Title :
Wendelstein 7-X high heat flux components
Author :
Peacock, Andrew ; Boscary, J. ; Czerwinski, Michal ; Ehrke, G. ; Greuner, H. ; Junghanns, P. ; Mendelevitch, B. ; Smirnow, M. ; Stadler, R. ; Tittes, H. ; Tretter, J.
Author_Institution :
EURATOM Assoc., Max Planck Inst. for Plasma Phys., Garching, Germany
Abstract :
The actively water-cooled In-Vessel Components (IVCs) of the stellarator Wendelstein 7-X consist of the divertor, the first wall protection components, the port liners, each designed for different loading conditions, and the associated pipework, the control coils, the cryo-pump system, the Glow discharge electrodes, and a set of diagnostics. The divertor, designed for high heat fluxes, is a set of 10 target and baffle units arranged along the plasma surface. The design and production of these high heat flux (HHF) components is a challenging task. The divertor target elements, which are based on flat CFC (carbon-carbon fibre composite) tiles bonded via active metal casting onto CuCrZr cooling structures required intensive development and testing to reach a reliable performance; removing, under stationary conditions, 10 MW/m2. Industrially manufactured high quality target elements have been delivered and assessed, and the process of incorporating them into assembly units, so-called modules, has begun. The time scale for the completion of the HHF divertor has been held for the last four years and the final delivery of the HHF divertor is still planned in 2017. In parallel to the realization of the divertor the remaining IVCs have been defined, developed, designed and fabricated and the installation of many of these components has begun. Some of these components can also be expected, for a short period of time, to receive high heat loads approaching those of the divertor. These components will be described, in detail, from conception to realization.
Keywords :
fusion reactor design; fusion reactor divertors; fusion reactor safety; fusion reactor targets; plasma-wall interactions; stellarators; CuCrZr cooling structures; HHF divertor; Wendelstein 7-X high heat flux components; active metal casting; actively water-cooled IVC; baffle unit; carbon-carbon fibre composite tiles; control coils; cryo-pump system; divertor target elements; first wall protection components; glow discharge electrodes; high heat flux components; high heat fluxes; high quality target elements; in-vessel components; plasma surface; port liners; stellarator Wendelstein 7-X; target unit; Geometry; Graphite; Heat sinks; Heating; Plasmas; Prototypes; Tiles; Baffle; Divertor; First Wall; In-Vessel Components; Stellarator; W7-X; Water-cooled;
Conference_Titel :
Fusion Engineering (SOFE), 2013 IEEE 25th Symposium on
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4799-0169-2
DOI :
10.1109/SOFE.2013.6635360