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Design study of a modular dry storage facility for typical PWR spent fuel

机译:用于典型压水堆乏燃料的模块化干式存储设施的设计研究

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A design study has been carried out for a modular, passively cooled dry storage facility for the spent fuel of a typical PWR. Each facility module has design capacity of a full reload-fuel batch for a 1000 MWth plant. It is shielded by a re-enforced concrete structure. The 102.48 W generated decay heat per module, is removed by natural convection of air flowing at 0.43 m/s and having exit temperature 229℃ which is favorably lower than the international norm of 380℃. In the worst case scenario of completely flooded module, WIMS-D/4 and CITATION based two-dimensional diffusion theory analysis yields k_(eff) = 0.8 which is 11.11 % lower than standard safe upper-limit. The proposed modular dry storage facility, with a passively cooled safe design and easy extensibility, offers economically viable solution to the problem of plants running out of on-site as well as interim wet storage capacity.
机译:已对模块化,被动冷却的干式存储设施进行了设计研究,该设施用于处理典型PWR的乏燃料。每个设施模块的设计能力均是1000兆瓦时电厂的全部重载燃料批次。它由钢筋混凝土结构屏蔽。每个模块产生的102.48 W衰减热通过以0.43 m / s的流速自然对流而被除去,出口空气的出口温度为229℃,这比国际标准380℃低。在完全淹没模块的最坏情况下,基于WIMS-D / 4和CITATION的二维扩散理论分析得出k_(eff)= 0.8,这比标准安全上限低11.11%。拟议的模块化干式存储设施,具有被动冷却的安全设计和易于扩展的特性,为解决工厂现场用完以及临时湿存储容量不足的问题提供了经济可行的解决方案。

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