CONCEPTUAL DESIGN OF A LUNAR REGOLITH CLUSTERED-REACTOR SYSTEM

被引:0
|
作者
Bess, John Darrell [1 ]
机构
[1] Idaho Natl Lab, Ctr Space Nucl Res, Idaho Falls, ID 83415 USA
关键词
sodium-cooled fast-fission reactor; modular reactor system; lunar surface power; FAST BREEDER-REACTORS; PROSPECTOR; MOON; PERFORMANCE;
D O I
暂无
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
It is proposed that a fast-fission, heatpipe-cooled, lunar-surface power reactor system be divided into sub-critical units that could be launched safely without the incorporation of additional spectral shift absorbers or other complex means of control. The reactor subunits are to be emplaced directly into the lunar regolith, utilizing the regolith not just for shielding but also as the reflector material to increase the neutron economy of the system. While a single subunit cannot achieve criticality by itself, coordinated placement of additional subunits will provide a critical reactor system for lunar surface power generation. A lunar regolith clustered-reactor system promotes reliability, safety, and ease of manufacture and testing at the cost of a slight increase in launch mass per rated power level and an overall reduction in neutron economy when compared to a single-reactor system. Additional subunits may be launched with future missions to increase the cluster size and power according to desired lunar-base power demand and lifetime. The results address the potential uncertainties associated with the lunar regolith material and emplacement of the subunit systems. Physical distance between subunits within the clustered emplacement exhibits the most significant feedback regarding changes in overall system reactivity. Narrow, deep holes will be the most effective in reducing axial neutron leakage from the core. The variation in iron concentration in the lunar regolith can directly influence the overall system reactivity, although its effects are less than the more dominant factors of subunit emplacement.
引用
收藏
页码:215 / 229
页数:15
相关论文
共 50 条
  • [31] Performance analysis of a photovoltaic/thermal system with lunar regolith-based thermal storage for the lunar base
    SUN WenGan
    ZHAO Bin
    PEI Yu
    SHI LingFeng
    HU MaoBin
    LI MuJun
    REN Xiao
    PEI Gang
    Science China(Technological Sciences), 2024, 67 (04) : 1113 - 1123
  • [32] Moonfiber: Design of a Lunar Lavatube Outpost Using Regolith-Composite Fibers
    Netti, Vittorio
    Mangili, Paolo
    Angione, Alessandro
    Fuscello, Ivana
    Paradiso, Isabella
    EARTH AND SPACE 2024: ENGINEERING FOR EXTREME ENVIRONMENTS, 2024, : 794 - 807
  • [33] Oven Design for In-Situ Thermal Extraction of Volatiles From Lunar Regolith
    Ruan, Renhao
    Yang, Wei
    Hao, Jialong
    Guo, Guangjun
    EARTH AND SPACE SCIENCE, 2024, 11 (06)
  • [34] Conceptual design of rocket engines using regolith-derived propellants
    Hampl, Sebastian K.
    Austen, Dominic H.
    Van Ende, Marie-Aline
    Palecka, Jan
    Goroshin, Sam
    Shafirovich, Evgeny
    Bergthorson, Jeffrey M.
    ACTA ASTRONAUTICA, 2024, 223 : 594 - 605
  • [35] Conceptual design of laser fusion reactor KOYO-fast - Concepts of reactor system and laser driver
    Kozaki, Y.
    Miyanaga, N.
    Norimatsu, T.
    Soman, Y.
    Hayashi, T.
    Furukawa, H.
    Nakatsuka, M.
    Yoshida, K.
    Nakano, H.
    Kubomura, H.
    Kawashima, T.
    Nishimae, J.
    Suzuki, Y.
    Tsuchiya, N.
    Kanabe, T.
    Jitsuno, T.
    Fujita, H.
    Kawanaka, J.
    Tsubakimoto, K.
    Fujimoto, Y.
    Lu, J.
    Matsuoka, S.
    Ikegawa, T.
    Ueda, K.
    Tomabechi, K.
    JOURNAL DE PHYSIQUE IV, 2006, 133 : 837 - 839
  • [36] Conceptual design of laser fusion reactor KOYO-fast - Target design and the fueling system
    Norimatsu, T.
    Johzaki, T.
    Azechi, H.
    Mima, K.
    Nakao, Y.
    Sakagami, H.
    Shiraga, H.
    Kodama, R.
    Nagatomo, H.
    Endo, T.
    Iwamoto, A.
    Yoshida, H.
    Nakai, M.
    JOURNAL DE PHYSIQUE IV, 2006, 133 : 841 - 843
  • [37] CONCEPTUAL DESIGN OF HELIUM RECYCLING CONTROL-SYSTEM IN A DIVERTOR OF A TOKAMAK REACTOR
    KASHIWAGI, M
    IDO, S
    FUSION ENGINEERING AND DESIGN, 1995, 29 : 111 - 117
  • [38] Development of intelligent code system to support conceptual design of nuclear reactor core
    Kugo, T
    Nakagawa, M
    Tsuchihashi, K
    JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, 1997, 34 (08) : 760 - 770
  • [39] Conceptual design of megawatt class space heat pipe reactor power system
    Zhang W.-W.
    Liu X.
    Tian W.-X.
    Qiu S.-Z.
    Su G.-H.
    2017, Atomic Energy Press (51): : 2160 - 2164
  • [40] A novel approach to the analytical modelling of an auger conveyor system for lunar regolith transportation
    Jorge Benedi
    Gunter H. Just
    Matthew J. Roy
    Katharine L. Smith
    Acta Geotechnica, 2022, 17 : 5841 - 5855