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Testing method and distribution characteristics of spatial pesticide spraying deposition quality balance for unmanned aerial vehicle

机译:无人机空间农药喷洒沉积质量平衡测试方法及分布特征

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In order to explore the spatial pesticide spraying deposition distribution, the downwash flow field characteristics for unmanned aerial vehicle (UAV) pesticide application with accurate flight height and velocity and the relationship of these two aspects, a novel measurement method was proposed in this paper. A model ‘3WQF80-10’ single-rotor diesel UAV was tested using this method in wheat field and the effects of flight direction, flight parameters and crosswind on the distribution of spatial spraying deposition quality balance (SSDQB) and the downwash flow field distribution were researched. A cuboid aluminum sampling frame of spatial spraying deposition quality balance (SFSSDQB) with monofilament wires was made for collecting the droplets in four directions, and a set of multi-channel micro-meteorology measurement system (MMMS) was applied for measuring the downwash wind speed in three directions. Besides, BeiDou Navigation Satellite System (BNSS) was used for controlling and recording the working height, velocity and track of this model of single-rotor UAV. The results showed the distribution of the spatial spray deposition and the downwash flow field of UAV could be measured effectively at exact flight height and velocity via this method. When the average wind speed was 0.9 m/s, the average temperature was 31.5°C and the average relative humidity was 34.1%, and the average distribution ratios of spraying deposition for model ‘3WQF80-10’ UAV on the upwind part, the top part, the downwind part and the bottom part were 4.4%, 2.3%, 50.4% and 43.7%, respectively. The flight directions of forward and backward had an impact on droplet deposition distribution and the working effect of flying backwards, with 60% of deposition ratio of the bottom part of the SFSSDQB, was better than flying forward. There was a linear negative correlation between the coefficient of variation (CV) of the bottom part and the flight height and the coefficient of determination was 0.9178, which means that the deposition distribution becomes more uniform with the increase of height. Additionally, there was a linear positive correlation between weighted mean deposition rate and crosswind speed and the coefficient of determination was 0.9684, which shows the deposition distribution gets more concentrated towards the downwind part with the rise of crosswind speed. Therefore, according to the results of tests of downwash airflow speed, it is shown that regardless of the flight direction and height and the crosswind, all these factors influence the droplet deposition distribution via weakening the intensity of the downwash airflow field in the direction perpendicular to the ground. The results can provide valuable information for the research of UAV pesticide application techniques and the establishment of the standard of spraying deposition and drift tests of UAV in crop field.
机译:为了探究空间农药喷洒的沉积分布,精确的飞行高度和速度以及无人机与无人机相结合的下游冲洗流场特性以及这两个方面之间的关系,提出了一种新颖的测量方法。使用该方法在麦田中测试了型号为“ 3WQF80-10”的单旋翼柴油无人机,飞行方向,飞行参数和侧风对空间喷雾沉积质量平衡(SSDQB)分布和下冲流场分布的影响为研究。制作了具有单丝的空间喷雾沉积质量平衡(SFSSDQB)的长方体铝采样框,用于在四个方向上收集液滴,并应用了一套多通道微气象测量系统(MMMS)来测量下吹风速在三个方向上。此外,北斗导航卫星系统(BNSS)用于控制和记录该单旋翼无人机模型的工作高度,速度和航迹。结果表明,通过该方法,可以在精确的飞行高度和速度下有效地测量无人机的空间喷雾沉积分布和下冲流场。当平均风速为0.9 m / s时,平均温度为31.5°C,平均相对湿度为34.1%,“ 3WQF80-10”型无人机在上风部(顶部)的平均喷雾沉积率顺风部分和逆风部分分别为4.4%,2.3%,50.4%和43.7%。向前和向后的飞行方向对液滴的沉积分布有影响,向后飞行的工作效果比SFSSDQB底部的60%沉积率要好。底部的变异系数(CV)与飞行高度之间存在线性负相关,确定系数为0.9178,这意味着沉积物分布随高度的增加而变得更加均匀。此外,加权平均沉积速率与侧风速度之间存在线性正相关,测定系数为0.9684,这表明随着侧风速度的升高,沉积分布向顺风部分集中。因此,根据下冲气流速度的测试结果表明,无论飞行方向,高度和侧风如何,所有这些因素都会通过削弱与垂直方向垂直的下冲气流场的强度来影响液滴的沉积分布。地面。研究结果可为研究无人机农药应用技术,建立作物田间喷雾沉积和漂移试验标准提供有价值的信息。

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