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Tungsten based divertor development for Wendelstein 7-X

Fellinger, Joris (författare)
Max Planck Institute for Plasma Physics, Germany
Richou, M. (författare)
CEA Institute for Magnetic Fusion Research, France
Ehrke, G. (författare)
Max Planck Institute for Plasma Physics, Germany
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Endler, M. (författare)
Max Planck Institute for Plasma Physics, Germany
Kunkel, F. (författare)
Max Planck Institute for Plasma Physics, Germany
Naujoks, D. (författare)
Max Planck Institute for Plasma Physics, Germany
Kremeyer, Th. (författare)
Max Planck Institute for Plasma Physics, Germany
Menzel-Barbara, A. (författare)
Max Planck Institute for Plasma Physics, Germany
Sieber, Th. (författare)
Max Planck Institute for Plasma Physics, Germany
Lobsien, J-F (författare)
Max Planck Institute for Plasma Physics, Germany
Neu, R. (författare)
Max Planck Institute for Plasma Physics, Germany
Tretter, J. (författare)
Max Planck Institute for Plasma Physics, Germany
Wang, Z. (författare)
Max Planck Institute for Plasma Physics, Germany
You, J-H (författare)
Max Planck Institute for Plasma Physics, Germany
Greuner, H. (författare)
Max Planck Institute for Plasma Physics, Germany
Hunger, K. (författare)
Max Planck Institute for Plasma Physics, Germany
Junghanns, P. (författare)
Max Planck Institute for Plasma Physics, Germany
Schneider, O. (författare)
Max Planck Institute for Plasma Physics, Germany
Wirtz, M. (författare)
Forschungszentrum Jülich GmbH, Germany
Loewenhoff, Th. (författare)
Forschungszentrum Jülich GmbH, Germany
Houben, A. (författare)
Forschungszentrum Jülich GmbH, Germany
Litnovsky, A. (författare)
Forschungszentrum Jülich GmbH, Germany
Fraysinnes, P-E (författare)
CEA LITEN DTCH LCA, France
Emonot, P. (författare)
CEA LITEN DTCH LCA, France
Roccella, S. (författare)
ENEA Frascati Research Centre, Itay
Widlund, Ola (författare)
RISE,Kemi och Tillämpad mekanik
Koncar, B. (författare)
Jožef Stefan Institute, Slovenia
Tekavčič, M. (författare)
Jožef Stefan Institute, Slovenia
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 (creator_code:org_t)
2023
2023
Engelska.
Ingår i: Nuclear Materials and Energy. - 2352-1791. ; 37
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • Wendelstein 7-X, the world’s largest superconducting stellarator in Greifswald (Germany), started plasma experiments with a water-cooled plasma-facing wall in 2022, allowing for long pulse operation. In parallel, a project was launched in 2021 to develop a W based divertor, replacing the current CFC divertor, to demonstrate plasma performance of a stellarator with a reactor relevant plasma facing materials with low tritium retention. The project consists of two tasks: Based on experience from the previous experimental campaigns and improved physics modelling, the geometry of the plasma-facing surface of the divertor and baffles is optimized to prevent overloads and to improve exhaust. In parallel, the manufacturing technology for a W based target module is qualified. This paper gives a status update of project. It focusses on the conceptual design of a W based target module, the manufacturing technology and its qualification, which is conducted in the framework of the EUROfusion funded WPDIV program. A flat tile design in which a target module is made of a single target element is pursued. The technology must allow for moderate curvatures of the plasma-facing surface to follow the magnetic field lines. The target element is designed for steady state heat loads of 10 MW/m2 (as for the CFC divertor). Target modules of a similar size and weight as for the CFC divertor are assumed (approx. < 0.25 m2 and < 60 kg) using the existing water cooling infrastructure providing 5 l/s and roughly maximum 15 bar pressure drop per module. The main technology under qualification is based on a CuCrZr heat sink made either by additive manufacturing using laser powder bed fusion (LPBF) or by uniaxial diffusion welding of pre-machined forged CuCrZr plates. After heat treatment, the plasma-facing side of the heat sink is covered by W or if feasible by the more ductile WNiFe, preferably by coating or alternatively by hot isostatic pressing W based tiles with a soft OFE-Cu interlayer. Last step is a final machining of the plasma-exposed surface and the interfaces to the water supply lines and supports to correct manufacturing deformations.

Ämnesord

NATURVETENSKAP  -- Fysik -- Fusion, plasma och rymdfysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Fusion, Plasma and Space Physics (hsv//eng)

Nyckelord

Wendelstein 7-X
Divertor
High heat flux
Additive manufacturing
Diffusion welding
Hot isostatic pressing
Galvanization
Plasma spraying
Tungsten
WNiFe
CuCrZr

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