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TEMPERATURE REACTIVITY CONTROL METHODOLOGY FOR HYDRIDE-MODERATED SMALL REACTOR WITH POISON NUCLIDES

机译:带有毒理素的氢化物缓和小型反应器的温度反应性控制方法

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A small nuclear reactor for isolated area requires light weight, passive safety, nuclear security, efficiency and autonomous control for powering without human control. A small calcium-hydride moderated reactor was proposed to satisfy these demands. However, the positive temperature reactivity of the hydride moderated reactor was reported in the previous study. Furthermore, the positive temperature reactivity was also observed in the proposed core. This positive temperature reactivity comes from the combination of spectrum shift by temperature change and energy distribution of the reaction cross section. The present temperature reactivity control method utilized ~(113)Cd and ~(151)Eu as poison nuclides which have resonance capture cross section at shifted thermal neutron peak energy. These poison nuclides increase neutron capture reaction; consequently, this method made temperature reactivity negative over the whole temperature range. This methodology will be utilized to design the hydride-moderated small reactor.
机译:用于隔离区的小型核反应堆需要重量轻,被动安全,核安保,效率高且能在无需人工控制的情况下自主控制电力。为了满足这些需求,提出了一个小型的氢化钙缓和反应器。然而,在先前的研究中报道了氢化物缓和反应器的正温度反应性。此外,在所提出的芯中还观察到正温度反应性。这种正的温度反应性是由于温度变化引起的光谱偏移和反应截面的能量分布的结合。目前的温度反应性控制方法利用〜(113)Cd和〜(151)Eu作为有毒核素,这些核素在移动的中子峰值能量处具有共振捕获截面。这些有毒核素会增加中子俘获反应。因此,该方法在整个温度范围内使温度反应性为负。该方法学将用于设计氢化物缓和的小型反应堆。

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