Skip to Main Content (Press Enter)

Logo CNR
  • ×
  • Home
  • Persone
  • Pubblicazioni
  • Strutture
  • Competenze

UNI-FIND
Logo CNR

|

UNI-FIND

cnr.it
  • ×
  • Home
  • Persone
  • Pubblicazioni
  • Strutture
  • Competenze
  1. Pubblicazioni

Dynamic modelling of local fuel inventory and desorption in the whole tokamak vacuum vessel for auto-consistent plasma-wall interaction simulations

Articolo
Data di Pubblicazione:
2019
Abstract:
An extension of the SolEdge2D-EIRENE code package, named D-WEE, has been developed to add the dynamics of thermal desorption of hydrogen isotopes from the surface of plasma facing materials. To achieve this purpose, D-WEE models hydrogen isotopes implantation, transport and retention in those materials. Before launching autoconsistent simulation (with feedback of D-WEE on SolEdge2D-EIRENE), D-WEE has to be initialised to ensure a realistic wall behaviour in terms of dynamics (pumping or fuelling areas) and fuel content. A methodology based on modelling is introduced to perform such initialisation. A synthetic plasma pulse is built from consecutive SolEdge2D-EIRENE simulations. This synthetic pulse is used as a plasma background for the D-WEE module. A sequence of plasma pulses is simulated with D-WEE to model a tokamak operation. This simulation enables to extract at a desired time during a pulse the local fuel inventory and the local desorption flux density which could be used as initial condition for coupled plasma-wall simulations. To assess the relevance of the dynamic retention behaviour obtained in the simulation, a confrontation to post-pulse experimental pressure measurement is performed. Such confrontation reveals a qualitative agreement between the temporal pressure drop obtained in the simulation and the one observed experimentally. The simulated dynamic retention during the consecutive pulses is also studied.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Plasma-wall interaction simulation; Recycling; Dynamics of hydrogen isotopes thermal desorption; Dynamic retention; Edge plasma physics
Elenco autori:
Murari, Andrea; Pomaro, Nicola; Sozzi, Carlo; 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; DE MASI, Gianluca; Valisa, Marco; Marchetto, Chiara; Tardocchi, Marco; Carraro, Lorella; DEGLI AGOSTINI, Fabio; Mantica, Paola; Pasqualotto, Roberto
Autori di Ateneo:
ALESSI EDOARDO
BROMBIN MATTEO
CARRARO LORELLA
DE MASI GIANLUCA
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/20.500.14243/406807
Pubblicato in:
NUCLEAR MATERIALS AND ENERGY
Journal
  • Dati Generali

Dati Generali

URL

https://www.sciencedirect.com/science/article/pii/S235217911830262X
  • Utilizzo dei cookie

Realizzato con VIVO | Designed by Cineca | 26.5.0.0 | Sorgente dati: PREPROD (Ribaltamento disabilitato)