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Criticality Properties and Control Rod Worth of the Critical Experiment Device for MSR Research

机译:MSR研究关键实验装置的临界特性和控制棒价值

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摘要

Zero-power experiments are very important parts in design verification for all reactor types. In the 1970s, in China, at the Shanghai Institute of Applied Physics (then, Shanghai Institute of Nuclear Research), a Critical Experiment Device (cold) was established for research on the physics characteristics of the molten salt reactor (MSR), and a series of zero-power experiments was successfully performed; related experimental results were obtained later. The device consisted mainly of graphite moderator and powdered BeF2 - UF4 / ThF4 fuel and could achieve a maximum power of 200 W. The current work is focused on criticality properties with various core configurations and fuel arrangements of this device and the worths of the cadmium rods used in the device. Evaluations on the agreement of calculation results with experimental data showed good results. Discrepancies between the calculation results and the experimental data might be primarily caused by the simulated outermost fuel element positions not being exactly the same as the experimental arrangements and the unmodeled instruments used in the experiments. The findings in this work can be considered a step of verification of simulation methods and calculations for a cold MSR.
机译:零功率实验是所有类型反应堆设计验证中非常重要的部分。 1970年代,在中国的上海应用物理研究所(当时的上海核研究所)建立了用于研究熔融盐反应堆(MSR)物理特性的临界实验装置(冷)。成功进行了一系列零功率实验;以后获得相关的实验结果。该装置主要由石墨减速剂和BeF2-UF4 / ThF4粉末状燃料组成,最大功率可达200​​W。目前的工作集中在该装置各种核心配置和燃料布置的临界特性以及镉棒的价值上。在设备中使用。评估计算结果与实验数据的一致性显示出良好的结果。计算结果与实验数据之间的差异可能主要是由于模拟的最外层燃料元件位置与实验布置和实验中使用的未建模仪器不完全相同造成的。这项工作中的发现可以看作是验证冷MSR的仿真方法和计算的步骤。

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