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Mesoscale modelling of radioactive contamination formation in Ukraine caused by the Chernobyl accident

机译:切尔诺贝利事故引起的乌克兰放射性污染形成的中尺度模型

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This work is devoted to the reconstruction of time-dependent radioactive contamination fields in the territory of Ukraine in the initial period of the Chernobyl accident using the model of atmospheric transport LEDI (Lagrangian-Eulerian Diffusion model). The modelling results were compared with available ~(137)Cs air and ground contamination measurement data. The ~(l37)Cs atmospheric transport over the territory of Ukraine was simulated during the first 12 days after the accident (from 26 April to 7 May 1986) using real aerological information and rain measurement network data. The detailed scenario of the release from the accidental unit of the Chernobyl nuclear plant has been built (including time-dependent radioactivity release intensity and time-varied height of the release). The calculations have enabled to explain the main features of spatial and temporal variations of radioactive contamination fields over the territory of Ukraine on the regional scale, including the formation of the major large-scale spots of radioactive contamination caused by dry and wet deposition.
机译:这项工作致力于使用大气传输LEDI模型(拉格朗日-欧拉扩散模型)在切尔诺贝利事故初期重建乌克兰境内随时间变化的放射性污染场。将建模结果与可用的〜(137)Cs空气和地面污染测量数据进行比较。事故发生后的前12天(从1986年4月26日至5月7日)使用真实的气象信息和降雨测量网络数据模拟了〜(137)Cs在乌克兰境内的大气传输。已经建立了切尔诺贝利核电站事故单位释放的详细情况(包括随时间变化的放射性释放强度和随时间变化的释放高度)。这些计算能够解释该区域范围内乌克兰领土上放射性污染场的时空变化的主要特征,包括由干沉降和湿沉降造成的主要大规模放射性污染斑的形成。

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