Based on mesoscale lattice Boltzmann simulations with the "Shan-Chen" model, we explore the influence of thermocapillarity on the breakup properties of fluid threads in a microfluidic T-junction, where a dispersed phase is injected perpendicularly into a main channel containing a continuous phase, and the latter induces periodic breakup of droplets due to the cross-flowing. Temperature effects are investigated by switching on-off both positive-negative temperature gradients along the main channel direction, thus promoting a different thread dynamics with anticipated-delayed breakup. Numerical simulations are performed at changing the flow rates of both the continuous and dispersed phases, as well as the relative importance of viscous forces...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
Using a phase-field model to describe fluid/fluid interfacial dynamics and a lattice Boltzmann model...
Based on mesoscale lattice Boltzmann simulations with the "Shan-Chen" model, we explore the influenc...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Using a lattice Boltzmann multiphase model, three-dimensional numerical simulations have been perfor...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
Using a phase-field model to describe fluid/fluid interfacial dynamics and a lattice Boltzmann model...
Based on mesoscale lattice Boltzmann simulations with the "Shan-Chen" model, we explore the influenc...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Based on mesoscale lattice Boltzmann (LB) numerical simulations, we investigate the effects of visco...
Using the lattice Boltzmann multiphase model, numerical simulations have been performed to understan...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Using a lattice Boltzmann multiphase model, three-dimensional numerical simulations have been perfor...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
The effects of viscoelasticity on the dynamics and break-up of fluid threads in microfluidic T-junct...
Using a phase-field model to describe fluid/fluid interfacial dynamics and a lattice Boltzmann model...