Title :
Assessment Studies and Manufacturing Trials for the Conductors of DEMO TF Coils
Author :
Muzzi, Luigi ; Anemona, A. ; della Corte, Antonio ; Di Zenobio, A. ; Turtu, S. ; Bruzzone, Pierluigi ; Sedlak, Kamil ; Stepanov, Boris ; Brutti, C. ; Biancolini, M.E. ; Reccia, L. ; Harman, J.
Author_Institution :
Italian Nat. Agency for New Technol., Energy & Sustainable Econ. Dev. (ENEA), Frascati, Italy
Abstract :
This paper reports the main outcomes of the 2013 design activities for the toroidal field magnet of the European nuclear fusion reactor DEMOnstration Power Plant (DEMO). Within the current project plan, the manufacture of full-size conductor prototypes during 2014 and their test during 2015 are foreseen, aimed at the assessment of the proposed cable-in-conduit-conductor technologies. Industrial partners have been thus already involved at this early stage, and the preliminary cabling trials performed are illustrated here. As far as the coil design assessment is concerned, one of the main aspects to be investigated is the mechanical performance of the magnet, considering its large size and the high electromagnetic forces involved. An overall 3-D finite-element model of the coil has been set up, and mechanical stress analysis has been carried out for a selected instant of the plasma scenario after the computation of the electromagnetic loads within a full 3-D system model, including central solenoid and poloidal field coil contributions. The resulting loads have been mapped on the finite-element-method model, making use of a novel mesh-independent interpolator based on radial basis functions. The results reported here highlight a quite high level of stress, which is close to the acceptance limits, in some regions of the steel casing. Further investigations and assessments are required, but the most critical areas are clearly identified.
Keywords :
electric conduits; finite element analysis; interpolation; radial basis function networks; stress analysis; superconducting coils; superconducting magnets; DEMO TF coils; European nuclear fusion reactor demonstration power plant; cable-in-conduit-conductor technologies; cabling trials; central solenoid; coil design assessment; electromagnetic forces; electromagnetic loads; full 3D system model; full-size conductor prototypes; mechanical performance; mechanical stress analysis; mesh-independent interpolator; overall 3D finite-element model; plasma scenario; poloidal field coil contributions; radial basis functions; toroidal field magnet; Coils; Conductors; Load modeling; Manganese; Stress; Superconducting magnets; Windings; Cable-in-Conduit Conductor; Cable-in-conduit conductor (CICC); DEMO; DEMOnstration Power Plant (DEMO); Fusion reactors; Structural analysis; Superconducting magnets; fusion reactors; structural analysis; superconducting magnets;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2014.2360561