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Influence of Both Soil Properties and Geometric Parameters on Failure Mechanisms and Stability of Two-Layer Undrained Slopes

机译:土壤性质和几何参数对两层不整流斜坡故障机制的影响及其稳定性

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The stability of the two-layer undrained clay slopes should be given considerable attention since they are commonly observed in nature and in manmade structures, and they traditionally have low stability. Therefore, with the elastoplastic finite element method, this paper thoroughly explores the influence of the soil strength parameter cu, slope angle β, and slope depth ratio DH on the slope stability and failure mechanisms by the wide-ranging parametric changes. The aims of this study are also to find the critical strength ratio (cu2/cu1)crit and the maximum values of the stability number Nc that were observed in the parametric studies. Numerical results are displayed in the form of charts to give Nc and (cu2/cu1)crit as a function of cu, β, and DH. Moreover, influences of DH and β on Nc and failure mechanisms are examined in this study. The results of numerical analysis demonstrate that cu2/cu1 significantly affects both the critical failure mechanism and the stability of the two-layer undrained slope. Improved knowledge of the location of the critical failure mechanism allows for accurately estimating the stability of the two-layer undrained slopes for future strengthening measurements to preserve stability.
机译:两层不统一粘土斜坡的稳定性应得到相当大的关注,因为它们通常在自然和人工结构中观察到,它们传统上具有低稳定性。因此,利用弹塑性有限元方法,本文通过广泛的参数变化彻底探讨了土壤强度参数Cu,斜率Cu,斜角β和斜坡深度比dh对坡度稳定性和故障机制的影响。该研究的目的还要找到临界强度比(Cu2 / Cu1)细胞和参数研究中观察到的稳定性数量NC的最大值。数值结果以图表的形式显示,以给予Nc和(Cu2 / Cu1)rit作为Cu,β和DH的函数。此外,在本研究中研究了DH和β对NC和失效机制的影响。数值分析的结果表明CU2 / CU1显着影响关键故障机构和双层不推迟斜率的稳定性。改进的临界失效机构的位置知识允许精确地估计两层不驱动斜面的稳定性,以便进行稳定性的未来强化测量。

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