Aerodynamics of MAV rotors in ground and corner effect

IF 1.5 4区 工程技术 Q2 ENGINEERING, AEROSPACE International Journal of Micro Air Vehicles Pub Date : 2019-01-01 DOI:10.1177/1756829319861596
S. Prothin, C. Fernandez Escudero, N. Doué, T. Jardin
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引用次数: 8

Abstract

The work presented in this paper is part of a project called ARChEaN (Aerodynamic of Rotors in Confined ENvironment) whose objective is to study the interactions of a micro drone rotor with its surroundings in the case of flight in enclosed environments such as those encountered, for example, in archeological exploration of caves. To do so the influence of the environment (walls, ground, ceiling, etc) on the rotor’s aerodynamic performance as well as on the flow field between the rotor and the surroundings is studied. This paper focuses on two different configurations, flight near the ground and flight near a corner (wall and ground), and the results are analyzed and compared to a general free flight case (i.e. far away from any obstacle). In order to carry out this analysis both numerical and experimental approaches are conducted. The objective is to validate the numerical model with the results obtained experimentally and to benefit from the advantages of both approaches in terms of flow analysis. This research work will provide knowledge on how to operate these systems as to minimize the possible negative environment disturbances, reduce power consumption and predict the micro drone’s behaviour during enclosed flights.
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MAV旋翼在地面和转角影响下的空气动力学
本文介绍的工作是一个名为ARChEaN(受限环境中旋翼的空气动力学)的项目的一部分,该项目的目标是研究微型无人机旋翼在封闭环境中飞行时与其周围环境的相互作用,例如在洞穴考古勘探中遇到的情况。为此,研究了环境(墙壁、地面、天花板等)对转子气动性能以及转子与周围环境之间流场的影响。本文重点研究了两种不同的配置,即近地面飞行和近角飞行(墙壁和地面),并将结果与一般自由飞行情况(即远离任何障碍物)进行了分析和比较。为了进行这种分析,进行了数值和实验两种方法。目的是用实验结果验证数值模型,并从两种方法在流动分析方面的优势中获益。这项研究工作将提供如何操作这些系统的知识,以最大限度地减少可能的负面环境干扰,降低功耗,并预测微型无人机在封闭飞行期间的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.00
自引率
7.10%
发文量
13
审稿时长
>12 weeks
期刊介绍: The role of the International Journal of Micro Air Vehicles is to provide the scientific and engineering community with a peer-reviewed open access journal dedicated to publishing high-quality technical articles summarizing both fundamental and applied research in the area of micro air vehicles.
期刊最新文献
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