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A Combined Electromagnetic and Mechanical Approach for EU-DEMO Toroidal Field Coils
 
 
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Editorial

Special Issue on Structural and Thermo-Mechanical Analyses in Nuclear Fusion Reactors

by
Pietro Arena
1,* and
Pietro Alessandro Di Maio
2
1
Department of Fusion and Nuclear Safety Technology, ENEA, C.R. Brasimone, 40032 Camugnano, Italy
2
Department of Engineering, University of Palermo, 90128 Palermo, Italy
*
Author to whom correspondence should be addressed.
Appl. Sci. 2022, 12(24), 12562; https://doi.org/10.3390/app122412562
Submission received: 2 December 2022 / Accepted: 4 December 2022 / Published: 8 December 2022
(This article belongs to the Special Issue Structural and Thermo-Mechanical Analyses in Nuclear Fusion Reactors)
Nuclear fusion is one of the most promising technologies to be adopted for the production of electricity. Indeed, since this kind of reactor adopts hydrogen isotopes as fuel, nuclear fusion power plants will not emit any green-house gases and will not suffer limitations in terms of fossil fuel provisions. Moreover, their operation will lead to a reduced amount of nuclear waste, mainly due to the absence of long-lived isotopes.
These are some of the reasons that have led the world community to make an effort towards achieving the feasible design for a nuclear fusion reactor. In order to achieve a mature design of a nuclear fusion machine, different aspects and requirements have to be considered and fulfilled. The goal of this Special Issue was to provide an overview of the different activities that are currently on-going in the design of a nuclear fusion reactor from the structural and thermo-mechanical standpoint.
A total of five papers from different fusion-reactor-related areas, such as breeding blankets, magnets, and diagnostics, have been collected and are presented in this Special Issue. The paper published by Reteesh et al. [1] reports on an interesting procedure for the design of a challenging DEMO Helium Cooled Pebble Bed (HCPB) breeding blanket local region, adopting non-linear analyses aimed at assessing the inelastic criteria mentioned in the RCC-MRx design code. Chelihi et al. [2] focussed their attention on Thomson diagnostic structural behaviour during the normal operation of WEST tokamak. The analyses highlighted that the system is able to withstand the expected loads, even though some areas of improvement were noted. Catanzaro et al. [3] carried out a detailed optimisation of the cooling structures (both first wall channels and breeding zone tubes) of the Central Outboard Blanket (COB) segment of the DEMO Water Cooled Lead Lithium (WCLL) breeding blanket. Moreover, they proposed an innovative method aimed at the extrapolation of the thermal field calculated on a local region of the WCLL breeding blanket to the overall COB segment; they aimed to assess its thermo-mechanical behaviour under different loading scenarios. Bongiovì et al. [4] performed a detailed analysis of the top cap of the DEMO WCLL breeding blanket. In the first phase, thermal optimisation of the top cap region was performed. Then, a mechanical analysis was carried out considering the results obtained in the previous thermal step to verify that the design code criteria were fulfilled. This process was iterated until both thermal and mechanical criteria were fulfilled. Finally, Giannini et al. [5] presented a detailed electromagnetic and structural analysis performed on the DEMO toroidal field coil system and its support structures. The structural model was used to obtain the displacement and stress fields at various time points to perform mechanical evaluation as well as the fatigue assessment.
Although submissions for this Special Issue have been closed, the research on nuclear fusion reactors continues with the aim of tackling the open issues in the field, in order to reach more mature reactor designs that could produce “fusion electricity” by the end of the current century.

Author Contributions

Conceptualization, P.A. and P.A.D.M.; writing—original draft preparation, P.A.; writing—review and editing, P.A.D.M.; supervision, P.A.D.M. All authors have read and agreed to the published version of the manuscript.

Funding

This research received no external funding.

Conflicts of Interest

The authors declare no conflict of interest.

References

  1. Reteesh, A.; Hernández, F.A.; Zhou, G. Application of Inelastic Method and Its Comparison with Elastic Method for the Assessment of In-Box LOCA Event on EU DEMO HCPB Breeding Blanket Cap Region. Appl. Sci. 2021, 11, 9104. [Google Scholar] [CrossRef]
  2. Chelihi, B.; Colledani, G.; Doceul, L.; Lefèvre, N.; Batal, T.; Garitta, S.; Faïsse, F.; Verger, J.; Bec, A. Analysis of the New Thomson Scattering Diagnostic System on WEST Tokamak. Appl. Sci. 2022, 12, 1318. [Google Scholar] [CrossRef]
  3. Catanzaro, I.; Bongiovì, G.; Di Maio, P.A. Analysis of the Thermo-Mechanical Behaviour of the EU DEMO Water-Cooled Lithium Lead Central Outboard Blanket Segment under an Optimized Thermal Field. Appl. Sci. 2022, 12, 1356. [Google Scholar] [CrossRef]
  4. Bongiovì, G.; Giambrone, S.; Catanzaro, I.; Di Maio, P.A.; Arena, P. Thermo-Mechanical Analysis and Design Update of the Top Cap Region of the DEMO Water-Cooled Lithium Lead Central Outboard Blanket Segment. Appl. Sci. 2022, 12, 1564. [Google Scholar] [CrossRef]
  5. Giannini, L.; Boso, D.P.; Corato, V. A Combined Electromagnetic and Mechanical Approach for EU-DEMO Toroidal Field Coils. Appl. Sci. 2022, 12, 2766. [Google Scholar] [CrossRef]
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MDPI and ACS Style

Arena, P.; Di Maio, P.A. Special Issue on Structural and Thermo-Mechanical Analyses in Nuclear Fusion Reactors. Appl. Sci. 2022, 12, 12562. https://doi.org/10.3390/app122412562

AMA Style

Arena P, Di Maio PA. Special Issue on Structural and Thermo-Mechanical Analyses in Nuclear Fusion Reactors. Applied Sciences. 2022; 12(24):12562. https://doi.org/10.3390/app122412562

Chicago/Turabian Style

Arena, Pietro, and Pietro Alessandro Di Maio. 2022. "Special Issue on Structural and Thermo-Mechanical Analyses in Nuclear Fusion Reactors" Applied Sciences 12, no. 24: 12562. https://doi.org/10.3390/app122412562

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