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Study on In-Situ Calibration for Neutron Monitor in the Helical Type Fusion Experimental Device Based on Monte Carlo Calculations

机译:基于蒙特卡洛计算的螺旋式聚变实验装置中子监测器原位校准研究

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Monte Carlo simulations in design of neutron monitors for fusion experimental devices play an important role to evaluate the influence of scattering from various structures and to correct differences between neutron energies from calibration source and fusion plasma. We have developed an automated input file generation code based on finely segmented helical coil approximation. In this paper, we study the optimal number of divisions of segmented geometry from viewpoints of simulation precision and required calculation time. We conclude that results with more than 360 divisions saturate into the result with fully fine simulation. And we evaluate influence of neutron scattering from a miniature train, a railroad and supporting structures used in in-situ calibration experiments at LHD.
机译:聚变实验装置中子监测器设计中的蒙特卡洛模拟在评估各种结构的散射影响以及校正来自校准源和聚变等离子体的中子能量之间的差异方面起着重要作用。我们已经根据细分的螺旋线圈近似值开发了自动输入文件生成代码。本文从仿真精度和所需的计算时间的角度研究分段几何的最优分割数。我们得出的结论是,经过完全精细的仿真后,超过360个划分的结果将饱和。并且,我们评估了LHD现场校准实验中使用的微型火车,铁路和支撑结构对中子散射的影响。

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