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The effect of glaciation on hydraulic head and solute transport in sedimentary host rock potentially used for nuclear waste disposal.

机译:冰川作用对可能用于核废料处置的沉积基质岩石中水头和溶质运移的影响。

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摘要

A Deep Geologic Repository is proposed for a site on the eastern margin of the Michigan Basin at a depth of 680 metres in the Cobourg Formation. A study of the paleohydrogeolgical conditions for the area was conducted using numerical simulation of the distribution of natural tracers and the observed hydraulic head. To conduct the study, simulations of the groundwater flow systems were developed for hydraulic head generated from glacial loading cycles to study its effects on advective solute transport. The hydro-mechanical loading during the glacial cycles is assessed using numerical analysis of coupled stress and porewater pressure. The effect of density-dependent flow was assessed in a second study to estimate the degree of penetration of glacially-derived water driven into the basin during periods of glacial loading. Numerical simulations were used to explore the potential freshwater invasion pathways under a variety of conditions. Finally, profiles of delta18O and delta2H measured in porewater were combined with our understanding of the paleo-hydrogeological conditions derived from the studies above to test the hypothesis that solute transport was diffusion-dominated in this setting. A series of pure diffusion and advection-diffusion models were developed and the results were compared with profiles of natural water isotopes obtained from the study area.;The results of the hydro-mechanical study of glacial impact show the development of significant underpressure during the interstadial periods, especially in the lowest permeability formations. The results also show that the formations have not reached hydrostatic conditions at the present time. These results were verified by comparison to measured environmental heads obtained from the study site. The density-dependent modeling showed that freshwater is capable of reaching the location of the study site through several permeable features. The transport simulations showed that the evolution time starting from a uniform initial condition, and using boundary conditions that are defined by freshwater invasion at several depths agrees with the hydro-geological history of this part of the Basin. The results also show the importance of advection on solute transport from the upper and lower boundaries even in rock of extremely low permeability.
机译:提议为密歇根盆地东缘的一个地点在科堡组深680米处建立一个深层地质处置库。使用天然示踪剂和观测水头的分布的数值模拟,对该地区的古水文地质条件进行了研究。为了进行这项研究,对冰川负荷循环产生的水力头的地下水流系统进行了模拟,以研究其对平流溶质运移的影响。使用耦合应力和孔隙水压力的数值分析来评估冰川周期中的水力机械载荷。在第二项研究中评估了密度依赖性流量的影响,以估计在冰川负荷期间被驱入盆地的冰川水渗透的程度。数值模拟被用来探索在各种条件下潜在的淡水入侵途径。最后,将孔隙水中测得的delta18O和delta2H的分布图与我们对以上研究得出的古水文地质条件的理解相结合,以检验在这种情况下溶质运移以扩散为主的假设。建立了一系列的纯扩散和对流扩散模型,并将其与从研究区获得的天然水同位素的剖面图进行了比较。;冰河作用的水力力学研究结果表明,在陆缘间存在明显的负压时期,尤其是渗透率最低的地层。结果还表明,目前地层尚未达到静水条件。通过与从研究地点获得的测量环境指标进行比较,验证了这些结果。密度依赖性模型表明,淡水能够通过几个渗透特征到达研究地点。运移模拟表明,演化时间从统一的初始条件开始,并使用由浅水入侵在多个深度定义的边界条件,与盆地这一部分的水文地质历史相吻合。结果还表明,即使在渗透率极低的岩石中,平流对从上边界和下边界溶质运移的重要性。

著录项

  • 作者

    Khader, Omar Aly.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 311 p.
  • 总页数 311
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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