The challenge of integrated exhaust consistent with the other requirements in DEMO and power plant class tokamaks (ITER-like and alternative DEMOs, Fusion Nuclear Science Facility approaches) is well-known and the exhaust solution is likely to be fundamental to the design and operating scenarios chosen. Strategies have been proposed such as high main plasma radiation, but improved solutions are sought and will require revised research methodologies. While no facility can address all the challenges, the new MAST Upgrade tokamak enables exploration of a wide range of divertor plasma aspects in a single device and their relation with the core plasma (e.g., access to H-mode) and in particular the development of fundamental understanding and new...
© 2017 The Authors The main goal of the Divertor Tokamak Test facility (DTT) is to explore alternati...
The Swiss Plasma Center (SPC) is planning a divertor upgrade for the TCV tokamak. The upgrade aims a...
© 2017 EURATOM. In parallel with the programme to optimize the operation with a conventional diverto...
As indicated in the European Fusion Roadmap, the main objective of the Divertor Tokamak Test facilit...
Harnessing fusion energy efficiently requires optimising heat and particle exhaust in the edge from ...
Conventional divertor concepts for recent DEMOs (P_fus=1.5-2GW, R_p=7-9m) were summarized. Requireme...
© 2020 IAEA, Vienna. Plasma exhaust has been identified as a major challenge towards the realisation...
The divertor configuration defines the power exhaust capabilities of DEMO as one of the major key de...
© 2017 The Authors The main goal of the Divertor Tokamak Test facility (DTT) is to explore alternati...
The Swiss Plasma Center (SPC) is planning a divertor upgrade for the TCV tokamak. The upgrade aims a...
© 2017 EURATOM. In parallel with the programme to optimize the operation with a conventional diverto...
As indicated in the European Fusion Roadmap, the main objective of the Divertor Tokamak Test facilit...
Harnessing fusion energy efficiently requires optimising heat and particle exhaust in the edge from ...
Conventional divertor concepts for recent DEMOs (P_fus=1.5-2GW, R_p=7-9m) were summarized. Requireme...
© 2020 IAEA, Vienna. Plasma exhaust has been identified as a major challenge towards the realisation...
The divertor configuration defines the power exhaust capabilities of DEMO as one of the major key de...
© 2017 The Authors The main goal of the Divertor Tokamak Test facility (DTT) is to explore alternati...
The Swiss Plasma Center (SPC) is planning a divertor upgrade for the TCV tokamak. The upgrade aims a...
© 2017 EURATOM. In parallel with the programme to optimize the operation with a conventional diverto...