Mukogawa, Taisei, Shimura, Kento, Dong, Shuonan, Fujita, Koji, Nagai, Hiroki, Kameyama, Masaki, Shi, Yu, Jia, Yu, Soutis, Constantinos, Kurita, Hiroki, Narita, Fumio, Hara, Yushin, Makihara, Kanjuro and Otsuka, Keisuke (2025). Piezoelectric flutter energy harvesting: Absolute nodal coordinate formulation model and wind tunnel experiment. Mechanics Research Communications, 143 ,
Abstract
This study proposes a new flutter harvesting analysis framework based on an absolute nodal coordinate formulation (ANCF) model that includes a nonlinear finite element method, a three-dimensional unsteady vortex lattice method that considers nonlinearities, and a piezoelectric equation. Because conventional studies assumed no extensionality of the neutral axis, use of flutter harvester configurations was restricted. However, this framework using the ANCF model can be applied to different configurations (e.g., extensible harvesters with fixed-fixed boundaries or multibody harvesters). The feasibility of the proposed method was verified by conducting wind tunnel experiments. The frequencies, root mean square (RMS) displacements, and RMS voltages of the analysis and experiment were compared. The difference between experiment and analysis was 23% in terms of frequencies. One of the reasons for the difference was viscous drag. Although the results were not a perfect match, the introduction of a viscous drag model will be considered in future studies to enhance this framework.
Publication DOI: | https://doi.org/10.1016/j.mechrescom.2024.104351 |
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Divisions: | College of Engineering & Physical Sciences > School of Engineering and Technology > Mechanical, Biomedical & Design College of Engineering & Physical Sciences > Smart and Sustainable Manufacturing College of Engineering & Physical Sciences > Aston Advanced Materials College of Engineering & Physical Sciences |
Funding Information: | This work was supported by the Japan Society for the Promotion of Science (JSPS) KAKENHI (grant numbers 21K14341 and 22K18853), the Ebara Hatakeyama Memorial Foundation, the Nohmura Foundation for Membrane Structure Technology, the Mazak Foundation, and t |
Additional Information: | Copyright © 2024 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (https://creativecommons.org/licenses/by/4.0/). |
Uncontrolled Keywords: | Absolute nodal coordinate formulation,Wind tunnel experiment,Flutter,Energy harvesting,Unsteady vortex lattice method |
Publication ISSN: | 0093-6413 |
Last Modified: | 31 Mar 2025 07:27 |
Date Deposited: | 10 Jan 2025 18:31 |
Full Text Link: | |
Related URLs: |
https://www.sci ... 093641324001113
(Publisher URL) http://www.scop ... tnerID=8YFLogxK (Scopus URL) |
PURE Output Type: | Article |
Published Date: | 2025-01 |
Published Online Date: | 2024-11-30 |
Accepted Date: | 2024-11-29 |
Authors: |
Mukogawa, Taisei
Shimura, Kento Dong, Shuonan Fujita, Koji Nagai, Hiroki Kameyama, Masaki Shi, Yu Jia, Yu ( ![]() Soutis, Constantinos Kurita, Hiroki Narita, Fumio Hara, Yushin Makihara, Kanjuro Otsuka, Keisuke |