We study the dynamics of a spherical colloidal particle pulled along the fluid-fluid interface using lattice Boltzmann (LB) simulations. We consider an interface with a finite width and include both the effects of the thermodynamics of the interface and the particle wetting, characterized by the contact angle h between the particle surface and the interface, in addition to the viscosity ratio k between the two fluids. We characterize the particle dynamics by applying a constant pulling force along the interface and measure both the translational and the rotational dynamics as a function of the contact angle and the viscosity ratio. We observe that the hydrodynamic drag is reduced and the particle rotation is increased when the particle resi...
Colloidal particles that are confined to an interface effectively form a two-dimensional fluid. We e...
We investigate the equilibrium orientation and adsorption process of a single, ellipsoidal Janus par...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
We study the dynamics of a spherical colloidal particle pulled along the fluid-fluid interface using...
AbstractWe present a numerical model for dynamic simulation of colloidal particles attached to a flu...
This article concerns numerical simulations of the dynamics of particles immersed in a continuum sol...
Exploring the hydrodynamic boundary of a surface by approaching a colloidal sphere and measuring the...
Hypothesis: The collective dynamics and self-assembly of colloids floating at a fluid/fluid interfac...
The dynamics of particles attached to an interface separating two immiscible fluids are encountered ...
Morphological evolution of particles in semisolid slurries has been modeled as the migration of a do...
Anisotropic colloidal particles have attracted great interest in industrial applications, such as pa...
<p> </p> <p> This thesis deals with spherical microparticles trapped at liquid interfaces. It focuse...
Complex colloidal fluids, such as emulsions stabilized by particles with complex shapes, play an imp...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
Colloidal particles that are confined to an interface effectively form a two-dimensional fluid. We e...
We investigate the equilibrium orientation and adsorption process of a single, ellipsoidal Janus par...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
We study the dynamics of a spherical colloidal particle pulled along the fluid-fluid interface using...
AbstractWe present a numerical model for dynamic simulation of colloidal particles attached to a flu...
This article concerns numerical simulations of the dynamics of particles immersed in a continuum sol...
Exploring the hydrodynamic boundary of a surface by approaching a colloidal sphere and measuring the...
Hypothesis: The collective dynamics and self-assembly of colloids floating at a fluid/fluid interfac...
The dynamics of particles attached to an interface separating two immiscible fluids are encountered ...
Morphological evolution of particles in semisolid slurries has been modeled as the migration of a do...
Anisotropic colloidal particles have attracted great interest in industrial applications, such as pa...
<p> </p> <p> This thesis deals with spherical microparticles trapped at liquid interfaces. It focuse...
Complex colloidal fluids, such as emulsions stabilized by particles with complex shapes, play an imp...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
Colloidal particles that are confined to an interface effectively form a two-dimensional fluid. We e...
We investigate the equilibrium orientation and adsorption process of a single, ellipsoidal Janus par...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...