Helical mode interactions and spectral transfer processes in magnetohydrodynamic turbulence
arXiv:1508.05528 · doi:10.1017/jfm.2016.43
Abstract
Spectral transfer processes in magnetohydrodynamic (MHD) turbulence are investigated analytically by decomposition of the velocity and magnetic fields in Fourier space into helical modes. Steady solutions of the dynamical system which governs the evolution of the helical modes are determined, and a stability analysis of these solutions is carried out. The interpretation of the analysis is that unstable solutions lead to energy transfer between the interacting modes while stable solutions do not. From this, a dependence of possible interscale energy and helicity transfers on the helicities of the interacting modes is derived. As expected from the inverse cascade of magnetic helicity in 3D MHD turbulence, mode interactions with like helicities lead to transfer of energy and magnetic helicity to smaller wavenumbers. However, some interactions of modes with unlike helicities also contribute to an inverse energy transfer. As such, an inverse energy cascade for nonhelical magnetic fields is shown to be possible. Furthermore, it is found that high values of the cross-helicity may have an asymmetric effect on forward and reverse transfer of energy, where forward transfer is more quenched in regions of high cross-helicity than reverse transfer. This conforms with recent observations of solar wind turbulence. For specific helical interactions the relation to dynamo action is established.
34 pages including references, 4 figures, corrected typos and updated references
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Cited by in corpus (18)
- Cascades and transitions in turbulent flows
- Helically Decomposed Turbulence
- Nonhelical turbulence and the inverse transfer of energy: A parameter study
- Reynolds-number dependence of the dimensionless dissipation rate in homogeneous magnetohydrodynamic turbulence
- Large-scale dynamics of magnetic helicity
- Effects of magnetic and kinetic helicities on the growth of magnetic fields in laminar and turbulent flows by helical-Fourier decomposition
- Triad interactions and the bidirectional turbulent cascade of magnetic helicity
- The nature of triad interactions in active turbulence
- Effects of forcing mechanisms on the multiscale properties of magnetohydrodynamics
- Parameter study of decaying magnetohydrodynamic turbulence
- Compressible helical turbulence: Fastened-structure geometry and statistics
- Smooth magnetogenesis
- New Exact Betchov-like Relation for the Helicity Flux in Homogeneous Turbulence
- Fully resolved array of simulations investigating the influence of the magnetic Prandtl number on magnetohydrodynamic turbulence
- Saturation of turbulent helical dynamos
- Partial invariants, large-scale dynamo action, and the inverse transfer of magnetic helicity
- Inverse transfer of magnetic helicity in direct numerical simulations of compressible isothermal turbulence: helical transfers
- Beyond Linear Fields: the Lie-Taylor Expansion