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NEW DESIGN OF THORIUM MOLTEN SALT REACTOR CORE AND PRELIMINARY SAFETY ANALYSIS

机译:钍熔盐反应器核心新设计及初步安全分析

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In order to improve the breeding ratio and core safety, new thorium molten salt reactor (TMSR) core is designed. The new designed TMSR core is composed of hexagon moderator elements, which contain SiC tube to form a central fuel channel and employs BeO as moderator. The composition of the fuel salt, adopted in this core, is also optimized. Based on this core design, steady state and transient safety characteristic of TMSR are preliminarily analyzed using coupled multi-physics code. Power/temperature distribution and reactivity coefficients are analyzed for the steady state core, which demonstrated that the core has flat temperature distribution and large negative power coefficients at all power level. Transient simulations are carried out for power start-up, pump speed variation, loss of heat sink and so forth, the temperature and power response are also analyzed. The results indicate that the TMSR core power and temperature are closely related to the control rod position, velocity of flow and composition of fuel salt, and the new designed TMSR has excellent performance of safety under various operating conditions.
机译:为了提高育种比和核心安全,设计了新的钍熔融反应器(TMSR)核心。新设计的TMSR芯由六角形主持人元件组成,该元件包含SiC管,以形成中央燃料通道,并使用BEO作为主持人。该核心采用的燃料盐的组成也得到了优化。基于该核心设计,使用耦合的多物理密码预先分析TMSR的稳态和瞬态安全性。为稳态核心分析电力/温度分布和反应性系数,这表明核心具有平坦的温度分布和所有功率水平的大负功率系数。瞬态仿真是为电力启动,泵速度变化,散热器损耗等,还分析了温度和功率响应。结果表明,TMSR核心功率和温度与控制杆位置,流动速度和燃料盐的组成密切相关,新设计的TMSR在各种操作条件下具有优异的安全性能。

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