Evidence of near-SOL tungsten accumulation using a far-SOL collector probe array and OEDGE modelling in the DIII-D metal rings L-mode discharges
Author:
Funder
U.S. Department of Energy
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,Materials Science (miscellaneous),Nuclear and High Energy Physics
Reference22 articles.
1. Modelling of impurity flow in the tokamak scrape-off layer
2. Impurity retention by divertors. I. One dimensional models
3. The Design and Use of Tungsten Coated TZM Molybdenum Tile Inserts in the DIII-D Tokamak Divertor
4. D. Thomas, et al., 45th EPS Conference on Plasma Physics (2018) P5. 1021 http://ocs.ciemat.es/EPS2018PAP/pdf/P5.1021.pdf.
5. Utilization of outer-midplane collector probes with isotopically enriched tungsten tracer particles for impurity transport studies in the scrape-off layer of DIII-D (invited)
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1. Turbulent drifts of impurity ions as an explanation for anomalous radial transport in the far-SOL of DIII-D;Nuclear Fusion;2024-05-24
2. Modeling turbulent impurity transport in the SOL of DIII-D with a reduced model;Plasma Physics and Controlled Fusion;2024-03-14
3. Collector probe analysis of tungsten transport to the far-SOL from the DIII-D SAS-VW divertor experiment;Nuclear Materials and Energy;2024-03
4. Small resonant magnetic perturbations result in three-dimensional material transport in the fusion plasma edge;Nuclear Fusion;2024-02-27
5. SiC as a core-edge integrated wall solution in DIII-D;Nuclear Materials and Energy;2023-12
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