A multiphase lattice Boltzmann model is developed to simulate immiscible thermocapillary flows with the presence of fluid–surface interactions. In this model, interfacial tension force and Marangoni stress are included by introducing a body force term based on the concept of continuum surface force, and phase segregation is achieved using the recolouring algorithm proposed by Latva-Kokko and Rothman. At a solid surface, fluid–surface interactions are modelled by a partial wetting boundary condition that uses a geometric formulation to specify the contact angle, and a colour-conserving boundary closure scheme to improve the numerical accuracy and suppress spurious velocities at the contact line. An additional convection–diffusion equation is...
Droplets on hydrophobic surfaces are ubiquitous in microfluidic applications and there exists a numb...
Thermocapillary migration of a deformed droplet in the combined vertical temperature gradient and th...
ABSTRACT: We study the two-dimensional dynamics of a droplet on an inclined, nonisothermal solid sub...
A multiphase lattice Boltzmann model is developed to simulate immiscible thermocapillary flows with ...
To understand how thermocapillary forces manipulate droplet motion in microfluidic channels, we deve...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Open microfluidic devices based on actuation techniques such as electrowetting, dielectrophoresis, o...
In the present study a parallel three dimensional Volume of Fluid (VOF) method is developed to simul...
A phase-field-based hybrid model that combines the lattice Boltzmann method with the finite differen...
In this work, we develop a two-phase lattice Boltzmann method (LBM) to simulate axisymmetric thermoc...
In this paper, roles of interfacial rheology on thermocapillary migration of a planar droplet at sma...
The multiple markers unstructured conservative level-set method for two-phase flow with variable sur...
Contact angle hysteresis is an important physical phenomenon omnipresent in nature and various indus...
In this thesis, a code framework is created to allow further insight into thermocapillary driven flo...
ABSTRACT: We study the thermocapillary-driven spreading of a droplet on a nonuniformly heated substr...
Droplets on hydrophobic surfaces are ubiquitous in microfluidic applications and there exists a numb...
Thermocapillary migration of a deformed droplet in the combined vertical temperature gradient and th...
ABSTRACT: We study the two-dimensional dynamics of a droplet on an inclined, nonisothermal solid sub...
A multiphase lattice Boltzmann model is developed to simulate immiscible thermocapillary flows with ...
To understand how thermocapillary forces manipulate droplet motion in microfluidic channels, we deve...
To understand how thermocapillary forces manipulate the droplet motion in a confined microchannel, a...
Open microfluidic devices based on actuation techniques such as electrowetting, dielectrophoresis, o...
In the present study a parallel three dimensional Volume of Fluid (VOF) method is developed to simul...
A phase-field-based hybrid model that combines the lattice Boltzmann method with the finite differen...
In this work, we develop a two-phase lattice Boltzmann method (LBM) to simulate axisymmetric thermoc...
In this paper, roles of interfacial rheology on thermocapillary migration of a planar droplet at sma...
The multiple markers unstructured conservative level-set method for two-phase flow with variable sur...
Contact angle hysteresis is an important physical phenomenon omnipresent in nature and various indus...
In this thesis, a code framework is created to allow further insight into thermocapillary driven flo...
ABSTRACT: We study the thermocapillary-driven spreading of a droplet on a nonuniformly heated substr...
Droplets on hydrophobic surfaces are ubiquitous in microfluidic applications and there exists a numb...
Thermocapillary migration of a deformed droplet in the combined vertical temperature gradient and th...
ABSTRACT: We study the two-dimensional dynamics of a droplet on an inclined, nonisothermal solid sub...