Occurrence and control of X‐point radiators and marfes in ASDEX Upgrade: experimental validation of an analytic model
ORAL
Abstract
This contributions gives a brief introduction into the model and the underlying physical picture. It reports on recent experimental tests of the model carried out for high-power H-mode plasma on ASDEX Upgrade. It is shown, that active XPR control, which is normally achieved by nitrogen seeding, can also be achieved by deuterium fueling. Also disruption avoidance schemes for the H-Mode density limit [5] have been studied using both the D fueling rate and the auxiliary heating power as actuators. Predictions are made for JET, ITER and DEMO and the different behavior of XPRs and marfes for different seeding gases is discussed.
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Publication: [1] U. Stroth et al., Nucl. Fusion 62(2022) 076008 <br>[2] M. Bernert et al., Nucl. Fusion 61(2021)024001 <br>[3] B. Lipschultz, Nucl. Fusion 24(1984)977<br> [4] O. Pan, et al., this conference<br> [5] M. Maraschek et al., Plasma Phys. Control. Fusion 60 (2018) 014047
Presenters
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Ulrich Stroth
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics
Authors
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Ulrich Stroth
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics
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Matthias Bernert
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics
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Dominik Brida
Max Planck Institute for Plasma Physics
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Marco Cavedon
Universitá di Milano-Bico
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Ralph Dux
Max Planck Institute for Plasma Physics
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Tilmann Lunt
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics
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Ou Pan
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics
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Marco Wischmeier
Max-Planck-Institut für Plasmaphysik, Max Planck Institute for Plasma Physics, IPP Garching
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Anja Gude
Max Planck Institute for Plasma Physics
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Felix Klossek
Max Planck Institute for Plasma Physics
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Mark Maraschek
Max Planck Institute for Plasma Physics
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Bernhard Sieglin
Max Planck Institute for Plasma Physics