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SPH-Based Simulations for Slope Failure Considering Soil-Rock Interaction

机译:基于SPH的坡度模拟,用于考虑土岩互动的坡度故障

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Both small and large deformations of soil and soil-rock interaction are the key features in the post-failure process of natural slopes. As one of Lagrange meshless particle methods, the Smooth Particle Hydrodynamics (SPH) method has obvious advantage in dealing with the large deformation and interface interaction problems. Thus in this paper, the SPH method is employed to study the slope failure problems, especially focusing on soil large deformation and soil-rock interaction in natural slopes constituted of earth-rock aggregate. The Drucker-Prager model is implemented into the SPH-code to describe the elastic-plastic soil behavior while the rocksare simulated as rigid bodiesby using classical rigid motion equations. The interaction between soil and rocksis modeled by the coupling condition associated with an action and reaction force between the two phases. Rock-rock contacts are computed using contact mechanics theory which issimilar to the treatment in the Discrete Element Method (DEM).Two test cases including uniform non-cohesive and cohesive soil slopes failure problems are studied respectively to validate the method and a good agreement with the experimental data or numerical results is observed. Then the solutionto soil-rock interaction is applied to study the behavior of earth-rock aggregate in the failure process of typical natural landslides. Numerical results show that the proposed soil-rock interaction algorithm works well in the SPH framework and has a great application potential in geotechnical engineering. Through the qualitative analysis and discussions about the behavior of earth-rock aggregate, we came to the conclusion thatthe soil-rock interaction has a great influence on the landslide shapein terms of rock size and slope angle.And the deformation characteristics of landslide at the slope toe isslightlydifferent with that at the slope top.
机译:土壤和土壤 - 岩石相互作用的小而大变形是自然斜坡失败过程中的关键特征。作为拉格朗日网颗粒方法之一,平滑粒子流体动力学(SPH)方法在处理大变形和界面相互作用问题方面具有明显的优势。因此,在本文中,采用SPH方法来研究斜坡故障问题,特别是对土岩骨料构成的自然斜坡中的土壤大变形和土壤 - 岩石相互作用。 DRUCKER-PRAGER模型被实施到SPH代码中,以描述弹性塑料土壤行为,而使用经典刚性运动方程的刚性体岩体被模拟。用两相之间的作用和反作用力相关的耦合条件建模的土壤和岩石之间的相互作用。使用接触力学理论计算摇滚岩触点,该接触力学理论是在离散元素法(DEM)中的处理中的处理.TWO测试用例,包括均匀的非粘性和粘性土壤斜坡故障问题,分别进行了验证方法和良好的协议观察到实验数据或数值结果。然后应用于土壤 - 岩石相互作用来研究典型自然山体滑坡故障过程中的土岩骨料的行为。数值结果表明,建议的土岩相互作用算法在SPH框架中运用良好,在岩土工程中具有很大的应用潜力。通过对地球岩层行为的定性分析和讨论,得出结论,土壤 - 岩石相互作用对岩石尺寸和坡度角度的山体内形状造成巨大影响。坡度在坡度的变形特征脚趾islightlydfifferent,在坡上。

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