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Coupled thermal-hydraulic-mechanical-chemical modeling for permeability evolution of rocks through fracture generation and subsequent sealing

机译:耦合热液压 - 机械化学模型,通过骨折发电和随后的密封进行岩石渗透性演化

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摘要

The coupled THMC model, interface for pressure solution analysis under coupled conditions, IPSACC, that was proposed by the authors and can describe the long-term evolution in rock permeability due to mineral reactions (i.e., pressure solution and free-face dissolution/precipitation) within rock fractures, was upgraded in the present study by incorporating the processes of fracture initiation/propagation. The remarkable characteristic of the proposed model is its ability to simulate the generation of fractures and the mineral reactions within the generated fractures as well as the subsequent changes in permeability. The proposed model was applied to predictions of the long-term changes in the permeability of rock located near high-level radioactive waste within a geological repository. The predicted results revealed that fractures were generated near the disposal cavity and that the permeability of the damaged zone increased significantly more than that of the intact rock during the excavation, while the permeability in almost the entire damaged zone decreased by about one order of magnitude due to pressure solution at the contacting asperities within the rock fractures after setting virtual radioactive waste into the disposal cavity. Overall, it was clarified that the proposed model is capable of calculating the permeability evolution of rock through fracture generation and subsequent sealing due to mineral reactions at the actual field scale. Thus, the potential for using the proposed model to examine the long-term performance of natural barriers for delaying the transport of radionuclides has been shown.
机译:作者提出的耦合条件下的耦合THMC模型,用于压力解决方案分析的接口,并可描述由于矿物反应(即,压力溶液和自由面溶出/沉淀因子)的岩石渗透性的长期演变在岩石骨折中,通过掺入裂缝启动/繁殖的过程在本研究中升级。所提出的模型的显着特征是其能够模拟产生裂缝和产生的骨折内的矿物反应以及随后的渗透性变化。拟议的模型应用于在地质储存库内靠近高​​水平放射性废物的岩石渗透性的长期变化的预测。预测结果表明,在处理腔附近产生裂缝,并且受损区域的渗透率在挖掘过程中的完整岩石的渗透性显着增加,而几乎整个受损区的渗透率下降约为一个数量级在将虚拟放射性废物设置到处理腔中后,在岩石骨折内接触的压力溶液。总的来说,阐明了所提出的模型能够通过在实际场比例下矿物反应引起的骨折产生和随后的密封来计算岩石的渗透性演化。因此,已经示出了使用所提出的模型来检查用于延迟放射性核素传输的自然屏障的长期性能的可能性。

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