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Impact of Resonance Treatment on Minor Actinide Incineration in a D-T Thorium Fusion Concept

机译:D-T ium融合概念中共振处理对次Act系元素焚化的影响

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Resonance treatments have an essential role to reliable neutronic calculations with different neutronic parameters. In this study presents the effect of resonance treatment and various tritium breeder materials on the incineration of the nitride fuels containing minor actinide mixed thoria in the Deuterium-Tritium fusion driven hybrid reactor as time dependent. Neutron transport calculations under resonance treatment and without resonance treatment are performed by using XSDRNPM/SCALE 5 codes. The impact of resonance treatments and various tritium breeder materials on tritium breeding, energy multiplication, total fission rate (∑_f), cumulative fissile fuel enrichment, fissile fuel breeding, average burn up values are comparatively investigated. It is observed that the neutronic results affect from both resonance treatment and the tritium breeder materials as time dependent.
机译:共振处理对于具有不同中子参数的可靠中子计算具有至关重要的作用。在这项研究中,提出了共振处理和各种tri育种材料对氘-rit聚变驱动混合反应堆中含次act系混合氧化的氮化物燃料的焚化的影响。使用XSDRNPM / SCALE 5代码在共振处理下和未进行共振处理下进行中子输运计算。比较研究了共振处理和各种tri育种材料对tri育种,能量倍增,总裂变率(∑_f),可裂变燃料累积富集,可裂变燃料育种,平均燃耗值的影响。观察到,中子学结果受共振处理和the育种材料的影响,与时间有关。

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