Transverse galloping is a type of aeroelastic instability characterized by large amplitude, low frequency, normal to wind oscillations that appear in some elastic two-dimensional bluff bodies when subjected to a fluid flow, provided that the flow velocity exceeds a threshold critical value. Such an oscillatory motion is explained because of the energy transfer from the flow to the two-dimensional bluff body. The 7 amount of energy that can be extracted depends on the cross section of the galloping prism. Assuming that the Glauert-Den Hartog quasistatic criterion for galloping instability is satisfied in a first approximation, the suitability of a given cross section for energy harvesting is evaluated by analyzing the lateral aerodynamic for...
International audienceWe study the energy harvesting from the galloping oscillations of rigid prisms...
This is the final version. Available from the publisher via the DOI in this record.This paper presen...
Due to a large oscillation amplitude, galloping can be an admissible scenario to actuate the piezoel...
A numerical method to analyse the stability of transverse galloping based on experimental measuremen...
This paper offers a theoretical study of energy extraction through transverse galloping using a dual...
In this paper a coupled fluid-structure model of a flexible crank-rod connected to an electrical gen...
The aeroelastic galloping of a cantilever with attached prism has recently attracted the attention o...
Transverse galloping is a type of aeroelastic instability characterized by oscillations perpendicula...
With growing demand for small autonomous electrical devices, such as those in wireless sensor networ...
Aeroelastic energy harvesters are a promising technology for powering wireless sensors and microelec...
A fully coupled electro-fluid-elastic model for electromagnetic energy harvesting from Transverse Ga...
In this paper, the maximum obtainable energy from a galloping cantilever beam is found. The system c...
This thesis investigates the potential of energy harvesting through fluid-elastic galloping through ...
Aeroelastic energy harvesters are a promising technology for powering wireless sensors and microelec...
Aeroelastic is a physical phenomenon involving the interaction of inertia, elastic and aerodynamics ...
International audienceWe study the energy harvesting from the galloping oscillations of rigid prisms...
This is the final version. Available from the publisher via the DOI in this record.This paper presen...
Due to a large oscillation amplitude, galloping can be an admissible scenario to actuate the piezoel...
A numerical method to analyse the stability of transverse galloping based on experimental measuremen...
This paper offers a theoretical study of energy extraction through transverse galloping using a dual...
In this paper a coupled fluid-structure model of a flexible crank-rod connected to an electrical gen...
The aeroelastic galloping of a cantilever with attached prism has recently attracted the attention o...
Transverse galloping is a type of aeroelastic instability characterized by oscillations perpendicula...
With growing demand for small autonomous electrical devices, such as those in wireless sensor networ...
Aeroelastic energy harvesters are a promising technology for powering wireless sensors and microelec...
A fully coupled electro-fluid-elastic model for electromagnetic energy harvesting from Transverse Ga...
In this paper, the maximum obtainable energy from a galloping cantilever beam is found. The system c...
This thesis investigates the potential of energy harvesting through fluid-elastic galloping through ...
Aeroelastic energy harvesters are a promising technology for powering wireless sensors and microelec...
Aeroelastic is a physical phenomenon involving the interaction of inertia, elastic and aerodynamics ...
International audienceWe study the energy harvesting from the galloping oscillations of rigid prisms...
This is the final version. Available from the publisher via the DOI in this record.This paper presen...
Due to a large oscillation amplitude, galloping can be an admissible scenario to actuate the piezoel...