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A three-dimensional slope stability analysis method using the upper bound theorem Part II : numerical approaches, applications and extensions

机译:使用上限定理的三维边坡稳定性分析方法第二部分:数值方法,应用和扩展

摘要

The second part of this paper provides the numerical procedures that implement the three-dimensional upper-bound slope stability analysis method described in Part I. A three-dimensional failure surface is generated by elliptical lines based on the slip surface in the neutral plane and extended in the Ζ direction. This failure surface is mathematically represented by a series of variables including the co-ordinates of the nodal points that define the slip surface at the neutral plane, the inclinations of the row-to-row interfaces and the coefficients that define the ratio of the long axis over the low one of the elliptic. A method of optimisation is followed in order to find a set of these variables that offers the minimum factor of safety. A computer program EMU-3D is coded to perform the calculation for practical problems. Applications and extensions of the method presented in this paper include a case study of the Tianshenqiao Landslide, the stability analysis of the right abutment of the Xiaowan arch dam, and the portal of the Hongjiadu hydropower project.
机译:本文的第二部分提供了实现第一部分中所述的三维上限边坡稳定性分析方法的数值程序。基于中性面中的滑动面,由椭圆线生成三维破坏面,并将其扩展在Z方向。该失效表面在数学上由一系列变量表示,这些变量包括定义中性平面处的滑动表面的节点的坐标,行对行界面的倾斜度以及定义长轴比的系数。椭圆的低轴上方。为了找到一组这些提供最小安全系数的变量,采用了一种优化方法。对计算机程序EMU-3D进行了编码,以针对实际问题进行计算。本文提出的方法的应用和扩展包括以天神桥滑坡为例,小湾拱坝右坝肩的稳定性分析以及洪家渡水电站工程的门户。

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