peer reviewedIn this work, we study the non-linear dynamic response of two vertically-arranged aero-piezoelastic harvesters. The numerical framework consists of the following: i) an aerodynamic model based on the unsteady vortex-lattice method; ii) a three degree-of-freedom lumped-parameter model for each harvester; iii) an inter-model connection to exchange information between models at each time step; and iv) a numerical scheme based on Hamming’s fourth-order predictor–corrector method to integrate all the governing equations. Particularly, the effect of nonlinear hardening/softening springs on the harvested output power is investigated. Among the results obtained, an interesting finding is that hardening springs yield larger LCO amplit...
In this paper, the authors introduce a model of a strain-based geometrically nonlinear piezoelectric...
In present era the demand of low power electronic instruments has been increasing and their energy c...
Modeling and comparative analysis of galloping-based hybrid piezoelectric-inductive energy harvestin...
In this work, the authors present a two-dimensional computational model for predicting the aeroelast...
We investigate the effects of the aerodynamic loads on the performance of piezoaeroelastic energy ha...
Converting aeroelastic vibrations into electricity for low power generation has received growing att...
AbstractWe investigate experimentally how controlled freeplay nonlinearity affects harvesting energy...
In the present era, the possibility to generate electrical energy from an operational environment is...
International audienceThis paper presents a nonlinear model that allows accurate consideration of th...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
The model of a geometrically nonlinear wing hosting piezoelectric patches with the dual purpose of s...
In this work, a coupled formulation for modeling multiple piezoelectric energy harvesters based on v...
This article evaluates the amount of energy that can be extracted from a gust using an aeroelastic e...
International audienceAn electromechanical model for beam-like piezoelectric energy harvesters based...
This paper presents an upright piezoelectric energy harvester (UPEH) with cylinder extension along i...
In this paper, the authors introduce a model of a strain-based geometrically nonlinear piezoelectric...
In present era the demand of low power electronic instruments has been increasing and their energy c...
Modeling and comparative analysis of galloping-based hybrid piezoelectric-inductive energy harvestin...
In this work, the authors present a two-dimensional computational model for predicting the aeroelast...
We investigate the effects of the aerodynamic loads on the performance of piezoaeroelastic energy ha...
Converting aeroelastic vibrations into electricity for low power generation has received growing att...
AbstractWe investigate experimentally how controlled freeplay nonlinearity affects harvesting energy...
In the present era, the possibility to generate electrical energy from an operational environment is...
International audienceThis paper presents a nonlinear model that allows accurate consideration of th...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
The model of a geometrically nonlinear wing hosting piezoelectric patches with the dual purpose of s...
In this work, a coupled formulation for modeling multiple piezoelectric energy harvesters based on v...
This article evaluates the amount of energy that can be extracted from a gust using an aeroelastic e...
International audienceAn electromechanical model for beam-like piezoelectric energy harvesters based...
This paper presents an upright piezoelectric energy harvester (UPEH) with cylinder extension along i...
In this paper, the authors introduce a model of a strain-based geometrically nonlinear piezoelectric...
In present era the demand of low power electronic instruments has been increasing and their energy c...
Modeling and comparative analysis of galloping-based hybrid piezoelectric-inductive energy harvestin...