activity
20062009
most citedBottleneck crossover between classical and quantum superfluid turbulence

154 citations · 290 across the 7 of their papers we have counts for

collaborators

7 papers

physics.flu-dyn20094 cited

Velocity and Energy Profiles In Two- vs. Three-Dimensional Channels: Effects of Inverse vs. Direct Energy Cascade

Victor S. L'vov, Itamar Procaccia, Oleksii Rudenko

In light of some recent experiments on quasi two-dimensional (2D) turbulent channel flow we provide here a model of the ideal case, for the sake of comparison. The ideal 2D channel…

physics.flu-dyn200812 cited

Turbulent Fluxes in Stably Stratified Boundary Layers

Victor S. L'vov, Itamar Procaccia, Oleksii Rudenko

We present an extended version of an invited talk given on the International Conference "Turbulent Mixing and Beyond". The dynamical and statistical description of stably stratifie…

physics.flu-dyn200842 cited

Gradual eddy-wave crossover in superfluid turbulence

Victor S. L'vov, Sergey V. Nazarenko, Oleksii Rudenko

We revise the theory of superfluid turbulence near the absolute zero of temperature and suggest a model with differential approximation for the energy fluxes in the k-space carried…

nlin.SI200833 cited

Resonant interactions of nonlinear water waves in a finite basin

Elena Kartashova, Sergey Nazarenko, Oleksii Rudenko

We study exact four-wave resonances among gravity water waves in a square box with periodic boundary conditions. We show that these resonant quartets are linked with each other by…

nlin.CD200736 cited

Universal Model of Finite-Reynolds Number Turbulent Flow in Channels and Pipes

Victor S. L'vov, Itamar Procaccia, Oleksii Rudenko

In this Letter we suggest a simple and physically transparent analytical model of the pressure driven turbulent wall-bounded flows at high but finite Reynolds numbers Re. The model…

nlin.CD2006154 cited

Bottleneck crossover between classical and quantum superfluid turbulence

Victor S. L'vov, Sergei V. Nazarenko, Oleksii Rudenko

We consider superfluid turbulence near absolute zero of temperature generated by classical means, e.g. towed grid or rotation but not by counterflow. We argue that such turbulence…