Calculations of the tritium breeding ratio and heating rates for two proposed blanket designs are obtained by using the Monte Carlo method. The materials used for the blanket are vanadium and lithium. Lithium is used to slow down the neutrons and produce tritium. Vanadium is used as the structural material. Results obtained indicate that a tritium breeding ratio of 1. 3 is easily obtained by either design and that the heating rates for both designs are similar. These results are in general agreement with previous studies of fusion reactor blankets which used niobium as the structural material
Blankets with a cylindrical structure have been developed for a water-cooled ceramic breeder concept...
The self-cooled lithium-vanadium fusion blanket concept has several attractive operational and envir...
Any fusion reactor in the near future will be based on the deuteriumtritium fusion reaction. Since t...
Calculations of the tritium breeding ratio and heating rates for two proposed blanket designs are ob...
At the present state of engineering development, the most probable fusion reactor fuel cycle will us...
The feasibility of fusion reactor blankets with low residual activity is examined. Several designs a...
This study gives a report an neutronic calculations which have been performed to design the blanket ...
The tritium production rate in a DEMO fusion-reactor blanket with Li17Pb83 liquid breeder has been c...
The aim of this study is to investigate tritium breeding ratio (TBR) and first wall material damage ...
Spatially dependent neutron and gamma fluxes and their associated heating rates have been calculated...
The many possible combinations of blanket materials, tritium generation and recovery systems, and po...
From 5th symposium on engineering problems of fusion research; Princeton, New Jersey, USA (6 Nov 197...
The viability of various materials and blanket designs for use in nuclear fusion reactors can be tes...
Neutronic analysis in the HCLL blanket module has been established, and the calculation was performe...
Typescript (photocopy).Numerical and experimental studies were carried out to assess the feasibility...
Blankets with a cylindrical structure have been developed for a water-cooled ceramic breeder concept...
The self-cooled lithium-vanadium fusion blanket concept has several attractive operational and envir...
Any fusion reactor in the near future will be based on the deuteriumtritium fusion reaction. Since t...
Calculations of the tritium breeding ratio and heating rates for two proposed blanket designs are ob...
At the present state of engineering development, the most probable fusion reactor fuel cycle will us...
The feasibility of fusion reactor blankets with low residual activity is examined. Several designs a...
This study gives a report an neutronic calculations which have been performed to design the blanket ...
The tritium production rate in a DEMO fusion-reactor blanket with Li17Pb83 liquid breeder has been c...
The aim of this study is to investigate tritium breeding ratio (TBR) and first wall material damage ...
Spatially dependent neutron and gamma fluxes and their associated heating rates have been calculated...
The many possible combinations of blanket materials, tritium generation and recovery systems, and po...
From 5th symposium on engineering problems of fusion research; Princeton, New Jersey, USA (6 Nov 197...
The viability of various materials and blanket designs for use in nuclear fusion reactors can be tes...
Neutronic analysis in the HCLL blanket module has been established, and the calculation was performe...
Typescript (photocopy).Numerical and experimental studies were carried out to assess the feasibility...
Blankets with a cylindrical structure have been developed for a water-cooled ceramic breeder concept...
The self-cooled lithium-vanadium fusion blanket concept has several attractive operational and envir...
Any fusion reactor in the near future will be based on the deuteriumtritium fusion reaction. Since t...