Design and aerodynamic characteristics analysis of propellers for a novel rescue unmanned aerial vehicle

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE Aircraft Engineering and Aerospace Technology Pub Date : 2023-12-13 DOI:10.1108/aeat-11-2022-0327
Ying-Jie Guan, Yong-Ping Li
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Abstract

Purpose

To solve the shortcomings of existed search and rescue drones, search and rescue the trapped people trapped in earthquake ruins, underwater and avalanches quickly and accurately, this paper aims to propose a four-axis eight-rotor rescue unmanned aerial vehicle (UAV) which can carry a radar life detector. As the design of propeller is the key to the design of UAV, this paper mainly designs the propeller of the UAV at the present stage.

Design/methodology/approach

Based on the actual working conditions of UAVs, this paper preliminarily estimated the load of UAVs and the diameters of propellers and designed the main parameters of propellers according to the leaf element theory and momentum theory. Based on the low Reynolds number airfoil, this paper selected the airfoil with high lift drag ratio from the commonly used low Reynolds number airfoils. The chord length and twist angle of propeller blades were calculated according to the Wilson method and the maximum wind energy utilization coefficient and were optimized by the Asymptotic exponential function. The aerodynamic characteristics of the designed single propeller and coaxial propeller under different installation pitch angles and different installation distances were analyzed.

Findings

The results showed that the design of coaxial twin propellers can increase the load capacity by about 1.5 times without increasing the propeller diameter. When the installation distance between the two propellers was 8 cm and the tilt angle was 15° counterclockwise, the aerodynamic characteristics of the coaxial propeller were optimal.

Originality/value

The novelty of this work came from the conceptual design of the new rescue UAV and its numerical optimization using the Wilson method combined with the maximum wind energy utilization factor and the exponential function. The aerodynamic characteristics of the common shaft propeller were analyzed under different mounting angles and different mounting distances.

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新型救援无人机螺旋桨的设计与气动特性分析
目的为了解决现有搜救无人机的不足,快速准确地搜救地震废墟、水下、雪崩等被困人员,本文旨在提出一种可搭载雷达生命探测仪的四轴八旋翼救援无人机。由于螺旋桨的设计是无人飞行器设计的关键,本文现阶段主要对无人飞行器的螺旋桨进行设计。在低雷诺数机翼的基础上,本文从常用的低雷诺数机翼中选取了升阻比高的机翼。根据威尔逊法和最大风能利用系数计算了螺旋桨叶片的弦长和扭角,并利用渐近指数函数进行了优化。分析了所设计的单螺旋桨和同轴螺旋桨在不同安装俯仰角和不同安装距离下的气动特性。结果表明,设计同轴双螺旋桨可在不增加螺旋桨直径的情况下将载荷能力提高约 1.5 倍。当两个螺旋桨之间的安装距离为 8 厘米,倾斜角为逆时针 15°时,同轴螺旋桨的气动特性达到最佳。分析了共轴螺旋桨在不同安装角度和不同安装距离下的气动特性。
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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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