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Three-dimensional stability analysis of slope in unsaturated soils considering strength nonlinearity under water drawdown

机译:在水拔出下考虑强度非线性的不饱和土壤坡度的三维稳定性分析

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In slope stability analyses, the soil has been frequently considered dry or saturated, whereas the soil is in fact unsaturated in many cases. Owing to the existence of matric suction, the strength properties of unsaturated soils are greatly different from dry or saturated soil, and thereby leading to diverse stability conditions of the slope. Based on the kinematical approach of limit analysis, in this study, a three-dimensional (3D) stability analysis was conducted for slopes in unsaturated soils. The effects of matric suction distribution patterns, the nonlinearity of the strength under soil-water characteristic curves and the water drawdown were investigated to explore the shear strength and stability of a slope in unsaturated soil. It was found that, when the matric suction is uniformly distributed, the stability factors of the slope increase linearly along with the matric suction. In addition, when the matric suction increases linearly with the depth, the enhancing effect of the matric suction on the slope stability intensifies as the variation magnitude of the matric suction increases, especially for a gentle slope with a narrower width. For nonlinear patterns, different soil-water characteristic curve (SWCC) models will lead to diverse shear strengths and stability conditions of the slope. The water drawdown has significant effects on the functions of the matric suction as well as slope stability.
机译:在边坡稳定性分析中,土壤经常被认为是干燥或饱和的,而土壤在很多情况下都是不饱和的。由于存在于原型吸力,不饱和土的强度性质与干燥或饱和土具有大大含量,从而导致斜坡的多样化稳定性条件。基于限制分析的运动方法,在本研究中,对不饱和土壤的斜率进行了三维(3D)稳定性分析。采用土壤 - 水特征曲线下的强度的非线性和水拔出的效果,探讨了不饱和土壤斜率的剪切强度和稳定性。发现,当测力均匀分布时,斜坡的稳定性因子随着测量的吸力而线性增加。另外,当测力的抽吸随深度线性增加时,由于测力抽吸的变化幅度增加,所以在坡度稳定性上的增强效果增强了,特别是对于宽度较窄的平缓斜率。对于非线性图案,不同的土壤 - 水特性曲线(SWCC)模型将导致斜坡的不同剪切强度和稳定性条件。水拔压对测力吸力的功能以及坡度稳定性具有显着影响。

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