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Three-dimensional simulation of H-mode plasmas with localized divertor impurity injection on Alcator C-Mod using the edge transport code EMC3-EIRENE[superscript a)]

Authors :
Massachusetts Institute of Technology. Plasma Science and Fusion Center
Brunner, Daniel Frederic
Labombard, Brian
Terry, James L
Lore, J. D.
Reinke, M. L.
Lipschultz, B.
Pitts, R. A.
Feng, Y.
Massachusetts Institute of Technology. Plasma Science and Fusion Center
Brunner, Daniel Frederic
Labombard, Brian
Terry, James L
Lore, J. D.
Reinke, M. L.
Lipschultz, B.
Pitts, R. A.
Feng, Y.
Source :
MIT Plasma Science & Fusion Center
Publication Year :
2018

Abstract

Experiments in Alcator C-Mod to assess the level of toroidal asymmetry in divertor conditions resulting from poloidally and toroidally localized extrinsic impurity gas seeding show a weak toroidal peaking (∼1.1) in divertor electron temperatures for high-power enhanced D-alpha H-mode plasmas. This is in contrast to similar experiments in Ohmically heated L-mode plasmas, which showed a clear toroidal modulation in the divertor electron temperature. Modeling of these experiments using the 3D edge transport code EMC3-EIRENE [Y. Feng et al., J. Nucl. Mater. 241, 930 (1997)] qualitatively reproduces these trends, and indicates that the different response in the simulations is due to the ionization location of the injected nitrogen. Low electron temperatures in the private flux region (PFR) in L-mode result in a PFR plasma that is nearly transparent to neutral nitrogen, while in H-mode the impurities are ionized in close proximity to the injection location, with this latter case yielding a largely axisymmetric radiation pattern in the scrape-off-layer. The consequences for the ITER gas injection system are discussed. Quantitative agreement with the experiment is lacking in some areas, suggesting potential areas for improving the physics model in EMC3-EIRENE.<br />United States. Department of Energy (Contract DE-AC05-00OR22725)<br />United States. Department of Energy (Contract DE-FC02-99ER54512)

Details

Database :
OAIster
Journal :
MIT Plasma Science & Fusion Center
Notes :
application/pdf
Publication Type :
Electronic Resource
Accession number :
edsoai.on1141882112
Document Type :
Electronic Resource