Javascript must be enabled to continue!
Aerodynamic Analysis of Variable Camber-Morphing Airfoils with Substantial Camber Deflections
View through CrossRef
In recent years, morphing wings have become not only a concept, but an aerodynamic solution for the aviation industry to take a step forward toward future technologies. However, continuously morphing airfoils became an interesting answer to provide green energy solutions. In this paper, the authors conducted experimental research on a continuously camber-morphing airfoil using the Particle Image Velocimetry (PIV) and Computational Fluid Dynamics (CFD) methods. The main objective of this work was to research a variety of morphing airfoils with different camber deflections. An average velocity distribution and turbulence distribution were compared and are discussed. The two-dimensional PIV results were compared to the CFD simulations to validate the numerical method’s accuracy and obtain the aerodynamic coefficient’s trends. A further comparison revealed that morphing airfoils have better aerodynamic performance than conventional airfoils for very low camber deflections and create substantial amounts of drag for significant camber deflections.
Title: Aerodynamic Analysis of Variable Camber-Morphing Airfoils with Substantial Camber Deflections
Description:
In recent years, morphing wings have become not only a concept, but an aerodynamic solution for the aviation industry to take a step forward toward future technologies.
However, continuously morphing airfoils became an interesting answer to provide green energy solutions.
In this paper, the authors conducted experimental research on a continuously camber-morphing airfoil using the Particle Image Velocimetry (PIV) and Computational Fluid Dynamics (CFD) methods.
The main objective of this work was to research a variety of morphing airfoils with different camber deflections.
An average velocity distribution and turbulence distribution were compared and are discussed.
The two-dimensional PIV results were compared to the CFD simulations to validate the numerical method’s accuracy and obtain the aerodynamic coefficient’s trends.
A further comparison revealed that morphing airfoils have better aerodynamic performance than conventional airfoils for very low camber deflections and create substantial amounts of drag for significant camber deflections.
Related Results
Stability-Based Motion Planning for a Modular Morphing Wing
Stability-Based Motion Planning for a Modular Morphing Wing
<div class="section abstract"><div class="htmlview paragraph">Aircraft wing geometry morphing is a technology that has seen recent interest due to demand for aircraft t...
Aeroservoelastic Modeling for Trajectory Optimization of Morphing Aircrafts
Aeroservoelastic Modeling for Trajectory Optimization of Morphing Aircrafts
Abstract
Morphing aerial vehicles exhibit enhanced maneuverability when compared to their fixed configuration counterparts; this improves their mission performance, ...
Current Status and Development Trends of Morphing Wing of Aircraft
Current Status and Development Trends of Morphing Wing of Aircraft
Aircraft morphing wings, also known as adaptive wings or shape-variable wings, represent
a revolutionary development in the field of aerospace engineering. Inspired by the adaptabi...
The SG6043 airfoil optimization for low Reynolds number applications in wind turbines
The SG6043 airfoil optimization for low Reynolds number applications in wind turbines
This study focuses on optimizing the SG6043 airfoil for small wind turbines (SWTs) operating at low Reynolds numbers (Re = 100,000 to 600,000). Using XFOIL software, 71 airfoils we...
Rigid–Elastic Coupling Dynamics of Morphing Wing Aircraft
Rigid–Elastic Coupling Dynamics of Morphing Wing Aircraft
This paper presents a rigid–elastic coupling dynamic model for a morphing aircraft with variable-sweep wings, developed using Kane’s method. The model accurately captures the inter...
STRUCTURAL DEFORMATION ANALYSIS ON MORPHING MAV WING
STRUCTURAL DEFORMATION ANALYSIS ON MORPHING MAV WING
Micro air vehicles (MAV) and the notion of morphing are always changing to suit their mission characteristics. To achieve twist morphing, however, the process underlying the applic...
Enhancing the Efficiency of Horizontal Axis Wind Turbines Through Optimization of Blade Parameters
Enhancing the Efficiency of Horizontal Axis Wind Turbines Through Optimization of Blade Parameters
In this research, we delve into the promising potential of horizontal axis wind turbines to effectively meet the electricity needs of developing countries. By addressing the challe...
Numerical Simulation of Torque Converter With Different Pump Blade Camber
Numerical Simulation of Torque Converter With Different Pump Blade Camber
Abstract
The main function of the torque converter pump is to transfer mechanical power into fluid dynamic energy. It has been proved that the pump blade shape, espe...

