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Improving SFR Economics through Innovations from Thermal Design and Analysis Aspects

机译:通过热设计和分析方面的创新提高SFR经济学

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Achieving economic competitiveness as compared to LWRs and other Generation IV (Gen-IV) reactors is one of the major requirements for large-scale investment in commercial sodium cooled fast reactor (SFR) power plants. Advances in R&D for advanced SFR fuel and structural materials provide key long-term opportunities to improve SFR economics. In addition, other new opportunities are emerging to further improve SFR economics. This paper provides an overview on potential ideas from the perspective of thermal hydraulics to improve SFR economics. These include a new hybrid loop-pool reactor design to further optimize economics, safety, and reliability of SFRs with more flexibility, a multiple reheat and intercooling helium Brayton cycle to improve plant thermal efficiency and reduce safety related overnight and operation costs, and modern multi-physics thermal analysis methods to reduce analysis uncertainties and associated requirements for over-conservatism in reactor design. This paper reviews advances in all three of these areas and their potential beneficial impacts on SFR economics.
机译:与轻水堆和其他第四代(Gen-IV)反应堆相比,实现经济竞争力是对商用钠冷快堆(SFR)电厂进行大规模投资的主要要求之一。先进SFR燃料和结构材料的研发进展为提高SFR经济性提供了重要的长期机遇。此外,其他新的机会正在涌现,以进一步提高SFR的经济性。本文从热工学的角度概述了潜在的构想,以提高SFR的经济性。其中包括新的混合循环池反应堆设计,可通过进一步的灵活性进一步优化SFR的经济性,安全性和可靠性,采用多次再热和中冷氦布雷顿循环,以提高工厂的热效率并降低与安全相关的过夜和运营成本,以及现代化的多-物理热分析方法可减少分析不确定性以及反应堆设计中过度保守的相关要求。本文回顾了这三个领域的进展及其对SFR经济学的潜在有益影响。

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