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基于无人机施药的喷雾性能和对稻田害虫的防治效果:雾化效果、无人机配置和飞行速度的影响。

Spray performance and control efficacy against pests in paddy rice by UAV-based pesticide application: effects of atomization, UAV configuration and flight velocity.

机构信息

College of Science, China Agricultural University, Beijing, China.

College of Agricultural Unmanned System, China Agricultural University, Beijing, China.

出版信息

Pest Manag Sci. 2024 Apr;80(4):2072-2084. doi: 10.1002/ps.7942. Epub 2024 Jan 20.

Abstract

BACKGROUND

Over the past decade, unmanned aerial vehicle (UAV) sprayers have emerged as valuable tools for pesticide application across various crops. Despite their increasing usage, the impact of several factors on spray performance and control efficacy in paddy fields warrants further investigation. This study examines atomization characteristics using a UAV spray test platform. Our evaluation of field spraying performance considers three UAV models, two nozzle types, two flight velocities, and adding methylated vegetable oil adjuvant (MVOA), in comparison with the electrical knapsack sprayer (EKS).

RESULTS

Atomization characteristics demonstrated consistency within the downwash airflow field, but were influenced by spray solution, nozzle type, and spray pressure. The eight-rotor UAV sprayer excelled over the quad-rotor model in terms of spray deposition across both upper and lower rice canopies. The six-rotor UAV exhibited enhanced spray deposition, droplet density, and coverage at a flight velocity of 4 m s . The choice of nozzle was pivotal; the flat fan nozzle produced finer droplets with desirable deposition and coverage, whereas the air-induction nozzle created larger droplets with consistent coverage at various flight velocities. Adding MVOA improved the physicochemical properties of the spray and its performance, yielding a more uniform distribution. When compared with the EKS, UAVs showed lower deposition but comparable spray penetration. Control efficacy with the UAV sprayer was less effective against Mythimna separata but achieved 81% efficacy against Laodelphax striatellus within 7 days.

CONCLUSION

This study demonstrates that UAV sprayers, particularly when combined with tank-mix adjuvants and nozzle types, can be highly effective for controlling rice pests. © 2023 Society of Chemical Industry.

摘要

背景

在过去的十年中,无人机(UAV)喷雾器已成为各种作物施药的重要工具。尽管它们的使用越来越多,但仍需要进一步研究许多因素对稻田喷雾性能和控制效果的影响。本研究使用无人机喷雾测试平台研究了雾化特性。我们评估了田间喷雾性能,考虑了三种无人机模型、两种喷嘴类型、两种飞行速度以及添加甲基化植物油助剂(MVOA),并与背负式电动喷雾器(EKS)进行了比较。

结果

雾化特性在下降气流场中表现出一致性,但受喷雾溶液、喷嘴类型和喷雾压力的影响。八旋翼无人机喷雾器在上下稻冠层的喷雾沉积方面优于四旋翼模型。六旋翼无人机在 4m/s 的飞行速度下表现出更好的喷雾沉积、液滴密度和覆盖率。喷嘴的选择至关重要;扁平扇形喷嘴产生更细的液滴,具有理想的沉积和覆盖效果,而空气诱导喷嘴在各种飞行速度下产生更大的液滴,具有一致的覆盖效果。添加 MVOA 可改善喷雾的物理化学性质及其性能,实现更均匀的分布。与 EKS 相比,无人机的沉积量较低,但喷雾穿透性相当。与无人机喷雾器相比,对粘虫的防治效果较差,但在 7 天内对褐飞虱的防治效果达到 81%。

结论

本研究表明,特别是当与罐混助剂和喷嘴类型结合使用时,无人机喷雾器可以非常有效地控制水稻害虫。 © 2023 化学工业协会。

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