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20142024
most citedDirect numerical simulations of capillary wave turbulence

57 citations · 150 across the 7 of their papers we have counts for

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physics.flu-dyn20245 cited

A Review of the Accuracy of Direct Numerical Simulation Tools for the Simulation of Non-Spherical Bubble Collapses

Mandeep Saini, Lucas Prouvost, Stephane Popinet +1

Numerical methods for the simulation of cavitation processes have been developed for more than 50 years. The rich variety of physical phenomena triggered by the collapse of a bubbl…

physics.flu-dyn202412 cited

Finite speed of sound effects on asymmetry in multibubble cavitation

Mandeep Saini, Youssef Saade, Daniel Fuster +1

Three-dimensional direct numerical simulations (DNS) are used to revisit the experiments on multibubble cavitation performed by Bremond et al. (https://doi.org/10.1063/1.2396922, P…

physics.flu-dyn2024

Effects of non-condensable gas on laser-induced cavitation bubbles

Davide Bernardo Preso, Daniel Fuster, Armand Baptiste Sieber +1

This study presents experimental observations of single laser-induced cavitation bubbles collapsing in water with different levels of air saturation. The average trends of the bubb…

physics.flu-dyn202444 cited

On the dynamics of a collapsing bubble in contact with a rigid wall

M Saini, E Tanne, M Arrigoni +2

This work reveals that the dynamic response of a spherical cap bubble in contact with a rigid wall depends on the effective contact angle at the instant prior to collapse. This par…

physics.flu-dyn202431 cited

Vapor compression and energy dissipation in a collapsing laser-induced bubble

Davide Bernardo Preso, Daniel Fuster, Armand Baptiste Sieber +2

The composition of the gaseous phase of cavitation bubbles and its role on the collapse remains to date poorly understood. In this work, experiments of single cavitation bubbles in…

physics.flu-dyn20231 cited

Finite amplitude wave propagation through bubbly fluids

Siew-Wan Ohl, Juan Manuel Rossello, Daniel Fuster +1

The existence of only a few bubbles could drastically reduce the acoustic wave speed in a liquid. Wood's equation models the linear sound speed, while the speed of an ideal shock w…