Abstrakt
This paper presents a numerical investigation into a prototype energy harvesting system utilizing airflow around a bluff-body. The system consists of a flexible cantilever beam in a flag configuration with bonded piezoelectric transducers, integrated with a nonlinear triple-well potential established by auxiliary elastic elements. Three distinct bluff-body geometries—triangular, square, and semi-circular—with characteristic heights of 20 mm and 30 mm were analyzed. Aerodynamic excitation parameters were identified using CFD simulations, comparing exact and simplified mathematical representations of the lift force. The system’s dynamical response was evaluated through bifurcation diagrams, Diagrams of Coexisting Solutions (DS), and 3D Poincaré sections for zero and variable initial conditions. The results indicate that the triangular cross-section provides the widest frequency band for high-amplitude inter-well oscillations, maximizing energy harvesting effectiveness. A key innovation of this study is the demonstration that the simplified excitation model provides sufficient accuracy for rapid engineering design while significantly reducing computational overhead. Furthermore, it highlights the practical applicability of a flag-type system integrated with flexible elements to stabilize the beam’s free end.
| Język oryginału | angielski |
|---|---|
| Numer artykułu | 2575 |
| Czasopismo | Energies |
| Tom | 19 |
| Numer wydania | 11 |
| Identyfikatory DOI | |
| Status publikacji | Opublikowano - cze 2026 |
Obszary tematyczne ASJC Scopus
- Energia odnawialna, zrównoważony rozwój i środowisko
- Technologia paliwowa
- Inżynieria (różne)
- Inżynieria energetyczna i technologia energetyczna
- Energia (różne)
- Sterowanie i optymalizacja
- Inżynieria elektryczna i elektroniczna
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