activity
20222025
most citedActive flow control of a turbulent separation bubble through deep reinforcement learning

13 citations · 31 across the 7 of their papers we have counts for

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12 papers · 1 filter

physics.flu-dyn20252 cited

Improving turbulence control through explainable deep learning

Miguel Beneitez, Andres Cremades, Luca Guastoni +1

Turbulent-flow control aims to develop strategies that effectively manipulate fluid systems, such as the reduction of drag in transportation and enhancing energy efficiency, both c…

physics.flu-dyn2025

Deep-reinforcement-learning-based separation control in a two-dimensional airfoil

Xavier Garcia, Arnau Miró, Pol Suárez +5

The aim of this study is to discover new active-flow-control (AFC) techniques for separation mitigation in a two-dimensional NACA 0012 airfoil at a Reynolds number of 3000. To find…

physics.flu-dyn20242 cited

On Deep-Learning-Based Closures for Algebraic Surrogate Models of Turbulent Flows

Benet Eiximeno, Marcial Sanchís-Agudo, Arnau Miró +3

A deep-learning-based closure model to address energy loss in low-dimensional surrogate models based on proper-orthogonal-decomposition (POD) modes is introduced. Using a transform…

physics.flu-dyn20247 cited

Deep reinforcement learning for the management of the wall regeneration cycle in wall-bounded turbulent flows

Giorgio Maria Cavallazzi, Luca Guastoni, Ricardo Vinuesa +1

The wall cycle in wall-bounded turbulent flows is a complex turbulence regeneration mechanism that remains not fully understood. This study explores the potential of deep reinforce…

physics.flu-dyn2024

Multi-agent reinforcement learning for the control of three-dimensional Rayleigh-Bénard convection

Joel Vasanth, Jean Rabault, Francisco Alcántara-Ávila +2

Deep reinforcement learning (DRL) has found application in numerous use-cases pertaining to flow control. Multi-agent RL (MARL), a variant of DRL, has shown to be more effective th…

physics.flu-dyn2024

Active flow control for drag reduction through multi-agent reinforcement learning on a turbulent cylinder at

P. Suárez, F. Álcantara-Ávila, A. Miró +4

This study presents novel drag reduction active-flow-control (AFC) strategies} for a three-dimensional cylinder immersed in a flow at a Reynolds number based on freestream velocity…