Retardation of the onset of yurbulence by minor viscosity contrasts
arXiv:nlin/0105072 · doi:10.1103/PhysRevLett.87.174501
Abstract
Motivated by the large effect of turbulent drag reduction by minute concentrations of polymers we study the effects of minor viscosity contrasts on the stability of hydrodynamic flows. The key player is a localized region where the energy of fluctuations is produced by interactions with the mean flow (the "critical layer"). We show that a layer of weakly space-dependent viscosity placed near the critical layer can have very large stabilizing effect on hydrodynamic fluctuations, retarding significantly the onset of turbulence. The effect is not due to a modified dissipation (as is assumed in theories of drag reduction), but due to reduced energy intake from the mean flow to the fluctuations. We propose that similar physics act in turbulent drag reduction.
4 Pages, 5 Figures (included), PRL submitted
Cited by in corpus (7)
- Drag Reduction by Polymers in Turbulent Channel Flows: Energy Redistribution Between Invariant Empirical Modes
- Preventing transition to turbulence: a viscosity stratification does not always help
- Stabilization of Hydrodynamic Flows by Small Viscosity Variations
- Linear Stability Analysis for Plane-Poiseuille Flow of an Elastoviscoplastic fluid with internal microstructure
- Drag Reduction in Homogeneous Turbulence by Scale-Dependent Effective Viscosity
- A simple model for drag reduction
- Edge state modulation by mean viscosity gradients