Understanding the effect of flexibility on the aerodynamic characteristics of the wing is one of the most important considerations for successfully designing a flapping wing micro aero vehicle (FMAV). This paper aims at providing a systematic synthesis on the flexibility effects on the hovering performance of the bionic wing based on the numerical analysis approach. We construct a novel three-dimensional bionic wing, which has lumped flexibility at the root, and develop an iterative coupling program to simulate the interaction between the flexible wing and fluid. The effects of flexibility on the hovering performance of the three-dimensional flapping wing are investigated, and the results indicate that the best performance of the wing is ac...
This paper introduces a biological flapping micro air vehicle (FMAV) with four wings, instead of two...
Aiming at developing an effective tool to unveil key mechanisms in bio-flight as well as to provide ...
A flight device for insect-inspired flapping wing nano air vehicles (FWNAVs), which consists of the ...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Since the theoretical aeroelasticity for flapping-wing aerodynamics was introduced in the 1920s, the...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
To design, develop and optimise Micro Air Vehicles (MAVs) the understanding of insect aerody-namics ...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
This paper presents theoretical and experimental analyses of insect flapping mechanics and aerodynam...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
Effects of chordwise, spanwise, and isotropic flexibility on the force generation and propulsive eff...
Effects of flexibility on the force generation and the propulsive efficiency of flapping flexible wi...
This paper introduces a biological flapping micro air vehicle (FMAV) with four wings, instead of two...
Aiming at developing an effective tool to unveil key mechanisms in bio-flight as well as to provide ...
A flight device for insect-inspired flapping wing nano air vehicles (FWNAVs), which consists of the ...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Since the theoretical aeroelasticity for flapping-wing aerodynamics was introduced in the 1920s, the...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
To design, develop and optimise Micro Air Vehicles (MAVs) the understanding of insect aerody-namics ...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
This paper presents theoretical and experimental analyses of insect flapping mechanics and aerodynam...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
Effects of chordwise, spanwise, and isotropic flexibility on the force generation and propulsive eff...
Effects of flexibility on the force generation and the propulsive efficiency of flapping flexible wi...
This paper introduces a biological flapping micro air vehicle (FMAV) with four wings, instead of two...
Aiming at developing an effective tool to unveil key mechanisms in bio-flight as well as to provide ...
A flight device for insect-inspired flapping wing nano air vehicles (FWNAVs), which consists of the ...