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首页> 外文期刊>Annals of nuclear energy >Fuel cycle and neutronic performance of a spectral shift molten salt reactor design
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Fuel cycle and neutronic performance of a spectral shift molten salt reactor design

机译:谱移熔融盐反应堆设计的燃料循环和中子性能

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摘要

The fuel cycle performance and core design of the Transatomic Power liquid -fueled molten salt reactor concept is analyzed. This advanced reactor concept uses configurable zirconium hydride moderator rod assemblies to shift the neutron spectrum in the core from intermediate at beginning of life to thermal at end of life. With a harder spectrum during the early years of reactor operation, this spectral shift design drives captures in fertile U-238. The converted fissile plutonium makes up over 50% of the fissile material in the fuel salt over the last half (similar to 15 years) of reactor operation. A softer spectrum late in reactor life helps drive the fuel to a burnup of 90 GWd/MTU. Continuously changing physics necessitates time-dependent analyses resolved over long timescales (i.e., months to years), as this concept does not meet an equilibrium condition. The spectral shift and molten salt reactor material feeds and removals enable this concept to perform better in fuel cycle metrics, increasing resource utilization by more than 50% compared with a typical light water reactor (i.e., from 0.6% to 1%). These metrics are compared to similar fuel cycles using alternate technologies. Additional core design and analysis challenges associated with the spectral shift and use of molten salt reactor technology are identified and discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:分析了Transatomic Power液体燃料熔融盐反应堆概念的燃料循环性能和堆芯设计。这种先进的反应堆概念使用可配置的氢化锆减慢剂棒组件将堆芯中的中子光谱从寿命开始时的中间位置转移到寿命结束时的热范围。在反应堆运行的初期,由于频谱较硬,因此这种频谱偏移设计可驱动可育的U-238捕获。在反应堆运行的后半段(类似于15年)中,转化后的易裂变p占燃料盐中易裂变物质的50%以上。反应堆寿命较晚的较软光谱有助于将燃料燃尽至90 GWd / MTU。不断变化的物理学需要在较长的时间范围内(即数月至数年)解析与时间有关的分析,因为该概念不符合平衡条件。光谱位移和熔融盐反应堆物料的进料和清除使该概念在燃料循环指标上表现更好,与典型的轻水反应堆相比,资源利用率提高了50%以上(即从0.6%增至1%)。使用替代技术将这些指标与类似的燃料循环进行比较。识别和讨论了与熔融盐反应堆技术的光谱移动和使用相关的其他核心设计和分析挑战。 (C)2018 Elsevier Ltd.保留所有权利。

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