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Three-dimensional modelling of edge multi-component plasma taking into account realistic wall geometry
A 3D multispecies fluid model has been implemented in the SOLEDGE-TOKAM suite of codes to address Scrape-off layer turbulent impurity transport. Zhdanov closure is used to address multi-component plasma modeling without any mass ordering or trace impurity assumption. Thanks to immersed boundary conditions, up to the wall simulations with non-axisymmetric plasma facing components are performed, in particular in the WEST configuration. A first proof of principle of interchange turbulence simulation of a Deuterium+Carbon plasma is also reported. Keywords: Edge plasma, Turbulence, Fluid modelling, Impurity transport
Three-dimensional modelling of edge multi-component plasma taking into account realistic wall geometry
A 3D multispecies fluid model has been implemented in the SOLEDGE-TOKAM suite of codes to address Scrape-off layer turbulent impurity transport. Zhdanov closure is used to address multi-component plasma modeling without any mass ordering or trace impurity assumption. Thanks to immersed boundary conditions, up to the wall simulations with non-axisymmetric plasma facing components are performed, in particular in the WEST configuration. A first proof of principle of interchange turbulence simulation of a Deuterium+Carbon plasma is also reported. Keywords: Edge plasma, Turbulence, Fluid modelling, Impurity transport
Three-dimensional modelling of edge multi-component plasma taking into account realistic wall geometry
H. Bufferand (Autor:in) / P. Tamain (Autor:in) / S. Baschetti (Autor:in) / J. Bucalossi (Autor:in) / G. Ciraolo (Autor:in) / N. Fedorczak (Autor:in) / Ph. Ghendrih (Autor:in) / F. Nespoli (Autor:in) / F. Schwander (Autor:in) / E. Serre (Autor:in)
2019
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
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