DocumentCode :
2733204
Title :
Structural analysis of the TPX plasma facing components
Author :
Reis, E.E. ; Chin, E. ; Redler, K. ; Williams, F.R.
Author_Institution :
Gen. Atomics, San Diego, CA, USA
Volume :
2
fYear :
1993
fDate :
11-15 Oct 1993
Firstpage :
1197
Abstract :
Structural design calculations and finite element analyses of the conceptual designs of the Tokamak Physics Experiment (TPX) divertor and inboard limiter were performed for thermal and electromagnetic induced mechanical loads. Finite element analyses of the divertor and inboard limiter support structures were performed for loads due to halo currents and eddy currents due to a plasma disruption. The results show the conceptual designs satisfy primary stress allowables. A number of scoping studies were performed to evaluate the thermal and structural response of various tile materials and designs for the TPX divertor. The purpose of these studies was to investigate what possible gains would occur if the present design requirements for the heat flux surfaces were eased. The studies were performed for beryllium and various carbon-carbon materials brazed to a dispersion strengthened copper tube. The studies included the effects of a soft copper compliant layer of varying thicknesses interfacing the copper tube and the tile. Elastic-plastic thermal stress analyses were performed of 1D, 2D, and 4D carbon-carbon and beryllium monoblock designs and for a saddleblock design with 1D carbon-carbon. The residual stresses and amount of plastic straining in the copper tube during the braze cycle are accounted for in computing the stress state after the brazing process and during steady state operating conditions
Keywords :
Tokamak devices; beryllium; carbon fibre reinforced composites; copper; eddy currents; elastoplasticity; finite element analysis; fusion reactor design; fusion reactor materials; fusion reactor operation; fusion reactors; thermal stresses; Be; C-C; Cu; TPX divertor; TPX plasma facing components; Tokamak Physics Experiment; composite materials; conceptual designs; dispersion strengthened tube; eddy currents; elastic-plastic thermal stress analyses; electromagnetic induced mechanical loads; finite element analyses; fusion reactor; heat flux surfaces; inboard limiter; monoblock designs; plasma disruption; plastic straining; scoping studies; soft compliant layer; steady state operating conditions; structural design calculations; thermal induced mechanical loads; tile materials; Copper; Electromagnetic analysis; Finite element methods; Performance analysis; Physics; Plasmas; Residual stresses; Thermal stresses; Tiles; Tokamaks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Fusion Engineering, 1993., 15th IEEE/NPSS Symposium on
Conference_Location :
Hyannis, MA
Print_ISBN :
0-7803-1412-3
Type :
conf
DOI :
10.1109/FUSION.1993.518537
Filename :
518537
Link To Document :
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