Papers
Topics
Authors
Recent
Search
2000 character limit reached

Rough wall turbulent Taylor-Couette flow: the effect of the rib height

Published 2 May 2018 in physics.flu-dyn | (1805.00955v1)

Abstract: In this study, we combine experiments and direct numerical simulations to investigate the effects of the height of transverse ribs at the walls on both global and local flow properties in turbulent Taylor-Couette flow. We create rib roughness by attaching up to 6 axial obstacles to the surfaces of the cylinders over an extensive range of rib heights, up to blockages of 25% of the gap width. In the asymptotic ultimate regime, where the transport is independent of viscosity, we emperically find that the prefactor of the NuωTa<sup>1/2Nu_{\omega} \propto Ta<sup>{1/2} scaling (corresponding to the drag coefficient Cf(Re)C_f(Re) being constant) scales with the number of ribs NrN_r and by the rib height h<sup>1.71h<sup>{1.71}. The physical mechanism behind this is that the dominant contribution to the torque originates from the pressure forces acting on the rib which scale with rib height. The measured scaling relation of Nrh<sup>1.71N_r h<sup>{1.71} is slightly smaller than the expected Nrh<sup>2N_r h<sup>2 scaling, presumably because the ribs cannot be regarded as completely isolated but interact. In the counter-rotating regime with smooth walls, the momentum transport is increased by turbulent Taylor vortices. We find that also in the presence of transverse ribs these vortices persist. In the counter-rotating regime, even for large roughness heights, the momentum transport is enhanced by these vortices.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.