In this work we study droplet flows in three different microchannel networks by using a multiphase lattice Boltzmann method. It is firstly shown that the lattice Boltzmann method is suitable for simulating droplet flows in complex microchannel geometries. The effect of velocity in the channels downstream of a branching intersection on the path a droplet would take through a microchannel network is investigated. We find that, for the investigated microchannel geometries, droplets that reached a channel intersection would travel through the downstream branch with the highest local velocity
Although multiphase gas and liquid phenomena occurs widely in engineering problems, many aspects of ...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Abstract The Lattice Boltzmann Equation (LBE) method is described for simulating micro- and meso-sca...
In this work we study droplet flows in three different microchannel networks by using a multiphase l...
We investigated the formation of a droplet from a single pore in a glass chip, which is a model syst...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
Successive droplets deposited high-resolution features on the non-ideal recessed microchannel is inv...
In this study, we compared microchannel droplet formation in a microfluidics device with a two phase...
Our recently developed lattice Boltzmann model is used to simulate droplet dynamical behaviour gover...
We developed a lattice Boltzmann model to investigate the droplet dynamics in microfluidic devices. ...
Immiscible kerosene-water two-phase flows in microchannels connected by a T-junction were numericall...
This thesis is a comprehensive account of my experiences implementing the Lattice Boltzmann Method (...
Droplet evaporation is a ubiquitous phenomenon in nature and important in numerous practical applica...
Drop formation in cross-junction micro-channels is numerically studied using the lattice Boltzmann m...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
Although multiphase gas and liquid phenomena occurs widely in engineering problems, many aspects of ...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Abstract The Lattice Boltzmann Equation (LBE) method is described for simulating micro- and meso-sca...
In this work we study droplet flows in three different microchannel networks by using a multiphase l...
We investigated the formation of a droplet from a single pore in a glass chip, which is a model syst...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
Successive droplets deposited high-resolution features on the non-ideal recessed microchannel is inv...
In this study, we compared microchannel droplet formation in a microfluidics device with a two phase...
Our recently developed lattice Boltzmann model is used to simulate droplet dynamical behaviour gover...
We developed a lattice Boltzmann model to investigate the droplet dynamics in microfluidic devices. ...
Immiscible kerosene-water two-phase flows in microchannels connected by a T-junction were numericall...
This thesis is a comprehensive account of my experiences implementing the Lattice Boltzmann Method (...
Droplet evaporation is a ubiquitous phenomenon in nature and important in numerous practical applica...
Drop formation in cross-junction micro-channels is numerically studied using the lattice Boltzmann m...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
Although multiphase gas and liquid phenomena occurs widely in engineering problems, many aspects of ...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Abstract The Lattice Boltzmann Equation (LBE) method is described for simulating micro- and meso-sca...