Center for Precision and Automated Agricultural Systems, Department of Biological Systems Engineering, Washington State University, Prosser, WA, USA.
Pest Manag Sci. 2024 Aug;80(8):4044-4054. doi: 10.1002/ps.8111. Epub 2024 Apr 23.
The hydraulic spray delivery (HSD)-based solid set canopy delivery system (SSCDS) emitter configuration has been optimized for agrochemical applications in vertical shoot position (VSP) vineyards. It uses cost-prohibitive emitters, and their placement restricts the mechanical pruning activities. Therefore, this study focused on optimizing the spray performance of a pneumatic spray delivery (PSD)-based SSCDS variant that addresses the earlier issues. Three PSD-SSCDS emitter configurations (C1-C3) were designed using modified low-cost emitters (E1: modified flat fan, E2: 90° modular flat fan) for agrochemical applications in VSP vineyards. C1 had an E1 installed on trellis posts at 1.67 m above ground level. C2 had a pair of E2 installed per vine at 0.3 m below the cordon, while C3 combined the emitter placement of C1 and C2. The spray deposition (ng cm) and coverage (%) were quantified (mean ± standard error) using mylar cards and water-sensitive paper samplers placed within the canopy, respectively.
Spray deposition for C1, C2, and C3 was 301.12 ± 63.30, 347.9 ± 66.29, and 837.6 ± 92.53 ng cm, respectively. Whereas spray coverage for corresponding configurations was 18.02 ± 2.63, 8.98 ± 1.84, and 28.84 ± 2.46%, respectively.
Overall, configuration C3 provided significantly higher spray deposition and coverage than C1 and C2. Substantially reduced system installation cost and emitter density per hectare with improved spray performance were achieved by C3 compared to earlier optimized HSD-SSCDS configuration in the VSP vineyards. © 2024 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
基于液压喷雾输送(HSD)的固体定距式喷头输送系统(SSCDS)的喷头配置已针对垂直枝蔓位置(VSP)葡萄园中的农业化学应用进行了优化。它使用昂贵的喷头,其布置限制了机械修剪活动。因此,本研究专注于优化基于气动喷雾输送(PSD)的 SSCDS 变体的喷雾性能,该变体解决了早期的问题。为了在 VSP 葡萄园进行农业化学应用,设计了三种 PSD-SSCDS 喷头配置(C1-C3),使用修改后的低成本喷头(E1:修改后的扁平扇形喷头,E2:90°模块式扁平扇形喷头)。C1 在离地 1.67 米的棚架柱上安装了一个 E1。C2 在葡萄蔓下方 0.3 米处安装了一对 E2,而 C3 则结合了 C1 和 C2 的喷头布置。使用置于树冠内的聚酯薄膜卡片和水敏纸取样器分别量化了沉积量(ng/cm)和覆盖率(%)(平均值±标准误差)。
C1、C2 和 C3 的喷雾沉积量分别为 301.12±63.30、347.9±66.29 和 837.6±92.53 ng/cm,相应的喷雾覆盖率分别为 18.02±2.63、8.98±1.84 和 28.84±2.46%。
总体而言,C3 的喷雾沉积量和覆盖率均明显高于 C1 和 C2。与 VSP 葡萄园中先前优化的 HSD-SSCDS 配置相比,C3 显著降低了系统安装成本和每公顷的喷头密度,同时提高了喷雾性能。©2024 作者。《农药科学》由 John Wiley & Sons Ltd 代表化学工业协会出版。