Effect of activation cross section uncertainties in the assessment of primary damage for MFE/IFE low-activation steels irradiated in IFMIF

The present study is mainly aimed to provide the primary damage (displacements per atom, generation of solid transmutants and gas production rates) of structural materials irradiated in the high and medium flux test modules of the International Fusion Materials Irradiation Facility (IFMIF). We have...

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Veröffentlicht in:Journal of nuclear materials 2009-04, Vol.386, p.908-910
Hauptverfasser: Cabellos, O., Sanz, J., García-Herranz, N., Otero, B.
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container_end_page 910
container_issue
container_start_page 908
container_title Journal of nuclear materials
container_volume 386
creator Cabellos, O.
Sanz, J.
García-Herranz, N.
Otero, B.
description The present study is mainly aimed to provide the primary damage (displacements per atom, generation of solid transmutants and gas production rates) of structural materials irradiated in the high and medium flux test modules of the International Fusion Materials Irradiation Facility (IFMIF). We have investigated if the change of the composition during the irradiation time has effect on the prediction of the atomic displacements. The effect of the activation cross section uncertainties in the assessment of both solid transmutants and hydrogen and helium production is also analyzed. The results are provided element-by-element, so that the primary damage of any material irradiated in such neutron environments can be easily assessed; in this paper, we have predicted the primary damage of the low activation steel Eurofer.
doi_str_mv 10.1016/j.jnucmat.2008.12.226
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subjects Activation
Activation analysis
Applied sciences
Assessments
Controled nuclear fusion plants
Cross sections
Damage
Energy
Energy. Thermal use of fuels
Exact sciences and technology
Fission nuclear power plants
Fuels
Installations for energy generation and conversion: thermal and electrical energy
Irradiation
Nuclear fuels
Structural steels
Uncertainty
title Effect of activation cross section uncertainties in the assessment of primary damage for MFE/IFE low-activation steels irradiated in IFMIF
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