Particle balance analysis of RMP discharges in L- and H-mode at MAST
ORAL
Abstract
The application of resonant magnetic perturbations (RMPs) at MAST has been shown to cause a reduction in density, the so-called particle pump-out effect, during discharges which have a particular MHD response. This can occur in both L-mode and H-mode discharges. An analysis of the changes in fueling and exhaust using a 0-D single reservoir particle balance of the main ion species has shown that during RMP application there is an increase in total fueling to the plasma but also a significant drop in particle confinement time such that there is a net particle pump-out. To more accurately calculate the recycling and particle fueling, a detailed analysis of the measured Dα emission was performed. Synthetic diagnostics were created with the ray-tracing code CHERAB using plasma sources from modelling of these discharges done with the 3-D plasma and neutral code EMC3-EIRENE. The generated synthetic images were compared to the corresponding absolutely calibrated images from experiment to better constrain the experimental measurements and account for surface reflections. Results show there is a relatively greater increase in fueling flux during RMP application than shown in the initial analysis, causing a greater reduction in the particle confinement time in that period.
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Presenters
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Kurt Flesch
University of Wisconsin-Madison
Authors
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Kurt Flesch
University of Wisconsin-Madison
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Ian Waters
University of Wisconsin - Madison
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Heinke G Frerichs
University of Wisconsin - Madison
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Hames Harrison
Culham Centre for Fusion Energy, Culham Centre for Fusion Energy, Culham Science Centre, Abingdon OX14 3DB, United Kingdom
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Andrew Kirk
CCFE Culham Science Centre, CCFE, Culham Science Centre, Culham Centre for Fusion Energy, CCFE, CCFE, Culham Science Centre, Abingdon, Oxon, OX14 3DB, UK, MAST
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Oliver Schmitz
University of Wisconsin - Madison