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Modelling of the effect of ELMs on fuel retention at the bulk W divertor of JET

Articolo
Data di Pubblicazione:
2019
Abstract:
Effect of ELMs on fuel retention at the bulk W target of JET ITER-Like Wall was studied with multi-scale calculations. Plasma input parameters were taken from ELMy H-mode plasma experiment. The energetic intra-ELM fuel particles get implanted and create near-surface defects up to depths of few tens of nm, which act as the main fuel trapping sites during ELMs. Clustering of implantation-induced vacancies were found to take place. The incoming flux of inter-ELM plasma particles increases the different filling levels of trapped fuel in defects. The temperature increase of the W target during the pulse increases the fuel detrapping rate. The inter-ELM fuel particle flux refills the partially emptied trapping sites and fills new sites. This leads to a competing effect on the retention and release rates of the implanted particles. At high temperatures the main retention appeared in larger vacancy clusters due to increased clustering rate.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
ELM; Fuel retention; Multi-scale computing; JET
Elenco autori:
Murari, Andrea; Pomaro, Nicola; Sozzi, Carlo; Taliercio, Cesare; Gervasini, Gabriele; Innocente, Paolo; Vianello, Nicola; Terranova, David; Brombin, Matteo; Lazzaro, Enzo; Laguardia, Laura; Alessi, Edoardo; Giacomelli, LUCA CARLO; Puiatti, MARIA ESTER; Paccagnella, Roberto; Muraro, Andrea; Uccello, Andrea; Valisa, Marco; Marchetto, Chiara; Tardocchi, Marco; Carraro, Lorella; DEGLI AGOSTINI, Fabio; Mantica, Paola; Pasqualotto, Roberto
Autori di Ateneo:
ALESSI EDOARDO
BROMBIN MATTEO
CARRARO LORELLA
DEGLI AGOSTINI FABIO
GERVASINI GABRIELE
INNOCENTE PAOLO
LAGUARDIA LAURA
MARCHETTO CHIARA
MURARI ANDREA
MURARO ANDREA
PASQUALOTTO ROBERTO
POMARO NICOLA
SOZZI CARLO
TARDOCCHI MARCO
TERRANOVA DAVID
UCCELLO ANDREA
VIANELLO NICOLA
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/412050
Pubblicato in:
NUCLEAR MATERIALS AND ENERGY
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S2352179118301868
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