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Anisotropy of elastic wave velocity influenced by particle shape and fabric anisotropy under K_0 condition

机译:受K_0条件下受粒子形状和织物各向异性影响的弹性波速度的各向异性

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摘要

Non-cohesive granular materials exhibit fabric-induced anisotropy of small-strain stiffness. The stiffness anisotropy is often measured using dynamic wave measurements in the laboratory. It is widely accepted that elastic wave velocities are influenced by stress state, while the role of particle shape in the wave velocity anisotropy, and thus the stiffness anisotropy, has not been fully understood. The difficulty arises partially from the incomplete understanding of particle-scale responses of granular materials. Considering 1D vertical compressoin with zero lateral strains (K-0 condition) analogue to in-situ ground, this contribution performs wave propagation simulations using discrete element method and explores how particle shape and packing characteristics influence the anisotropy of elastic wave velocity. Sphere clumps with various aspect ratios are used. The orientation of the particle major axis is varied systematically by inhibiting particle rotation during dry-pluviation process. The simulation results reveal that the wave velocity anisotropy is largely affected by the combined effect of the particle aspect ratio and the orientation of particle major axis. Micromechanical analyses on assemblies of sphere clumps and ellipsoids shed light on the importance of the inter-particle contact stiffness, in addition to the particle aspect ratio and fabric, to determine the wave velocity anisotropy when non-spherical particles are used.
机译:非粘性粒状材料表现出织物诱导的小应变刚度各向异性。刚度各向异性通常使用实验室中的动态波测量来测量。众所周度地接受,弹性波速度受到应力状态的影响,而颗粒形状在波速各向异性中的作用,因此尚未得到完全理解的颗粒形状,从而刚度各向异性。难度部分地由对粒状材料的粒度反应的不完全理解部分。考虑到零横向菌株(K-0条件)的1D垂直压缩素(K-0条件)模拟以原位接地,使用离散元件方法进行波传播模拟,探讨粒子形状和包装特性如何影响弹性波速度的各向异性。使用具有各种纵横比的球形团块。通过抑制干夹型工艺期间抑制颗粒旋转来系统地系统地改变粒子长轴的取向。仿真结果表明,波速各向异性主要受粒子纵横比的综合效果和粒子长轴取向的影响。在颗粒纵横比和织物外,球形团块和椭球片和椭圆形孔的重要性分析对颗粒纵横比和织物的重要性,以确定使用非球形颗粒时的波速各向异性。

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