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Testing repository safety assessment models for deep geological disposal using legacy contaminated sites

机译:使用遗产污染地点测试储存库安全评估模型,用于深入地质处理

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An important property of locations selected to host deep geological repositories for higher level radioactive wastes is their capacity to retard the movement of any radionuclides released from engineered barriers. Site characterization cannot measure this characteristic directly and hence models form the essential link between field observations and supporting laboratory rock/water/radionuclide interaction studies. However, residual uncertainties always remain, associated with the complexity of radionuclide interactions in natural environments and the extrapolations in time and space that are included in safety assessments. An under-used resource that could help to strengthen the safety cases that utilize such information, is the knowledge base available from an-thropogenically contaminated sites. These have the potential to combine relevant geological settings with the ra-dionuclides of interest and timescales in the order of decades allow typically slow processes to be better quantified. This paper provides an overview of the range of options available, critically reviews some relevant examples where radionuclide migration models could be tested and outlines work that could facilitate utilization of this potential resource in order to strengthen the safety case for geological repositories.
机译:选择为更高水平的放射性废物举办深层地质存储库的位置的一个重要属性是它们阻碍了任何放射性核素的运动的能力,从工程屏障中释放出来。站点表征不能直接测量该特征,因此模型形成现场观测和支持实验室岩石/水/放射性核素相互作用研究的基本环节。然而,剩余的不确定性总是留下,与自然环境中的放射性核素相互作用的复杂性以及安全评估中包含的时间和空间的外推相关。使用不足的资源,可以帮助加强利用此类信息的安全案例,是来自血栓性污染地点的知识库。这些有可能将相关的地质环境结合在数十年的数量允许数十年的令人兴趣和时间尺寸,允许通常慢化量化。本文概述了可用的选项范围,批判性评论了一些相关的实例,其中可以测试放射性核素迁移模型,并概述可以促进利用该潜在资源的工作,以加强地质存储库的安全案例。

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