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Article Dans Une Revue Flow, Turbulence and Combustion Année : 2015

Mixing Layer Manipulation Experiment

Résumé

Open-and closed-loop control of a turbulent mixing layer is experimentally performed in a dedicated large scale, low speed wind-tunnel facility. The flow is manipulated by an array of fluidic micro-valve actuators integrated into the trailing edge of a splitter plate. Sensing is performed using a rake of hot-wire probes downstream of the splitter plate in the mixing layer. The control goal is the manipulation of the local fluctuating energy level. The mixing layer's response to the control is tested with open-loop forcing with a wide range of actuation frequencies. Results are discussed for different closed-loop control Carine Fourment and Joel Delville: Deceased 11 July 2014. Flow Turbulence Combust (2015) 94:155–173 approaches, such as: adaptive extremum-seeking and in-time POD mode feedback control. In addition, we propose Machine Learning Control (MLC) as a model-free closed-loop control method. MLC arrives reproducibly at the near-optimal in-time control.

Domaines

Electronique

Dates et versions

hal-01629283 , version 1 (06-11-2017)

Identifiants

Citer

Vladimir Parezanović, Jean-Charles Laurentie, Carine Fourment, Joël Delville, Jean-Paul Bonnet, et al.. Mixing Layer Manipulation Experiment. Flow, Turbulence and Combustion, 2015, 94 (1), pp.155 - 173. ⟨10.1007/s10494-014-9581-1⟩. ⟨hal-01629283⟩
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