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Modeling the evolution of natural cliffs subject to weathering. 1, Limit analysis approach

机译:模拟受风化影响的天然悬崖的演变。 1,极限分析法

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摘要

Retrogressive landsliding evolution of natural slopes subjected to weathering has been modeled by assuming Mohr-Coulomb material behavior and by using an analytical method. The case of weathering-limited slope conditions, with complete erosion of the accumulated debris, has been modeled. The limit analysis upper-bound method is used to study slope instability induced by a homogeneous decrease of material strength in space and time. The only assumption required in the model concerns the degree of weathering within the slope, and for this we assumed and tested different weathering laws. By means of this method, the evolution of cliffs subject to strong weathering conditions (weathering-limited conditions) was predicted. The discrete succession of failures taking place was modeled taking into account the geometry assumed by slopes as a consequence of previous mass movements. The results have been compared with published data from long-term slope monitoring and show a good match between experimental observations and analytical predictions. The retrogressive evolution of the slope occurs with decreasing size of the unstable blocks, following a logarithmic volume-frequency relationship. A nonlinear relationship is found between mass flux and average slope gradient. A set of normalized solutions is presented both by nomograms and tables for different values of slope angle, cohesion, and internal friction angle.
机译:通过假设Mohr-Coulomb的材料行为并使用分析方法对自然风化后自然滑坡的倒退滑坡演化进行了建模。模拟了受风化限制的斜坡条件,并完全腐蚀了累积的碎屑。极限分析上限方法用于研究由于材料强度在空间和时间上均匀降低而引起的边坡失稳。模型中所需的唯一假设涉及坡度内的风化程度,为此,我们假设并测试了不同的风化规律。通过这种方法,可以预测在强风化条件(风化限制条件)下悬崖的演化。考虑到先前质量运动导致的坡度所假定的几何形状,对离散的连续故障建模。该结果已与长期边坡监测的公开数据进行了比较,显示出实验观察结果和分析预测之间的良好匹配。斜率的倒退演化是随着对数体积-频率关系随不稳定块尺寸的减小而发生的。发现质量通量和平均斜率梯度之间存在非线性关系。列线图和表格均提供了一组针对斜角,内聚力和内摩擦角的不同值的标准化解决方案。

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  • 年度 2011
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  • 正文语种 {"code":"en","name":"English","id":9}
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