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Rupture Failure Modes in Analyses of Stability of Soil and Rock Slopes

机译:土壤与岩石岩稳定性分析中的破裂破坏模式

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Methods of stability analyses of slopes, such as limit analysis or the limit equilibrium method, require postulation of the pattern of failure and the mode of material yielding. They typically do so by assuming the shear-type material failure (mode) along kinematic discontinuities (pattern). Observations of slope failures, however, lead to the conclusion that both soils and rocks often display a rupture-type mode of failure with large separation components of displacements, in addition to the shear-type failure. Such modes are observed, for example, as opening cracks at the crest in early stages of slope failure and as blocks separating from one another, giving rise to toppling failures. The shear strength of rocks is typically represented by a non-linear strength envelope, whereas soils are more commonly described with a linear function of normal stress. The role of the strength envelope and the plastic flow rule will be discussed in the context of rupture modes in slope failures. Examples of slope analyses with geomaterial rupture will be shown with a focus on the safety assessment of slopes. It will be demonstrated that neglecting rupture modes in stability analyses may contribute to overestimating the slope safety.
机译:斜坡的稳定性分析,例如极限分析或极限平衡法的方法中,需要故障的图案和材料产生的模式的公设。它们通常通过假设沿着运动的不连续性(图案)剪切型材料衰竭(模式)这样做。的斜率故障观测,但是,铅的结论是土壤和岩石通常显示不良的断裂型模式与位移的大的分离的部件,除了剪切型故障。这样的模式观察到,例如,如在斜坡破坏的早期阶段的波峰打开裂缝和作为彼此分开的块,从而产生倾倒故障。岩石的剪切强度通常通过非线性强度包络表示,而土壤更通常与正常应力的线性函数描述。强度包络和塑性流动规则的作用将在在边坡故障破裂模式的上下文中进行讨论。与岩土材料破裂斜率分析的实施例将重点放在斜坡的安全评估来示出。应当表明,在稳定性分析何罪破裂模式可有助于高估斜坡安全。

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