We present the macroscale three-dimensional numerical solution of anisotropic Biot's poroelasticity, with coefficients derived from a micromechanical analysis as prescribed by the asymptotic homogenisation technique. The system of partial differential equations (PDEs) is discretised by finite elements, exploiting a formal analogy with the fully coupled thermal displacement systems of PDEs implemented in the commercial software Abaqus. The robustness of our computational framework is confirmed by comparison with the well-known analytical solution of the one-dimensional Therzaghi's consolidation problem. We then perform three-dimensional numerical simulations of the model in a sphere (representing a biological tissue) by applying a given cons...
Many analytical and numerical approaches have been proposed in order to solve poroelastic problems d...
In this paper, a solver for poroelasticity problems is discussed that is related to osteoporotic hum...
The paper is devoted to the numerical study of the mechanical response of fluid-saturated biological...
We present the macroscale three-dimensional numerical solution of anisotropic Biot's poroelasticity,...
We investigate the dependence of the mechanical and hydraulic properties of poroelastic materials on...
We investigate the dependence of the mechanical and hydraulic properties of poroelastic materials on...
A new mathematical model for the macroscopic behavior of a material composed of a poroelastic solid ...
The Theory of Poroelasticity is embraced to model the effective mechanical behaviour of a porous ela...
International audienceAfter recalling the constitutive equations of finite strain poroelasticity for...
In a two-phase material not only each constituent, the solid and the fluid, may be compressible on t...
AbstractThis paper presents a numerical technique to predict the effective elastic properties of het...
International audienceThe main purpose of this paper is the formulation of a modeling framework for ...
Biot's theory has been widely used to construct the poroelasticity models for describing the mechani...
We propose a new formulation along with a family of finite element schemes for the approximation of ...
Poroelastic materials are commonly found in biological systems, such as articulating cartilage, and ...
Many analytical and numerical approaches have been proposed in order to solve poroelastic problems d...
In this paper, a solver for poroelasticity problems is discussed that is related to osteoporotic hum...
The paper is devoted to the numerical study of the mechanical response of fluid-saturated biological...
We present the macroscale three-dimensional numerical solution of anisotropic Biot's poroelasticity,...
We investigate the dependence of the mechanical and hydraulic properties of poroelastic materials on...
We investigate the dependence of the mechanical and hydraulic properties of poroelastic materials on...
A new mathematical model for the macroscopic behavior of a material composed of a poroelastic solid ...
The Theory of Poroelasticity is embraced to model the effective mechanical behaviour of a porous ela...
International audienceAfter recalling the constitutive equations of finite strain poroelasticity for...
In a two-phase material not only each constituent, the solid and the fluid, may be compressible on t...
AbstractThis paper presents a numerical technique to predict the effective elastic properties of het...
International audienceThe main purpose of this paper is the formulation of a modeling framework for ...
Biot's theory has been widely used to construct the poroelasticity models for describing the mechani...
We propose a new formulation along with a family of finite element schemes for the approximation of ...
Poroelastic materials are commonly found in biological systems, such as articulating cartilage, and ...
Many analytical and numerical approaches have been proposed in order to solve poroelastic problems d...
In this paper, a solver for poroelasticity problems is discussed that is related to osteoporotic hum...
The paper is devoted to the numerical study of the mechanical response of fluid-saturated biological...