Our recently developed lattice Boltzmann model is used to simulate droplet dynamical behaviour governed by thermocapillary force in microchannels. One key research challenge for developing droplet-based microfluidic systems is control of droplet motion and its dynamic behaviour. We numerically demonstrate that the thermocapillary force can be exploited for microdroplet manipulations including synchronisation, sorting, and splitting. This work indicates that the lattice Boltzmann method provides a promising design simulation tool for developing complex droplet-based microfluidic devices
Recent technological developments have made it possible to design various microdevices where fluid f...
In recent years, microflow has become a popular field of interest due to the appearance of microelec...
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...
To understand how thermocapillary forces manipulate droplet motion in microfluidic channels, we deve...
We developed a lattice Boltzmann model to investigate the droplet dynamics in microfluidic devices. ...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
The lattice Boltzmann model is an innovative method to simulate gaseous or liquid flows. It successf...
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...
In this work we study droplet flows in three different microchannel networks by using a multiphase l...
In this paper, a lattice Boltzmann method (LBM) based simulation of microscale flow has been carried...
Recent technological developments have made it possible to design various microdevices where fluid f...
Recent technological developments have made it possible to design various microdevices where fluid f...
In recent years, microflow has become a popular field of interest due to the appearance of microelec...
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...
To understand how thermocapillary forces manipulate droplet motion in microfluidic channels, we deve...
We developed a lattice Boltzmann model to investigate the droplet dynamics in microfluidic devices. ...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
The lattice Boltzmann model is an innovative method to simulate gaseous or liquid flows. It successf...
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...
In this work we study droplet flows in three different microchannel networks by using a multiphase l...
In this paper, a lattice Boltzmann method (LBM) based simulation of microscale flow has been carried...
Recent technological developments have made it possible to design various microdevices where fluid f...
Recent technological developments have made it possible to design various microdevices where fluid f...
In recent years, microflow has become a popular field of interest due to the appearance of microelec...
In this study, we compared microchannel droplet formation in a microfluidics device with a two phase...