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Miniatura
Fecha
2018-07-06
Derechos de acceso
info:eu-repo/semantics/openAccess
Título de la revista
ISSN de la revista
Título del volumen
Editorial
Elsevier

Citas

Proyectos de investigación
Unidades organizativas
Número de la revista
Resumen
The depiction of the nuclear responses of the ITER European Test Blanket Modules (TBMs), Helium Cooled Lithium Lead (HCLL) and Helium Cooled Pebbles Bed (HCPB) is presented in this work. Following important components update, and important methodological advances, the nuclear heat and the tritium production have been revisited, giving new estimations 10% higher than the previous evaluation for nuclear heat in both TBMs and to 15% higher for HCPB T production. This has an impact on the thermo-mechanical design of the TBM and the tritium handling. In addition, the Shutdown Dose Rates in the respective port interspace have been characterized in local approach. It shows a performance that could imply compatibility with planned in-situ maintenance activities when analysed in global approach, an improvement with respect to previous evaluations.
Descripción
This is an Accepted Manuscript of an article published by Elsevier in "Nuclear Engineering and Design; 134, 92-96", available at: https://doi.org/10.1016/j.fusengdes.2018.06.022
Este es el manuscrito aceptado del artículo publicado por Elsevier en "Nuclear Engineering and Design; 134, 92-96", disponible en línea: https://doi.org/10.1016/j.fusengdes.2018.06.022
Categorías UNESCO
Palabras clave
ITER, Test blanket module, Helium cooled lead lithium, Helium cooled pebbles bed, Shutdown dose rates, Direct one-step method
Citación
Rafael Juárez, Antonio J. López-Revelles, Patrick Sauvan, Gabriel Pedroche, Aljaz Kolsek, Javier Alguacil, Daniele Ugolini, Joelle Vallory, Italo Ricapito, Yves Poitevin, F. Calvo y Javier Sanz, (2018). Update in the nuclear responses of the European TBMs for ITER during operation and shutdown. Nuclear Engineering and Design; 134, 92-96. https://doi.org/10.1016/j.fusengdes.2018.06.022
Centro
Escuela Técnica Superior de Ingenieros Industriales
Departamento
Ingeniería Energética
Grupo de investigación
Tecnología sistemas de fisión, fusión y de fuentes de irradiación (TECF3IR)
Grupo de innovación
Programa de doctorado
Cátedra
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