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Dynamos at extreme magnetic Prandtl numbers: Insights from shell models

Fluid Dynamics 2016-09-21 v2 Plasma Physics

Abstract

We present an MHD shell model suitable for computation of various energy fluxes of magnetohydrodynamic turbulence for very small and very large magnetic Prandtl numbers Pm\mathrm{Pm}; such computations are inaccessible to direct numerical simulations. For small Pm\mathrm{Pm}, we observe that both kinetic and magnetic energy spectra scale as k5/3k^{-5/3} in the inertial range, but the dissipative magnetic energy scales as k11/3exp(k/kη)k^{-11/3}\exp(-k/k_\eta). Here, the kinetic energy at large length scale feeds the large-scale magnetic field that cascades to small-scale magnetic field, which gets dissipated by Joule heating. The large-Pm\mathrm{Pm} dynamo has a similar behaviour except that the dissipative kinetic energy scales as k13/3k^{-13/3}. For this case, the large-scale velocity field transfers energy to the large-scale magnetic field, which gets transferred to small-scale velocity and magnetic fields; the energy of the small-scale magnetic field also gets transferred to the small-scale velocity field, and the energy thus accumulated is dissipated by the viscous force.

Keywords

Cite

@article{arxiv.1510.00122,
  title  = {Dynamos at extreme magnetic Prandtl numbers: Insights from shell models},
  author = {Mahendra K. Verma and Rohit Kumar},
  journal= {arXiv preprint arXiv:1510.00122},
  year   = {2016}
}

Comments

27 pages, 14 figures