Role of the basin boundary conditions in gravity wave turbulence
arXiv:1412.5144 · doi:10.1017/jfm.2015.494
Abstract
Gravity wave turbulence is studied experimentally in a large wave basin where irregular waves are generated unidirectionally. The role of the basin boundary conditions (absorbing or reflecting) and of the forcing properties are investigated. To that purpose, an absorbing sloping beach opposite to the wavemaker can be replaced by a reflecting vertical wall. We observe that the wave field properties depend strongly on these boundary conditions. Quasi-one dimensional field of nonlinear waves propagate before to be damped by the beach whereas a more multidirectional wave field is observed with the wall. In both cases, the wave spectrum scales as a frequency-power law with an exponent that increases continuously with the forcing amplitude up to a value close to -4, which is the value predicted by the weak turbulence theory. The physical mechanisms involved are probably different according to the boundary condition used, but cannot be easily discriminated with only temporal measurements. We have also studied freely decaying gravity wave turbulence in the closed basin. No self-similar decay of the spectrum is observed, whereas its Fourier modes decay first as a time power law due to nonlinear mechanisms, and then exponentially due to linear viscous damping. We estimate the linear, nonlinear and dissipative time scales to test the time scale separation that highlights the important role of a large scale Fourier mode. By estimation of the mean energy flux from the initial decay of wave energy, the Kolmogorov-Zakharov constant is evaluated and found to be compatible with a recent theoretical value.
Journal of Fluid Mechanics, Cambridge University Press (CUP), 2015, in press in JFM
References in corpus (13)
- Gravity surface wave turbulence in a laboratory flume
- Weak Turbulent Kolmogorov Spectrum for Surface Gravity Waves
- Nonlocal resonances in weak turbulence of gravity-capillary waves
- Direct numerical simulations of capillary wave turbulence
- Wave turbulence in vibrating plates : the effect of damping
- Quasi-Adiabatic Decay of Capillary Turbulence on the Charged Surface of Liquid Hydrogen
- Observation of nonlinear dispersion relation and spatial statistics of wave turbulence on the surface of a fluid
- Decay of capillary wave turbulence
- Energy flux measurement from the dissipated energy in capillary wave turbulence
- The role of dissipation in flexural wave turbulence: from experimental spectrum to Kolmogorov-Zakharov spectrum
- Nonlinear waves on the surface of a fluid covered by an elastic sheet
- Revealing intermittency in experimental data with steep power spectra
- Observation of depth-induced properties in wave turbulence on the surface of a fluid
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- Saturation of the inverse cascade in surface gravity wave turbulence
- Wave turbulence on the surface of a fluid in a high-gravity environment
- Intermittency and emergence of coherent structures in wave turbulence of a vibrating plate
- Identifying four wave resonant interactions in a surface gravity wave turbulence experiment
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- Statistics of rogue waves in isotropic wave fields
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- Collapse of statistical equilibrium in large-scale hydroelastic turbulent waves