PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2017

A framework for closed-loop flow control using the parabolized stability equations

Authors

Sasaki, Kenzo
Silvestre, Flávio J.
Jordan, Peter
Tissot, Gilles
Biau, Damien

23rd AIAA Ceas Aeroacoustics Conference 2017

3
Citations
6
Authors

Abstract

© 2017, American Institute of Aeronautics and Astronautics Inc, AIAA. All rights reserved.We develop a reduced-order-model framework using the parabolized stability equations and identification techniques for the closed-loop control of unsteady fluctuations along fluidic systems. These models had been successfully applied to a turbulent jet as estimation techniques and to an incompressible shear-layer for the development of closed-loop control laws. Through this paper, we propose a further investigation of the PSE-based transfer functions, exploring its flexibility to educe different control schemes and to determine the most effective sensor/actuator positions. Emphasis is be given to the feedforward and feedback configurations for flow control, and differences are understood in terms of causality. A study of the robustness to uncertainties in Reynolds and mean flow velocity, along with external perturbations is also presented. These topics allow deeper insight into the active closed-loop flow control problem and therefore may lead to more effective schemes, particularly on what concerns the experimental implementation of closed-loop control.

Aerospace Engineering (ENGI) Electrical and Electronic Engineering (ENGI)
: Scopus
Last Update: 2026-06-25
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