An artificial neural network (ANN) is presented for computing a parameter of dynamic two-phase flow in porous media with water as wetting phase, namely, dynamic coefficient (τ), by considering micro-heterogeneity in porous media as a key parameter. τ quantifies the dependence of time derivative of water saturation on the capillary pressures and indicates the rates at which a two-phase flow system may reach flow equilibrium. Therefore, τ is of importance in the study of dynamic two-phase flow in porous media. An attempt has been made in this work to reduce computational and experimental effort by developing and applying an ANN which can predict the dynamic coefficient through the “learning” from available data. The data employed for testing ...
Well-defined laboratory experiments have been carried out to investigate hysteretic dynamic effect i...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...
Open access articleAn artificial neural network (ANN) is presented for computing a parameter of dyna...
A number of numerical simulations and experimental investigations have reported the impact of specif...
The dynamic effect in two-phase flow in porous media indicated by a dynamic coefficient τ depends on...
Application of artificial neural network in the prediction of scale dependency of dynamic effects ...
Well-defined laboratory experiments have been conducted to determine the significance of dynamic eff...
The capillary pressure–saturation (Pc–S) relationships are essential in characterising two-phase flo...
Well defined experiments and numerical analyses are conducted to determine the importance of dynamic...
To quantify nonaqueous phase liquids (NAPLs) transport in the subsurface, one requires a correct de...
Work carried out in the last decade or so suggests that the simulators for multiphase flow in porous...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
This paper aims to provide a machine learning framework to simulate two-phase flow in porous media. ...
Current theories of two-phase flow in porous media are based on the so-called extended Darcy’s law, ...
Well-defined laboratory experiments have been carried out to investigate hysteretic dynamic effect i...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...
Open access articleAn artificial neural network (ANN) is presented for computing a parameter of dyna...
A number of numerical simulations and experimental investigations have reported the impact of specif...
The dynamic effect in two-phase flow in porous media indicated by a dynamic coefficient τ depends on...
Application of artificial neural network in the prediction of scale dependency of dynamic effects ...
Well-defined laboratory experiments have been conducted to determine the significance of dynamic eff...
The capillary pressure–saturation (Pc–S) relationships are essential in characterising two-phase flo...
Well defined experiments and numerical analyses are conducted to determine the importance of dynamic...
To quantify nonaqueous phase liquids (NAPLs) transport in the subsurface, one requires a correct de...
Work carried out in the last decade or so suggests that the simulators for multiphase flow in porous...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
This paper aims to provide a machine learning framework to simulate two-phase flow in porous media. ...
Current theories of two-phase flow in porous media are based on the so-called extended Darcy’s law, ...
Well-defined laboratory experiments have been carried out to investigate hysteretic dynamic effect i...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...
The two-phase flow behaviour in porous media is determined on the basis of capillary pressure–satura...