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Developing strategies to reduce spray drift in pneumatic spraying in vineyards: Assessment of the parameters affecting droplet size in pneumatic spraying

机译:开发减少葡萄园气动喷涂喷雾漂移的策略:影响气动喷涂液滴尺寸的参数评估

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摘要

Pneumatic sprayers are widely used in vineyards due to their very fine droplet size, which makes the drift risk to become an important problem to be considered. The aim of this study was to assess the effect of the spout diameter at the release point on the spray droplet size and uniformity achieved for different liquid flow rates (LFR) and air flow rates (AFR).A test bench was developed to simulate a real pneumatic sprayer under laboratory conditions, and it was empirically adjusted to match the air pressure conditions as closely as possible to real working conditions. Two positions of insertion of the liquid hose, the conventional position (CP) and an alternative position (AP), were tested for three LFRs, 1.00, 1.64, and 2.67Lmin-1, and four AFRs, 0.280, 0.312, 0.345, and 0.376m3 s-1. The air speed decrease between the two insertion points of the liquid hose was measured. A Malvern SprayTec® instrument was used to measure the droplet size, and the D50, D10, and D90 parameter values were obtained. The relative SPAN factor (RSF) was also calculated. A model to predict variations in D50 was fitted using the aforementioned parameters.The results show that variations in the diameter of the spout significantly change the droplet size, producing a mean increase of 59.45% in D50 and similar increases in D10 and D90. The model developed to predict variations in D50 has a very high degree of accuracy (R2 =0.945). The relative decrease in the air speed along the spout did not present significant differences for the different airflow rates tested. The results of the study show that the droplet size produced in pneumatic spraying can be modified easily by varying the air spout dimensions. This should be taken into account by manufacturers from a design point of view.
机译:由于其非常细小的液滴尺寸,气动喷雾器广泛用于葡萄园中,这使得漂移风险成为成为待考虑的重要问题。本研究的目的是评估喷口直径在喷射液滴尺寸上的释放点的影响,并且对不同液体流速(LFR)和空气流速(AFR)的均匀性进行了开发了用于模拟a的测试台实验室条件下真正的气动喷雾器,经验经验调整,以尽可能地与真正的工作条件相匹配。测试液体软管的两个位置,常规位置(CP)和替代位置(AP)进行三次LFR,1.00,1.64和2.67mlm-1,0.280,0.312,0.345和0.376M3 S-1。测量液体软管的两个插入点之间的空气速度降低。使用MalvernSpraytec®仪器测量液滴尺寸,并且获得D50,D10和D90参数值。还计算了相对跨度因子(RSF)。使用上述参数将用于预测D50变化的模型。结果表明,喷口直径的变化显着改变液滴尺寸,在D50中产生59.45%的平均增加和D10和D90的增加。开发用于预测D50的变化的模型具有非常高的精度(R2 = 0.945)。沿喷口的空气速度的相对减小对测试的不同气流速率没有显着差异。该研究的结果表明,通过改变空气喷口尺寸,可以容易地改变气动喷涂中产生的液滴尺寸。这应该由制造商从设计的角度考虑。

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