Benefits of the Super-X divertor configuration for scenario integration on MAST Upgrade

The integration of good core and edge/pedestal confinement with strong dissipation of heat and particles in the divertors is a significant challenge for the development of fusion energy. Alternative divertor configurations offer potential advantages by broadening the operational space where a device...

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Veröffentlicht in:Plasma physics and controlled fusion 2024-06, Vol.66 (6), p.65019
Hauptverfasser: Harrison, J R, Bowman, C, Clark, J G, Kirk, A, Lovell, J, Patel, B S, Ryan, P, Scannell, R, Thornton, A J, Verhaegh, K
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Sprache:eng
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Zusammenfassung:The integration of good core and edge/pedestal confinement with strong dissipation of heat and particles in the divertors is a significant challenge for the development of fusion energy. Alternative divertor configurations offer potential advantages by broadening the operational space where a device can operate with detached divertors and acceptable power exhaust. First results from MAST Upgrade are presented from high confinement mode experiments with outer divertors in the Super-X divertor configuration, showing that the outer divertors naturally detach when the Super-X is formed with no discernible impact on the plasma core and pedestal. These initial findings confirm predicted benefits of the Super-X configuration in terms of facilitating scenario integration.
ISSN:0741-3335
1361-6587
DOI:10.1088/1361-6587/ad4058