首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Optimization design of airfoils under atmospheric icing conditions for UAV
作者姓名:Haoran LI  Yufei ZHANG  Haixin CHEN
作者单位:School of Aerospace Engineering, Tsinghua University
基金项目:the National Natural Science Foundation of China (Nos. 92052203 and 11872230 and 91852108);
摘    要:Natural ice accretion on the lifting surface of an aircraft is detrimental to its aerodynamic performance, as it changes the effective streamlined body. The main focus of this work considers the optimization design of airfoils under atmospheric icing conditions for the Unmanned Aerial Vehicle(UAV). The ice formation process is simulated by the Eulerian approach and the three-dimensional Myers model. A three-equation turbulence model is implemented to accurately predict the stall performance of t...

收稿时间:27 December 2020

Optimization design of airfoils under atmospheric icing conditions for UAV
Haoran LI,Yufei ZHANG,Haixin CHEN.Optimization design of airfoils under atmospheric icing conditions for UAV[J].Chinese Journal of Aeronautics,2022,35(4):118-133.
Institution:School of Aerospace Engineering, Tsinghua University, Beijing 100084, China
Abstract:Natural ice accretion on the lifting surface of an aircraft is detrimental to its aerodynamic performance, as it changes the effective streamlined body. The main focus of this work considers the optimization design of airfoils under atmospheric icing conditions for the Unmanned Aerial Vehicle (UAV). The ice formation process is simulated by the Eulerian approach and the three-dimensional Myers model. A three-equation turbulence model is implemented to accurately predict the stall performance of the iced airfoil. In recognition of the real atmospheric variability in the icing parameters, the medium volume diameter of supercooled water droplets is treated as an uncertainty with an assumed probability density function. A technique of polynomial chaos expansion is used to propagate the input uncertainty through the deterministic system. The numerical results show that the multipoint/multiobjective optimization strategy can efficiently improve both the ice tolerance and the cruise performance of an airfoil. The reason for the focus on robust optimization is that the ice angle of the optimized airfoil becomes less critical to the incoming flow. The optimized airfoils are applied to a UAV platform, in which the performance improvement and the relevant key flow feature are both preserved.
Keywords:Aircraft icing  Ice-accretion  Ice-tolerant airfoil  Optimization design  Separated flow  UAV
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号