activity
19982009
most citedColloquium: Theory of Drag Reduction by Polymers in Wall Bounded Turbulence

179 citations · 785 across the 20 of their papers we have counts for

collaborators
Showing 2006Show all

8 papers · 1 filter

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…

nlin.CD20069 cited

Energy Conservation and Second-Order Statistics in Stably Stratified Turbulent Boundary Layers

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

We address the dynamical and statistical description of stably stratified turbulent boundary layers with the important example of the atmospheric boundary layer with a stable tempe…

nlin.CD200614 cited

On the problem of catastrophic relaxation in superfluid 3-He-B

Yuriy M. Bunkov, Victor S. L'vov, Grigory E. Volovik

In this Letter we discussed the parametric instability of texture of homogeneous (in time) spin precession, explaining how spatial inhomogeneity of the texture may change the thres…

nlin.CD2006

Reynolds number dependence of drag reduction by rod-like polymers

Yacine Amarouchene, Daniel Bonn, Hamid Kellay +3

We present experimental and theoretical results addressing the Reynolds number (Re) dependence of drag reduction by sufficiently large concentrations of rod-like polymers in turbul…

nlin.CD2006

Analytic Model of the Universal Structure of Turbulent Boundary Layers

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

Turbulent boundary layers exhibit a universal structure which nevertheless is rather complex, being composed of a viscous sub-layer, a buffer zone, and a turbulent log-law region.…

nlin.CD200655 cited

A Model of Intra-seasonal Oscillations in the Earth atmosphere

Elena Kartashova, Victor S. L'vov

We suggest a way of rationalizing an intra-seasonal oscillations (IOs) of the Earth atmospheric flow as four meteorological relevant triads of interacting planetary waves, isolated…