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Design and development of unmanned aerial vehicles' propellers based on biomimetic design


Citation

Saran, Saundarya and Che Me, Rosalam and Sultan, Mohamed Thariq Hameed and Chandran, Navaneetha Krishna (2026) Design and development of unmanned aerial vehicles' propellers based on biomimetic design. Pertanika Journal of Science and Technology, 34 (3). pp. 1451-1468. ISSN 0128-7680; eISSN: 2231-8526

Abstract

This study aims to enhance UAV propeller performance by addressing aerodynamic inefficiencies caused by shock waves at high rotational speeds, which are also known as vortex formation. These shock waves, occurring at the propeller tips, increase drag, vibration, noise, and potentially can reduce flight time. The research focuses on optimising propeller design to minimise these effects and improve overall efficiency. The methodology involved a comprehensive review of existing propeller designs and the application of aerodynamic principles to develop a propeller approximately 9 inches in length. The background study also focuses on the application of biomimicry in the design of propellers. Simulation tests were conducted to evaluate its performance, with measurements taken at various rotational speeds, including a maximum rotational speed of 6000 rpm. The results demonstrated that the newly designed propeller achieved better efficiency compared to existing models, producing a thrust of 0.0016 N at maximum speed. The design also exhibited reduced noise and vibration, contributing to a more stable and efficient flight performance. The findings underscore the potential for improved UAV propeller designs to increase the efficiency of performance and enhance operational capabilities, particularly in applications like agriculture, inspection, and surveillance. Future research may explore additional modifications to further optimise aerodynamic performance and noise reduction.


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Additional Metadata

Item Type: Article
Subject: Computer Science (all)
Subject: Chemical Engineering (all)
Subject: Environmental Science (all)
Divisions: Faculty of Design and Architecture
Faculty of Engineering
Institute of Tropical Forestry and Forest Products
DOI Number: https://doi.org/10.47836/pjst.34.3.08
Publisher: Universiti Putra Malaysia Press
Keywords: Computational fluid dynamics; efficiency; propeller; Shock Waves; unmanned aerial vehicles; vortex
Sustainable Development Goals (SDGs): SDG 9: Industry, Innovation and Infrastructure, SDG 11: Sustainable Cities and Communities, SDG 7: Affordable and Clean Energy
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 29 Jul 2026 02:17
Last Modified: 29 Jul 2026 02:17
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.47836/pjst.34.3.08
URI: http://psasir.upm.edu.my/id/eprint/127449
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