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Title
Cited by
Cited by
Year
Cluster-based network model
H Li, D Fernex, R Semaan, J Tan, M Morzyński, BR Noack
Journal of Fluid Mechanics 906, A21, 2021
542021
Detailed experimental investigations on flow behaviors and velocity field properties of a supersonic mixing layer
J Tan, D Zhang, H Li, J Hou
Acta Astronautica 144, 30-38, 2018
292018
Machine learning open-loop control of a mixing layer
H Li, J Tan, Z Gao, BR Noack
Physics of Fluids 32 (11), 2020
232020
Structural characteristics of supersonic mixing enhanced by introducing streamwise vortices
D Zhang, J Tan, H Li
Applied Physics Letters 111 (11), 2017
212017
Cluster-based Markov model to understand the transition dynamics of a supersonic mixing layer
H Li, J Tan
Physics of Fluids 32 (5), 2020
182020
On the cavity-actuated supersonic mixing layer downstream a thick splitter plate
J Tan, H Li, BR Noack
Physics of Fluids 32 (9), 2020
142020
Investigations on flow and growth properties of a cavity-actuated supersonic planar mixing layer downstream a thick splitter plate
H Li, J Tan, D Zhang, J Hou
International Journal of Heat and Fluid Flow 74, 209-220, 2018
112018
Investigations of self-excited vibration in splitter plate with a cavity in the supersonic mixing layer
H Li, J Tan, J Hou, D Zhang
Aerospace Science and Technology 74, 120-131, 2018
92018
Simultaneous control of combustion instabilities and NOx emissions in a lean premixed flame using linear genetic programming
Y Liu, J Tan, H Li, Y Hou, D Zhang, BR Noack
Combustion and Flame 251, 112716, 2023
82023
Towards human-interpretable, automated learning of feedback control for the mixing layer
H Li, GYC Maceda, Y Li, J Tan, M Morzyński, BR Noack
arXiv preprint arXiv:2008.12924, 2020
42020
Spatial and temporal dynamics of a supersonic mixing layer with a blunt base
L Li, H Li
AIP Advances 11 (8), 2021
2021
Flow-induced vibration in the compressible cavity flow
H Li, J Tan, J Hou
Vibroengineering Procedia 14, 238-243, 2017
2017
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Articles 1–12