Physics – Fluid Dynamics
Scientific paper
2008-01-06
Physics
Fluid Dynamics
submitted to PRL
Scientific paper
10.1103/PhysRevLett.100.064503
We report that the power driving gravity and capillary wave turbulence in a statistically stationary regime displays fluctuations much stronger than its mean value. We show that its probability density function (PDF) has a most probable value close to zero and involves two asymmetric roughly exponential tails. We understand the qualitative features of the PDF using a simple Langevin type model.
Aumaître Sebastien
Falcon Claudio
Falcon Eric
Fauve Stéphan
Laroche Claude
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