Title :
Tritium Transport Issues for Helium-Cooled Breeding Blankets
Author :
Franza, F. ; Boccaccini, Lorenzo V. ; Demange, D. ; Ciampichetti, A. ; Zucchetti, M.
Author_Institution :
Karlsruhe Inst. of Technol., Eggenstein-Leopoldshafen, Germany
Abstract :
Tritium mobility through breeding blanket (BB) and steam generator heat transfer areas is a crucial aspect for the design of the next generation DEMO fusion power plants. Tritium is generated inside the breeder, dissolves in and permeates through materials, thus leading to a potential hazard for the environment. For this reason, it is important to carry out the tritium migration analysis for a specific DEMO blanket configuration to predict the released amount of tritium during the plant operation. Unfortunately, tritium assessments are often affected by several uncertainties implying very important modeling and parametric issues. In this paper, the main permeation issues are identified and possible solutions are discussed to address the modeling issues and the parametric uncertainties affecting the T migration assessments for the two DEMO helium-cooled BBs: 1) helium-cooled pebble beds and 2) helium-cooled lithium-lead. For these two helium-cooled blanket concepts various tritium migration analyses will be carried out by means of the computational tool FUS-TPC to define proper and feasible tritium mitigation techniques, which are needed to keep the tritium losses lower than the allowable environmental release (i.e., 20 Ci/d).
Keywords :
fusion reactor blankets; fusion reactor design; tritium handling; DEMO blanket configuration; DEMO fusion power plants; computational tool FUS-TPC; heat transfer; helium-cooled breeding blankets; helium-cooled lithium-lead; steam generator; tritium assessments; tritium transport; Coolants; Electron tubes; Helium; Hydrogen; Metals; Blanket; DEMO; permeation; tritium; tritium.;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2014.2329573