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most citedFeedback Control of Turbulent Shear Flows by Genetic Programming

3 citations · 3 across the 1 of their papers we have counts for

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physics.flu-dyn2020

Velocity derivatives in a high Reynolds number turbulent boundary layer. Part III: Optimization of an SPIV experiment for derivative moments assessment

Jean-Marc Foucaut, William K. George, Michel Stanislas +1

An SPIV experiment using two orthogonal planes simultaneously was performed in the LML boundary layer facility to specifically measure all of the derivative moments needed to estim…

physics.flu-dyn2020

Velocity Derivatives in Turbulent Boundary Layers. Part II: Statistical Properties

William K. George, Michel Stanislas, Jean-Marc Foucaut +2

An experiment was performed using Dual-plane-SPIV in the LMFL boundary layer facility to determine all of the derivative moments needed to estimate the average dissipation rate of…

physics.flu-dyn2020

Velocity derivatives in a high Reynolds number turbulent boundary layer. Part I: Dissipation and Energy Balance

Michel Stanislas, Jean Marc Foucaut, William K. George +2

An experiment was performed using SPIV in the LMFL boundary layer facility to determine all the derivative moments needed to estimate the average dissipation rate of the turbulence…

physics.flu-dyn2020

On the noise in statistics of PIV measurements

William K. George, Michel Stanislas

It is argued herein that when PIV is used to measure turbulence, it can be treated as a time-dependent signal. The `output' velocity consists of three primary contributions: the ti…

physics.flu-dyn2018

Comparison of turbulence profiles in high Reynolds number turbulent boundary layers and validation of a predictive model

Jean-Philippe Laval, John Christos Vassilicos, Jean-Marc Foucaut +1

The modified Townsend-Perry attached eddy model of Vassilicos et al (2015) combines the outer peak/plateau behaviour of rms streamwise turbulence velocity profiles and the Townsend…

physics.flu-dyn20153 cited

Feedback Control of Turbulent Shear Flows by Genetic Programming

Thomas Duriez, Vladimir Parezanović, Kai von Krbek +14

Turbulent shear flows have triggered fundamental research in nonlinear dynamics, like transition scenarios, pattern formation and dynamical modeling. In particular, the control of…