无人机在榛子园作物生产中应用参数的确定

Hasan Özyurt, H. Duran, İ. Çelen
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引用次数: 2

摘要

榛子是世界上除杏仁和核桃之外种植面积最广的有壳水果,含有高水平的脂肪、蛋白质、碳水化合物、多种矿物质和维生素。榛子在世界各地有着广阔的种植区,土耳其每年生产77.6万吨榛子,占世界产量的58%。凭借这种生产能力,土耳其的榛子产量在世界上排名第一。有害昆虫是影响榛子产量和品质的主要因素。在对付榛子树上的这些害虫时,人们用背包式喷雾器喷洒农药。在这些做法中,农民直接接触农药,使用大量农药和水。近年来,无人农用车在农业上的应用越来越多。无人机还用于农业农药的应用。本研究从田间条件和喷洒效果两方面考察了无人机在吉列松省榛子田间施用农药的适宜性。2021年9月,在吉雷松省乌兹古尔村的一个选定的榛子果园,使用大疆Agras MG-1P模型喷洒无人机进行了应用。无人机有4个Teejet XR11001VS风扇喷气喷嘴。对水敏感的纸张被放置在榛子树的不同区域,以进行水滴测量。在试验中,对榛子树进行不同高度和不同喷施速率的喷施。在1.5米和2米高度、1、2和3 L.da-1喷雾量进行了6次飞行,每次飞行3次重复喷洒3棵榛子树。在飞行试验后,将水敏纸在扫描仪上扫描,并在DepositScan软件中计算体积中值直径和每平方厘米的液滴数。根据所做的分析,观察到以1 L.da-1和2 L.da-1的喷雾率进行的应用在喷洒效率方面是不够的。随着无人机飞行高度的增加,内叶液滴积累量减少。雾滴分布最均匀的施用参数为榛子树上部叶片上方1.5 m,喷施量为3 L.da-1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the Application Parameters of Spraying Drones for Crop Production in Hazelnut Orchards
Hazelnut, which has the most common cultivation area after almonds and walnuts among the shell fruits in the world, contains high levels of fat, protein, carbohydrates, various minerals and vitamins. Hazelnut has a broad growing area around the world, and Turkey accounts for 58% of world production with 776,000 tons annually. With this production capacity, Turkey ranks first in hazelnut production over the world. Harmful insects in hazelnut trees are the main factors that reduce hazelnut yield and quality. Pesticides are sprayed with backpack sprayers in the fight against these pests in hazelnut trees. Farmers are directly exposed to pesticides in these practices, which use high amounts of pesticides and water. In recent years, the use of unmanned agricultural vehicles in agriculture has increased. Drones are also used in pesticide applications in agriculture. In this study, the suitability of pesticide applications with the drone in hazelnut fields in Giresun province in terms of field conditions and spraying efficiency was investigated. In September 2021, applications were made with DJI Agras MG-1P model spraying drone in a selected hazelnut orchard in Uzgur village of Giresun province. The drone has 4 Teejet XR11001VS fan jet nozzles. Water-sensitive papers were placed on different regions on the hazelnut trees to be sprayed for drop measurements. In the experiments, hazelnut trees were sprayed using water at different heights and spraying rates. 6 flights were carried out at 1.5 and 2 meters altitudes and 1, 2 and 3 L.da-1 spray rates, and three hazel trees were sprayed as three repetitions in each flight. After the flight trials, the water-sensitive papers were scanned on the scanner, and the volume median diameters and the number of droplets per square centimetre were calculated in the DepositScan software. As a result of the analyses done, it was observed that the applications performed at 1 L.da-1 and 2 L.da-1 spray rates would not be sufficient in terms of spraying efficiency. As the drone flight altitude increased, the accumulation of the drops on the inner leaves decreased. In terms of drop distribution, the most homogeneous application parameter was found to be 1.5 meters high above the upper leaves of the hazel trees and 3 L.da-1 spray rate.
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