Fluid-structure interactions of elastic membrane aerofoils are investigated at Reynolds number and low angle of attack. The dynamics of the fluid and membrane coupled system are solved using direct numerical simulation (DNS), where the geometry and boundary conditions were applied using a boundary data immersion method. Although membrane aerofoils improve the aerodynamic performance close to stall conditions compared to rigid aerofoils, it has previously been found that membrane aerofoils show lower aerodynamic efficiency at low angles of attack. This study focuses on the coupling mechanism at an angle of attack of 8 degrees, which is below the stall angle. The dynamic behaviour of the coupled system was characterised via spectral analysis ...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
The aerodynamic mechanisms modifying the dynamic response of membrane structures oscillating in stil...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
This thesis investigates the fluid-structure interaction (FSI) problem of elastic membrane aerofoils...
This work presents numerical and experimental investigations of an elasto-flexible membrane wing at ...
This work presents numerical and experimental investigations of an elasto-flexible membrane wing at ...
The geometry of the rigid leading and trailing edges that hold the membrane could affect the aeromec...
Direct numerical simulations (DNS) of membrane wings at low Reynolds numbers were performed at diffe...
Wind tunnel experiments are conducted at a Reynolds number of Re = 56,000, measuring rigid flat-plat...
Wind tunnel experiments are conducted at a Reynolds number of Re = 56,000, measuring rigid flat-plat...
Wind tunnel tests were conducted on an aero-elastic model of an open-type one-way tensioned membrane...
Purpose The purpose of this exhaustive experimental study is to investigate the fluid-structure inte...
Purpose The purpose of this exhaustive experimental study is to investigate the fluid-structure inte...
In order to study the aerodynamic performance of a semi-flexible membrane wing, Fluid-Structure Inte...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
The aerodynamic mechanisms modifying the dynamic response of membrane structures oscillating in stil...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
This thesis investigates the fluid-structure interaction (FSI) problem of elastic membrane aerofoils...
This work presents numerical and experimental investigations of an elasto-flexible membrane wing at ...
This work presents numerical and experimental investigations of an elasto-flexible membrane wing at ...
The geometry of the rigid leading and trailing edges that hold the membrane could affect the aeromec...
Direct numerical simulations (DNS) of membrane wings at low Reynolds numbers were performed at diffe...
Wind tunnel experiments are conducted at a Reynolds number of Re = 56,000, measuring rigid flat-plat...
Wind tunnel experiments are conducted at a Reynolds number of Re = 56,000, measuring rigid flat-plat...
Wind tunnel tests were conducted on an aero-elastic model of an open-type one-way tensioned membrane...
Purpose The purpose of this exhaustive experimental study is to investigate the fluid-structure inte...
Purpose The purpose of this exhaustive experimental study is to investigate the fluid-structure inte...
In order to study the aerodynamic performance of a semi-flexible membrane wing, Fluid-Structure Inte...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...
The aerodynamic mechanisms modifying the dynamic response of membrane structures oscillating in stil...
An approach for predicting time varying aerodynamic loads on a pitching membrane wing due to rotatio...