Exogenous-endogenous surfactant interaction yields heterogeneous spreading in complex branching networks
Fluid Dynamics
2023-11-16 v2 Mathematical Physics
math.MP
Abstract
Experiments have shown that surfactant introduced to a liquid-filled maze can find the solution path. We reveal how the maze-solving dynamics arise from interactions between the added surfactant and endogenous surfactant present at the liquid surface. We simulate the dynamics using a nonlinear model solved with a discrete mimetic scheme on a graph. Endogenous surfactant transforms local spreading into a non-local problem with an omniscient view of the maze geometry, key to the maze-solving dynamics. Our results offer insight into surfactant-driven transport in complex networks such as lung airways.
Keywords
Cite
@article{arxiv.2311.08133,
title = {Exogenous-endogenous surfactant interaction yields heterogeneous spreading in complex branching networks},
author = {Richard Mcnair and Fernando Temprano-Coleto and François J. Peaudecerf and Frédéric Gibou and Paolo Luzzatto-Fegiz and Oliver E. Jensen and Julien R. Landel},
journal= {arXiv preprint arXiv:2311.08133},
year = {2023}
}
Comments
5 pages, 4 figures