The paper contains a brief presentation of a macroscopical thermodynamic model of poroelastic materials with many fluid components. A particular emphasis is placed on a Lagrangian formulation of the model and, consequently, on a consistent formulation of field equations on the reference configuration of the skeleton (solid phase of the mixture). It is demonstrated that the model possesses an identical structure as that in the pioneering work of C.A. Truesdell on the continuum mixture of fluids. An issue of porosity as an additional microstructural variable is particularly exposed
The paper contains a review of fundamental equations of the two component thermoporoelastic material...
In a two-phase material not only each constituent, the solid and the fluid, may be compressible on t...
A new mathematical model for the macroscopic behavior of a material composed of a poroelastic solid ...
The paper contains a brief presentation of a macroscopical thermodynamic model of poroelastic materi...
The paper is devoted to the thermodynamic construction of a two-component model of poroelastic media...
The paper is devoted to the thermodynamic derivation of a two-component poroelastic model with balan...
International audienceThe main purpose of this paper is the formulation of a modeling framework for ...
We undertake a formal derivation of a linear poro-thermo-elastic system within the framework of quas...
International audienceThe thermodynamic framework of Prigogine, de Groot, and Mazur is extended to s...
This paper reviews some aspects of the formulation of the constitutive behavior of a saturated porou...
AbstractThe main purpose of this paper is the formulation of a modeling framework for closed-cell po...
This manuscript aims at a particular (simple) geometrically nonlinear formulation of poromechanics w...
Within this work, we upscale the equations that describe the pore-scale behaviour of nonlinear porou...
We describe the behavior of a deformable porous material by means of a poro-hyperelastic model that ...
Abstract The swelling and shrinkage of biological tissues are modelled by a four-component mixture t...
The paper contains a review of fundamental equations of the two component thermoporoelastic material...
In a two-phase material not only each constituent, the solid and the fluid, may be compressible on t...
A new mathematical model for the macroscopic behavior of a material composed of a poroelastic solid ...
The paper contains a brief presentation of a macroscopical thermodynamic model of poroelastic materi...
The paper is devoted to the thermodynamic construction of a two-component model of poroelastic media...
The paper is devoted to the thermodynamic derivation of a two-component poroelastic model with balan...
International audienceThe main purpose of this paper is the formulation of a modeling framework for ...
We undertake a formal derivation of a linear poro-thermo-elastic system within the framework of quas...
International audienceThe thermodynamic framework of Prigogine, de Groot, and Mazur is extended to s...
This paper reviews some aspects of the formulation of the constitutive behavior of a saturated porou...
AbstractThe main purpose of this paper is the formulation of a modeling framework for closed-cell po...
This manuscript aims at a particular (simple) geometrically nonlinear formulation of poromechanics w...
Within this work, we upscale the equations that describe the pore-scale behaviour of nonlinear porou...
We describe the behavior of a deformable porous material by means of a poro-hyperelastic model that ...
Abstract The swelling and shrinkage of biological tissues are modelled by a four-component mixture t...
The paper contains a review of fundamental equations of the two component thermoporoelastic material...
In a two-phase material not only each constituent, the solid and the fluid, may be compressible on t...
A new mathematical model for the macroscopic behavior of a material composed of a poroelastic solid ...