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首页> 外文期刊>Rock Mechanics and Rock Engineering >An Index for Estimating the Stability of Brittle Surrounding Rock Mass: FAI and its Engineering Application
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An Index for Estimating the Stability of Brittle Surrounding Rock Mass: FAI and its Engineering Application

机译:估算脆性岩体稳定性的指标:FAI及其工程应用

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摘要

Based on the geometric analysis of the relationship between the stress state at a point and the yield surface defined in the principal stress space, a coefficient ω is set up as an estimation index to describe the stress-induced yield risk. After yield, the equivalent plastic shear strains is usually used to characterize the failure degree (FD) of the material and adopted here as an index of the damage degree for the surrounding rock masses. Then, a unified variable combining ω and FD, named failure approaching index (FAI), is constructed to estimate the stability of rock mass which may be at different deformation stages. The formulas of FAI are derived for some popular yield criteria in geomechanics. Details for such development are addressed in the paper. Its rationality is verified by numerical simulation and comparative analysis of the conventional triaxial compression tests and typical tunnel projects. In addition, the method for applying FAI to the stability estimation of surrounding rock mass is proposed. As examples, the stability of the underground powerhouse, access tunnels and headrace tunnels at the Jinping II hydropower station are estimated by making use of the method we presented. The results indicate that not only is the index rational in mechanics, but the theory also has good expansibility, and the estimation methods are simple and practical as well. It is easier for field engineers to analyze and understand the numerical results.
机译:基于在主应力空间中的点和屈服表面处的应力状态之间的关系的几何分析,将系数ω设置为描述应力诱导的产量风险的估计指数。产率之后,等效塑料剪切菌株通常用于表征材料的故障程度(FD),并在这里采用作为周围岩体的损伤程度的指标。然后,构造一个统一的变量组合ω和FD,命名失败索引(Fai),以估计可能处于不同变形阶段的岩体的稳定性。 FAI的公式因地质力学的一些流行的产量标准而得出。此类发展的详细信息在论文中得到了解决。通过数值模拟和传统三轴压缩试验和典型隧道项目的数值模拟和比较分析来验证其合理性。此外,提出了将FIA应用于周围岩体稳定性估计的方法。作为示例,通过利用我们所呈现的方法,估计了地下电力房,进入隧道和头部隧道隧道隧道隧道的稳定性。结果表明,不仅是机械的指标理性,而且该理论也具有良好的可扩展性,并且估算方法也很简单实用。现场工程师更容易分析和理解数值结果。

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