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首页> 外文期刊>Rock Mechanics and Rock Engineering >Consequences of the Thermal Transient on the Evolution of the Damaged Zone Around a Repository for Heat-Emitting High-Level Radioactive Waste in a Clay Formation: a Performance Assessment Perspective
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Consequences of the Thermal Transient on the Evolution of the Damaged Zone Around a Repository for Heat-Emitting High-Level Radioactive Waste in a Clay Formation: a Performance Assessment Perspective

机译:热瞬变对粘土地层中高放热放射性废料库周围损坏区域演变的影响:性能评估

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摘要

A proper evaluation of the perturbations of the host rock induced by the excavation and the emplacement of exothermic wastes is essential for the assessment of the long-term safety of high-level radioactive waste disposals in clay formations. The impact of the thermal transient on the evolution of the damaged zone (DZ) has been explored in the European Commission project TIMODAZ (thermal impact on the damaged zone around a radioactive waste disposal in clay host rocks, 2006-2010). This paper integrates the scientific results of the TIMODAZ project from a performance assessment (PA) point of view, showing how these results support and justify key PA assumptions and the values of PA model parameters. This paper also con-textualises the significance of the thermal impact on the DZ from a safety case perspective, highlighting how the project outcomes result into an improved understanding of the thermo-hydro-mechanical behaviour of the clay host rocks. The results obtained in the TIMODAZ project strengthen the assessment basis of the safety evaluation of the current repository designs. There was no evidence throughout the TIMODAZ experimental observations of a temperature-induced additional opening of fractures nor of a significant permeability increase of the DZ. Instead, thermally induced plasticity, swelling and creep seem to be beneficial to the sealing of fractures and to the recovery of a very low permeability in the DZ, close to that of an undisturbed clay host rock. Results from the TIMODAZ project indicate that the favourable properties of the clay host rock, which guarantee the effectiveness of the safety functions of the repository system, are expected to be maintained after the heating-cooling cycle. Hence, the basic assumptions usually made in PA calculations so far are expected to remain valid, and the performance of the system should not be affected in a negative way by the thermal evolution of the DZ around a radioactive waste repository in clay host rock.
机译:适当评估因开挖和放热废物的引入而引起的基岩扰动,对于评估粘土地层中高放废物处置的长期安全性至关重要。欧盟委员会项目TIMODAZ(2006-2010年对放射性废物弃置在粘土基质岩石中的热影响对受损区域的影响)已经探讨了热瞬变对受损区域(DZ)演变的影响。本文从性能评估(PA)的角度整合了TIMODAZ项目的科学结果,展示了这些结果如何支持和证明关键的PA假设以及PA模型参数的值。本文还从安全案例的角度对热影响对DZ的重要性进行了背景分析,强调了项目成果如何导致人们更好地了解了粘土基质岩石的热-水-力学行为。 TIMODAZ项目获得的结果加强了当前存储库设计的安全性评估的评估基础。在整个TIMODAZ实验观察中,没有证据表明温度引起的裂缝额外张开,也没有DZ渗透率的显着提高。取而代之的是,热诱导的可塑性,膨胀和蠕变似乎有利于裂缝的密封和DZ中非常低的渗透率的恢复,接近于未扰动的粘土基质岩石。 TIMODAZ项目的结果表明,在加热-冷却循环后,预计将保持粘土基质岩石的有利特性,从而保证储层系统安全功能的有效性。因此,到目前为止,通常在PA计算中通常做出的基本假设仍将有效,并且系统的性能不应受到粘土基质岩石中放射性废物库周围DZ的热演化的负面影响。

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