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Dynamic evaluation of airflow stream generated by a reverse system of an axial fan sprayer using 3D-ultrasonic anemometers. Effect of canopy structure

机译:3D超声波风压器通过轴向风扇喷雾器反向系统产生的气流流动态评估。 冠层结构的影响

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Air assisted sprayers are currently used for the applications of plant protection products in fruit trees and vineyards. However, the use of these equipment carries a high environmental risk, mainly owing to the generation of airborne spray drift in the lower boundary layer above crop canopy. Hence, many tests are currently focused on investigating several factors that affect the efficiency of the spray process, in which air assistance and air behaviour are two of the most difficult parameters to evaluate. This present work proposes a first approach on the characterization of the airflow generated by an orchard sprayer equipped with an axial fan and an air reverse system in the outlet plane of the air, while circulated through two artificial rows of canopy representing vineyard trellis, using 3D-ultrasonic anemometers to measure the experimental data. A first series of static field tests measured the air velocity at different heights on both sides of the sprayer and at both sides of every row of artificial canopy and evaluated the effect of the canopy on the sprayer airflow passing through. A second set of experiments were carried out with the sprayer moving at 4.1 km h(-1) between canopy rows to simulate the normal spray process. Finally, velocity vectors and turbulent intensities were calculated. The resistance of the vegetation was also characterized by using a drag coefficient, both when the sprayer was stationary and moving. The results between the static and dynamic tests were compared. Although there were similarities between the two tests, the results indicated that when the equipment moves along the canopy rows, the axial fan asymmetry on air velocities is more noticeable and turbulence intensity increased. In addition, the vegetation received direct airflow at different times. This could affect the trajectory of the droplets. On the other hand, the resistance of the vegetation on each side was similar. The air reverse system could be affecting the airflow direction to the driving direction. Ultrasonic anemometers were successful in characterizing sprayer fan airflows but it is necessary to continue working on the descriptive analysis of the airflow in other planes different from the air outlet only and with other vineyard systems.
机译:空气辅助喷雾器目前用于植物保护产品在果树和葡萄园中的应用。然而,这些设备的使用具有高的环境风险,主要是由于在上面的作物冠层上下边界层的空气捕集漂移的产生。因此,许多测试目前专注于调查影响喷雾过程效率的几个因素,其中空中辅助和空气行为是评估的最困难的两个参数。该目前的工作提出了一种果实喷雾器产生的气流的特征,该喷雾器在空气的出口平面中配备有轴流风扇和空气反向系统,同时循环通过两个人工行,代表葡萄园网格的冠层,使用3D - 抑制风速计测量实验数据。第一系列静态场测试测量喷雾器两侧的不同高度的空气速度,并在每一行人造冠层的两侧,并评估冠层对通过通过的喷雾器气流的影响。使用喷雾器在冠层行之间移动到4.1km H(-1)以模拟正常喷涂过程的第二组实验。最后,计算了速度向量和湍流强度。植被的电阻还表征了使用拖曳系数,当喷雾器静止和移动时。比较了静态和动态测试之间的结果。虽然两个测试之间存在相似性,但结果表明,当设备沿着遮篷行移动时,空气速度上的轴向风扇不对称更明显,并且湍流强度增加。此外,植被在不同时间接受了直接气流。这可能会影响液滴的轨迹。另一方面,植被在每侧的抗性相似。空气反向系统可以影响到行驶方向的气流方向。超声波风管成功地表征喷雾器风扇气流,但有必要继续研究与仅与空气出口不同的其他平面中的气流的描述性分析,以及其他葡萄园系统。

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