arXiv · 1906.11868
Disorder suppresses chaos in viscoelastic flows
Abstract
Viscoelastic flows transition from steady to time-dependent, chaotic dynamics under critical flow conditions, but the implications of geometric disorder for flow stability in these systems are unknown. Utilizing microfluidics, we flow a viscoelastic fluid through arrays of cylindrical pillars, which are perturbed from a hexagonal lattice with various degrees of geometric disorder. Small disorder, corresponding to ~ 10% of the lattice constant, delays the transition to higher flow speeds, while larger disorders exhibit near-complete suppression of chaotic velocity fluctuations. We show that the mechanism facilitating flow stability at high disorder is rooted in a shift from extension-dominated to shear-dominated flow type with increasing disorder.
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Derek M. Walkama, Nicolas Waisbord, Jeffrey S. Guasto. 2019-07-11. Disorder suppresses chaos in viscoelastic flows. https://doi.org/10.1103/physrevlett.124.164501
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