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Neutronic analyses play a fundamental role in the development of the WCLL blanket, providing guidelines for its design based on the evaluation of the nuclear performances.
The results demonstrate that the primary nuclear performances are already satisfactory at this preliminary stage of the design, having obtained the tritium self-sufficiency and an adequate shielding.
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Nuclear performance parameters such as the tritium breeding ratio and the energy deposition rate in the blanket and shield and their radial distributions have been evaluated.
Even though this blanket is somewhat complicated, its forward looking aims, that of maximizing nuclear performance to achieve a high thermal conversion efficiency, are well worth striving for.
Three-dimensional neutronic calculations were conducted to analyze the nuclear performance of the recent China Helium Cooled Solid Breeder (HCSB) test blanket module (TBM) in ITER.
This paper describes the nuclear performance for the two-component neutron source experienced in the proposed advanced H-mode D D regimes.
The nuclear performance of a fission blanket in a hybrid reactor has been validated by analyzing fission-rate experiments with a series of spherical depleted-uranium assemblies.
The design of Accelerator Driven Systems (ADS) requires the development of simulation tools that are able to describe in a realistic way their nuclear performance and transmutation rate capability.
The main objective has been to assess and optimise the nuclear performance of the HCPB test blanket modules in terms of the tritium generation, the nuclear heating and the radiation shielding and provide, among others, the data required for the engineering design of the test modules.
However, parametric studies during 2015 revealed that the HCPB concept have potential for a better nuclear performance, as well as margin for a significant simplification of the cooling internals by redefining the cooling plates and the architecture of the blanket, building a symmetric flow scheme.
This paper presents nuclear performance issues of the HCPB, HCLL, DCLL and WCLL breeder blankets, which are under development within the PPPT Power Plant Physics and Technologyy) programme of EUROfusion, with the objective to assess the potential and suitability of the blankets for the application to DEMO.
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