Elastic turbulence generates anomalous flow resistance in porous media
arXiv:2011.06036 · doi:10.1126/sciadv.abj2619
Abstract
Diverse processes rely on the viscous flow of polymer solutions through porous media. In many cases, the macroscopic flow resistance abruptly increases above a threshold flow rate in a porous medium---but not in bulk solution. The reason why has been a puzzle for over half a century. Here, by directly visualizing the flow in a transparent 3D porous medium, we demonstrate that this anomalous increase is due to the onset of an elastic instability. We establish that the energy dissipated by the unstable flow fluctuations, which vary across pores, generates the anomalous increase in flow resistance through the entire medium. Thus, by linking the pore-scale onset of unstable flow to macroscopic transport, our work provides generally-applicable guidelines for predicting and controlling polymer solution flows.
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Cited by in corpus (5)
- Stagnation points control chaotic fluctuations in viscoelastic porous media flow
- New directions and perspectives in elastic instability and turbulence in various viscoelastic flow geometries without inertia
- Lagrangian stretching reveals stress topology in viscoelastic flows
- Numerical Study of Viscoelastic Upstream Instability
- Effect of geometric disorder on chaotic viscoelastic porous media flows