Influence of Wall Effect on Comprehensive Controllability for Ducted Fan Aircraft

Tianfu Ai, Xiang Changle, Xu Bin, W. Fan, Yibo Zhang
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引用次数: 1

Abstract

A novel coaxial ducted fan structure aircraft is proposed to enable the aircraft near vertical walls at high altitudes. The state space equation of the system can be obtained by correlation deduction and identification of the whole prototype model. Based on the duct test bench experiment and computational fluid dynamics (CFD) simulation analysis, the expressions between the different distances \begin{document}$d_{\rm{WE}} $\end{document} from the rotor center of the prototype to the wall and the thrust, reaction torque, and tilting moment of the system under hovering conditions are obtained. The influence of the wall effect of the prototype is incorporated into the system model to analyze the relationship between distance \begin{document}$d_{\rm{WE}} $\end{document} and the comprehensive controllability of the system. The results show that the system comprehensive controllability vector of other channels changes little with the decrease of the distance \begin{document}$d_{\rm{WE}} $\end{document} , and only the controllability vector of the rolling channel increases significantly. At the same time, the tilting moment also increases significantly, which strengthens the tendency of the prototype to tilt towards the wall.
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壁面效应对风机综合可控性的影响
提出了一种新型的同轴管道风扇结构飞机,使其能够在高海拔的垂直壁附近飞行。通过对整个原型模型的相关推导和识别,可以得到系统的状态空间方程。基于风管试验台实验和计算流体动力学(CFD)模拟分析,得到了悬停条件下,从原型转子中心到壁面的不同距离begin{document}$d_{\rm{WE}}$\end{document}与系统的推力、反作用力矩和倾转力矩之间的表达式。将原型的壁效应的影响纳入系统模型中,分析了距离begin{document}$d_{\rm{WE}}$\end{document}与系统综合可控性之间的关系。结果表明,其他通道的系统综合可控性向量随着距离\bearm{document}$d_{\rm{WE}}$\end{document}的减小而变化不大,只有滚动通道的可控性向量显著增加。同时,倾斜力矩也显著增加,这加强了原型向墙壁倾斜的趋势。
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