Birds and bats employ a variety of advanced wing motions in the efficient production of thrust. The purpose of this thesis is to quantify the benefit of these advanced wing motions, determine the optimal theoretical wing kinematics for a given flight condition, and to develop a methodology for applying the results in the optimal design of flapping-wing aircraft (ornithopters). To this end, a medium-fidelity, combined aero-structural model has been developed that is capable of simulating the advanced kinematics seen in bird flight, as well as the highly non-linear structural deformations typical of high-aspect ratio wings. Five unique methods of thrust production observed in natural species have been isolated, quantified and thoroughly in...
In this work, we use a three-dimensional computational fluid dynamics (CFD) simulation to comprehend...
Advances in materials, actuators, and control architectures have enabled new design paradigms for un...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Birds and bats employ a variety of advanced wing motions in the efficient production of thrust. The ...
The basis of this work was to understand the generation of lift and thrust of a flapping bi-wing orn...
In this paper, an ornithopter prototype that mimics the flapping motion of bird flight is developed,...
In this paper, an ornithopter prototype that mimics the flapping motion of bird flight is developed,...
The aim of this work is to present a multi-objective optimization method to find maximum efficiency ...
Natural cycle and creation has led to some really efficient flying creatures. It is important to loo...
This paper presents first-principle and numerical studies of flapping flight with the objective of o...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
Flap-bounding, a form of intermittent flight, is often exhibited by small birds over their entire ra...
The paper deals with design of basic mechanism of wing movement in ornithopters and development of o...
Bats, with highly articulated wings, are some of the most agile flyers in nature. A novel three-dime...
The pitching kinematics of an experimental hovering flapping wing setup are optimized by means of a ...
In this work, we use a three-dimensional computational fluid dynamics (CFD) simulation to comprehend...
Advances in materials, actuators, and control architectures have enabled new design paradigms for un...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Birds and bats employ a variety of advanced wing motions in the efficient production of thrust. The ...
The basis of this work was to understand the generation of lift and thrust of a flapping bi-wing orn...
In this paper, an ornithopter prototype that mimics the flapping motion of bird flight is developed,...
In this paper, an ornithopter prototype that mimics the flapping motion of bird flight is developed,...
The aim of this work is to present a multi-objective optimization method to find maximum efficiency ...
Natural cycle and creation has led to some really efficient flying creatures. It is important to loo...
This paper presents first-principle and numerical studies of flapping flight with the objective of o...
A computational model for unsteady aerodynamics of a flapping wing has been developed based on the s...
Flap-bounding, a form of intermittent flight, is often exhibited by small birds over their entire ra...
The paper deals with design of basic mechanism of wing movement in ornithopters and development of o...
Bats, with highly articulated wings, are some of the most agile flyers in nature. A novel three-dime...
The pitching kinematics of an experimental hovering flapping wing setup are optimized by means of a ...
In this work, we use a three-dimensional computational fluid dynamics (CFD) simulation to comprehend...
Advances in materials, actuators, and control architectures have enabled new design paradigms for un...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...