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Fecha
2023-03-02
Derechos de acceso
info:eu-repo/semantics/openAccess
Título de la revista
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Editorial
Nature Research

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Resumen
During ITER operational life, a remote-handled cask will be used to transfer In-Vessel components to the Hot Cell for maintenance, storage and decommissioning purposes. Due to the distribution of penetrations for system allocation in the facility, the radiation field of each transfer operation presents a high spatial variability; all operations must be studied independently for workers and electronics protection. In this paper, we present a fully representative approach to describe the radiation environment during the complete remote-handling scenario of In-Vessel components in the ITER facility. The impact of all relevant radiation sources during different stages of the operation is addressed. As-built structures and 2020 baseline designs are considered to produce the most detailed neutronics model of the Tokamak Complex, the 400,000-tonne civil structure hosting the tokamak, up to date. Novel capabilities of the D1SUNED code have allowed to compute the integral dose, the dose rate and the photon-induced neutron flux of both moving and static radiation sources. Time bins are included in the simulations to compute the dose rate caused by In-Vessel components at all positions along the transfer. The time evolution of the dose rate is built in video format with a 1-m resolution, especially valuable for hot-spots identification.
Descripción
The registered version of this article, first published in Scientific Reports, is available online at the publisher's website: Nature Research, https://doi.org/10.1038/s41598-023-30534-x
La versión registrada de este artículo, publicado por primera vez en Scientific Reports, está disponible en línea en el sitio web del editor: Nature Research, https://doi.org/10.1038/s41598-023-30534-x
Categorías UNESCO
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Citación
Pablo Martínez‑Albertos, Patrick Sauvan, Michael J. Loughlin, Yannick Le Tonqueze, Rafael Juárez, Assessment of ITER radiation environment during the remote‑handling operation of In‑Vessel components with D1SUNED, Scientific Reports, num 13, 2023, pp 3544
Centro
E.T.S. de Ingenieros Industriales
Departamento
Ingeniería Energética
Grupo de investigación
Grupo de innovación
Programa de doctorado
Cátedra
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