Control co-design of 13 MW downwind two-bladed rotors to achieve 25% reduction in levelized cost of wind energy LY Pao, DS Zalkind, DT Griffith, M Chetan, MS Selig, GK Ananda, CJ Bay, ... Annual Reviews in Control 51, 331-343, 2021 | 57 | 2021 |
Multi‐fidelity digital twin structural model for a sub‐scale downwind wind turbine rotor blade M Chetan, S Yao, DT Griffith Wind Energy 24 (12), 1368-1387, 2021 | 46 | 2021 |
System-level design studies for large rotors DS Zalkind, GK Ananda, M Chetan, DP Martin, CJ Bay, KE Johnson, ... Wind Energy Science 4 (4), 595-618, 2019 | 39 | 2019 |
Aero-structural design and optimization of 50 MW wind turbine with over 250-m blades S Yao, M Chetan, DT Griffith, AS Escalera Mendoza, MS Selig, D Martin, ... Wind Engineering 46 (1), 273-295, 2022 | 31 | 2022 |
Assessment of flutter prediction and trends in the design of large-scale wind turbine rotor blades DT Griffith, M Chetan Journal of Physics: Conference Series 1037 (4), 042008, 2018 | 27 | 2018 |
A gravo-aeroelastically scaled wind turbine rotor at field-prototype scale with strict structural requirements S Yao, DT Griffith, M Chetan, CJ Bay, R Damiani, M Kaminski, E Loth Renewable Energy 156, 535-547, 2020 | 26 | 2020 |
Design and testing of a scaled demonstrator turbine at the national wind technology center CJ Bay, R Damiani, LJ Fingersh, S Hughes, M Chetan, S Yao, DT Griffith, ... AIAA Scitech 2019 forum, 1068, 2019 | 23 | 2019 |
Flutter predictions in the design of extreme-scale segmented ultralight morphing rotor blades M Chetan, DT Griffith, S Yao AIAA Scitech 2019 forum, 1298, 2019 | 21 | 2019 |
Structural design and optimization of a series of 13.2 MW downwind rotors S Yao, M Chetan, DT Griffith Wind Engineering, 0309524X20984164, 2021 | 19 | 2021 |
Structural Design of a 1/5th Scale Gravo-Aeroelastically Scaled Wind Turbine Demonstrator Blade for Field Testing S Yao, DT Griffith, M Chetan, CJ Bay, R Damiani, M Kaminski, E Loth AIAA Scitech 2019 forum, 1067, 2019 | 17 | 2019 |
Gravo‐aeroelastic scaling of a 13‐MW downwind rotor for 20% scale blades M Kaminski, C Noyes, E Loth, R Damiani, S Hughes, C Bay, M Chetan, ... Wind Energy 24 (3), 229-245, 2021 | 14 | 2021 |
Design and analysis of a segmented blade for a 50 MW wind turbine rotor AS Escalera Mendoza, S Yao, M Chetan, DT Griffith Wind Engineering 46 (4), 1146-1172, 2022 | 13 | 2022 |
Aero-structural design study of extreme-scale segmented ultralight morphing rotor blades M Chetan, MS Sakib, DT Griffith, S Yao AIAA aviation 2019 forum, 3347, 2019 | 13 | 2019 |
A methodology for robust load reduction in wind turbine blades using flow control devices A Gupta, MA Rotea, M Chetan, MS Sakib, DT Griffith Energies 14 (12), 3500, 2021 | 10 | 2021 |
Flutter behavior of highly flexible blades for two-and three-bladed wind turbines M Chetan, S Yao, DT Griffith Wind Energy Science 7 (4), 1731-1751, 2022 | 9 | 2022 |
Design of a 3.4‐MW wind turbine with integrated plasma actuator‐based load control M Chetan, MS Sakib, DT Griffith, A Gupta, MA Rotea Wind Energy 25 (3), 517-536, 2022 | 7 | 2022 |
Quantification of extreme-scale wind turbine performance parameters due to variations in beam properties AS Escalera Mendoza, M Chetan, DT Griffith AIAA Scitech 2021 forum, 1603, 2021 | 7 | 2021 |
Design space exploration and decision‐making for a segmented ultralight morphing 50‐MW wind turbine S Kianbakht, D Martin, K Johnson, D Zalkind, L Pao, E Loth, J Simpson, ... Wind Energy 25 (12), 2016-2035, 2022 | 4 | 2022 |
Development of high‐fidelity design‐driven wind blade manufacturing process models to investigate labor predictions in wind blade manufacture SB Johnson, M Chetan, DT Griffith, JA Sherwood Wind Energy 25 (8), 1313-1331, 2022 | 4 | 2022 |
Effect of wind turbine size on load reduction with active flow control A Gupta, MA Rotea, M Chetan, MS Sakib, DT Griffith Journal of Physics: Conference Series 2265 (3), 032093, 2022 | 2 | 2022 |