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The application of dynamic programming to slope stability analysis

机译:动态规划在边坡稳定性分析中的应用

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The applicability of the dynamic programming method to two-dimensional slope stability analyses is studied. The critical slip surface is defined as the slip surface that yields the minimum value of an optimal function. The only assumption regarding the shape of the critical slip surface is that the surface is an assemblage of linear segments. Stresses acting along the critical slip surface are computed using a finite element stress analysis. Assumptions associated with limit equilibrium methods of slices related to the shape of the critical slip surface and the relationship between interslice forces are no longer required. A computer program named DYNPROG was developed based on the proposed analytical procedure, and numerous example problems have been analyzed. Results obtained when using DYNPROG were compared with those obtained when using several well-known limit equilibrium methods. The comparisons demonstrate that the dynamic programming method provides a superior solution when compared with conventional limit equilibrium methods. Analyses conducted also show that factors of safety computed when using the dynamic programming method are generally slightly lower than those computed using conventional limit equilibrium methods of slices; however, as Poisson's ratio approaches 0.5, the computed factors of safety from the dynamic programming method and the limit equilibrium method appear to become similar. [References: 30]
机译:研究了动态规划方法在二维边坡稳定性分析中的适用性。临界滑动面定义为产生最佳功能最小值的滑动面。关于临界滑动表面的形状的唯一假设是该表面是线性段的集合。使用有限元应力分析计算沿临界滑移表面作用的应力。不再需要与与极限滑移面的形状和层间力之间的关系有关的层的极限平衡方法有关的假设。根据提出的分析程序,开发了一个名为DYNPROG的计算机程序,并分析了许多示例问题。将使用DYNPROG时获得的结果与使用几种众所周知的极限平衡方法时获得的结果进行比较。比较表明,与常规极限平衡方法相比,动态规划方法提供了更好的解决方案。进行的分析还表明,使用动态规划方法计算出的安全系数通常略低于使用常规切片极限平衡方法计算出的安全系数;但是,随着泊松比接近0.5,从动态规划方法和极限平衡方法计算出的安全系数似乎变得相似。 [参考:30]

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