English

Rayleigh-B\'enard convection with uniform vertical magnetic field

Fluid Dynamics 2014-09-10 v1

Abstract

We present the results of direct numerical simulations of Rayleigh-B\'enard convection in the presence of a uniform vertical magnetic field near instability onset. We have done simulations in boxes with square as well as rectangular cross-sections in the horizontal plane. We have considered horizontal aspect ratio η=Ly/Lx=1\eta = L_y/L_x =1 and 22. The onset of the primary and secondary instabilities are strongly suppressed in the presence of the vertical magnetic field for η=1\eta =1. The Nusselt number Nu\mathrm{Nu} scales with Rayleigh number Ra\mathrm{Ra} close to the primary instability as [{RaRac(Q)}/Rac(Q)]0.91[\mathrm{\{Ra - Ra_c (Q)\}/Ra_c (Q)} ]^{0.91}, where Rac(Q)\mathrm{Ra_c (Q)} is the threshold for onset of stationary convection at a given value of the Chandrasekhar number Q\mathrm{Q}. Nu\mathrm{Nu} also scales with Ra/Q\mathrm{Ra/Q} as (Ra/Q)μ(\mathrm{Ra/Q})^{\mu}. The exponent μ\mu varies in the range 0.39μ0.570.39 \le \mu \le 0.57 for Ra/Q25\mathrm{Ra/Q} \ge 25. The primary instability is stationary as predicted by Chandrasekhar. The secondary instability is temporally periodic for Pr=0.1\mathrm{Pr}=0.1 but quasiperiodic for Pr=0.025\mathrm{Pr} = 0.025 for moderate values of Q\mathrm{Q}. Convective patterns for higher values of Ra\mathrm{Ra} consist of periodic, quasiperiodic and chaotic wavy rolls above onset of the secondary instability for η=1\eta=1. In addition, stationary as well as time dependent cross-rolls are observed, as Ra\mathrm{Ra} is further raised. The ratio r/Prr_{\circ}/\mathrm{Pr} is independent of Q\mathrm{Q} for smaller values of Q\mathrm{Q}. The delay in onset of the oscillatory instability is significantly reduced in a simulation box with η=2\eta =2. We also observe inclined stationary rolls for smaller values of Q\mathrm{Q} for η=2\eta =2.

Keywords

Cite

@article{arxiv.1409.2621,
  title  = {Rayleigh-B\'enard convection with uniform vertical magnetic field},
  author = {Arnab Basak and Rohit Raveendran and Krishna Kumar},
  journal= {arXiv preprint arXiv:1409.2621},
  year   = {2014}
}

Comments

9 pages, 11 figures (A slightly modified version is published in Physical Review E)