Evaluation of the activation of the radiation shielding of the LaDiff neutron triple-axis-spectrometer at FRM-II by simulation/calculation

F. Grünauer, T. Keller, R. Georgii, M. Skoulatos
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Abstract

Neutron radiation is widely used for investigation of matter at research reactors and spallation sources. One undesired side-effect is the production of radioactive nuclides in structure materials of the instruments (e.g. mounting structures and radiation shieldings) due to neutron capture reactions. Hence the structure materials themselves become radiation sources. The knowledge of the activities after a certain time of operation is essential for determination of the accessibility, for modifications of the instrument, for reusing the material and for waste management. It is desirable to have these data in the design phase of the instrument. One possibility to obtain the data is a combination of simulation and calculation. In this paper the simulations/calculations for the LaDiff cold triple-axis neutron spectrometer project at FRM-II (research reactor Munich) are presented. The activities in the shielding house around the experimental area of the instrument made from stainless steel and lead are considered for the cases with and without boron-carbide cover and for different Sb-contents of the lead layer. The influence of the skyshine is also considered.
通过模拟/计算评估反应堆二期工程 LaDiff 中子三轴分光仪辐射屏蔽的激活情况
中子辐射被广泛用于研究反应堆和溅射源的物质研究。一个不受欢迎的副作用是,由于中子俘获反应,仪器的结构材料(如安装结构和辐射屏蔽)中会产生放射性核素。因此,结构材料本身也成为辐射源。了解仪器运行一段时间后的放射性活度,对于确定仪器的可访问性、仪器的改造、材料的再利用以及废物管理都是至关重要的。最好在仪器设计阶段就能获得这些数据。获得这些数据的一种方法是模拟和计算相结合。本文介绍了在 FRM-II(慕尼黑研究堆)进行的 LaDiff 冷三轴中子谱仪项目的模拟/计算。考虑了仪器实验区周围由不锈钢和铅制成的屏蔽房中的活动,包括有碳化硼覆盖层和无碳化硼覆盖层的情况,以及铅层中不同的锑含量。同时还考虑了天光的影响。
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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