Effects of fabric anisotropy on the small-strain shear modulus of granular materials

被引:2
|
作者
Yang, Xiao-Tian [1 ]
Zhou, Yan-Guo [1 ]
Ma, Qiang [1 ]
Chen, Yun-Min [1 ]
机构
[1] Zhejiang Univ, Inst Geotech Engn, Ctr Hypergrav Expt & Interdisciplinary Res, MOE Key Lab Soft Soil & Geoenvironm Engn, Hangzhou 310058, Peoples R China
基金
中国国家自然科学基金;
关键词
Fabric anisotropy; Granular materials; Small-strain shear modulus; Wave measurement; WAVE VELOCITY; LIQUEFACTION RESISTANCE; STRESS; DEM; SOILS; STIFFNESS; DEFORMATION; EVOLUTION; RATIO; SIMULATIONS;
D O I
10.1007/s11440-024-02381-1
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Granular soil generally exhibits an anisotropic stiffness in engineering but challenging to quantify in situ and laboratory condition, due to a lack of the appropriate factor and quantitative research. In this paper, discrete element method is employed to create two typical types of soil fabric and conduct shear wave measurement in double direction, with the microscopic parameters monitored to investigate the connection with macroscopic stiffness anisotropy. The results show that the reference fabric increases as fabric anisotropy increases first and then decreases with further increase in the XZ stress plane, while always decreases approximately linearly in the XY stress plane. The reference fabric is determined by the contact density in the direction of wave propagation and particle perturbation under microscale examination. The results also reveal a linear relationship between the macroscopic stiffness anisotropy and microscopic fabric anisotropy, which could be used as an effective method to reflect the degree of anisotropy in situ by wave measurement. And the applicability of the expression of small-strain shear modulus is also discussed.
引用
收藏
页码:131 / 148
页数:18
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