CAD-Based Shielding Analysis for ITER Port Diagnostics

Radiation shielding analysis conducted in support of design development of the contemporary diagnostic systems integrated inside the ITER ports is relied on the use of CAD models. This paper presents the CAD-based MCNP Monte Carlo radiation transport and activation analyses for the Diagnostic Upper...

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Main Authors: Serikov Arkady, Fischer Ulrich, Anthoine David, Bertalot Luciano, De Bock Maartin, O’Connor Richard, Juarez Rafael, Krasilnikov Vitaly
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201715303010
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spelling doaj-be0ae7a5b66645d2a275305e7f55a8762021-08-02T11:13:44ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011530301010.1051/epjconf/201715303010epjconf_icrs2017_03010CAD-Based Shielding Analysis for ITER Port DiagnosticsSerikov Arkady0Fischer Ulrich1Anthoine David2Bertalot Luciano3De Bock Maartin4O’Connor Richard5Juarez Rafael6Krasilnikov Vitaly7Karlsruhe Institute of Technology (KIT), Institute for Neutron Physics and Reactor TechnologyKarlsruhe Institute of Technology (KIT), Institute for Neutron Physics and Reactor TechnologyITER Organization, Route de Vinon-sur-VerdonITER Organization, Route de Vinon-sur-VerdonITER Organization, Route de Vinon-sur-VerdonITER Organization, Route de Vinon-sur-VerdonDepartamento de Ingeniería Energética, ETSII-UNEDITER Organization, Route de Vinon-sur-VerdonRadiation shielding analysis conducted in support of design development of the contemporary diagnostic systems integrated inside the ITER ports is relied on the use of CAD models. This paper presents the CAD-based MCNP Monte Carlo radiation transport and activation analyses for the Diagnostic Upper and Equatorial Port Plugs (UPP #3 and EPP #8, #17). The creation process of the complicated 3D MCNP models of the diagnostics systems was substantially accelerated by application of the CAD-to-MCNP converter programs MCAM and McCad. High performance computing resources of the Helios supercomputer allowed to speed-up the MCNP parallel transport calculations with the MPI/OpenMP interface. The found shielding solutions could be universal, reducing ports R&D costs. The shield block behind the Tritium and Deposit Monitor (TDM) optical box was added to study its influence on Shut-Down Dose Rate (SDDR) in Port Interspace (PI) of EPP#17. Influence of neutron streaming along the Lost Alpha Monitor (LAM) on the neutron energy spectra calculated in the Tangential Neutron Spectrometer (TNS) of EPP#8. For the UPP#3 with Charge eXchange Recombination Spectroscopy (CXRS-core), an excessive neutron streaming along the CXRS shutter, which should be prevented in further design iteration.https://doi.org/10.1051/epjconf/201715303010
collection DOAJ
language English
format Article
sources DOAJ
author Serikov Arkady
Fischer Ulrich
Anthoine David
Bertalot Luciano
De Bock Maartin
O’Connor Richard
Juarez Rafael
Krasilnikov Vitaly
spellingShingle Serikov Arkady
Fischer Ulrich
Anthoine David
Bertalot Luciano
De Bock Maartin
O’Connor Richard
Juarez Rafael
Krasilnikov Vitaly
CAD-Based Shielding Analysis for ITER Port Diagnostics
EPJ Web of Conferences
author_facet Serikov Arkady
Fischer Ulrich
Anthoine David
Bertalot Luciano
De Bock Maartin
O’Connor Richard
Juarez Rafael
Krasilnikov Vitaly
author_sort Serikov Arkady
title CAD-Based Shielding Analysis for ITER Port Diagnostics
title_short CAD-Based Shielding Analysis for ITER Port Diagnostics
title_full CAD-Based Shielding Analysis for ITER Port Diagnostics
title_fullStr CAD-Based Shielding Analysis for ITER Port Diagnostics
title_full_unstemmed CAD-Based Shielding Analysis for ITER Port Diagnostics
title_sort cad-based shielding analysis for iter port diagnostics
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description Radiation shielding analysis conducted in support of design development of the contemporary diagnostic systems integrated inside the ITER ports is relied on the use of CAD models. This paper presents the CAD-based MCNP Monte Carlo radiation transport and activation analyses for the Diagnostic Upper and Equatorial Port Plugs (UPP #3 and EPP #8, #17). The creation process of the complicated 3D MCNP models of the diagnostics systems was substantially accelerated by application of the CAD-to-MCNP converter programs MCAM and McCad. High performance computing resources of the Helios supercomputer allowed to speed-up the MCNP parallel transport calculations with the MPI/OpenMP interface. The found shielding solutions could be universal, reducing ports R&D costs. The shield block behind the Tritium and Deposit Monitor (TDM) optical box was added to study its influence on Shut-Down Dose Rate (SDDR) in Port Interspace (PI) of EPP#17. Influence of neutron streaming along the Lost Alpha Monitor (LAM) on the neutron energy spectra calculated in the Tangential Neutron Spectrometer (TNS) of EPP#8. For the UPP#3 with Charge eXchange Recombination Spectroscopy (CXRS-core), an excessive neutron streaming along the CXRS shutter, which should be prevented in further design iteration.
url https://doi.org/10.1051/epjconf/201715303010
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