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Determination of an Effective Detector Position for Pulsed-Neutron-Source Alpha Measurement by Time-Dependent Monte Carlo Neutron Transport Simulations

机译:通过时间相关的蒙特卡洛中子输运模拟确定脉冲中子源α测量的有效探测器位置

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摘要

A simple method using the time-dependent Monte Carlo (TDMC) neutron transport calculation is presented to determine an effective detector position for the prompt neutron decay constant (alpha) measurement through the pulsed-neutron-source (PNS) experiment. In the proposed method, the optimum detector position is searched by comparing amplitudes of detector signals at different positions when their alpha estimates by the slope fitting are converged. The developed method is applied to the Pb-Bi-zoned ADS experimental benchmark at Kyoto University Critical Assembly. The alpha convergence time estimated by the TDMC PNS simulation agrees well with the experimental results. The alpha convergence time map and the corresponding signal amplitude map predicted by the developed method show that polyethylene moderator regions adjacent to fuel region are better positions than other candidates for the PNS alpha measurement.
机译:提出了一种使用时间相关的蒙特卡洛(TDMC)中子输运计算的简单方法,以确定通过脉冲中子源(PNS)实验进行中子迅速衰减常数(alpha)测量的有效探测器位置。在所提出的方法中,当通过斜率拟合收敛其α估计时,通过比较不同位置处的检测器信号的幅度来搜索最佳检测器位置。所开发的方法已应用于京都大学关键会议的Pb-Bi分区ADS实验基准。 TDMC PNS仿真估计的α收敛时间与实验结果非常吻合。通过开发的方法预测的α收敛时间图和相应的信号幅度图显示,与燃料区域相邻的聚乙烯慢化剂区域比PNSα测量的其他候选者位置更好。

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