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Impact of excavation damage on the thermo-hydro-mechanical properties of natural Boom Clay

机译:开挖破坏对天然臂粘土热-水-力学性能的影响

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Boom Clay has been considered as a potential host-rock for the geological radioactive waste disposal in Belgium. In this context, it is important to well understand the thermo-hydro-mechanical behaviour of this clay around the disposal galleries. In this study, the effect of excavation damage on the thermo-hydro-mechanical properties of natural Boom Clay around the Connecting gallery (excavated in 2002) in the Mol underground Research Laboratory HADES (High-Activity Disposal Experimental Site) was investigated. Several samples taken from a horizontal borehole drilled in July 2012 were tested. The thermal conductivity in three different orientations (perpendicular, parallel, and 45 to the bedding plane) was measured using the needle probe method. The results show a crossanisotropy of natural Boom Clay and an impact of the excavation damage on the thermal property of samples near the gallery. To further investigate the anisotropy behaviour, bender element tests were carried out under unconfined conditions to determine the small-strain shear modulus also in three different orientations. The obtained results confirm the anisotropic behaviour of Boom Clay. Moreover, the evolution of small-strain shear Modulus with the distance from the gallery axis (r) was found to be similar to that of thermal conductivity: the values in the zone near the gallery are lower than those in the far field. From these experimental data, an extent of the excavation damaged zone (EDZ) of 4 m from the connecting gallery axis was determined. Further investigations on the microstructure of several samples taken at different distances r by mercury intrusion porosimetry (MIP) and scanning electron microscope (SEM) methods were carried out Macro-pores of diameter >= 5 mu m were identified in the samples near the gallery. The identified macro-pores were related to the effect of excavation damage, and a damage variable was thus defined, allowing a damage model to be developed. The values of the two model parameters have been determined from the observed relationship between macroporosity and thermal conductivity. Comparisons between the predicted and experimental results in terms of small strain shear modulus and hydraulic conductivity show a reasonable agreement. (C) 2015 Elsevier B.V. All rights reserved.
机译:动臂粘土被认为是比利时地质放射性废物处置的潜在宿主岩。在这种情况下,重要的是要充分了解这种粘土在处置通道周围的热-水-机械行为。在这项研究中,研究了开挖损伤对Mol地下研究实验室HADES(高活性处置实验点)周围连接廊(2002年开挖)周围天然臂粘土的热-水-机械特性的影响。测试了2012年7月从水平钻孔中采集的一些样品。使用针探针法测量了三个不同方向(垂直,平行以及与铺层平面成45度)的热导率。结果表明,天然动臂粘土的横观各向异性和开挖损伤对通道附近样品热性能的影响。为了进一步研究各向异性行为,在无限制条件下进行了弯曲元件测试,以确定在三个不同方向上的小应变剪切模量。获得的结果证实了动臂粘土的各向异性行为。此外,发现小应变模量随距通道轴线(r)的变化与热导率的变化相似:通道附近区域的值低于远场的值。从这些实验数据确定距连接通道轴线4 m的开挖损坏区(EDZ)的程度。通过水银压入孔率法(MIP)和扫描电子显微镜(SEM)方法对在不同距离r处采集的几个样品的微观结构进行了进一步研究,并在展厅附近的样品中发现了直径大于等于5μm的大孔。所识别的大孔与挖掘破坏的影响有关,因此定义了破坏变量,从而可以开发破坏模型。这两个模型参数的值已根据所观察到的大孔隙度与导热系数之间的关系确定。在小应变剪切模量和水力传导率方面的预测结果与实验结果之间的比较显示出合理的一致性。 (C)2015 Elsevier B.V.保留所有权利。

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