Onset of Convection in a Very Compressible Fluid : The Transient Toward Steady State
arXiv:cond-mat/0209495 · doi:10.1103/PhysRevE.66.056310
Abstract
We analyze the time profile of the temperature difference, measured across a very compressible supercritical He fluid layer in its convective state. The experiments were done along the critical isochore in a Rayleigh-Bénard cell after starting the vertical constant heat flow . For sufficiently well above that needed for the convection onset, the transient for a given , with = 3.318K, shows a damped oscillatory profile with period modulating a smooth base profile. The smooth profile forms the exponential tail of the transient which tends to the steady-state with a time constant . The scaled times and from all the data could be collapsed onto two curves as a function of the Rayleigh number over 3.5 decades. Here is the characteristic thermal diffusion time. Furthermore comparisons are made between measurements of a third characteristic time between the first peak and the first minimum in the profile and its estimation by Onuki et al. Also comparisons are made between the observed oscillations and the 2D simulations by Onuki et al. and by Amiroudine and Zappoli. For the experiments show a crossover to a different transient regime. This new regime, which we briefly describe, is not understood at present.
9 pages, 8 figures, accepted for publication by Phys. Rev. E