Enhancing output performance of galloping-based energy harvesting using asymmetric bluff body

Y Zhang, G Cheng, J Seok, J Ding, W Sun - Ocean Engineering, 2024 - Elsevier
This study presents a high-efficiency galloping energy harvester based on the non-rotational
bluff body with Transverse Force Disturbance (TFDEH), which utilizes asymmetric non …

柱体流激振动能量俘获理论与技术研究若干进展

徐万海, 马烨璇 - 力学学报, 2024 - lxxb.cstam.org.cn
潮流能分布广泛, 且储量巨大, 具备巨大的规模化开发利用价值. 流激振动是一种常见的流固耦合
现象, 通过柱体流激振动能够在流速较低时实现有效的能量转换, 基于柱体流激振动的能量俘获 …

Characteristics of flow-induced vibration of cut-corner prisms at different aspect ratios

W Wang, Z Yao - Physics of Fluids, 2024 - pubs.aip.org
This paper presents an experimental investigation of flow-induced vibration characteristics
of cut-corner prisms with various aspect ratios (H*= 1.0–13.33). Experiments were …

SOME ADVANCES IN ENERGY HARVESTING THEORY AND TECHNOLOGY BASED ON FLOW-INDUCED VIBRATION OF CYLINDRICAL STRUCTURES

X Wanhai, M Yexuan - Chinese Journal of Theoretical and …, 2024 - lxxb.cstam.org.cn
Tidal energy, characterized by its widespread distribution and immense reserves, stands as
a promising renewable energy source suitable for large-scale development and utilization …