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核事故产生的放射性气溶胶在室内的浓度。

Indoor concentrations of radioactive aerosols from nuclear accidents.

机构信息

Physics Department, Faculty of Science, Cairo University, Giza 12613, Egypt.

出版信息

Radiat Prot Dosimetry. 2024 Jun 18;200(9):836-841. doi: 10.1093/rpd/ncae131.

Abstract

In previous studies, some of the important factors that affect the spread of radioactive aerosols into indoors were considered. The studies were based on a new CFD approach and provided good descriptions for the deposition of aerosol particles inside small spaces and the penetration of aerosols into buildings through wall cracks. In this article, an application of those studies is implemented, where all the graphical relations that are required to estimate the indoor concentrations of radioactive aerosols from nuclear accidents are provided. This includes the deposition velocities, deposition rate, and the penetration factor. Particular interest is in the Fukushima-Daiichi nuclear power plant accident that took place in Japan in 2011. The aerosols carrying the radioiodine iodine-131 and the radiocesium cesium-134 and cesium-137 are studied. Based on the model's assumptions, and assuming steady-state air concentrations, the radioactive aerosols' concentrations in indoor air are about 97% of the concentrations in outdoor air. The applications demonstrate the model to be convenient and practical.

摘要

在先前的研究中,考虑了一些影响放射性气溶胶进入室内传播的重要因素。这些研究基于一种新的 CFD 方法,为小空间内气溶胶粒子的沉积以及气溶胶通过墙壁裂缝渗透到建筑物内提供了很好的描述。在本文中,应用了这些研究,提供了从核事故估算室内放射性气溶胶浓度所需的所有图形关系。这包括沉积速度、沉积率和穿透因子。特别关注的是 2011 年发生在日本的福岛第一核电站事故。研究了携带放射性碘碘-131 和放射性铯铯-134 和铯-137 的气溶胶。基于模型的假设,并假设稳态空气浓度,室内空气中放射性气溶胶的浓度约为室外空气中浓度的 97%。应用表明该模型方便实用。

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