We employ a free energy lattice Boltzmann method to study the dynamics of a ternary fluid system consisting of a liquid drop driven by a body force across a regularly textured substrate, infused by a lubricating liquid. We focus on the case of partial wetting lubricants and observe a rich interplay between contact line pinning and viscous dissipation at the lubricant ridge, which become dominant at large and small apparent angles respectively. Our numerical investigations further demonstrate that the relative importance of viscous dissipation at the lubricant ridge depends on the drop to lubricant viscosity ratio, as well as on the shape of the wetting ridge
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
Liquid infused surfaces with partially wetting lubricants have recently been exploited for numerous ...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
The current paradigm of self-propelled motion of liquid droplets on surfaces with chemical or topogr...
Inspired by pitcher plants, a micro/nano- structured solid surface infused with low-surface-tension ...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
Liquid infused surfaces with partially wetting lubricants have recently been exploited for numerous ...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
The current paradigm of self-propelled motion of liquid droplets on surfaces with chemical or topogr...
Inspired by pitcher plants, a micro/nano- structured solid surface infused with low-surface-tension ...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...