Smaili, Arezki. Aerodynamic analysis of a small-scale drone propeller using the blade element momentum method

dc.contributor.authorHasnaoui, Mohamed Farouk . Bouhela,Abdelhamid
dc.date.accessioned2024-10-21T07:43:22Z
dc.date.available2024-10-21T07:43:22Z
dc.date.issued2023-12-30
dc.descriptionArticle
dc.description.abstractIn this study, the aerodynamic performance of a small-scale drone propeller (Tmotor28 propeller) in axial flight has been analyzed using the Blade Element Momentum Theory (BEMT). Which is a powerful tool to model the aerodynamic interaction between the rotor/propeller and the fluid flow. The aim of this paper is to propose a BEMT model for the Unmanned Aerial Vehicle (UAV). An open-source tool known as pyBEMT (Python programming language) has been used to calculate the aerodynamic performance of the propeller. The XFoil, which is based on the panel-vortex methods, has been used to find the lift and drag coefficients (CD and CL) of the propeller airfoils. The numerical results have been validated with experimental results. Good agreements have been found. This study introduces a straightforward and powerful calculation method for predicting and optimizing the aerodynamic performance of drones.
dc.identifier.citationIorhuna , Fater . Abdullahi Muhammad Ayuba .Safiyya Abubakar Minjibir. Nyijime Thomas Aondofa .Ishaq , Nura . Adsorptive properties of 4-Hexyl-tertrahydro-thiopyran-1,1-diode on Al(110) and Fe(111) surface using DFT method . Algerian Journal of Engineering and Technology . Vo8. No 02.01/12/2023.faculty of technology. university of el oued. [visited in ../../ .]. available from [copy the link here]
dc.identifier.urihttps://dspace.univ-eloued.dz/handle/123456789/35294
dc.language.isoen
dc.publisherUniversity of Eloued جامعة الوادي
dc.subjectAerodynamic analysis
dc.subjectBlade Element Momentum
dc.subjectBEMT
dc.subjectDrone propeller
dc.subjectUAV
dc.titleSmaili, Arezki. Aerodynamic analysis of a small-scale drone propeller using the blade element momentum method
dc.typeArticle

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