The thermodynamic non-equilibrium (TNE) effects and the relationships between various TNE effects and entropy production rate, morphology, kinematics, and dynamics during two initially static droplet coalescence are studied in detail via the discrete Boltzmann method. The temporal evolutions of the total TNE strength ($D^*$) and the total entropy production rate ($\dot S$) can both provide concise, effective and consistent physical criteria to distinguish the stages of droplet coalescence. Specifically, when $\bar D^*$ and $\dot S$ reach their maxima, it corresponds to the time when the liquid-vapor interface length changes the fastest; when $D^*$ and $\dot S$ reach their valleys, it corresponds to the moment of the droplet being the longes...
Ground-based modeling and experiments have been performed on the interaction and coalescence of drop...
The dynamics of coalescence of small Lennard–Jones droplets as a function of droplet size and temper...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76090/1/AIAA-1997-129-419.pd
Droplet coalescence is a critical issue in atmospheric sciences. In this work, the coalescence of wa...
The Thermodynamic Non-Equilibrium (TNE) effects in the coalescing process of two initially static bu...
Copyright © 2018 M. Irshad Khodabocus et al. When two Newtonian liquid droplets are brought into con...
The classical notion of the coalescence of two droplets of the same radius R is that surface tension...
When two Newtonian liquid droplets are brought into contact on a solid substrate, a highly curved me...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Drop coalescence is central to diverse processes involving dispersions of drops in industrial, engin...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
The partial coalescence dynamics of a hollow droplet in a liquid pool is numerically investigated....
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Simulating droplet coalescence is challenging because small-scale (tens of nanometers) phenomena det...
Simulating droplet coalescence is challenging because small-scale (tens of nanometers) phenomena det...
Ground-based modeling and experiments have been performed on the interaction and coalescence of drop...
The dynamics of coalescence of small Lennard–Jones droplets as a function of droplet size and temper...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76090/1/AIAA-1997-129-419.pd
Droplet coalescence is a critical issue in atmospheric sciences. In this work, the coalescence of wa...
The Thermodynamic Non-Equilibrium (TNE) effects in the coalescing process of two initially static bu...
Copyright © 2018 M. Irshad Khodabocus et al. When two Newtonian liquid droplets are brought into con...
The classical notion of the coalescence of two droplets of the same radius R is that surface tension...
When two Newtonian liquid droplets are brought into contact on a solid substrate, a highly curved me...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Drop coalescence is central to diverse processes involving dispersions of drops in industrial, engin...
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
The partial coalescence dynamics of a hollow droplet in a liquid pool is numerically investigated....
International audienceWe discuss a new mechanism of drop coarsening due to coalescence only, which d...
Simulating droplet coalescence is challenging because small-scale (tens of nanometers) phenomena det...
Simulating droplet coalescence is challenging because small-scale (tens of nanometers) phenomena det...
Ground-based modeling and experiments have been performed on the interaction and coalescence of drop...
The dynamics of coalescence of small Lennard–Jones droplets as a function of droplet size and temper...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76090/1/AIAA-1997-129-419.pd