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Development and Performance Evaluation of a Pneumatic Solid Set Canopy Delivery System for High-Density Apple Orchards

机译:高密度苹果园气动固体套装遮篷传递系统的开发与性能评价

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摘要

Solid set canopy delivery systems (SSCDS) are fixed spray systems that consist of a network of permanently plumbed emitters in high-density tree-fruit orchard canopies. Most of the previously configured SSCDS worked on the principle of hydraulic spraydelivery (HSD), which may not be suitable for large-scale installation due to the drop in operating pressure caused by frictional losses in the spray lines. Therefore, a pneumatic spray delivery (PSD) based SSCDS was developed in this study for potentially achieving uniform spray application at all locations along the spray lines. A reservoir subsystem was developed to contain a precisely metered amount of spray liquid. Once filled, compressed air pushed through the spray lines can pressurize the reservoir to help deliver uniform spray into the canopy through emitters. In this study, HSD and PSD systems of 91 m set length were installed in a high-density apple orchard. Both systems wre evaluated for variations in operating pressure, spray output, andspray performance. Spray performance was quantified during the middle (BBCH 75) and late (BBCH 85) apple (cv. WA-38 on tall spindle architecture) crop growth stages. Deposition and coverage in three canopy zones and on both sides of leaves were evaluatedusing Mylar cards and water-sensitive papers (WSP) as samplers, respectively. The Mylar cards and WSP were respectively analyzed using fluorometry and image processing. Statistically similar operating pressure (p > 0.05) was observedfor theHSD and PSD systems at 3 m (286.1 and 284.1 kPa, respectively), 33 m (268.4 and270.5 kPa), 60 m (260.6 and268.9 kPa), and 87 m (255.3 and 257.9 kPa) from the row inlet. Despite the operating pressure drop, the PSD system had uniform spray output along the 91 m sprayline. Compared to the HSD system, about 4%} 3%, 5%, and 20% higher spray output was delivered with the PSD system at 3, 33, 60, and 87 m, respectively, along the spray line. Overall, the PSD system had significantly higher mean spray deposition (p < 0.01) compared to the HSD system during the middle (521 and 382 ng cm~(-2) respectively) and late (631 and 409 ng cm~(-2), respectively) growth stages. The PSD system also had numerically higher spray deposition compared to the HSD system for all the canopyzones and on either side of leaf surfaces. Spray coverage trends were similar to deposition; however, the differences were not significant. Overall, the PSD-based SSCDS shows potential for large-scale installation, with additional refinements, for uniform spray applications in high-density apple orchards.
机译:固体套装盖输送系统(SSCD)是固定喷涂系统,该系统包括高密度树果园檐篷中的永久解体器的网络。大多数先前配置的SSCD都符合液压喷射(HSD)的原理,这可能不适用于大规模安装,由于喷射线中的摩擦损失引起的操作压力下降。因此,在该研究中开发了一种气动喷射递送(PSD)的SSCD,用于沿着喷雾线的所有位置潜在地实现均匀的喷涂应用。研发储层子系统以含有精确计量的喷雾液体。一旦填充,通过喷射管线推动的压缩空气就可以将储存器加压,以帮助通过发射器将均匀的喷雾送入冠层。在本研究中,91米设定长度的HSD和PSD系统安装在高密度苹果园中。两种系统编写评估用于操作压力,喷雾输出,和叠华性能的变化。在中间(BBCH 75)和晚期(BBCH 85)苹果(CV.WA-38上)定量喷雾性能。沉积和覆盖在三个顶篷区域和叶子两侧分别评估Mylar卡和水敏纸(WSP)作为采样器。使用荧光测定和图像处理分别分析MyLar卡和WSP。在3米(286.1和284.1kPa),33μm(268.4和270.5kPa),60米(260.6和268.9kPa),60米(260.6和268.9 kPa)和87米,观察到统计学上类似的操作压力(p> 0.05)。 (255.3和257.9 kPa)从行入口。尽管工作压降,PSD系统沿91米的喷雾器均匀喷雾输出。与HSD系统相比,约4%} 3%,5%和20%的喷雾输出在3,33,60和87米处,沿着喷射线分别使用PSD系统输送。总体而言,与中间(521和382ng cm〜(-2)的HSD系统相比,PSD系统的平均喷雾沉积(P <0.01)显着增加(分别为521和382 ng cm〜(-2)(631和409 ng cm〜(-2))分别)生长阶段。与所有罐子过区的HSD系统和叶片表面的两侧相比,PSD系统也具有数值更高的喷涂沉积。喷雾覆盖率趋势与沉积类似;但是,差异并不重要。总的来说,基于PSD的SSCD显示了大规模安装的可能性,具有额外的改进,用于高密度苹果园的均匀喷涂应用。

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