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Multiscale Laboratory Study and Numerical Analysis of Water-Weakening Effect on Shale

机译:金属弱化效应的多尺度实验室研究与数值分析

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Water-weakening effect is one of the most important factors inducing large deformation and stability problems of shale strata in the Huangjiazhai Tunnel. The influence of water on shale with various water contents and its mechanism still needs more study. In this paper, the X-ray diffraction and water absorption test were first conducted to determine the influence of mineral components on water-rock interaction. Then, a series of rock mechanical tests, including uniaxial compressive test, Brazilian disk test, and triaxial compressive test, were carried out on shale under dried condition, wetted condition with various water contents, and saturated condition. For the uniaxial compression, tension, and triaxial compression, the softening coefficient could reach 0.38, 0.63, and 0.52, respectively. Based on the macroscale experiments, a numerical case study of tunnel excavation was investigated to evaluate the water effect. Finally, with the aid of scanning electron microscope and failure morphology, the mechanism of water-weakening effect on shale was discussed from microscopic and macroscopic perspectives. The thickness of the double layer increases with the increase of water immersion time. This paper provides a set of useful data for reference in construction in shale strata, and a methodology to evaluate water-weakening effect through laboratory and numerical modelling approaches.
机译:水弱效果是黄家寨隧道施加出版和稳定性问题的最重要因素之一。水对各种水含量及其机制的影响仍然需要更多的研究。本文首先进行X射线衍射和吸水试验,以确定矿物成分对水岩相互作用的影响。然后,一系列岩石机械测试,包括单轴压缩试验,巴西盘试验和三轴压缩试验,在干燥条件下进行页岩,润湿条件,具有各种水含量和饱和条件。对于单轴压缩,张力和三轴压缩,软化系数分别达到0.38,0.63和0.52。基于宏观实验,研究了隧道开挖的数值研究,评价水效应。最后,借助于扫描电子显微镜和失效形态,从微观和宏观视角讨论了对页岩的水弱效应的机制。随着水浸渍时间的增加,双层的厚度增加。本文提供了一套有用的数据,用于参考页岩地层的施工,以及通过实验室和数值模拟方法评估水弱效果的方法。

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