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无人机喷施对高坡梯田葡萄园两种葡萄架式下雾滴效果的影响

Spraying Effects of UAV Application on Droplet Effectiveness in Two Vine Trellis Systems of High-Slope Terrace Vineyards.

作者信息

Le Zhao, Gutiérrez-Gamboa Gastón, Dong Mengde, Zheng Wei, Sun Baoshan

机构信息

School of Functional Food and Wine, Shenyang Pharmaceutical University, Shenyang 110016, China.

Instituto de Investigaciones Agropecuarias, INIA Carillanca, km 10 Camino Cajón-Vilcún s/n, Temuco Casilla Postal 929, Chile.

出版信息

Plants (Basel). 2025 May 13;14(10):1452. doi: 10.3390/plants14101452.

Abstract

The application of unmanned aerial vehicles (UAVs) in viticulture is becoming increasingly popular. To the best of our knowledge, there are no studies comparing the effects of UAV spraying to manual spraying in high-slope vineyards. The goal of this study was to evaluate the effects of UAV spraying on droplet average diameter, droplet area percentage, and droplet density for vines grown using vertical shoot positioning (VSP) and Y-shaped trellis systems and to compare them with the effects of manual spraying via an electric knapsack sprayer. The results showed that manual spraying led to the greatest area of droplets for the VSP trellis system, and the uniformity and penetration of droplets with the UAV spraying method were higher than those for manual spraying for this trellis system. Regarding the Y-shaped trellis system, the UAV spraying method yielded lower droplet diameters, higher droplet density, and better uniformity and penetration than manual spraying. Moreover, conducting UAV spraying twice showed no statistical differences in droplet area percentage compared to manual spraying, and the effect of UAV spraying even once was similar to that of manual spraying on the abaxial sides of the leaves in this respect. Our research indicates that UAV spraying was not very suitable for VSP trellis systems, but it could be a good alternative for Y-shaped trellis systems since it is safe and cost-effective by reducing labor, time, and the dosages of the solutions applied.

摘要

无人机在葡萄种植中的应用越来越普遍。据我们所知,尚无研究比较无人机喷雾与人工喷雾在高坡葡萄园中的效果。本研究的目的是评估无人机喷雾对采用垂直单干双臂(VSP)和Y形架系统种植的葡萄藤的液滴平均直径、液滴面积百分比和液滴密度的影响,并将其与背负式电动喷雾器人工喷雾的效果进行比较。结果表明,对于VSP架式系统,人工喷雾产生的液滴面积最大,而对于该架式系统,无人机喷雾方法的液滴均匀性和穿透性高于人工喷雾。对于Y形架式系统,无人机喷雾方法产生的液滴直径更小、液滴密度更高,且均匀性和穿透性优于人工喷雾。此外,无人机喷雾两次与人工喷雾相比,在液滴面积百分比上没有统计学差异,在这方面,无人机即使只喷雾一次,其在叶片背面的效果与人工喷雾相似。我们的研究表明,无人机喷雾不太适合VSP架式系统,但对于Y形架式系统可能是一个很好的选择,因为它安全且具有成本效益,可减少劳动力、时间和溶液施用量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3249/12114775/9e9c72971c0b/plants-14-01452-g001.jpg

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