Analysis of large deformation of geomaterials subjected to time-varying load poses a very difficult problem for the geotechnical profession. Conventional finite element schemes using the updated Lagrangian formulation may suffer from serious numerical difficulties when the deformation of geomaterials is significantly large such that the discretized elements are severely distorted. In this paper, an operator-split arbitrary Lagrangian-Eulerian (ALE) finite element model is proposed for large deformation analysis of a soil mass subjected to either static or dynamic loading, where the soil is modelled as a saturated porous material with solid-fluid coupling and strong material non-linearity. Each time step of the operator-split ALE algorithm c...
Unsaturated soil is a three-phase medium with three interfaces, and the mathematical equations that ...
In geotechnical problems, deformation is usually coupled with flow of pore fluids. A coupled finite ...
In this paper, a large deformation formulation for dynamic analysis of the pore fluid-solid interact...
Analysis of large deformation of geomaterials subjected to time-varying load poses a very difficult ...
In this paper, an Arbitrary Lagrangian-Eulerian (ALE) method is addressed to solve dynamic problems ...
In this paper an arbitrary Lagrangian-Eulerian (ALE) method to solve dynamic problems involving larg...
In this paper an arbitrary Lagrangian–Eulerian (ALE) method to solve dynamic problems involving larg...
In many geotechnical problems it is vital to consider the geometrical non-linearity caused by large ...
In many geotechnical problems it is vital to consider the geometrical non-linearity caused by large ...
This paper first discusses alternative stress integration schemes in numerical solutions to large- d...
Geotechnical applications often involve large displacements of structural elements, such as penetrom...
This paper outlines the development as well as implementation of a numerical procedure for coupled f...
This paper outlines the development as well as implementation of a numerical procedure for coupled f...
Many engineering problems involve large material deformation, large boundary motion and continuous c...
Research Doctorate - Doctor of Philosophy (PhD)The Finite Element Method (FEM) is an analytical tool...
Unsaturated soil is a three-phase medium with three interfaces, and the mathematical equations that ...
In geotechnical problems, deformation is usually coupled with flow of pore fluids. A coupled finite ...
In this paper, a large deformation formulation for dynamic analysis of the pore fluid-solid interact...
Analysis of large deformation of geomaterials subjected to time-varying load poses a very difficult ...
In this paper, an Arbitrary Lagrangian-Eulerian (ALE) method is addressed to solve dynamic problems ...
In this paper an arbitrary Lagrangian-Eulerian (ALE) method to solve dynamic problems involving larg...
In this paper an arbitrary Lagrangian–Eulerian (ALE) method to solve dynamic problems involving larg...
In many geotechnical problems it is vital to consider the geometrical non-linearity caused by large ...
In many geotechnical problems it is vital to consider the geometrical non-linearity caused by large ...
This paper first discusses alternative stress integration schemes in numerical solutions to large- d...
Geotechnical applications often involve large displacements of structural elements, such as penetrom...
This paper outlines the development as well as implementation of a numerical procedure for coupled f...
This paper outlines the development as well as implementation of a numerical procedure for coupled f...
Many engineering problems involve large material deformation, large boundary motion and continuous c...
Research Doctorate - Doctor of Philosophy (PhD)The Finite Element Method (FEM) is an analytical tool...
Unsaturated soil is a three-phase medium with three interfaces, and the mathematical equations that ...
In geotechnical problems, deformation is usually coupled with flow of pore fluids. A coupled finite ...
In this paper, a large deformation formulation for dynamic analysis of the pore fluid-solid interact...