Journal article
Linear control of coherent structures in wall-bounded turbulence at Reτ=2000
SF Oehler, SJ Illingworth
International Journal of Heat and Fluid Flow | ELSEVIER SCIENCE INC | Published : 2021
Abstract
We consider linear feedback flow control of the largest scales in an incompressible turbulent channel flow at a friction Reynolds number of Reτ=2000. A linear model is formed by linearizing the Navier–Stokes equations about the turbulent mean and augmenting it with an eddy viscosity. Velocity perturbations are then generated by stochastically forcing the linear operator. The objective is to reduce the kinetic energy of these velocity perturbations at the largest scales using body forces. It is shown that a control set-up with a well-placed array of sensors and actuators performs comparably to either measuring the flow everywhere (while limiting actuators to a single wall height) or actuating..
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Funding Acknowledgements
The authors would like to thank Sean Symon and Anagha Madhusudanan for their extensive feedback and support during the creation of this paper and are grateful for the financial support of the Australian Research Council.