In the present study, the aerodynamic performance of a rigid two-dimensional pitching bio-inspired corrugate airfoil was numerically investigated at Reynolds number of 14000. The Open Field Operations And Manipulations (OpenFOAM) computational fluid dynamic tool is used to solve flow governing equations numerically. The k-ω SST turbulence model with low Reynolds correction (k-ω SST LRC) and the pimpleDyMFOAM solver are utilized to simulate the flow field around pitching bio-airfoil. The lift and drag coefficients of the airfoil are calculated at reduced frequencies k=1.24-4.96 and the angular amplitude of A=5°-20°. Results show that in a fixed reduced frequency, the absolute value of the sectional lift and drag coefficients increase with in...
Natural flight has always been the source of imagination for the Human being, but reprod...
[[abstract]]The development of biomimetic micro-aerial-vehicles (MAVs) with flapping wings is the fu...
Some insects possess corrugated wings, which distinguish from the ordinary airfoils. It is important...
Recently, lots of oscillating targets inspired from motions of some insects and birds have been appl...
Previous study by Flint et al. [1] investigated the flow behaviour of a single bio-inspired corrugat...
The flow structures and surface pressure distributions on corrugated airfoils significantly differed...
The purpose of the present study is to investigate the influence of cross-sectional veins topology o...
This report is a follow-up study on the aerodynamic performances of unconventional aerofoils, partic...
An experimental study was conducted to investigate the flow behavior around a bioinspired corrugated...
A comprehensive computational study of the aerodynamic performance and stability characteristics of ...
A computational study was performed to analyze the airflow over bio-inspired corrugated wings. The b...
The thrust generation performance of airfoils with modified pitching motion was investigated by comp...
This project presents the study of the aerodynamic forces acting on a plunging and pitching airfoil ...
The development of biomimetic micro-aerial-vehicles (MAVs) with flapping wings is the future trend i...
“Bio-inspired ” wing sections, so aptly named because their profile is defined by corrugated section...
Natural flight has always been the source of imagination for the Human being, but reprod...
[[abstract]]The development of biomimetic micro-aerial-vehicles (MAVs) with flapping wings is the fu...
Some insects possess corrugated wings, which distinguish from the ordinary airfoils. It is important...
Recently, lots of oscillating targets inspired from motions of some insects and birds have been appl...
Previous study by Flint et al. [1] investigated the flow behaviour of a single bio-inspired corrugat...
The flow structures and surface pressure distributions on corrugated airfoils significantly differed...
The purpose of the present study is to investigate the influence of cross-sectional veins topology o...
This report is a follow-up study on the aerodynamic performances of unconventional aerofoils, partic...
An experimental study was conducted to investigate the flow behavior around a bioinspired corrugated...
A comprehensive computational study of the aerodynamic performance and stability characteristics of ...
A computational study was performed to analyze the airflow over bio-inspired corrugated wings. The b...
The thrust generation performance of airfoils with modified pitching motion was investigated by comp...
This project presents the study of the aerodynamic forces acting on a plunging and pitching airfoil ...
The development of biomimetic micro-aerial-vehicles (MAVs) with flapping wings is the future trend i...
“Bio-inspired ” wing sections, so aptly named because their profile is defined by corrugated section...
Natural flight has always been the source of imagination for the Human being, but reprod...
[[abstract]]The development of biomimetic micro-aerial-vehicles (MAVs) with flapping wings is the fu...
Some insects possess corrugated wings, which distinguish from the ordinary airfoils. It is important...