Effect of tower and nacelle on the flow past a wind turbine C Santoni, K Carrasquillo, I Arenas‐Navarro, S Leonardi Wind Energy 20 (12), 1927-1939, 2017 | 128 | 2017 |
Data-driven reduced order model for prediction of wind turbine wakes GV Iungo, C Santoni-Ortiz, M Abkar, F Porté-Agel, MA Rotea, S Leonardi Journal of Physics: Conference Series 625 (1), 012009, 2015 | 97 | 2015 |
Fluid dynamics simulations show that facial masks can suppress the spread of COVID-19 in indoor environments A Khosronejad, C Santoni, K Flora, Z Zhang, S Kang, S Payabvash, ... Aip Advances 10 (12), 2020 | 66 | 2020 |
Towards reduced order modelling for predicting the dynamics of coherent vorticity structures within wind turbine wakes M Debnath, C Santoni, S Leonardi, GV Iungo Phil. Trans. R. Soc. A 375 (2091), 20160108, 2017 | 64 | 2017 |
Development of a high fidelity CFD code for wind farm control C Santoni, U Ciri, M Rotea, S Leonardi 2015 American Control Conference (ACC), 1715-1720, 2015 | 51 | 2015 |
Large‐eddy simulations with extremum‐seeking control for individual wind turbine power optimization U Ciri, M Rotea, C Santoni, S Leonardi Wind Energy 20 (9), 1617-1634, 2017 | 35 | 2017 |
One‐way mesoscale‐microscale coupling for simulating a wind farm in North Texas: Assessment against SCADA and LiDAR data C Santoni, EJ García‐Cartagena, U Ciri, L Zhan, G Valerio Iungo, ... Wind Energy 23 (3), 691-710, 2020 | 33 | 2020 |
Effects of the subgrid-scale modeling in the lare-eddy simulations of wind turbines and wind farms U Ciri, K Carrasquillo, C Santoni, GV Iungo, M Salvetti, S Leonardi Proceedings of the 10th Workshop of Direct and Large-Eddy Simulation …, 2015 | 24* | 2015 |
Time-averaged wind turbine wake flow field prediction using autoencoder convolutional neural networks Z Zhang, C Santoni, T Herges, F Sotiropoulos, A Khosronejad Energies 15 (1), 41, 2021 | 23 | 2021 |
Large eddy simulation for an array of turbines with extremum seeking control U Ciri, M Rotea, C Santoni, S Leonardi 2016 American control conference (ACC), 531-536, 2016 | 23 | 2016 |
Coupling of mesoscale Weather Research and Forecasting model to a high fidelity Large Eddy Simulation C Santoni, EJ García-Cartagena, U Ciri, GV Iungo, S Leonardi Journal of Physics: Conference Series 1037 (6), 062010, 2018 | 18 | 2018 |
Toward control co-design of utility-scale wind turbines: Collective vs. individual blade pitch control C Santoni, A Khosronejad, P Seiler, F Sotiropoulos Energy Reports 9, 793-806, 2023 | 10 | 2023 |
Numerical study on the effect of bank vegetation on the hydrodynamics of the American River under flood conditions K Flora, C Santoni, A Khosronejad Journal of Hydraulic Engineering 147 (9), 05021006, 2021 | 10 | 2021 |
Coupling turbulent flow with blade aeroelastics and control modules in large-eddy simulation of utility-scale wind turbines C Santoni, A Khosronejad, X Yang, P Seiler, F Sotiropoulos Physics of Fluids 35 (1), 2023 | 9 | 2023 |
Toward prediction of turbulent atmospheric flows over propagating oceanic waves via machine-learning augmented large-eddy simulation Z Zhang, X Hao, C Santoni, L Shen, F Sotiropoulos, A Khosronejad Ocean Engineering 280, 114759, 2023 | 7 | 2023 |
American Control Conference (ACC) C Santoni, U Ciri, M Rotea, S Leonardi IEEE, 2015 | 6 | 2015 |
Development of a surrogate model for wind farm control U Ciri, C Santoni, F Bernardoni, MV Salvetti, S Leonardi 2019 American Control Conference (ACC), 2849-2854, 2019 | 3 | 2019 |
Effect of topography on wind turbine power and load fluctuations C Santoni, U Ciri, S Leonardi Bulletin of the American Physical Society 60, 2015 | 3 | 2015 |
A Comparative Analysis of Actuator-Based Turbine Structure Parametrizations for High-Fidelity Modeling of Utility-Scale Wind Turbines under Neutral Atmospheric Conditions C Santoni, F Sotiropoulos, A Khosronejad Energies 17 (3), 753, 2024 | 2 | 2024 |
A data-driven machine learning approach for yaw control applications of wind farms C Santoni, Z Zhang, F Sotiropoulos, A Khosronejad Theoretical and Applied Mechanics Letters 13 (5), 100471, 2023 | 1 | 2023 |