The High Yield Lithium Injection Fusion Energy (HYLIFE) converter is a reactor concept for an inertial fusion electric power plant. In this concept, flowing molten lithium protects the structures of the fusion chamber from the deleterious effects of deuterium-tritium (DT) fusion reactions and converts the pulsed fusion energy into steay thermal power. Lithium is circulated as the primary coolant to transfer heat to an intermediate sodium loop which drives a superheated steam cycle. Lithium is also the source of the tritium fuel which is recovered via a molten-salt extraction process. The liquid-metal aspects of the HYLIFE plant with particular emphasis on the lithium systems
In conceptual design examples of a fusion reactor power plant, a lithium-bearing blanket in which a ...
As the fusion research community trends toward building larger and hotter devices, evidence points t...
3.00SIGLELD:9091.9F(CLM-R--231) / BLDSC - British Library Document Supply CentreGBUnited Kingdo
Generation of electric power from inertial confinement fusion requires a reaction chamber. One promi...
The lithium waterfall reactor is described as a concept in which liquid lithium serves as the coolan...
The HYLIFE-II concept for IFE (inertial fusion energy) is based on nonflammable, renewable liquid-wa...
The tritium breeding and energy absorption in an inertial fusion energy (IFE) reactor chamber have b...
AbstractThe TechnoFusión project involves the construction of a relevant set of scientific-technical...
In an inertial fusion energy (FE) thick-liquid chamber design such as HYLEE-II, a molten-salt is use...
The use of low atomic number liquid metals has been shown to have the potential to solve many of the...
A new concept of a Liquid Lithium Fusion Reactor and the first experimental results were presented a...
Liquid metal plasma-facing components (PFCs) provide numerous potential advantages over solid-materi...
The conceptual design of an Inertial Confinement Fusion (ICF) Hybrid Breeder reactor is presented. T...
Scoping studies were initiated to identify attractive reactor concepts for producing electric power ...
Developing a reactor compatible divertor has been identified as a particularly challenging technolog...
In conceptual design examples of a fusion reactor power plant, a lithium-bearing blanket in which a ...
As the fusion research community trends toward building larger and hotter devices, evidence points t...
3.00SIGLELD:9091.9F(CLM-R--231) / BLDSC - British Library Document Supply CentreGBUnited Kingdo
Generation of electric power from inertial confinement fusion requires a reaction chamber. One promi...
The lithium waterfall reactor is described as a concept in which liquid lithium serves as the coolan...
The HYLIFE-II concept for IFE (inertial fusion energy) is based on nonflammable, renewable liquid-wa...
The tritium breeding and energy absorption in an inertial fusion energy (IFE) reactor chamber have b...
AbstractThe TechnoFusión project involves the construction of a relevant set of scientific-technical...
In an inertial fusion energy (FE) thick-liquid chamber design such as HYLEE-II, a molten-salt is use...
The use of low atomic number liquid metals has been shown to have the potential to solve many of the...
A new concept of a Liquid Lithium Fusion Reactor and the first experimental results were presented a...
Liquid metal plasma-facing components (PFCs) provide numerous potential advantages over solid-materi...
The conceptual design of an Inertial Confinement Fusion (ICF) Hybrid Breeder reactor is presented. T...
Scoping studies were initiated to identify attractive reactor concepts for producing electric power ...
Developing a reactor compatible divertor has been identified as a particularly challenging technolog...
In conceptual design examples of a fusion reactor power plant, a lithium-bearing blanket in which a ...
As the fusion research community trends toward building larger and hotter devices, evidence points t...
3.00SIGLELD:9091.9F(CLM-R--231) / BLDSC - British Library Document Supply CentreGBUnited Kingdo