Animal flight performance has been studied using models developed for man-made aircraft. For an aeroplane with fixed wings, the energetic cost as a function of flight speed can be expressed in terms of weight, wing span, wing area and body area, where more details are included in proportionality coefficients. Flying animals flap their wings to produce thrust. Adopting the fixed wing flight model implicitly incorporates the effects of wing flapping in the coefficients. However, in practice, these effects have been ignored. In this paper, the effects of reciprocating wing motion on the coefficients of the fixed wing aerodynamic power model for forward flight are explicitly formulated in terms of thrust requirement, wingbeat frequency and stro...
Throughout history, mankind have been looking to the skies and have been fascinated by animals that ...
This paper presents first-principle and numerical studies of flapping flight with the objective of o...
Bats fly with highly articulated and heavy wings. To understand their power requirements, we develop...
Animal flight performance has been studied using models developed for man-made aircraft. For an aero...
Animal flight performance has been studied using models developed for man-made aircraft. For an aero...
A model of vortex wake is suggested to determine the induced power during animal hovering flight. Th...
Stability is essential to flying and is usually assumed to be especially problematic in flapping fli...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
The power required by flapping and fixed wing vehicles in level flight is determined and compared. B...
This study successfully described the mechanics of flapping hovering flight within the framework of ...
The power required by flapping and fixed wing vehicles in level flight is determined and compared. B...
Flying animals with flapping wings exhibit extraordinary ability to control their flight, they demon...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
Throughout history, mankind have been looking to the skies and have been fascinated by animals that ...
Throughout history, mankind have been looking to the skies and have been fascinated by animals that ...
This paper presents first-principle and numerical studies of flapping flight with the objective of o...
Bats fly with highly articulated and heavy wings. To understand their power requirements, we develop...
Animal flight performance has been studied using models developed for man-made aircraft. For an aero...
Animal flight performance has been studied using models developed for man-made aircraft. For an aero...
A model of vortex wake is suggested to determine the induced power during animal hovering flight. Th...
Stability is essential to flying and is usually assumed to be especially problematic in flapping fli...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
The power required by flapping and fixed wing vehicles in level flight is determined and compared. B...
This study successfully described the mechanics of flapping hovering flight within the framework of ...
The power required by flapping and fixed wing vehicles in level flight is determined and compared. B...
Flying animals with flapping wings exhibit extraordinary ability to control their flight, they demon...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
Throughout history, mankind have been looking to the skies and have been fascinated by animals that ...
Throughout history, mankind have been looking to the skies and have been fascinated by animals that ...
This paper presents first-principle and numerical studies of flapping flight with the objective of o...
Bats fly with highly articulated and heavy wings. To understand their power requirements, we develop...