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首页> 外文期刊>Progress in Nuclear Energy >A STUDY ON RECRITICALITY CHARACTERISTICS OF FAST REACTORS IN PURSUIT OF RECRITICALITY-ACCIDENT-FREE CONCEPTS
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A STUDY ON RECRITICALITY CHARACTERISTICS OF FAST REACTORS IN PURSUIT OF RECRITICALITY-ACCIDENT-FREE CONCEPTS

机译:追求无事故性事故概念中快速反应器的事故性特性研究

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摘要

Recriticality of the fast reactor core loaded with mixed oxide fuels is discussed based on the steady-state neutronics calculations where simplified axial compaction of the molten core materials is assumed to take place within fixed core boundaries. A diffusion code was used to analyze the influences of variations in the core materials composition, reactor power and core diameter/height ratio on k_(eff). It was shown that a steel component in the core compaction played a dominant role in overall reactivity behaviors. The calculations implied that a reactor core had less recriticality potentials with higher fuel volume fraction and, if designed properly, also with higher core diameter/height ratio and increasing reactor power while keeping the power density constant.
机译:基于稳态中子学计算,讨论了装有混合氧化物燃料的快堆堆芯的非临界性,在这种计算中,假定在固定堆芯边界内发生了熔融堆芯材料的简化轴向压实。扩散代码用于分析堆芯材料组成,反应堆功率和堆芯直径/高度比对k_(eff)的影响。结果表明,核心压实中的钢成分在总体反应行为中起着主导作用。计算表明,反应堆堆芯具有较低的重临界潜力,燃料体积分数更高,如果设计合理,堆芯直径/高度比也更高,并且在保持功率密度恒定的同时增加了反应堆功率。

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