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A study on altered granite meso-damage mechanisms due to water invasion-water loss cycles

机译:水分入侵-失水循环改变花岗岩细观破坏机理的研究

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摘要

Water-level variations of tailings ponds can result in slope rocks being in a state of water invasion-water loss which can lead to irreversible damage to the rock meso-structure. This study combines qualitative analysis and quantitative characterization to investigate rock meso-structure damage due to water invasion-water loss cycles by analyzing the variations of rock meso-structures using a scanning electron microscope (SEM). Results from this analysis identified four stages in the variations of rock meso-structure under the action of water invasion-water loss cycles: overall homogeneity and compactness stage, primary pore expansion stage, porous flocculation stage, and a pore and fracture development stage. According to the fractal dimension in SEM test results, we can define rock meso-damage variable D-f (which attained a maximum of 33.57%), thus realizing the quantitative characterization of rock damage under the action of water invasion-water loss cycles. After demonstrating that the evolutionary relationship between fractal dimension/damage variable and cycle number conforms to exponential function change, we also explored rock meso-damage mechanisms under the action of water invasion-water loss cycles.
机译:尾矿池的水位变化可能导致斜坡岩石处于水侵水失水状态,这可能导致对岩石细观结构的不可逆破坏。这项研究结合定性分析和定量表征,通过使用扫描电子显微镜(SEM)分析岩石细观结构的变化,研究由于水分入侵-水分损失循环而引起的岩石细观结构破坏。该分析的结果确定了在水侵-失水循环的作用下岩石细观结构的变化的四个阶段:整体均匀性和致密性阶段,初级孔隙扩张阶段,多孔絮凝阶段以及孔隙和裂缝发育阶段。根据SEM测试结果的分形维数,我们可以定义岩石细观损伤变量D-f(最大值为33.57%),从而实现了在水分入侵-失水循环作用下岩石损伤的定量表征。在证明分形维数/损伤变量与循环数之间的演化关系符合指数函数变化之后,我们还研究了在水入侵-失水循环作用下的岩石细观损伤机制。

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