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Identification of failure slip surfaces for landslide risk assessment using smoothed particle hydrodynamics

机译:使用平滑粒子流体动力学识别用于滑坡风险评估的失效滑孔

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摘要

Location of failure slip surfaces plays a critical role in landslide risk assessment and mitigation, particularly for unstable slopes, because it is a key input to design of stabilisation measures for unstable slopes and it determines the volume of the sliding soil mass (i.e. landslide consequence). The failure slip surfaces in the numerical analysis (e.g. finite element/different method, FEM/FDM) are often identified using shear strength reduction (SSR) method. A careful examination of FEM results showed that, although the SSR method performs well for stable slopes, it might provide misleading results for unstable slopes. To properly locate failure slip surfaces for unstable slopes, this paper presents a particle-based numerical method called smoothed particle hydrodynamics (SPH), which is mesh-free, immune to the mesh distortion problem in FEM/FDM, and able to directly simulate large deformation of soils that occurs during landslides. A series of slope stability analyses is performed using an in-house SPH programme. Failure slip surfaces are properly identified by SPH for both stable and unstable slopes. Furthermore, because SPH provides a spatial distribution of the post-landslide large displacement of soils, the failure slip surfaces can be identified conveniently using soil displacement. A displacement-based criterion is proposed to locate the failure slip surfaces.
机译:失败的位置在滑坡风险评估和缓解中起着关键作用,特别是对于不稳定的斜坡,因为它是对不稳定斜坡的稳定措施设计的关键输入,并且它决定了滑动土质量的体积(即滑坡后果) 。使用剪切强度减小(SSR)方法通常识别故障滑动表面(例如有限元/不同的方法,FEM / FDM)。仔细检查有限元结果表明,尽管SSR方法对稳定斜坡进行了良好,但它可能为不稳定斜坡提供误导性结果。为了正确定位用于不稳定斜率的故障滑动表面,本文介绍了一种称为平滑粒子流体动力学(SPH)的基于粒子的数值方法,其无网,免受FEM / FDM中的网格失真问题,并且能够直接模拟大山体滑坡发生的土壤变形。使用内部SPH程序进行一系列斜坡稳定性分析。对于稳定和不稳定的斜坡,通过SPH正确识别故障滑动。此外,因为SPH提供了山上滑坡的空间分布,所以可以使用土壤位移方便地识别故障滑板。提出了基于位移的标准来定位故障滑曲面。

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