Energy flux measurement from the dissipated energy in capillary wave turbulence
arXiv:1309.6992 · doi:10.1103/PhysRevE.89.023003
Abstract
We study experimentally the influence of dissipation on stationary capillary wave turbulence on the surface of a fluid by changing its viscosity. We observe that the frequency power law scaling of the capillary spectrum departs significantly from its theoretical value when the dissipation is increased. The energy dissipated by capillary waves is also measured and found to increase nonlinearly with the mean power injected within the fluid. Here, we propose an experimental estimation of the energy flux at every scale of the capillary cascade. The latter is found to be non constant through the scales. For fluids of low enough viscosity, we found that both capillary spectrum scalings with the frequency and the newly defined mean energy flux are in good agreement with wave turbulence theory. The Kolmogorov-Zakharov constant is then experimentally estimated and compared to its theoretical value.
Physical Review E (2013) submitted to PRE
References in corpus (9)
- Gravity surface wave turbulence in a laboratory flume
- Capillary wave turbulence on a spherical fluid surface in low gravity
- Fluctuations of energy flux in wave turbulence
- Wave turbulence in vibrating plates : the effect of damping
- Observation of nonlinear dispersion relation and spatial statistics of wave turbulence on the surface of a fluid
- Decay of capillary wave turbulence
- Modulation instability and capillary wave turbulence
- Space-Time Resolved Capillary Wave Turbulence
- Nonlinear waves on the surface of a fluid covered by an elastic sheet
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