首页> 外文期刊>Swiss journal of geosciences >Hydro-mechanical evolution of the EDZ as transport path for radionuclides and gas: insights from the Mont Terri rock laboratory (Switzerland)
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Hydro-mechanical evolution of the EDZ as transport path for radionuclides and gas: insights from the Mont Terri rock laboratory (Switzerland)

机译:EDZ的水力机械演化,作为放射性核素和气体的传输路径:来自Mont Terri岩石实验室的见解(瑞士)

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摘要

The excavation damaged zone (EDZ) around the backfilled underground structures of a geological repository represents a release path for radionuclides, which needs to be addressed in the assessment of long-term safety. Additionally, the EDZ may form a highly efficient escape route for corrosion and degradation gases, thus limiting the gas overpressures in the backfilled repository structures. The efficiency of this release path depends not only on the shape and extent of the EDZ, but also on the self-sealing capacity of the host rock formation and the prevailing state conditions, such as in situ stresses and pore pressure. The hydro-mechanical and chemico-osmotic phenomena associated with the formation and temporal evolution of the EDZ are complex, thus precluding a detailed representation of the EDZ in conventional modelling tools for safety assessment. Therefore, simplified EDZ models, able to mimic the safety-relevant functional features of the EDZ in a traceable manner are required. In the framework of the Mont Terri Project, a versatile modelling approach has been developed for the simulation of flow and transport processes along the EDZ with the goal of capturing the evolution of hydraulic significance of the EDZ after closure of the backfilled underground structures. The approach draws on both empirical evidence and experimental data, collected in the niches and tunnels of the Mont Terri rock laboratory. The model was benchmarked with a data set from an in situ self-sealing experiment at the Mont Terri rock laboratory. This paper summarises the outcomes of the benchmark exercise that comprises relevant empirical evidence, experimental data bases and the conceptual framework for modelling the evolution of the hydraulic significance of the EDZ around a backfilled tunnel section during the entire re-saturation phase.
机译:地质库回填地下结构周围的开挖损坏区(EDZ)代表了放射性核素的释放路径,在评估长期安全性时需要解决这一问题。另外,EDZ可以形成用于腐蚀和降解气体的高效逃逸路线,从而限制回填储存库结构中的气体超压。该释放路径的效率不仅取决于EDZ的形状和程度,还取决于主体岩层的自密封能力以及主要的状态条件,例如原地应力和孔隙压力。与EDZ的形成和时间演化有关的水力和化学渗透现象非常复杂,因此无法在常规安全性建模工具中详细描述EDZ。因此,需要能够以可追溯的方式模仿EDZ的安全相关功能特征的简化EDZ模型。在Mont Terri项目的框架内,已经开发了一种通用的建模方法来模拟沿EDZ的流动和运输过程,目的是捕获回填地下结构封闭后EDZ的水力重要性的演变。该方法利用了在蒙特特里岩石实验室的壁ni和隧道中收集的经验证据和实验数据。该模型使用Mont Terri岩石实验室的现场自密封实验数据集进行了基准测试。本文总结了基准演习的结果,该演习包括相关的经验证据,实验数据库和用于在整个重新饱和阶段对回填隧道段周围的EDZ的水力重要性进行建模的概念框架。

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