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A micromechanical analysis of the effects of particle shape and contact law on the low-strain stiffness of granular soils

机译:颗粒形状和接触规律对粒状土低应变刚度影响的微观力学分析

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The effects of particle shape and contact law on the low-strain shear stiffness properties of granular soils were assessed using Discrete Element simulations. Soil grains of different shapes were obtained by clumping spheres having various levels of overlap. The conducted simulations showed that particle sphericity (or large-scale shape parameter) influences mostly the void radio term, F (e), in the expression of low-strain shear modulus as a function of void ratio, e, and mean confining stress sigma(0). This parameter is also the main consequential factor affecting the coordination number term, F-M(M-n), in the expression of low-strain shear modulus as a function of mechanical coordination number, M-n, and mean confining stress. In contrast, particle angularity affects mostly the confining stress exponent solely through the corresponding inter-particle contact law. A law reflecting an angular inter-particle contact (rather than the usual flat Hertzian one) was shown to be necessary to obtain the stress exponent n = 0.5 commonly used with granular soils.
机译:使用离散元模拟评估了颗粒形状和接触规律对粒状土壤低应变剪切刚度特性的影响。通过将具有各种重叠水平的球团成块,可以获得不同形状的土壤颗粒。进行的模拟表明,在低应变剪切模量的表达式中,粒子球形度(或大型形状参数)主要影响空隙射电系数F(e),它是空隙率e和平均约束应力sigma的函数(0)。在低应变剪切模量的表达式中,该参数也是影响配位数项F-M(M-n)的主要影响因素,它是机械配位数M-n和平均围压的函数。相比之下,粒子角度仅通过相应的粒子间接触定律主要影响约束应力指数。为了获得通常用于粒状土壤的应力指数n = 0.5,反映出一定角度的粒子间接触定律(而不是通常的平坦赫兹定律)是必要的。

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