Intermittency and emergence of coherent structures in wave turbulence of a vibrating plate
arXiv:1710.00662 · doi:10.1103/PhysRevE.96.042204
Abstract
We report numerical investigations of wave turbulence in a vibrating plate. The possibility to implement advanced measurement techniques and long time numerical simulations makes this system extremely valuable for wave turbulence studies. The purely 2D character of dynamics of the elastic plate makes it much simpler to handle compared to much more complex 3D physical systems that are typical of geo- and astrophysical issues (ocean surface or internal waves, magnetized plasmas or strongly rotating and/or stratified flows). When the forcing is small the observed wave turbulence is consistent with the predictions of the Weak Turbulent Theory. Here we focus on the case of stronger forcing for which coherent structures can be observed. These structures look similar to the folds and D-cones that are commonly observed for strongly deformed static thin elastic sheets (crumpled paper) except that they evolve dynamically in our forced system. We describe their evolution and show that their emergence is associated with statistical intermittency (lack of self similarity) of strongly nonlinear wave turbulence. This behavior is reminiscent of intermittency in Navier-Stokes turbulence. Experimental data show hints of the weak to strong turbulence transition. However, due to technical limitations and dissipation, the strong nonlinear regime remains out of reach of experiments and therefore has been explored numerically.
accepted for publication in Phys. Rev. E
References in corpus (11)
- Experimental Lagrangian Acceleration Probability Density Function Measurement
- Observation of wave turbulence in vibrating plates
- Are there waves in elastic wave turbulence ?
- Fluctuations of energy flux in wave turbulence
- Nonlocal resonances in weak turbulence of gravity-capillary waves
- Wave turbulence in vibrating plates : the effect of damping
- Fourier analysis of wave turbulence in a thin elastic plate
- The role of dissipation in flexural wave turbulence: from experimental spectrum to Kolmogorov-Zakharov spectrum
- Weak and strong wave turbulence spectra for elastic thin plate
- Statistics of power injection in a plate set into chaotic vibration
- Single-wavenumber Representation of Nonlinear Energy Spectrum in Elastic-Wave Turbulence of {F}öppl-von {K}ármán Equation: Energy Decomposition Analysis and Energy Budget