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Creep degradation mechanism by water-rock interaction in the red-layer soft rock

机译:红层软岩中水-岩相互作用的蠕变降解机理

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Bank slope stability has become a great concern, while the impoundment of Three Gorges reservoir. The bank slope composed of red-layer soft rock has exhibited distinct deformation and failure. Therefore, a typical red-layer soft rock around Three Gorges reservoir area was selected to demonstrate the process of cyclic changes at the reservoir level and immersion-air-dry cyclic action of water-rock inside hydro-fluctuation belt. To meet the objective of this study, a series of creep tests were conducted on the rock specimens at different water-rock interaction stages. The following points were noticed based on the laboratory results: (1) the creep fracture strength and long-term strength of red-layer soft rock degraded significantly during the process of water-rock interaction. For the first three water-rock interaction circulations, the strength of red-layer soft rock degraded quickly and then gradually became stable. (2) During the creep test, the lateral expansion of red-layer soft rock increased significantly regarding to the number of cycles. (3) The creep curve includes three typical stages at failure stress level-primary (damped) stage, secondary (steady-state) stage, and tertiary (nonlinear accelerated) stage. As the number of cycles increased, the percentage of secondary stage diminished gradually. However, the tertiary stage showed a gradual increment, since the plasticity of the specimens was strengthened by water-rock interaction. (4) The shear failure characteristics of the specimens became highly considerable during the process of water-rock interaction, and there have been a gradual increment of shear rupture zone. (5) The SEM results showed that the specimen microstructure changed its state from dense to loose and porous. The findings of this research provide a good basis for long-term stability analysis of bank slope.
机译:堤岸边坡的稳定性已成为人们高度关注的问题,而三峡水库的蓄水。由红层软岩组成的岸坡表现出明显的变形和破坏。因此,选择了三峡库区周围典型的红层软岩,以说明储层水平的循环变化过程以及水涨落带内水岩的浸入-风干循环作用。为了达到本研究的目的,在不同水-岩相互作用阶段对岩石样本进行了一系列蠕变测试。根据实验室结果,发现以下几点:(1)红层软岩在水-岩相互作用过程中的蠕变断裂强度和长期强度明显降低。对于前三个水-岩相互作用循环,红层软岩的强度迅速下降,然后逐渐稳定。 (2)在蠕变测试期间,红层软岩的横向膨胀相对于循环次数显着增加。 (3)蠕变曲线包括破坏应力水平的三个典型阶段:第一阶段(阻尼)阶段,第二阶段(稳态)阶段和第三阶段(非线性加速阶段)。随着循环次数的增加,次级阶段的百分比逐渐降低。但是,第三阶段显示出逐渐增加的趋势,因为水岩相互作用增强了样品的可塑性。 (4)在水-岩相互作用过程中,试样的剪切破坏特性变得非常重要,并且剪切断裂带逐渐增加。 (5)SEM结果表明,试样的微观结构从致密变为松散,多孔。研究结果为岸坡长期稳定分析提供了良好的基础。

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