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Testing method and anti-drift capability analysis of downwash airflow distribution characteristics of multi-rotor UAVin hover

机译:多转子UAVIN悬停的灌水气流分布特性的测试方法和抗漂移能力分析

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The shape of downwash airflow of multi-rotor plant protection UAV affects the distribution offog droplets in the target canopy. The downwash airflow is susceptible to external natural wind, which results in the drift of fog droplets. In order to explore the anti-drift ability of rotor airflow to external natural wind, this paper applies external natural wind to UAV airflow at different altitudes in hovering state by using wind curtain aircraft. At the same time, numerical simulation method is used tosimulate and analyze the results. The simulation test results show that the airflow of the UAV is different for the natural wind (4 ms'1, 8 ms', 12 m-s') in different height directions, and the altitude is different (0.6 m, 1.0 m, 1.4 m, 1.8 m). As theincrease of the height, the drifting resistance of the drone downwash airflow gradually decreases, and the whole airflow field shift phenomenon is obvious; At the same time, the test results show that the wind curtain is at the height of the crop canopyof 1.0m. When the speed of the air outlet is 8 m-s'1, the degree of drift of the airflow is consistent with the simulation results, and the accuracy of the simulation results is verified. The results ofCFD simulation verify the anti-floating performanceof the downwash airflow in hovering state. At the same time, this paper provides a reference for the anti-floating research of multi-rotor plant protection drone droplets.
机译:多转子植物保护UAV的灌水气流的形状会影响目标冠层中的分布漏洞液滴。醉流气流易受外部天然风的影响,这导致雾滴的漂移。为了探讨转子气流到外部自然风的抗漂移能力,通过使用风幕飞机,本文将外部自然风应用于悬停状态的不同高度的UAV气流。同时,使用数值模拟方法进行扭结并分析结果。模拟测试结果表明,在不同高度方向上的天然风(4 ms'1,8 ms',12 m-s')的自然风(4ms'1,8毫秒')的气流不同,海拔不同(0.6米,1.0米, 1.4米,1.8米)。作为高度的促进,无人机淹没气流的漂移阻力逐渐减小,整个气流场转移现象是明显的;与此同时,测试结果表明,风幕处于10m的作物Canopyof的高度。当空气出口的速度为8 M-S'1时,气流的漂移程度与模拟结果一致,验证了模拟结果的准确性。 CFD仿真结果验证了悬停状态下醉机的防浮动性能。与此同时,本文为多转子植物保护无人机液滴的防浮动研究提供了参考。

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