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首页> 外文期刊>Annals of nuclear energy >Neutronics analysis of HYLIFE-II blanket for fissile fuel breeding in an inertial fusion energy reactor
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Neutronics analysis of HYLIFE-II blanket for fissile fuel breeding in an inertial fusion energy reactor

机译:HYLIFE-II毯用于惯性聚变能反应堆中易裂变燃料的中子学分析

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摘要

A protective, 60 cm thick flowing liquid wall coolant is investigated as energy carrier, and fusile and fissile breeder medium in an inertial fusion energy (IFE) reactor. Flibe as the main constituent is mixed with increased mole-fractions of heavy metal salt (ThF_4 and UF_4) starting with 2 mol% up to 12 mol%. For a plant operation period of 30 years, radiation damage values were found as DPA=~65 for 2 mol% heavy metal in the coolant, and remain practically constant with increasing heavy metal fraction, well below the presumable limit of DPA=100. Helium production values are calculated as ~270 appm for 2 mol% heavy metal fraction, also being far below the limit value of 500 appm and remain at the same level with increasing heavy metal fraction. Such a flowing protective liquid wall extents the lifetime of the rigid first wall structure to a plant lifetime of 30 years. Fissionable metal salt in the flowing liquid enables one to breed high quality fissile fuel for external reactors by a self-sustaining tritium breeding for the fusion plant and increases plant power output.
机译:研究人员在惯性聚变能(IFE)反应堆中研究了一种保护性的,厚度为60厘米的流动液体壁冷却剂作为能量载体以及易裂变增殖介质。氟利昂作为主要成分,与增加的重金属盐(ThF_4和UF_4)的摩尔分数混合,从2 mol%到12 mol%开始。在工厂运行30年期间,发现冷却剂中2 mol%的重金属的辐射损伤值为DPA =〜65,并且随着重金属含量的增加实际上保持恒定,远低于DPA = 100的可能极限。对于2摩尔%的重金属馏分,氦气的生产值计算为〜270 appm,也远低于500 appm的极限值,并随着重金属分数的增加而保持在同一水平。这种流动的保护性液体壁将刚性的第一壁结构的寿命延长至工厂的30年寿命。流动液体中的可裂变金属盐使人们能够通过对聚变工厂进行自我维持的breed繁殖来繁殖用于外部反应堆的高质量易裂变燃料,并增加工厂的发电量。

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