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Assessment of spray drift potential reduction for hollow-cone nozzles: Part 1. Classification using indirect methods

机译:空心锥形喷嘴的喷雾漂移电位降低的评估:第1部分。使用间接方法进行分类

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Spray drift is one of the main pollution sources identified when pesticides are sprayed on crops. In this work, in order to simplify the evaluation of hollow-cone nozzles according to their drift potential reduction, several models commonly used were tested by three indirect methods: phase Doppler particle analyser (PDPA) and two different wind tunnels. The main aim of this study is then to classify for the first time these hollow-cone nozzle models all of them used in tree crop spraying (3D crops). A comparison between these indirect methods to assess their suitability and to provide guidelines for a spray drift classification of hollow-cone nozzles was carried out. The results show that, in general terms, all methods allow hollow-cone nozzle classifications according to their drift potential reduction (DAR) with a similar trend. Among all the parameters determined with the PDPA, the V-100 parameter performed best in differentiating the tested nozzles among drift reduction classes. In the wind tunnel, similar values were obtained for both sedimenting and airborne drift depositions. The V-100 parameter displayed a high correlation (up to R-2 = 0.948) with the drift potential tested with the wind tunnel. It is concluded that in general, the evaluated indirect methods provide equivalent classification results. Additional studies with a greater variety of nozzle types are required to achieve a proposal of harmonized methodology for testing hollow-cone nozzles. (C) 2019 Elsevier B.V. All rights reserved.
机译:喷雾漂移是在农作物上喷洒农药时发现的主要污染源之一。在这项工作中,为了简化根据空心锥喷嘴漂移电位降低的评估,通过三种间接方法对几种常用模型进行了测试:相位多普勒粒子分析仪(PDPA)和两个不同的风洞。然后,本研究的主要目的是首次将这些空心锥体喷嘴模型全部用于树木农作物喷雾(3D作物)中。对这些间接方法进行了比较,以评估其适用性并为空心锥形喷嘴的喷雾漂移分类提供指导。结果表明,总的来说,所有方法都可以根据空心锥喷嘴的漂移电位降低(DAR)趋势进行分类。在用PDPA确定的所有参数中,V-100参数在区分降低漂移等级的测试喷嘴方面表现最佳。在风洞中,对于沉降和空中漂移沉积都获得了相似的值。 V-100参数与风洞测试的漂移电位显示出高度相关性(最高R-2 = 0.948)。结论是,通常,所评估的间接方法可提供等效的分类结果。为了实现提出用于测试空心圆锥形喷嘴的统一方法的建议,需要对喷嘴类型进行更多的附加研究。 (C)2019 Elsevier B.V.保留所有权利。

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