2023
DOI: 10.1088/1361-6587/ad163a
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Disruption avoidance and investigation of the H-Mode density limit in ASDEX Upgrade

B Sieglin,
M Maraschek,
A Gude
et al.

Abstract: In recent years a strong effort has been made to investigate disruption avoidance schemes in order to aid the development of integrated operational scenarios for ITER. Within the EUROfusion programme the disruptive H-mode density limit (HDL) has been studied on the WPTE (Work Package Tokamak Exploitation) devices ASDEX Upgrade, TCV and JET. Advanced real-time control coupled with improved real-time diagnostics has enabled the routine disruption avoidance of the HDL. This allowed the systematic study of the inf… Show more

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Cited by 2 publications
(2 citation statements)
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“…Another important factor is the plasma triangularity. If this is above a certain threshold, the XPR becomes less stable due to improved particle confinement and increased plasma density at the same fueling rate [63]. The main destabilizing factor in this case is the gas and impurity injection.…”
Section: Disruption Avoidancementioning
confidence: 99%
See 1 more Smart Citation
“…Another important factor is the plasma triangularity. If this is above a certain threshold, the XPR becomes less stable due to improved particle confinement and increased plasma density at the same fueling rate [63]. The main destabilizing factor in this case is the gas and impurity injection.…”
Section: Disruption Avoidancementioning
confidence: 99%
“…The main focus has been on disruption avoidance at the density limit, which is characterized by the XPR mutating into an unstable MARFE (see also section 4). The details of this work are discussed in detail in [63]. There are only qualitative theoretical models that would describe the transition from XPR to MARFE, and experimental investigation is currently the only method to study this effect.…”
Section: Disruption Avoidancementioning
confidence: 99%