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Impact of Neutron Spectrum Shift on Breed and Burn Reactor Concept

机译:中子谱移位对品种和烧伤反应堆概念的影响

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Neutronic analysis has been performed for an infinite fuel cell and a one-dimensional (ID) slab Breed and Burn (B&B) reactor with metallic fuel (U-10%wt Zr), cladding of HT-9, and coolant of lead bismuth eutectic (Pb-55.5%wt Bi). The purpose is to investigate the effect of the neutron spectrum on fuel burning in the B&B reactor and possibility to improve burnup performance of the B&B reactor by applying the neutron spectrum shift. The results of the fuel cell analysis indicate that inserting graphite moderator pins into a conventional fuel cell causes the neutron spectrum to shift into a softer one. This accelerates the transmutation of uranium-238 into plutonium-239 in the first burnup period. After a certain burnup period, the fuel cell can then provide a higher infinite neutron multiplication factor (km), on the condition that the moderator pins are withdrawn. We then present the neutronic analysis for a ID slab B&B reactor. The primary results of the analysis indicate that it is possible to improve burnup performance by applying a neutron spectrum shift, and that the shift increased maximum burnup of the core by about 2.44%.
机译:已经对无限燃料电池和一维(ID)板品种和燃烧(B&B)反应器进行了中性分析,金属燃料(U-10%wt Zr),HT-9的包层和铅铋的冷却剂(PB-55.5%WT BI)。目的是研究中子谱对B&B反应器中燃料燃料的影响,以及通过施加中子谱偏移来改善B&B反应器的燃烧性能的可能性。燃料电池分析的结果表明将石墨体调节器引脚插入传统的燃料电池导致中子谱转移到更柔软的燃料电池中。这将铀-338的嬗变加速到第一个燃烧时段中的钚-339。在一定的燃尽周期之后,燃料电池然后可以提供更高的无限中子倍增因子(Km),在所述主持人引脚被撤回的条件下。然后,我们为ID板B&B反应器提供中性分析。分析的主要结果表明,通过施加中子谱偏移可以提高燃烧性能,并将速度提高核心的最大燃烧量约为2.44%。

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