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Neutron flux distributions in the Large Helical Device torus hall evaluated by an imaging plate technique in the first campaign of the deuterium plasma experiment

机译:在氘等离子体实验的第一批运动中,通过成像板技术评估了大型螺旋装置环形大厅中的中子通量分布

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摘要

The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large fusion devices were experimentally evaluated for the first time in the Large Helical Device (LHD) using the activation foil method measured by the imaging plate and high-purity germanium detector. It turned out that the thermal neutrons were effectively absorbed by borated polyethylene blocks placed beneath the LHD. This should reduce the radioactivity of the floor and would be beneficial in maintaining a good environment for radiation workers. Uniform distributions of epithermal and fast neutrons were observed near the LHD. In particular, the significant decrease in fast neutron flux with increasing distance from the LHD, due to the fast energy loss of fast neutrons, was observed.The neutron flux distribution measurement, with rough energy discrimination based on the threshold energy of the neutron activation foil, allows us to estimate the spatial radiation dose rate, as well as the radioactivity in components in the torus hall. The prediction of the radioactivity in the concrete floor indicated that radioactive isotope Fe-55 will be a dominant source of radioactivity in the concrete after the nine-year deuterium experiment campaign finishes.
机译:使用成像板和高纯锗探测器测量的活化箔方法,在大型螺旋装置(LHD)中首次对大型聚变装置圆环大厅中热,超热和快中子的总通量分布进行了实验评估。 。事实证明,热中子被放置在左座右下方的硼酸化聚乙烯嵌段有效吸收。这将减少地板的放射性,并有利于为辐射工作者保持良好的环境。在左旋左室附近观察到超热和快中子的均匀分布。特别是观察到由于快中子能量的快速损失,快中子通量随距LHD距离的增加而显着下降。中子通量分布测量,基于中子活化箔的阈值能量进行粗略的能量判别,使我们能够估算空间辐射剂量率,以及圆环大厅中各组分的放射性。对混凝土地板放射性的预测表明,放射性同位素Fe-55将在为期9年的氘实验活动结束后成为混凝土中放射性的主要来源。

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