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Fuel Assembly Design for Supercritical Water-Cooled Reactor

机译:超临界水冷堆燃料组件设计

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The supercritical water-cooled reactor (SWCR) has been selected as one of the most promising reactors for Generation IV nuclear reactors due to its higher thermal efficiency and more simplified structure compared to the state-of-the-art light water reactors (LWRs). However, there are a large number of potential problems that must be addressed, particularly the fuel assembly design of the SCWR. SCWRs are a kind of high-temperature, high-pressure, water-cooled reactor that operates above the thermodynamic critical point of water (374℃, 22.1 MPa). Corrosion and degradation of materials used in supercritical water environments are determined by several environment- and material-dependent factors. In particular, irradiation-induced changes in microstructure and microchemistry are major concerns in a nuclear reactor. Many structural materials including alloys and ceramics have been proposed for use as SCWR components or materials for applying protective coatings in SCWRs. In this paper, the present status of supercritical fuel assembly design at home and abroad is reported. According to the special requirements of supercritical core design, a kind of configuration design of fuel assembly with two-flow core and using SiC as cladding material are proposed. The analysis results have shown that the design basically meets the requirements of fuel assembly design, which has good feasibility and performance.
机译:与最新的轻水反应堆(LWR)相比,超临界水冷堆(SWCR)具有更高的热效率和更简化的结构,因此已被选为IV代核反应堆最有希望的反应堆之一。但是,必须解决许多潜在问题,特别是SCWR的燃料组件设计。超临界水堆是一种高温,高压,水冷式反应堆,其运行温度超过水的热力学临界点(374℃,22.1 MPa)。超临界水环境中使用的材料的腐蚀和降解取决于几个与环境和材料有关的因素。特别地,在核反应堆中,辐射引起的微观结构和微观化学变化是主要关注的问题。已经提出了许多结构材料,包括合金和陶瓷,用作SCWR组件或在SCWR中施加保护涂层的材料。本文报道了国内外超临界燃料组件设计的现状。针对超临界堆芯设计的特殊要求,提出了一种以双流堆芯并以SiC为包覆材料的燃料组件的构型设计。分析结果表明,该设计基本满足燃料组件设计要求,具有良好的可行性和性能。

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