pith. sign in

arxiv: 1606.09124 · v1 · pith:PSVHTQBAnew · submitted 2016-06-29 · ⚛️ physics.flu-dyn · astro-ph.SR· physics.geo-ph

Internally heated convection beneath a poor conductor

classification ⚛️ physics.flu-dyn astro-ph.SRphysics.geo-ph
keywords boundaryboundmeantemperatureaboveanalysisbelowconditions
0
0 comments X
read the original abstract

We consider convection in an internally heated layer of fluid that is bounded below by a perfect insulator and above by a poor conductor. The poorly conducting boundary is modelled by a fixed heat flux. Using solely analytical methods, we find linear and energy stability thresholds for the static state, and we construct a lower bound on the mean temperature that applies to all flows. The linear stability analysis yields a Rayleigh number above which the static state is linearly unstable ($R_L$), and the energy analysis yields a Rayleigh number below which it is globally stable ($R_E$). For various boundary conditions on the velocity, exact expressions for $R_L$ and $R_E$ are found using long-wavelength asymptotics. Each $R_E$ is strictly smaller than the corresponding $R_L$ but is within 1%. The lower bound on the mean temperature is proven for no-slip velocity boundary conditions using the background method. The bound guarantees that the mean temperature of the fluid, relative to that of the top boundary, grows with the heating rate ($H$) no slower than $H^{2/3}$.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.