We derive and study a new hyperbolic two-phase model of a porous deformable medium saturated by a viscous fluid. The governing equations of the model are derived in the framework of Symmetric Hyperbolic Thermodynamically Compatible (SHTC) systems and by generalizing the unified hyperbolic model of continuum fluid and solid mechanics. Similarly to the unified model, the presented model takes into account the viscosity of the saturating fluid through a hyperbolic reformulation. The model accounts for such dissipative mechanisms as interfacial friction and viscous dissipation of the saturated fluid. Using the presented nonlinear finite-strain SHTC model, the governing equations for the propagation of small-amplitude waves in a porous medium sa...
The theories developed by White and co-workers describe the complex moduli of a medium partially sat...
Wave propagation in porous media is of interest in various diversified areas of science and engineer...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...
A study of body waves in elastic porous media saturated by two immiscible Newtonian fluids is presen...
Wave propagation in saturated porous media is investigated in the framework of two models, a theoret...
Summarization: A particle velocity‐stress, finite‐difference method is developed for the simulation ...
International audienceThe paper is devoted to the computation of two-phase flows in a porous medium ...
Models for porous media flow with multiple fluids (water and oil, for example) are important for stu...
We introduce a simple hyperbolic system of three equations, in one space dimension, which models a f...
This work uses a previuosly proposed mathematical model to study the filling up of an unsaturated ri...
We simulate two-phase fluid flow using a stress–strain relation based on Biot’s theory of poroelasti...
Président : Sergey GAVRILYUK. Rapporteurs : Alain-Yves LEROUX, Sebastian NOELLE. Examinateurs : Fréd...
We present a nonlinear model for Johnson–Segalman type polymeric fluids in porous media, accounting ...
AbstractA linear dynamic model of fully saturated porous media with local (either microscopic or mes...
A study of body waves in fractured porous media saturated by two fluids is presented. We show the ex...
The theories developed by White and co-workers describe the complex moduli of a medium partially sat...
Wave propagation in porous media is of interest in various diversified areas of science and engineer...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...
A study of body waves in elastic porous media saturated by two immiscible Newtonian fluids is presen...
Wave propagation in saturated porous media is investigated in the framework of two models, a theoret...
Summarization: A particle velocity‐stress, finite‐difference method is developed for the simulation ...
International audienceThe paper is devoted to the computation of two-phase flows in a porous medium ...
Models for porous media flow with multiple fluids (water and oil, for example) are important for stu...
We introduce a simple hyperbolic system of three equations, in one space dimension, which models a f...
This work uses a previuosly proposed mathematical model to study the filling up of an unsaturated ri...
We simulate two-phase fluid flow using a stress–strain relation based on Biot’s theory of poroelasti...
Président : Sergey GAVRILYUK. Rapporteurs : Alain-Yves LEROUX, Sebastian NOELLE. Examinateurs : Fréd...
We present a nonlinear model for Johnson–Segalman type polymeric fluids in porous media, accounting ...
AbstractA linear dynamic model of fully saturated porous media with local (either microscopic or mes...
A study of body waves in fractured porous media saturated by two fluids is presented. We show the ex...
The theories developed by White and co-workers describe the complex moduli of a medium partially sat...
Wave propagation in porous media is of interest in various diversified areas of science and engineer...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...