In this paper, the macroscopic equations of mass and momentum are developed and discretised based on the Smoothed Particle Hydrodynamics (SPH) formulation for the interaction at an interface of flow with porous media. The theoretical background of flow through porous media is investigated in order to highlight the key constraints which should be satisfied, particularly at the interface between the porous media flow and the overlying free flow. The study aims to investigate the derivation of the porous flow equations, computation of the porosity, and treatment of the interfacial boundary layer. It addresses weak assumptions that are commonly adopted for interfacial flow simulation in particle‐based methods. As support to the theoretical anal...
This paper presents a numerical model for simulating free surface flow in porous media with spatiall...
We present simulations and experiments of drainage processes in a micro-model. A direct numerical si...
Abstract Wepresent simulations and experiments of drainage processes in amicro-model.A direct numeri...
In this paper, the macroscopic equations of mass and momentum are developed and discretised based on...
An improved weakly compressible smoothed particle hydrodynamic (WCSPH) model is developed to model w...
In this paper an incompressible Smoothed Particle Hydrodynamics (ISPH) method is applied to investig...
In this work, new pressure inlet and outlet boundary conditions are developed for Smoothed Particle ...
A smoothed particle hydrodynamic (SPH) model is developed to simulate wave interaction with porous s...
Over recent decades, studies in porous media have focused on many fields, typically in the developme...
Available online 22 June 2017In this paper, a computational framework based on the mesh-free smoothe...
In this paper, a three-dimensional smooth particle hydrodynamics (SPH) simulator for modeling grain ...
A Ph.D. dissertation describing pore-scale numerical modeling of flow and transport phenomena in spa...
We present simulations and experiments of drainage processes in a micro-model. A direct numerical si...
Multi-fluid flow over and within porous media occurs frequently in nature and plays an important rol...
This paper presents a numerical model for simulating free surface flow in porous media with spatiall...
We present simulations and experiments of drainage processes in a micro-model. A direct numerical si...
Abstract Wepresent simulations and experiments of drainage processes in amicro-model.A direct numeri...
In this paper, the macroscopic equations of mass and momentum are developed and discretised based on...
An improved weakly compressible smoothed particle hydrodynamic (WCSPH) model is developed to model w...
In this paper an incompressible Smoothed Particle Hydrodynamics (ISPH) method is applied to investig...
In this work, new pressure inlet and outlet boundary conditions are developed for Smoothed Particle ...
A smoothed particle hydrodynamic (SPH) model is developed to simulate wave interaction with porous s...
Over recent decades, studies in porous media have focused on many fields, typically in the developme...
Available online 22 June 2017In this paper, a computational framework based on the mesh-free smoothe...
In this paper, a three-dimensional smooth particle hydrodynamics (SPH) simulator for modeling grain ...
A Ph.D. dissertation describing pore-scale numerical modeling of flow and transport phenomena in spa...
We present simulations and experiments of drainage processes in a micro-model. A direct numerical si...
Multi-fluid flow over and within porous media occurs frequently in nature and plays an important rol...
This paper presents a numerical model for simulating free surface flow in porous media with spatiall...
We present simulations and experiments of drainage processes in a micro-model. A direct numerical si...
Abstract Wepresent simulations and experiments of drainage processes in amicro-model.A direct numeri...