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Evaluation of slope stability by finite element method using observed displacement of landslide

机译:滑坡位移的有限元法评价边坡稳定性

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摘要

To monitor land deformation in detail, we ran a large-scale field test in which an artificial landslide was induced by the application of a load to a natural slope. The measured landslide displacement was reproduced numerically through the use of finite element model analysis with a two-dimensional elasto-viscoplastic model. The analysis suggested that the strength of the sliding surface decreased as the landslide mass moved. We propose a simple method for estimating safety factors. The method involves back-calculation of shear strength parameters through reproduction of observed landslide displacements and calculating the ratio of driving force to resisting force acting on the sliding surface as modeled by joint elements. This ratio, the “stability index”, shows the same trend as safety factors calculated by a two-dimensional limit equilibrium method and a shear strength reduction method that use back-calculated shear strength parameters estimated from the limit equilibrium state. The results indicate that the stability index may be applicable to the assessment of slope stability.
机译:为了详细监测土地变形,我们进行了大规模的野外试验,其中通过向自然边坡施加载荷来诱发人工滑坡。通过使用二维弹黏塑性模型的有限元模型分析,以数值方式再现了测得的滑坡位移。分析表明,滑动面的强度随着滑坡质量的移动而降低。我们提出了一种估算安全系数的简单方法。该方法包括通过再现观察到的滑坡位移来反算抗剪强度参数,并计算由关节单元建模的驱动力与作用在滑动面上的阻力之比。该比率称为“稳定性指标”,显示出与通过二维极限平衡法和剪切强度降低法计算的安全系数相同的趋势,该安全系数使用从极限平衡状态估算的反算剪切强度参数。结果表明,该稳定指数可适用于边坡稳定性评价。

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