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Numerical analysis of critical state behaviors of granular soils under different loading conditions

机译:不同载荷条件下粒状土临界状态行为的数值分析

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摘要

Discrete element method is used to simulate granular assembly behaviors with different initial conditions under three different loading conditions-plain strain, conventional triaxial compression, and direct shear. Different deformation modes of specimens with different conditions are presented. Some important parameters of the critical state theory are investigated. Uniqueness of the critical state line is checked which shows that there is no a unique critical state line for specimens with different initial void ratios under different loading conditions. Frictional angles and dilation angles of specimens with different conditions at critical state are compared. Void ratios and coordination numbers of specimens at critical state are studied. Anisotropies of the particle orientation and normal contact force at initial state, critical state, as well as the evolutions during shearing are analyzed. The anisotropy is shown to have significant effects on the soil behaviors and is related to the non-uniqueness of the critical state line. The developed numerical models can be used to study the micromechanics and microstructure of the specimen subjected to different loading conditions in the future.
机译:离散元方法被用来模拟在三种不同的载荷条件下的不同初始条件下的颗粒装配行为,即普通应变,常规三轴压缩和直接剪切。提出了不同条件下试样的不同变形模式。研究了临界状态理论的一些重要参数。检查了临界状态线的唯一性,这表明对于在不同加载条件下具有不同初始空隙率的样品,没有唯一的临界状态线。比较了临界状态下不同条件下试样的摩擦角和膨胀角。研究了临界状态下试样的空隙率和配位数。分析了初始状态,临界状态下的颗粒取向和法向接触力的各向异性以及剪切过程中的演化。各向异性对土壤行为具有重要影响,并且与临界状态线的非唯一性有关。所开发的数值模型可用于研究将来在不同载荷条件下的试样的微观力学和微观结构。

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