Elastic turbulence in two-dimensional Taylor-Couette flows
Fluid Dynamics
2018-11-14 v1
Abstract
We report the onset of elastic turbulence in a two-dimensional Taylor-Couette geometry using numerical solutions of the Oldroyd-B model, also performed at high Weissenberg numbers with the program OpenFOAM. Beyond a critical Weissenberg number, an elastic instability causes a supercritical transition from the laminar Taylor-Couette to a turbulent flow. The order parameter, the time average of secondary-flow strength, follows the scaling law with and . The power spectrum of the velocity fluctuations shows a power-law decay with a characteristic exponent, which strongly depends on the radial position. It is greater than two, which we relate to the dimension of the geometry.
Cite
@article{arxiv.1806.02715,
title = {Elastic turbulence in two-dimensional Taylor-Couette flows},
author = {R. van Buel and C. Schaaf and H. Stark},
journal= {arXiv preprint arXiv:1806.02715},
year = {2018}
}