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Three-Part Wedge Method for the Stability Calculation of Embankment Supported on Rigid Pile Foundation

机译:刚性桩基础支护路堤稳定性的三部分楔法

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摘要

Rigid piles have been widely used to reinforce soft subgrade. However, some studies do not consider the bending failure of piles and wedge sliding surfaces, which may lead to an overestimation of stability. In this study, a stability calculation method for a multi-section linear sliding surface is first derived and then simplified to three-part wedge method based on the numerical modeling of the failure evolution process. The real safety factor is replaced by the average value of the upper and lower bound solutions of the embankment stability safety factor. Through calculations, then the average value or the approximate solution of the real value, of both the upper and lower bound solutions can be obtained. The accuracy of the approximate solution can be verified through an analysis of the relative error of the average and true values. Finally, the proposed method was verified by a three-dimensional numerical simulation method and compared with the traditional limit equilibrium method and the equivalent shear strength parameter method. The results indicate that the support contribution of rigid piles to the embankment can be effectively reflected by considering wedge sliding surfaces, and a more reasonable stability safety factor can be obtained through the proposed method.
机译:刚性桩已广泛用于加固软基。但是,有些研究没有考虑桩和楔形滑动面的弯曲破坏,而弯曲破坏可能导致对稳定性的高估。在这项研究中,首先推导了多截面线性滑动面的稳定性计算方法,然后基于破坏演化过程的数值模型将其简化为三部分楔形法。实际安全系数由路堤稳定性安全系数的上限和下限解的平均值代替。通过计算,可以得到上限和下限解的平均值或实际值的近似解。可以通过分析平均值和真实值的相对误差来验证近似解的准确性。最后,通过三维数值模拟方法对该方法进行了验证,并与传统的极限平衡法和等效抗剪强度参数法进行了比较。结果表明,考虑楔形滑动面可以有效地反映出刚性桩对路堤的支护作用,通过所提方法可以得到较为合理的稳定安全系数。

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