Limitations of the background field method applied to Rayleigh-Benard convection

作者:Nobili Camilla*; Otto Felix
来源:Journal of Mathematical Physics, 2017, 58(9): 093102.
DOI:10.1063/1.5002559

摘要

We consider Rayleigh-Benard convection as modeled by the Boussinesq equations, in the case of infinite Prandtl numbers and with no-slip boundary condition. There is a broad interest in bounds of the upwards heat flux, as given by the Nusselt number Nu, in terms of the forcing via the imposed temperature difference, as given by the Rayleigh number in the turbulent regime Ra >> 1. In several studies, the background field method applied to the temperature field has been used to provide upper bounds on Nu in terms of Ra. In these applications, the background field method comes in the form of a variational problem where one optimizes a stratified temperature profile subject to a certain stability condition; the method is believed to capture the marginal stability of the boundary layer. The best available upper bound via this method is Nu less than or similar to Ra-1/3 (ln Ra)(1/15) ; it proceeds via the construction of a stable temperature background profile that increases logarithmically in the bulk. In this paper, we show that the background temperature field method cannot provide a tighter upper bound in terms of the power of the logarithm. However, by another method, one does obtain the tighter upper bound Nu less than or similar to Ra-1/3 (ln ln Ra)(1/3) so that the result of this paper implies that the background temperature field method is unphysical in the sense that it cannot provide the optimal bound. Published by AIP Publishing.

  • 出版日期2017-9