Nuclear performances of the water-cooled lithium lead DEMO reactor: Neutronic analysis on a fully heterogeneous model

被引:21
|
作者
Moro, F. [1 ]
Arena, P. [2 ]
Catanzaro, I. [3 ]
Colangeli, A. [1 ,4 ]
Del Nevo, A. [2 ]
Flammini, D. [1 ]
Fonnesu, N. [1 ]
Forte, R. [3 ]
Imbriani, V. [5 ]
Mariano, G. [1 ]
Mozzillo, R. [6 ]
Noce, S. [7 ]
Villari, R. [1 ]
机构
[1] ENEA, Dept Fus & Nucl Safety Technol, I-I00044 Frascati, Italy
[2] ENEA, Dept Fus & Nucl Safety Technol, I-40032 Camugnano, BO, Italy
[3] Univ Palermo, Dept Engn, I-90128 Palermo, Italy
[4] Univ Naples Federico II, Dept Ind Engn, CREATE, Naples, Italy
[5] Sapienza Univ Rome, DIAEE Dept, I-00186 Rome, Italy
[6] Univ Basilicata, Sch Engn, CREATE, I-85100 Potenza, Italy
[7] Univ Roma Tor Vergata, Dept Ind Engn, I-00133 Rome, Italy
关键词
DEMO; WCLL; Breeding blanket; Neutronics; Nuclear analysis; MCNP; CHALLENGES; TOOLS;
D O I
10.1016/j.fusengdes.2021.112514
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The development of a conceptual design for the Demonstration Fusion Power Reactor (DEMO) is a key issue within the EUROfusion roadmap. The DEMO reactor is designed to produce a fusion power of about 2 GW and generate a substantial amount of electricity, relying on a closed tritium fuel cycle: it implies that the breeding blanket (BB) shall guarantee a suitable tritium production to enable a continuous operation without any external supply. The Water-Cooled Lithium Lead (WCLL) concept is a candidate for the DEMO BB: it uses liquid Lithium Lead as breeder and neutron multiplier and water in PWR condition as coolant. The neutronics analyses carried out in the past have been performed using a semi-heterogeneous representation of the BB, since the complexity of its structure makes the generation of a detailed MCNP model a very demanding and challenging task. Results highlighted good performances for the WCLL BB, both in terms of shielding effectiveness and tritium self-sufficiency. A recently updated assessment of the tritium breeding ratio (TBR) requirement for DEMO, considering margins for calculation uncertainties and incomplete models of the whole machine, led to the definition of a tentative 1.15 value for the TBR. Moreover, the implementation of an accurate BB neutronics model, consistent with the engineering design, is recommended for the evaluation of the tritium self-sufficiency. In order to tackle these issues, an MCNP model of the DEMO tokamak, integrating a fully heterogeneous WCLL BB has been developed for the first time, including an accurate description of the FW water channels, as well as a comprehensive definition of the breeding zone inner structure. A complete assessment of the WCLL BB nuclear performances, through 3D neutron and gamma transport simulations, has been carried out by means the MCNP Monte Carlo code and JEFF nuclear libraries.
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页数:7
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