首页> 外文会议>ASME International Conference on Environmental Remediation and Radioactive Waste Management >THE HYDROGEOLOGIC ENVIRONMENT FOR A PROPOSED DEEP GEOLOGIC REPOSITORY IN CANADA FOR LOW AND INTERMEDIATE LEVEL RADIOACTIVE WASTE
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THE HYDROGEOLOGIC ENVIRONMENT FOR A PROPOSED DEEP GEOLOGIC REPOSITORY IN CANADA FOR LOW AND INTERMEDIATE LEVEL RADIOACTIVE WASTE

机译:加拿大建议深层地质储存库的水文地质环境,用于低中和中级放射性废物

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A Deep Geologic Repository (DGR) for low and intermediate level radioactive waste has been proposed by Ontario Power Generation for the Bruce nuclear site in Ontario, Canada. As proposed the DGR would be constructed at a depth of about 680 m below ground surface within the argillaceous Ordovician limestone of the Cobourg Formation. This paper describes the hydrogeology of the DGR site developed through both site characterization studies and regional-scale numerical modelling analysis. The analysis provides a framework for the assembly and integration of the site-specific geoscientific data and examines the factors that influence the predicted long-term performance of the geosphere barrier. Flow system evolution was accomplished using both the density-dependent FRAC3DVS-OPG flow and transport model and the two-phase gas and water flow computational model TOUGH2-MP. In the geologic framework of the Province of Ontario, the DGR is located on the eastern flank of the Michigan Basin. Borehole logs covering Southern Ontario combined with site-specific data from 6 deep boreholes have been used to define the structural contours and hydrogeologic properties at the regional-scale of the modelled 31 sedimentary strata that may be partially present above the Precambrian crystalline basement rock. The regional-scale domain encompasses an approximately 18500 km~2 region extending from Lake Huron to Georgian Bay. The groundwater zone below the Devonian includes units containing stagnant water having high concentrations of total dissolved solids that can exceed 300g/L. The Ordovician sediments are significantly under-pressured. The horizontal hydraulic conductivity for the Cobourg limestone is estimated to be 2 × 10~(-14) m/s based on straddle-packer hydraulic tests. The low advective velocities in the Cobourg and other Ordovician units result in solute transport that is diffusion dominant with Peclet numbers less than 0.003 for a characteristic length of unity. Long-term simulations that consider future glaciation scenarios include the impact of ice thickness and permafrost. Solute transport in the Ordovician limestone and shale was diffusion dominant in all simulations. The Salina formations of the Upper Silurian prevented the deeper penetration of basal meltwater.
机译:在加拿大安大略省的布鲁斯核现场的安大略省发电,提出了一个低地质储存(DGR)的低和中级放射性废物。如所提出的那样,DGR将在肉豆蔻形成的骨质奥陶语石灰石内的地面下方约680米的深度处构建。本文介绍了通过站点表征研究和区域规模数值模拟分析开发的DGR位点的水文。该分析为组装和集成了特定于地球科学数据的组装和集成,并检查了影响地理屏障屏障的预测长期性能的因素。使用密度依赖的FRAC3DVS-OPG流量和运输模型以及两相气和水流量计算模型韧性2-MP实现流动系统演化。在安大略省地质框架中,DGR位于密歇根盆地的东部。覆盖安大略省南部的钻孔原木与来自6个深层钻孔的特定于场所的数据相结合,用于在模拟31级沉积地层的区域规模上定义结构轮廓和水文地质性质,这些结构的31个沉积地层可以部分地存在于Predambrian结晶底座上方。区域规模域包括大约18500公里〜2区,从休伦湖到格鲁吉亚湾。 Devonian下面的地下水区包括含有高浓度的总溶解固体的滞留水的单元,其可超过300g / l。奥陶语沉积物显着抑制。基于跨跨封隔器液压试验的跨型石灰石的水平液压导电估计为2×10〜( - 14)M / s。哥特格和其他奥托莫利安单位的低平面速度导致溶质转运,该溶质转运具有小于0.003的PECLET数量,用于统一的特征长度。考虑未来冰川场景的长期模拟包括冰厚度和永久冻土的影响。奥陶器石灰岩和页岩中的溶质运输在所有模拟中都是扩散。上硅藻土的咸盐形成了基础熔融水的深入渗透。

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