首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Effect of anisotropy and hydro-mechanical couplings on pore pressure evolution during tunnel excavation in low-permeability ground
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Effect of anisotropy and hydro-mechanical couplings on pore pressure evolution during tunnel excavation in low-permeability ground

机译:各向异性和水力机械联轴器对低渗透地隧道挖掘过程中孔隙压力的影响

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Continuous monitoring around drifts excavated in the Underground Research Laboratory (URL) of The French National Radioactive Waste Management Agency (Andra) in Callovo Oxfordian claystone revealed the development of a fractured zone (extensional and shear fractures) induced by the excavation. Moreover, the field monitoring during the excavation showed an anisotropic pore pressure field around the drifts with zones of marked overpressure. For drifts parallel to the horizontal major principal stress, even though the initial stress state in the drift section is quasi-isotropic, the pore pressure evolution and the mechanical response are anisotropic. These observations suggest that the intrinsic anisotropy of the material plays a key role in the response of rock formation. A poroelastic analysis of the pore pressure change induced by drift excavation is performed. The principal objective is to simulate the main trends of the pore pressure evolution with a simple model taking into account the elastic anisotropy of the material. It is shown that depending upon the permeability and the degree of anisotropy of the rock, strong overpressures can be induced by the excavation. Furthermore, it is observed that the distribution of overpressures around drifts depends also on the drifts orientation. Finally, an analysis of the onset of failure shows the key role of the hydro-mechanical coupling on the extension of the failed zone around the drifts.
机译:在Callovo Oxfordian Claystone的法国国家放射性废物管理局(ANDRA)的地下研究实验室(URL)中散布散布次散布,揭示了由挖掘引起的裂缝区(扩展和剪切骨折)的发展。此外,挖掘过程中的现场监测显示了围绕着标记的超压区域的各向异性孔隙压力场。对于平行于水平主要主应力的漂移,即使漂移部分中的初始应力状态是准各向同性,孔隙压力逸出和机械响应是各向异性的。这些观察结果表明,该材料的内在各向异性在岩层的响应中起着关键作用。进行漂移挖掘诱导的孔隙压力变化的孔隙弹性分析。主要目的是通过简单的模型来模拟孔隙压力演化的主要趋势,考虑到材料的弹性各向异性。结果表明,根据岩石的渗透性和各向异性程度,可以通过挖掘诱导强大的过压。此外,观察到,漂移周围的过压分布也取决于漂移方向。最后,对失败开始的分析显示了水力机械耦合对漂移周围失灵区的延伸的关键作用。

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