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Slope stability analysis under unsaturated conditions: Case studies of rainfall-induced failure of cut slopes

机译:非饱和条件下边坡稳定性分析:降雨诱发的边坡破坏案例研究

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We present two case studies of rainfall-induced failure of engineered slopes. The traditional limit equilibrium and finite element methods are expanded to unsaturated conditions using a generalized effective stress framework. Because effective stress is represented by the suction stress characteristic curve (SSCC), and the SSCC and the soil water retention curve (SWRC) have been unified with the same set of hydromechanical parameters, the expanded framework requires only three hydromechanical parameters in addition to those used for saturated slope stability analysis. Using recorded rainfall, measured shear strength parameters and the SWRC, and site geology, transient slope stability analyses are conducted to reconstruct the failure events. We find that, despite differences in slope geometry, hydromechanical properties, shear strength, and rainfall history, the actual failure occurred when the simulated factor of safety approaches its minimum below 1.0. It is shown that the hydromechanical framework under the suction stress-based effective stress can reconcile the observed timing of failure. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们目前介绍两个降雨引起的工程边坡降雨诱发的案例。使用广义有效应力框架将传统的极限平衡和有限元方法扩展到不饱和条件。由于有效应力由吸力应力特征曲线(SSCC)表示,并且SSCC和土壤保水曲线(SWRC)已用同一组水力学参数统一,因此扩展框架仅需要三个水力学参数即可。用于饱和边坡稳定性分析。利用记录的降雨,测得的抗剪强度参数和SWRC以及现场地质,进行瞬态边坡稳定性分析以重建破坏事件。我们发现,尽管边坡几何形状,流体力学特性,抗剪强度和降雨历史有所不同,但当模拟安全系数接近其最小值(低于1.0)时,实际发生了破坏。结果表明,在基于吸应力的有效应力下的水力力学框架可以协调观察到的破坏时间。 (C)2014 Elsevier B.V.保留所有权利。

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