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超临界水冷堆与熔盐堆特征参数对比分析

Comparative Analysis of Characteristic Parameters of Supercritical Water-Cooled Reactor and Molten Salt Reactor

  • 摘要:
    目的 第四代核能系统国际论坛(Generation Ⅳ International Forum,GIF)提出的6种反应堆概念设计,旨在大幅度降低核废物产生、充分利用铀资源、降低核电建设与运营成本。超临界水冷堆与熔盐堆作为2种候选堆型,具有安全性高、清洁、高效等优势,受到各国积极关注。为明确第四代堆的未来发展方向,文章综述了2种反应堆特征参数的差异,评估不同堆型的优缺点,给出发展思考与建议。
    方法 采用文献综述的方式介绍了超临界水冷堆与熔盐堆在国内外的发展现状,对比分析了2种堆型在安全性、材料制备、系统设计、核燃料等方面的差异,对未来发展方向作出深刻思考,期望促进第四代反应堆的进一步发展。
    结果 超临界水冷堆与熔盐堆均需要克服材料与系统等相关的研发难题,同时在安全性和核燃料使用方面,2种堆型具有各自独有的特征。
    结论 只有结合现有技术,加强国际合作,不断创新发展,才能实现2种堆型的顺利发展。若考虑尽快实现四代堆的商运,超临界水堆能够借鉴现有技术条件,实现项目的尽快落地;若考虑更为长远的发展规划,熔盐堆凭借钍基、液态核燃料的优势,值得各国付出相应的努力。

     

    Abstract:
    Objective The concept designs of the six types of reactors, proposed by the Generation Ⅳ International Forum (GIF), aim to significantly reduce the generation of nuclear waste, fully utilize uranium resources, and lower the construction and operating costs of nuclear power. As candidate reactor types, supercritical water-cooled reactors and molten salt reactors have garnered positive attention from various countries owing to their high safety, cleanliness, and efficiency advantages. In an effort to elucidate the future development trajectory of the fourth generation reactor, this paper summarizes the differences in the characteristic parameters between these two reactors, assesses the merits and drawbacks of diverse reactor types, and offers suggestions for their development.
    Method The development status of supercritical water-cooled reactors and molten salt reactors was introduced, both domestically and internationally. Comparisons and analyses of the differences between the two reactor types were conducted in terms of safety, material preparation, system design, nuclear fuel, etc., and deep thoughts on the future development direction were formulated, with the hope of having promoted the further advancement of the fourth generation reactor.
    Result Both supercritical water-cooled reactors and molten salt reactors are currently working towards overcoming the R&D challenges associated with materials and systems. Additionally, each of these reactor types possesses its own distinctive characteristics in the realms of safety and nuclear fuel utilization.
    Conclusion In order to achieve the smooth development of the two types of reactors, it is necessary to combine existing technologies, strengthen international cooperation, and continuously innovate and develop. Should the commercial operation of the fourth generation reactor be deemed achievable at the earliest convenience, the supercritical water reactor can draw upon existing technical conditions to expedite project implementation. Conversely, if a longer-term development plan is prioritized, the merits of molten salt reactors, utilizing thorium-based and liquid nuclear fuel, would merit commensurate efforts from all nations.

     

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