A review of flow-induced vibration energy harvesters

X Ma, S Zhou - Energy Conversion and Management, 2022 - Elsevier
With the rapid development of wireless sensor networks, medical equipment, and
microelectromechanical systems, providing clean and self-sustained energy for these …

The state-of-the-art review on energy harvesting from flow-induced vibrations

J Wang, L Geng, L Ding, H Zhu, D Yurchenko - Applied Energy, 2020 - Elsevier
In this paper, the currently popular flow-induced vibrations energy harvesting technologies
are reviewed, including numerical and experimental endeavors, and some existing or …

Flexible self-powered high-performance ammonia sensor based on Au-decorated MoSe2 nanoflowers driven by single layer MoS2-flake piezoelectric nanogenerator

D Zhang, Z Yang, P Li, M Pang, Q Xue - Nano Energy, 2019 - Elsevier
Smart sensing devices with high reliability and self-powered features are critical in future
generation wearable applications. In this paper, we reported for the first time a room …

A water-proof magnetically coupled piezoelectric-electromagnetic hybrid wind energy harvester

LC Zhao, HX Zou, G Yan, FR Liu, T Tan, WM Zhang… - Applied Energy, 2019 - Elsevier
Small-scale wind energy harvesting can be a potential way to yield endless electrical energy
for small and micro mechanical systems, which has gained extensive interest from both the …

Efficiency investigation on energy harvesting from airflows in HVAC system based on galloping of isosceles triangle sectioned bluff bodies

J Wang, L Tang, L Zhao, Z Zhang - Energy, 2019 - Elsevier
Galloping-based piezoelectric energy harvester (GPEH) has been used in power generation
from small-scale airflows for low-power devices such as Micro-Electromechanical Systems …

A review on mechanisms for piezoelectric-based energy harvesters

H Elahi, M Eugeni, P Gaudenzi - Energies, 2018 - mdpi.com
From last few decades, piezoelectric materials have played a vital role as a mechanism of
energy harvesting, as they have the tendency to absorb energy from the environment and …

Design, modeling and experiments of broadband tristable galloping piezoelectric energy harvester

J Wang, L Geng, S Zhou, Z Zhang, Z Lai… - Acta Mechanica …, 2020 - Springer
Galloping based piezoelectric energy harvester is a kind of micro-environmental energy
harvesting device based on flow-induced vibrations. A novel tristable galloping-based …

Experimental investigation on the efficiency of circular cylinder-based wind energy harvester with different rod-shaped attachments

G Hu, KT Tse, M Wei, R Naseer, A Abdelkefi… - Applied energy, 2018 - Elsevier
The performance of a circular cylinder-based piezoelectric wind energy harvester with two
small-size rod-shaped attachments on the main circular cylinder was experimentally …

Bio-inspired bistable piezoelectric vibration energy harvester: Design and experimental investigation

J Zhou, X Zhao, K Wang, Y Chang, D Xu, G Wen - Energy, 2021 - Elsevier
Inspired by the flight mechanism of dipteran, a novel bionic-dipteran energy harvester
(BDEH) was proposed to collect ultralow-frequency vibration energy. Mimicking the skeletal …

Performance evaluation of twin piezoelectric wind energy harvesters under mutual interference

G Hu, J Wang, Z Su, G Li, H Peng, KCS Kwok - Applied Physics Letters, 2019 - pubs.aip.org
This study evaluated the performance of twin adjacent galloping-based piezoelectric wind
energy harvesters based on mutual interference. The relative position between the twin …