activity
20152021
most citedFeedback Control of Turbulent Shear Flows by Genetic Programming

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

collaborators
Showing physics.flu-dynShow all

7 papers · 1 filter

physics.flu-dyn2021

On Lagrangian Intermittency from 4-D Particle Tracking Velocimetry measurements of a turbulent von Kármán flow

Valentina Valori, Paul Debue, Adam Cheminet +9

We investigate the ability of 4D Particle Tracking Velocimetry measurements at high particle density to explore intermittency and irreversibility in a turbulent swirling flow at va…

physics.flu-dyn2021

Investigation of Large Scale Motions in Zero and Adverse Pressure Gradient Turbulent Boundary Layers Using High-Spatial-Resolution PIV

Muhammad Shehzad, Bihai Sun, Daniel Jovic +6

High-spatial-resolution (HSR) two-component, two-dimensional particle-image-velocimetry (2C-2D PIV) measurements of a zero-pressure-gradient (ZPG) turbulent boundary layer (TBL) an…

physics.flu-dyn2021

Distortion correction of two-component - two-dimensional PIV using a large imaging sensor with application to measurements of a turbulent boundary layer flow at

Bihai Sun, Muhammad Shehzad, Daniel Jovic +6

In the past decade, advances in electronics technology have made larger imaging sensors available to the experimental fluid mechanics community. These advancements have enabled the…

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…