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A Conceptual Study of a Supercritical CO2-Cooled Micro Modular Reactor

机译:超临界CO 2 冷却的微型模块化反应器的概念研究

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A neutronics conceptual study of a supercritical CO2-cooled micro modular reactor (MMR) has been performed in this work. The suggested MMR is an extremely compact and truck-transportable nuclear reactor. The thermal power of the MMR is 36.2 MWth and it is designed to have a 20-year lifetime without refueling. A salient feature of the MMR is that all the components including the generator are integrated in a small reactor vessel. For a minimal volume and long lifetime of the MMR core, a fast neutron spectrum is utilized in this work. To enhance neutron economy and maximize the fuel volume fraction in the core, a high-density uranium mono-nitride U15N fuel is used in the fast-spectrum MMR. Unlike the conventional supercritical CO2-cooled fast reactors, a replaceable fixed absorber (RFA) is introduced in a unique way to minimize the excess reactivity and the power peaking factor of the core. For a compact core design, the drum-type control absorber is adopted as the primary reactivity control mechanism. In this study, the neutronics analyses and depletions have been performed by using the continuous energy Monte Carlo Serpent code with the evaluated nuclear data file ENDF/B-VII.1 Library. The MMR core is characterized in view of several important safety parameters such as control system worth, fuel temperature coefficient (FTC) and coolant void reactivity (CVR), etc. In addition, a preliminary thermal-hydraulic analysis has also been performed for the hottest channel of the Korea Advanced Institute of Science and Technology (KAIST) MMR.
机译:在这项工作中,对超临界CO 2 冷却的微型模块化反应堆(MMR)进行了中子学概念研究。建议的MMR是一个非常紧凑且可卡车运输的核反应堆。 MMR的火力为36.2兆瓦时,设计寿命为20年,无需加油。 MMR的一个显着特征是,包括发电机在内的所有组件都集成在一个小型反应堆容器中。为了使MMR磁芯的体积最小且使用寿命长,在这项工作中使用了快速中子光谱。为了提高中子经济性并最大化堆芯中的燃料体积分数,快光谱MMR中使用了高密度铀单氮化铀U 15 N燃料。与常规的超临界CO 2 冷却快堆不同,可更换的固定吸收器(RFA)以独特的方式引入,以最大程度地减小堆芯的过剩反应性和功率峰值因子。对于紧凑型芯设计,采用鼓型控制吸收器作为主要的反应性控制机构。在这项研究中,中子学分析和耗竭是通过使用连续能量蒙特卡罗蛇形代码和评估的核数据文件ENDF / B-VII.1库进行的。 MMR堆芯的特点是考虑了几个重要的安全参数,例如控制系统的价值,燃料温度系数(FTC)和冷却液空隙反应性(CVR)等。此外,还针对最热的状态进行了初步的热工液压分析。韩国科学技术研究院(KAIST)MMR的频道。

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