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Transition cycle analysis of light water-cooled SMR core loaded with MOX (TRU) and FCM (TRU) fueled PWR assemblies

机译:用MOX(TRU)和FCM(TRU)加油的轻水冷SMR芯的过渡周期分析燃料PWR组件

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Y In this study, a light water-cooled small modular reactor (SMR) core loaded with special fuel assemblies composed of mixed oxide (MOX) fuel rods using UO2-TRUO2 and fully ceramic micro-encapsulated (FCM) fuel rods using TRUO2 was suggested and analyzed for transuranic (TRU) transmutation as an alternative option before the commercialization of sodium-cooled fast reactor (SFR). Especially, the FCM rods were loaded with only TRUO2 for deep burning of TRU. This study performed neutronic analysis of the transition cycle cores with the new fuel assemblies. In addition to the neutronic analysis, detailed analyses on two important issues for the light water-cooled reactor (LWR) core loaded with TRU were performed in fuel assembly level calculation. First, an effective burnable absorber design was searched to mitigate the degradation in effectiveness of the burnable absorber caused by the hardened neutron spectrum. Secondly, a reactivity decomposition analysis was performed for understanding quantitative nuclide-wise and reaction-wise contributions to the void reactivity which is a key safety parameter of TRU-bearing fuel assemblies. The analysis on the TRU mass flow through the transition cycles showed that a high net TRU consumption rate of 14.7% can be achieved at the equilibrium cycle.
机译:在本研究中,提出了一种使用UO2-TRUO2和完全陶瓷微包覆的(FCM)燃料棒组成的轻水冷的小模块化反应器(SMR)芯,其使用UO2-TRUO2和完全陶瓷微包覆的(FCM)燃料棒使用Truo2组成的特殊燃料组件并分析在钠冷却的快速反应器(SFR)商业化之前作为替代选择的经urancic(Tru)嬗变。特别是,FCM棒仅被TRUO2加载,以便深入燃烧Tru。该研究用新型燃料组件进行了过渡周期核的中性分析。除了中性分析之外,在燃料组装电平计算中进行了对具有Tru的轻水冷却反应器(LWR)芯的两个重要问题的详细分析。首先,搜索有效的可燃吸收器设计,以减轻由硬化中子谱引起的可燃吸收器的有效性的降解。其次,进行反应性分解分析,以了解对空隙反应性的定量核素和反应方面的贡献,这是Tru轴承燃料组件的关键安全参数。通过过渡循环的Tru质量流量的分析表明,在平衡周期中可以实现14.7%的高净停电率。

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