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EURISOL-DS Multi-MW Target Test predictions for the converter target

The Eurisol project has been initiated by the European Commission to demonstrate the feasibility of a facility for producing large yields of exotic isotopes. At the core of the projected facility, the neutron source produces spallation neutrons from a proton beam impacting dense liquid metal. The li...

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Autores principales: Samec, K, Lindroos, Mats, Kadi, Yacine, Kharoua, Cyril, Rocca, Roberto
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/1152296
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author Samec, K
Lindroos, Mats
Kadi, Yacine
Kharoua, Cyril
Rocca, Roberto
author_facet Samec, K
Lindroos, Mats
Kadi, Yacine
Kharoua, Cyril
Rocca, Roberto
author_sort Samec, K
collection CERN
description The Eurisol project has been initiated by the European Commission to demonstrate the feasibility of a facility for producing large yields of exotic isotopes. At the core of the projected facility, the neutron source produces spallation neutrons from a proton beam impacting dense liquid metal. The liquid metal circulates at high speed inside the source, a closed vessel with a beam window. The type of the design is diversely described as coaxially guided stream or CGS; an outer annulus converges towards a concave conical shell from which the liquid metal reverses back in the opposite direction. The current CGS design of the source has been built and is to be tested. This technical report summarises preparations for the test and predictions.
id cern-1152296
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
record_format invenio
spelling cern-11522962019-09-30T06:29:59Zhttp://cds.cern.ch/record/1152296engSamec, KLindroos, MatsKadi, YacineKharoua, CyrilRocca, RobertoEURISOL-DS Multi-MW Target Test predictions for the converter targetEngineeringThe Eurisol project has been initiated by the European Commission to demonstrate the feasibility of a facility for producing large yields of exotic isotopes. At the core of the projected facility, the neutron source produces spallation neutrons from a proton beam impacting dense liquid metal. The liquid metal circulates at high speed inside the source, a closed vessel with a beam window. The type of the design is diversely described as coaxially guided stream or CGS; an outer annulus converges towards a concave conical shell from which the liquid metal reverses back in the opposite direction. The current CGS design of the source has been built and is to be tested. This technical report summarises preparations for the test and predictions.CERN-AB-Note-2008-057-ATBEURISOL-02-25-2008-0031oai:cds.cern.ch:11522962008-09-16
spellingShingle Engineering
Samec, K
Lindroos, Mats
Kadi, Yacine
Kharoua, Cyril
Rocca, Roberto
EURISOL-DS Multi-MW Target Test predictions for the converter target
title EURISOL-DS Multi-MW Target Test predictions for the converter target
title_full EURISOL-DS Multi-MW Target Test predictions for the converter target
title_fullStr EURISOL-DS Multi-MW Target Test predictions for the converter target
title_full_unstemmed EURISOL-DS Multi-MW Target Test predictions for the converter target
title_short EURISOL-DS Multi-MW Target Test predictions for the converter target
title_sort eurisol-ds multi-mw target test predictions for the converter target
topic Engineering
url http://cds.cern.ch/record/1152296
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AT lindroosmats eurisoldsmultimwtargettestpredictionsfortheconvertertarget
AT kadiyacine eurisoldsmultimwtargettestpredictionsfortheconvertertarget
AT kharouacyril eurisoldsmultimwtargettestpredictionsfortheconvertertarget
AT roccaroberto eurisoldsmultimwtargettestpredictionsfortheconvertertarget