International audienceGeodynamic problems often involve the large deformation of material encompassing material boundaries. In geophysical fluids, such boundaries often coincide with a discontinuity in the viscosity (or effective viscosity) field and subsequently in the pressure field. Here, we employ popular implementations of the finite difference and finite element methods for solving viscous flow problems. On one hand, we implemented finite difference method coupled with a Lagrangian marker-in-cell technique to represent the deforming fluid. Thanks to it Eulerian nature, this method has a limited geometric flexibility but is characterized by a light and stable discretization. On the other hand, we employ the Lagrangian finite element me...
Many numerical models in geophysics, civil engineering and mechanical engineering need to take into ...
A numerical algorithm is presented that simulates large deformations of heterogeneous, viscoelastic ...
Aggregate shape and structure significantly impact rheological properties of fluids in many fields s...
International audienceGeodynamic problems often involve the large deformation of material encompassi...
We review the methods available for large-deformation simulations of geomaterials before presenting ...
32 pages, 29 figuresInternational audienceWe present numerical simulations of viscoplastic flows in ...
In computational geodynamics, the Finite Element (FE) method is frequently used. The method is attra...
Finite difference numerical model to calculate the local mechanical variables (e.g. stress, strain r...
International audienceThe finite element method is an appropriate numerical tool for solving boundar...
The performance of the Coupled Eulerian-Lagrangian method in simulating three-dimensional "soil-rigi...
The simulation of high-rate deformation and failure of metals is has traditionally been performed us...
A numerical algorithm for tightly coupled, high-deformation fluid-structure inter-action problems is...
Many tectonic problems require to treat the lithosphere as a compressible elastic material, which ca...
This paper presents and analyses numerical techniques developed to investigate viscoplastic Stokes f...
We present a method for simulation of viscoelastic flows using an Arbitrary Lagrangian Eulerian (ALE...
Many numerical models in geophysics, civil engineering and mechanical engineering need to take into ...
A numerical algorithm is presented that simulates large deformations of heterogeneous, viscoelastic ...
Aggregate shape and structure significantly impact rheological properties of fluids in many fields s...
International audienceGeodynamic problems often involve the large deformation of material encompassi...
We review the methods available for large-deformation simulations of geomaterials before presenting ...
32 pages, 29 figuresInternational audienceWe present numerical simulations of viscoplastic flows in ...
In computational geodynamics, the Finite Element (FE) method is frequently used. The method is attra...
Finite difference numerical model to calculate the local mechanical variables (e.g. stress, strain r...
International audienceThe finite element method is an appropriate numerical tool for solving boundar...
The performance of the Coupled Eulerian-Lagrangian method in simulating three-dimensional "soil-rigi...
The simulation of high-rate deformation and failure of metals is has traditionally been performed us...
A numerical algorithm for tightly coupled, high-deformation fluid-structure inter-action problems is...
Many tectonic problems require to treat the lithosphere as a compressible elastic material, which ca...
This paper presents and analyses numerical techniques developed to investigate viscoplastic Stokes f...
We present a method for simulation of viscoelastic flows using an Arbitrary Lagrangian Eulerian (ALE...
Many numerical models in geophysics, civil engineering and mechanical engineering need to take into ...
A numerical algorithm is presented that simulates large deformations of heterogeneous, viscoelastic ...
Aggregate shape and structure significantly impact rheological properties of fluids in many fields s...