Nonlinear MHD simulations of QH-mode DIII-D plasmas and implications for ITER highQscenarios
Author:
Funder
US DOE
ITER
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear Energy and Engineering
Link
http://iopscience.iop.org/article/10.1088/1361-6587/aa934f/pdf
Reference30 articles.
1. Characteristics of type I ELM energy and particle losses in existing devices and their extrapolation to ITER
2. ITER transient consequences for material damage: modelling versus experiments
3. Screening of resonant magnetic perturbations by flows in tokamaks
4. Non-linear MHD modelling of ELM triggering by pellet injection in DIII-D and implications for ITER
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2. A well-balanced and exactly divergence-free staggered semi-implicit hybrid finite volume / finite element scheme for the incompressible MHD equations;Journal of Computational Physics;2023-11
3. MHD simulations of formation, sustainment and loss of quiescent H-mode in the all-tungsten ASDEX Upgrade;Nuclear Fusion;2023-07-11
4. Comparison of MHD stability properties between QH-mode and ELMy H-mode plasmas by considering plasma rotation and ion diamagnetic drift effects;Nuclear Fusion;2023-03-01
5. ECEI characterization of pedestal fluctuations in quiescent H-mode plasmas in DIII-D;Plasma Physics and Controlled Fusion;2022-08-11
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