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A stabilized two-phase material point method for hydromechanically coupled large deformation problems
DOI:10.1007/s10064-024-03668-z.png)
摘要
En 中文
The material point method (MPM) has been widely used in the simulation of large deformation problems involving hydromechanical coupling recently. Here, an explicit stabilized formulation of hydromechanically coupled two-phase MPM with zero air pressure for both saturated and unsaturated conditions is presented, and to avoid numerical instability when low-order MPM is applied to hydromechanically coupled problems, techniques including low-order shape functions based on the Hu-Washizu multi-field variational principle, the B-bar matrix, and the reduced integration are implemented in the algorithm of MPM. The accuracy of the formulation is verified through numerical examples involving the consolidation problem and Liakopoulos drainage test, and then, two cases, the unsaturated slope failure under rainfall infiltration as well as the Yanyuan landslide, are performed. The simulation results further demonstrate the capability of the present formulation to capture the hydromechanical behavior as well as the failure and post-failure stages when modelling hydromechanical large deformation problems.
Keyword:
Material point method
Hydromechanical coupling
Large deformations
Stabilized techniques
期刊
IF:
4.2
论文数:
5.2K
被引数:
1.6W
机构
引用论文
A simple model for preliminary evaluation of rainfall-induced slope instability
ENGINEERING GEOLOGY
IF8.4
An explicit stabilised material point method for coupled hydromechanical problems in two-phase porous media两相多孔介质中耦合流体力学问题的显式稳定物质点方法

