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Numerical Modelling of Clay Seal Maturation in Deep Boreholes with Nuclear Waste

机译:核废料深层钻孔中粘土密封成熟的数值模拟

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One of the major challenges of high-level nuclear waste (HLW) isolation in deep boreholes is to anticipate the maturation behaviour of swelling clay when the waste, surrounded by dense clay encased in perforated tubes, is submerged into the borehole mud. The ultimate homogeneity of this clay seal acting as a barrier is expected to stabilize the borehole and to prevent possible leakage of radioactivity. In this study, a numerical model for predicting the maturation of the clay barrier has been developed. In the model, the water transport is controlled by the differences in the suction potential and the permeability. The model is able to simulate the maturation process, both the expeditious water transport and the clay migration into the surrounding mud, from beginning to end. Results from laboratory tests of the clay maturation were compared with the predictions made by the model. They are in good agreement, but refinement is proposed by taking the impact of the tube perforation on the maturation rate into more consideration. The proposed numerical model will also be useful in selecting a suitable design for clay barriers in HLW boreholes. Different combinations of clay dimensions and initial densities of mud and dense clay can thus be studied to determine the final homogenization and the end densities.
机译:高级核废料(HLW)在深层钻孔中隔离的主要挑战之一是预期当被包围穿孔管中的致密粘土包围的废物时膨胀粘土的成熟行为被浸入钻孔泥浆中。这种粘土密封作为屏障的最终均匀性预计将稳定钻孔并防止放射性可能泄漏。在该研究中,已经开发了一种预测粘土屏障成熟的数值模型。在该模型中,水运输通过吸力电位和渗透性的差异来控制。该模型能够模拟成熟过程,迅速的水运和粘土迁移到周围泥浆中,从头到尾。将粘土成熟的实验室测试结果与模型所取出的预测进行比较。它们非常一致,但通过将管穿孔的影响提出了对成熟率的影响提出了改进。所提出的数值模型也可用于选择HLW钻孔中的粘土屏障的合适设计。因此,可以研究粘土尺寸和初始密度的不同组合和致密粘土,以确定最终均质化和最终密度。

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