研究无人机和多旋翼飞行器空气动力性能的实验方法综述

Kamalleswaran Subramaniam, Wan Saiful-Islam Wan Salim
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引用次数: 0

摘要

随着多旋翼飞行器的日益普及,人们对改进和优化无人飞行器的兴趣日益高涨。这已成为学者们灵感的主要来源。广泛的空气动力学研究将改进多旋翼飞行器,提高其在主要领域的吸引力。研究人员对各种螺旋桨设计和配置的性能进行了多方面的研究。本文还对各种性能指标进行了研究和讨论。本文讨论了螺旋桨和多旋翼飞行器设计的空气动力测试。数值模拟也广泛应用于无人机和多旋翼飞行器空气动力学研究。这种方法可对尾流传播和气流可视化进行高分辨率观测。然而,随着新的多旋翼概念的引入,该领域也出现了新的空气动力学挑战。因此,需要对不常见但相当重要的配置进行更多的研究,以便对多旋翼飞行器行业产生有益的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Experimental Approaches for Investigating the Aerodynamic Performance of Drones and Multicopters
The growing popularity of multicopters has heightened interest in improving and optimizing UAVs. This has become a major source of inspiration for scholars. Extensive aerodynamics research would result in improved multicopters and boost their appeal to major sectors. Various aspects of the performance of various propeller designs and configurations have been studied by researchers. Various performance metrics have also been investigated and discussed in this paper. Aerodynamic testing of propellers and multicopter designs are discussed in this paper. Numerical simulations are also used widely in the study of drone and multicopter aerodynamics. This method enables high resolution observation on wake propagation and flow visualizations. Nonetheless, as new multicopter concepts are introduced, new aerodynamic challenges emerge in this field. Therefore, more studies need to be done on uncommon but rather important configurations so that these can have a beneficiary effect on the multicopter industry.
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