UEDGE-predicted impact of molecules on low-field side target detachment in DIII–D
Author:
Funder
Academy of Finland
Fusion Energy Sciences
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,Materials Science (miscellaneous),Nuclear and High Energy Physics
Reference22 articles.
1. Influence of cross-field drifts and chemical sputtering on simulations of divertor particle and heat loads in ohmic and L-mode plasmas in DIII–D, AUG, and JET using UEDGE;Groth;J. Nucl. Mater.,2011
2. Modeling of detachment experiments at DIII–D;Canik;J. Nucl. Mater.,2015
3. Numerical modelling of high density JET divertor plasma with the SOLPS4.2 (B2–EIRENE) code;Kotov;Phys. Lett. A,2008
4. Plasma recombination and divertor detachment;Krasheninnikov;Phys. Lett. A,1996
5. Molecule assisted recombination (MAR): mechanisms and plasma conditions for effective operation;Krasheninnikov;Phys. Scr.,2002
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1. UEDGE-CRUMPET predicted isotopologue effect on atomic and molecular emission in DIII-D high-recycling divertor plasmas;Nuclear Materials and Energy;2023-03
2. Assessment of advanced fluid neutral models for the neutral atoms in the plasma edge and application in ITER geometry;Nuclear Fusion;2022-06-16
3. Implementation and assessment of an extended hydrogenic molecular model in UEDGE;Contributions to Plasma Physics;2020-02-11
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