Faculty of Agriculture, Department of Agricultural Machinery and Technologies Engineering, Çukurova University, Adana, Turkey.
Pest Manag Sci. 2023 Nov;79(11):4439-4450. doi: 10.1002/ps.7644. Epub 2023 Jul 20.
Pesticide spray drift, which is the movement of pesticide by wind to any location other than the intended area, is hazardous to human, animal, food safety and environmental health. It is not possible to completely eliminate spray drift during spraying with field crop sprayers, but spray drift can be reduced by developing new technologies. The most common methods to reduce spray drift are carrying the droplets to the target with air-assisted spraying, electrostatic spraying, preferring air induction nozzles and boom shields. With these methods, it is not possible to make a change on the sprayer depending on the wind intensity during spraying. In this study, a novel servo-controlled spraying system was designed and developed to change the nozzle orientation angle in the reverse direction of the wind current to reduce the ground spray drift in real time and automatically in a wind tunnel. The displacement in the spray pattern (D ) was used as a ground drift indicator for each nozzle to evaluate the spray drift.
The developed system, operated by LabVIEW software, calculated different nozzle orientation angles depending on nozzle types, wind velocities and spraying pressures. Orientation angles calculated for different test conditions achieved in reduction were up to 49.01% for XR11002 nozzle, 32.82% for AIXR11002 nozzle and 32.31% for TTJ6011002 nozzle at 400 kPa spray pressure and 2.5 m s wind velocity.
The developed system, which has a self-decision mechanism, calculated the nozzle orientation angle instantaneously according to the wind velocity. It has been observed that the adjustable spraying nozzle system, sprayed with high precision towards the wind in the wind tunnel, and the developed system have advantages compared to conventional spraying systems. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
农药飘移是指农药在风力作用下飘移到非预定区域的现象,对人类、动物、食品安全和环境健康都构成危害。在田间喷雾器喷雾过程中,不可能完全消除飘移,但可以通过开发新技术来减少飘移。减少飘移最常用的方法是采用空气辅助喷雾使雾滴向目标移动、静电喷雾、优先使用空气诱导喷嘴和喷杆挡板。使用这些方法,无法根据喷雾过程中的风力强度在喷雾器上进行更改。在这项研究中,设计和开发了一种新型的伺服控制喷雾系统,以实时和自动地改变喷嘴的方向角,以减少风洞中地面喷雾飘移。将喷雾模式的位移 (D) 用作每个喷嘴的地面飘移指标来评估飘移。
该系统由 LabVIEW 软件操作,根据喷嘴类型、风速和喷雾压力计算不同的喷嘴方向角。在不同测试条件下计算的方向角可实现高达 49.01%的 XR11002 喷嘴、32.82%的 AIXR11002 喷嘴和 32.31%的 TTJ6011002 喷嘴的降低,在 400 kPa 喷雾压力和 2.5 m/s 风速下。
开发的系统具有自我决策机制,根据风速即时计算喷嘴方向角。在风洞中,可调式喷雾喷嘴系统能够高精度地向风喷雾,与传统喷雾系统相比具有优势。