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An ultra-long-life small safe fast reactor core concept having heterogeneous driver-blanket fuel assemblies

机译:一种超长寿命小型安全快速反应堆核心概念,具有异质驾驶员 - 橡皮布燃料组件

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New 80-MW (electric) ultra-long-life sodium cooled fast reactor core having inherent safety characteristics is designed with heterogeneous fuel assemblies comprised of driver and blanket fuel rods. Several options using upper sodium plenum and SSFZ (Special Sodium Flowing Zone) for reducing sodium void reactivity are neutronically analyzed in this core concept in order to improve the inherent safety of the core. The SSFZ allowing the coolant flow from the peripheral fuel assemblies increases the neutron leakage under coolant expansion or voiding. The Monte Carlo calculations were used to design the cores and analyze their physics characteristics with heterogeneous models. The results of the design and analyses show that the final core design option has a small burnup reactivity swing of 618 pcm over ~54 EFPYs cycle length and a very small sodium void worth of ~35pcm at EOC (End of Cycle), which leads to the satisfaction of all the conditions for inherent safety with large margin based on the quasi-static reactivity balance analysis under ATWS (Anticipated Transient Without Scram).
机译:具有固有的安全特性的新型80-MW(电动)超长寿命冷却的快速反应器芯采用由驾驶员和橡皮布燃料棒组成的异构燃料组件。在该核心概念中,使用上钠增药和SSFZ(特殊钠流动区)用于减少空隙反应性的几种选择,以提高核心的固有安全性。允许来自外围燃料组件的冷却剂流的SSFZ增加了冷却剂膨胀或空隙下的中子泄漏。 Monte Carlo计算用于设计核心并用异质模型分析它们的物理特性。设计和分析的结果表明,最终核心设计选项具有618个PCM的小燃烧反应性摆动,超过〜54 efpys循环长度和非常小的VOI钠价值在EOC(周期结束),这导致基于ATW的准静电反应性平衡分析的基于准静态反应性平衡分析的大边缘的固有安全性的所有条件的满意度(预期的瞬态没有扰流)。

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