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首页> 外文期刊>Journal of Intelligent & Robotic Systems: Theory & Application >Parametric Study on Formation Flying Effectiveness for a Blended-Wing UAV
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Parametric Study on Formation Flying Effectiveness for a Blended-Wing UAV

机译:混纺永夫的形成飞行效能的参数研究

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摘要

This paper investigates aerodynamic performance improvements of formation flight at transonic speeds for a medium size Unmanned Aerial Vehicle (UAV). The metric for assessing the aerodynamic improvement of formation flight is the computed drag. The total drag for each formation configuration is compared with a single UAV, where a final drag reduction percentage is estimated. The evaluation of the aerodynamic performance is conducted by employing an in-house Computational Fluid Dynamics (CFD) solver, grid generation and post processing tools. For critical understanding of the tendency of the formation efficiency depending on main parameters, broad formation configurations are analysed. The parameterisation includes number of aircraft, proximity and formation shape. Full realisation of the benefit predicted would need to be proven in the real world, but there is sufficient confidence to suggest that it exist: the empirical parametric analysis suggests that formation flight can improves aerodynamic performance and formation configuration greatly influence the degree of improvement.
机译:本文研究了中等尺寸无人机(UAV)的跨音速度的形成飞行的空气动力学性能改进。评估形成飞行空气动力学改善的指标是计算的阻力。将每个形成配置的总拖动与单个UAV进行比较,其中估计最终阻力百分比。通过采用内部计算流体动力学(CFD)求解器,网格生成和后处理工具来进行空气动力学性能的评估。对于对形成效率的趋势的关键理解,根据主要参数,分析了广泛的形成配置。参数化包括飞机的数量,接近和形成形状。完全实现预测的福利需要在现实世界中被证明,但有足够的信心表明它存在:实证参数分析表明,形成飞行可以提高空气动力学性能和形成配置大大影响改善程度。

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