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Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV

Calculation data of neutron effective dose behind concrete shielding with thickness up to 3 meters is presented. The calculations have been performed by the Monte Carlo and phenomenological methods for monoenergetic neutrons with energy from 5 to 100 MeV as well as for neutron spectra produced by pr...

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Detalles Bibliográficos
Autores principales: Alejnikov, V E, Beskrovnaya, L G, Krylov, A R
Lenguaje:rus
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/747552
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author Alejnikov, V E
Beskrovnaya, L G
Krylov, A R
author_facet Alejnikov, V E
Beskrovnaya, L G
Krylov, A R
author_sort Alejnikov, V E
collection CERN
description Calculation data of neutron effective dose behind concrete shielding with thickness up to 3 meters is presented. The calculations have been performed by the Monte Carlo and phenomenological methods for monoenergetic neutrons with energy from 5 to 100 MeV as well as for neutron spectra produced by protons with energies of 30 and 72 MeV in thick targets. Comparison between calculations of neutron effective dose behind shielding using phenomenological approach and those by the Monte Carlo method normally shows agreement to within a factor of better than two, i.e. estimation of shielding thickness by those methods shall not exceed one half value layer of neutron effective dose attenuation in shielding. It amounts from 10 to 30 cm of concrete shielding for neutron energies and thickness of shields under consideration
id cern-747552
institution Organización Europea para la Investigación Nuclear
language rus
publishDate 2002
record_format invenio
spelling cern-7475522019-09-30T06:29:59Zhttp://cds.cern.ch/record/747552rusAlejnikov, V EBeskrovnaya, L GKrylov, A RNeutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeVAccelerators and Storage RingsCalculation data of neutron effective dose behind concrete shielding with thickness up to 3 meters is presented. The calculations have been performed by the Monte Carlo and phenomenological methods for monoenergetic neutrons with energy from 5 to 100 MeV as well as for neutron spectra produced by protons with energies of 30 and 72 MeV in thick targets. Comparison between calculations of neutron effective dose behind shielding using phenomenological approach and those by the Monte Carlo method normally shows agreement to within a factor of better than two, i.e. estimation of shielding thickness by those methods shall not exceed one half value layer of neutron effective dose attenuation in shielding. It amounts from 10 to 30 cm of concrete shielding for neutron energies and thickness of shields under considerationJINR-R16-2002-254oai:cds.cern.ch:7475522002
spellingShingle Accelerators and Storage Rings
Alejnikov, V E
Beskrovnaya, L G
Krylov, A R
Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title_full Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title_fullStr Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title_full_unstemmed Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title_short Neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 MeV
title_sort neutron effective dose calculation behind concrete shielding of charged particle accelerators with energy up to 100 mev
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/747552
work_keys_str_mv AT alejnikovve neutroneffectivedosecalculationbehindconcreteshieldingofchargedparticleacceleratorswithenergyupto100mev
AT beskrovnayalg neutroneffectivedosecalculationbehindconcreteshieldingofchargedparticleacceleratorswithenergyupto100mev
AT krylovar neutroneffectivedosecalculationbehindconcreteshieldingofchargedparticleacceleratorswithenergyupto100mev