Author:
Kasim Khushairi Amri,Mat Shabudin,Ishak Iskandar Shah,Mansor Shuhaimi
Abstract
Purpose
This study aims to investigate the effects of propeller locations on the aerodynamic characteristics of a generic 55° swept angle sharp-edged delta wing unmanned aerial vehicle (UAV) model.
Design/methodology/approach
A generic delta-winged UAV model has been designed and fabricated to investigate the aerodynamic properties of the model when the propeller is placed at three different locations. In this research, the propeller has been placed at three different positions on the wing, namely, front, middle and rear. The experiments were conducted in a closed-circuit low-speed wind tunnel at speeds of 20 and 25 m/s corresponding to 0.6 × 106 and 0.8 × 106 Reynolds numbers, respectively. The propeller speed was set at constant 6,000 RPM and the angles of attack were varied from 0° to 20° for all cases. During the experiment, two measurement techniques were used on the wing, which were the steady balance measurement and surface pressure measurement.
Findings
The results show that the locations of the propeller have significant influence on the lift, drag and pitching moment of the UAV. Another important observation obtained from this study is that the location of the propeller can affect the development of the vortex and vortex breakdown. The results also show that the propeller advance ratio can also influence the characteristics of the primary vortex developed on the wing. Another main observation was that the size of the primary vortex decreases if the propeller advance ratio is increased.
Practical implications
There are various forms of UAVs, one of them is in the delta-shaped planform. The data obtained from this experiment can be used to understand the aerodynamic properties and best propeller locations for the similar UAV aircrafts.
Originality/value
To the best of the author’s knowledge, the surface pressure data available for a non-slender delta-shaped UAV model is limited. The data presented in this paper would provide a better insight into the flow characteristics of generic delta winged UAV at three different propeller locations.
Reference33 articles.
1. Aerodynamic characteristics of a micro air vehicle and the influence of propeller location,2013
2. Computational study of propeller–wing aerodynamic interaction;Aerospace,2018
3. Effect of sweep angle on the vortical flow over Delta wings at an angle of attack of 10;Journal of Engineering Science and Technology,2014
4. Influence of reynolds number on vortex flow over a non-slender Delta wing;AIAA Journal,2010
5. A computation study on the aerodynamic influence of interaction wing-propeller for a tilt-body MAV;Aircraft Engineering and Aerospace Technology,2015