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Failure modes and a calculation method for a stability analysis on a layered slope with a focus on interlayer sliding

机译:在层间滑动中的分层坡度稳定性分析的故障模式与稳定性分析计算方法

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摘要

Geotechnical body is often heterogeneous in both of the natural and artificial slopes, and the layered slope is a special case. The previous studies have discussed in depth the stability of a layered slope. However, the research on the local stability of a layered slope with a focus on interlayer sliding is still insufficient. Due to the difference on the strength of soils in the adjacent upper and lower layers, it is possible for the local stability with the sliding along the interface between the adjacent two layers. Meanwhile, compared with the global stability of a layered slope, a complex sliding model should be adopted to simulate the local stability for the reason of its failure pattern affected by the forces on the interface of the two adjacent layers. Thus, this work establishes two failure modes of a layered slope, i.e., the global stability and the local stability with a focus on interlayer sliding. Then, on basic of the proposed limit equilibrium (LE) stress method, the formulas for calculating the slope factor of safety (FOS) under the two failure modes are derived. After comparison and analysis on some slope examples, the feasibility of the proposed method is verified. Furthermore, the parameter analysis is performed on a layered slope composed of soils with two layers, where the shear strength of soil in the upper layer is weaker than that in the lower layer. Thereby, the stability charts of a layered slope under different conditions are drawn. Moreover, the scopes for the global and local stability of a layered slope are respectively identified in these charts.
机译:在天然和人造斜坡中,岩土机身通常是异质的,层叠斜率是一个特殊情况。以前的研究深入地讨论了层状斜率的稳定性。然而,对层叠坡度的局部稳定性的研究仍然不足。由于相邻的上层和下层的土壤强度的差异,可以沿着相邻两层之间的界面滑动局部稳定性。同时,与层叠坡的全局稳定性相比,应采用复杂的滑动模型来模拟由于其故障模式受到两个相邻层的界面上的力影响的故障模式的局部稳定性。因此,该工作建立了层叠斜率的两个故障模式,即,全局稳定性和局部稳定性,具有专注于层间滑动。然后,在所提出的极限平衡(LE)应力法的基本上,推导了计算两个故障模式下的安全性(FOS)的斜率因子的公式。在一些斜坡实施例比较和分析之后,验证了所提出的方法的可行性。此外,对由具有两层的土壤组成的层状斜面进行参数分析,其中上层中的土壤的剪切强度较弱。由此,绘制了不同条件下的分层斜率的稳定性图。此外,分层斜率的全局和局部稳定性的范围分别在这些图表中识别。

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