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, August 2009, Pages 402–406
Thermo-hydraulic analysis of the gradual cool-down to 80 K of the ITER toroidal field coil, , , , , , , a Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, Chinab ITER Organization, 13108 St. Paul-lez-Durance, Francec Graduate School of the Chinese Academy of Sciences, Beijing 100190, ChinaA time-dependent thermo-hydraulic simulation for an ITER toroidal field (TF) coil gradual cool-down to 80 K has been performed using a new FORTRAN code. The code is based on a 1D helium flow and 1D multi-region solid heat conduction model. The whole TF coil is simulated taking into account thermal conduction between winding pack and case, which are cooled down separately. To limit coil mechanical stresses and coolant pressure drop in the cooling channels, an improved cool-down mode has been developed based on the analysis. Typical and gradual cool-down temperature distributions of TF coil and case are presented. The results indicate that gradual cool-down to 80 K can be achieved in 3 weeks.KeywordsCable in conduit conductors (A); Thermodynamics (C); Fusion magnets (F)
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