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Amicro-mechanical study of the influence of penetrometer geometry on failure mechanisms in granular soils

机译:Amicro-Chance机械研究对粒状土壤的影响对粒状土壤失效机制的影响

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摘要

A discrete element analysis can provide much useful information on failure mechanisms for large displacement problems in geotechnical engineering. This study involved a series of 2D distinct element method (DEM) simulations of the penetration of a CPT cone, a closed-ended pile and an open ended pile into a rectangular tank containing over 29,000 disk particles. The objective was to explore the influence of penetrometer geometry on the distribution of disk displacements, rotations, and contact forces. The findings of the study indicated that increasing the penetrometersoil friction coefficient resulted in a slightly deeper failure mechanism. The penetrometer-pile friction value had a significant influence on the formation of plugs in the open ended piles. In all cases localizations could clearly be identified by considering the particle rotations, with clockwise rotations being more dominant to the left of the penetrometer, and anti-clockwise rotations being more dominant to the right of the penetrometer.
机译:离散元素分析可以提供对岩土工程大排量的问题失效机理很多有用的信息。这项研究涉及一系列2D离散单元法(DEM)一CPT锥,一个封闭端桩和端部开口的桩的贯入的模拟到含有超过29000磁盘颗粒的矩形箱。其目的是探讨贯入几何形状的磁盘上的位移,旋转和接触力的分布的影响。该研究的结果表明,增大penetrometersoil摩擦系数导致一个稍深的失效机理。针入度桩的摩擦系数对在开放式桩形成塞中的显著影响。在所有情况下的本地化可以清楚地考虑颗粒旋转来确定,按顺时针方向旋转是更占优势向左针入度,并逆时针旋转是更占优势的穿透的权利。

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