4.5 Article

Overview of the TCV tokamak experimental programme

期刊

NUCLEAR FUSION
卷 62, 期 4, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1741-4326/ac369b

关键词

nuclear fusion; tokamak; TCV; EUROfusion

资金

  1. Euratom research and training programme [633053]
  2. Swiss National Science Foundation
  3. US Department of Energy [DE-SC0010529]
  4. U.S. Department of Energy (DOE) [DE-SC0010529] Funding Source: U.S. Department of Energy (DOE)

向作者/读者索取更多资源

The tokamak configuration variable (TCV) continues to address critical issues in fusion power preparation through its unique shaping capabilities, flexible heating systems, and modern control system. Significant progress has been made in the 2019-20 campaign, with the installation of removable divertor gas baffles, upgraded diagnostic capabilities, and new heating systems. The results of the TCV campaign demonstrate its successful integration within the European research effort and international collaborations.
The tokamak a configuration variable (TCV) continues to leverage its unique shaping capabilities, flexible heating systems and modern control system to address critical issues in preparation for ITER and a fusion power plant. For the 2019-20 campaign its configurational flexibility has been enhanced with the installation of removable divertor gas baffles, its diagnostic capabilities with an extensive set of upgrades and its heating systems with new dual frequency gyrotrons. The gas baffles reduce coupling between the divertor and the main chamber and allow for detailed investigations on the role of fuelling in general and, together with upgraded boundary diagnostics, test divertor and edge models in particular. The increased heating capabilities broaden the operational regime to include T (e)/T (i) similar to 1 and have stimulated refocussing studies from L-mode to H-mode across a range of research topics. ITER baseline parameters were reached in type-I ELMy H-modes and alternative regimes with 'small' (or no) ELMs explored. Most prominently, negative triangularity was investigated in detail and confirmed as an attractive scenario with H-mode level core confinement but an L-mode edge. Emphasis was also placed on control, where an increased number of observers, actuators and control solutions became available and are now integrated into a generic control framework as will be needed in future devices. The quantity and quality of results of the 2019-20 TCV campaign are a testament to its successful integration within the European research effort alongside a vibrant domestic programme and international collaborations.

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