首页> 外文期刊>Engenharia Agrícola >DROPLET DISTRIBUTION AS A FUNCTION OF COTTON INTERROW SPACING AND ANGLES OF SPRAYER DISPLACEMENT
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DROPLET DISTRIBUTION AS A FUNCTION OF COTTON INTERROW SPACING AND ANGLES OF SPRAYER DISPLACEMENT

机译:液滴分布作为棉布行距和喷雾器角度的函数

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摘要

Application technology factors may be influenced by changes in plant architecture, such as height and leaf area. This study aimed to evaluate which angle of sprayer displacement in the application of pesticides in relation to the direction of cotton sowing, cultivated in the ultra-narrow row, narrow row, and conventional systems, provides the best application quality characteristics in the different thirds of plants. The experiment was installed in a split-plot design with four replications in the 3 × 4 factorial scheme, composed of three cotton cultivation systems and four angles of sprayer displacement in relation to the direction of the sowing rows. The evaluated characteristics were mean volumetric diameter, density and coverage of droplets, number of droplets, and open area in the interrows without leaf. The upper third presented the highest values of mean volumetric diameter, number of droplets, and density and coverage of droplets for all interrow spacing and application angles. The angle of displacement of 30° in relation to the sowing row presented the best results in relation to the number and density of droplets. The spacing of 0.90 m in the interrows increased the number of droplets, droplet density, and coverage in the lower third of plants.
机译:应用技术因素可能会受植物结构变化的影响,例如高度和叶面积。这项研究旨在评估在超窄行,窄行和常规系统中耕作的喷药器在棉花施用方向上相对于棉花播种方向而言的哪个移位角度,可提供不同三分之二的最佳施用质量特征。植物。该实验以3×4因子方案的四次重复进行,采用剖分设计安装,该方案由三个棉花种植​​系统和相对于播种行方向的四个喷雾器位移角度组成。评价的特征是平均体积直径,液滴的密度和覆盖率,液滴数和无叶行间的开口面积。上三分之一表示所有行间距和应用角度的平均体积直径,液滴数量以及密度和液滴覆盖率的最大值。相对于播种行的30°位移角相对于液滴的数量和密度表现出最好的结果。行间的距离为0.90 m,增加了植物下部三分之一处的液滴数量,液滴密度和覆盖率。

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