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Improvements of two-pass core design for super fast reactor

机译:超快反应堆双程堆芯设计的改进

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Improvements of two-pass core design of Super critical-water cooled fast reactor (Super FR) are proposed. The core height has been shortened; assembly pitch is enlarged to take Control Rod (CR) design into account. Well-coupled fuel loading pattern is proposed, number of control rods location are limited only in second flow pass assemblies due to current flow pattern. Fuel shuffling is also confined within each own flow pass because of the different structure of assemblies. CR withdrawal is considered during the operation, satisfactory radial and axial power distribution can be achieved by implementing appropriate CR withdrawal strategy. Results suggest that all the design target, criteria and limits are satisfied in terms of average coolant outlet temperature, maximum linear heat generation rate (MLHGR), maximum cladding surface temperature (MCST) as well as core shutdown margin, negative coolant void reactivity coefficient and positive coolant density reactivity coefficient in all coolant density range.
机译:提出了超临界水冷快堆两通堆芯设计的改进。核心高度已缩短;增大了装配间距,以考虑控制杆(CR)的设计。提出了耦合良好的燃料加载方式,由于电流流型,控制杆位置的数量仅在第二流道组件中受到限制。由于组件的结构不同,燃料混洗也限制在每个自己的流道内。在操作过程中考虑CR退出,通过实施适当的CR退出策略可以实现令人满意的径向和轴向功率分配。结果表明,在平均冷却液出口温度,最大线性发热率(MLHGR),最大包层表面温度(MCST)以及堆芯停工裕度,负冷却剂空隙反应性系数和在所有冷却液密度范围内为正的冷却液密度反应系数。

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