전기추진 항공기용 프로펠러의 다단 형상 최적 설계Multi-stage Design Optimization of EAV Propeller

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In this study, we present that multi-stage design framework for aerodynamic design optimization of rotary wing such as propeller and helicopter rotor blades. Strategy of the proposed framework is to enhance aerodynamic performance using both planform and sectional design optimization iteratively. In first stage of planform design, we used genetic algorithm and blade element momemtum theory(BEMT) based on two dimensional aerodynamic database to find optimal planform variables in short time. After initial design, local flow conditions of blade sections are calculated. Next stage, sectional design optimization is conducted using two dimensional Navier-Stokes' analysis and gradient based optimization algorithm. When optimal shapes are determined, planform design is performed again. Through the iterative design process, not only optimal flow condition but also shape could be acquired. To validate the framework, design optimization for propeller which operated in electric aerial vehicle system were performed. As a results, about 8% of efficiency enhancement has acquired
Publisher
한국전산유체공학회
Issue Date
2012-11-23
Language
Korean
Citation

한국전산유체공학회 2012년도 추계학술대회 및 Korea-Japan CFD Workshop, pp.329 - 338

URI
http://hdl.handle.net/10203/172227
Appears in Collection
ME-Conference Papers(학술회의논문)

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