Passive control of viscous flow via elastic snap-through
Soft Condensed Matter
2017-10-31 v2
Abstract
We demonstrate the passive control of viscous flow in a channel by using an elastic arch embedded in the flow. Depending on the fluid flux, the arch may `snap' between two states --- constricting and unconstricting --- that differ in hydraulic conductivity by up to an order of magnitude. We use a combination of experiments at a macroscopic scale and theory to study the constricting and unconstricting states, and determine the critical flux required to transition between them. We show that such a device may be precisely tuned for use in a range of applications, and in particular has potential as a passive microfluidic fuse to prevent excessive fluxes in rigid-walled channels.
Keywords
Cite
@article{arxiv.1708.05846,
title = {Passive control of viscous flow via elastic snap-through},
author = {Michael Gomez and Derek E. Moulton and Dominic Vella},
journal= {arXiv preprint arXiv:1708.05846},
year = {2017}
}
Comments
Main text 5 pages, Supplementary Information 14 pages