New type of anomaly in turbulence
arXiv:1401.6141 · doi:10.1103/PhysRevLett.113.024501
Abstract
The turbulent energy flux through scales, , remains constant and non vanishing in the limit of zero viscosity, which results in the fundamental anomaly of time irreversibility. It was considered straightforward to deduce from this the Lagrangian velocity anomaly, at , where is the velocity difference of a pair of particles, initially separated by a fixed distance. In this letter we demonstrate that this derivation assumed first taking the limit and then , while the true anomaly requires taking viscosity to zero first. For compressible turbulence we find that the limits and do not commute and the Lagrangian anomaly is completely altered: has different values forward and backward in time. We show that this new anomaly is related to the particles entering/exiting shocks forward/backward in time. For incompressible flows, on the other hand, we show that the limits can be interchanged and the Lagrangian anomaly is still induced by the flux law, apparently due to a homogeneous distribution of fluid particles at all times.
References in corpus (2)
Cited by in corpus (5)
- Turbulent Cascade Direction and Lagrangian Time-Asymmetry
- Time-irreversibility of the statistics of a single particle in a compressible turbulence
- A note on symmetries in the path integral formulation of the Langevin dynamics
- Assortative Exchange Processes
- Lagrangian view of time irreversibility of fluid turbulence