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A synthesis of approaches for modelling coupled thermal-hydraulic-mechanical-chemical processes in a single novaculite fracture experiment

机译:在一个新星云岩断裂实验中模拟热-水-力-化学-化学过程耦合方法的综合

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The geological formation immediately surrounding a nuclear waste disposal facility has the potential to undergo a complex set of physical and chemical processes starting from construction and continuing many years after closure. The DECOVALEX project (DEvelopment of COupled models and their VALidation against EXperiments) was established and maintained by a variety of waste management organisations, regulators and research organisations to help improve capabilities in experimental interpretation, numerical modelling and blind prediction of complex coupled systems. In the present round of DECOVALEX (D-2015), one component of Task C1 has considered the detailed experimental work of Yasuhara et al. (Earth Planet Sci Lett 244: 186-200, 2006), wherein a single artificial fracture in novaculite (micro-or crypto-crystalline quartz) is subject to variable fluid flows, mechanical confining pressure and different applied temperatures. This paper presents a synthesis of the completed work of six separate research teams. A range of approaches are presented including 2D and 3D high-resolution coupled thermo-hydro-mechanical-chemical models. The results of the work show that while good, physically plausible representations of the experiment can be obtained using a range of approaches, there is considerable uncertainty in the relative importance of the various processes, and that the parameterisation of these processes can be closely linked to the interpretation of the fracture surface topography at different spatial scales.
机译:紧邻核废料处置设施的地质构造有可能经历一系列复杂的物理和化学过程,这些过程从建造开始到关闭后持续多年。 DECOVALEX项目(耦合模型的开发及其对性能的验证)由各种废物管理组织,监管机构和研究组织建立和维护,以帮助提高复杂耦合系统的实验解释,数值建模和盲目预测的能力。在本轮DECOVALEX(D-2015)中,任务C1的一个组成部分考虑了Yasuhara等人的详细实验工作。 (Earth Planet Sci Lett 244:186-200,2006),其中,新星云母(微晶或隐晶石英)中的单个人工裂缝要经受可变的流体流量,机械约束压力和不同的施加温度。本文介绍了六个独立研究团队已完成工作的综合情况。提出了一系列方法,包括2D和3D高分辨率耦合热-水-力学-化学模型。工作结果表明,尽管可以使用多种方法来获得良好的,物理上合理的实验表示,但各种过程的相对重要性存在很大的不确定性,并且这些过程的参数化可以与在不同空间尺度上对裂缝表面形貌的解释。

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