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Modeling the Spray Atomization of Emulsion Embedded Agricultural Solutions

机译:乳化嵌入式农业解决方案的喷雾雾化建模

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A typical agricultural chemical spray process involves atomizing a liquid stream of diluted pesticide solution through hydraulic spray nozzles that inherently produce a wide spectrum of spray droplet sizes. Finer droplets have higher potential for off-target movement or drift, which is of concern due to its potential impact on neighboring crops and livestock, sensitive ecological resources, and human health. Research by the Spray Drift Task Force and others has demonstrated that, although spray nozzle selection and application parameters are the key factors to produce the desired droplet size spectrum, the physical properties of the spray solution have significant effects on the droplet size distribution for various kinds of nozzles. One of these properties of many spray fluids is the inclusion of an oil phase in the form of an emulsion. The effect of oil-in-water emulsions on the spray droplet size distribution has been demonstrated by previous work. However, the mechanisms of this effect are largely unknown. In this study, a method to model this effect was proposed. A characteristic dimensionless number for connecting the bulk spray properties and the microscopic emulsion droplet properties was defined as the ratio between the emulsion recovery time and the spray atomization time. This study will help in the design of agricultural spray nozzles and the optimization of anti-drift spray additives.
机译:典型的农用化学喷雾工艺涉及通过液压喷嘴雾化稀释农药溶液的液流,该喷嘴固有地产生宽范围的喷雾液滴尺寸。较细的液滴具有更高的脱靶移动或漂移的潜力,这是令人担忧的,这是因为其会对邻近的农作物和牲畜,敏感的生态资源以及人类健康产生潜在的影响。喷雾漂移工作组等人的研究表明,尽管喷嘴的选择和应用参数是产生所需液滴尺寸谱的关键因素,但喷雾溶液的物理性质对各种液滴尺寸的分布均具有显着影响。的喷嘴。许多喷雾流体的这些特性之一是包含乳液形式的油相。先前的工作已经证明了水包油型乳剂对喷雾液滴尺寸分布的影响。但是,这种作用的机制在很大程度上尚不清楚。在这项研究中,提出了一种模拟这种效果的方法。用于连接整体喷雾性能和微观乳液液滴性能的特征无量纲数定义为乳液恢复时间与喷雾雾化时间之间的比率。这项研究将有助于农业喷嘴的设计和抗漂移喷雾添加剂的优化。

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