DOAJ Open Access 2023

Strain localization of Mohr-Coulomb soils with non-associated plasticity based on micropolar continuum theory

Jianbin Tang Xi Chen Liusheng Cui Zongqi Liu

Abstrak

To address the problems of strain localization, the exact Mohr-Coulomb (MC) model is used based on second-order cone programming (mpcFEM-SOCP) in the framework of micropolar continuum finite element method. Using the uniaxial compression test, we focused on the earth pressure problem of rigid wall segment involving non-associated plasticity. The numerical results reveal that when mpcFEM-SOCP is applied, the problems of mesh dependency can be effectively addressed. For geotechnical strain localization analysis involving non-associated MC plasticity, mpcFEM-SOCP in conjunction with the pseudo-time discrete scheme can improve the numerical stability and avoid the unreasonable softening issue in the pressure-displacement curves, which may be encountered in the conventional FEM. It also shows that the pressure-displacement responses calculated by mpcFEM-SOCP with the pseudo-time discrete scheme are higher than those calculated by mpcFEM-SOCP with the Davis scheme. The inclination angle of shear band predicted by mpcFEM-SOCP with the pseudo-time discrete scheme agrees well with the theoretical solution of non-associated MC plasticity.

Penulis (4)

J

Jianbin Tang

X

Xi Chen

L

Liusheng Cui

Z

Zongqi Liu

Format Sitasi

Tang, J., Chen, X., Cui, L., Liu, Z. (2023). Strain localization of Mohr-Coulomb soils with non-associated plasticity based on micropolar continuum theory. https://doi.org/10.1016/j.jrmge.2023.02.029

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Informasi Jurnal
Tahun Terbit
2023
Sumber Database
DOAJ
DOI
10.1016/j.jrmge.2023.02.029
Akses
Open Access ✓