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Wind Tunnel and Field Evaluation of Drift from Aerial Spray Applications with Multiple Spray Formulations

机译:具有多种喷雾配方的空中喷雾应用的风洞和野外评估

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The impact of tank mix adjuvants and a formulated fungicide on spray atomization and in-field movement under aerial application conditions was examined. High speed wind tunnel testing was conducted to determine droplet size resulting from treatments selected for evaluation in the field. These treatments included a "blank" (water plus a non-ionic surfactant) as well as five additional solutions with a formulated fungicide, four of which have an additional adjuvant. The wind tunnel testing measured droplet size using the flat fan nozzles and operational parameters (spray pressure, nozzle orientation, and airspeed) selected for field trials. These treatments were then evaluated in the field for both in-swath and downwind deposition, with a mass balance on the measured results used to compare each of the formulated product treatments to a reference treatment. Wind tunnel results showed the formulated product tank mixes resulted in significantly different droplet sizes than the water and non-ionic surfactant "blank" reference sprays. Additional adjuvants resulted in minimal changes in droplet size as compared to the formulated product mixture. However the polymer tested broadened the droplet size distribution. Drift modeling of the wind tunnel droplet size results demonstrated little difference between the formulated product and spray adjuvant spray mixtures. However, all treatment solutions significantly reduced modeled drift as compared to the reference treatment. While the field study results did highlight significant differences between treatments solutions, it also showed a great degree in data variability as a result of meteorological and sampling issues. These results have led the authors to conclude that field testing of potential drift reduction technologies under aerial application conditions will be cost prohibitive and likely would give highly variable results. Wind tunnel evaluations at certified laboratories offer a much quicker and inexpensive method for evaluating large numbers of nozzle and spray formulation treatments.
机译:考察了桶混助剂和配制的杀菌剂对空中应用条件下喷雾雾化和田间运动的影响。进行了高速风洞测试,以确定由现场评估选择的处理产生的液滴尺寸。这些处理包括“空白”(水加非离子表面活性剂)以及五种配制有杀菌剂的其他溶液,其中四种具有其他佐剂。风洞测试使用平板风扇喷嘴和为现场试验选择的运行参数(喷雾压力,喷嘴方向和空速)测量了液滴的大小。然后在野外评估这些处理的顺风和顺风沉积,并在测量结果上取得质量平衡,以将每种配方的产品处理与参考处理进行比较。风洞试验结果表明,与水和非离子表面活性剂“空白”参比喷雾剂相比,配制的产品罐混物产生的液滴尺寸显着不同。与配制的产品混合物相比,其他佐剂导致的液滴尺寸变化最小。然而,测试的聚合物加宽了液滴尺寸分布。风洞液滴尺寸结果的漂移模型表明,配方产品和喷雾助剂喷雾混合物之间几乎没有差异。但是,与参考处理相比,所有处理解决方案均显着降低了模型化的漂移。尽管实地研究的结果确实突出了不同处理方案之间的显着差异,但由于气象和采样问题,它也显示出很大程度的数据可变性。这些结果使作者得出的结论是,在航空应用条件下对潜在的漂移减小技术进行现场测试将是成本过高的,并且可能会产生高度可变的结果。在认证实验室进行的风洞评估为评估大量喷嘴和喷雾配方处理提供了一种更快,更便宜的方法。

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