Tao Tang
Position: Postdoctor
Email: 20259213@scut.edu.cn
Dr. Tao Tang graduated from Southwest Petroleum University and conducted a series of experimental and numerical investigations on the flow control and flow-induced motions. His research interests now focus on the interactions between gravity flows and underwater facility, and he tries to propose new active and passive methods to control the hydrodynamic forces acting on the pipelines.
Flow control
Flow-induced motions
Gravity flows
2019.09-2025.06: Southwest Petroleum University, Offshore Oil and Gas Engineering (Ph.D.)
2023.05-2025.01: University of Strasthclyde, Department of Naval Architecture, Ocean and Marine Engineering (Visiting researcher)
2017.09-2019.06: Southwest Petroleum University, Offshore Oil and Gas Engineering (M.Sc)
2025.08-present: South China University of Technology, School of Marine Science and Engineering, Postdoctoral Fellow
Tang T, Zhu HJ. Passive control of rotational response of a square cylinder with small circular rods[J]. Physics of Fluids, 2025, 37, 043612.
Tang T, Zhu HJ, Xiao Q, Chen QY, Zhong JW. Role of cross-flow vibrations in the flow-induced rotations of an elastically mounted cylinder-plate system[J]. Physics of Fluids, 2024, 36, 063607.
Tang T, Zhu HJ, Xiao Q, Chen QY, Zhong JW, Li YM, Zhou TM. Coupled responses of the flow-induced vibration and flow-induced rotation of a rigid cylinder-plate body[J]. Ocean Engineering, 2023, 286, 115709.
Tang T, Zhu HJ, Chen QY, Zhong JW, Gao Y. Dynamic response of a circular cylinder in the presence of a detached splitter plate: On the gap distance[J]. Journal of Fluids and Structures, 2023, 119, 103888.
Tang T, Zhu HJ, Li GM, Song JZ. Comparative study of the flow-induced vibration of a circular cylinder attached with front and/or rear splitter plates at a low Reynolds number[J]. Journal of Offshore Mechanics and Arctic Engineering, 2023, 145, 011903.
Tang T, Zhu HJ, Song JZ, Ma BW, Zhou TM. The state-of-the-art review on the wake alteration of a rotating cylinder and the associated interaction with flow-induced vibration[J]. Ocean Engineering, 2022, 254, 111340.
Tang T, Zhu HJ, Wang JS, Alam MM, Song JZ, Chen QY. Flow-induced rotation modes and wake characteristics of a circular cylinder attached with a splitter plate at low Reynolds numbers[J]. Ocean Engineering, 2022, 266, 112823.
Tang T, Zhu HJ, Chen QY, Li GM, Zhou TM. CFD analysis of flow-induced rotation of a circular cylinder with a detached rear splitter plate in laminar flow[J]. Ocean Engineering, 2022, 266, 112703.
Zhu HJ, Tang T, Alam MM, Song JZ, Zhou TM. Flow-induced rotation of a circular cylinder with a detached splitter plate and its bifurcation behavior[J]. Applied Ocean Research, 2022, 122, 103150.
Zhu HJ, Tang T, Zhou TM, Cai MJ, Gaidai O, Wang JL. High performance energy harvesting from flow-induced vibrations in trapezoidal oscillators[J]. Energy, 2021, 236, 121484.
Zhu HJ, Tang T, Gao Y, Zhou TM, Wang JL. Flow-induced vibration of a trapezoidal cylinder placed at typical flow orientations[J]. Journal of Fluids and Structures, 2021, 103, 103291.
Zhu HJ, Tang T, Yang HH, Wang JL, Song JZ, Peng G. The state-of-the-art brief review on piezoelectric energy harvesting from flow-induced vibration[J]. Shock and Vibration, 2021, 8861821.
Zhu HJ, Tang T, Wang JL. Modification of wake flow and air-bubble-vortex interference in the flow control of a circular cylinder with a pair of air jets: Effects of injection velocity[J]. Ocean Engineering, 2020, 214, 107766.
Zhu HJ, Tang T, Zhou TM, Liu HY, Zhong JW. Flow structures around trapezoidal cylinders and their hydrodynamic characteristics: Effects of the base length ratio and attack angle[J]. Physics of Fluids, 2020, 32, 103606.
Zhu HJ, Tang T, Zhao HL, Gao Y. Control of vortex-induced vibration of a circular cylinder using a pair of air jets at low Reynolds number[J]. Physics of Fluids, 2019, 31, 043603.