Feasibility study of Tritium recoil barrier forneutron reflectors

E. Ishitsuka, N. Sakamoto
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引用次数: 1

Abstract

Tritium release into the primary coolant of the research and test reactors during operation had been studied, and it is found that the beryllium components used as a neutron reflector in the core strongly affect the tritium release into the primary coolant, and it is also found the recoil release from chain reaction of 9Be is dominant. To reduce tritium concentration of the primary coolant, feasibility study of the tritium recoil barrier for the beryllium neutron reflectors was carried out, and the tritium recoils of various materials such as Al, Ti, V, Ni, Zr, etc., were calculated by PHITS.  From these calculation results, it is clear that the thickness of tritium recoil barrier depends on the material and 20-40 µm is required for three orders reduction. Additionally, the denser materials have shorter recoil length in general, however, it is clear that the recoil lengths of Zr and Pb are similar with Ti.
中子反射器用氚反冲势垒的可行性研究
对研究堆和试验堆运行过程中氚向主冷却剂的释放进行了研究,发现堆芯中用作中子反射器的铍组分对氚向主冷却剂的释放有强烈的影响,并且发现9Be链式反应的后坐力释放占主导地位。为了降低一次冷却剂的氚浓度,对铍中子反射器的氚反冲屏障进行了可行性研究,并利用PHITS计算了Al、Ti、V、Ni、Zr等不同材料的氚反冲。从这些计算结果可以清楚地看出,氚反冲屏障的厚度取决于材料,20-40µm需要减少3级。此外,密度越高的材料反冲长度一般越短,但Zr和Pb的反冲长度明显与Ti相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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