Droplet Breakup Against an Isolated Obstacle

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Meer, David J., Sista, Shivnag, Shattuck, Mark D., O'Hern, Corey S., Weeks, Eric R.
Format: Preprint
Publié: 2025
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866911649632354304
author Meer, David J.
Sista, Shivnag
Shattuck, Mark D.
O'Hern, Corey S.
Weeks, Eric R.
author_facet Meer, David J.
Sista, Shivnag
Shattuck, Mark D.
O'Hern, Corey S.
Weeks, Eric R.
contents We describe combined experiments and simulations of droplet breakup during flow-driven interactions with a circular obstacle in a quasi-two-dimensional microfluidic chamber. Due to a lack of in-plane confinement, the droplets can also slip past the obstacle without breaking. Droplets are more likely to break when they have a higher flow velocity, larger size (relative to the obstacle radius R), smaller surface tension, and for head-on collisions with the obstacle. We also observe that droplet-obstacle collisions are more likely to result in breakup when the height of the sample chamber is increased. We define a nondimensional breakup number Bk ~ Ca, where Ca is the Capillary number, that accounts for changes in the likelihood of droplet break up with variations in these parameters. As Bk increases, we find in both experiments and discrete element method (DEM) simulations of the deformable particle model that the behavior changes from droplets never breaking (Bk << 1) to always breaking for Bk >> 1, with a rapid change in the probability of droplet breakup near Bk = 1. We also find that Bk ~ S^(4/3), where S characterizes the symmetry of the collision, which implies that the minimum symmetry required for breakup is controlled by a characteristic distance h ~ R.
format Preprint
id arxiv_https___arxiv_org_abs_2512_20846
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Droplet Breakup Against an Isolated Obstacle
Meer, David J.
Sista, Shivnag
Shattuck, Mark D.
O'Hern, Corey S.
Weeks, Eric R.
Fluid Dynamics
Soft Condensed Matter
76D45 (Primary) 76D17, 76D45 (Secondary)
We describe combined experiments and simulations of droplet breakup during flow-driven interactions with a circular obstacle in a quasi-two-dimensional microfluidic chamber. Due to a lack of in-plane confinement, the droplets can also slip past the obstacle without breaking. Droplets are more likely to break when they have a higher flow velocity, larger size (relative to the obstacle radius R), smaller surface tension, and for head-on collisions with the obstacle. We also observe that droplet-obstacle collisions are more likely to result in breakup when the height of the sample chamber is increased. We define a nondimensional breakup number Bk ~ Ca, where Ca is the Capillary number, that accounts for changes in the likelihood of droplet break up with variations in these parameters. As Bk increases, we find in both experiments and discrete element method (DEM) simulations of the deformable particle model that the behavior changes from droplets never breaking (Bk << 1) to always breaking for Bk >> 1, with a rapid change in the probability of droplet breakup near Bk = 1. We also find that Bk ~ S^(4/3), where S characterizes the symmetry of the collision, which implies that the minimum symmetry required for breakup is controlled by a characteristic distance h ~ R.
title Droplet Breakup Against an Isolated Obstacle
topic Fluid Dynamics
Soft Condensed Matter
76D45 (Primary) 76D17, 76D45 (Secondary)
url https://arxiv.org/abs/2512.20846