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首页> 外文期刊>Bulletin of engineering geology and the environment >Strength deterioration of a Shaly sandstone under dry-wet cycles: a case study from the Three Gorges Reservoir in China
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Strength deterioration of a Shaly sandstone under dry-wet cycles: a case study from the Three Gorges Reservoir in China

机译:干湿循环下页岩质砂岩的强度退化:以中国三峡水库为例

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摘要

We selected the shaly sandstone at the rock slope of the Three Gorges Reservoir area in China where water level varies (the water level-fluctuating zone) in order to study the effect of dry-wet cycles on strength deterioration and micro-structure changes of shaly sandstone. After n dry-wet cycles (n being the number of cycles, with a value of 0, 1, 5, 10, 15, and 20), the shaly sandstone samples were exposed to a uniaxial compression test, triaxial compression test, and Scanning Electron Microscope observation. The strength deterioration and micro-structural changes of the samples are then analyzed with PFC2D (particle flow code in 2D). We found that as n increases, the micro-structure of the shaly sandstone changes from a well-organized dense structure stage to a porous stage and then to a cracking stage, the particles within the shaly sandstone bear and transfer a larger load, strength deterioration is more obvious, and particles are more prone to yield failure. The dry-wet cycles lower the micro-structure strength of the particles contact network, at the macro level, which is reflected in the strength decrease of shaly sandstone. At peak stress state, the shaly sandstone mainly shows the characteristics of shear failure after dry-wet cycles. With the loading process and n increasing, the cracks propagation process of the shaly sandstone samples can be divided into four stages: the elastic deformation stage, cracks generation and stable cracks growth stage, cracks damage and unstable cracks growth stage, and post-peak failure stage.
机译:为了研究干湿循环对页岩强度退化和微观结构变化的影响,我们选择了三峡库区水位变化的岩质边坡上的页岩砂岩(水位波动区)。砂岩。经过n次干湿循环(n为循环数,值为0、1、5、10、15和20)后,将页岩砂岩样品进行了单轴压缩测试,三轴压缩测试和扫描电子显微镜观察。然后使用PFC2D(二维粒子流代码)分析样品的强度劣化和微观结构变化。我们发现,随着n的增加,页岩砂岩的微观结构从组织良好的致密结构阶段转变为多孔阶段,然后转变为破裂阶段,页岩砂岩中的颗粒承受并传递较大的载荷,强度降低更明显,并且颗粒更容易屈服失败。干湿循环从宏观上降低了颗粒接触网络的微观结构强度,这反映在泥质砂岩强度下降上。页岩砂岩在峰值应力状态下主要表现出干湿循环后的剪切破坏特征。随着加载过程和n的增加,泥质砂岩样品的裂纹扩展过程可以分为四个阶段:弹性变形阶段,裂纹产生和稳定裂纹增长阶段,裂纹破坏和不稳定裂纹增长阶段以及峰后破坏。阶段。

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