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Numerical Computation of Homogeneous Slope Stability

机译:均匀斜坡稳定性的数值计算

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To simplify the computational process of homogeneous slope stability, improve computational accuracy, and find multiple potential slip surfaces of a complex geometric slope, this study utilized the limit equilibrium method to derive expression equations of overall and partial factors of safety. This study transformed the solution of the minimum factor of safety (FOS) to solving of a constrained nonlinear programming problem and applied an exhaustive method (EM) and particle swarm optimization algorithm (PSO) to this problem. In simple slope examples, the computational results using an EM and PSO were close to those obtained using other methods. Compared to the EM, the PSO had a small computation error and a significantly shorter computation time. As a result, the PSO could precisely calculate the slope FOS with high efficiency. The example of the multistage slope analysis indicated that this slope had two potential slip surfaces. The factors of safety were 1.1182 and 1.1560, respectively. The differences between these and the minimum FOS (1.0759) were small, but the positions of the slip surfaces were completely different than the critical slip surface (CSS).
机译:为了简化均匀斜坡稳定性的计算过程,提高计算精度,并找到复杂几何斜率的多个潜在滑槽,本研究利用了极限平衡方法来导出总体和部分因素的表达方程。该研究将安全性(FOS)的最小因子的解决方案变为求解受约束的非线性编程问题,并应用了详尽的方法(EM)和粒子群优化算法(PSO)。在简单的斜率示例中,使用EM和PSO的计算结果接近使用其他方法获得的那些。与EM相比,PSO具有小的计算误差和计算时间明显较短。结果,PSO可以精确地计算高效率的斜坡FOS。多级斜率分析的示例表明,该斜率有两个潜在的滑动表面。安全的因素分别为1.1182和1.1560。这些和最小FOS(1.0759)之间的差异很小,但滑动表面的位置与临界滑动表面完全不同(CSS)。

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