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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >An investigation of the neutron flux in bone-fluorine phantoms comparing accelerator based in vivo neutron activation analysis and FLUKA simulation data
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An investigation of the neutron flux in bone-fluorine phantoms comparing accelerator based in vivo neutron activation analysis and FLUKA simulation data

机译:比较基于加速器的体内中子活化分析和FLUKA模拟数据,研究骨骼氟体模中的中子通量

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We have tested the Monte Carlo code FLUKA for its ability to assist in the development of a better system for the in vivo measurement of fluorine. We used it to create a neutron flux map of the inside of the in vivo neutron activation analysis irradiation cavity at the McMaster Accelerator Laboratory. The cavity is used in a system that has been developed for assessment of fluorine levels in the human hand. This study was undertaken to (ⅰ) assess the FLUKA code, (ⅱ) find the optimal hand position inside the cavity and assess the effects on precision of a hand being in a non-optimal position and (ⅲ) to determine the best location for our γ-ray detection system within the accelerator beam hall. Simulation estimates were performed using FLUKA. Experimental measurements of the neutron flux were performed using Mn wires. The activation of the wires was measured inside (1) an empty bottle, (2) a bottle containing water, (3) a bottle covered with cadmium and (4) a dry powder-based fluorine phantom. FLUKA was used to simulate the irradiation cavity, and used to estimate the neutron flux in different positions both inside, and external to, the cavity. The experimental results were found to be consistent with the Monte Carlo simulated neutron flux. Both experiment and simulation showed that there is an optimal position in the cavity, but that the effect on the thermal flux of a hand being in a non-optimal position is less than 20%, which will result in a less than 10% effect on the measurement precision. FLUKA appears to be a code that can be useful for modeling of this type of experimental system.
机译:我们已经测试了蒙特卡洛代码FLUKA的能力,以协助开发更好的体内氟测量系统。我们使用它在McMaster Accelerator实验室创建了体内中子活化分析辐射腔内部的中子通量图。该腔用于已开发用于评估人手中氟含量的系统中。进行这项研究的目的是(ⅰ)评估FLUKA代码,(ⅱ)找到空腔内的最佳手部位置,并评估手部处于非最佳位置时对精度的影响,以及(ⅲ)确定最佳手部位置。我们在加速器束大厅内的γ射线检测系统。使用FLUKA进行仿真估计。使用Mn线进行中子通量的实验测量。在(1)一个空瓶子,(2)一个装有水的瓶子,(3)一个装有镉的瓶子以及(4)一个基于干粉的氟体模中测量导线的激活。 FLUKA被用来模拟辐射腔,并被用来估算腔内部和外部不同位置的中子通量。实验结果与蒙特卡罗模拟中子通量一致。实验和模拟均表明,空腔中存在最佳位置,但对处于非最佳位置的手的热通量的影响小于20%,这将导致对手部的热通量的影响小于10%。测量精度。 FLUKA似乎是一种可用于对此类实验系统进行建模的代码。

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