English

The Lagrangian frequency spectrum as a diagnostic for magnetohydrodynamic turbulence dynamics

Fluid Dynamics 2015-05-20 v1

Abstract

For the phenomenological description of magnetohydrodynamic turbulence competing models exist, e.g. Boldyrev [Phys.Rev.Lett. \textbf{96}, 115002, 2006] and Gogoberidze [Phys.Plas. \textbf{14}, 022304, 2007], which predict the same Eulerian inertial-range scaling of the turbulent energy spectrum although they employ fundamentally different basic interaction mechanisms. {A relation is found that links} the Lagrangian frequency spectrum {with} the autocorrelation timescale of the turbulent fluctuations, τac\tau_\mathrm{ac}, and the associated cascade timescale, τcas\tau_{\mathrm{cas}}. Thus, the Lagrangian energy spectrum can serve to identify weak (τacτcas\tau_\mathrm{ac}\ll\tau_{\mathrm{cas}}) and strong (τacτcas\tau_\mathrm{ac}\sim\tau_{\mathrm{cas}}) interaction mechanisms providing insight into the turbulent energy cascade. The new approach is illustrated by results from direct numerical simulations of two- and three-dimensional incompressible MHD turbulence.

Keywords

Cite

@article{arxiv.1011.5605,
  title  = {The Lagrangian frequency spectrum as a diagnostic for magnetohydrodynamic turbulence dynamics},
  author = {Angela Busse and Wolf-Christian Müller and Grigol Gogoberidze},
  journal= {arXiv preprint arXiv:1011.5605},
  year   = {2015}
}

Comments

accepted for publication in PRL