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Hybrid Method for Analysis and Design of Slope Stabilizing Piles

机译:边坡稳定桩分析与设计的混合法。

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Piles are extensively used as a means of slope stabilization. Despite the rapid advances in computing and software power, the design of such piles may still include a high degree of conservatism, stemming from the use of simplified, easy-to-apply methodologies. This paper develops a hybrid method for designing slope-stabilizing piles, combining the accuracy of rigorous three-dimensional (3D) finite-element (FE) simulation with the simplicity of widely accepted analytical techniques. It consists of two steps: (1) evaluation of the lateral resisting force (RF) needed to increase the safety factor of the precarious slope to the desired value, and (2) estimation of the optimum pile configuration that offers the required RF for a prescribed deformation level. The first step utilizes the results of conventional slope-stability analysis. A novel approach is proposed for the second step. This consists of decoupling the slope geometry from the computation of pile lateral capacity, which allows numerical simulation of only a limited region of soil around the piles. A comprehensive validation is presented against published experimental, field, and theoretical results from fully coupled 3D nonlinear FE analyses. The proposed method provides a useful, computationally efficient tool for parametric analyses and design of slope-stabilizing piles.
机译:桩被广泛用作边坡稳定的手段。尽管计算和软件功能得到了飞速发展,但由于使用了简化的,易于应用的方法,因此这些设计仍然可能包含高度的保守性。本文结合严格的三维(3D)有限元(FE)模拟的精度和广泛接受的分析技术的简便性,开发了一种用于设计边坡稳定桩的混合方法。它包括两个步骤:(1)评估将不稳定斜坡的安全系数提高到所需值所需的侧向阻力(RF),以及(2)估算为桩基提供所需RF的最佳桩构型规定的变形水平。第一步利用了常规边坡稳定性分析的结果。第二步提出了一种新颖的方法。这包括将边坡几何形状与桩侧向承载力的计算解耦,从而仅对桩周围的有限土壤区域进行数值模拟。针对来自完全耦合的3D非线性有限元分析的已发表实验,现场和理论结果,进行了全面验证。所提出的方法为边坡稳定桩的参数分析和设计提供了有用的,计算效率高的工具。

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