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Numerical study on interactional aerodynamics of a quadcopter in hover with overset mesh in OpenFOAM

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Abstract
Interactional aerodynamics of a quadcopter in hover is numerically investigated in this study. The main objective is to understand major flow structures associated with unsteady airloads on multirotor aircraft. The overset mesh approach is used to resolve flow structures in unsteady simulation using the flow solver OpenFOAM. The current computational study demonstrates that aerodynamic interaction between quadcopter components strongly affects the rotor wake, generating interesting vortical structures. Multiple rotors in close proximity generate ?-shaped vortical structures merged from rotor-tip vortices. The fuselage of the current quadcopter deflects the wake flow of the four rotors toward the center of the vehicle. Such interactional aerodynamics, i.e., rotor-rotor and rotor-fuselage interaction, varies the inflow condition of a rotor blade during the rotor revolution. Therefore, the quadcopter experiences unsteady airloads per rotor revolution. Our study indicates that a typical quadcopter would experience 8/rev thrust variations, which are a combined outcome from 4/rev thrust variations on the rotor and 2/rev fluctuations on the fuselage. The current understanding of interactional aerodynamics could help to design reliable and efficient multicopter aircraft.
Author(s)
Park, Young MinJee, Solkeun
Issued Date
2023-08
Type
Article
DOI
10.1063/5.0160689
URI
https://scholar.gist.ac.kr/handle/local/10064
Publisher
AIP Publishing
Citation
PHYSICS OF FLUIDS, v.35, no.8
ISSN
1070-6631
Appears in Collections:
Department of Mechanical and Robotics Engineering > 1. Journal Articles
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