Growing condensate in two-dimensional turbulence
arXiv:nlin/0612052 · doi:10.1103/PhysRevLett.99.084501
Abstract
We report a numerical study, supplemented by phenomenological explanations, of ``energy condensation'' in forced 2D turbulence in a biperiodic box. Condensation is a finite size effect which occurs after the standard inverse cascade reaches the size of the system. It leads to emergence of a coherent vortex dipole. We show that the time growth of the dipole is self-similar, and it contains most of the injected energy, thus resulting in an energy spectrum which is markedly steeper than the standard one. Once the coherent component is subtracted, however, the remaining fluctuations have a spectrum close to . The fluctuations decay slowly as the coherent part grows.
4 pages, 4 figures. This version includes some additional phenomenological explanations of the results, additional references and improved figures
Cited by in corpus (6)
- Observation of an Inverse Energy Cascade in Developed Acoustic Turbulence in Superfluid Helium
- Random changes of flow topology in two dimensional and geophysical turbulence
- Turbulence-condensate interaction in two dimensions
- Forward and inverse cascades in decaying two-dimensional electron magnetohydrodynamic turbulence
- Two-dimensional Brownian vortices
- Strong effect of weak diffusion on scalar turbulence at large scales