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Conceptual Design Study on Very Small Long-Life Gas Cooled Fast Reactor using Metallic Natural Uranium-Zr as Fuel Cycle Input

机译:基于金属天然铀-ZR的非常小的长寿命气体冷却快速反应器的概念设计研究作为燃料循环输入

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A conceptual design study of very small 350 MWth Gas-cooled Fast Reactors with Helium coolant has been performed. In this study Modified CANDLE burn-up scheme was implemented to create small and long life fast reactors with natural Uranium as fuel cycle input. Such system can utilize natural Uranium resources efficiently without the necessity of enrichment plant or reprocessing plant. The core with metallic fuel based was subdivided into 10 regions with the same volume. The fresh Natural Uranium is initially put in region-1, after one cycle of 10 years of burn-up it is shifted to region-2 and the each region-1 is filled by fresh Natural Uranium fuel. This concept is basically applied to all axial regions. The reactor discharge burn-up is 31.8% HM. From the neutronic point of view, this design is in compliance with good performance.
机译:已经进行了对具有氦冷却剂的非常小的350 mwth气体冷却快速反应器的概念设计研究。在本研究中,实施了改良的蜡烛燃烧方案,以创建具有天然铀作为燃料循环输入的小型和长寿命的快速反应器。这种系统可以有效地利用天然铀资源,而无需富集植物或再处理厂。具有金属燃料基的核心被细分为10个具有相同体积的区域。新鲜天然铀最初放入区域-1,在10年的烧伤循环后,它被移位到区域-2,并且每个区域-1由新鲜天然铀燃料填充。这个概念基本上适用于所有轴向区域。反应器放电烧伤是31.8%HM。从中性的角度来看,这种设计符合良好的性能。

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