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LABORATORY AND FULL BOOM-BASED INVESTIGATION OF NOZZLE SETUP ERROR EFFECTS ON FLOW, PRESSURE, AND SPRAY PATTERN DISTRIBUTION

机译:基于实验室和全锅炉的喷嘴设置误差对流量,压力和喷雾模式分布的影响研究

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摘要

Pesticide application is an integral part of crop production, and ground-based agricultural boom sprayers are used extensively to apply pesticides to the crop canopy or soil surface across millions of acres in the United States. Efficient application is necessary to minimize costs and limit adverse environmental impacts. The goals of this study were to provide quantified measurements on the effects of nozzle setup errors on spray pattern uniformity and evaluate how laboratory patternator-based simulations would compare to measurements on a full spray boom. More specific objectives were to determine the effects of factors such as nozzle lateral angle, nozzle spacing, nozzle replacement, and nozzle pitch angle on spray pattern distribution and evaluate a simulation approach to predict the effects of single nozzle boom setup errors on full boom system pattern uniformity. Laboratory and sprayer-based tests were devised to quantify the impact of nozzle setup and operational errors on spray pattern uniformity, boom pressure, and nozzle flow rates. Results indicated that small variations in boom setup or nozzle operation (i.e., pressure or flow) can cause significant errors in spray nozzle distribution which may not be completely detectable by measuring spray pattern alone. Simulations using laboratory data from setup or operational errors reflected similar changes (differences less than 2.6%) in spray pattern CV as full boom data with similar setup errors. These findings were significant in that it may be possible to model errors within full boom spray distributions based on smaller laboratory-collected datasets.
机译:农药的施用是农作物生产不可或缺的一部分,在美国数百万英亩的土地上,广泛使用地面农用喷雾器向农作物的冠层或土壤表面施用农药。必须进行有效的应用,以最大程度地降低成本并限制不利的环境影响。这项研究的目的是就喷嘴设置误差对喷雾图案均匀性的影响提供量化的测量,并评估基于实验室图案师的模拟与整个喷杆上的测量相比如何。更具体的目标是确定诸如喷嘴横向角度,喷嘴间距,喷嘴更换和喷嘴俯仰角等因素对喷雾模式分布的影响,并评估一种模拟方法来预测单个喷嘴臂设置错误对整个喷杆系统模式的影响均匀性设计了基于实验室和喷雾器的测试,以量化喷嘴设置和操作错误对喷雾图案均匀性,喷杆压力和喷嘴流速的影响。结果表明,动臂设置或喷嘴操作(即压力或流量)的微小变化会导致喷嘴分布的重大错误,仅通过测量喷雾模式可能无法完全检测到该错误。使用来自设置或操作错误的实验室数据进行的模拟将喷雾模式CV中的相似变化(差异小于2.6%)反映为具有相似设置误差的全动臂数据。这些发现意义重大,因为有可能根据较小的实验室收集的数据集对整个喷杆喷雾分布内的误差进行建模。

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