July 2011

Conference Paper

Multi-Fluid Modeling of Low-Recycling Divertor Regimes

By:
Smirnov, R.; Pigarov, A; Krasheninnikov, Sergei; Rognlien, T. D.; Soukhanovskii, V. A.; Rensink, M.; Maingi, Rajesh ; Skinner, C.; Stotler, D.; Bell, R. E.; Kugel, H.
Journal Name:
Contributions to Plasma Physics
Page Number:
299-305
Volume:
50
Issue Number:
3-5
Publication Date:
July 14, 2011
Conference Name:
12th International Workshop on Plasma Edge Theory in Fusion Devices
Conference Location:
Rostov Veliky, Russia
View DOI Listing:
https://doi.org/10.1002/ctpp.201010049

Abstract

The low-recycling regimes of divertor operation in a single-null NSTX magnetic configuration are studied using computer simulations with the edge plasma transport code UEDGE. The edge plasma transport properties pertinent to the low-recycling regimes are demonstrated. These include the flux-limited character of the parallel heat transport and the high plasma temperatures with the flattened profiles in the scrape-off-layer. It is shown that to maintain the balance of particle fluxes at the core interface the deuterium gas puffing rate should increase as the divertor recycling coefficient decreases. The radial profiles of the heat load to the outer divertor plate, the upstream radial plasma profiles, and the effects of the cross-field plasma transport in the low-recycling regimes are discussed. It is also shown that recycling of lithium impurities evaporating from the divertor plate at high surface temperatures can reverse the low-recycling divertor operational regime to the high-recycling one and may cause thermal instability of the divertor plate. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim