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Effects of Conversion Ratio Change on the Core Performances in Medium to Large TRU Burning Reactors

机译:转化率变化对媒体到大型Tru燃烧反应器中核心性能的影响

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Conceptual fast reactor core designs with sodium coolant are developed at 1,500, 3,000 and 4,500 MWt which are configured to transmute recycled transuranics (TRU) elements with external feeds consisting of LWR spent fuel. Even at each pre-determined power level, the performance parameters, reactivity coefficients and their implications on the safety analysis can be different when the target TRU conversion ratio changes. In order to address this aspect of design, a study on TRU conversion ratio change was performed. The results indicate that it is feasible to design a TRU burner core to accommodate a wide range of conversion ratios by employing different fuel cladding thicknesses. The TRU consumption rate is found to be proportional to the core power level without any significant deterioration in the core performance at higher power levels. A low conversion ratio core has an increased TRU consumption rate and much faster burnup reactivity loss, which calls for appropriate means for reactivity compensation. As for the reactivity coefficients related with the conversion ratio change, the core with a low conversion ratio has a less negative Doppler coefficient, a more negative axial expansion coefficient, a more negative control rod worth per rod, a more negative radial expansion coefficient, a less positive sodium density coefficient and a less positive sodium void worth. A slight decrease in the delayed neutron fraction is also noted, reflecting the fertile U-238 fraction reduction.
机译:概念上的快反应堆堆芯设计与冷却剂钠在其被配置到蜕变再循环超铀(TRU)与由LWR乏燃料外部供稿元件1500,3000和4500 MWt的开发。甚至在每个预先确定的功率电平,所述性能参数,反应性系数以及它们对安全分析的影响可以是不同的目标TRU转换比的变化时。为了解决设计的该方面,进行上TRU转化率的变化的研究。结果表明,它是设计一个TRU燃烧器芯通过采用不同的燃料包壳的厚度,以适应宽范围的转换比的可行的。在TRU消费率被发现是成正比的核心功率水平,而不在更高的功率水平的核心性能有任何显著恶化。低转化率芯具有增加的TRU消耗率和更快的反应性燃耗损失,对于反应性补偿适当装置,该装置的呼叫。作为用于与转化率变化相关的反应性系数,具有低转化率的芯具有较小的负多普勒系数,更负的轴向膨胀系数,每杆更负的控制棒价值,更负的径向膨胀系数,少正密度钠系数和不太积极的钠空隙值得。在缓发中子馏分A略微下降还应当注意,反射肥沃U-238级分还原。

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