arXiv · 2005.02021
Rayleigh-B\'enard instability of an Ellis fluid saturating a porous medium
Abstract
Unlike the power-law model, the Ellis model describes the apparent viscosity of a shear-thinning fluid with no singularity in the limit of a vanishingly small shear stress. In particular, this model matches the Newtonian behaviour when the shear stresses are very small. The emergence of the Rayleigh-B\'enard instability is studied when a horizontal pressure gradient, yielding a basic throughflow, is prescribed in a horizontal porous layer. The threshold conditions for the linear instability of this system are obtained both analytically and numerically. In the case of a negligible flow rate, the onset of the instability occurs for the same parametric conditions reported in the literature for a Newtonian fluid saturating a porous medium. On the other hand, when high flow rates are considered, a negligibly small temperature difference imposed across the horizontal boundaries is sufficient to trigger the convective instability.
Explore related subjects
Keep this discovery
Michele Celli, Antonio Barletta, Pedro V. Brandão. 2020-05-05. Rayleigh-B\'enard instability of an Ellis fluid saturating a porous medium. https://doi.org/10.1007/s11242-021-01640-z
Cite the original work for its findings. Save a collection to share your selection of sources.