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NUMERICAL ANALYSES ON PROGRESSIVE FAILURE OF SLOPE DUE TO HEAVY RAIN WITH 2D AND 3D FEM

机译:基于2D和3D有限元的暴雨导致边坡渐进破坏的数值分析

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摘要

In the paper, based on a modified elastoplastic model with Matsuoka-Nakai failure criterion, two-dimensional (2D) and three-dimensional (3D) soil-water coupled finite element analyses are conducted to investigate a large-scale failure in a soft-rock slope due to heavy rain. Since the failure of the slope was a typical three-dimensional event, it is necessary to estimate the accuracy of 2D analysis that can be easily and commonly used in geotechnical engineering. The characteristics of slope failure, such as the development of shear strain, the deformation of ground, the propagation of shear band and the progressive failure are discussed in detail with 2D and 3D analyses. The differences between 2D and 3D analyses are carefully investigated. It is found that both 2D and 3D soil-water coupled analyses based on the modified elastoplastic model can simulate the progressive failure of a slope.
机译:本文基于具有松冈-中井破坏准则的改进弹塑性模型,进行了二维(2D)和三维(3D)土水耦合有限元分析,以研究软岩土中的大规模破坏。大雨造成的岩石边坡。由于边坡的破坏是典型的三维事件,因此有必要估算可以轻松且通常用于岩土工程中的2D分析的准确性。通过2D和3D分析,详细讨论了边坡破坏的特征,例如剪切应变的发展,地面变形,剪切带的传播以及渐进破坏。仔细研究了2D和3D分析之间的差异。发现基于改进的弹塑性模型的2D和3D土壤-水耦合分析都可以模拟边坡的渐进破坏。

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