Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model

Improving aerodynamic performance with limited dimensions is becoming more important in the design of multirotor aircraft. Complex coupling interactions exist between the structural parameters and aerodynamic performance of the double-layer staggered rotor octocopter. This paper develops an integrat...

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Main Authors: Zhu, He, Nie, Hong, Zhang, Limao, Deng, Siqiang, Wei, Xiaohui
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160502
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1605022022-07-25T08:14:23Z Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model Zhu, He Nie, Hong Zhang, Limao Deng, Siqiang Wei, Xiaohui School of Civil and Environmental Engineering Nanyang Environment and Water Research Institute Engineering::Civil engineering Optimization Genetic Algorithm Improving aerodynamic performance with limited dimensions is becoming more important in the design of multirotor aircraft. Complex coupling interactions exist between the structural parameters and aerodynamic performance of the double-layer staggered rotor octocopter. This paper develops an integrated aerostructural design optimization approach based on a surrogate model to reduce the high computation cost of computational fluid dynamics (CFD) simulation experiments, where the surrogate model is constructed by using the Latin Hypercube design, and different approximation methods are compared. Aiming to improve the global accuracy of the surrogate model, computer-aided design (CAD) modeling and CFD simulation experiments were carried out according to the sample points designed by the Latin Hypercube method. A radial basis function surrogate model was constructed based on 63 sample points obtained with CFD simulations after comparison with other approximation methods. The optimization for aerodynamic/structural design was formulated and solved by the multiisland genetic algorithm. The results show that the surrogate model has an accurate predictive ability, and the optimal solution obtained from the optimization has a better aerodynamic performance than the samplings. Compared with the initial optimum data, the optimum solution proposed in our study could generate 102.7% more thrust, and the objective function y is improved by 105.1% according to the CFD simulation results. The approximation and optimization approach effectively reduces the cost of many CFD calculations in aircraft design and provides a global prediction for the performance of the octocopter. This work was supported by the China Scholarship Council (CSC: 201906830094) and Priority Academic Program Development of Jiangsu Higher Education Institutions. 2022-07-25T08:14:23Z 2022-07-25T08:14:23Z 2021 Journal Article Zhu, H., Nie, H., Zhang, L., Deng, S. & Wei, X. (2021). Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model. Journal of Aerospace Engineering, 34(4), 04021036-1-04021036-14. https://dx.doi.org/10.1061/(ASCE)AS.1943-5525.0001280 0893-1321 https://hdl.handle.net/10356/160502 10.1061/(ASCE)AS.1943-5525.0001280 2-s2.0-85104586296 4 34 04021036-1 04021036-14 en Journal of Aerospace Engineering © 2021 American Society of Civil Engineers. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Optimization
Genetic Algorithm
spellingShingle Engineering::Civil engineering
Optimization
Genetic Algorithm
Zhu, He
Nie, Hong
Zhang, Limao
Deng, Siqiang
Wei, Xiaohui
Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
description Improving aerodynamic performance with limited dimensions is becoming more important in the design of multirotor aircraft. Complex coupling interactions exist between the structural parameters and aerodynamic performance of the double-layer staggered rotor octocopter. This paper develops an integrated aerostructural design optimization approach based on a surrogate model to reduce the high computation cost of computational fluid dynamics (CFD) simulation experiments, where the surrogate model is constructed by using the Latin Hypercube design, and different approximation methods are compared. Aiming to improve the global accuracy of the surrogate model, computer-aided design (CAD) modeling and CFD simulation experiments were carried out according to the sample points designed by the Latin Hypercube method. A radial basis function surrogate model was constructed based on 63 sample points obtained with CFD simulations after comparison with other approximation methods. The optimization for aerodynamic/structural design was formulated and solved by the multiisland genetic algorithm. The results show that the surrogate model has an accurate predictive ability, and the optimal solution obtained from the optimization has a better aerodynamic performance than the samplings. Compared with the initial optimum data, the optimum solution proposed in our study could generate 102.7% more thrust, and the objective function y is improved by 105.1% according to the CFD simulation results. The approximation and optimization approach effectively reduces the cost of many CFD calculations in aircraft design and provides a global prediction for the performance of the octocopter.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Zhu, He
Nie, Hong
Zhang, Limao
Deng, Siqiang
Wei, Xiaohui
format Article
author Zhu, He
Nie, Hong
Zhang, Limao
Deng, Siqiang
Wei, Xiaohui
author_sort Zhu, He
title Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
title_short Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
title_full Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
title_fullStr Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
title_full_unstemmed Aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
title_sort aerodynamic design optimization of a staggered rotors octocopter based on surrogate model
publishDate 2022
url https://hdl.handle.net/10356/160502
_version_ 1739837397337636864