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Actuators | Free Full-Text | Deep Reinforcement Learning for Flow Control Exploits Different Physics for Increasing Reynolds Number Regimes
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![Comparison of the velocity magnitude without (top) and with (bottom) active flow control, reproduced from Rabault et al. (2019). A clear modification of the cylinder wake, similar to what would be obtained with boat-tailing, is visible. Comparison of the velocity magnitude without (top) and with (bottom) active flow control, reproduced from Rabault et al. (2019). A clear modification of the cylinder wake, similar to what would be obtained with boat-tailing, is visible.](https://www.researchgate.net/profile/Jean-Rabault-2/publication/335135215/figure/fig5/AS:791275838140416@1565666269345/Comparison-of-the-velocity-magnitude-without-top-and-with-bottom-active-flow-control_Q640.jpg)
Comparison of the velocity magnitude without (top) and with (bottom) active flow control, reproduced from Rabault et al. (2019). A clear modification of the cylinder wake, similar to what would be obtained with boat-tailing, is visible.
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Jean RABAULT | Senior Engineer | PhD Fluid Mechanics and Applied Mathematics | Norwegian Meteorological Institute, Oslo | Information Technology Department | Research profile
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Jean RABAULT | Senior Engineer | PhD Fluid Mechanics and Applied Mathematics | Norwegian Meteorological Institute, Oslo | Information Technology Department | Research profile
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