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首页> 外文期刊>International journal of geomechanics >3D Stability Charts for Convex and Concave Slopes in Plan View with Homogeneous Soil Based on the Strength-Reduction Method
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3D Stability Charts for Convex and Concave Slopes in Plan View with Homogeneous Soil Based on the Strength-Reduction Method

机译:基于强度折减法的均质土平面图中凹凸面的3D稳定性图

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The analysis of slope stability problems in engineering practice requires considerable attention for the three-dimensional (3D) effect of plan curvature of the slope. This paper quantifies this effect by a dimensionless parameter of the relative curvature radius of the slope (R/H) and proposes a set of 3D stability charts that can be used to estimate the factor of safety (FOS) of convex and concave slopes in plan view with homogeneous soil, extending those currently regularly used for 3D straight slope stability evaluations. To simplify the computational process, an alternative way to perform the FEM with the strength-reduction technique is used herein in the slope stability analysis. The strength-reduction analysis results in this paper together with results of other researchers were found to bracket the FOS to within +/- 5% or better and therefore can be used to benchmark the solutions of other methods. Changing the relative curvature radius of the slope (R/H) shows that concave slopes are more stable than straight slopes, but that convex slopes are less stable; moreover, the 3D effects are more significant in slopes with friction/cohesive soils with smaller values of R/H. Numerical 3D results are presented in the form of dimensionless graphs, which represent a convenient tool for practicing engineers to estimate the initial stability of excavated or artificial slopes. (C) 2016 American Society of Civil Engineers.
机译:在工程实践中对边坡稳定性问题的分析需要对边坡平面曲率的三维(3D)效应给予极大的关注。本文通过斜坡的相对曲率半径的无量纲参数(R / H)量化了这种影响,并提出了一套3D稳定性图表,可用于估算平面中凹凸斜坡的安全系数(FOS)在均质土壤中查看,扩展了目前通常用于3D直斜坡稳定性评估的那些。为了简化计算过程,本文在边坡稳定性分析中使用了一种通过强度折减技术执行FEM的替代方法。本文中的强度折减分析结果与其他研究人员的结果一起被发现可将FOS括在+/- 5%或更好的范围内,因此可用于对其他方法的解决方案进行基准测试。改变坡度的相对曲率半径(R / H)可以看出,凹坡比平坡更稳定,而凸坡则不太稳定。此外,在具有较小R / H值的摩擦/粘性土壤的斜坡中,3D效果更为显着。 3D数值结果以无因次图的形式呈现,代表了实践工程师估算开挖或人工边坡的初始稳定性的便捷工具。 (C)2016年美国土木工程师学会。

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