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Modelling the dynamics of ambient dose rates induced by radiocaesium in the Fukushima terrestrial environment

机译:模拟福岛陆地环境中放射性铯引起的环境剂量率的动力学

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摘要

Since the Fukushima accident, Japanese scientists have been intensively monitoring ambient radiations in the highly contaminated territories situated within 80 km of the nuclear site. The surveys that were conducted through mainly carborne, airborne and in situ gamma-ray measurement devices, enabled to efficiently characterize the spatial distribution and temporal evolution of air dose rates induced by Caesium-134 and Caesium-137 in the terrestrial systems. These measurements revealed that radiation levels decreased at rates greater than expected from physical decay in 2011-2012 (up to a factor of 2), and dependent on the type of environment (i.e. urban, agricultural or forest). Unlike carborne measurements that may have been strongly influenced by the depuration of road surfaces, no obvious reason can be invoked for airborne measurements, especially above forests that are known to efficiently retain and recycle radiocaesium. The purpose of our research project is to develop a comprehensive understanding of the data acquired by Japanese, and identify the environmental mechanisms or factors that may explain such decays. The methodology relies on the use of a process-based and spatially-distributed dynamic model that predicts radiocaesium transfer and associated air dose rates inside/above a terrestrial environment (e.g., forests, croplands, meadows, bare soils and urban areas). Despite the lack of site specific data, our numerical study predicts decrease rates that are globally consistent with both aerial and in situ observations. The simulation at a flying altitude of 200 m indicated that ambient radiation levels decreased over the first 12 months by about 45% over dense urban areas, 15% above evergreen coniferous forests and between 2 and 12% above agricultural lands, owing to environmental processes that are identified and discussed. In particular, we demonstrate that the decrease over evergreen coniferous regions might be due the combined effects of canopy depuration (through biological and physical mechanisms) and the shielding of gamma rays emitted from the forest floor by vegetation. Our study finally suggests that airborne surveys might have not reflected dose rates at ground level in forest systems, which were predicted to slightly increase by 5-10% during the same period of time. (C) 2015 Elsevier Ltd. All rights reserved.
机译:自福岛核事故以来,日本科学家一直在密切监视位于核电站80公里以内的高度污染地区的环境辐射。通过主要通过车载,机载和原位伽马射线测量设备进行的调查,可以有效地表征陆地系统中Caesium-134和Caesium-137引起的空气剂量率的空间分布和时间演变。这些测量结果表明,辐射水平的下降速度超过了2011-2012年物理衰减所预期的速度(高达2倍),并取决于环境的类型(即城市,农业或森林)。不同于可能受到路面净化影响的车载测量,没有任何明显的理由可以进行空中测量,尤其是在已知能有效保留和回收放射性铯的森林上方。我们研究项目的目的是对日本人获得的数据有一个全面的了解,并确定可能解释这种衰变的环境机制或因素。该方法依赖于基于过程的,空间分布的动态模型的使用,该模型预测陆上环境(例如,森林,农田,草地,裸露的土壤和市区)内/上方的放射性铯转移和相关的空气剂量率。尽管缺乏特定地点的数据,但我们的数值研究预测,下降的速度总体上与空中和实地观测一致。在200 m的飞行高度上进行的模拟表明,由于环境过程的影响,在头12个月中,密集城市地区的环境辐射水平降低了约45%,比常绿针叶林高15%,比农业用地高2%至12%。被确定和讨论。特别是,我们证明了常绿针叶地区的减少可能是由于冠层净化(通过生物和物理机制)和对植被从林地发射的伽玛射线的屏蔽的共同作用所致。我们的研究最终表明,机载调查可能未反映森林系统地面水平的剂量率,预计在同一时期内剂量率将略微增加5-10%。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2016年第9期|22-34|共13页
  • 作者单位

    IRSN, Lab Modelisat Expertise Environm LM2E, Batiment 159, F-13115 St Paul Les Durance, France;

    IRSN, Lab Modelisat Expertise Environm LM2E, Batiment 159, F-13115 St Paul Les Durance, France;

    IRSN, Lab Etud Radioecol Milieux Continental & Marin LE, Batiment 151, F-13115 St Paul Les Durance, France;

    IRSN, Lab Surveillance Atmospher & Alerte LS2A, Batiment C8, F-78116 Le Vesinet, France;

    IRSN, Lab Surveillance Atmospher & Alerte LS2A, Batiment C8, F-78116 Le Vesinet, France;

    IRSN, LIMAR, Batiment 700, F-13115 St Paul Les Durance, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fukushima; Air dose rate; Forests; Terrestrial ecosystems; Modelling;

    机译:福岛;空气剂量率;森林;陆地生态系统;建模;
  • 入库时间 2022-08-17 13:35:17

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