The Helium-Cooled Lithium Lead (HCLL) and Water-Cooled Lithium Lead (WCLL) Breeding Blankets are two of the four blanket designs proposed for DEMO reactor. The study of tritium transport inside the blankets is fundamental to assess their preliminary design and safety features. A mathematical model has been derived, in a new form making makes easier to determine the most critical components as far as tritium losses and tritium inventories are concerned, and to model the tritium performance of the whole system. Two cases have been studied, the former with tritium generation rate constant in time and the latter considering a typical pulsed operation for a time span of 100 h. Tritium inventories and tritium losses are the main output of the mod...
The feasibility of fusion reactor blankets with low residual activity is examined. Several designs a...
In the frame of the EUROfusion roadmap, the development of a conceptual design for the Demonstration...
In the frame of the EUROfusion consortium activities the Helium Cooled Pebble Bed (HCPB) and the Wat...
The Helium-Cooled Lithium Lead (HCLL) breeding blanket is one of the European blanket designs propos...
tIn the breeding areas a significant fraction of the tritium produced is extracted out from the Bree...
Tritium mobility through breeding blanket (BB) and steam generator heat transfer areas is a crucial ...
Tritium permeation through Breeding Blanket and Steam Generator heat transfer areas is a crucial asp...
It is critical to be able to predict tritium transport in lead-lithium liquid metal (LM) blankets wi...
In a fusion power demonstration plant (DEMO), the development of a tritium transport model is mandat...
Tritium behavior in the breeder/coolant plays a crucial role in keeping the tritium loss under an al...
When dealing with activities related to the design and optimisation of the Helium Cooled Lithium Lea...
In a Dual-Coolant Lead-Lithium (DCLL) blanket, tritium losses from the PbLi into cooling helium stre...
The tritium balance in DEMO reactor is a key factor for the success of the production of energy from...
Hydrogen dissolves in and permeates through most materials, thus it is important to understand the p...
The current studies on the development of the EU DEMO breeding blanket include among the options the...
The feasibility of fusion reactor blankets with low residual activity is examined. Several designs a...
In the frame of the EUROfusion roadmap, the development of a conceptual design for the Demonstration...
In the frame of the EUROfusion consortium activities the Helium Cooled Pebble Bed (HCPB) and the Wat...
The Helium-Cooled Lithium Lead (HCLL) breeding blanket is one of the European blanket designs propos...
tIn the breeding areas a significant fraction of the tritium produced is extracted out from the Bree...
Tritium mobility through breeding blanket (BB) and steam generator heat transfer areas is a crucial ...
Tritium permeation through Breeding Blanket and Steam Generator heat transfer areas is a crucial asp...
It is critical to be able to predict tritium transport in lead-lithium liquid metal (LM) blankets wi...
In a fusion power demonstration plant (DEMO), the development of a tritium transport model is mandat...
Tritium behavior in the breeder/coolant plays a crucial role in keeping the tritium loss under an al...
When dealing with activities related to the design and optimisation of the Helium Cooled Lithium Lea...
In a Dual-Coolant Lead-Lithium (DCLL) blanket, tritium losses from the PbLi into cooling helium stre...
The tritium balance in DEMO reactor is a key factor for the success of the production of energy from...
Hydrogen dissolves in and permeates through most materials, thus it is important to understand the p...
The current studies on the development of the EU DEMO breeding blanket include among the options the...
The feasibility of fusion reactor blankets with low residual activity is examined. Several designs a...
In the frame of the EUROfusion roadmap, the development of a conceptual design for the Demonstration...
In the frame of the EUROfusion consortium activities the Helium Cooled Pebble Bed (HCPB) and the Wat...