output
20062026
most citedCharacterising the Anisotropic Mechanical Properties of Excised Human Skin

764 citations

Showing 2021 · physics.flu-dynShow all

10 papers · 2 filters

physics.flu-dyn2021★ 4 cited

Regressing bubble cluster dynamics as a disordered many-body system

Kazuki Maeda, Daniel Fuster

The coherent dynamics of bubble clusters in liquid are of fundamental and industrial importance and are elusive due to the complex interactions of disordered bubble oscillations. H…

physics.flu-dyn2021★ 19 cited

Nanoscale sheared droplet: Volume-of-Fluid, phase-field and no-slip molecular dynamics

Uǧis Lācis, Michele Pellegrino, Johan Sundin +4

The motion of the three-phase contact line between two immiscible fluids and a solid surface arises in a variety of wetting phenomena and technological applications. One challenge…

physics.flu-dyn2021★ 19 cited

Exploiting self-organized criticality in strongly stratified turbulence

Gregory P. Chini, Guillaume Michel, Keith Julien +2

A multiscale reduced description of turbulent free shear flows in the presence of strong stabilizing density stratification is derived via asymptotic analysis of the Boussinesq equ…

physics.flu-dyn2021★ 1 cited

Three-dimensional turbulence effects on plankton dynamics behind an obstacle

Alice Jaccod, Stefano Berti, Enrico Calzavarini +1

We study a predator-prey model of plankton dynamics in the two and three-dimensional wakes of turbulent flows behind a cylinder, focusing on the impact of the three-dimensional cha…

physics.flu-dyn2021★ 33 cited

Manifold death: a Volume of Fluid implementation of controlled topological changes in thin sheets by the signature method

Leonardo Chirco, Jacob Maarek, Stephane Popinet +1

A well-known drawback of the Volume-Of-Fluid (VOF) method is that the breakup of thin liquid films or filaments is mainly caused by numerical aspects rather than by physical ones.…

physics.flu-dyn2021★ 34 cited

Contact Line Catch Up by Growing Ice Crystals

R. Grivet, A. Monier, A. Huerre +2

The effect of freezing on contact line motion is a scientific challenge in the understanding of the solidification of capillary flows. In this letter, we experimentally investigate…