首页> 外文期刊>Radiation Protection Dosimetry >QUANTITATIVE ESTIMATION OF EXPOSURE INHOMOGENEITY IN TERMS OF EYE LENS AND EXTREMITY MONITORING FOR RADIATION WORKERS IN THE NUCLEAR INDUSTRY
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QUANTITATIVE ESTIMATION OF EXPOSURE INHOMOGENEITY IN TERMS OF EYE LENS AND EXTREMITY MONITORING FOR RADIATION WORKERS IN THE NUCLEAR INDUSTRY

机译:核工业辐射工作人员眼透镜术语曝光不均和末端监测的定量估计

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摘要

To manage the equivalent doses for radiation workers, exposure inhomogeneity is an important factor in the decision-making process related to protection measures and additional monitoring. Our previous study proposed the methodology to evaluate the inhomogeneity of exposure quantitatively. In this study, we applied proposed method to five different types of actual exposure situations encountered in the nuclear industry. Two of them were conventionally characterized as homogeneous exposure, and the other three were conventionally characterized as inhomogeneous exposure. The evaluation of homogeneity exposure was conducted using Monte Carlo calculations with two simplified models, which were then verified with phantom experiments. Consequently, all of the evaluations reproduced the experimental results, implying that our proposed method would be applicable for actual work conditions in the nuclear industry. Furthermore, the two presumed homogeneous exposure situations were found to be rather inhomogeneous because of the contribution of positrons and the limited source region. The results also show that the worker's posture has an impact on the inhomogeneity rather than the energy of incident radiation in nuclear works. The investigation also implies that obtaining the information on the most probable posture of the exposed worker, as well as the existence of the weekly penetrating radiation such as beta +/- ray as a main source of exposure would be the key for more precise estimation.
机译:为了管理辐射工作人员的等效剂量,暴露的不均匀性是与保护措施和附加监控有关的决策过程中的重要因素。我们先前的研究提出了定量评估暴露不均匀性的方法。在这项研究中,我们将建议的方法应用于核工业中遇到的五种不同类型的实际暴露情况。传统上将它们中的两个表征为均匀曝光,而将其他三个常规地表征为不均匀曝光。均质暴露的评估是使用蒙特卡罗(Monte Carlo)计算和两个简化模型进行的,然后通过幻像实验对其进行验证。因此,所有评估均重现了实验结果,这表明我们提出的方法将适用于核工业的实际工作条件。此外,由于正电子的贡献和有限的源区域,发现这两种假定的均匀暴露情况相当不均匀。结果还表明,工人的姿势会影响不均匀性,而不是影响核电站中入射辐射的能量。调查还暗示,获得有关暴露工人最可能姿势的信息以及每周穿透的辐射(例如β+/-射线)作为主要暴露来源的信息,将是进行更精确估算的关键。

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  • 来源
    《Radiation Protection Dosimetry》 |2019年第2期|179-188|共10页
  • 作者单位

    Japan Atom Energy Agcy 2-4 Shirakata Naka Ibaraki 3191195 Japan;

    High Energy Accelerator Res Org 1-1 Oho Tsukuba Ibaraki 3050801 Japan|J PARC Ctr 2-4 Shirakata Naka Ibaraki 3191195 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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