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Beryllium global erosion and deposition at JET-ILW simulated with ERO2.0

Academic Article
Publication Date:
2019
abstract:
The recently developed Monte-Carlo code ERO2.0 is applied to the modelling of limited and diverted discharges at JET with the ITER-like wall (ILW). The global beryllium (Be) erosion and deposition is simulated and compared to experimental results from passive spectroscopy. For the limiter configuration, it is demonstrated that Be self-sputtering is an important contributor (at least 35%) to the Be erosion. Taking this contribution into account, the ERO2.0 modelling confirms previous evidence that high deuterium (D) surface concentrations of up to similar to 50% atomic fraction provide a reasonable estimate of Be erosion in plasma-wetted areas. For the divertor configuration, it is shown that drifts can have a high impact on the scrape-off layer plasma flows, which in turn affect global Be transport by entrainment and lead to increased migration into the inner divertor. The modelling of the effective erosion yield for different operational phases (ohmic, L- and H-mode) agrees with experimental values within a factor of two, and confirms that the effective erosion yield decreases with increasing heating power and confinement.
Iris type:
01.01 Articolo in rivista
Keywords:
Beryllium; Erosion; ER02.0; JET ITER-like wall
List of contributors:
Lazzaro, Enzo; Murari, Andrea; Pomaro, Nicola; Sozzi, Carlo; Taliercio, Cesare; Gervasini, Gabriele; Innocente, Paolo; Vianello, Nicola; Terranova, David; Brombin, Matteo; 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
Authors of the University:
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
Handle:
https://iris.cnr.it/handle/20.500.14243/383873
Published in:
NUCLEAR MATERIALS AND ENERGY
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S2352179118300759
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