This study investigates the aerodynamic efficiency of a bioinspired flapping wing rotor kinematics which combines an active vertical flapping motion and a passive horizontal rotation induced by aerodynamic thrust. The aerodynamic efficiencies for producing both vertical lift and horizontal thrust of the wing are obtained using a quasi-steady aerodynamic model and two-dimensional (2D) CFD analysis at Reynolds number of 2500. The calculated efficiency data show that both efficiencies (propulsive efficiency-ηp, and efficiency for producing lift-Pf) of the wing are optimized at Strouhal number (St) between 0.1 and 0.5 for a range of wing pitch angles (upstroke angle of attack αu less than 45°); the St for high Pf (St = 0.1 ∼ 0.3) is generally l...
This paper presents theoretical and experimental analyses of insect flapping mechanics and aerodynam...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
The current investigation focuses on achieving a greater understanding on the aerodynamic phenomena ...
The present work was based on an experimental study on the aerodynamic performance of a flapping win...
By combining the flapping and rotary motion, a bio-inspired flapping wing rotor (FWR) is a unique ki...
Inspired by insect flapping wings, a novel flapping wing rotor (FWR) has been developed for micro ae...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
This paper aims to understand the aerodynamic performance of a bio-inspired flapping-wing model usin...
This project is aimed at developing a bio-inspired flyable micro/nano aerial vehicle (MAV) of high a...
This paper aims to understand the aerodynamic performance of a bio-inspired flapping-wing model usin...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/140674/1/1.j052644.pd
The analysis of the passive rotation feature of a micro Flapping Rotary Wing (FRW) applicable for Mi...
Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.Biologica...
This research investigated the behavior of a Manduca sexta inspired biomimetic wing as a function of...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/97087/1/AIAA2012-29.pd
This paper presents theoretical and experimental analyses of insect flapping mechanics and aerodynam...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
The current investigation focuses on achieving a greater understanding on the aerodynamic phenomena ...
The present work was based on an experimental study on the aerodynamic performance of a flapping win...
By combining the flapping and rotary motion, a bio-inspired flapping wing rotor (FWR) is a unique ki...
Inspired by insect flapping wings, a novel flapping wing rotor (FWR) has been developed for micro ae...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
This paper aims to understand the aerodynamic performance of a bio-inspired flapping-wing model usin...
This project is aimed at developing a bio-inspired flyable micro/nano aerial vehicle (MAV) of high a...
This paper aims to understand the aerodynamic performance of a bio-inspired flapping-wing model usin...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/140674/1/1.j052644.pd
The analysis of the passive rotation feature of a micro Flapping Rotary Wing (FRW) applicable for Mi...
Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.Biologica...
This research investigated the behavior of a Manduca sexta inspired biomimetic wing as a function of...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/97087/1/AIAA2012-29.pd
This paper presents theoretical and experimental analyses of insect flapping mechanics and aerodynam...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
The current investigation focuses on achieving a greater understanding on the aerodynamic phenomena ...