In this paper, a fully coupled finite volume-finite element model for a deforming porous medium interacting with the flow of two immiscible pore fluids is presented. The basic equations describing the system are derived based on the averaging theory. Applying the standard Galerkin finite element method to solve this system of partial differential equations does not conserve mass locally. A non-conservative method may cause some accuracy and stability problems. The control volume based finite element technique that satisfies local mass conservation of the flow equations can be an appropriate alternative. Full coupling of control volume based finite element and the standard finite element techniques to solve the multiphase flow and geomechani...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
The numerical model is based on a fully coupled heat and multiphase flow model in deforming porous m...
This paper presents a general framework for the computational analysis of geo-environmental mechanic...
This paper presents a numerical method to model the coupled thermo-hydro-mechanical (THM) processes ...
Various discretization methods exist for the numerical simulation of multiphase flow in porous media...
A fully coupled numerical model has been developed which describes multiphase fluid flow through soi...
We present a new computational fluid dynamics approach for simulating two-phase flow in hybrid syste...
AbstractA modern numerical scheme for simulation of flow of two immiscible and incompressible phases...
Control volume finite element methods (CVFEM) have been proposed to simulate flow in heterogeneous p...
MI: Global COE Program Education-and-Research Hub for Mathematics-for-IndustryグローバルCOEプログラム「マス・フォア・イ...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A finite element-finite volume hybrid method for large deformation analysis of porous media is propo...
A moving grid finite element method is developed to solve the nonlinear coupled set of partial diffe...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
The numerical model is based on a fully coupled heat and multiphase flow model in deforming porous m...
This paper presents a general framework for the computational analysis of geo-environmental mechanic...
This paper presents a numerical method to model the coupled thermo-hydro-mechanical (THM) processes ...
Various discretization methods exist for the numerical simulation of multiphase flow in porous media...
A fully coupled numerical model has been developed which describes multiphase fluid flow through soi...
We present a new computational fluid dynamics approach for simulating two-phase flow in hybrid syste...
AbstractA modern numerical scheme for simulation of flow of two immiscible and incompressible phases...
Control volume finite element methods (CVFEM) have been proposed to simulate flow in heterogeneous p...
MI: Global COE Program Education-and-Research Hub for Mathematics-for-IndustryグローバルCOEプログラム「マス・フォア・イ...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A finite element-finite volume hybrid method for large deformation analysis of porous media is propo...
A moving grid finite element method is developed to solve the nonlinear coupled set of partial diffe...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
A novel method for simulating multi-phase flow in porous media is presented. The approach is based o...
The numerical model is based on a fully coupled heat and multiphase flow model in deforming porous m...
This paper presents a general framework for the computational analysis of geo-environmental mechanic...