AbstractIn order to understand the transport behavior of colloids near an air–water interface (AWI), two computational methods are applied to simulate the local water flow field near a moving AWI in a 2D microfluidic channel. The first method is a mesoscopic multicomponent and multiphase lattice Boltzmann (LBM) model and the second is the macroscopic, Navier–Stokes based, volume-of-fluid interface tracking method. In the LBM, it is possible to predict the dynamic contact angles after the static contact angle is correctly set, and the predicted dynamic contact angles are in good agreement with previous observations. It is demonstrated that the two methods can yield a similar flow velocity field if they are applied properly. The flow field re...
A zero-interfacial-force condition is derived and implemented to improve the wetting boundary scheme...
ABSTRACT: Flow in unsaturated porous media or in engineered microfluidic systems is dominated by cap...
Microfluidic geometries allow direct observation of microscale phenomena while conserving liquid vol...
AbstractIn order to understand the transport behavior of colloids near an air–water interface (AWI),...
Wang, Lian-PingIn this dissertation, a numerical approach is developed to investigate the colloid t...
AbstractTransport of sub-micron colloid particles in soil porous media has been mostly studied numer...
PubMedID: 22130000Colloid retention mechanisms in partially saturated porous media are currently bei...
This study presents a simple and robust numerical scheme to model two-phase flow in porous media whe...
A review of current literature shows that considerable uncertainty exists concerning the role of the...
Transport of colloidal size particulate matter is of special interest of environmental studies becau...
AbstractWe present a numerical model for dynamic simulation of colloidal particles attached to a flu...
When colloids flow in a narrow channel, the transport efficiency is controlled by the non-equilibriu...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
Advances in pore structure characterization and lattice-Boltzmann (LB) simulations of flow fields in...
This work focuses on the dynamics of a train of solid particles, separated by a distance L, flowing ...
A zero-interfacial-force condition is derived and implemented to improve the wetting boundary scheme...
ABSTRACT: Flow in unsaturated porous media or in engineered microfluidic systems is dominated by cap...
Microfluidic geometries allow direct observation of microscale phenomena while conserving liquid vol...
AbstractIn order to understand the transport behavior of colloids near an air–water interface (AWI),...
Wang, Lian-PingIn this dissertation, a numerical approach is developed to investigate the colloid t...
AbstractTransport of sub-micron colloid particles in soil porous media has been mostly studied numer...
PubMedID: 22130000Colloid retention mechanisms in partially saturated porous media are currently bei...
This study presents a simple and robust numerical scheme to model two-phase flow in porous media whe...
A review of current literature shows that considerable uncertainty exists concerning the role of the...
Transport of colloidal size particulate matter is of special interest of environmental studies becau...
AbstractWe present a numerical model for dynamic simulation of colloidal particles attached to a flu...
When colloids flow in a narrow channel, the transport efficiency is controlled by the non-equilibriu...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
Advances in pore structure characterization and lattice-Boltzmann (LB) simulations of flow fields in...
This work focuses on the dynamics of a train of solid particles, separated by a distance L, flowing ...
A zero-interfacial-force condition is derived and implemented to improve the wetting boundary scheme...
ABSTRACT: Flow in unsaturated porous media or in engineered microfluidic systems is dominated by cap...
Microfluidic geometries allow direct observation of microscale phenomena while conserving liquid vol...