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首页> 外文期刊>Journal of Biosystems Engineering >Experimental Analysis of the Downwash Airflow Created by a Single Rotor Blade in Agricultural Drones
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Experimental Analysis of the Downwash Airflow Created by a Single Rotor Blade in Agricultural Drones

机译:农业无人机中单个转子叶片产生的倾斜气流的实验分析

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摘要

The downwash flow produced by agricultural drones has a great influence on the coverage ratio and the drift potential of pesticide spray droplets. Therefore, the configuration of the boom and the position of the nozzle of the pesticide injection system should be adjusted on the basis of the characteristics of the downwash flow. However, although many studies have been conducted, few studies have quantitatively investigated the characteristics of downwash flow. In this study, the average characteristics and turbulence of the downwash flow formed by a single blade were quantitatively evaluated.Methods The single rotor blade used in the test had a radius of 370 mm, and this length was used to normalize the measurement positions. Downwash flow was measured at 400 mm × 400 mm at 10-mm intervals in the X-Y plane and for 6 measurement planes at 100-mm intervals along the Z-direction. The rotational speed of the blade was set to 2000, 2500, and 3000 rpm, and the corresponding blade tip velocities were 71.17 m/s, 88.97 m/s, and 106.76 m/s, respectively; these values were used to normalize the mean and turbulent velocity components. The velocity of downwash flow was measured using a constant temperature anemometer (CTA)-type hot-wire anemometry with an X-type probe, and data were collected at a sampling rate of 30 kHz for analysis of the turbulence characteristics. Results From this experimental study, the axial, radial, and tangential velocity components of the downwash flow, based on the maximum value,were 20%, 4.8%, and 5.9% of the blade tip velocity (VBtip), respectively. In addition, the turbulence intensity of the axial, radial, and tangential velocity components was 8.5%, 3.0%, and 4.5%, respectively, based on the maximum value, and the axial component was approximately twice as high as the other two velocity components. High turbulent intensity appeared near the shear flow region at high axial velocities.Conclusion The downwash flow generated by a single rotor blade showed a steep velocity gradient with the blade length and axial distance, and the turbulent intensity was high in the shear layer region of the mean flow field.
机译:农业无人机产生的下洗流量对覆盖率和农药喷雾液滴的漂移潜力有很大影响。因此,应根据倒水流的特性来调整繁荣的配置和农药注入系统喷嘴的位置。但是,尽管已经进行了许多研究,但很少有研究对下洗流量的特征进行了定量研究。在这项研究中,对由单个刀片形成的下洗流量的平均特性和湍流进行了定量评估。测试中使用的单转子叶片的方法为370 mm,并且该长度用于使测量位置归一化。在X-Y平面以10 mm的间隔以400 mm×400 mm的间隔测量下洗流量,并沿Z方向以100 mm的间隔进行6个测量平面。刀片的旋转速度设置为2000、2500和3000 rpm,相应的叶片尖端速度分别为71.17 m/s,88.97 m/s和106.76 m/s;这些值用于使平均值和湍流速度成分标准化。使用恒定的温度风速计(CTA)型热驱动器测量了倾斜流量的速度,并使用X型探针进行X型探针,并以30 kHz的采样速率收集数据,以分析湍流特性。这项实验研究的结果,基于最大值的下洗流量的轴向,径向和切向速度成分分别为20%,4.8%和5.9%的叶片尖端速度(VBTIP)。另外,基于最大值,轴向,径向和切向速度成分的湍流强度分别为8.5%,3.0%和4.5%,轴向组件的高度是其他两个速度分量的两倍。 。高湍流强度在高轴向速度下出现在剪切流动区域附近。结论。判断由单个转子叶片产生的下洗流量显示出陡峭的速度梯度,其叶片长度和轴向距离,湍流强度在剪切层区域的湍流强度很高。平均流场。

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