首页> 外文会议>International Conference on Environmental Remediation and Radioactive Waste Management >FLOW AND RADIONUCLIDE TRANSPORT FROM ROCK TO SURFACE SYSTEMS: CHARACTERIZATION AND MODELLING OF POTENTIAL REPOSITORY SITES IN SWEDEN
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FLOW AND RADIONUCLIDE TRANSPORT FROM ROCK TO SURFACE SYSTEMS: CHARACTERIZATION AND MODELLING OF POTENTIAL REPOSITORY SITES IN SWEDEN

机译:从岩石到表面系统的流量和放射性核素运输:瑞典潜在储存网站的表征和建模

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The safety assessments of potential geological repositories for spent nuclear fuel in Sweden are supported by modelling of groundwater flow in rock, to predict locations (exit points) where radionuclides from the deep repository may enter land, surface waters and associated ecosystems above the rock. This modelling includes detailed rock descriptions, but simplifies the upper part of the flow domain, including representations of meteorological processes and interactions with hydrological objects at the surface. Using the Laxemar candidate site as example, this paper investigates some potentially important consequences of these simplifications. Specifically, it compares particle tracking results obtained by a deep-rock groundwater flow model (CONNECTFLOW) and by MIKE SHE-MIKE 11, which contains detailed descriptions of near-surface/surface water flow. Overall, the models predict similar exit point patterns, occurring as clusters along streams in valleys, at a lake, and in sea bays. However, on a detailed level there are some prediction differences, which may be of importance for biosphere-focused safety assessments. CONNECTFLOW essentially predicts flow paths through the repository that follow fractures and deformation zones, outcropping in valleys. In comparison, MIKE SHE-MIKE 11 provides more detailed information on near-surface water flow paths, including the associated exit points and inputs to assessments of radionuclide retention.
机译:通过岩石中的地下水流量建模,支持瑞典核燃料潜在地质储存库的安全评估,以预测来自深层储存库的放射性核素的地点(退出点)可以进入岩石上方的土地,地表水域和相关的生态系统。该建模包括详细的岩石描述,但简化了流域的上部,包括气象过程的表示和表面的水文物体的相互作用。使用Laxemar候选站点为例,本文调查了这些简化的一些可能的重要后果。具体地,它比较了通过深岩地下水流量模型(ConnectFlow)和Mike She-Mike 11获得的粒子跟踪结果,其包含近表面/表面水流的详细描述。总的来说,模型预测了类似的出口点模式,作为沿山谷的溪流,湖泊和海湾的群体发生的簇。然而,在详细的水平上存在一些预测差异,这可能对以生物圈为重点的安全评估重要性。 ConnectFlow基本上通过追随骨折和变形区域的存储库预测流动路径,谷谷露面。相比之下,Mike She-Mike 11提供了关于近地表水流动路径的更详细信息,包括相关的出口点和输入放射性核素保留的评估。

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