paper

Roughness as a Route to the Ultimate Regime of Thermal Convection

arXiv:1701.05133 · doi:10.1103/PhysRevLett.118.074503

Abstract

We use highly resolved numerical simulations to study turbulent Rayleigh-Bénard convection in a cell with sinusoidally rough upper and lower surfaces in two dimensions for and . By varying the wavelength at a fixed amplitude, we find an optimal wavelength for which the Nusselt-Rayleigh scaling relation is maximizing the heat flux. This is consistent with the upper bound of Goluskin and Doering \cite{Goluskin:2016} who prove that can grow no faster than as , and thus the concept that roughness facilitates the attainment of the so-called ultimate regime. Our data nearly achieve the largest growth rate permitted by the bound. When and , the planar case is recovered, demonstrating how controlling the wall geometry manipulates the interaction between the boundary layers and the core flow. Finally, for each we choose the maximum among all , and thus optimizing over all , to find .

8 pages, 6 figures. Accepted for publication in Physical Review Letters

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