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阿武隈川中与泥沙输运相关的¹³⁷Cs污染物迁移的计算模型

Computational modeling of 137Cs contaminant transfer associated with sediment transport in Abukuma River.

作者信息

Iwasaki T, Nabi M, Shimizu Y, Kimura I

机构信息

Laboratory of Hydraulic Research, Graduate School of Engineering, Hokkaido University, N13, W8, Kita-ku, Sapporo 060-8628, Japan.

出版信息

J Environ Radioact. 2015 Jan;139:416-426. doi: 10.1016/j.jenvrad.2014.05.012. Epub 2014 Jun 6.

Abstract

A numerical model capable of simulating the transfer of (137)Cs in rivers associated with transport of fine sediment is presented. The accident at Fukushima Dai-ichi Nuclear Power Plant (FDNPP) released radionuclides into the atmosphere, and after fallout several radionuclides in them, such as radiocesium ((134)Cs, (137)Cs) and radioiodine ((131)I) were adsorbed on surface soil particles around FDNPP and transported by surface water. To understand the transport and deposition of the radioactive contaminant along with surface soil particles and its flux to the ocean, we modeled the transport of the (137)Cs contaminant by computing the water flow and the associated washload and suspended load transport. We have developed a two-dimensional model to simulate the plane flow structure, sediment transport and associated (137)Cs contaminant transport in rivers by combining a shallow water flow model and an advection-diffusion equation for the transport of sediment. The proposed model has been applied to the lower reach of Abukuma River, which is the main river in the highly contaminated area around FDNPP. The numerical results indicate that most (137)Cs supplied from the upstream river reach with washload would directly reach to Pacific Ocean. In contrast, washload-oriented (137)Cs supplied from the upstream river basin has a limited role in the radioactive contamination in the river. The results also suggest that the proposed framework of computational model can be a potential tool for understanding the sediment-oriented (137)Cs behavior in rivers.

摘要

本文提出了一个数值模型,该模型能够模拟与细颗粒沉积物输运相关的河流中(137)Cs的迁移。福岛第一核电站事故将放射性核素释放到大气中,沉降后,其中的几种放射性核素,如放射性铯((134)Cs、(137)Cs)和放射性碘((131)I)被吸附在福岛第一核电站周围的表层土壤颗粒上,并通过地表水进行输运。为了了解放射性污染物随表层土壤颗粒的输运和沉积及其向海洋的通量,我们通过计算水流以及相关的推移质和悬移质输运,对(137)Cs污染物的输运进行了建模。我们开发了一个二维模型,通过结合浅水水流模型和沉积物输运的平流扩散方程,来模拟河流中的平面水流结构、沉积物输运以及相关的(137)Cs污染物输运。所提出的模型已应用于阿武隈川下游,该河流是福岛第一核电站周围高污染地区的主要河流。数值结果表明,从上游河段随推移质输入的大部分(137)Cs将直接流入太平洋。相比之下,从上游流域以推移质形式输入的(137)Cs在河流放射性污染中的作用有限。结果还表明,所提出的计算模型框架可以成为理解河流中以沉积物为导向的(137)Cs行为的潜在工具。

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