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Consequences of Seismic Excitation on Slopes in Soils with a Tensile Strength Cutoff

机译:抗拉伸强度截止抗菌截止地震激励对土壤斜坡的影响

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The yield criterion typically employed in slope stability analyses is the Mohr-Coulomb function with internal friction angle and the cohesion as the two strength parameters. The implication of this yield function is the presence of the tensile strength. However, it is doubtful whether geotechnical design should rely on the existence of tensile strength in soils, and models such as Cam clay do not allow uniaxial tensile strength in soils. It is demonstrated that eliminating tensile strength from the yield condition leads to a reduction in the stability factor. This is because the absence of tensile strength allows a larger variety of admissible failure surfaces. Seismic excitation produces the load that amplifies adverse consequences of the absence of the tensile strength. Two types of mechanisms are considered: translational and rotational. Examples of analyses with both types of collapse mechanisms are presented using the kinematic approach of limit analysis.
机译:通常用于边坡稳定性分析的屈服标准是具有内部摩擦角的MoHR-Coulomb函数和作为两个强度参数的内聚力。该产量功能的含义是存在拉伸强度。然而,岩土设计是否应该依赖于土壤中的拉伸强度的存在,并且诸如凸轮粘土等型号的款式是值得怀疑的,并且不允许在土壤中的单轴拉伸强度。结果证明,消除来自产率条件的拉伸强度导致稳定性因子的降低。这是因为没有拉伸强度允许更大种类的可诱导的破坏表面。地震激发产生载荷,该负载放大不存在拉伸强度的不良后果。考虑了两种类型的机制:平移和旋转。使用基因分析的运动方法呈现具有两种类型崩塌机制的分析的实例。

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