doi.org/10.1093/rpd/ncu031
http://cds.cern.ch/record/2025801
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