近 5 年围绕流-固-声耦合与仿生流体力学等方向发表学术论文 30 余篇,公开专利及软件著作权 14 项。相关成果发表于 Journal of Fluid Mechanics、Journal of Fluids and Structures、Ocean Engineering、Physics of Fluids、《力学进展》、《清华大学学报》等国内外重要期刊。
1 篇论文被 Advances in Engineering 评选为 Key Scientific Article 并作专题报道;
4 篇论文入选 Physics of Fluids 期刊 Featured Article 或 Editor's Pick;
4 次获国际、国内学术会议优秀论文奖或优秀报告奖(含指导研究生);
获校级及全国学会级优秀博士学位论文。
15 项代表性论文成果如下:
(1) Shenfang Li, Peng Han*, Wei-Xi Huang, Junlei Wang*. Vortex−induced vibration forever of an extreme−light cylinder in an unsteady wake. Journal of Fluid Mechanics, 2026.
(2) Peng Han, Jun-duo Zhang, Dong Zhang, Wei-Xi Huang. How a self-propelled fin gains hydrodynamic advantages behind a circular cylinder with vortex-induced vibrations. Journal of Fluid Mechanics, 2025 1011, A26.
(3) Peng Han, Emmanuel de Langre, Mark C. Thompson, Kerry Hourigan, Jisheng Zhao. Vortex-induced vibration forever even with high structural damping. Journal of Fluid Mechanics, 962, A13, 2023.
(4) Peng Han*, Emmanuel de Langre 2022. There is no critical mass ratio for galloping of a square cylinder under flow. Journal of Fluid Mechanics, 931, A27, 2022.
(5) Peng Han, Wei-Xi Huang, Denghui Qin, Junlei Wang, Jisheng Zhao. An analytical model for estimating the maximum energy harvesting efficiency from vortex-induced vibration. Journal of Fluids and Structures, 122, 2023.
(6) Peng Han, Pascal Hemon, Guang Pan, Emmanuel de Langre. Non-linear modelling of combined galloping and vortex-induced vibration of square sections under flow. Nonlinear Dynamics, 103, 3113-3125, 2021.
(7) Peng Han, Yuhang Qiu, Dong Zhang, Jun-Duo Zhang, Wei-Xi Huang. How initial release styles shape the locomotion and hydrodynamic behavior of a self-propelled fin in unsteady wakes. Acta Mechanica Sinica, 2026.
(8) Peng Han, Zhou, C., Shi, Y., Feng, K., Wang, J.L., Zhao, J.S., 2026. Vortex-induced vibration forever of an ultra-light circular cylinder for robust energy harvesting from fluid flow. Ocean Engineering, 352: 124296.
(9) Shenfang Li, Peng Han*, Junlei Wang, 2025. Enhanced energy harvesting from wake-induced rotation of an extreme light circular cylinder under the unsteady vortices. Ocean Engineering, 341: 122648.
(10) Peng Han*, Q. Huang, Guang Pan, Denghui Qin, Wei Wang, Rodolfo T. Goncalves, Jisheng Zhao, 2023. Optimal energy harvesting efficiency from vortex-induced vibration of a circular cylinder under flow. Ocean Engineering, 282, 114869.
(11) Peng Han, Guang Pan*, Baoshou Zhang, Wei Wang, Wenlong Tian, 2020. Three-cylinder oscillator under flow: Flow induced vibration and energy harvesting. Ocean Engineering, 211: 107619.
(12) Shenfang Li, Junlei Wang*, Baoshou Zhang, Peng Han*, 2024. Flow-induced vibrations of a circular cylinder positioned upstream of a fixed cylinder. Physics of Fluids, 36: 8.
(13) Li, B., Li, H.C., Zhong, Y.J., Baoshou Zhang*, Li, S.F., Wang, J.L., Zhang, R., Peng Han*, 2025. Flow-induced vibrations of a square cylinder at different angles of attack: The importance of the in-line vibrations. Physics of Fluids, 37: 2.
(14) Peng Han*, Guang Pan, Wenlong Tian, 2018. Numerical simulation of flow-induced motion of three rigidly coupled cylinders in equilateral-triangle arrangement. Physics of Fluids, 30: 12.
(15) 韩鹏, 张钧铎, 李一然, 范迪夏, 黄伟希. 复杂涡环境中的流固耦合模态研究进展. 力学进展, 2026, 56: 1-62.




