activity
20192021
most citedModeling pattern formation in soft flowing crystals

37 citations · 102 across the 8 of their papers we have counts for

collaborators

14 papers

cond-mat.soft202113 cited

Shear dynamics of polydisperse double emulsions

A. Tiribocchi, A. Montessori, F. Bonaccorso +2

We numerically study the dynamics of a polydisperse double emulsion under a symmetric shear flow. We show that both dispersity and shear rate crucially affect the behavior of the i…

cond-mat.soft202112 cited

Wet to dry self-transitions in dense emulsions: from order to disorder and back

Andrea Montessori, Marco Lauricella, Adriano Tiribocchi +2

One of the most distinctive hallmarks of many-body systems far from equilibrium is the spontaneous emergence of order under conditions where disorder would be plausibly expected. H…

cond-mat.soft202012 cited

Concentrated phase emulsion with multi-core morphology under shear: A numerical study

A. Tiribocchi, A. Montessori, F. Bonaccorso +2

We numerically study the dynamic behavior under a symmetric shear flow of selected examples of concentrated phase emulsions with multi-core morphology confined within a microfluidi…

physics.comp-ph20202 cited

A Multiresolution Mesoscale Approach for Microscale Hydrodynamics

Andrea Montessori, Adriano Tiribocchi, Marco Lauricella +2

A new class of multiscale scheme is presented for micro-hydrodynamic problems based on a dual representation of the fluid observables. The hybrid model is first tested against the…

physics.comp-ph202037 cited

Modeling pattern formation in soft flowing crystals

Andrea Montessori, Marco Lauricella, Adriano Tiribocchi +1

We present a mesoscale representation of near-contact interactions between colliding droplets which permits to reach up to the scale of full microfluidic devices, where such drople…

physics.comp-ph2020

Towards Exascale Design of Soft Mesoscale Materials

Sauro Succi, Giorgio Amati, Fabio Bonaccorso +4

We provide a brief survey of our current developments in the simulation-based design of novel families of mesoscale porous materials using computational kinetic theory. Prospective…