Coupled aero-hydro-servo-elastic methods for floating wind turbines J Chen, Z Hu, G Liu, D Wan Renewable energy 130, 139-153, 2019 | 76 | 2019 |
Review of experimental-numerical methodologies and challenges for floating offshore wind turbines P Chen, J Chen, Z Hu Journal of Marine Science and Application 19, 339-361, 2020 | 71 | 2020 |
Comparisons of the dynamical characteristics of a semi-submersible floating offshore wind turbine based on two different blade concepts J Chen, Z Hu, D Wan, Q Xiao Ocean engineering 153, 305-318, 2018 | 47 | 2018 |
Experimental investigation of aerodynamic effect–induced dynamic characteristics of an OC4 semi-submersible floating wind turbine J Chen, Z Hu Proceedings of the Institution of Mechanical Engineers, Part M: Journal of …, 2018 | 25 | 2018 |
Software-in-the-Loop combined Reinforcement learning method for Dynamic Response Analysis of FOWTs P Chen, J Chen, Z Hu Frontiers in Marine Science 7, 628225, 2021 | 18 | 2021 |
Comparisons of dynamical characteristics of a 5 MW floating wind turbine supported by a spar-buoy and a semi-submersible using model testing methods J Chen, Z Hu, F Duan Journal of Renewable and Sustainable Energy 10 (5), 2018 | 17 | 2018 |
Simulation annealing diagnosis algorithm method for optimized forecast of the dynamic response of floating offshore wind turbines P Chen, L Song, J Chen, Z Hu Journal of Hydrodynamics 33 (2), 216-225, 2021 | 15 | 2021 |
Experimental investigation of aerodynamic damping effects on a semi-submersible floating offshore wind turbine J Chen, F Duan, Z Hu ISOPE International Ocean and Polar Engineering Conference, ISOPE-I-17-011, 2017 | 15 | 2017 |
Aerodynamic damping of a semi-submersible floating wind turbine: An analytical, numerical and experimental study C Yang, P Chen, Z Cheng, L Xiao, J Chen, L Liu Ocean Engineering 281, 114826, 2023 | 14 | 2023 |
Comparison of different dynamic models for floating wind turbines J Chen, Z Hu, G Liu, Y Tang Journal of Renewable and Sustainable Energy 9 (6), 2017 | 14 | 2017 |
Study on gyroscopic effect of floating offshore wind turbines J Chen, A Pei, P Chen, Z Hu China Ocean Engineering 35 (2), 201-214, 2021 | 13 | 2021 |
Study on aerodynamic damping of semi-submersible floating wind turbines C Jiahao, H Zhiqiang Chinese Journal of Theoretical and Applied Mechanics 51 (4), 1255-1265, 2019 | 11 | 2019 |
A Review of the Key Technologies for Floating Offshore Wind Turbines C Jiahao, PEI Aiguo, MA Zhaorong, P Chengyan 南方能源建设 7 (1), 8-20, 2020 | 10 | 2020 |
半潜式海上浮式风机气动阻尼特性研究 陈嘉豪, 胡志强 力学学报 51 (4), 1255-1265, 2019 | 7 | 2019 |
Investigation on high-order coupled rigid-flexible multi-body dynamic code for offshore floating wind turbines Z Hu, J Chen, G Liu International Conference on Offshore Mechanics and Arctic Engineering 57786 …, 2017 | 7 | 2017 |
Study on rigid-flexible coupling effects of floating offshore wind turbines J Chen, Z Hu, G Liu, D Wan China Ocean Engineering 33 (1), 1-13, 2019 | 5 | 2019 |
海上浮式风机时域耦合程序原理及其验证 陈嘉豪, 刘格梁, 胡志强 上海交通大学学报 53 (12), 1440, 2019 | 3 | 2019 |
Study on wake characteristics of fixed wind turbines and floating wind turbines arranged in tandem K Wang, S Chen, J Chen, M Zhao, Y Lin Ocean Engineering 304, 117808, 2024 | 2 | 2024 |
A higher-order coupling model of the blades of the floating offshore wind turbine J Chen, Z Hu Progress in the Analysis and Design of Marine Structures, 879-888, 2017 | 2 | 2017 |
Development and validation of a time-domain coupling simulation code for floating offshore wind turbines C Jiahao, LIU Geliang, HU Zhiqiang Journal of Shanghai jiaotong university 53 (12), 1440, 0 | 2 | |