activity
20172020
most citedLattice Boltzmann modeling and simulation of liquid jet breakup

64 citations · 64 across the 1 of their papers we have counts for

collaborators

5 papers

nlin.PS2020

Diffusion enhancement in a levitated droplet via oscillatory deformation

Yuki Koyano, Hiroyuki Kitahata, Koji Hasegawa +5

Recent experimental results indicate that mixing is enhanced by a reciprocal flow induced inside a levitated droplet with an oscillatory deformation [T. Watanabe et al. Sci. Rep. 8…

physics.flu-dyn2019

Lattice Boltzmann modeling and simulation of forced-convection boiling on a cylinder

Shimpei Saito, Alessandro De Rosis, Linlin Fei +4

When boiling occurs in a liquid flow field, the phenomenon is known as forced-convection boiling. We numerically investigate such a boiling system on a cylinder in a flow at a satu…

physics.flu-dyn2018

Color-gradient lattice Boltzmann model with nonorthogonal central moments: Hydrodynamic melt-jet breakup simulations

Shimpei Saito, Alessandro De Rosis, Alessio Festuccia +3

We develop a lattice Boltzmann (LB) model for immiscible two-phase flow simulations with central moments (CMs). This successfully combines a three-dimensional nonorthogonal CM-base…

physics.flu-dyn2018

Central-moments-based lattice Boltzmann scheme for coupled Cahn-Hilliard-Navier-Stokes equations

Alessandro De Rosis, Shimpei Saito, Akiko Kaneko +1

In this paper, we propose a lattice Boltzmann (LB) model to solve the coupled Cahn-Hilliard-Navier-Stokes equations. Differently from previous efforts, the LB equation for the flui…

physics.flu-dyn201764 cited

Lattice Boltzmann modeling and simulation of liquid jet breakup

Shimpei Saito, Yutaka Abe, Kazuya Koyama

A three-dimensional color-fluid lattice Boltzmann model for immiscible two-phase flows is developed in the framework of a three-dimensional 27-velocity (D3Q27) lattice. The collisi…