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利用康普顿成象和蒙特卡罗辐射输运代码相结合来估算放射性和剂量当量率。

Estimation of radioactivity and dose equivalent rate by combining Compton imaging and Monte Carlo radiation transport code.

机构信息

Collaborative Laboratories for Advanced Decommissioning Science, Japan Atomic Energy Agency, 790-1 Motooka aza Ohtsuka, Tomioka-machi, Futaba-gun, Fukushima, Japan.

出版信息

Appl Radiat Isot. 2022 Jul;185:110254. doi: 10.1016/j.apradiso.2022.110254. Epub 2022 Apr 25.

Abstract

In a radiation environment, such as the decommissioning site of a nuclear power station, visualization of the distribution of radioactive substances and estimation of the dose equivalent rate around the site can help reduce the exposure dose of workers and plan their work. The author has developed a method of visualizing the existence of a radiation source using a gamma-ray imager, estimating its radioactivity, and estimating the dose equivalent rate around the source. A Compton camera, which is a gamma-ray imager, is used to visualize the existence of aCs radiation source and estimate its radioactivity, and a three-dimensional (3D) model of the region around the source is generated using a simultaneous localization and mapping device based on 3D light detection and ranging. Next, the dose equivalent rate around the source is calculated by importing the 3D model data and radioactivity information into a particle and heavy ion transport code system. The validity of the calculated dose equivalent rates is also confirmed by comparing them with values measured using a survey meter. This method can be used not only to simply visualize a source and calculate the dose equivalent rate around it but also to evaluate how addition of shielding or removal of contaminated objects can contribute to reducing the dose equivalent rate.

摘要

在辐射环境中,例如核电站退役现场,可视化放射性物质的分布并估计现场周围的剂量当量率有助于降低工人的照射剂量并规划其工作。作者开发了一种使用伽马射线成像仪可视化辐射源存在、估计其放射性并估计源周围剂量当量率的方法。使用 Compton 相机(一种伽马射线成像仪)可视化Cs 辐射源的存在并估计其放射性,并使用基于三维光探测和测距的同时定位和映射设备生成源周围区域的三维模型。接下来,通过将 3D 模型数据和放射性信息导入到粒子和重离子输运代码系统中,计算源周围的剂量当量率。通过与使用调查计测量的值进行比较,还确认了计算出的剂量当量率的有效性。该方法不仅可用于简单地可视化源并计算其周围的剂量当量率,还可用于评估增加屏蔽或去除污染物体如何有助于降低剂量当量率。

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