Viscosity effects in wind wave generation
arXiv:1611.01208 · doi:10.1103/PhysRevFluids.1.083901
Abstract
We investigate experimentally the influence of the liquid viscosity on the problem of the generation of waves by a turbulent wind at the surface of a liquid, extending the results of Paquier, Moisy and Rabaud [Phys. Fluids {\bf 27}, 122103 (2015)] over nearly three decades of viscosity. The surface deformations are measured with micrometer accuracy using the Free-Surface Synthetic Schlieren method. We recover the two regimes of surface deformations previously identified: the wrinkles regime at small wind velocity, resulting from the viscous imprint on the liquid surface of the turbulent fluctuations in the boundary layer, and the regular wave regime at large wind velocity. Below the wave threshold, we find that the characteristic amplitude of the wrinkles scales as over nearly the whole range of viscosities, whereas their size are essentially unchanged. We propose a simple model for this scaling, which compares well with the data. We finally show that the critical friction velocity for the onset of regular waves slowly increases with viscosity as . Whereas the transition between wrinkles and waves is smooth at small viscosity, including for water, it becomes rather abrupt at large viscosity. Finally, a new regime is found at ~m~s, characterized by a slow, nearly periodic emission of large-amplitude isolated fluid bumps.
To appear in Phys Rev Fluids
References in corpus (1)
Cited by in corpus (10)
- Turbulent windprint on a liquid surface
- Effects of surface tension reduction on wind-wave growth and air-water scalar transfer
- Wind-wave growth over a viscous liquid
- Wind-sustained viscous solitons
- Statistics of single and multiple floaters in experiments of surface wave turbulence
- Basal pressure variations induced by a turbulent flow over a wavy surface
- Aerodynamically-driven rupture of a liquid film by turbulent shear flow
- Kelvin-Helmholtz instability and formation of viscous solitons on highly viscous liquids
- Large-Scale Turbulent Pressure Fluctuations Revealed by Ned Kahn's Artwork
- Effect of wind turbulence on wave generation over a viscous liquid