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A Comparison of Isolated and Ducted Fixed-Pitch Propellers under Non-Axial Inflow Conditions

机译:非轴向流入条件下分离和管道固定螺距螺旋桨的比较

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摘要

A strong interest in highly-efficient, small-scale propeller configurations can be recognized, especially due to the currently growing number of and usage possibilities for unmanned aerial vehicles (UAVs). Although a variety of different propulsion concepts already exist on the market or are discussed in the literature, there is still a demand for a systematic investigation to compare such configurations, in particular, small-scale propellers with a fixed pitch, which are analyzed in this work. Therefore, different configurations of small-scale propellers with a fixed pitch are analyzed in this paper. They were operated as isolated single propellers and as ducted propellers in a cylindrical wing. Furthermore, due to their flight envelope, UAVs are likely to operate at highly inclined inflow conditions and even under reverse inflow. These non-axial inflow conditions have a major influence on the flow field around a propeller. In order to investigate this influence, all analyses were performed at a range of inflow angles in relation to the propeller axis from αdisc=0∘ to 180∘.
机译:可以公认对高效,小型螺旋桨配置的强烈兴趣,尤其是由于目前越来越多的无人机航空车辆(无人机)的使用量。虽然市场上已经存在了各种不同的推进概念,或者在文献中讨论,但仍然需要进行系统的调查,以比较这种配置,特别是具有固定间距的小规模螺旋桨,这在此处分析工作。因此,本文分析了具有固定间距的小型螺旋桨的不同配置。它们作为隔离的单个螺旋桨运营,并且在圆柱形翼中的管道螺旋桨运营。此外,由于其飞行信封,无人机可能在高度倾斜的流入条件下运行,甚至在反向流入下。这些非轴向流入条件对螺旋桨周围的流场具有重大影响。为了研究这种影响,所有分析均在与αdisc=0∘到180°的螺旋桨轴的一系列流入角度进行。

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