2004
DOI: 10.1002/ctpp.200410009
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3D Edge Modeling and Island Divertor Physics

Abstract: The paper presents an overview on the state of the art of 3D fluid transport modeling in the boundaries of 3D toroidal confinement devices and on applications to island divertor physics. Typically, such edge configurations are characterized by the coexistence of closed magnetic surfaces, islands and open stochastic regions, e.g. in helical devices like W7-AS, W7-X, LHD and in tokamaks like TEXTOR-DED. Two main approach branches falling within the current numeric catalogue of the 3D modeling are the finite volu… Show more

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Cited by 213 publications
(228 citation statements)
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“…The EMC3 code solves the Braginskii fluid equations for plasma transport and is self-consistently coupled with the EIRENE code [22,23]. The EIRENE code is applied for treating the kinetic neutral transport.…”
Section: The Description Of the Emc3-eirene Codementioning
confidence: 99%
“…The EMC3 code solves the Braginskii fluid equations for plasma transport and is self-consistently coupled with the EIRENE code [22,23]. The EIRENE code is applied for treating the kinetic neutral transport.…”
Section: The Description Of the Emc3-eirene Codementioning
confidence: 99%
“…A more realistic simulation must include 3D effects and this has started for AUG [49] using the EMC3-Eirene code package, where EMC3 is an edge 3D Monte Carlo plasma fluid code [50]. A comprehensive description of these EMC3 simulations for the AUG experiment is reported in a separate paper [51].…”
Section: Sol Modellingmentioning
confidence: 99%
“…The working principle as well as the full set of equations solved by EMC3-Eirene are described in detail in Ref. [16]. Here, we only want to summarize that EMC3 solves Braginskii's equations and is self-consistently coupled to Eirene, which solves the kinetic equation for the neutrals.…”
Section: Code and Computational Gridmentioning
confidence: 99%