A comparative DES study of wake vortex evolution for ducted and non-ducted propellers J Gong, C Guo, D Zhao, T Wu, K Song Ocean engineering 160, 78-93, 2018 | 80 | 2018 |
Propeller–duct interaction on the wake dynamics of a ducted propeller J Gong, J Ding, L Wang Physics of Fluids 33 (7), 2021 | 77 | 2021 |
Numerical simulation of the wake instabilities of a propeller L Wang, T Wu, J Gong, Y Yang Physics of Fluids 33 (12), 2021 | 70 | 2021 |
Numerical analysis of the wake dynamics of a propeller L Wang, T Wu, J Gong, Y Yang Physics of Fluids 33 (9), 2021 | 58 | 2021 |
Simulation strategy of the full-scale ship resistance and propulsion performance K Song, C Guo, C Sun, C Wang, J Gong, P Li, L Wang Engineering Applications of Computational Fluid Mechanics 15 (1), 1321-1342, 2021 | 30 | 2021 |
Analysis of waterjet-hull interaction and its impact on the propulsion performance of a four-waterjet-propelled ship J Gong, C Guo, C Wang, T Wu, K Song Ocean Engineering 180, 211-222, 2019 | 29 | 2019 |
SPIV measurements and URANS simulations on the inlet velocity distribution for a waterjet-propelled ship with stabiliser fins J Gong, C Guo, K Song, T Wu Ocean engineering 171, 120-130, 2019 | 24 | 2019 |
Hydrodynamic loads and wake dynamics of ducted propeller in oblique flow conditions J Gong, C Guo, N Phan-Thien, BC Khoo Ships and Offshore Structures 15 (6), 645-660, 2020 | 22 | 2020 |
Experimental study on the wake fields of a Panamax Bulker based on stereo particle image velocimetry C Guo, T Wu, W Luo, X Chang, J Gong, W She Ocean engineering 165, 91-106, 2018 | 22 | 2018 |
Dynamics of stabilizer fins on the waterjet-propelled ship J Gong, J Liu, Y Dai, C Guo, T Wu Ocean Engineering 222, 108595, 2021 | 18 | 2021 |
Numerical analysis of vortex and cavitation dynamics of an axial-flow pump J Gong, W Luo, T Wu, Z Zhang Engineering Applications of Computational Fluid Mechanics 16 (1), 1921-1938, 2022 | 17 | 2022 |
Numerical simulation and experimental research on wake field of ships under off-design conditions C Guo, T Wu, Q Zhang, J Gong China ocean engineering 30 (5), 821-834, 2016 | 17 | 2016 |
Particle image velocimetry measurement of velocity distribution at inlet duct of waterjet self-propelled ship model J Gong, C Guo, T Wu, D Zhao Journal of Hydrodynamics, Ser. B 29 (5), 879-893, 2017 | 15 | 2017 |
Numerical study on the unsteady hydrodynamic performance of a waterjet impeller J Gong, CY Guo, TC Wu, KW Song Journal of Coastal Research 34 (1), 151-163, 2018 | 13 | 2018 |
Detached eddy simulation of near wake field and vortex characteristics for a ducted propeller J Gong, C Guo, T Wu, K Song, J Lin J. Shanghai Jiao Tong Univ. 52, 674, 2018 | 12 | 2018 |
2D-3C PIV measurement of the near wake of a ducted propeller J Gong, J Ding, T Wu, J Jiang, C Guo Ocean Engineering 252, 111223, 2022 | 11 | 2022 |
Respective effect of waterjet suction and jet action on hull resistance J Jiang, J Ding, R Chang, H Luo, J Gong Ocean Engineering 255, 111398, 2022 | 9 | 2022 |
Investigation of the influence of an interceptor on the inlet velocity distribution of a waterjet-propelled ship using SPIV technology and RANS simulation K Song, C Guo, C Wang, J Gong, P Li Ships and Offshore Structures 15 (2), 138-152, 2020 | 9 | 2020 |
Effect of hull displacement on hydro-& aerodynamics of a planing trimaran J Jiang, J Ding, J Gong, L Li Applied Ocean Research 120, 103050, 2022 | 7 | 2022 |
Ship energy-saving device: Influence of the scale effect and hull roughness on the resistance reduction effect of an interceptor K Song, J Gong, S Ge, C Sun, H Yang, W Zhang Ocean Engineering 287, 115875, 2023 | 6 | 2023 |