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Model evaluation of geochemically induced swelling/shrinkage in argillaceous formations for nuclear waste disposal

机译:地球化学诱导的泥质地层中膨胀/收缩的核废料处理模型评估

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Argillaceous formations are being considered as host rocks for geologic disposal of nuclear waste in a number of countries. One advantage of emplacing nuclear waste in such formations is the potential self-sealing capability of clay due to swelling, which is of particular importance for the sealing and healing of disturbed rock zones (DRZ). It is therefore necessary to understand and be able to predict the changes in swelling properties within clay rock near the waste-emplacement tunnel. In this paper, considering that the clay rock formation is mostly under saturated conditions and the swelling property changes are mostly due to geochemical changes, we propose a modeling method that links a THC simulator with a swelling module that is based on diffuse double layer theory. Simulations were conducted to evaluate the geochemically induced changes in the swelling properties of the clay rock. Our findings are as follows: (1) geochemically induced swelling/shrinkage occurs exclusively in the EBS-clay formation interface, within a few meters from the waste-emplacement tunnels; (2) swelling/shrinkage-induced porosity changes are generally much smaller than those caused by mineral precipitation/dissolution processes; (3) geochemically induced swelling/shrinkage of the host clay rock is affected by variations in the pore water chemistry, exchangeable cations, and smectite abundance. Neglecting any of these three factors might lead to a miscalculation of the geochemically induced swelling pressure.
机译:在许多国家中,人们认为弧状地层是用于核废料地质处置的宿主岩。在这样的地层中包裹核废料的一个优点是由于膨胀而使粘土具有潜在的自密封性能,这对于扰动岩石区(DRZ)的密封和愈合特别重要。因此,有必要了解并能够预测垃圾填埋隧道附近粘土岩石内部的膨胀特性变化。在本文中,考虑到粘土岩的形成主要是在饱和条件下并且溶胀性的变化主要是由于地球化学的变化,我们提出了一种基于扩散双层理论的将THC仿真器与溶胀模块联系起来的建模方法。进行了模拟以评估地球化学引起的粘土岩石膨胀特性的变化。我们的发现如下:(1)地球化学诱导的膨胀/收缩仅发生在EBS-粘土地层界面中,距离废物安置隧道只有几米之遥; (2)膨胀/收缩引起的孔隙度变化通常比矿物沉淀/溶解过程引起的孔隙度小得多; (3)地球化学诱导的黏土膨胀/收缩受到孔隙水化学变化,可交换阳离子和蒙脱石丰度变化的影响。忽略这三个因素中的任何一个都可能导致对地球化学诱发的膨胀压力的错误估计。

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