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Damage evolution of hydraulically coupled Jianchuandong dangerous rock mass

机译:液压耦合建钦东危险岩体损坏演变

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Submerged rock masses in reservoir areas can be dangerous when the base rock mass is located in a deterioration zone formed by periodic water level fluctuations. Deformation of the base rock mass is driven by compression due to its own overlying weight and the hydrological conditions of the reservoir; the combination of these two factors represents a complex mechanical environment. This hydraulic coupling accelerates the deterioration and the instability of the base rock mass. To investigate the Jianchuandong dangerous rock mass (JDRM) in the Three Gorges Reservoir area, we devised a new hydraulic coupling mechanism that, when applied to a generalized mechanics model, represents the mechanical environment of the base rock mass in the deterioration zone. In this hydraulic coupling mechanism, when water is in direct contact with the rock mass, the water pressure contributes to the expansion of existing fractures in the JDRM base rock mass. With this hydraulic coupling mechanism, we created a constitutive damage model that reflects the observed stress-strain characteristics of the JDRM base rock mass in these hydrological conditions. After refining our model by incorporating the damage experienced by the submerged dangerous rock mass over time, we determined that the eventual failure of the JDRM can be divided into three stages: the formation of the bottom damage zone, progressive deformation and damage, and sudden rock collapse. Our model indicates that the damage can magnify the effective stress experienced by the base rock mass and lead to the nonlinear acceleration of the deterioration of the dangerous rock mass.
机译:当基岩质量位于由周期性水位波动形成的劣化区中,储层区域中的浸没式岩体可能是危险的。由于其自身的覆盖重量和水库的水文条件,压缩驱动基岩质量的变形;这两个因素的组合代表了复杂的机械环境。该液压耦合加速了基础岩体的劣化和稳定性。为了调查三峡库区建筑危险岩石质量(JDRM),我们设计了一种新的液压耦合机构,当应用于广义的力学模型时,表示劣化区中基岩质量的机械环境。在这种液压联轴器机构中,当水与岩体直接接触时,水压有助于JDRM基础岩体中的现有骨折的膨胀。利用这种液压耦合机构,我们创造了一种组成型损伤模型,反映了这些水文条件中的JDRM基础岩体的观察到应力 - 应变特征。通过纳入淹没危险岩质量随着时间的推移而改进我们的模型,我们确定JDRM的最终失败可分为三个阶段:形成底部伤​​害区,逐渐变形和损坏,突然摇滚坍塌。我们的模型表明损坏可以放大基础岩体经历的有效应力,导致危险岩体劣化的非线性加速度。

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