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CORE DESIGN STUDY FOR A SMALL MODULAR BOILING WATER REACTOR

机译:小型模块化沸水反应堆的核心设计研究

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The hybrid Small Modular Boiling Water Reactor (SMBWR) is a new conceptual design of BWR-type SMR. The main features of SMBWR include a natural circulation loop in its coolant recirculation system and external superheaters system integrated into the steam cycle. A full core analysis of SMBWR is performed with the nodal diffusion code PANTHER using homogenised constant libraries generated by WIMS. The study compared a number of core geometry configurations and fuel management schemes to suppress excess reactivity throughout fuel depletion. Three options for SMBWR core aspect ratio using the same power density are investigated with the aim to assess the effect on the neutronic and thermal-hydraulic performance of the SMBWR. It is found that the thin and tall core configuration (192 fuel assemblies and 3.60 m) showed the least favourable performance out of the three options as it has the largest core pressure drop and thus requires taller chimney to develop natural circulation.
机译:杂交小型模块化沸水反应器(SMBWR)是BWR型SMR的新概念设计。 SMBWR的主要特征包括其冷却剂再循环系统中的自然循环回路和集成在蒸汽循环中的外部超级微热器系统。 使用由WiMS产生的均匀常数文库进行SMBWR的全核分析。 该研究比较了许多核心几何配置和燃料管理方案,以抑制整个燃料耗尽的过度反应性。 研究了使用相同功率密度的SMBWR核心纵横比的三种选择,目的是评估对SMBWR的中性和热液压性能的影响。 结果发现,薄而高芯结构(192燃料组件和3.60米)显示出三种选项中最不利的性能,因为它具有最大的核心压降,因此需要较高的烟囱来开发自然循环。

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