We perform direct numerical simulations (DNS) of emulsions in homogeneous isotropic turbulence using a pseudopotential lattice-Boltzmann (PP-LB) method. Improving on previous literature by minimizing droplet dissolution and spurious currents, we show that the PP-LB technique is capable of long stable simulations in certain parameter regions. Varying the dispersed-phase volume fraction , we demonstrate that droplet breakup extracts kinetic energy from the larger scales while injecting energy into the smaller scales, increasingly with higher , with approximately the Hinze scale (Hinze, AIChE J., vol. 1 (3), 1955, pp. 289-295) separating the two effects. A generalization of the Hinze scale is proposed, which applies both to dense and dilute...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Multiple breakup refers to a sequence of events through which a single droplet eventually produces m...
A generalized model for breakage and coalescence kernels valid for the entire spectrum of turbulence...
We perform direct numerical simulations (DNS) of emulsions in homogeneous isotropic turbulence using...
This fluid dynamics video shows the breakup of a droplet in a stationary homogeneous and isotropic t...
The breakup of droplets in a turbulent flow is key to many natural and industrial applications. Here...
The deformation and dynamics of a single droplet in isotropic turbulence is studied using a Lattice ...
The mixing of two immiscible fluids, often under turbulent conditions, can lead to the formation of ...
The breakup of drops and bubbles in turbulent fluids is a key mechanism in many environmental and en...
We study droplet dynamics and breakup in generic time-dependent flows via a multicomponent lattice B...
In this paper, we propose a droplet non-coalescence method based on the lattice Boltzmann (LB) pseud...
We study the physics of droplet breakup in a statistically stationary homogeneous and isotropic turb...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Multiple breakup refers to a sequence of events through which a single droplet eventually produces m...
A generalized model for breakage and coalescence kernels valid for the entire spectrum of turbulence...
We perform direct numerical simulations (DNS) of emulsions in homogeneous isotropic turbulence using...
This fluid dynamics video shows the breakup of a droplet in a stationary homogeneous and isotropic t...
The breakup of droplets in a turbulent flow is key to many natural and industrial applications. Here...
The deformation and dynamics of a single droplet in isotropic turbulence is studied using a Lattice ...
The mixing of two immiscible fluids, often under turbulent conditions, can lead to the formation of ...
The breakup of drops and bubbles in turbulent fluids is a key mechanism in many environmental and en...
We study droplet dynamics and breakup in generic time-dependent flows via a multicomponent lattice B...
In this paper, we propose a droplet non-coalescence method based on the lattice Boltzmann (LB) pseud...
We study the physics of droplet breakup in a statistically stationary homogeneous and isotropic turb...
We study the deformation and dynamics of droplets in time-dependent flows using 3D numerical simulat...
Multiple breakup refers to a sequence of events through which a single droplet eventually produces m...
A generalized model for breakage and coalescence kernels valid for the entire spectrum of turbulence...