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Model to predict spray deposition in citrus airblast sprayer applications: Part 2. Spray deposition.

机译:预测柑桔型喷枪喷雾器中喷雾沉积的模型:第2部分。喷雾沉积。

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摘要

A model was developed to simulate spray dispersion and predict pesticide deposition in citrus trees when using an air-carrier sprayer. The model can be split into two parts: (1) dispersion, which focuses on spray transport and droplet dispersion in open space, and (2) deposition, which focuses on spray transport and deposition inside a canopy. The dispersion part of the model and its validation were presented in the first part of this article. This second part presents details of the deposition component of the model and validation with data from a field experiment. The experiment involved spray application of a fluorescent dye solution to orange trees using a conventional airblast sprayer, and sampling leaves at two heights and four canopy depths. The spray treatments, consisting of combinations of two nozzles (Albuz ATR Lilac and Blue) and two forward speeds (2.4 and 4.8 km h-1), were applied in a randomized complete block design with five replications. Samples were analyzed by fluorometry, and leaf area was measured with an area meter. The results showed good agreements between the model output and the experimental data for canopy deposition, with the best predictions yielding a modeling efficiency and correlation coefficient of 61.3% and 0.92, respectively. However, the ground deposition data were overly underpredicted by more than three orders of magnitude and were not considered appropriate. This shortcoming notwithstanding, the model has potential for meeting the set objectives, and it has been implemented in an expert system to assist spray applicators in making decisions critical for efficient spray operations.
机译:开发了一个模型来模拟喷雾分散,并在使用空气喷雾器时预测柑橘树中的农药沉积。该模型可分为两部分:(1)分散,着重于开放空间中的喷雾传输和液滴分散,以及(2)沉积,着重于顶棚内部的喷雾传输和沉积。本文的第一部分介绍了模型的分散部分及其验证。第二部分详细介绍了模型的沉积成分,并通过现场实验数据进行了验证。该实验涉及使用常规吹风机将荧光染料溶液喷涂到橘树上,并在两个高度和四个顶篷深度处对叶片进行采样。由两个喷嘴(Albuz ATR淡紫色和蓝色)和两个前进速度(2.4 km and 4.8 km h -1 )的组合组成的喷雾处理,在随机完整块设计中进行了五次重复。通过荧光法分析样品,并用面积计测量叶面积。结果表明,模型输出与冠层沉积的实验数据之间具有良好的一致性,最好的预测产生的建模效率和相关系数分别为61.3%和0.92。但是,地面沉积数据被低估了三个数量级以上,被认为是不合适的。尽管存在这一缺点,该模型仍具有实现设定目标的潜力,并且已在专家系统中实施,可帮助喷涂人员做出对高效喷涂操作至关重要的决策。

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