This manuscript presents a numerical investigation of the turbulent boundary layer-trailing edge (TBL-TE) noise reduction with an open-cell porous material. The implementation of the porous media is verified by emulating a facility for characterizing the flow resistivity of the porous material. Subsequently, the porous media is applied on the trailing edge of a NACA 0018 airfoil to examine its capability to mitigate TBL-TE noise. The airfoil is set at zero angle of attack and the chord-based Reynolds number is 2.8 × 10 5. Boundary layer profiles and integral boundary layer quantities have been compared with reference experimental data. The noise reduction obtained with the porous trailing edge at low to mid frequency ranges has been found t...
The impact of porous material with variable properties on trailing-edge noise is analyzed by a high ...
For many aerospace applications, the dominant airfoil self-noise source is Turbulent Boundary Layer ...
The present work aims at evaluating the effectiveness of the use of porous materials for reducing ai...
This manuscript presents a numerical investigation of the turbulent boundary layer-trailing edge (TB...
Open-cell porous materials have been reported as a promising concept for mitigating turbulent bounda...
The turbulent flow over a NACA 0018 airfoil with porous trailing edge inserts and the resulting scat...
The hydrodynamic and acoustic fields for a NACA 0018 with solid and porous trailing edge inserts are...
This manuscript presents a numerical investigation of an open-cell 3D-printed perme-able/porous inse...
This study focuses upon a new permeable topology design concept as an alternative to porous metal fo...
Numerical simulations, using a lattice-Boltzmann technique, have been carried out to study the effec...
Edge noise is generated if turbulence interacts with solid edges. Reduction of trailing edge noise o...
In the framework of the German Collaborative Research Center CRC 880: Fundamentals of High Lift for...
The turbulent flow over a porous trailing edge of a NACA 0018 airfoil is experimentally investigated...
A possible strategy for the reduction of the aeroacoustic noise generated by turbulence interacting ...
The reduction of trailing edge sound by application of porous material at the rear part of a NACA001...
The impact of porous material with variable properties on trailing-edge noise is analyzed by a high ...
For many aerospace applications, the dominant airfoil self-noise source is Turbulent Boundary Layer ...
The present work aims at evaluating the effectiveness of the use of porous materials for reducing ai...
This manuscript presents a numerical investigation of the turbulent boundary layer-trailing edge (TB...
Open-cell porous materials have been reported as a promising concept for mitigating turbulent bounda...
The turbulent flow over a NACA 0018 airfoil with porous trailing edge inserts and the resulting scat...
The hydrodynamic and acoustic fields for a NACA 0018 with solid and porous trailing edge inserts are...
This manuscript presents a numerical investigation of an open-cell 3D-printed perme-able/porous inse...
This study focuses upon a new permeable topology design concept as an alternative to porous metal fo...
Numerical simulations, using a lattice-Boltzmann technique, have been carried out to study the effec...
Edge noise is generated if turbulence interacts with solid edges. Reduction of trailing edge noise o...
In the framework of the German Collaborative Research Center CRC 880: Fundamentals of High Lift for...
The turbulent flow over a porous trailing edge of a NACA 0018 airfoil is experimentally investigated...
A possible strategy for the reduction of the aeroacoustic noise generated by turbulence interacting ...
The reduction of trailing edge sound by application of porous material at the rear part of a NACA001...
The impact of porous material with variable properties on trailing-edge noise is analyzed by a high ...
For many aerospace applications, the dominant airfoil self-noise source is Turbulent Boundary Layer ...
The present work aims at evaluating the effectiveness of the use of porous materials for reducing ai...