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The effect of strength envelope nonlinearity on slope stability computations

机译:强度包络非线性对边坡稳定性计算的影响

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Engineering analysis of slope stability includes three separate but interrelated phases: (a) experimental strength measurements, (b) determination of a strength envelope that best fits the experimental results, and (c) formal limiting equilibrium analysis using the resulting strength envelopes. Studying the interrelations between these phases leads to an integrated approach to slope stability analysis. The present work uses a single experimental database that is fitted with both linear (Mohr-Coulomb) and nonlinear failure envelopes and investigates the effect of different forms of the failure criterion on slope stability computations for both 2D and 3D problems. It has been indicated that calculated minimum safety factors could be significantly overestimated by the linear approximation of a nonlinear strength envelope. The effect of neglecting strength envelope nonlinearity is more pronounced under 3D conditions than in a 2D simplification. As a result, the use of nonlinear failure criterions in slope stability analyses is recommended to account for the stress-dependent nature of the shear strength of soils. [References: 33]
机译:边坡稳定性的工程分析包括三个独立但相互关联的阶段:(a)实验强度测量,(b)确定最适合实验结果的强度包络线,以及(c)使用所得强度包络线的形式极限平衡分析。研究这些阶段之间的相互关系导致了边坡稳定性分析的综合方法。目前的工作使用一个单一的实验数据库,该数据库同时拟合了线性(Mohr-Coulomb)和非线性破坏包络,并研究了不同形式的破坏准则对2D和3D问题的边坡稳定性计算的影响。已经表明,通过非线性强度包络线的线性近似可以大大高估计算出的最小安全系数。忽略强度包络非线性的影响在3D条件下比在2D简化中更为明显。因此,建议在边坡稳定性分析中使用非线性破坏准则,以说明土壤抗剪强度的应力相关性质。 [参考:33]

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